-
-# github.com/gobuffalo/events
-
-**Note:** This package was first introduced to Buffalo in this [PR](https://github.com/gobuffalo/buffalo/pull/1305). Assuming the PR is merged Buffalo will not start emitting events until `v0.13.0-beta.2` or greater.
-
-A list of known emitted events can be found at [https://godoc.org/github.com/gobuffalo/events#pkg-constants](https://godoc.org/github.com/gobuffalo/events#pkg-constants)
-
-## Installation
-
-```bash
-$ go get -u -v github.com/gobuffalo/events
-```
-
-## Listening For Events
-
-To listen for events you need to register an [`events#Listener`](https://godoc.org/github.com/gobuffalo/events#Listener) function first.
-
-```go
-func init() {
- // if you want to give your listener a nice name to identify itself
- events.NamedListen("my-listener", func(e events.Event) {
- fmt.Println("### e ->", e)
- })
-
- // if you don't care about identifying your listener
- events.Listen(func(e events.Event) {
- fmt.Println("### e ->", e)
- })
-}
-```
-
-## Emitting Events
-
-```go
-events.Emit(events.Event{
- Kind: "my-event",
- Message: // optional message,
- Payload: // optional payload,
- Error: // optional error,
-})
-```
-
-There is only one required field when emitting an event, `Kind`.
-
-The `Kind` field is key to how people will interpret your messages, and should be constructed as such: `::`.
-
-In the examples below from [Buffalo](https://gobuffalo.io) you can see it is using the `buffalo:` name space for its events.
-
-```go
-// EvtAppStart is emitted when buffalo.App#Serve is called
-EvtAppStart = "buffalo:app:start"
-// EvtAppStartErr is emitted when an error occurs calling buffalo.App#Serve
-EvtAppStartErr = "buffalo:app:start:err"
-// EvtAppStop is emitted when buffalo.App#Stop is called
-EvtAppStop = "buffalo:app:stop"
-// EvtAppStopErr is emitted when an error occurs calling buffalo.App#Stop
-EvtAppStopErr = "buffalo:app:stop:err"
-```
-
-## Implementing a Manager
-
-By default `events` implements a basic manager for you. Should you want to replace that with your own implementation, perhaps that's backed by a proper message queue, you can implement the [`events#Manager`](https://godoc.org/github.com/gobuffalo/events#Manager) interface.
-
-```go
-var _ events.Manager = MyManager{}
-events.SetManager(MyManager{})
-```
-
-## Listening via Buffalo Plugins
-
-Once Buffalo is actively emitting events, plugins, will be able to listen those events via their CLIs.
-
-To do so you can set the `BuffaloCommand` to `events` when telling Buffalo which plugin in commands are available. Buffalo will create a new listener that says the JSON version of the event to that command in question.
-
-```go
-var availableCmd = &cobra.Command{
- Use: "available",
- Short: "a list of available buffalo plugins",
- RunE: func(cmd *cobra.Command, args []string) error {
- plugs := plugins.Commands{
- {Name: "echo", UseCommand: "echo", BuffaloCommand: "events", Description: echoCmd.Short, Aliases: echoCmd.Aliases},
- }
- return json.NewEncoder(os.Stdout).Encode(plugs)
- },
-}
-
-
-events.Emit(events.Event{
- Kind: "my-event",
-})
-
-// buffalo-foo echo "{\"kind\": \"my-event\"}"
-```
diff --git a/vendor/github.com/gobuffalo/events/event.go b/vendor/github.com/gobuffalo/events/event.go
deleted file mode 100644
index 3f7b89d81..000000000
--- a/vendor/github.com/gobuffalo/events/event.go
+++ /dev/null
@@ -1,56 +0,0 @@
-package events
-
-import (
- "encoding/json"
- "errors"
- "strings"
-)
-
-// Event represents different events
-// in the lifecycle of a Buffalo app
-type Event struct {
- // Kind is the "type" of event "app:start"
- Kind string `json:"kind"`
- // Message is optional
- Message string `json:"message"`
- // Payload is optional
- Payload Payload `json:"payload"`
- // Error is optional
- Error error `json:"-"`
-}
-
-func (e Event) String() string {
- b, _ := e.MarshalJSON()
-
- return string(b)
-}
-
-// MarshalJSON implements the json marshaler for an event
-func (e Event) MarshalJSON() ([]byte, error) {
- m := map[string]interface{}{
- "kind": e.Kind,
- }
- if len(e.Message) != 0 {
- m["message"] = e.Message
- }
- if e.Error != nil {
- m["error"] = e.Error.Error()
- }
- if len(e.Payload) != 0 {
- m["payload"] = e.Payload
- }
-
- return json.Marshal(m)
-}
-
-// Validate that an event is ready to be emitted
-func (e Event) Validate() error {
- if len(e.Kind) == 0 {
- return errors.New("kind can not be blank")
- }
- return nil
-}
-
-func (e Event) IsError() bool {
- return strings.HasSuffix(e.Kind, ":err")
-}
diff --git a/vendor/github.com/gobuffalo/events/events.go b/vendor/github.com/gobuffalo/events/events.go
deleted file mode 100644
index 40d86cc0b..000000000
--- a/vendor/github.com/gobuffalo/events/events.go
+++ /dev/null
@@ -1,44 +0,0 @@
-package events
-
-import (
- "strings"
-
- "github.com/gobuffalo/mapi"
-)
-
-type Payload = mapi.Mapi
-
-const (
- // ErrGeneral is emitted for general errors
- ErrGeneral = "general:err"
- // ErrPanic is emitted when a panic is recovered
- ErrPanic = "panic:err"
-)
-
-// Emit an event to all listeners
-func Emit(e Event) error {
- return boss.Emit(e)
-}
-
-func EmitPayload(kind string, payload interface{}) error {
- return EmitError(kind, nil, payload)
-}
-
-func EmitError(kind string, err error, payload interface{}) error {
- if err != nil && !strings.HasSuffix(kind, ":err") {
- kind += ":err"
- }
- var pl Payload
- pl, ok := payload.(Payload)
- if !ok {
- pl = Payload{
- "data": payload,
- }
- }
- e := Event{
- Kind: kind,
- Payload: pl,
- Error: err,
- }
- return Emit(e)
-}
diff --git a/vendor/github.com/gobuffalo/events/filter.go b/vendor/github.com/gobuffalo/events/filter.go
deleted file mode 100644
index 1c6a01967..000000000
--- a/vendor/github.com/gobuffalo/events/filter.go
+++ /dev/null
@@ -1,24 +0,0 @@
-package events
-
-import (
- "regexp"
-
- "github.com/markbates/safe"
-)
-
-// Filter compiles the string as a regex and returns
-// the original listener wrapped in a new listener
-// that filters incoming events by the Kind
-func Filter(s string, fn Listener) Listener {
- if s == "" || s == "*" {
- return fn
- }
- rx := regexp.MustCompile(s)
- return func(e Event) {
- if rx.MatchString(e.Kind) {
- safe.Run(func() {
- fn(e)
- })
- }
- }
-}
diff --git a/vendor/github.com/gobuffalo/events/go.mod b/vendor/github.com/gobuffalo/events/go.mod
deleted file mode 100644
index 2619e4c29..000000000
--- a/vendor/github.com/gobuffalo/events/go.mod
+++ /dev/null
@@ -1,12 +0,0 @@
-module github.com/gobuffalo/events
-
-require (
- github.com/gobuffalo/buffalo-plugins v1.12.0
- github.com/gobuffalo/envy v1.6.12
- github.com/gobuffalo/mapi v1.0.1
- github.com/gobuffalo/packr/v2 v2.0.0-rc.15
- github.com/markbates/oncer v0.0.0-20181203154359-bf2de49a0be2
- github.com/markbates/safe v1.0.1
- github.com/pkg/errors v0.8.1
- github.com/stretchr/testify v1.3.0
-)
diff --git a/vendor/github.com/gobuffalo/events/go.sum b/vendor/github.com/gobuffalo/events/go.sum
deleted file mode 100644
index feda9f952..000000000
--- a/vendor/github.com/gobuffalo/events/go.sum
+++ /dev/null
@@ -1,398 +0,0 @@
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diff --git a/vendor/github.com/gobuffalo/events/listener.go b/vendor/github.com/gobuffalo/events/listener.go
deleted file mode 100644
index 1f293e228..000000000
--- a/vendor/github.com/gobuffalo/events/listener.go
+++ /dev/null
@@ -1,36 +0,0 @@
-package events
-
-import (
- "fmt"
- "runtime"
-
- "github.com/pkg/errors"
-)
-
-// Listener is a function capable of handling events
-type Listener func(e Event)
-
-// NamedListen for events. Name is the name of the
-// listener NOT the events you want to listen for,
-// so something like "my-listener", "kafka-listener", etc...
-func NamedListen(name string, l Listener) (DeleteFn, error) {
- return boss.Listen(name, l)
-}
-
-// Listen for events.
-func Listen(l Listener) (DeleteFn, error) {
- _, file, line, _ := runtime.Caller(1)
- return NamedListen(fmt.Sprintf("%s:%d", file, line), l)
-}
-
-type listable interface {
- List() ([]string, error)
-}
-
-// List all listeners
-func List() ([]string, error) {
- if l, ok := boss.(listable); ok {
- return l.List()
- }
- return []string{}, errors.Errorf("manager %T does not implemented listable", boss)
-}
diff --git a/vendor/github.com/gobuffalo/events/listener_map.go b/vendor/github.com/gobuffalo/events/listener_map.go
deleted file mode 100644
index a6e727646..000000000
--- a/vendor/github.com/gobuffalo/events/listener_map.go
+++ /dev/null
@@ -1,73 +0,0 @@
-//go:generate mapgen -name "listener" -zero "nil" -go-type "Listener" -pkg "" -a "func(e) {}" -b "nil" -c "nil" -bb "nil" -destination "events"
-// Code generated by github.com/gobuffalo/mapgen. DO NOT EDIT.
-
-package events
-
-import (
- "sort"
- "sync"
-)
-
-// listenerMap wraps sync.Map and uses the following types:
-// key: string
-// value: Listener
-type listenerMap struct {
- data sync.Map
-}
-
-// Delete the key from the map
-func (m *listenerMap) Delete(key string) {
- m.data.Delete(key)
-}
-
-// Load the key from the map.
-// Returns Listener or bool.
-// A false return indicates either the key was not found
-// or the value is not of type Listener
-func (m *listenerMap) Load(key string) (Listener, bool) {
- i, ok := m.data.Load(key)
- if !ok {
- return nil, false
- }
- s, ok := i.(Listener)
- return s, ok
-}
-
-// LoadOrStore will return an existing key or
-// store the value if not already in the map
-func (m *listenerMap) LoadOrStore(key string, value Listener) (Listener, bool) {
- i, _ := m.data.LoadOrStore(key, value)
- s, ok := i.(Listener)
- return s, ok
-}
-
-// Range over the Listener values in the map
-func (m *listenerMap) Range(f func(key string, value Listener) bool) {
- m.data.Range(func(k, v interface{}) bool {
- key, ok := k.(string)
- if !ok {
- return false
- }
- value, ok := v.(Listener)
- if !ok {
- return false
- }
- return f(key, value)
- })
-}
-
-// Store a Listener in the map
-func (m *listenerMap) Store(key string, value Listener) {
- m.data.Store(key, value)
-}
-
-// Keys returns a list of keys in the map
-func (m *listenerMap) Keys() []string {
- var keys []string
- m.Range(func(key string, value Listener) bool {
- keys = append(keys, key)
- return true
- })
- sort.Strings(keys)
- return keys
-}
diff --git a/vendor/github.com/gobuffalo/events/manager.go b/vendor/github.com/gobuffalo/events/manager.go
deleted file mode 100644
index 5dd879cfd..000000000
--- a/vendor/github.com/gobuffalo/events/manager.go
+++ /dev/null
@@ -1,86 +0,0 @@
-package events
-
-import (
- "strings"
-
- "github.com/markbates/safe"
- "github.com/pkg/errors"
-)
-
-type DeleteFn func()
-
-// Manager can be implemented to replace the default
-// events manager
-type Manager interface {
- Listen(string, Listener) (DeleteFn, error)
- Emit(Event) error
-}
-
-// DefaultManager implements a map backed Manager
-func DefaultManager() Manager {
- return &manager{
- listeners: listenerMap{},
- }
-}
-
-// SetManager allows you to replace the default
-// event manager with a custom one
-func SetManager(m Manager) {
- boss = m
-}
-
-var boss Manager = DefaultManager()
-var _ listable = &manager{}
-
-type manager struct {
- listeners listenerMap
-}
-
-func (m *manager) Listen(name string, l Listener) (DeleteFn, error) {
- _, ok := m.listeners.Load(name)
- if ok {
- return nil, errors.Errorf("listener named %s is already listening", name)
- }
-
- m.listeners.Store(name, l)
-
- df := func() {
- m.listeners.Delete(name)
- }
-
- return df, nil
-}
-
-func (m *manager) Emit(e Event) error {
- if err := e.Validate(); err != nil {
- return errors.WithStack(err)
- }
- e.Kind = strings.ToLower(e.Kind)
- if e.IsError() && e.Error == nil {
- e.Error = errors.New(e.Kind)
- }
- go func(e Event) {
- m.listeners.Range(func(key string, l Listener) bool {
- ex := Event{
- Kind: e.Kind,
- Error: e.Error,
- Message: e.Message,
- Payload: Payload{},
- }
- for k, v := range e.Payload {
- ex.Payload[k] = v
- }
- go func(e Event, l Listener) {
- safe.Run(func() {
- l(e)
- })
- }(ex, l)
- return true
- })
- }(e)
- return nil
-}
-
-func (m *manager) List() ([]string, error) {
- return m.listeners.Keys(), nil
-}
diff --git a/vendor/github.com/gobuffalo/events/plugins.go b/vendor/github.com/gobuffalo/events/plugins.go
deleted file mode 100644
index 0ba1f97fe..000000000
--- a/vendor/github.com/gobuffalo/events/plugins.go
+++ /dev/null
@@ -1,68 +0,0 @@
-package events
-
-import (
- "encoding/json"
- "fmt"
- "os"
- "os/exec"
- "strings"
-
- "github.com/gobuffalo/buffalo-plugins/plugins"
- "github.com/gobuffalo/envy"
- "github.com/markbates/oncer"
- "github.com/markbates/safe"
- "github.com/pkg/errors"
-)
-
-// LoadPlugins will add listeners for any plugins that support "events"
-func LoadPlugins() error {
- var err error
- oncer.Do("events.LoadPlugins", func() {
- // don't send plugins events during testing
- if envy.Get("GO_ENV", "development") == "test" {
- return
- }
- plugs, err := plugins.Available()
- if err != nil {
- err = errors.WithStack(err)
- return
- }
- for _, cmds := range plugs {
- for _, c := range cmds {
- if c.BuffaloCommand != "events" {
- continue
- }
- err := func(c plugins.Command) error {
- return safe.RunE(func() error {
- n := fmt.Sprintf("[PLUGIN] %s %s", c.Binary, c.Name)
- fn := func(e Event) {
- b, err := json.Marshal(e)
- if err != nil {
- fmt.Println("error trying to marshal event", e, err)
- return
- }
- cmd := exec.Command(c.Binary, c.UseCommand, string(b))
- cmd.Stderr = os.Stderr
- cmd.Stdout = os.Stdout
- cmd.Stdin = os.Stdin
- if err := cmd.Run(); err != nil {
- fmt.Println("error trying to send event", strings.Join(cmd.Args, " "), err)
- }
- }
- _, err := NamedListen(n, Filter(c.ListenFor, fn))
- if err != nil {
- return errors.WithStack(err)
- }
- return nil
- })
- }(c)
- if err != nil {
- err = errors.WithStack(err)
- return
- }
- }
-
- }
- })
- return err
-}
diff --git a/vendor/github.com/gobuffalo/events/shoulders.md b/vendor/github.com/gobuffalo/events/shoulders.md
deleted file mode 100644
index fe2aefb41..000000000
--- a/vendor/github.com/gobuffalo/events/shoulders.md
+++ /dev/null
@@ -1,50 +0,0 @@
-# github.com/gobuffalo/events Stands on the Shoulders of Giants
-
-github.com/gobuffalo/events does not try to reinvent the wheel! Instead, it uses the already great wheels developed by the Go community and puts them all together in the best way possible. Without these giants this project would not be possible. Please make sure to check them out and thank them for all of their hard work.
-
-Thank you to the following **GIANTS**:
-
-
-* [github.com/BurntSushi/toml](https://godoc.org/github.com/BurntSushi/toml)
-
-* [github.com/gobuffalo/buffalo-plugins/plugins](https://godoc.org/github.com/gobuffalo/buffalo-plugins/plugins)
-
-* [github.com/gobuffalo/buffalo-plugins/plugins/plugdeps](https://godoc.org/github.com/gobuffalo/buffalo-plugins/plugins/plugdeps)
-
-* [github.com/gobuffalo/envy](https://godoc.org/github.com/gobuffalo/envy)
-
-* [github.com/gobuffalo/events](https://godoc.org/github.com/gobuffalo/events)
-
-* [github.com/gobuffalo/flect](https://godoc.org/github.com/gobuffalo/flect)
-
-* [github.com/gobuffalo/flect/name](https://godoc.org/github.com/gobuffalo/flect/name)
-
-* [github.com/gobuffalo/mapi](https://godoc.org/github.com/gobuffalo/mapi)
-
-* [github.com/gobuffalo/meta](https://godoc.org/github.com/gobuffalo/meta)
-
-* [github.com/joho/godotenv](https://godoc.org/github.com/joho/godotenv)
-
-* [github.com/karrick/godirwalk](https://godoc.org/github.com/karrick/godirwalk)
-
-* [github.com/markbates/oncer](https://godoc.org/github.com/markbates/oncer)
-
-* [github.com/markbates/safe](https://godoc.org/github.com/markbates/safe)
-
-* [github.com/pkg/errors](https://godoc.org/github.com/pkg/errors)
-
-* [github.com/rogpeppe/go-internal/modfile](https://godoc.org/github.com/rogpeppe/go-internal/modfile)
-
-* [github.com/rogpeppe/go-internal/module](https://godoc.org/github.com/rogpeppe/go-internal/module)
-
-* [github.com/rogpeppe/go-internal/semver](https://godoc.org/github.com/rogpeppe/go-internal/semver)
-
-* [github.com/sirupsen/logrus](https://godoc.org/github.com/sirupsen/logrus)
-
-* [github.com/spf13/cobra](https://godoc.org/github.com/spf13/cobra)
-
-* [github.com/spf13/pflag](https://godoc.org/github.com/spf13/pflag)
-
-* [golang.org/x/crypto/ssh/terminal](https://godoc.org/golang.org/x/crypto/ssh/terminal)
-
-* [golang.org/x/sys/unix](https://godoc.org/golang.org/x/sys/unix)
diff --git a/vendor/github.com/gobuffalo/events/version.go b/vendor/github.com/gobuffalo/events/version.go
deleted file mode 100644
index c99cc4dfa..000000000
--- a/vendor/github.com/gobuffalo/events/version.go
+++ /dev/null
@@ -1,3 +0,0 @@
-package events
-
-const Version = "v1.2.0"
diff --git a/vendor/github.com/gobuffalo/flect/.gitignore b/vendor/github.com/gobuffalo/flect/.gitignore
deleted file mode 100644
index 368971859..000000000
--- a/vendor/github.com/gobuffalo/flect/.gitignore
+++ /dev/null
@@ -1,29 +0,0 @@
-*.log
-.DS_Store
-doc
-tmp
-pkg
-*.gem
-*.pid
-coverage
-coverage.data
-build/*
-*.pbxuser
-*.mode1v3
-.svn
-profile
-.console_history
-.sass-cache/*
-.rake_tasks~
-*.log.lck
-solr/
-.jhw-cache/
-jhw.*
-*.sublime*
-node_modules/
-dist/
-generated/
-.vendor/
-bin/*
-gin-bin
-.idea/
diff --git a/vendor/github.com/gobuffalo/flect/.gometalinter.json b/vendor/github.com/gobuffalo/flect/.gometalinter.json
deleted file mode 100644
index e4f65a36e..000000000
--- a/vendor/github.com/gobuffalo/flect/.gometalinter.json
+++ /dev/null
@@ -1,3 +0,0 @@
-{
- "Enable": ["vet", "golint", "goimports", "deadcode", "gotype", "ineffassign", "misspell", "nakedret", "unconvert", "megacheck", "varcheck"]
-}
diff --git a/vendor/github.com/gobuffalo/flect/.travis.yml b/vendor/github.com/gobuffalo/flect/.travis.yml
deleted file mode 100644
index 1fb041a25..000000000
--- a/vendor/github.com/gobuffalo/flect/.travis.yml
+++ /dev/null
@@ -1,36 +0,0 @@
-language: go
-
-sudo: false
-
-matrix:
- include:
- - os: linux
- go: "1.9.x"
- - os: windows
- go: "1.9.x"
- - os: linux
- go: "1.10.x"
- - os: windows
- go: "1.10.x"
- - os: linux
- go: "1.11.x"
- env:
- - GO111MODULE=off
- - os: windows
- go: "1.11.x"
- env:
- - GO111MODULE=off
- - os: linux
- go: "1.11.x"
- env:
- - GO111MODULE=on
- - os: windows
- go: "1.11.x"
- env:
- - GO111MODULE=on
-
-install: false
-
-script:
- - go get -v -t ./...
- - go test -v -timeout=5s -race ./...
diff --git a/vendor/github.com/gobuffalo/flect/LICENSE.txt b/vendor/github.com/gobuffalo/flect/LICENSE.txt
deleted file mode 100644
index 123ddc0d8..000000000
--- a/vendor/github.com/gobuffalo/flect/LICENSE.txt
+++ /dev/null
@@ -1,8 +0,0 @@
-The MIT License (MIT)
-Copyright (c) 2018 Mark Bates
-
-Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
diff --git a/vendor/github.com/gobuffalo/flect/Makefile b/vendor/github.com/gobuffalo/flect/Makefile
deleted file mode 100644
index b0db1c4f8..000000000
--- a/vendor/github.com/gobuffalo/flect/Makefile
+++ /dev/null
@@ -1,46 +0,0 @@
-TAGS ?= "sqlite"
-GO_BIN ?= go
-
-install:
- packr
- $(GO_BIN) install -v .
-
-deps:
- $(GO_BIN) get github.com/gobuffalo/release
- $(GO_BIN) get github.com/gobuffalo/packr/packr
- $(GO_BIN) get -tags ${TAGS} -t ./...
-ifeq ($(GO111MODULE),on)
- $(GO_BIN) mod tidy
-endif
-
-build:
- packr
- $(GO_BIN) build -v .
-
-test:
- packr
- $(GO_BIN) test -tags ${TAGS} ./...
-
-ci-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
-
-lint:
- gometalinter --vendor ./... --deadline=1m --skip=internal
-
-update:
- $(GO_BIN) get -u -tags ${TAGS}
-ifeq ($(GO111MODULE),on)
- $(GO_BIN) mod tidy
-endif
- packr
- make test
- make install
-ifeq ($(GO111MODULE),on)
- $(GO_BIN) mod tidy
-endif
-
-release-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
-
-release:
- release -y -f version.go
diff --git a/vendor/github.com/gobuffalo/flect/README.md b/vendor/github.com/gobuffalo/flect/README.md
deleted file mode 100644
index af0afbda9..000000000
--- a/vendor/github.com/gobuffalo/flect/README.md
+++ /dev/null
@@ -1,36 +0,0 @@
-# Flect
-
-
-
-
-
-
-
-This is a new inflection engine to replace [https://github.com/markbates/inflect](https://github.com/markbates/inflect) designed to be more modular, more readable, and easier to fix issues on than the original.
-
-## Installation
-
-```bash
-$ go get -u -v github.com/gobuffalo/flect
-```
-
-## `github.com/gobuffalo/flect`
-
-
-The `github.com/gobuffalo/flect` package contains "basic" inflection tools, like pluralization, singularization, etc...
-
-### The `Ident` Type
-
-In addition to helpful methods that take in a `string` and return a `string`, there is an `Ident` type that can be used to create new, custom, inflection rules.
-
-The `Ident` type contains two fields.
-
-* `Original` - This is the original `string` that was used to create the `Ident`
-* `Parts` - This is a `[]string` that represents all of the "parts" of the string, that have been split apart, making the segments easier to work with
-
-Examples of creating new inflection rules using `Ident` can be found in the `github.com/gobuffalo/flect/name` package.
-
-## `github.com/gobuffalo/flect/name`
-
-
-The `github.com/gobuffalo/flect/name` package contains more "business" inflection rules like creating proper names, table names, etc...
diff --git a/vendor/github.com/gobuffalo/flect/acronyms.go b/vendor/github.com/gobuffalo/flect/acronyms.go
deleted file mode 100644
index b169724a4..000000000
--- a/vendor/github.com/gobuffalo/flect/acronyms.go
+++ /dev/null
@@ -1,152 +0,0 @@
-package flect
-
-import "sync"
-
-var acronymsMoot = &sync.RWMutex{}
-
-var baseAcronyms = map[string]bool{
- "OK": true,
- "UTF8": true,
- "HTML": true,
- "JSON": true,
- "JWT": true,
- "ID": true,
- "UUID": true,
- "SQL": true,
- "ACK": true,
- "ACL": true,
- "ADSL": true,
- "AES": true,
- "ANSI": true,
- "API": true,
- "ARP": true,
- "ATM": true,
- "BGP": true,
- "BSS": true,
- "CCITT": true,
- "CHAP": true,
- "CIDR": true,
- "CIR": true,
- "CLI": true,
- "CPE": true,
- "CPU": true,
- "CRC": true,
- "CRT": true,
- "CSMA": true,
- "CMOS": true,
- "DCE": true,
- "DEC": true,
- "DES": true,
- "DHCP": true,
- "DNS": true,
- "DRAM": true,
- "DSL": true,
- "DSLAM": true,
- "DTE": true,
- "DMI": true,
- "EHA": true,
- "EIA": true,
- "EIGRP": true,
- "EOF": true,
- "ESS": true,
- "FCC": true,
- "FCS": true,
- "FDDI": true,
- "FTP": true,
- "GBIC": true,
- "gbps": true,
- "GEPOF": true,
- "HDLC": true,
- "HTTP": true,
- "HTTPS": true,
- "IANA": true,
- "ICMP": true,
- "IDF": true,
- "IDS": true,
- "IEEE": true,
- "IETF": true,
- "IMAP": true,
- "IP": true,
- "IPS": true,
- "ISDN": true,
- "ISP": true,
- "kbps": true,
- "LACP": true,
- "LAN": true,
- "LAPB": true,
- "LAPF": true,
- "LLC": true,
- "MAC": true,
- "Mbps": true,
- "MC": true,
- "MDF": true,
- "MIB": true,
- "MoCA": true,
- "MPLS": true,
- "MTU": true,
- "NAC": true,
- "NAT": true,
- "NBMA": true,
- "NIC": true,
- "NRZ": true,
- "NRZI": true,
- "NVRAM": true,
- "OSI": true,
- "OSPF": true,
- "OUI": true,
- "PAP": true,
- "PAT": true,
- "PC": true,
- "PIM": true,
- "PCM": true,
- "PDU": true,
- "POP3": true,
- "POTS": true,
- "PPP": true,
- "PPTP": true,
- "PTT": true,
- "PVST": true,
- "RAM": true,
- "RARP": true,
- "RFC": true,
- "RIP": true,
- "RLL": true,
- "ROM": true,
- "RSTP": true,
- "RTP": true,
- "RCP": true,
- "SDLC": true,
- "SFD": true,
- "SFP": true,
- "SLARP": true,
- "SLIP": true,
- "SMTP": true,
- "SNA": true,
- "SNAP": true,
- "SNMP": true,
- "SOF": true,
- "SRAM": true,
- "SSH": true,
- "SSID": true,
- "STP": true,
- "SYN": true,
- "TDM": true,
- "TFTP": true,
- "TIA": true,
- "TOFU": true,
- "UDP": true,
- "URL": true,
- "URI": true,
- "USB": true,
- "UTP": true,
- "VC": true,
- "VLAN": true,
- "VLSM": true,
- "VPN": true,
- "W3C": true,
- "WAN": true,
- "WEP": true,
- "WiFi": true,
- "WPA": true,
- "WWW": true,
-}
diff --git a/vendor/github.com/gobuffalo/flect/camelize.go b/vendor/github.com/gobuffalo/flect/camelize.go
deleted file mode 100644
index 8a9928e8b..000000000
--- a/vendor/github.com/gobuffalo/flect/camelize.go
+++ /dev/null
@@ -1,48 +0,0 @@
-package flect
-
-import (
- "strings"
- "unicode"
-)
-
-// Camelize returns a camelize version of a string
-// bob dylan = bobDylan
-// widget_id = widgetID
-// WidgetID = widgetID
-func Camelize(s string) string {
- return New(s).Camelize().String()
-}
-
-// Camelize returns a camelize version of a string
-// bob dylan = bobDylan
-// widget_id = widgetID
-// WidgetID = widgetID
-func (i Ident) Camelize() Ident {
- var out []string
- for i, part := range i.Parts {
- var x string
- var capped bool
- if strings.ToLower(part) == "id" {
- out = append(out, "ID")
- continue
- }
- for _, c := range part {
- if unicode.IsLetter(c) || unicode.IsDigit(c) {
- if i == 0 {
- x += string(unicode.ToLower(c))
- continue
- }
- if !capped {
- capped = true
- x += string(unicode.ToUpper(c))
- continue
- }
- x += string(c)
- }
- }
- if x != "" {
- out = append(out, x)
- }
- }
- return New(strings.Join(out, ""))
-}
diff --git a/vendor/github.com/gobuffalo/flect/capitalize.go b/vendor/github.com/gobuffalo/flect/capitalize.go
deleted file mode 100644
index 42ecc166c..000000000
--- a/vendor/github.com/gobuffalo/flect/capitalize.go
+++ /dev/null
@@ -1,27 +0,0 @@
-package flect
-
-import "unicode"
-
-// Capitalize will cap the first letter of string
-// user = User
-// bob dylan = Bob dylan
-// widget_id = Widget_id
-func Capitalize(s string) string {
- return New(s).Capitalize().String()
-}
-
-// Capitalize will cap the first letter of string
-// user = User
-// bob dylan = Bob dylan
-// widget_id = Widget_id
-func (i Ident) Capitalize() Ident {
- var x string
- if len(i.Parts) == 0 {
- return New("")
- }
- x = string(unicode.ToTitle(rune(i.Original[0])))
- if len(i.Original) > 1 {
- x += i.Original[1:]
- }
- return New(x)
-}
diff --git a/vendor/github.com/gobuffalo/flect/custom_data.go b/vendor/github.com/gobuffalo/flect/custom_data.go
deleted file mode 100644
index 9a2dfc74a..000000000
--- a/vendor/github.com/gobuffalo/flect/custom_data.go
+++ /dev/null
@@ -1,83 +0,0 @@
-package flect
-
-import (
- "bytes"
- "encoding/json"
- "fmt"
- "io"
- "io/ioutil"
- "os"
- "path/filepath"
-)
-
-func init() {
- loadCustomData("inflections.json", "INFLECT_PATH", "could not read inflection file", LoadInflections)
- loadCustomData("acronyms.json", "ACRONYMS_PATH", "could not read acronyms file", LoadAcronyms)
-}
-
-//CustomDataParser are functions that parse data like acronyms or
-//plurals in the shape of a io.Reader it receives.
-type CustomDataParser func(io.Reader) error
-
-func loadCustomData(defaultFile, env, readErrorMessage string, parser CustomDataParser) {
- pwd, _ := os.Getwd()
- path, found := os.LookupEnv(env)
- if !found {
- path = filepath.Join(pwd, defaultFile)
- }
-
- if _, err := os.Stat(path); err != nil {
- return
- }
-
- b, err := ioutil.ReadFile(path)
- if err != nil {
- fmt.Printf("%s %s (%s)\n", readErrorMessage, path, err)
- return
- }
-
- if err = parser(bytes.NewReader(b)); err != nil {
- fmt.Println(err)
- }
-}
-
-//LoadAcronyms loads rules from io.Reader param
-func LoadAcronyms(r io.Reader) error {
- m := []string{}
- err := json.NewDecoder(r).Decode(&m)
-
- if err != nil {
- return fmt.Errorf("could not decode acronyms JSON from reader: %s", err)
- }
-
- acronymsMoot.Lock()
- defer acronymsMoot.Unlock()
-
- for _, acronym := range m {
- baseAcronyms[acronym] = true
- }
-
- return nil
-}
-
-//LoadInflections loads rules from io.Reader param
-func LoadInflections(r io.Reader) error {
- m := map[string]string{}
-
- err := json.NewDecoder(r).Decode(&m)
- if err != nil {
- return fmt.Errorf("could not decode inflection JSON from reader: %s", err)
- }
-
- pluralMoot.Lock()
- defer pluralMoot.Unlock()
- singularMoot.Lock()
- defer singularMoot.Unlock()
-
- for s, p := range m {
- singleToPlural[s] = p
- pluralToSingle[p] = s
- }
-
- return nil
-}
diff --git a/vendor/github.com/gobuffalo/flect/dasherize.go b/vendor/github.com/gobuffalo/flect/dasherize.go
deleted file mode 100644
index c7a8a33e3..000000000
--- a/vendor/github.com/gobuffalo/flect/dasherize.go
+++ /dev/null
@@ -1,34 +0,0 @@
-package flect
-
-import (
- "strings"
- "unicode"
-)
-
-// Dasherize returns an alphanumeric, lowercased, dashed string
-// Donald E. Knuth = donald-e-knuth
-// Test with + sign = test-with-sign
-// admin/WidgetID = admin-widget-id
-func Dasherize(s string) string {
- return New(s).Dasherize().String()
-}
-
-// Dasherize returns an alphanumeric, lowercased, dashed string
-// Donald E. Knuth = donald-e-knuth
-// Test with + sign = test-with-sign
-// admin/WidgetID = admin-widget-id
-func (i Ident) Dasherize() Ident {
- var parts []string
-
- for _, part := range i.Parts {
- var x string
- for _, c := range part {
- if unicode.IsLetter(c) || unicode.IsDigit(c) {
- x += string(c)
- }
- }
- parts = xappend(parts, x)
- }
-
- return New(strings.ToLower(strings.Join(parts, "-")))
-}
diff --git a/vendor/github.com/gobuffalo/flect/flect.go b/vendor/github.com/gobuffalo/flect/flect.go
deleted file mode 100644
index ee81b6f2b..000000000
--- a/vendor/github.com/gobuffalo/flect/flect.go
+++ /dev/null
@@ -1,43 +0,0 @@
-/*
-Package flect is a new inflection engine to replace [https://github.com/markbates/inflect](https://github.com/markbates/inflect) designed to be more modular, more readable, and easier to fix issues on than the original.
-*/
-package flect
-
-import (
- "strings"
- "unicode"
-)
-
-var spaces = []rune{'_', ' ', ':', '-', '/'}
-
-func isSpace(c rune) bool {
- for _, r := range spaces {
- if r == c {
- return true
- }
- }
- return unicode.IsSpace(c)
-}
-
-func xappend(a []string, ss ...string) []string {
- for _, s := range ss {
- s = strings.TrimSpace(s)
- for _, x := range spaces {
- s = strings.Trim(s, string(x))
- }
- if _, ok := baseAcronyms[strings.ToUpper(s)]; ok {
- s = strings.ToUpper(s)
- }
- if s != "" {
- a = append(a, s)
- }
- }
- return a
-}
-
-func abs(x int) int {
- if x < 0 {
- return -x
- }
- return x
-}
diff --git a/vendor/github.com/gobuffalo/flect/go.mod b/vendor/github.com/gobuffalo/flect/go.mod
deleted file mode 100644
index a9a9eab05..000000000
--- a/vendor/github.com/gobuffalo/flect/go.mod
+++ /dev/null
@@ -1,6 +0,0 @@
-module github.com/gobuffalo/flect
-
-require (
- github.com/davecgh/go-spew v1.1.1 // indirect
- github.com/stretchr/testify v1.3.0
-)
diff --git a/vendor/github.com/gobuffalo/flect/go.sum b/vendor/github.com/gobuffalo/flect/go.sum
deleted file mode 100644
index 4f8984150..000000000
--- a/vendor/github.com/gobuffalo/flect/go.sum
+++ /dev/null
@@ -1,8 +0,0 @@
-github.com/davecgh/go-spew v1.1.0/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38=
-github.com/davecgh/go-spew v1.1.1 h1:vj9j/u1bqnvCEfJOwUhtlOARqs3+rkHYY13jYWTU97c=
-github.com/davecgh/go-spew v1.1.1/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38=
-github.com/pmezard/go-difflib v1.0.0 h1:4DBwDE0NGyQoBHbLQYPwSUPoCMWR5BEzIk/f1lZbAQM=
-github.com/pmezard/go-difflib v1.0.0/go.mod h1:iKH77koFhYxTK1pcRnkKkqfTogsbg7gZNVY4sRDYZ/4=
-github.com/stretchr/objx v0.1.0/go.mod h1:HFkY916IF+rwdDfMAkV7OtwuqBVzrE8GR6GFx+wExME=
-github.com/stretchr/testify v1.3.0 h1:TivCn/peBQ7UY8ooIcPgZFpTNSz0Q2U6UrFlUfqbe0Q=
-github.com/stretchr/testify v1.3.0/go.mod h1:M5WIy9Dh21IEIfnGCwXGc5bZfKNJtfHm1UVUgZn+9EI=
diff --git a/vendor/github.com/gobuffalo/flect/ident.go b/vendor/github.com/gobuffalo/flect/ident.go
deleted file mode 100644
index 78b51d457..000000000
--- a/vendor/github.com/gobuffalo/flect/ident.go
+++ /dev/null
@@ -1,106 +0,0 @@
-package flect
-
-import (
- "encoding"
- "strings"
- "unicode"
- "unicode/utf8"
-)
-
-// Ident represents the string and it's parts
-type Ident struct {
- Original string
- Parts []string
-}
-
-// String implements fmt.Stringer and returns the original string
-func (i Ident) String() string {
- return i.Original
-}
-
-// New creates a new Ident from the string
-func New(s string) Ident {
- i := Ident{
- Original: s,
- Parts: toParts(s),
- }
-
- return i
-}
-
-func toParts(s string) []string {
- parts := []string{}
- s = strings.TrimSpace(s)
- if len(s) == 0 {
- return parts
- }
- if _, ok := baseAcronyms[strings.ToUpper(s)]; ok {
- return []string{strings.ToUpper(s)}
- }
- var prev rune
- var x string
- for _, c := range s {
- cs := string(c)
- // fmt.Println("### cs ->", cs)
- // fmt.Println("### unicode.IsControl(c) ->", unicode.IsControl(c))
- // fmt.Println("### unicode.IsDigit(c) ->", unicode.IsDigit(c))
- // fmt.Println("### unicode.IsGraphic(c) ->", unicode.IsGraphic(c))
- // fmt.Println("### unicode.IsLetter(c) ->", unicode.IsLetter(c))
- // fmt.Println("### unicode.IsLower(c) ->", unicode.IsLower(c))
- // fmt.Println("### unicode.IsMark(c) ->", unicode.IsMark(c))
- // fmt.Println("### unicode.IsPrint(c) ->", unicode.IsPrint(c))
- // fmt.Println("### unicode.IsPunct(c) ->", unicode.IsPunct(c))
- // fmt.Println("### unicode.IsSpace(c) ->", unicode.IsSpace(c))
- // fmt.Println("### unicode.IsTitle(c) ->", unicode.IsTitle(c))
- // fmt.Println("### unicode.IsUpper(c) ->", unicode.IsUpper(c))
- if !utf8.ValidRune(c) {
- continue
- }
-
- if isSpace(c) {
- parts = xappend(parts, x)
- x = cs
- prev = c
- continue
- }
-
- if unicode.IsUpper(c) && !unicode.IsUpper(prev) {
- parts = xappend(parts, x)
- x = cs
- prev = c
- continue
- }
- if unicode.IsUpper(c) && baseAcronyms[strings.ToUpper(x)] {
- parts = xappend(parts, x)
- x = cs
- prev = c
- continue
- }
- if unicode.IsLetter(c) || unicode.IsDigit(c) || unicode.IsPunct(c) || c == '`' {
- prev = c
- x += cs
- continue
- }
-
- parts = xappend(parts, x)
- x = ""
- prev = c
- }
- parts = xappend(parts, x)
-
- return parts
-}
-
-var _ encoding.TextUnmarshaler = &Ident{}
-var _ encoding.TextMarshaler = &Ident{}
-
-//UnmarshalText unmarshalls byte array into the Ident
-func (i *Ident) UnmarshalText(data []byte) error {
- (*i) = New(string(data))
- return nil
-}
-
-//MarshalText marshals Ident into byte array
-func (i Ident) MarshalText() ([]byte, error) {
- return []byte(i.Original), nil
-}
diff --git a/vendor/github.com/gobuffalo/flect/lower_upper.go b/vendor/github.com/gobuffalo/flect/lower_upper.go
deleted file mode 100644
index 930da58d8..000000000
--- a/vendor/github.com/gobuffalo/flect/lower_upper.go
+++ /dev/null
@@ -1,13 +0,0 @@
-package flect
-
-import "strings"
-
-// ToUpper is a convience wrapper for strings.ToUpper
-func (i Ident) ToUpper() Ident {
- return New(strings.ToUpper(i.Original))
-}
-
-// ToLower is a convience wrapper for strings.ToLower
-func (i Ident) ToLower() Ident {
- return New(strings.ToLower(i.Original))
-}
diff --git a/vendor/github.com/gobuffalo/flect/name/char.go b/vendor/github.com/gobuffalo/flect/name/char.go
deleted file mode 100644
index 64b2cb8d0..000000000
--- a/vendor/github.com/gobuffalo/flect/name/char.go
+++ /dev/null
@@ -1,24 +0,0 @@
-package name
-
-import "unicode"
-
-// Char returns the first letter, lowered
-// "" = "x"
-// "foo" = "f"
-// "123d456" = "d"
-func Char(s string) string {
- return New(s).Char().String()
-}
-
-// Char returns the first letter, lowered
-// "" = "x"
-// "foo" = "f"
-// "123d456" = "d"
-func (i Ident) Char() Ident {
- for _, c := range i.Original {
- if unicode.IsLetter(c) {
- return New(string(unicode.ToLower(c)))
- }
- }
- return New("x")
-}
diff --git a/vendor/github.com/gobuffalo/flect/name/file.go b/vendor/github.com/gobuffalo/flect/name/file.go
deleted file mode 100644
index ec5cdae79..000000000
--- a/vendor/github.com/gobuffalo/flect/name/file.go
+++ /dev/null
@@ -1,28 +0,0 @@
-package name
-
-import (
- "strings"
-
- "github.com/gobuffalo/flect"
-)
-
-// File creates a suitable file name
-// admin/widget = admin/widget
-// foo_bar = foo_bar
-// U$ser = u_ser
-func File(s string, exts ...string) string {
- return New(s).File(exts...).String()
-}
-
-// File creates a suitable file name
-// admin/widget = admin/widget
-// foo_bar = foo_bar
-// U$ser = u_ser
-func (i Ident) File(exts ...string) Ident {
- var parts []string
-
- for _, part := range strings.Split(i.Original, "/") {
- parts = append(parts, flect.Underscore(part))
- }
- return New(strings.Join(parts, "/") + strings.Join(exts, ""))
-}
diff --git a/vendor/github.com/gobuffalo/flect/name/folder.go b/vendor/github.com/gobuffalo/flect/name/folder.go
deleted file mode 100644
index 0f1e5eed1..000000000
--- a/vendor/github.com/gobuffalo/flect/name/folder.go
+++ /dev/null
@@ -1,36 +0,0 @@
-package name
-
-import (
- "regexp"
- "strings"
-)
-
-var alphanum = regexp.MustCompile(`[^a-zA-Z0-9_\-\/]+`)
-
-// Folder creates a suitable folder name
-// admin/widget = admin/widget
-// foo_bar = foo_bar
-// U$ser = u_ser
-func Folder(s string, exts ...string) string {
- return New(s).Folder(exts...).String()
-}
-
-// Folder creates a suitable folder name
-// admin/widget = admin/widget
-// foo_bar = foo/bar
-// U$ser = u/ser
-func (i Ident) Folder(exts ...string) Ident {
- var parts []string
-
- s := i.Original
- if i.Pascalize().String() == s {
- s = i.Underscore().String()
- s = strings.Replace(s, "_", "/", -1)
- }
- for _, part := range strings.Split(s, "/") {
- part = strings.ToLower(part)
- part = alphanum.ReplaceAllString(part, "")
- parts = append(parts, part)
- }
- return New(strings.Join(parts, "/") + strings.Join(exts, ""))
-}
diff --git a/vendor/github.com/gobuffalo/flect/name/ident.go b/vendor/github.com/gobuffalo/flect/name/ident.go
deleted file mode 100644
index 91f5d8bf8..000000000
--- a/vendor/github.com/gobuffalo/flect/name/ident.go
+++ /dev/null
@@ -1,13 +0,0 @@
-package name
-
-import "github.com/gobuffalo/flect"
-
-// Ident represents the string and it's parts
-type Ident struct {
- flect.Ident
-}
-
-// New creates a new Ident from the string
-func New(s string) Ident {
- return Ident{flect.New(s)}
-}
diff --git a/vendor/github.com/gobuffalo/flect/name/join.go b/vendor/github.com/gobuffalo/flect/name/join.go
deleted file mode 100644
index de8488318..000000000
--- a/vendor/github.com/gobuffalo/flect/name/join.go
+++ /dev/null
@@ -1,20 +0,0 @@
-package name
-
-import "path/filepath"
-
-func FilePathJoin(names ...string) string {
- var ni = make([]Ident, len(names))
- for i, n := range names {
- ni[i] = New(n)
- }
- base := New("")
- return base.FilePathJoin(ni...).String()
-}
-
-func (i Ident) FilePathJoin(ni ...Ident) Ident {
- var s = make([]string, len(ni))
- for i, n := range ni {
- s[i] = n.OsPath().String()
- }
- return New(filepath.Join(s...))
-}
diff --git a/vendor/github.com/gobuffalo/flect/name/key.go b/vendor/github.com/gobuffalo/flect/name/key.go
deleted file mode 100644
index 5fbf9ada2..000000000
--- a/vendor/github.com/gobuffalo/flect/name/key.go
+++ /dev/null
@@ -1,14 +0,0 @@
-package name
-
-import (
- "strings"
-)
-
-func Key(s string) string {
- return New(s).Key().String()
-}
-
-func (i Ident) Key() Ident {
- s := strings.Replace(i.String(), "\\", "/", -1)
- return New(strings.ToLower(s))
-}
diff --git a/vendor/github.com/gobuffalo/flect/name/name.go b/vendor/github.com/gobuffalo/flect/name/name.go
deleted file mode 100644
index c90cfb271..000000000
--- a/vendor/github.com/gobuffalo/flect/name/name.go
+++ /dev/null
@@ -1,62 +0,0 @@
-package name
-
-import (
- "encoding"
- "strings"
-
- "github.com/gobuffalo/flect"
-)
-
-// Proper pascalizes and singularizes the string
-// person = Person
-// foo_bar = FooBar
-// admin/widgets = AdminWidget
-func Proper(s string) string {
- return New(s).Proper().String()
-}
-
-// Proper pascalizes and singularizes the string
-// person = Person
-// foo_bar = FooBar
-// admin/widgets = AdminWidget
-func (i Ident) Proper() Ident {
- return Ident{i.Singularize().Pascalize()}
-}
-
-// Group pascalizes and pluralizes the string
-// person = People
-// foo_bar = FooBars
-// admin/widget = AdminWidgets
-func Group(s string) string {
- return New(s).Group().String()
-}
-
-// Group pascalizes and pluralizes the string
-// person = People
-// foo_bar = FooBars
-// admin/widget = AdminWidgets
-func (i Ident) Group() Ident {
- var parts []string
- if len(i.Original) == 0 {
- return i
- }
- last := i.Parts[len(i.Parts)-1]
- for _, part := range i.Parts[:len(i.Parts)-1] {
- parts = append(parts, flect.Pascalize(part))
- }
- last = New(last).Pluralize().Pascalize().String()
- parts = append(parts, last)
- return New(strings.Join(parts, ""))
-}
-
-var _ encoding.TextUnmarshaler = &Ident{}
-var _ encoding.TextMarshaler = &Ident{}
-
-func (i *Ident) UnmarshalText(data []byte) error {
- (*i) = New(string(data))
- return nil
-}
-
-func (i Ident) MarshalText() ([]byte, error) {
- return []byte(i.Original), nil
-}
diff --git a/vendor/github.com/gobuffalo/flect/name/os_path.go b/vendor/github.com/gobuffalo/flect/name/os_path.go
deleted file mode 100644
index 2a85723b4..000000000
--- a/vendor/github.com/gobuffalo/flect/name/os_path.go
+++ /dev/null
@@ -1,21 +0,0 @@
-package name
-
-import (
- "path/filepath"
- "runtime"
- "strings"
-)
-
-func OsPath(s string) string {
- return New(s).OsPath().String()
-}
-
-func (i Ident) OsPath() Ident {
- s := i.String()
- if runtime.GOOS == "windows" {
- s = strings.Replace(s, "/", string(filepath.Separator), -1)
- } else {
- s = strings.Replace(s, "\\", string(filepath.Separator), -1)
- }
- return New(s)
-}
diff --git a/vendor/github.com/gobuffalo/flect/name/package.go b/vendor/github.com/gobuffalo/flect/name/package.go
deleted file mode 100644
index 28f3d18c8..000000000
--- a/vendor/github.com/gobuffalo/flect/name/package.go
+++ /dev/null
@@ -1,35 +0,0 @@
-package name
-
-import (
- "go/build"
- "path/filepath"
- "strings"
-)
-
-// Package will attempt to return a package version of the name
-// $GOPATH/src/foo/bar = foo/bar
-// $GOPATH\src\foo\bar = foo/bar
-// foo/bar = foo/bar
-func Package(s string) string {
- return New(s).Package().String()
-}
-
-// Package will attempt to return a package version of the name
-// $GOPATH/src/foo/bar = foo/bar
-// $GOPATH\src\foo\bar = foo/bar
-// foo/bar = foo/bar
-func (i Ident) Package() Ident {
- c := build.Default
-
- s := i.Original
-
- for _, src := range c.SrcDirs() {
- s = strings.TrimPrefix(s, src)
- s = strings.TrimPrefix(s, filepath.Dir(src)) // encase there's no /src prefix
- }
-
- s = strings.TrimPrefix(s, string(filepath.Separator))
- s = strings.Replace(s, "\\", "/", -1)
- s = strings.Replace(s, "_", "", -1)
- return Ident{New(s).ToLower()}
-}
diff --git a/vendor/github.com/gobuffalo/flect/name/param_id.go b/vendor/github.com/gobuffalo/flect/name/param_id.go
deleted file mode 100644
index 926e42265..000000000
--- a/vendor/github.com/gobuffalo/flect/name/param_id.go
+++ /dev/null
@@ -1,24 +0,0 @@
-package name
-
-import "strings"
-
-// ParamID returns the string as parameter with _id added
-// user = user_id
-// UserID = user_id
-// admin/widgets = admin_widgets_id
-func ParamID(s string) string {
- return New(s).ParamID().String()
-}
-
-// ParamID returns the string as parameter with _id added
-// user = user_id
-// UserID = user_id
-// admin/widgets = admin_widget_id
-func (i Ident) ParamID() Ident {
- s := i.Singularize().Underscore().String()
- s = strings.ToLower(s)
- if strings.HasSuffix(s, "_id") {
- return New(s)
- }
- return New(s + "_id")
-}
diff --git a/vendor/github.com/gobuffalo/flect/name/resource.go b/vendor/github.com/gobuffalo/flect/name/resource.go
deleted file mode 100644
index c79480953..000000000
--- a/vendor/github.com/gobuffalo/flect/name/resource.go
+++ /dev/null
@@ -1,24 +0,0 @@
-package name
-
-import (
- "strings"
-)
-
-// Resource version of a name
-func (n Ident) Resource() Ident {
- name := n.Underscore().String()
- x := strings.FieldsFunc(name, func(r rune) bool {
- return r == '_' || r == '/'
- })
-
- for i, w := range x {
- if i == len(x)-1 {
- x[i] = New(w).Pluralize().Pascalize().String()
- continue
- }
-
- x[i] = New(w).Pascalize().String()
- }
-
- return New(strings.Join(x, ""))
-}
diff --git a/vendor/github.com/gobuffalo/flect/name/tablize.go b/vendor/github.com/gobuffalo/flect/name/tablize.go
deleted file mode 100644
index e03fe2109..000000000
--- a/vendor/github.com/gobuffalo/flect/name/tablize.go
+++ /dev/null
@@ -1,17 +0,0 @@
-package name
-
-// Tableize returns an underscore, pluralized string
-// User = users
-// Person = persons
-// Admin/Widget = admin_widgets
-func Tableize(s string) string {
- return New(s).Tableize().String()
-}
-
-// Tableize returns an underscore, pluralized string
-// User = users
-// Person = persons
-// Admin/Widget = admin_widgets
-func (i Ident) Tableize() Ident {
- return Ident{i.Pluralize().Underscore()}
-}
diff --git a/vendor/github.com/gobuffalo/flect/name/url.go b/vendor/github.com/gobuffalo/flect/name/url.go
deleted file mode 100644
index 1acfcf7c2..000000000
--- a/vendor/github.com/gobuffalo/flect/name/url.go
+++ /dev/null
@@ -1,5 +0,0 @@
-package name
-
-func (n Ident) URL() Ident {
- return Ident{n.File().Pluralize()}
-}
diff --git a/vendor/github.com/gobuffalo/flect/name/var_case.go b/vendor/github.com/gobuffalo/flect/name/var_case.go
deleted file mode 100644
index 734f4087b..000000000
--- a/vendor/github.com/gobuffalo/flect/name/var_case.go
+++ /dev/null
@@ -1,49 +0,0 @@
-package name
-
-// VarCaseSingle version of a name.
-// foo_bar = fooBar
-// admin/widget = adminWidget
-// User = users
-func VarCaseSingle(s string) string {
- return New(s).VarCaseSingle().String()
-}
-
-// VarCaseSingle version of a name.
-// foo_bar = fooBar
-// admin/widget = adminWidget
-// User = users
-func (i Ident) VarCaseSingle() Ident {
- return Ident{i.Group().Singularize().Camelize()}
-}
-
-// VarCasePlural version of a name.
-// foo_bar = fooBars
-// admin/widget = adminWidgets
-// User = users
-func VarCasePlural(s string) string {
- return New(s).VarCasePlural().String()
-}
-
-// VarCasePlural version of a name.
-// foo_bar = fooBars
-// admin/widget = adminWidgets
-// User = users
-func (i Ident) VarCasePlural() Ident {
- return Ident{i.Group().Pluralize().Camelize()}
-}
-
-// VarCase version of a name.
-// foo_bar = fooBar
-// admin/widget = adminWidget
-// Users = users
-func (i Ident) VarCase() Ident {
- return Ident{i.Camelize()}
-}
-
-// VarCase version of a name.
-// foo_bar = fooBar
-// admin/widget = adminWidget
-// Users = users
-func VarCase(s string) string {
- return New(s).VarCase().String()
-}
diff --git a/vendor/github.com/gobuffalo/flect/ordinalize.go b/vendor/github.com/gobuffalo/flect/ordinalize.go
deleted file mode 100644
index 1ce27b3a0..000000000
--- a/vendor/github.com/gobuffalo/flect/ordinalize.go
+++ /dev/null
@@ -1,43 +0,0 @@
-package flect
-
-import (
- "fmt"
- "strconv"
-)
-
-// Ordinalize converts a number to an ordinal version
-// 42 = 42nd
-// 45 = 45th
-// 1 = 1st
-func Ordinalize(s string) string {
- return New(s).Ordinalize().String()
-}
-
-// Ordinalize converts a number to an ordinal version
-// 42 = 42nd
-// 45 = 45th
-// 1 = 1st
-func (i Ident) Ordinalize() Ident {
- number, err := strconv.Atoi(i.Original)
- if err != nil {
- return i
- }
- var s string
- switch abs(number) % 100 {
- case 11, 12, 13:
- s = fmt.Sprintf("%dth", number)
- default:
- switch abs(number) % 10 {
- case 1:
- s = fmt.Sprintf("%dst", number)
- case 2:
- s = fmt.Sprintf("%dnd", number)
- case 3:
- s = fmt.Sprintf("%drd", number)
- }
- }
- if s != "" {
- return New(s)
- }
- return New(fmt.Sprintf("%dth", number))
-}
diff --git a/vendor/github.com/gobuffalo/flect/pascalize.go b/vendor/github.com/gobuffalo/flect/pascalize.go
deleted file mode 100644
index 76f0c6a70..000000000
--- a/vendor/github.com/gobuffalo/flect/pascalize.go
+++ /dev/null
@@ -1,25 +0,0 @@
-package flect
-
-import (
- "unicode"
-)
-
-// Pascalize returns a string with each segment capitalized
-// user = User
-// bob dylan = BobDylan
-// widget_id = WidgetID
-func Pascalize(s string) string {
- return New(s).Pascalize().String()
-}
-
-// Pascalize returns a string with each segment capitalized
-// user = User
-// bob dylan = BobDylan
-// widget_id = WidgetID
-func (i Ident) Pascalize() Ident {
- c := i.Camelize()
- if len(c.String()) == 0 {
- return c
- }
- return New(string(unicode.ToUpper(rune(c.Original[0]))) + c.Original[1:])
-}
diff --git a/vendor/github.com/gobuffalo/flect/plural_rules.go b/vendor/github.com/gobuffalo/flect/plural_rules.go
deleted file mode 100644
index 1ebee22ab..000000000
--- a/vendor/github.com/gobuffalo/flect/plural_rules.go
+++ /dev/null
@@ -1,240 +0,0 @@
-package flect
-
-var pluralRules = []rule{}
-
-// AddPlural adds a rule that will replace the given suffix with the replacement suffix.
-func AddPlural(suffix string, repl string) {
- pluralMoot.Lock()
- defer pluralMoot.Unlock()
- pluralRules = append(pluralRules, rule{
- suffix: suffix,
- fn: func(s string) string {
- s = s[:len(s)-len(suffix)]
- return s + repl
- },
- })
-
- pluralRules = append(pluralRules, rule{
- suffix: repl,
- fn: noop,
- })
-}
-
-var singleToPlural = map[string]string{
- "human": "humans",
- "matrix": "matrices",
- "vertix": "vertices",
- "index": "indices",
- "mouse": "mice",
- "louse": "lice",
- "ress": "resses",
- "ox": "oxen",
- "quiz": "quizzes",
- "series": "series",
- "octopus": "octopi",
- "equipment": "equipment",
- "information": "information",
- "rice": "rice",
- "money": "money",
- "species": "species",
- "fish": "fish",
- "sheep": "sheep",
- "jeans": "jeans",
- "police": "police",
- "dear": "dear",
- "goose": "geese",
- "tooth": "teeth",
- "foot": "feet",
- "bus": "buses",
- "fez": "fezzes",
- "piano": "pianos",
- "halo": "halos",
- "photo": "photos",
- "aircraft": "aircraft",
- "alumna": "alumnae",
- "alumnus": "alumni",
- "analysis": "analyses",
- "antenna": "antennas",
- "antithesis": "antitheses",
- "apex": "apexes",
- "appendix": "appendices",
- "axis": "axes",
- "bacillus": "bacilli",
- "bacterium": "bacteria",
- "basis": "bases",
- "beau": "beaus",
- "bison": "bison",
- "bureau": "bureaus",
- "campus": "campuses",
- "château": "châteaux",
- "codex": "codices",
- "concerto": "concertos",
- "corpus": "corpora",
- "crisis": "crises",
- "curriculum": "curriculums",
- "deer": "deer",
- "diagnosis": "diagnoses",
- "die": "dice",
- "dwarf": "dwarves",
- "ellipsis": "ellipses",
- "erratum": "errata",
- "faux pas": "faux pas",
- "focus": "foci",
- "formula": "formulas",
- "fungus": "fungi",
- "genus": "genera",
- "graffito": "graffiti",
- "grouse": "grouse",
- "half": "halves",
- "hoof": "hooves",
- "hypothesis": "hypotheses",
- "larva": "larvae",
- "libretto": "librettos",
- "loaf": "loaves",
- "locus": "loci",
- "minutia": "minutiae",
- "moose": "moose",
- "nebula": "nebulae",
- "nucleus": "nuclei",
- "oasis": "oases",
- "offspring": "offspring",
- "opus": "opera",
- "parenthesis": "parentheses",
- "phenomenon": "phenomena",
- "phylum": "phyla",
- "prognosis": "prognoses",
- "radius": "radiuses",
- "referendum": "referendums",
- "salmon": "salmon",
- "shrimp": "shrimp",
- "stimulus": "stimuli",
- "stratum": "strata",
- "swine": "swine",
- "syllabus": "syllabi",
- "symposium": "symposiums",
- "synopsis": "synopses",
- "tableau": "tableaus",
- "thesis": "theses",
- "thief": "thieves",
- "trout": "trout",
- "tuna": "tuna",
- "vertebra": "vertebrae",
- "vita": "vitae",
- "vortex": "vortices",
- "wharf": "wharves",
- "wife": "wives",
- "wolf": "wolves",
- "datum": "data",
- "testis": "testes",
- "alias": "aliases",
- "house": "houses",
- "shoe": "shoes",
- "news": "news",
- "ovum": "ova",
- "foo": "foos",
-}
-
-var pluralToSingle = map[string]string{}
-
-func init() {
- for k, v := range singleToPlural {
- pluralToSingle[v] = k
- }
-}
-func init() {
- AddPlural("campus", "campuses")
- AddPlural("man", "men")
- AddPlural("tz", "tzes")
- AddPlural("alias", "aliases")
- AddPlural("oasis", "oasis")
- AddPlural("wife", "wives")
- AddPlural("basis", "basis")
- AddPlural("atum", "ata")
- AddPlural("adium", "adia")
- AddPlural("actus", "acti")
- AddPlural("irus", "iri")
- AddPlural("iterion", "iteria")
- AddPlural("dium", "diums")
- AddPlural("ovum", "ova")
- AddPlural("ize", "izes")
- AddPlural("dge", "dges")
- AddPlural("focus", "foci")
- AddPlural("child", "children")
- AddPlural("oaf", "oaves")
- AddPlural("randum", "randa")
- AddPlural("base", "bases")
- AddPlural("atus", "atuses")
- AddPlural("ode", "odes")
- AddPlural("person", "people")
- AddPlural("va", "vae")
- AddPlural("leus", "li")
- AddPlural("oot", "eet")
- AddPlural("oose", "eese")
- AddPlural("box", "boxes")
- AddPlural("ium", "ia")
- AddPlural("sis", "ses")
- AddPlural("nna", "nnas")
- AddPlural("eses", "esis")
- AddPlural("stis", "stes")
- AddPlural("ex", "ices")
- AddPlural("ula", "ulae")
- AddPlural("isis", "ises")
- AddPlural("ouses", "ouse")
- AddPlural("olves", "olf")
- AddPlural("lf", "lves")
- AddPlural("rf", "rves")
- AddPlural("afe", "aves")
- AddPlural("bfe", "bves")
- AddPlural("cfe", "cves")
- AddPlural("dfe", "dves")
- AddPlural("efe", "eves")
- AddPlural("gfe", "gves")
- AddPlural("hfe", "hves")
- AddPlural("ife", "ives")
- AddPlural("jfe", "jves")
- AddPlural("kfe", "kves")
- AddPlural("lfe", "lves")
- AddPlural("mfe", "mves")
- AddPlural("nfe", "nves")
- AddPlural("ofe", "oves")
- AddPlural("pfe", "pves")
- AddPlural("qfe", "qves")
- AddPlural("rfe", "rves")
- AddPlural("sfe", "sves")
- AddPlural("tfe", "tves")
- AddPlural("ufe", "uves")
- AddPlural("vfe", "vves")
- AddPlural("wfe", "wves")
- AddPlural("xfe", "xves")
- AddPlural("yfe", "yves")
- AddPlural("zfe", "zves")
- AddPlural("hive", "hives")
- AddPlural("quy", "quies")
- AddPlural("by", "bies")
- AddPlural("cy", "cies")
- AddPlural("dy", "dies")
- AddPlural("fy", "fies")
- AddPlural("gy", "gies")
- AddPlural("hy", "hies")
- AddPlural("jy", "jies")
- AddPlural("ky", "kies")
- AddPlural("ly", "lies")
- AddPlural("my", "mies")
- AddPlural("ny", "nies")
- AddPlural("py", "pies")
- AddPlural("qy", "qies")
- AddPlural("ry", "ries")
- AddPlural("sy", "sies")
- AddPlural("ty", "ties")
- AddPlural("vy", "vies")
- AddPlural("wy", "wies")
- AddPlural("xy", "xies")
- AddPlural("zy", "zies")
- AddPlural("x", "xes")
- AddPlural("ch", "ches")
- AddPlural("ss", "sses")
- AddPlural("sh", "shes")
- AddPlural("oe", "oes")
- AddPlural("io", "ios")
- AddPlural("o", "oes")
-}
diff --git a/vendor/github.com/gobuffalo/flect/pluralize.go b/vendor/github.com/gobuffalo/flect/pluralize.go
deleted file mode 100644
index 1b9d43e46..000000000
--- a/vendor/github.com/gobuffalo/flect/pluralize.go
+++ /dev/null
@@ -1,49 +0,0 @@
-package flect
-
-import (
- "strings"
- "sync"
-)
-
-var pluralMoot = &sync.RWMutex{}
-
-// Pluralize returns a plural version of the string
-// user = users
-// person = people
-// datum = data
-func Pluralize(s string) string {
- return New(s).Pluralize().String()
-}
-
-// Pluralize returns a plural version of the string
-// user = users
-// person = people
-// datum = data
-func (i Ident) Pluralize() Ident {
- s := i.Original
- if len(s) == 0 {
- return New("")
- }
-
- pluralMoot.RLock()
- defer pluralMoot.RUnlock()
-
- ls := strings.ToLower(s)
- if _, ok := pluralToSingle[ls]; ok {
- return i
- }
- if p, ok := singleToPlural[ls]; ok {
- return New(p)
- }
- for _, r := range pluralRules {
- if strings.HasSuffix(ls, r.suffix) {
- return New(r.fn(s))
- }
- }
-
- if strings.HasSuffix(ls, "s") {
- return i
- }
-
- return New(i.String() + "s")
-}
diff --git a/vendor/github.com/gobuffalo/flect/rule.go b/vendor/github.com/gobuffalo/flect/rule.go
deleted file mode 100644
index dc616b337..000000000
--- a/vendor/github.com/gobuffalo/flect/rule.go
+++ /dev/null
@@ -1,10 +0,0 @@
-package flect
-
-type ruleFn func(string) string
-
-type rule struct {
- suffix string
- fn ruleFn
-}
-
-func noop(s string) string { return s }
diff --git a/vendor/github.com/gobuffalo/flect/singular_rules.go b/vendor/github.com/gobuffalo/flect/singular_rules.go
deleted file mode 100644
index 14b471cd0..000000000
--- a/vendor/github.com/gobuffalo/flect/singular_rules.go
+++ /dev/null
@@ -1,122 +0,0 @@
-package flect
-
-var singularRules = []rule{}
-
-// AddSingular adds a rule that will replace the given suffix with the replacement suffix.
-func AddSingular(ext string, repl string) {
- singularMoot.Lock()
- defer singularMoot.Unlock()
- singularRules = append(singularRules, rule{
- suffix: ext,
- fn: func(s string) string {
- s = s[:len(s)-len(ext)]
- return s + repl
- },
- })
-
- singularRules = append(singularRules, rule{
- suffix: repl,
- fn: func(s string) string {
- return s
- },
- })
-}
-
-func init() {
- AddSingular("ria", "rion")
- AddSingular("news", "news")
- AddSingular("halves", "half")
- AddSingular("appendix", "appendix")
- AddSingular("zzes", "zz")
- AddSingular("ulas", "ula")
- AddSingular("psis", "pse")
- AddSingular("genus", "genera")
- AddSingular("phyla", "phylum")
- AddSingular("odice", "odex")
- AddSingular("oxen", "ox")
- AddSingular("ianos", "iano")
- AddSingular("ulus", "uli")
- AddSingular("mice", "mouse")
- AddSingular("ouses", "ouse")
- AddSingular("mni", "mnus")
- AddSingular("ocus", "oci")
- AddSingular("shoes", "shoe")
- AddSingular("oasis", "oasis")
- AddSingular("lice", "louse")
- AddSingular("men", "man")
- AddSingular("ta", "tum")
- AddSingular("ia", "ium")
- AddSingular("tives", "tive")
- AddSingular("ldren", "ld")
- AddSingular("people", "person")
- AddSingular("aves", "afe")
- AddSingular("uses", "us")
- AddSingular("bves", "bfe")
- AddSingular("cves", "cfe")
- AddSingular("dves", "dfe")
- AddSingular("eves", "efe")
- AddSingular("gves", "gfe")
- AddSingular("hves", "hfe")
- AddSingular("chives", "chive")
- AddSingular("ives", "ife")
- AddSingular("movies", "movie")
- AddSingular("jeans", "jeans")
- AddSingular("cesses", "cess")
- AddSingular("cess", "cess")
- AddSingular("acti", "actus")
- AddSingular("itzes", "itz")
- AddSingular("usses", "uss")
- AddSingular("uss", "uss")
- AddSingular("jves", "jfe")
- AddSingular("kves", "kfe")
- AddSingular("mves", "mfe")
- AddSingular("nves", "nfe")
- AddSingular("moves", "move")
- AddSingular("oves", "ofe")
- AddSingular("pves", "pfe")
- AddSingular("qves", "qfe")
- AddSingular("sves", "sfe")
- AddSingular("tves", "tfe")
- AddSingular("uves", "ufe")
- AddSingular("vves", "vfe")
- AddSingular("wves", "wfe")
- AddSingular("xves", "xfe")
- AddSingular("yves", "yfe")
- AddSingular("zves", "zfe")
- AddSingular("hives", "hive")
- AddSingular("lves", "lf")
- AddSingular("rves", "rf")
- AddSingular("quies", "quy")
- AddSingular("bies", "by")
- AddSingular("cies", "cy")
- AddSingular("dies", "dy")
- AddSingular("fies", "fy")
- AddSingular("gies", "gy")
- AddSingular("hies", "hy")
- AddSingular("jies", "jy")
- AddSingular("kies", "ky")
- AddSingular("lies", "ly")
- AddSingular("mies", "my")
- AddSingular("nies", "ny")
- AddSingular("pies", "py")
- AddSingular("qies", "qy")
- AddSingular("ries", "ry")
- AddSingular("sies", "sy")
- AddSingular("ties", "ty")
- AddSingular("vies", "vy")
- AddSingular("wies", "wy")
- AddSingular("xies", "xy")
- AddSingular("zies", "zy")
- AddSingular("xes", "x")
- AddSingular("ches", "ch")
- AddSingular("sses", "ss")
- AddSingular("shes", "sh")
- AddSingular("oes", "o")
- AddSingular("ress", "ress")
- AddSingular("iri", "irus")
- AddSingular("irus", "irus")
- AddSingular("tuses", "tus")
- AddSingular("tus", "tus")
- AddSingular("s", "")
- AddSingular("ss", "ss")
-}
diff --git a/vendor/github.com/gobuffalo/flect/singularize.go b/vendor/github.com/gobuffalo/flect/singularize.go
deleted file mode 100644
index a08cbd586..000000000
--- a/vendor/github.com/gobuffalo/flect/singularize.go
+++ /dev/null
@@ -1,44 +0,0 @@
-package flect
-
-import (
- "strings"
- "sync"
-)
-
-var singularMoot = &sync.RWMutex{}
-
-// Singularize returns a singular version of the string
-// users = user
-// data = datum
-// people = person
-func Singularize(s string) string {
- return New(s).Singularize().String()
-}
-
-// Singularize returns a singular version of the string
-// users = user
-// data = datum
-// people = person
-func (i Ident) Singularize() Ident {
- s := i.Original
- if len(s) == 0 {
- return i
- }
-
- singularMoot.RLock()
- defer singularMoot.RUnlock()
- ls := strings.ToLower(s)
- if p, ok := pluralToSingle[ls]; ok {
- return New(p)
- }
- if _, ok := singleToPlural[ls]; ok {
- return i
- }
- for _, r := range singularRules {
- if strings.HasSuffix(ls, r.suffix) {
- return New(r.fn(s))
- }
- }
-
- return i
-}
diff --git a/vendor/github.com/gobuffalo/flect/titleize.go b/vendor/github.com/gobuffalo/flect/titleize.go
deleted file mode 100644
index cbbf08a5a..000000000
--- a/vendor/github.com/gobuffalo/flect/titleize.go
+++ /dev/null
@@ -1,30 +0,0 @@
-package flect
-
-import (
- "strings"
- "unicode"
-)
-
-// Titleize will capitalize the start of each part
-// "Nice to see you!" = "Nice To See You!"
-// "i've read a book! have you?" = "I've Read A Book! Have You?"
-// "This is `code` ok" = "This Is `code` OK"
-func Titleize(s string) string {
- return New(s).Titleize().String()
-}
-
-// Titleize will capitalize the start of each part
-// "Nice to see you!" = "Nice To See You!"
-// "i've read a book! have you?" = "I've Read A Book! Have You?"
-// "This is `code` ok" = "This Is `code` OK"
-func (i Ident) Titleize() Ident {
- var parts []string
- for _, part := range i.Parts {
- x := string(unicode.ToTitle(rune(part[0])))
- if len(part) > 1 {
- x += part[1:]
- }
- parts = append(parts, x)
- }
- return New(strings.Join(parts, " "))
-}
diff --git a/vendor/github.com/gobuffalo/flect/underscore.go b/vendor/github.com/gobuffalo/flect/underscore.go
deleted file mode 100644
index b92488aa0..000000000
--- a/vendor/github.com/gobuffalo/flect/underscore.go
+++ /dev/null
@@ -1,34 +0,0 @@
-package flect
-
-import (
- "strings"
- "unicode"
-)
-
-// Underscore a string
-// bob dylan = bob_dylan
-// Nice to see you! = nice_to_see_you
-// widgetID = widget_id
-func Underscore(s string) string {
- return New(s).Underscore().String()
-}
-
-// Underscore a string
-// bob dylan = bob_dylan
-// Nice to see you! = nice_to_see_you
-// widgetID = widget_id
-func (i Ident) Underscore() Ident {
- var out []string
- for _, part := range i.Parts {
- var x string
- for _, c := range part {
- if unicode.IsLetter(c) || unicode.IsDigit(c) {
- x += string(c)
- }
- }
- if x != "" {
- out = append(out, x)
- }
- }
- return New(strings.ToLower(strings.Join(out, "_")))
-}
diff --git a/vendor/github.com/gobuffalo/flect/version.go b/vendor/github.com/gobuffalo/flect/version.go
deleted file mode 100644
index b5f62170d..000000000
--- a/vendor/github.com/gobuffalo/flect/version.go
+++ /dev/null
@@ -1,4 +0,0 @@
-package flect
-
-//Version holds Flect version number
-const Version = "v0.0.1"
diff --git a/vendor/github.com/gobuffalo/genny/.codeclimate.yml b/vendor/github.com/gobuffalo/genny/.codeclimate.yml
deleted file mode 100644
index 3d77930c2..000000000
--- a/vendor/github.com/gobuffalo/genny/.codeclimate.yml
+++ /dev/null
@@ -1,14 +0,0 @@
----
-version: "2"
-plugins:
- golint:
- enabled: true
- checks:
- GoLint/Naming/MixedCaps:
- enabled: false
- govet:
- enabled: true
- gofmt:
- enabled: true
- fixme:
- enabled: true
diff --git a/vendor/github.com/gobuffalo/genny/.gitignore b/vendor/github.com/gobuffalo/genny/.gitignore
deleted file mode 100644
index 368971859..000000000
--- a/vendor/github.com/gobuffalo/genny/.gitignore
+++ /dev/null
@@ -1,29 +0,0 @@
-*.log
-.DS_Store
-doc
-tmp
-pkg
-*.gem
-*.pid
-coverage
-coverage.data
-build/*
-*.pbxuser
-*.mode1v3
-.svn
-profile
-.console_history
-.sass-cache/*
-.rake_tasks~
-*.log.lck
-solr/
-.jhw-cache/
-jhw.*
-*.sublime*
-node_modules/
-dist/
-generated/
-.vendor/
-bin/*
-gin-bin
-.idea/
diff --git a/vendor/github.com/gobuffalo/genny/.gometalinter.json b/vendor/github.com/gobuffalo/genny/.gometalinter.json
deleted file mode 100644
index e4f65a36e..000000000
--- a/vendor/github.com/gobuffalo/genny/.gometalinter.json
+++ /dev/null
@@ -1,3 +0,0 @@
-{
- "Enable": ["vet", "golint", "goimports", "deadcode", "gotype", "ineffassign", "misspell", "nakedret", "unconvert", "megacheck", "varcheck"]
-}
diff --git a/vendor/github.com/gobuffalo/genny/.goreleaser.yml b/vendor/github.com/gobuffalo/genny/.goreleaser.yml
deleted file mode 100644
index ba2dc82ce..000000000
--- a/vendor/github.com/gobuffalo/genny/.goreleaser.yml
+++ /dev/null
@@ -1,28 +0,0 @@
-builds:
--
- goos:
- - darwin
- - linux
- - windows
- env:
- - CGO_ENABLED=0
- # main: ./genny/main.go
- # binary: {{.Binary}}
- # hooks:
- # pre: packr
- # post: packr clean
-
-checksum:
- name_template: 'checksums.txt'
-snapshot:
- name_template: "{{ .Tag }}-next"
-changelog:
- sort: asc
- filters:
- exclude:
- - '^docs:'
- - '^test:'
-brew:
- github:
- owner: markbates
- name: homebrew-tap
diff --git a/vendor/github.com/gobuffalo/genny/.travis.yml b/vendor/github.com/gobuffalo/genny/.travis.yml
deleted file mode 100644
index 1fb041a25..000000000
--- a/vendor/github.com/gobuffalo/genny/.travis.yml
+++ /dev/null
@@ -1,36 +0,0 @@
-language: go
-
-sudo: false
-
-matrix:
- include:
- - os: linux
- go: "1.9.x"
- - os: windows
- go: "1.9.x"
- - os: linux
- go: "1.10.x"
- - os: windows
- go: "1.10.x"
- - os: linux
- go: "1.11.x"
- env:
- - GO111MODULE=off
- - os: windows
- go: "1.11.x"
- env:
- - GO111MODULE=off
- - os: linux
- go: "1.11.x"
- env:
- - GO111MODULE=on
- - os: windows
- go: "1.11.x"
- env:
- - GO111MODULE=on
-
-install: false
-
-script:
- - go get -v -t ./...
- - go test -v -timeout=5s -race ./...
diff --git a/vendor/github.com/gobuffalo/genny/LICENSE.txt b/vendor/github.com/gobuffalo/genny/LICENSE.txt
deleted file mode 100644
index 123ddc0d8..000000000
--- a/vendor/github.com/gobuffalo/genny/LICENSE.txt
+++ /dev/null
@@ -1,8 +0,0 @@
-The MIT License (MIT)
-Copyright (c) 2018 Mark Bates
-
-Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
diff --git a/vendor/github.com/gobuffalo/genny/Makefile b/vendor/github.com/gobuffalo/genny/Makefile
deleted file mode 100644
index 2eb0cd95c..000000000
--- a/vendor/github.com/gobuffalo/genny/Makefile
+++ /dev/null
@@ -1,53 +0,0 @@
-TAGS ?= "sqlite"
-GO_BIN ?= go
-
-install:
- packr2
- $(GO_BIN) install -v ./genny
-
-tidy:
-ifeq ($(GO111MODULE),on)
- $(GO_BIN) mod tidy
-else
- echo skipping go mod tidy
-endif
-
-deps:
- $(GO_BIN) get github.com/gobuffalo/release
- $(GO_BIN) get github.com/gobuffalo/packr/v2/packr2
- $(GO_BIN) get -tags ${TAGS} -t ./...
- make tidy
-
-build:
- packr2
- $(GO_BIN) build -v .
- make tidy
-
-test:
- packr2
- $(GO_BIN) test -tags ${TAGS} ./...
- make tidy
-
-ci-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
- make tidy
-
-lint:
- gometalinter --vendor ./... --deadline=1m --skip=internal
-
-update:
- packr2 clean
- $(GO_BIN) get -u -tags ${TAGS}
- make tidy
- packr2
- make test
- make install
- make tidy
-
-release-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
-
-release:
- make tidy
- release -y -f version.go
- make tidy
diff --git a/vendor/github.com/gobuffalo/genny/README.md b/vendor/github.com/gobuffalo/genny/README.md
deleted file mode 100644
index f1e4f2aae..000000000
--- a/vendor/github.com/gobuffalo/genny/README.md
+++ /dev/null
@@ -1,497 +0,0 @@
-
-
-
-
-
-
-
-
-# Genny
-
-## What Is Genny?
-
-Genny is a _framework_ for writing modular generators, it however, doesn't actually generate anything. It just makes it easier for you to. :)
-
-## Core Concepts
-
-### Generators
-
-A [`github.com/gobuffalo/genny#Generator`](https://godoc.org/github.com/gobuffalo/genny#Generator) is used to build a blue print of what you want to generate.
-
-A few of things that can be added to a `Generator` are:
-
-* [`github.com/gobuffalo/genny#File`](https://godoc.org/github.com/gobuffalo/genny#File)
-* [`os/exec#Cmd`](https://godoc.org/os/exec#Cmd)
-* [`github.com/gobuffalo/packd#Box`](https://godoc.org/github.com/gobuffalo/packd#Box)
-* [`net/http#Request`](https://godoc.org/net/http#Request)
-* and more
-
-A [`github.com/gobuffalo/genny#Generator`](https://godoc.org/github.com/gobuffalo/genny#Generator) does *not* actually generate anything; a [`github.com/gobuffalo/genny#Runner`](https://godoc.org/github.com/gobuffalo/genny#Runner) is needed to run the generator.
-
-```go
-g := genny.New()
-
-// add a file
-g.File(genny.NewFileS("index.html", "Hello\n"))
-
-// execute a command
-g.Command(exec.Command("go", "env"))
-
-// run a function at run time
-g.RunFn(func(r *genny.Runner) error {
- // look for the `genny` executable
- if _, err := r.LookPath("genny"); err != nil {
- // it wasn't found, so install it
- c := gogen.Get("github.com/gobuffalo/genny/genny")
- if err := r.Exec(c); err != nil {
- return err
- }
- }
- // call the `genny` executable with the `-h` flag.
- return r.Exec(exec.Command("genny", "-h"))
-})
-```
-
-When a [`github.com/gobuffalo/genny#Generator`](https://godoc.org/github.com/gobuffalo/genny#Generator) is run each item that was added to it will be run in FIFO order. In the above example this means the following will happen:
-
-1. Create a new file `r.Root/index.html`
-1. Run the command `go env`
-1. Run a function that installs `genny`
-
-#### Runtime Checks
-
-Genny has two different components; the "generator" (or blueprint) and the "runner" which executes the generator. Often it is necessary to only run certain code when the generator is run, not built. For example, checking the existing of an executable and installing it if missing.
-
-In these situations you will want to use a [`github.com/gobuffalo/genny#RunFn`](https://godoc.org/github.com/gobuffalo/genny#RunFn) function.
-
-In this example at runtime the `RunFn` will be called given the `*Runner` that is calling it. When called the function will ask the [`github.com/gobuffalo/genny#Runner.LookPath`](https://godoc.org/github.com/gobuffalo/genny#Runner.LookPath) function to ask the location of the `genny` executable.
-
-In [`github.com/gobuffalo/genny#DryRunner`](https://godoc.org/github.com/gobuffalo/genny#DryRunner) this will simply echo back the name of the executable that has been asked for, in this case `return "genny", nil`.
-
-In [`github.com/gobuffalo/genny#WetRunner`](https://godoc.org/github.com/gobuffalo/genny#WetRunner) this will call the [`os/exec#LookPath`](https://godoc.org/os/exec#LookPath) and return its results.
-
-If the `genny` binary is not found, it will attempt to install it. Should that succeed the method returns the execution of a call to `genny -h`.
-
-```go
-g.RunFn(func(r *genny.Runner) error {
- // look for the `genny` executable
- if _, err := r.LookPath("genny"); err != nil {
- // it wasn't found, so install it
- c := gogen.Get("github.com/gobuffalo/genny/genny")
- if err := r.Exec(c); err != nil {
- return err
- }
- }
- // call the `genny` executable with the `-h` flag.
- return r.Exec(exec.Command("genny", "-h"))
-})
-```
-
-The flexibility of the `*Fn` functions, combined with [`github.com/gobuffalo/genny#RunFn`](https://godoc.org/github.com/gobuffalo/genny#RunFn) make for a powerful testing combination.
-
-### Runners
-
-A [`github.com/gobuffalo/genny#Runner`](https://godoc.org/github.com/gobuffalo/genny#Runner) is used to run generators and control the environment in which those generators are run.
-
-Genny ships with three implementations of `Runner` that cover _most_ situations. They can also provide good starting points for customized implementations of `Runner`.
-
-* [`github.com/gobuffalo/genny#DryRunner`](https://godoc.org/github.com/gobuffalo/genny#DryRunner)
-* [`github.com/gobuffalo/genny#WetRunner`](https://godoc.org/github.com/gobuffalo/genny#WetRunner)
-* [`github.com/gobuffalo/genny/gentest#NewRunner`](https://godoc.org/github.com/gobuffalo/genny/gentest#NewRunner)
-
-#### Adding Generators
-
-To add a [`github.com/gobuffalo/genny#Generator`](https://godoc.org/github.com/gobuffalo/genny#Generator) to a [`github.com/gobuffalo/genny#Runner`](https://godoc.org/github.com/gobuffalo/genny#Runner) the [`github.com/gobuffalo/genny#Runner.With`](https://godoc.org/github.com/gobuffalo/genny#Runner.With) function can be used.
-
-```go
-run := genny.DryRunner(context.Background())
-
-// add a generator from the `simple` package
-g := simple.New()
-run.With(g)
-
-// add a generator from the `notsimple` package
-g := notsimple.New()
-run.With(g)
-```
-
-Each [`github.com/gobuffalo/genny#Generator`](https://godoc.org/github.com/gobuffalo/genny#Generator) is run in FIFO order in which it was added to the [`github.com/gobuffalo/genny#Runner`](https://godoc.org/github.com/gobuffalo/genny#Runner).
-
-It is common to have a function that builds a new [`github.com/gobuffalo/genny#Generator`](https://godoc.org/github.com/gobuffalo/genny#Generator) or returns an `error` if there was a problem.
-
-```go
-func New() (*genny.Generator, error) {
- g := simple.New()
- // do work which might error
- return g, nil
-}
-```
-
-The [`github.com/gobuffalo/genny#Runner.WithNew`](https://godoc.org/github.com/gobuffalo/genny#Runner.WithNew) function was designed to make adding a [`github.com/gobuffalo/genny#Generator`](https://godoc.org/github.com/gobuffalo/genny#Generator) with this return argument signature easier.
-
-```go
-if err := run.WithNew(New()); err != nil {
- log.Fatal(err)
-}
-```
-
-#### Dry Running (**NON-DESTRUCTIVE**)
-
-The idea of "dry" running means that no commands are executed, no files are written to disk, no HTTP requests are made, etc... Instead these steps are run "dry", which in the case of [`github.com/gobuffalo/genny#DryRunner`](https://godoc.org/github.com/gobuffalo/genny#DryRunner) is the case.
-
-```go
-func main() {
- run := genny.DryRunner(context.Background())
-
- g := simple.New()
- run.With(g)
-
- if err := run.Run(); err != nil {
- log.Fatal(err)
- }
-}
-```
-
-```plain
-// output
-DEBU[2018-12-06T15:13:47-05:00] Step: 4eac628c
-DEBU[2018-12-06T15:13:47-05:00] Chdir: /go/src/github.com/gobuffalo/genny/internal/_examples/dry
-DEBU[2018-12-06T15:13:47-05:00] File: /go/src/github.com/gobuffalo/genny/internal/_examples/dry/index.html
-DEBU[2018-12-06T15:13:47-05:00] Exec: go env
-DEBU[2018-12-06T15:13:47-05:00] LookPath: genny
-DEBU[2018-12-06T15:13:47-05:00] Exec: genny -h
-```
-
-```bash
-// file list
-.
-└── main.go
-
-0 directories, 1 file
-```
-
-Using a "dry" runner can make testing easier when you don't have to worry about commands running, files being written, etc... It can also make it easy to provide a "dry-run" flag to your generators to let people see what will be generated when the generator is run for real.
-
-#### Wet Running (**DESTRUCTIVE**)
-
-While "dry" means to not execute commands or write files, "wet" running means the exact opposite; it will write files and execute commands.
-
-Use the [`github.com/gobuffalo/genny#WetRunner`](https://godoc.org/github.com/gobuffalo/genny#WetRunner) when "wet" running is the desired outcome.
-
-```go
-func main() {
- run := genny.WetRunner(context.Background())
-
- g := simple.New()
- run.With(g)
-
- if err := run.Run(); err != nil {
- log.Fatal(err)
- }
-}
-```
-
-```plain
-GOARCH="amd64"
-GOBIN=""
-// ...
-A brief description of your application
-
-Usage:
- genny [command]
-
-Available Commands:
- help Help about any command
- new generates a new genny stub
-
-Flags:
- -h, --help help for genny
-
-Use "genny [command] --help" for more information about a command.
-```
-
-```bash
-// file list
-.
-├── index.html
-└── main.go
-
-0 directories, 2 files
-```
-
-```bash
-$ cat index.html
-
-Hello
-```
-
-#### Changing Runner Behavior
-
-The change the way [`github.com/gobuffalo/genny#DryRunner`](https://godoc.org/github.com/gobuffalo/genny#DryRunner) or [`github.com/gobuffalo/genny#WetRunner`](https://godoc.org/github.com/gobuffalo/genny#WetRunner) work, or to build your own [`github.com/gobuffalo/genny#Runner`](https://godoc.org/github.com/gobuffalo/genny#Runner) you need to implement the `*Fn` attributes on the [`github.com/gobuffalo/genny#Runner`](https://godoc.org/github.com/gobuffalo/genny#Runner).
-
-```go
-type Runner struct {
- // ...
- ExecFn func(*exec.Cmd) error // function to use when executing files
- FileFn func(File) (File, error) // function to use when writing files
- ChdirFn func(string, func() error) error // function to use when changing directories
- DeleteFn func(string) error // function used to delete files/folders
- RequestFn func(*http.Request, *http.Client) (*http.Response, error) // function used to make http requests
- LookPathFn func(string) (string, error) // function used to make exec.LookPath lookups
- // ...
-}
-```
-
-These `*Fn` functions represent the **FINAL** end-point for the that is trying to be run.
-
-Here are two implementations of the [`github.com/gobuffalo/genny#Runner.FileFn`](https://godoc.org/github.com/gobuffalo/genny#Runner.FileFn) function.
-
-The first will result in the file being printed to the screen. The second implementation writes the file to disk.
-
-```go
-run.FileFn = func(f packd.SimpleFile) (packd.SimpleFile, error) {
- io.Copy(os.Stdout, f)
- return f, nil
-}
-
-run.FileFn = func(f genny.File) (genny.File, error) {
- if d, ok := f.(genny.Dir); ok {
- if err := os.MkdirAll(d.Name(), d.Perm); err != nil {
- return f, err
- }
- return d, nil
- }
-
- name := f.Name()
- if !filepath.IsAbs(name) {
- name = filepath.Join(run.Root, name)
- }
- dir := filepath.Dir(name)
- if err := os.MkdirAll(dir, 0755); err != nil {
- return f, err
- }
- ff, err := os.Create(name)
- if err != nil {
- return f, err
- }
- defer ff.Close()
- if _, err := io.Copy(ff, f); err != nil {
- return f, err
- }
- return f, nil
-}
-```
-
-### Files
-
-Working with files, both creating new ones as well as, existing ones, is a core component of writing a generator. Genny understands this and offers several ways of working with files that is flexible and helps to make writing and testing your generators easier.
-
-The [`github.com/gobuffalo/genny#File`](https://godoc.org/github.com/gobuffalo/genny#File) interface is the heart of working with files in Genny.
-
-Genny ships with several convenience method for creating a [`github.com/gobuffalo/genny#File`](https://godoc.org/github.com/gobuffalo/genny#File).
-
-* [`github.com/gobuffalo/genny#NewFile`](https://godoc.org/github.com/gobuffalo/genny#NewFile)
-* [`github.com/gobuffalo/genny#NewFileS`](https://godoc.org/github.com/gobuffalo/genny#NewFileS)
-* [`github.com/gobuffalo/genny#NewFileB`](https://godoc.org/github.com/gobuffalo/genny#NewFileB)
-* [`github.com/gobuffalo/genny#NewDir`](https://godoc.org/github.com/gobuffalo/genny#NewDir)
-
-#### Writing Files
-
-To write a file you can add a [`github.com/gobuffalo/genny#File`](https://godoc.org/github.com/gobuffalo/genny#File) to your [`github.com/gobuffalo/genny#Generator.File`](https://godoc.org/github.com/gobuffalo/genny#Generator.File) and your file will then be handled by your `*Runner` when your generator is run.
-
-```go
-g.File(genny.NewFile("index.html", strings.NewReader("Hello\n")))
-g.File(genny.NewFileS("strings/string.html", "Hello\n"))
-g.File(genny.NewFileB("bytes/byte.html", []byte("Hello\n")))
-```
-
-In the case of [`github.com/gobuffalo/genny#WetRunner`](https://godoc.org/github.com/gobuffalo/genny#WetRunner) will attemp to create any directories your files require.
-
-#### Reading Files
-
-When writing generators you may need to read an existing file, perhaps to modify it, or perhaps read it's contents. This presents a problem in generators.
-
-The first problem is that anytime we have to read files from disk, we make testing more difficult.
-
-The bigger problems, however, present themselves more with "dry" runners (for example testing), than they do with "wet" runners.
-
-If generator `A` creates a new file and generator `B` wants to modify that file in testing and "dry" runners this is a problem as the file may not present on disk for generator `B` to access.
-
-To work around this issue Genny has the concept of a [`github.com/gobuffalo/genny#Disk`](https://godoc.org/github.com/gobuffalo/genny#Disk).
-
-Now, instead of asking for the file directly from the file system, we can ask for it from the [`github.com/gobuffalo/genny#Runner.Disk`](https://godoc.org/github.com/gobuffalo/genny#Runner.Disk) instead.
-
-```go
-g.RunFn(func(r *genny.Runner) error {
- // try to find main.go either in the virtual "disk"
- // or the physical one
- f, err := r.Disk.Find("main.go")
- if err != nil {
- return err
- }
- // print the contents of the file
- fmt.Println(f.String())
- return nil
-})
-```
-
-When asking for files from [`github.com/gobuffalo/genny#Runner.Disk`](https://godoc.org/github.com/gobuffalo/genny#Runner.Disk) it will first check its internal cache for the file, returning it if found. If the file is not in the cache, then it try to read it from disk at `filepath.Join(r.Root, name)`.
-
-#### Transforming Files
-
-There are times that you may need to transform either certain files, or all files. This could be as simple as replacing a variable in a template's name to match some user input, or something more complex, such as running any templates with a given extension through a certain template engine.
-
-The [`github.com/gobuffalo/genny#Transformer`](https://godoc.org/github.com/gobuffalo/genny#Transformer) type can be used to implement these types of file transformations.
-
-To create a new [`github.com/gobuffalo/genny#Transformer`](https://godoc.org/github.com/gobuffalo/genny#Transformer) you can use the [`github.com/gobuffalo/genny#NewTransformer`](https://godoc.org/github.com/gobuffalo/genny#NewTransformer) function.
-
-The example below is taken from the [`github.com/gobuffalo/plushgen`](https://godoc.org/github.com/gobuffalo/plushgen) package.
-
-```go
-// Transformer will plushify any file that has a ".plush" extension
-func Transformer(ctx *plush.Context) genny.Transformer {
- t := genny.NewTransformer(".plush", func(f genny.File) (genny.File, error) {
- s, err := plush.RenderR(f, ctx)
- if err != nil {
- return f, errors.Wrap(err, f.Name())
- }
- return genny.NewFileS(f.Name(), s), nil
- })
- t.StripExt = true
- return t
-}
-```
-
-The [`github.com/gobuffalo/genny#Transformer`](https://godoc.org/github.com/gobuffalo/genny#Transformer) that is returned in the example will only be run on files that have a `.plush` extension in their name.
-
-Should a file have a `.plush` extension, it will be sent to [`github.com/gobuffalo/plush`](https://godoc.org/github.com/gobuffalo/plush) to be rendered. The result of that rendering is returned as a new [`github.com/gobuffalo/genny#File`](https://godoc.org/github.com/gobuffalo/genny#File). Finally, the extension `.plush` will be stripped from the file name.
-
-```go
-g := genny.New()
-
-// add a file
-g.File(genny.NewFileS("index.html.plush", "Hello <%= name %>\n"))
-
-// add the plush transformer
-ctx := plush.NewContext()
-ctx.Set("name", "World")
-g.Transformer(plushgen.Transformer(ctx))
-```
-
-```plain
-// output
-DEBU[2018-12-07T10:35:56-05:00] Step: 09c9663e
-DEBU[2018-12-07T10:35:56-05:00] Chdir: /go/src/github.com/gobuffalo/genny/internal/_examples/dry
-DEBU[2018-12-07T10:35:56-05:00] File: /go/src/github.com/gobuffalo/genny/internal/_examples/dry/index.html
-Hello World
-```
-
-### Testing
-
-Testing a generator can be difficult because creating, deleting, and modifying files can be painful to handle during testing. The same can be said of running functions and HTTP requests.
-
-The `*Fn` attributes on [`github.com/gobuffalo/genny#Runner`](https://godoc.org/github.com/gobuffalo/genny#Runner) make it simplier to mock out different test cases.
-
-Most of the time the out of the box defaults are "good enough" for testing. The [`github.com/gobuffalo/genny/gentest`](https://godoc.org/github.com/gobuffalo/genny/gentest) package offers several helpers to simplify testing further.
-
-In this example we test the "happy" path of a [`github.com/gobuffalo/genny#Generator`](https://godoc.org/github.com/gobuffalo/genny#Generator).
-
-```go
-func Test_Happy(t *testing.T) {
- r := require.New(t)
-
- run := gentest.NewRunner()
- run.Disk.Add(genny.NewFileS("main.go", "my main.go file"))
-
- g := New()
- run.With(g)
-
- r.NoError(run.Run())
- res := run.Results()
-
- cmds := []string{"go env", "genny -h"}
- r.NoError(gentest.CompareCommands(cmds, res.Commands))
-
- files := []string{"index.html", "main.go"}
- r.NoError(gentest.CompareFiles(files, res.Files))
-}
-```
-
-Notice how in the above example we had to add `main.go` to the [`github.com/gobuffalo/genny#Runner.Disk`](https://godoc.org/github.com/gobuffalo/genny#Runner.Disk). That is because the file doesn't exist in our testing directory.
-
-In the following example we test what happens when the `genny` executable can not be found when running the [`github.com/gobuffalo/genny#Generator`](https://godoc.org/github.com/gobuffalo/genny#Generator).
-
-We can simulate this experience by using the [`github.com/gobuffalo/genny#Runner.LookPathFn`](https://godoc.org/github.com/gobuffalo/genny#Runner.LookPathFn) to return an error if it is asked about that particular executable.
-
-```go
-func Test_Missing_Genny(t *testing.T) {
- r := require.New(t)
-
- run := gentest.NewRunner()
- run.Disk.Add(genny.NewFileS("main.go", "my main.go file"))
-
- g := New()
- run.With(g)
-
- // pretend we can't find genny
- run.LookPathFn = func(s string) (string, error) {
- if s == "genny" {
- return "", errors.New("can't find genny")
- }
- return s, nil
- }
-
- r.NoError(run.Run())
- res := run.Results()
-
- cmds := []string{"go env", "go get github.com/gobuffalo/genny/genny", "genny -h"}
- r.NoError(gentest.CompareCommands(cmds, res.Commands))
-
- files := []string{"index.html", "main.go"}
- r.NoError(gentest.CompareFiles(files, res.Files))
-}
-```
-
-## The `genny` Executable
-
-Genny ships with an executable that helps to generate new generators.
-
-### Installation
-
-```bash
-$ go get -u github.com/gobuffalo/genny/genny
-```
-
-### Usage
-
-```bash
-$ genny -h
-
-tools for working with genny
-
-Usage:
- genny [command]
-
-Available Commands:
- help Help about any command
- new generates a new genny stub
-
-Flags:
- -h, --help help for genny
-
-Use "genny [command] --help" for more information about a command.
-```
-
-### Generating a New Generator
-
-```bash
-$ genny new coke -h
-
-DEBU[2018-12-07T11:07:01-05:00] Step: a1d8eb2f
-DEBU[2018-12-07T11:07:01-05:00] Chdir: /go/src/github.com/gobuffalo
-DEBU[2018-12-07T11:07:01-05:00] File: /go/src/github.com/gobuffalo/coke/coke.go
-DEBU[2018-12-07T11:07:01-05:00] File: /go/src/github.com/gobuffalo/coke/coke_test.go
-DEBU[2018-12-07T11:07:01-05:00] File: /go/src/github.com/gobuffalo/coke/options.go
-DEBU[2018-12-07T11:07:01-05:00] File: /go/src/github.com/gobuffalo/coke/options_test.go
-DEBU[2018-12-07T11:07:01-05:00] File: /go/src/github.com/gobuffalo/coke/templates/example.txt
-```
diff --git a/vendor/github.com/gobuffalo/genny/SHOULDERS.md b/vendor/github.com/gobuffalo/genny/SHOULDERS.md
deleted file mode 100644
index 42b36ba91..000000000
--- a/vendor/github.com/gobuffalo/genny/SHOULDERS.md
+++ /dev/null
@@ -1,108 +0,0 @@
-# `github.com/gobuffalo/genny` Stands on the Shoulders of Giants
-
-`github.com/gobuffalo/genny` does not try to reinvent the wheel! Instead, it uses the already great wheels developed by the Go community and puts them altogether in the best way possible. Without these giants this project would not be possible. Please make sure to check them out and thank them for all of their hard work.
-
-Thank you to the following **GIANTS**:
-
-
-* [github.com/fatih/structs](https://godoc.org/github.com/fatih/structs)
-
-* [github.com/gobuffalo/envy](https://godoc.org/github.com/gobuffalo/envy)
-
-* [github.com/gobuffalo/flect](https://godoc.org/github.com/gobuffalo/flect)
-
-* [github.com/gobuffalo/flect/name](https://godoc.org/github.com/gobuffalo/flect/name)
-
-* [github.com/gobuffalo/github_flavored_markdown](https://godoc.org/github.com/gobuffalo/github_flavored_markdown)
-
-* [github.com/gobuffalo/packr](https://godoc.org/github.com/gobuffalo/packr)
-
-* [github.com/gobuffalo/plush](https://godoc.org/github.com/gobuffalo/plush)
-
-* [github.com/gobuffalo/plush/ast](https://godoc.org/github.com/gobuffalo/plush/ast)
-
-* [github.com/gobuffalo/plush/lexer](https://godoc.org/github.com/gobuffalo/plush/lexer)
-
-* [github.com/gobuffalo/plush/parser](https://godoc.org/github.com/gobuffalo/plush/parser)
-
-* [github.com/gobuffalo/plush/token](https://godoc.org/github.com/gobuffalo/plush/token)
-
-* [github.com/gobuffalo/tags](https://godoc.org/github.com/gobuffalo/tags)
-
-* [github.com/gobuffalo/tags/form](https://godoc.org/github.com/gobuffalo/tags/form)
-
-* [github.com/gobuffalo/tags/form/bootstrap](https://godoc.org/github.com/gobuffalo/tags/form/bootstrap)
-
-* [github.com/gobuffalo/uuid](https://godoc.org/github.com/gobuffalo/uuid)
-
-* [github.com/gobuffalo/validate](https://godoc.org/github.com/gobuffalo/validate)
-
-* [github.com/gobuffalo/validate/validators](https://godoc.org/github.com/gobuffalo/validate/validators)
-
-* [github.com/joho/godotenv](https://godoc.org/github.com/joho/godotenv)
-
-* [github.com/kr/pretty](https://godoc.org/github.com/kr/pretty)
-
-* [github.com/markbates/going/defaults](https://godoc.org/github.com/markbates/going/defaults)
-
-* [github.com/markbates/going/randx](https://godoc.org/github.com/markbates/going/randx)
-
-* [github.com/markbates/going/wait](https://godoc.org/github.com/markbates/going/wait)
-
-* [github.com/markbates/inflect](https://godoc.org/github.com/markbates/inflect)
-
-* [github.com/microcosm-cc/bluemonday](https://godoc.org/github.com/microcosm-cc/bluemonday)
-
-* [github.com/onsi/ginkgo](https://godoc.org/github.com/onsi/ginkgo)
-
-* [github.com/onsi/gomega](https://godoc.org/github.com/onsi/gomega)
-
-* [github.com/pkg/errors](https://godoc.org/github.com/pkg/errors)
-
-* [github.com/serenize/snaker](https://godoc.org/github.com/serenize/snaker)
-
-* [github.com/sergi/go-diff/diffmatchpatch](https://godoc.org/github.com/sergi/go-diff/diffmatchpatch)
-
-* [github.com/shurcooL/highlight_diff](https://godoc.org/github.com/shurcooL/highlight_diff)
-
-* [github.com/shurcooL/highlight_go](https://godoc.org/github.com/shurcooL/highlight_go)
-
-* [github.com/shurcooL/octicon](https://godoc.org/github.com/shurcooL/octicon)
-
-* [github.com/shurcooL/sanitized_anchor_name](https://godoc.org/github.com/shurcooL/sanitized_anchor_name)
-
-* [github.com/sirupsen/logrus](https://godoc.org/github.com/sirupsen/logrus)
-
-* [github.com/sourcegraph/annotate](https://godoc.org/github.com/sourcegraph/annotate)
-
-* [github.com/sourcegraph/syntaxhighlight](https://godoc.org/github.com/sourcegraph/syntaxhighlight)
-
-* [github.com/stretchr/testify/assert](https://godoc.org/github.com/stretchr/testify/assert)
-
-* [github.com/stretchr/testify/require](https://godoc.org/github.com/stretchr/testify/require)
-
-* [github.com/stretchr/testify/vendor/github.com/davecgh/go-spew/spew](https://godoc.org/github.com/stretchr/testify/vendor/github.com/davecgh/go-spew/spew)
-
-* [github.com/stretchr/testify/vendor/github.com/pmezard/go-difflib/difflib](https://godoc.org/github.com/stretchr/testify/vendor/github.com/pmezard/go-difflib/difflib)
-
-* [golang.org/x/crypto/ssh/terminal](https://godoc.org/golang.org/x/crypto/ssh/terminal)
-
-* [golang.org/x/net/context](https://godoc.org/golang.org/x/net/context)
-
-* [golang.org/x/net/html](https://godoc.org/golang.org/x/net/html)
-
-* [golang.org/x/net/html/atom](https://godoc.org/golang.org/x/net/html/atom)
-
-* [golang.org/x/sync/errgroup](https://godoc.org/golang.org/x/sync/errgroup)
-
-* [golang.org/x/sys/unix](https://godoc.org/golang.org/x/sys/unix)
-
-* [golang.org/x/tools/go/ast/astutil](https://godoc.org/golang.org/x/tools/go/ast/astutil)
-
-* [golang.org/x/tools/imports](https://godoc.org/golang.org/x/tools/imports)
-
-* [golang.org/x/tools/internal/fastwalk](https://godoc.org/golang.org/x/tools/internal/fastwalk)
-
-* [gopkg.in/check.v1](https://godoc.org/gopkg.in/check.v1)
-
-* [gopkg.in/russross/blackfriday.v1](https://godoc.org/gopkg.in/russross/blackfriday.v1)
diff --git a/vendor/github.com/gobuffalo/genny/confirm.go b/vendor/github.com/gobuffalo/genny/confirm.go
deleted file mode 100644
index 1316cccda..000000000
--- a/vendor/github.com/gobuffalo/genny/confirm.go
+++ /dev/null
@@ -1,15 +0,0 @@
-package genny
-
-import (
- "bufio"
- "fmt"
- "os"
-)
-
-func Confirm(msg string) bool {
- reader := bufio.NewReader(os.Stdin)
- fmt.Print(msg)
- text, _ := reader.ReadString('\n')
-
- return (text == "y\n" || text == "Y\n")
-}
diff --git a/vendor/github.com/gobuffalo/genny/dir.go b/vendor/github.com/gobuffalo/genny/dir.go
deleted file mode 100644
index 4f5ea5838..000000000
--- a/vendor/github.com/gobuffalo/genny/dir.go
+++ /dev/null
@@ -1,18 +0,0 @@
-package genny
-
-import "os"
-
-var _ File = Dir{}
-
-type Dir struct {
- File
- Perm os.FileMode
-}
-
-func NewDir(path string, perm os.FileMode) File {
- f := NewFileS(path, path)
- return Dir{
- File: f,
- Perm: perm,
- }
-}
diff --git a/vendor/github.com/gobuffalo/genny/disk.go b/vendor/github.com/gobuffalo/genny/disk.go
deleted file mode 100644
index d9fa04d89..000000000
--- a/vendor/github.com/gobuffalo/genny/disk.go
+++ /dev/null
@@ -1,112 +0,0 @@
-package genny
-
-import (
- "bytes"
- "io"
- "os"
- "runtime"
- "sort"
- "strings"
- "sync"
-
- "github.com/gobuffalo/packd"
- "github.com/pkg/errors"
-)
-
-// Disk is a virtual file system that works
-// with both dry and wet runners. Perfect for seeding
-// Files or non-destructively deleting files
-type Disk struct {
- Runner *Runner
- files map[string]File
- moot *sync.RWMutex
-}
-
-func (d *Disk) AddBox(box packd.Walker) error {
- return box.Walk(func(path string, file packd.File) error {
- d.Add(NewFile(path, file))
- return nil
- })
-}
-
-// Files returns a sorted list of all the files in the disk
-func (d *Disk) Files() []File {
- var files []File
- for _, f := range d.files {
- if s, ok := f.(io.Seeker); ok {
- s.Seek(0, 0)
- }
- files = append(files, f)
- }
- sort.Slice(files, func(i, j int) bool {
- return files[i].Name() < files[j].Name()
- })
- return files
-}
-
-func newDisk(r *Runner) *Disk {
- return &Disk{
- Runner: r,
- files: map[string]File{},
- moot: &sync.RWMutex{},
- }
-}
-
-// Remove a file(s) from the virtual disk.
-func (d *Disk) Remove(name string) {
- d.moot.Lock()
- defer d.moot.Unlock()
- for f, _ := range d.files {
- if strings.HasPrefix(f, name) {
- delete(d.files, f)
- }
- }
-}
-
-// Delete calls the Runner#Delete function
-func (d *Disk) Delete(name string) error {
- return d.Runner.Delete(name)
-}
-
-// Add file to the virtual disk
-func (d *Disk) Add(f File) {
- d.moot.Lock()
- defer d.moot.Unlock()
- d.files[f.Name()] = f
-}
-
-// Find a file from the virtual disk. If the file doesn't
-// exist it will try to read the file from the physical disk.
-func (d *Disk) Find(name string) (File, error) {
-
- d.moot.RLock()
- if f, ok := d.files[name]; ok {
- if seek, ok := f.(io.Seeker); ok {
- seek.Seek(0, 0)
- }
- d.moot.RUnlock()
- return f, nil
- }
- d.moot.RUnlock()
-
- gf := NewFile(name, bytes.NewReader([]byte("")))
-
- osname := name
- if runtime.GOOS == "windows" {
- osname = strings.Replace(osname, "/", "\\", -1)
- }
- f, err := os.Open(osname)
- if err != nil {
- return gf, errors.WithStack(err)
- }
- defer f.Close()
-
- bb := &bytes.Buffer{}
-
- if _, err := io.Copy(bb, f); err != nil {
- return gf, errors.WithStack(err)
- }
- gf = NewFile(name, bb)
- d.Add(gf)
- return gf, nil
-}
diff --git a/vendor/github.com/gobuffalo/genny/dry_runner.go b/vendor/github.com/gobuffalo/genny/dry_runner.go
deleted file mode 100644
index 4f4eee768..000000000
--- a/vendor/github.com/gobuffalo/genny/dry_runner.go
+++ /dev/null
@@ -1,15 +0,0 @@
-package genny
-
-import (
- "context"
-
- "github.com/gobuffalo/logger"
-)
-
-// DryRunner will NOT execute commands and write files
-// it is NOT destructive
-func DryRunner(ctx context.Context) *Runner {
- r := NewRunner(ctx)
- r.Logger = logger.New(logger.DebugLevel)
- return r
-}
diff --git a/vendor/github.com/gobuffalo/genny/events.go b/vendor/github.com/gobuffalo/genny/events.go
deleted file mode 100644
index 3bc313eb6..000000000
--- a/vendor/github.com/gobuffalo/genny/events.go
+++ /dev/null
@@ -1,8 +0,0 @@
-package genny
-
-const (
- EvtStarted = "genny:runner:started"
- EvtFinished = "genny:runner:finished"
- EvtFinishedErr = "genny:runner:finished:err"
- EvtStepPrefix = "genny:step"
-)
diff --git a/vendor/github.com/gobuffalo/genny/file.go b/vendor/github.com/gobuffalo/genny/file.go
deleted file mode 100644
index 30c33d717..000000000
--- a/vendor/github.com/gobuffalo/genny/file.go
+++ /dev/null
@@ -1,32 +0,0 @@
-package genny
-
-import (
- "bytes"
- "io"
- "runtime"
- "strings"
-
- "github.com/gobuffalo/packd"
-)
-
-// File interface for working with files
-type File = packd.SimpleFile
-
-// NewFile takes the name of the file you want to
-// write to and a reader to reader from
-func NewFile(name string, r io.Reader) File {
- osname := name
- if runtime.GOOS == "windows" {
- osname = strings.Replace(osname, "\\", "/", -1)
- }
- f, _ := packd.NewFile(osname, r)
- return f
-}
-
-func NewFileS(name string, s string) File {
- return NewFile(name, strings.NewReader(s))
-}
-
-func NewFileB(name string, s []byte) File {
- return NewFile(name, bytes.NewReader(s))
-}
diff --git a/vendor/github.com/gobuffalo/genny/force.go b/vendor/github.com/gobuffalo/genny/force.go
deleted file mode 100644
index 4078c8418..000000000
--- a/vendor/github.com/gobuffalo/genny/force.go
+++ /dev/null
@@ -1,84 +0,0 @@
-package genny
-
-import (
- "io/ioutil"
- "os"
- "path/filepath"
-
- "github.com/gobuffalo/packd"
- "github.com/pkg/errors"
-)
-
-// ForceBox will mount each file in the box and wrap it with ForceFile
-func ForceBox(g *Generator, box packd.Walker, force bool) error {
- return box.Walk(func(path string, bf packd.File) error {
- f := NewFile(path, bf)
- ff := ForceFile(f, force)
- f, err := ff(f)
- if err != nil {
- return errors.WithStack(err)
- }
- g.File(f)
- return nil
- })
-}
-
-// ForceFile is a TransformerFn that will return an error if the path exists if `force` is false. If `force` is true it will delete the path.
-func ForceFile(f File, force bool) TransformerFn {
- return func(f File) (File, error) {
- path := f.Name()
- path, err := filepath.Abs(path)
- if err != nil {
- return f, errors.WithStack(err)
- }
- _, err = os.Stat(path)
- if err != nil {
- // path doesn't exist. move on.
- return f, nil
- }
- if !force {
- return f, errors.Errorf("path %s already exists", path)
- }
- if err := os.RemoveAll(path); err != nil {
- return f, errors.WithStack(err)
- }
- return f, nil
- }
-}
-
-// Force is a RunFn that will return an error if the path exists if `force` is false. If `force` is true it will delete the path.
-// Is is recommended to use ForceFile when you can.
-func Force(path string, force bool) RunFn {
- if path == "." || path == "" {
- pwd, _ := os.Getwd()
- path = pwd
- }
- return func(r *Runner) error {
- path, err := filepath.Abs(path)
- if err != nil {
- return errors.WithStack(err)
- }
- fi, err := os.Stat(path)
- if err != nil {
- // path doesn't exist. move on.
- return nil
- }
- if !force {
- if !fi.IsDir() {
- return errors.Errorf("path %s already exists", path)
- }
- files, err := ioutil.ReadDir(path)
- if err != nil {
- return errors.WithStack(err)
- }
- if len(files) > 0 {
- return errors.Errorf("path %s already exists", path)
- }
- return nil
- }
- if err := os.RemoveAll(path); err != nil {
- return errors.WithStack(err)
- }
- return nil
- }
-}
diff --git a/vendor/github.com/gobuffalo/genny/generator.go b/vendor/github.com/gobuffalo/genny/generator.go
deleted file mode 100644
index 8baf53049..000000000
--- a/vendor/github.com/gobuffalo/genny/generator.go
+++ /dev/null
@@ -1,104 +0,0 @@
-package genny
-
-import (
- "math/rand"
- "os/exec"
- "sync"
- "time"
-
- "github.com/gobuffalo/events"
- "github.com/gobuffalo/packd"
- "github.com/pkg/errors"
-)
-
-func init() {
- rand.Seed(time.Now().UnixNano())
-}
-
-// Generator is the basic type for generators to use
-type Generator struct {
- StepName string
- Should func(*Runner) bool
- Root string
- ErrorFn func(error)
- runners []RunFn
- transformers []Transformer
- moot *sync.RWMutex
-}
-
-// New, well-formed, generator
-func New() *Generator {
- g := &Generator{
- StepName: stepName(),
- runners: []RunFn{},
- moot: &sync.RWMutex{},
- transformers: []Transformer{},
- }
- return g
-}
-
-func (g *Generator) Event(kind string, payload events.Payload) {
- g.RunFn(func(r *Runner) error {
- return events.EmitPayload(kind, payload)
- })
-}
-
-// File adds a file to be run when the generator is run
-func (g *Generator) File(f File) {
- g.RunFn(func(r *Runner) error {
- return r.File(f)
- })
-}
-
-func (g *Generator) Transform(f File) (File, error) {
- g.moot.RLock()
- defer g.moot.RUnlock()
- var err error
- for _, t := range g.transformers {
- f, err = t.Transform(f)
- if err != nil {
- return f, errors.WithStack(err)
- }
- }
-
- return f, nil
-}
-
-// Transformer adds a file transform to the generator
-func (g *Generator) Transformer(t Transformer) {
- g.moot.Lock()
- defer g.moot.Unlock()
- g.transformers = append(g.transformers, t)
-}
-
-// Command adds a command to be run when the generator is run
-func (g *Generator) Command(cmd *exec.Cmd) {
- g.RunFn(func(r *Runner) error {
- return r.Exec(cmd)
- })
-}
-
-// Box walks through a packr.Box and adds Files for each entry
-// in the box.
-func (g *Generator) Box(box packd.Walker) error {
- return box.Walk(func(path string, f packd.File) error {
- g.File(NewFile(path, f))
- return nil
- })
-}
-
-// RunFn adds a generic "runner" function to the generator.
-func (g *Generator) RunFn(fn RunFn) {
- g.moot.Lock()
- defer g.moot.Unlock()
- g.runners = append(g.runners, fn)
-}
-
-func (g1 *Generator) Merge(g2 *Generator) {
- g2.moot.Lock()
- g1.moot.Lock()
- g1.runners = append(g1.runners, g2.runners...)
- g1.transformers = append(g1.transformers, g2.transformers...)
- g1.moot.Unlock()
- g2.moot.Unlock()
-}
diff --git a/vendor/github.com/gobuffalo/genny/genny.go b/vendor/github.com/gobuffalo/genny/genny.go
deleted file mode 100644
index 85962ca97..000000000
--- a/vendor/github.com/gobuffalo/genny/genny.go
+++ /dev/null
@@ -1,4 +0,0 @@
-/*
-Package genny is a _framework_ for writing modular generators, it however, doesn't actually generate anything. It just makes it easier for you to. :)
-*/
-package genny
diff --git a/vendor/github.com/gobuffalo/genny/go.mod b/vendor/github.com/gobuffalo/genny/go.mod
deleted file mode 100644
index 52287cae0..000000000
--- a/vendor/github.com/gobuffalo/genny/go.mod
+++ /dev/null
@@ -1,20 +0,0 @@
-module github.com/gobuffalo/genny
-
-require (
- github.com/gobuffalo/attrs v0.0.0-20190219185331-f338c9388485
- github.com/gobuffalo/depgen v0.0.0-20190219190223-ba8c93fa0c2c
- github.com/gobuffalo/envy v1.6.15
- github.com/gobuffalo/events v1.2.0
- github.com/gobuffalo/flect v0.1.0
- github.com/gobuffalo/gitgen v0.0.0-20190219185555-91c2c5f0aad5
- github.com/gobuffalo/gogen v0.0.0-20190219194924-d32a17ad9761
- github.com/gobuffalo/logger v0.0.0-20181127160119-5b956e21995c
- github.com/gobuffalo/packd v0.0.0-20181212173646-eca3b8fd6687
- github.com/gobuffalo/packr/v2 v2.0.1
- github.com/markbates/oncer v0.0.0-20181203154359-bf2de49a0be2
- github.com/markbates/safe v1.0.1
- github.com/pkg/errors v0.8.1
- github.com/sirupsen/logrus v1.3.0
- github.com/spf13/cobra v0.0.3
- github.com/stretchr/testify v1.3.0
-)
diff --git a/vendor/github.com/gobuffalo/genny/go.sum b/vendor/github.com/gobuffalo/genny/go.sum
deleted file mode 100644
index 5f97a9bb2..000000000
--- a/vendor/github.com/gobuffalo/genny/go.sum
+++ /dev/null
@@ -1,535 +0,0 @@
-cloud.google.com/go v0.26.0/go.mod h1:aQUYkXzVsufM+DwF1aE+0xfcU+56JwCaLick0ClmMTw=
-cloud.google.com/go v0.31.0/go.mod h1:aQUYkXzVsufM+DwF1aE+0xfcU+56JwCaLick0ClmMTw=
-cloud.google.com/go v0.36.0/go.mod h1:RUoy9p/M4ge0HzT8L+SDZ8jg+Q6fth0CiBuhFJpSV40=
-dmitri.shuralyov.com/app/changes v0.0.0-20180602232624-0a106ad413e3/go.mod h1:Yl+fi1br7+Rr3LqpNJf1/uxUdtRUV+Tnj0o93V2B9MU=
-dmitri.shuralyov.com/html/belt v0.0.0-20180602232347-f7d459c86be0/go.mod h1:JLBrvjyP0v+ecvNYvCpyZgu5/xkfAUhi6wJj28eUfSU=
-dmitri.shuralyov.com/service/change v0.0.0-20181023043359-a85b471d5412/go.mod h1:a1inKt/atXimZ4Mv927x+r7UpyzRUf4emIoiiSC2TN4=
-dmitri.shuralyov.com/state v0.0.0-20180228185332-28bcc343414c/go.mod h1:0PRwlb0D6DFvNNtx+9ybjezNCa8XF0xaYcETyp6rHWU=
-git.apache.org/thrift.git v0.0.0-20180902110319-2566ecd5d999/go.mod h1:fPE2ZNJGynbRyZ4dJvy6G277gSllfV2HJqblrnkyeyg=
-github.com/BurntSushi/toml v0.3.1 h1:WXkYYl6Yr3qBf1K79EBnL4mak0OimBfB0XUf9Vl28OQ=
-github.com/BurntSushi/toml v0.3.1/go.mod h1:xHWCNGjB5oqiDr8zfno3MHue2Ht5sIBksp03qcyfWMU=
-github.com/Masterminds/semver v1.4.2/go.mod h1:MB6lktGJrhw8PrUyiEoblNEGEQ+RzHPF078ddwwvV3Y=
-github.com/ajg/form v0.0.0-20160822230020-523a5da1a92f/go.mod h1:uL1WgH+h2mgNtvBq0339dVnzXdBETtL2LeUXaIv25UY=
-github.com/anmitsu/go-shlex v0.0.0-20161002113705-648efa622239/go.mod h1:2FmKhYUyUczH0OGQWaF5ceTx0UBShxjsH6f8oGKYe2c=
-github.com/armon/consul-api v0.0.0-20180202201655-eb2c6b5be1b6/go.mod h1:grANhF5doyWs3UAsr3K4I6qtAmlQcZDesFNEHPZAzj8=
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-honnef.co/go/tools v0.0.0-20190106161140-3f1c8253044a/go.mod h1:rf3lG4BRIbNafJWhAfAdb/ePZxsR/4RtNHQocxwk9r4=
-sourcegraph.com/sourcegraph/go-diff v0.5.0/go.mod h1:kuch7UrkMzY0X+p9CRK03kfuPQ2zzQcaEFbx8wA8rck=
-sourcegraph.com/sqs/pbtypes v0.0.0-20180604144634-d3ebe8f20ae4/go.mod h1:ketZ/q3QxT9HOBeFhu6RdvsftgpsbFHBF5Cas6cDKZ0=
diff --git a/vendor/github.com/gobuffalo/genny/group.go b/vendor/github.com/gobuffalo/genny/group.go
deleted file mode 100644
index e1be356e4..000000000
--- a/vendor/github.com/gobuffalo/genny/group.go
+++ /dev/null
@@ -1,30 +0,0 @@
-package genny
-
-import "sync"
-
-type Group struct {
- Generators []*Generator
- moot sync.RWMutex
-}
-
-func (gg *Group) Add(g *Generator) {
- m := &gg.moot
- m.Lock()
- defer m.Unlock()
- gg.Generators = append(gg.Generators, g)
-}
-
-func (gg *Group) Merge(g2 *Group) {
- for _, g := range g2.Generators {
- gg.Add(g)
- }
-}
-
-func (gg *Group) With(r *Runner) {
- m := &gg.moot
- m.RLock()
- defer m.RUnlock()
- for _, g := range gg.Generators {
- r.With(g)
- }
-}
diff --git a/vendor/github.com/gobuffalo/genny/helpers.go b/vendor/github.com/gobuffalo/genny/helpers.go
deleted file mode 100644
index 67d0c59b1..000000000
--- a/vendor/github.com/gobuffalo/genny/helpers.go
+++ /dev/null
@@ -1,54 +0,0 @@
-package genny
-
-import (
- "path/filepath"
- "strings"
-
- "github.com/gobuffalo/envy"
-)
-
-func exts(f File) []string {
- var exts []string
-
- name := f.Name()
- ext := filepath.Ext(name)
-
- for ext != "" {
- exts = append([]string{ext}, exts...)
- name = strings.TrimSuffix(name, ext)
- ext = filepath.Ext(name)
- }
- return exts
-}
-
-// HasExt checks if a file has ANY of the
-// extensions passed in. If no extensions
-// are given then `true` is returned
-func HasExt(f File, ext ...string) bool {
- if len(ext) == 0 || ext == nil {
- return true
- }
- for _, xt := range ext {
- xt = strings.TrimSpace(xt)
- if xt == "*" || xt == "*.*" {
- return true
- }
- for _, x := range exts(f) {
- if x == xt {
- return true
- }
- }
- }
- return false
-}
-
-// StripExt from a File and return a new one
-func StripExt(f File, ext string) File {
- name := f.Name()
- name = strings.Replace(name, ext, "", -1)
- return NewFile(name, f)
-}
-
-func GoBin() string {
- return envy.Get("GO_BIN", "go")
-}
diff --git a/vendor/github.com/gobuffalo/genny/logger.go b/vendor/github.com/gobuffalo/genny/logger.go
deleted file mode 100644
index a262a23f4..000000000
--- a/vendor/github.com/gobuffalo/genny/logger.go
+++ /dev/null
@@ -1,8 +0,0 @@
-package genny
-
-import "github.com/gobuffalo/logger"
-
-// Logger interface for a logger to be used with genny. Logrus is 100% compatible.
-type Logger = logger.Logger
-
-var DefaultLogLvl = logger.InfoLevel
diff --git a/vendor/github.com/gobuffalo/genny/replacer.go b/vendor/github.com/gobuffalo/genny/replacer.go
deleted file mode 100644
index 386607189..000000000
--- a/vendor/github.com/gobuffalo/genny/replacer.go
+++ /dev/null
@@ -1,20 +0,0 @@
-package genny
-
-import (
- "strings"
-)
-
-// Replace search/replace in a file name
-func Replace(search string, replace string) Transformer {
- return NewTransformer("*", func(f File) (File, error) {
- name := f.Name()
- name = strings.Replace(name, search, replace, -1)
- return NewFile(name, f), nil
- })
-}
-
-// Dot will convert -dot- in a file name to just a .
-// example -dot-travis.yml becomes .travis.yml
-func Dot() Transformer {
- return Replace("-dot-", ".")
-}
diff --git a/vendor/github.com/gobuffalo/genny/results.go b/vendor/github.com/gobuffalo/genny/results.go
deleted file mode 100644
index a1a3df3e9..000000000
--- a/vendor/github.com/gobuffalo/genny/results.go
+++ /dev/null
@@ -1,30 +0,0 @@
-package genny
-
-import (
- "net/http"
- "os/exec"
-
- "github.com/pkg/errors"
-)
-
-type Results struct {
- Files []File
- Commands []*exec.Cmd
- Requests []RequestResult
-}
-
-func (r Results) Find(s string) (File, error) {
- for _, f := range r.Files {
- if s == f.Name() {
- return f, nil
- }
- }
- return nil, errors.Errorf("%s not found", s)
-}
-
-type RequestResult struct {
- Request *http.Request
- Response *http.Response
- Client *http.Client
- Error error
-}
diff --git a/vendor/github.com/gobuffalo/genny/runner.go b/vendor/github.com/gobuffalo/genny/runner.go
deleted file mode 100644
index 7a0d232e8..000000000
--- a/vendor/github.com/gobuffalo/genny/runner.go
+++ /dev/null
@@ -1,335 +0,0 @@
-package genny
-
-import (
- "context"
- "fmt"
- "io"
- "net/http"
- "os"
- "os/exec"
- "path/filepath"
- "sort"
- "strings"
- "sync"
-
- "github.com/gobuffalo/events"
- "github.com/markbates/oncer"
- "github.com/markbates/safe"
- "github.com/pkg/errors"
- "github.com/sirupsen/logrus"
-)
-
-type RunFn func(r *Runner) error
-
-// Runner will run the generators
-type Runner struct {
- Logger Logger // Logger to use for the run
- Context context.Context // context to use for the run
- ExecFn func(*exec.Cmd) error // function to use when executing files
- FileFn func(File) (File, error) // function to use when writing files
- ChdirFn func(string, func() error) error // function to use when changing directories
- DeleteFn func(string) error // function used to delete files/folders
- RequestFn func(*http.Request, *http.Client) (*http.Response, error) // function used to make http requests
- LookPathFn func(string) (string, error) // function used to make exec.LookPath lookups
- Root string // the root of the write path
- Disk *Disk
- steps map[string]*Step
- generators []*Generator
- moot *sync.RWMutex
- results Results
- curGen *Generator
-}
-
-func (r *Runner) Results() Results {
- r.moot.Lock()
- defer r.moot.Unlock()
- r.results.Files = r.Disk.Files()
- return r.results
-}
-
-func (r *Runner) WithRun(fn RunFn) {
- g := New()
- g.RunFn(fn)
- r.With(g)
-}
-
-// With adds a Generator to the Runner
-func (r *Runner) With(g *Generator) error {
- r.moot.Lock()
- step, ok := r.steps[g.StepName]
- if !ok {
- var err error
- step, err = NewStep(g, len(r.steps))
- if err != nil {
- return errors.WithStack(err)
- }
- }
- r.moot.Unlock()
- return r.WithStep(g.StepName, step)
-}
-
-func (r *Runner) WithGroup(gg *Group) {
- for _, g := range gg.Generators {
- r.With(g)
- }
-}
-
-// WithNew takes a Generator and an error.
-// Perfect for new-ing up generators
-/*
- // foo.New(Options) (*genny.Generator, error)
- if err := run.WithNew(foo.New(opts)); err != nil {
- return err
- }
-*/
-func (r *Runner) WithNew(g *Generator, err error) error {
- if err != nil {
- return errors.WithStack(err)
- }
- r.With(g)
- return nil
-}
-
-// WithFn will evaluate the function and if successful it will add
-// the Generator to the Runner, otherwise it will return the error
-// Deprecated
-func (r *Runner) WithFn(fn func() (*Generator, error)) error {
- oncer.Deprecate(5, "genny.Runner#WithFn", "")
- return safe.RunE(func() error {
- g, err := fn()
- if err != nil {
- return errors.WithStack(err)
- }
- r.With(g)
- return nil
- })
-}
-
-func (r *Runner) WithStep(name string, step *Step) error {
- r.moot.Lock()
- defer r.moot.Unlock()
- if len(name) == 0 {
- name = stepName()
- }
- r.steps[name] = step
- return nil
-}
-
-func (r *Runner) Steps() []*Step {
- r.moot.RLock()
-
- var steps []*Step
-
- for _, step := range r.steps {
- steps = append(steps, step)
- }
-
- sort.Slice(steps, func(a, b int) bool {
- return steps[a].index < steps[b].index
- })
-
- r.moot.RUnlock()
- return steps
-}
-
-func (r *Runner) FindStep(name string) (*Step, error) {
- r.moot.RLock()
- s, ok := r.steps[name]
- r.moot.RUnlock()
- if !ok {
- return nil, errors.Errorf("could not find step %s", name)
- }
- return s, nil
-}
-
-func (r *Runner) ReplaceStep(name string, s *Step) error {
- os, err := r.FindStep(name)
- if err != nil {
- return errors.WithStack(err)
- }
- s.index = os.index
- return r.WithStep(name, s)
-}
-
-func (r *Runner) Run() error {
- if f, ok := r.Logger.(io.Closer); ok {
- defer f.Close()
- }
- steps := r.Steps()
-
- payload := events.Payload{
- "runner": r,
- "steps": steps,
- }
-
- events.EmitPayload(EvtStarted, payload)
-
- for _, step := range steps {
- if err := step.Run(r); err != nil {
- payload = events.Payload{
- "runner": r,
- "step": step,
- }
- events.EmitError(EvtFinishedErr, err, payload)
- return errors.WithStack(err)
- }
- }
- events.EmitPayload(EvtFinished, payload)
-
- return nil
-}
-
-// Exec can be used inside of Generators to run commands
-func (r *Runner) Exec(cmd *exec.Cmd) error {
- r.results.Commands = append(r.results.Commands, cmd)
- r.Logger.Debug("Exec: ", strings.Join(cmd.Args, " "))
- if r.ExecFn == nil {
- return nil
- }
- return safe.RunE(func() error {
- return r.ExecFn(cmd)
- })
-}
-
-func (r *Runner) LookPath(s string) (string, error) {
- r.Logger.Debug("LookPath: ", s)
- if r.LookPathFn != nil {
- return r.LookPathFn(s)
- }
- return s, nil
-}
-
-// File can be used inside of Generators to write files
-func (r *Runner) File(f File) error {
- if r.curGen != nil {
- var err error
- f, err = r.curGen.Transform(f)
- if err != nil {
- return errors.WithStack(err)
- }
- }
- name := f.Name()
- if !filepath.IsAbs(name) {
- name = filepath.Join(r.Root, name)
- }
-
- _, isDir := f.(Dir)
- if isDir {
- r.Logger.Debug("Dir: ", name)
- } else {
- r.Logger.Debug("File: ", name)
- }
-
- if r.FileFn != nil {
- err := safe.RunE(func() error {
- var e error
- if f, e = r.FileFn(f); e != nil {
- return errors.WithStack(e)
- }
- if s, ok := f.(io.Seeker); ok {
- s.Seek(0, 0)
- }
- return nil
- })
- if err != nil {
- return errors.WithStack(err)
- }
- }
- f = NewFile(f.Name(), f)
- if s, ok := f.(io.Seeker); ok {
- s.Seek(0, 0)
- }
- r.Disk.Add(f)
- return nil
-}
-
-func (r *Runner) FindFile(name string) (File, error) {
- return r.Disk.Find(name)
-}
-
-// Chdir will change to the specified directory
-// and revert back to the current directory when
-// the runner function has returned.
-// If the directory does not exist, it will be
-// created for you.
-func (r *Runner) Chdir(path string, fn func() error) error {
- if len(path) == 0 {
- return fn()
- }
- r.Logger.Debug("Chdir: ", path)
-
- if r.ChdirFn != nil {
- return safe.RunE(func() error {
- return r.ChdirFn(path, fn)
- })
- }
-
- if err := safe.RunE(fn); err != nil {
- return errors.WithStack(err)
- }
- return nil
-}
-
-func (r *Runner) Delete(path string) error {
- r.Logger.Debug("Delete: ", path)
-
- defer r.Disk.Remove(path)
- if r.DeleteFn != nil {
- return safe.RunE(func() error {
- return r.DeleteFn(path)
- })
- }
- return nil
-}
-
-func (r *Runner) Request(req *http.Request) (*http.Response, error) {
- return r.RequestWithClient(req, http.DefaultClient)
-}
-
-func (r *Runner) RequestWithClient(req *http.Request, c *http.Client) (*http.Response, error) {
- key := fmt.Sprintf("[%s] %s\n", strings.ToUpper(req.Method), req.URL)
- r.Logger.Debug("Request: ", key)
- store := func(res *http.Response, err error) (*http.Response, error) {
- r.moot.Lock()
- r.results.Requests = append(r.results.Requests, RequestResult{
- Request: req,
- Response: res,
- Client: c,
- Error: err,
- })
- r.moot.Unlock()
- return res, err
- }
- if r.RequestFn == nil {
- return store(nil, nil)
- }
- var res *http.Response
- err := safe.RunE(func() error {
- var e error
- res, e = r.RequestFn(req, c)
- if e != nil {
- return errors.WithStack(e)
- }
- return nil
- })
- return store(res, err)
-}
-
-// NewRunner will NOT execute commands and write files
-// it is NOT destructive it is just the most basic Runner
-// you can have.
-func NewRunner(ctx context.Context) *Runner {
- pwd, _ := os.Getwd()
- l := logrus.New()
- l.Out = os.Stdout
- l.SetLevel(logrus.DebugLevel)
- r := &Runner{
- Logger: l,
- Context: ctx,
- Root: pwd,
- moot: &sync.RWMutex{},
- steps: map[string]*Step{},
- }
- r.Disk = newDisk(r)
- return r
-}
diff --git a/vendor/github.com/gobuffalo/genny/step.go b/vendor/github.com/gobuffalo/genny/step.go
deleted file mode 100644
index 49f56b280..000000000
--- a/vendor/github.com/gobuffalo/genny/step.go
+++ /dev/null
@@ -1,146 +0,0 @@
-package genny
-
-import (
- "bytes"
- "crypto/sha1"
- "fmt"
- "io"
- "math/rand"
- "strconv"
- "sync"
- "time"
-
- "github.com/gobuffalo/events"
- "github.com/markbates/safe"
- "github.com/pkg/errors"
-)
-
-type DeleteFn func()
-
-type Step struct {
- as *Generator
- before []*Generator
- after []*Generator
- index int
- moot *sync.RWMutex
-}
-
-func (s *Step) Before(g *Generator) DeleteFn {
- df := func() {
- var a []*Generator
- s.moot.Lock()
- for _, b := range s.before {
- if g.StepName == b.StepName {
- continue
- }
- a = append(a, b)
- }
- s.before = a
- s.moot.Unlock()
- }
- s.moot.Lock()
- s.before = append(s.before, g)
- s.moot.Unlock()
- return df
-}
-
-func (s *Step) After(g *Generator) DeleteFn {
- df := func() {
- var a []*Generator
- s.moot.Lock()
- for _, b := range s.after {
- if g.StepName == b.StepName {
- continue
- }
- a = append(a, b)
- }
- s.after = a
- s.moot.Unlock()
- }
- s.moot.Lock()
- s.after = append(s.after, g)
- s.moot.Unlock()
- return df
-}
-
-func (s *Step) Run(r *Runner) error {
- for _, b := range s.before {
- if err := s.runGenerator(r, b); err != nil {
- return errors.WithStack(err)
- }
- }
-
- if err := s.runGenerator(r, s.as); err != nil {
- return errors.WithStack(err)
- }
-
- for _, b := range s.after {
- if err := s.runGenerator(r, b); err != nil {
- return errors.WithStack(err)
- }
- }
-
- return nil
-}
-
-func (s *Step) runGenerator(r *Runner, g *Generator) error {
- r.curGen = g
-
- payload := events.Payload{
- "runner": r,
- "step": s,
- "generator": g,
- }
- if g.Should != nil {
- err := safe.RunE(func() error {
- if !g.Should(r) {
- return io.EOF
- }
- return nil
- })
- if err != nil {
- r.Logger.Debugf("Step: %s [skipped]", g.StepName)
- events.EmitPayload(EvtStepPrefix+":skipping:"+g.StepName, payload)
- return nil
- }
- }
- r.Logger.Debugf("Step: %s", g.StepName)
- events.EmitPayload(EvtStepPrefix+":running:"+g.StepName, payload)
- return r.Chdir(r.Root, func() error {
- for _, fn := range g.runners {
- err := safe.RunE(func() error {
- return fn(r)
- })
- if err != nil {
- events.EmitError(EvtStepPrefix+":running:"+g.StepName+":err", err, payload)
- return errors.WithStack(err)
- }
- }
- return nil
- })
-}
-
-func NewStep(g *Generator, index int) (*Step, error) {
- if g == nil {
- return nil, errors.New("generator can not be nil")
- }
- return &Step{
- as: g,
- index: index,
- moot: &sync.RWMutex{},
- }, nil
-}
-
-func init() {
- rand.Seed(time.Now().UnixNano())
-}
-
-func stepName() string {
- bb := &bytes.Buffer{}
- bb.WriteString(fmt.Sprint(time.Now().UnixNano()))
- bb.WriteString(strconv.Itoa(rand.Int()))
- bb.WriteString(strconv.Itoa(rand.Int()))
- h := sha1.New()
- h.Write(bb.Bytes())
- return fmt.Sprintf("%x", h.Sum(nil))[:8]
-}
diff --git a/vendor/github.com/gobuffalo/genny/transformer.go b/vendor/github.com/gobuffalo/genny/transformer.go
deleted file mode 100644
index 29c7fe181..000000000
--- a/vendor/github.com/gobuffalo/genny/transformer.go
+++ /dev/null
@@ -1,45 +0,0 @@
-package genny
-
-import (
- "github.com/markbates/safe"
- "github.com/pkg/errors"
-)
-
-type TransformerFn func(File) (File, error)
-
-type Transformer struct {
- Ext string
- StripExt bool
- fn TransformerFn
-}
-
-func (t Transformer) Transform(f File) (File, error) {
- if !HasExt(f, t.Ext) {
- return f, nil
- }
- if t.fn == nil {
- return f, nil
- }
- err := safe.RunE(func() error {
- var e error
- f, e = t.fn(f)
- if e != nil {
- return errors.WithStack(e)
- }
- return nil
- })
- if err != nil {
- return f, errors.WithStack(err)
- }
- if t.StripExt {
- return StripExt(f, t.Ext), nil
- }
- return f, nil
-}
-
-func NewTransformer(ext string, fn TransformerFn) Transformer {
- return Transformer{
- Ext: ext,
- fn: fn,
- }
-}
diff --git a/vendor/github.com/gobuffalo/genny/version.go b/vendor/github.com/gobuffalo/genny/version.go
deleted file mode 100644
index 103c8c9f7..000000000
--- a/vendor/github.com/gobuffalo/genny/version.go
+++ /dev/null
@@ -1,3 +0,0 @@
-package genny
-
-const Version = "v0.0.1"
diff --git a/vendor/github.com/gobuffalo/genny/wet_runner.go b/vendor/github.com/gobuffalo/genny/wet_runner.go
deleted file mode 100644
index 6b4a87d22..000000000
--- a/vendor/github.com/gobuffalo/genny/wet_runner.go
+++ /dev/null
@@ -1,99 +0,0 @@
-package genny
-
-import (
- "context"
- "io"
- "net/http"
- "os"
- "os/exec"
- "path/filepath"
- "time"
-
- "github.com/gobuffalo/logger"
- "github.com/pkg/errors"
-)
-
-// WetRunner will execute commands and write files
-// it is DESTRUCTIVE
-func WetRunner(ctx context.Context) *Runner {
- r := DryRunner(ctx)
- l := logger.New(DefaultLogLvl)
- r.Logger = l
-
- r.ExecFn = wetExecFn
- r.FileFn = func(f File) (File, error) {
- return wetFileFn(r, f)
- }
- r.DeleteFn = os.RemoveAll
- r.RequestFn = wetRequestFn
- r.ChdirFn = func(path string, fn func() error) error {
- pwd, _ := os.Getwd()
- defer os.Chdir(pwd)
- os.MkdirAll(path, 0755)
- if err := os.Chdir(path); err != nil {
- return errors.WithStack(err)
- }
- return fn()
- }
- r.LookPathFn = exec.LookPath
- return r
-}
-
-func wetRequestFn(req *http.Request, c *http.Client) (*http.Response, error) {
- if c == nil {
- c = &http.Client{}
- }
- ctx, cancel := context.WithTimeout(req.Context(), 30*time.Second)
- defer cancel()
- req = req.WithContext(ctx)
-
- res, err := c.Do(req)
- if err != nil {
- return res, errors.WithStack(err)
- }
-
- if res.StatusCode >= 400 {
- return res, errors.WithStack(errors.Errorf("response returned non-success code: %d", res.StatusCode))
- }
- return res, nil
-}
-
-func wetExecFn(cmd *exec.Cmd) error {
- if cmd.Stdin == nil {
- cmd.Stdin = os.Stdin
- }
- if cmd.Stdout == nil {
- cmd.Stdout = os.Stdout
- }
- if cmd.Stderr == nil {
- cmd.Stderr = os.Stderr
- }
- return cmd.Run()
-}
-
-func wetFileFn(r *Runner, f File) (File, error) {
- if d, ok := f.(Dir); ok {
- if err := os.MkdirAll(d.Name(), d.Perm); err != nil {
- return f, errors.WithStack(err)
- }
- return d, nil
- }
-
- name := f.Name()
- if !filepath.IsAbs(name) {
- name = filepath.Join(r.Root, name)
- }
- dir := filepath.Dir(name)
- if err := os.MkdirAll(dir, 0755); err != nil {
- return f, errors.WithStack(err)
- }
- ff, err := os.Create(name)
- if err != nil {
- return f, errors.WithStack(err)
- }
- defer ff.Close()
- if _, err := io.Copy(ff, f); err != nil {
- return f, errors.WithStack(err)
- }
- return f, nil
-}
diff --git a/vendor/github.com/gobuffalo/gogen/.gitignore b/vendor/github.com/gobuffalo/gogen/.gitignore
deleted file mode 100644
index 368971859..000000000
--- a/vendor/github.com/gobuffalo/gogen/.gitignore
+++ /dev/null
@@ -1,29 +0,0 @@
-*.log
-.DS_Store
-doc
-tmp
-pkg
-*.gem
-*.pid
-coverage
-coverage.data
-build/*
-*.pbxuser
-*.mode1v3
-.svn
-profile
-.console_history
-.sass-cache/*
-.rake_tasks~
-*.log.lck
-solr/
-.jhw-cache/
-jhw.*
-*.sublime*
-node_modules/
-dist/
-generated/
-.vendor/
-bin/*
-gin-bin
-.idea/
diff --git a/vendor/github.com/gobuffalo/gogen/.gometalinter.json b/vendor/github.com/gobuffalo/gogen/.gometalinter.json
deleted file mode 100644
index e4f65a36e..000000000
--- a/vendor/github.com/gobuffalo/gogen/.gometalinter.json
+++ /dev/null
@@ -1,3 +0,0 @@
-{
- "Enable": ["vet", "golint", "goimports", "deadcode", "gotype", "ineffassign", "misspell", "nakedret", "unconvert", "megacheck", "varcheck"]
-}
diff --git a/vendor/github.com/gobuffalo/gogen/LICENSE b/vendor/github.com/gobuffalo/gogen/LICENSE
deleted file mode 100644
index 649efd437..000000000
--- a/vendor/github.com/gobuffalo/gogen/LICENSE
+++ /dev/null
@@ -1,21 +0,0 @@
-The MIT License (MIT)
-
-Copyright (c) 2019 Mark Bates
-
-Permission is hereby granted, free of charge, to any person obtaining a copy
-of this software and associated documentation files (the "Software"), to deal
-in the Software without restriction, including without limitation the rights
-to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
-copies of the Software, and to permit persons to whom the Software is
-furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in all
-copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
-IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
-FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
-AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
-LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
-OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
-SOFTWARE.
diff --git a/vendor/github.com/gobuffalo/gogen/Makefile b/vendor/github.com/gobuffalo/gogen/Makefile
deleted file mode 100644
index 2b893c0a2..000000000
--- a/vendor/github.com/gobuffalo/gogen/Makefile
+++ /dev/null
@@ -1,52 +0,0 @@
-TAGS ?= "sqlite"
-GO_BIN ?= go
-
-install:
- $(GO_BIN) install -tags ${TAGS} -v .
- make tidy
-
-tidy:
-ifeq ($(GO111MODULE),on)
- $(GO_BIN) mod tidy
-else
- echo skipping go mod tidy
-endif
-
-deps:
- $(GO_BIN) get github.com/gobuffalo/release
- $(GO_BIN) get -tags ${TAGS} -t ./...
- make tidy
-
-build:
- $(GO_BIN) build -v .
- make tidy
-
-test:
- $(GO_BIN) test -tags ${TAGS} ./...
- make tidy
-
-ci-deps:
- $(GO_BIN) get -tags ${TAGS} -t ./...
-
-ci-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
-
-lint:
- gometalinter --vendor ./... --deadline=1m --skip=internal
- make tidy
-
-update:
- $(GO_BIN) get -u -tags ${TAGS}
- make tidy
- make test
- make install
- make tidy
-
-release-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
- make tidy
-
-release:
- make tidy
- release -y -f version.go
- make tidy
diff --git a/vendor/github.com/gobuffalo/gogen/add_import.go b/vendor/github.com/gobuffalo/gogen/add_import.go
deleted file mode 100644
index 338fb1b99..000000000
--- a/vendor/github.com/gobuffalo/gogen/add_import.go
+++ /dev/null
@@ -1,52 +0,0 @@
-package gogen
-
-import (
- "fmt"
- "go/ast"
- "go/token"
- "strings"
-
- "github.com/gobuffalo/genny"
- "github.com/pkg/errors"
-)
-
-// AddImport adds n number of import statements into the path provided
-func AddImport(gf genny.File, imports ...string) (genny.File, error) {
- pf, err := ParseFile(gf)
- if err != nil {
- return gf, errors.WithStack(err)
- }
- gf = pf.File
-
- end := findLastImport(pf.Ast, pf.FileSet, pf.Lines)
-
- x := make([]string, len(imports), len(imports)+2)
- for _, i := range imports {
- x = append(x, fmt.Sprintf("\t\"%s\"", i))
-
- }
- if end < 0 {
- x = append([]string{"import ("}, x...)
- x = append(x, ")")
- }
-
- pf.Lines = append(pf.Lines[:end], append(x, pf.Lines[end:]...)...)
-
- fileContent := strings.Join(pf.Lines, "\n")
- return genny.NewFile(gf.Name(), strings.NewReader(fileContent)), nil
-}
-
-func findLastImport(f *ast.File, fset *token.FileSet, fileLines []string) int {
- var end = -1
-
- ast.Inspect(f, func(n ast.Node) bool {
- switch x := n.(type) {
- case *ast.ImportSpec:
- end = fset.Position(x.End()).Line
- return true
- }
- return true
- })
-
- return end
-}
diff --git a/vendor/github.com/gobuffalo/gogen/add_inside_block.go b/vendor/github.com/gobuffalo/gogen/add_inside_block.go
deleted file mode 100644
index 72a807bd4..000000000
--- a/vendor/github.com/gobuffalo/gogen/add_inside_block.go
+++ /dev/null
@@ -1,81 +0,0 @@
-package gogen
-
-import (
- "fmt"
- "go/ast"
- "strings"
-
- "github.com/gobuffalo/genny"
- "github.com/pkg/errors"
-)
-
-// AddInsideBlock will add anything inside of the app declaration block inside of file
-func AddInsideBlock(gf genny.File, search string, expressions ...string) (genny.File, error) {
- pf, err := ParseFile(gf)
- if err != nil {
- return gf, errors.WithStack(err)
- }
- gf = pf.File
-
- _, end := findBlockCoordinates(search, pf)
- if end < 0 {
- return gf, errors.Errorf("could not find desired block in %s", gf.Name())
- }
-
- if len(pf.Lines) == end {
- end = end - 1
- }
-
- el := pf.Lines[end:]
- sl := []string{}
- sf := []string{}
- for _, l := range pf.Lines[:end] {
- // if there's a app.ServeFiles("/", foo) line it needs to be the last added to the router
- if strings.Contains(l, "ServeFiles(\"/\"") {
- sf = append(sf, l)
- continue
- }
- sl = append(sl, l)
- }
-
- for i := 0; i < len(expressions); i++ {
- expressions[i] = fmt.Sprintf("\t\t%s", expressions[i])
- }
-
- el = append(sf, el...)
- pf.Lines = append(sl, append(expressions, el...)...)
-
- fileContent := strings.Join(pf.Lines, "\n")
- return genny.NewFile(gf.Name(), strings.NewReader(fileContent)), nil
-}
-
-func findBlockCoordinates(search string, pf ParsedFile) (int, int) {
- var end = -1
- var start = -1
-
- ast.Inspect(pf.Ast, func(n ast.Node) bool {
- switch x := n.(type) {
- case *ast.StructType:
- line := pf.FileSet.Position(x.Pos()).Line
- structDeclaration := fmt.Sprintf("%s\n", pf.Lines[line-1])
-
- if strings.Contains(structDeclaration, search) {
- start = line
- end = pf.FileSet.Position(x.End()).Line
- return false
- }
-
- case *ast.BlockStmt:
- start = pf.FileSet.Position(x.Lbrace).Line
- blockDeclaration := fmt.Sprintf("%s\n", pf.Lines[start-1])
-
- if strings.Contains(blockDeclaration, search) {
- end = pf.FileSet.Position(x.Rbrace).Line - 1
- }
-
- }
- return true
- })
-
- return start, end
-}
diff --git a/vendor/github.com/gobuffalo/gogen/append.go b/vendor/github.com/gobuffalo/gogen/append.go
deleted file mode 100644
index 494d08640..000000000
--- a/vendor/github.com/gobuffalo/gogen/append.go
+++ /dev/null
@@ -1,22 +0,0 @@
-package gogen
-
-import (
- "strings"
-
- "github.com/gobuffalo/genny"
- "github.com/pkg/errors"
-)
-
-// Append allows to append source into a go file
-func Append(gf genny.File, expressions ...string) (genny.File, error) {
- pf, err := ParseFile(gf)
- if err != nil {
- return gf, errors.WithStack(err)
- }
-
- gf = pf.File
- pf.Lines = append(pf.Lines, expressions...)
-
- fileContent := strings.Join(pf.Lines, "\n")
- return genny.NewFile(gf.Name(), strings.NewReader(fileContent)), nil
-}
diff --git a/vendor/github.com/gobuffalo/gogen/azure-pipelines.yml b/vendor/github.com/gobuffalo/gogen/azure-pipelines.yml
deleted file mode 100644
index 144c4a209..000000000
--- a/vendor/github.com/gobuffalo/gogen/azure-pipelines.yml
+++ /dev/null
@@ -1,59 +0,0 @@
-variables:
- GOBIN: "$(GOPATH)/bin" # Go binaries path
- GOPATH: "$(system.defaultWorkingDirectory)/gopath" # Go workspace path
- modulePath: "$(GOPATH)/src/github.com/$(build.repository.name)" # Path to the module"s code
-
-jobs:
-- job: Windows
- pool:
- vmImage: "vs2017-win2016"
- strategy:
- matrix:
- go 1.9:
- go_version: "1.9"
- go 1.10:
- go_version: "1.10"
- go 1.11 (on):
- go_version: "1.11"
- GO111MODULE: "on"
- go 1.11 (off):
- go_version: "1.11"
- GO111MODULE: "off"
- steps:
- - template: azure-tests.yml
-
-- job: macOS
- pool:
- vmImage: "macOS-10.13"
- strategy:
- matrix:
- go 1.9:
- go_version: "1.9"
- go 1.10:
- go_version: "1.10"
- go 1.11 (on):
- go_version: "1.11"
- GO111MODULE: "on"
- go 1.11 (off):
- go_version: "1.11"
- GO111MODULE: "off"
- steps:
- - template: azure-tests.yml
-
-- job: Linux
- pool:
- vmImage: "ubuntu-16.04"
- strategy:
- matrix:
- go 1.9:
- go_version: "1.9"
- go 1.10:
- go_version: "1.10"
- go 1.11 (on):
- go_version: "1.11"
- GO111MODULE: "on"
- go 1.11 (off):
- go_version: "1.11"
- GO111MODULE: "off"
- steps:
- - template: azure-tests.yml
diff --git a/vendor/github.com/gobuffalo/gogen/azure-tests.yml b/vendor/github.com/gobuffalo/gogen/azure-tests.yml
deleted file mode 100644
index eea5822fa..000000000
--- a/vendor/github.com/gobuffalo/gogen/azure-tests.yml
+++ /dev/null
@@ -1,19 +0,0 @@
-steps:
- - task: GoTool@0
- inputs:
- version: $(go_version)
- - task: Bash@3
- inputs:
- targetType: inline
- script: |
- mkdir -p "$(GOBIN)"
- mkdir -p "$(GOPATH)/pkg"
- mkdir -p "$(modulePath)"
- shopt -s extglob
- mv !(gopath) "$(modulePath)"
- displayName: "Setup Go Workspace"
- - script: |
- go get -t -v ./...
- go test -race ./...
- workingDirectory: "$(modulePath)"
- displayName: "Tests"
diff --git a/vendor/github.com/gobuffalo/gogen/files.go b/vendor/github.com/gobuffalo/gogen/files.go
deleted file mode 100644
index 33a464f43..000000000
--- a/vendor/github.com/gobuffalo/gogen/files.go
+++ /dev/null
@@ -1,36 +0,0 @@
-package gogen
-
-import (
- "os"
- "path/filepath"
- "strings"
-
- "github.com/pkg/errors"
-)
-
-func GoFiles(dir string) ([]string, error) {
- var files []string
-
- pwd, err := os.Getwd()
- if err != nil {
- return files, errors.WithStack(err)
- }
- if dir == "" {
- dir = pwd
- }
-
- err = filepath.Walk(dir, func(path string, info os.FileInfo, err error) error {
- path = strings.TrimPrefix(path, pwd+"/")
- if strings.Contains(path, ".git") || strings.Contains(path, "node_modules") || strings.Contains(path, "vendor"+string(os.PathSeparator)) {
- if info.IsDir() {
- return filepath.SkipDir
- }
- return nil
- }
- if filepath.Ext(path) == ".go" {
- files = append(files, path)
- }
- return nil
- })
- return files, nil
-}
diff --git a/vendor/github.com/gobuffalo/gogen/fmt.go b/vendor/github.com/gobuffalo/gogen/fmt.go
deleted file mode 100644
index 8d934791e..000000000
--- a/vendor/github.com/gobuffalo/gogen/fmt.go
+++ /dev/null
@@ -1,40 +0,0 @@
-package gogen
-
-import (
- "bytes"
-
- "github.com/gobuffalo/genny"
- "github.com/gobuffalo/gogen/goimports"
- "github.com/pkg/errors"
-)
-
-func Fmt(root string) (*genny.Generator, error) {
- g := genny.New()
- g.RunFn(func(r *genny.Runner) error {
- i, err := goimports.New(root)
- if err != nil {
- return errors.WithStack(err)
- }
- return i.Run()
- })
-
- return g, nil
-}
-
-func FmtTransformer() genny.Transformer {
- t := genny.NewTransformer(".go", func(f genny.File) (genny.File, error) {
- bb := &bytes.Buffer{}
- gi := goimports.NewFromFiles(goimports.File{
- Name: f.Name(),
- In: f,
- Out: bb,
- })
- if err := gi.Run(); err != nil {
- return f, errors.WithStack(err)
- }
- f = genny.NewFile(f.Name(), bb)
- return f, nil
- })
- t.StripExt = false
- return t
-}
diff --git a/vendor/github.com/gobuffalo/gogen/get.go b/vendor/github.com/gobuffalo/gogen/get.go
deleted file mode 100644
index d18a6ea47..000000000
--- a/vendor/github.com/gobuffalo/gogen/get.go
+++ /dev/null
@@ -1,24 +0,0 @@
-package gogen
-
-import (
- "os/exec"
-
- "github.com/gobuffalo/genny"
- "github.com/gobuffalo/gogen/gomods"
-)
-
-func Get(pkg string, args ...string) *exec.Cmd {
- args = append([]string{"get"}, args...)
- args = append(args, pkg)
- cmd := exec.Command(genny.GoBin(), args...)
- return cmd
-}
-
-func Install(pkg string, args ...string) genny.RunFn {
- return func(r *genny.Runner) error {
- return gomods.Disable(func() error {
- cmd := Get(pkg, args...)
- return r.Exec(cmd)
- })
- }
-}
diff --git a/vendor/github.com/gobuffalo/gogen/go.mod b/vendor/github.com/gobuffalo/gogen/go.mod
deleted file mode 100644
index dba473493..000000000
--- a/vendor/github.com/gobuffalo/gogen/go.mod
+++ /dev/null
@@ -1,10 +0,0 @@
-module github.com/gobuffalo/gogen
-
-require (
- github.com/gobuffalo/envy v1.6.15
- github.com/gobuffalo/genny v0.0.0-20190219203444-c95082806342
- github.com/markbates/safe v1.0.1
- github.com/pkg/errors v0.8.1
- github.com/stretchr/testify v1.3.0
- golang.org/x/tools v0.0.0-20190221204921-83362c3779f5
-)
diff --git a/vendor/github.com/gobuffalo/gogen/go.sum b/vendor/github.com/gobuffalo/gogen/go.sum
deleted file mode 100644
index 8225a08de..000000000
--- a/vendor/github.com/gobuffalo/gogen/go.sum
+++ /dev/null
@@ -1,534 +0,0 @@
-cloud.google.com/go v0.26.0/go.mod h1:aQUYkXzVsufM+DwF1aE+0xfcU+56JwCaLick0ClmMTw=
-cloud.google.com/go v0.31.0/go.mod h1:aQUYkXzVsufM+DwF1aE+0xfcU+56JwCaLick0ClmMTw=
-cloud.google.com/go v0.36.0/go.mod h1:RUoy9p/M4ge0HzT8L+SDZ8jg+Q6fth0CiBuhFJpSV40=
-dmitri.shuralyov.com/app/changes v0.0.0-20180602232624-0a106ad413e3/go.mod h1:Yl+fi1br7+Rr3LqpNJf1/uxUdtRUV+Tnj0o93V2B9MU=
-dmitri.shuralyov.com/html/belt v0.0.0-20180602232347-f7d459c86be0/go.mod h1:JLBrvjyP0v+ecvNYvCpyZgu5/xkfAUhi6wJj28eUfSU=
-dmitri.shuralyov.com/service/change v0.0.0-20181023043359-a85b471d5412/go.mod h1:a1inKt/atXimZ4Mv927x+r7UpyzRUf4emIoiiSC2TN4=
-dmitri.shuralyov.com/state v0.0.0-20180228185332-28bcc343414c/go.mod h1:0PRwlb0D6DFvNNtx+9ybjezNCa8XF0xaYcETyp6rHWU=
-git.apache.org/thrift.git v0.0.0-20180902110319-2566ecd5d999/go.mod h1:fPE2ZNJGynbRyZ4dJvy6G277gSllfV2HJqblrnkyeyg=
-github.com/BurntSushi/toml v0.3.1 h1:WXkYYl6Yr3qBf1K79EBnL4mak0OimBfB0XUf9Vl28OQ=
-github.com/BurntSushi/toml v0.3.1/go.mod h1:xHWCNGjB5oqiDr8zfno3MHue2Ht5sIBksp03qcyfWMU=
-github.com/Masterminds/semver v1.4.2/go.mod h1:MB6lktGJrhw8PrUyiEoblNEGEQ+RzHPF078ddwwvV3Y=
-github.com/ajg/form v0.0.0-20160822230020-523a5da1a92f/go.mod h1:uL1WgH+h2mgNtvBq0339dVnzXdBETtL2LeUXaIv25UY=
-github.com/anmitsu/go-shlex v0.0.0-20161002113705-648efa622239/go.mod h1:2FmKhYUyUczH0OGQWaF5ceTx0UBShxjsH6f8oGKYe2c=
-github.com/armon/consul-api v0.0.0-20180202201655-eb2c6b5be1b6/go.mod h1:grANhF5doyWs3UAsr3K4I6qtAmlQcZDesFNEHPZAzj8=
-github.com/beorn7/perks v0.0.0-20180321164747-3a771d992973/go.mod h1:Dwedo/Wpr24TaqPxmxbtue+5NUziq4I4S80YR8gNf3Q=
-github.com/bradfitz/go-smtpd v0.0.0-20170404230938-deb6d6237625/go.mod h1:HYsPBTaaSFSlLx/70C2HPIMNZpVV8+vt/A+FMnYP11g=
-github.com/client9/misspell v0.3.4/go.mod h1:qj6jICC3Q7zFZvVWo7KLAzC3yx5G7kyvSDkc90ppPyw=
-github.com/cockroachdb/apd v1.1.0/go.mod h1:8Sl8LxpKi29FqWXR16WEFZRNSz3SoPzUzeMeY4+DwBQ=
-github.com/cockroachdb/cockroach-go v0.0.0-20181001143604-e0a95dfd547c/go.mod h1:XGLbWH/ujMcbPbhZq52Nv6UrCghb1yGn//133kEsvDk=
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-github.com/coreos/etcd v3.3.10+incompatible/go.mod h1:uF7uidLiAD3TWHmW31ZFd/JWoc32PjwdhPthX9715RE=
-github.com/coreos/go-etcd v2.0.0+incompatible/go.mod h1:Jez6KQU2B/sWsbdaef3ED8NzMklzPG4d5KIOhIy30Tk=
-github.com/coreos/go-semver v0.2.0/go.mod h1:nnelYz7RCh+5ahJtPPxZlU+153eP4D4r3EedlOD2RNk=
-github.com/coreos/go-systemd v0.0.0-20181012123002-c6f51f82210d/go.mod h1:F5haX7vjVVG0kc13fIWeqUViNPyEJxv/OmvnBo0Yme4=
-github.com/davecgh/go-spew v1.1.0/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38=
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-github.com/dgrijalva/jwt-go v3.2.0+incompatible/go.mod h1:E3ru+11k8xSBh+hMPgOLZmtrrCbhqsmaPHjLKYnJCaQ=
-github.com/dustin/go-humanize v0.0.0-20180713052910-9f541cc9db5d/go.mod h1:HtrtbFcZ19U5GC7JDqmcUSB87Iq5E25KnS6fMYU6eOk=
-github.com/dustin/go-humanize v1.0.0/go.mod h1:HtrtbFcZ19U5GC7JDqmcUSB87Iq5E25KnS6fMYU6eOk=
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-github.com/fsnotify/fsnotify v1.4.7/go.mod h1:jwhsz4b93w/PPRr/qN1Yymfu8t87LnFCMoQvtojpjFo=
-github.com/ghodss/yaml v1.0.0/go.mod h1:4dBDuWmgqj2HViK6kFavaiC9ZROes6MMH2rRYeMEF04=
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-github.com/gobuffalo/buffalo v0.13.0/go.mod h1:Mjn1Ba9wpIbpbrD+lIDMy99pQ0H0LiddMIIDGse7qT4=
-github.com/gobuffalo/buffalo-plugins v1.0.2/go.mod h1:pOp/uF7X3IShFHyobahTkTLZaeUXwb0GrUTb9ngJWTs=
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-golang.org/x/tools v0.0.0-20181024171208-a2dc47679d30/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
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-golang.org/x/tools v0.0.0-20181105230042-78dc5bac0cac/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
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-golang.org/x/tools v0.0.0-20181114190951-94339b83286c/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20181119130350-139d099f6620/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
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-golang.org/x/tools v0.0.0-20190221204921-83362c3779f5 h1:ev5exjGDsOo0NPTB0qdCcE53BfWl1IICJlhgXgfT9fM=
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-google.golang.org/api v0.1.0/go.mod h1:UGEZY7KEX120AnNLIHFMKIo4obdJhkp2tPbaPlQx13Y=
-google.golang.org/appengine v1.1.0/go.mod h1:EbEs0AVv82hx2wNQdGPgUI5lhzA/G0D9YwlJXL52JkM=
-google.golang.org/appengine v1.2.0/go.mod h1:xpcJRLb0r/rnEns0DIKYYv+WjYCduHsrkT7/EB5XEv4=
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-google.golang.org/appengine v1.4.0/go.mod h1:xpcJRLb0r/rnEns0DIKYYv+WjYCduHsrkT7/EB5XEv4=
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-google.golang.org/genproto v0.0.0-20180831171423-11092d34479b/go.mod h1:JiN7NxoALGmiZfu7CAH4rXhgtRTLTxftemlI0sWmxmc=
-google.golang.org/genproto v0.0.0-20181029155118-b69ba1387ce2/go.mod h1:JiN7NxoALGmiZfu7CAH4rXhgtRTLTxftemlI0sWmxmc=
-google.golang.org/genproto v0.0.0-20181202183823-bd91e49a0898/go.mod h1:7Ep/1NZk928CDR8SjdVbjWNpdIf6nzjE3BTgJDr2Atg=
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-google.golang.org/grpc v1.14.0/go.mod h1:yo6s7OP7yaDglbqo1J04qKzAhqBH6lvTonzMVmEdcZw=
-google.golang.org/grpc v1.16.0/go.mod h1:0JHn/cJsOMiMfNA9+DeHDlAU7KAAB5GDlYFpa9MZMio=
-google.golang.org/grpc v1.17.0/go.mod h1:6QZJwpn2B+Zp71q/5VxRsJ6NXXVCE5NRUHRo+f3cWCs=
-gopkg.in/airbrake/gobrake.v2 v2.0.9/go.mod h1:/h5ZAUhDkGaJfjzjKLSjv6zCL6O0LLBxU4K+aSYdM/U=
-gopkg.in/alexcesaro/quotedprintable.v3 v3.0.0-20150716171945-2caba252f4dc/go.mod h1:m7x9LTH6d71AHyAX77c9yqWCCa3UKHcVEj9y7hAtKDk=
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-gopkg.in/check.v1 v1.0.0-20180628173108-788fd7840127/go.mod h1:Co6ibVJAznAaIkqp8huTwlJQCZ016jof/cbN4VW5Yz0=
-gopkg.in/errgo.v2 v2.1.0/go.mod h1:hNsd1EY+bozCKY1Ytp96fpM3vjJbqLJn88ws8XvfDNI=
-gopkg.in/fsnotify.v1 v1.4.7/go.mod h1:Tz8NjZHkW78fSQdbUxIjBTcgA1z1m8ZHf0WmKUhAMys=
-gopkg.in/gemnasium/logrus-airbrake-hook.v2 v2.1.2/go.mod h1:Xk6kEKp8OKb+X14hQBKWaSkCsqBpgog8nAV2xsGOxlo=
-gopkg.in/gomail.v2 v2.0.0-20160411212932-81ebce5c23df/go.mod h1:LRQQ+SO6ZHR7tOkpBDuZnXENFzX8qRjMDMyPD6BRkCw=
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-gopkg.in/mail.v2 v2.0.0-20180731213649-a0242b2233b4/go.mod h1:htwXN1Qh09vZJ1NVKxQqHPBaCBbzKhp5GzuJEA4VJWw=
-gopkg.in/tomb.v1 v1.0.0-20141024135613-dd632973f1e7/go.mod h1:dt/ZhP58zS4L8KSrWDmTeBkI65Dw0HsyUHuEVlX15mw=
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-honnef.co/go/tools v0.0.0-20180728063816-88497007e858/go.mod h1:rf3lG4BRIbNafJWhAfAdb/ePZxsR/4RtNHQocxwk9r4=
-honnef.co/go/tools v0.0.0-20190106161140-3f1c8253044a/go.mod h1:rf3lG4BRIbNafJWhAfAdb/ePZxsR/4RtNHQocxwk9r4=
-sourcegraph.com/sourcegraph/go-diff v0.5.0/go.mod h1:kuch7UrkMzY0X+p9CRK03kfuPQ2zzQcaEFbx8wA8rck=
-sourcegraph.com/sqs/pbtypes v0.0.0-20180604144634-d3ebe8f20ae4/go.mod h1:ketZ/q3QxT9HOBeFhu6RdvsftgpsbFHBF5Cas6cDKZ0=
diff --git a/vendor/github.com/gobuffalo/gogen/goimports/LICENSE b/vendor/github.com/gobuffalo/gogen/goimports/LICENSE
deleted file mode 100644
index 6a66aea5e..000000000
--- a/vendor/github.com/gobuffalo/gogen/goimports/LICENSE
+++ /dev/null
@@ -1,27 +0,0 @@
-Copyright (c) 2009 The Go Authors. All rights reserved.
-
-Redistribution and use in source and binary forms, with or without
-modification, are permitted provided that the following conditions are
-met:
-
- * Redistributions of source code must retain the above copyright
-notice, this list of conditions and the following disclaimer.
- * Redistributions in binary form must reproduce the above
-copyright notice, this list of conditions and the following disclaimer
-in the documentation and/or other materials provided with the
-distribution.
- * Neither the name of Google Inc. nor the names of its
-contributors may be used to endorse or promote products derived from
-this software without specific prior written permission.
-
-THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
-OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
-SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
-LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
-DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
-THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
-(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
-OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
diff --git a/vendor/github.com/gobuffalo/gogen/goimports/README.md b/vendor/github.com/gobuffalo/gogen/goimports/README.md
deleted file mode 100644
index 2fc751375..000000000
--- a/vendor/github.com/gobuffalo/gogen/goimports/README.md
+++ /dev/null
@@ -1,5 +0,0 @@
-# goimports
-
-This package is a modified version of [https://github.com/golang/tools/tree/master/cmd/goimports](https://github.com/golang/tools/tree/master/cmd/goimports) to be called programmatically, instead of via the binary.
-
-Please see the `LICENSE` file details on the original license.
diff --git a/vendor/github.com/gobuffalo/gogen/goimports/goimports.go b/vendor/github.com/gobuffalo/gogen/goimports/goimports.go
deleted file mode 100644
index 1c68a124e..000000000
--- a/vendor/github.com/gobuffalo/gogen/goimports/goimports.go
+++ /dev/null
@@ -1,122 +0,0 @@
-// Copyright 2013 The Go Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package goimports
-
-import (
- "bytes"
- "io"
- "io/ioutil"
- "os"
- "path/filepath"
- "strings"
-
- "github.com/pkg/errors"
- "golang.org/x/tools/imports"
-)
-
-type File struct {
- Name string
- In io.Reader
- Out io.Writer
-}
-
-type Runner struct {
- files []File
-}
-
-func New(path ...string) (Runner, error) {
- r := Runner{}
- files, err := buildFiles(path...)
- if err != nil {
- return r, errors.WithStack(err)
- }
- r.files = files
- return r, nil
-}
-
-func NewFromFiles(files ...File) Runner {
- return Runner{
- files: files,
- }
-}
-
-func (r Runner) Run() error {
- for _, file := range r.files {
- if err := r.processFile(file); err != nil {
- return errors.WithStack(err)
- }
- }
- return nil
-}
-
-func (r Runner) processFile(file File) error {
- var src []byte
- var err error
- if file.In == nil {
- src, err = ioutil.ReadFile(file.Name)
- } else {
- src, err = ioutil.ReadAll(file.In)
- }
- if err != nil {
- return errors.WithStack(err)
- }
- res, err := imports.Process(file.Name, src, nil)
- if err != nil && err != io.EOF {
- return errors.WithStack(err)
- }
- if bytes.Equal(src, res) {
- if s, ok := file.In.(io.Seeker); ok {
- s.Seek(0, 0)
- }
- return nil
- }
- if file.Out == nil {
- if err = ioutil.WriteFile(file.Name, res, 0); err != nil {
- return errors.WithStack(err)
- }
- return nil
- }
- _, err = file.Out.Write(res)
- if c, ok := file.Out.(io.Closer); ok {
- c.Close()
- }
- return err
-}
-
-func isGoFile(f os.FileInfo) bool {
- // ignore non-Go files
- name := f.Name()
- return !f.IsDir() && !strings.HasPrefix(name, ".") && strings.HasSuffix(name, ".go")
-}
-
-func buildFiles(paths ...string) ([]File, error) {
- var files []File
- for _, root := range paths {
- err := filepath.Walk(root, func(path string, info os.FileInfo, _ error) error {
- if info == nil {
- return nil
- }
- if info.IsDir() {
- return nil
- }
- if !isGoFile(info) {
- return nil
- }
- b, err := ioutil.ReadFile(path)
- if err != nil {
- return errors.WithStack(err)
- }
- files = append(files, File{
- Name: path,
- In: bytes.NewReader(b),
- })
- return nil
- })
- if err != nil {
- return files, errors.WithStack(err)
- }
- }
- return files, nil
-}
diff --git a/vendor/github.com/gobuffalo/gogen/gomods/gomods.go b/vendor/github.com/gobuffalo/gogen/gomods/gomods.go
deleted file mode 100644
index 906fefea8..000000000
--- a/vendor/github.com/gobuffalo/gogen/gomods/gomods.go
+++ /dev/null
@@ -1,32 +0,0 @@
-package gomods
-
-import (
- "github.com/gobuffalo/envy"
- "github.com/markbates/safe"
- "github.com/pkg/errors"
-)
-
-const ENV = "GO111MODULE"
-
-var ErrModsOff = errors.New("go mods are turned off")
-
-func Force(b bool) {
- if b {
- envy.MustSet(ENV, "on")
- return
- }
- envy.MustSet(ENV, "off")
-}
-
-func On() bool {
- return envy.Mods()
-}
-
-func Disable(fn func() error) error {
- oe := envy.Get(ENV, "off")
- envy.MustSet(ENV, "off")
-
- err := safe.RunE(fn)
- envy.MustSet(ENV, oe)
- return err
-}
diff --git a/vendor/github.com/gobuffalo/gogen/gomods/init.go b/vendor/github.com/gobuffalo/gogen/gomods/init.go
deleted file mode 100644
index 3d239c755..000000000
--- a/vendor/github.com/gobuffalo/gogen/gomods/init.go
+++ /dev/null
@@ -1,66 +0,0 @@
-package gomods
-
-import (
- "go/build"
- "os"
- "os/exec"
- "strings"
-
- "github.com/gobuffalo/genny"
- "github.com/pkg/errors"
-)
-
-func New(name string, path string) (*genny.Group, error) {
- g := &genny.Group{}
-
- init, err := Init(name, path)
- if err != nil {
- return g, errors.WithStack(err)
- }
- g.Add(init)
-
- tidy, err := Tidy(path, false)
- if err != nil {
- return g, errors.WithStack(err)
- }
- g.Add(tidy)
- return g, nil
-}
-
-func Init(name string, path string) (*genny.Generator, error) {
- if len(name) == 0 && len(path) == 0 {
- pwd, err := os.Getwd()
- if err != nil {
- return nil, errors.WithStack(err)
- }
- path = pwd
- }
-
- if len(name) == 0 && path != "." {
- name = path
- c := build.Default
- for _, s := range c.SrcDirs() {
- name = strings.TrimPrefix(name, s)
- }
- }
-
- name = strings.Replace(name, "\\", "/", -1)
- name = strings.TrimPrefix(name, "/")
-
- g := genny.New()
- g.StepName = "go:mod:init:" + name
- g.RunFn(func(r *genny.Runner) error {
- if !On() {
- return nil
- }
- return r.Chdir(path, func() error {
- args := []string{"mod", "init"}
- if len(name) > 0 {
- args = append(args, name)
- }
- cmd := exec.Command(genny.GoBin(), args...)
- return r.Exec(cmd)
- })
- })
- return g, nil
-}
diff --git a/vendor/github.com/gobuffalo/gogen/gomods/tidy.go b/vendor/github.com/gobuffalo/gogen/gomods/tidy.go
deleted file mode 100644
index b6c901fab..000000000
--- a/vendor/github.com/gobuffalo/gogen/gomods/tidy.go
+++ /dev/null
@@ -1,25 +0,0 @@
-package gomods
-
-import (
- "os/exec"
-
- "github.com/gobuffalo/genny"
-)
-
-func Tidy(path string, verbose bool) (*genny.Generator, error) {
- g := genny.New()
- g.StepName = "go:mod:tidy:" + path
- g.RunFn(func(r *genny.Runner) error {
- if !On() {
- return nil
- }
- return r.Chdir(path, func() error {
- cmd := exec.Command(genny.GoBin(), "mod", "tidy")
- if verbose {
- cmd.Args = append(cmd.Args, "-v")
- }
- return r.Exec(cmd)
- })
- })
- return g, nil
-}
diff --git a/vendor/github.com/gobuffalo/gogen/package.go b/vendor/github.com/gobuffalo/gogen/package.go
deleted file mode 100644
index 56c05646b..000000000
--- a/vendor/github.com/gobuffalo/gogen/package.go
+++ /dev/null
@@ -1,20 +0,0 @@
-package gogen
-
-import (
- "path/filepath"
-
- "github.com/gobuffalo/genny"
- "github.com/pkg/errors"
-)
-
-func PackageName(f genny.File) (string, error) {
- pkg := filepath.Base(filepath.Dir(f.Name()))
- pf, err := ParseFile(f)
- if err == nil {
- pkg = pf.Ast.Name.String()
- }
- if len(pkg) == 0 || pkg == "." {
- return "", errors.New("could not determine package")
- }
- return pkg, nil
-}
diff --git a/vendor/github.com/gobuffalo/gogen/parsed_file.go b/vendor/github.com/gobuffalo/gogen/parsed_file.go
deleted file mode 100644
index 3fc330c16..000000000
--- a/vendor/github.com/gobuffalo/gogen/parsed_file.go
+++ /dev/null
@@ -1,40 +0,0 @@
-package gogen
-
-import (
- "go/ast"
- "go/parser"
- "go/token"
- "io"
- "strings"
-
- "github.com/gobuffalo/genny"
- "github.com/pkg/errors"
-)
-
-type ParsedFile struct {
- File genny.File
- FileSet *token.FileSet
- Ast *ast.File
- Lines []string
-}
-
-func ParseFileMode(gf genny.File, mode parser.Mode) (ParsedFile, error) {
- pf := ParsedFile{
- FileSet: token.NewFileSet(),
- File: gf,
- }
-
- src := gf.String()
- f, err := parser.ParseFile(pf.FileSet, gf.Name(), src, mode)
- if err != nil && errors.Cause(err) != io.EOF {
- return pf, errors.WithStack(err)
- }
- pf.Ast = f
-
- pf.Lines = strings.Split(src, "\n")
- return pf, nil
-}
-
-func ParseFile(gf genny.File) (ParsedFile, error) {
- return ParseFileMode(gf, 0)
-}
diff --git a/vendor/github.com/gobuffalo/gogen/replace_block_body.go b/vendor/github.com/gobuffalo/gogen/replace_block_body.go
deleted file mode 100644
index e56194e15..000000000
--- a/vendor/github.com/gobuffalo/gogen/replace_block_body.go
+++ /dev/null
@@ -1,27 +0,0 @@
-package gogen
-
-import (
- "strings"
-
- "github.com/gobuffalo/genny"
- "github.com/pkg/errors"
-)
-
-// ReplaceBlockBody will replace found block with expressions passed
-func ReplaceBlockBody(gf genny.File, search string, expressions ...string) (genny.File, error) {
- pf, err := ParseFile(gf)
- if err != nil {
- return gf, errors.WithStack(err)
- }
- gf = pf.File
-
- start, end := findBlockCoordinates(search, pf)
- if end < 0 {
- return gf, errors.Errorf("could not find desired block in %s", gf.Name())
- }
-
- pf.Lines = append(pf.Lines[:start], append(expressions, pf.Lines[end:]...)...)
-
- fileContent := strings.Join(pf.Lines, "\n")
- return genny.NewFile(gf.Name(), strings.NewReader(fileContent)), nil
-}
diff --git a/vendor/github.com/gobuffalo/gogen/rewrite_import.go b/vendor/github.com/gobuffalo/gogen/rewrite_import.go
deleted file mode 100644
index 86e705b25..000000000
--- a/vendor/github.com/gobuffalo/gogen/rewrite_import.go
+++ /dev/null
@@ -1,34 +0,0 @@
-package gogen
-
-import (
- "bytes"
- "go/ast"
- "go/parser"
- "go/printer"
-
- "github.com/gobuffalo/genny"
- "github.com/pkg/errors"
- "golang.org/x/tools/go/ast/astutil"
-)
-
-func RewriteImports(gf genny.File, swaps map[string]string) (genny.File, error) {
- pf, err := ParseFileMode(gf, parser.ParseComments)
- if err != nil {
- return gf, errors.WithStack(err)
- }
- for key, value := range swaps {
- if !astutil.DeleteImport(pf.FileSet, pf.Ast, key) {
- continue
- }
-
- astutil.AddImport(pf.FileSet, pf.Ast, value)
- }
- ast.SortImports(pf.FileSet, pf.Ast)
-
- w := &bytes.Buffer{}
- if err = (&printer.Config{Mode: printer.TabIndent | printer.UseSpaces, Tabwidth: 8}).Fprint(w, pf.FileSet, pf.Ast); err != nil {
- return gf, errors.WithStack(err)
- }
-
- return genny.NewFile(gf.Name(), w), nil
-}
diff --git a/vendor/github.com/gobuffalo/gogen/templates.go b/vendor/github.com/gobuffalo/gogen/templates.go
deleted file mode 100644
index aa4e4b039..000000000
--- a/vendor/github.com/gobuffalo/gogen/templates.go
+++ /dev/null
@@ -1,52 +0,0 @@
-package gogen
-
-import (
- "bytes"
- "io/ioutil"
-
- "text/template"
-
- "github.com/gobuffalo/genny"
- "github.com/pkg/errors"
-)
-
-var TemplateHelpers = map[string]interface{}{}
-
-// TemplateTransformer will run any file that has a ".tmpl" extension through text/template
-func TemplateTransformer(data interface{}, helpers map[string]interface{}) genny.Transformer {
- if helpers == nil {
- helpers = TemplateHelpers
- }
- t := genny.NewTransformer(".tmpl", func(f genny.File) (genny.File, error) {
- return renderWithTemplate(f, data, helpers)
- })
- t.StripExt = true
- return t
-}
-
-func renderWithTemplate(f genny.File, data interface{}, helpers template.FuncMap) (genny.File, error) {
- if f == nil {
- return f, errors.New("file was nil")
- }
- path := f.Name()
- t := template.New(path)
- if helpers != nil {
- t = t.Funcs(helpers)
- }
-
- b, err := ioutil.ReadAll(f)
- if err != nil {
- return f, errors.WithStack(err)
- }
- t, err = t.Parse(string(b))
- if err != nil {
- return f, errors.WithStack(err)
- }
-
- var bb bytes.Buffer
- if err = t.Execute(&bb, data); err != nil {
- err = errors.WithStack(err)
- return f, errors.WithStack(err)
- }
- return genny.StripExt(genny.NewFile(path, &bb), ".tmpl"), nil
-}
diff --git a/vendor/github.com/gobuffalo/gogen/version.go b/vendor/github.com/gobuffalo/gogen/version.go
deleted file mode 100644
index 8a51a5c47..000000000
--- a/vendor/github.com/gobuffalo/gogen/version.go
+++ /dev/null
@@ -1,4 +0,0 @@
-package gogen
-
-// Version of gogen
-const Version = "v0.0.1"
diff --git a/vendor/github.com/gobuffalo/logger/.gitignore b/vendor/github.com/gobuffalo/logger/.gitignore
deleted file mode 100644
index 368971859..000000000
--- a/vendor/github.com/gobuffalo/logger/.gitignore
+++ /dev/null
@@ -1,29 +0,0 @@
-*.log
-.DS_Store
-doc
-tmp
-pkg
-*.gem
-*.pid
-coverage
-coverage.data
-build/*
-*.pbxuser
-*.mode1v3
-.svn
-profile
-.console_history
-.sass-cache/*
-.rake_tasks~
-*.log.lck
-solr/
-.jhw-cache/
-jhw.*
-*.sublime*
-node_modules/
-dist/
-generated/
-.vendor/
-bin/*
-gin-bin
-.idea/
diff --git a/vendor/github.com/gobuffalo/logger/.gometalinter.json b/vendor/github.com/gobuffalo/logger/.gometalinter.json
deleted file mode 100644
index e4f65a36e..000000000
--- a/vendor/github.com/gobuffalo/logger/.gometalinter.json
+++ /dev/null
@@ -1,3 +0,0 @@
-{
- "Enable": ["vet", "golint", "goimports", "deadcode", "gotype", "ineffassign", "misspell", "nakedret", "unconvert", "megacheck", "varcheck"]
-}
diff --git a/vendor/github.com/gobuffalo/logger/LICENSE b/vendor/github.com/gobuffalo/logger/LICENSE
deleted file mode 100644
index a538bcbf2..000000000
--- a/vendor/github.com/gobuffalo/logger/LICENSE
+++ /dev/null
@@ -1,21 +0,0 @@
-The MIT License (MIT)
-
-Copyright (c) 2018 Mark Bates
-
-Permission is hereby granted, free of charge, to any person obtaining a copy
-of this software and associated documentation files (the "Software"), to deal
-in the Software without restriction, including without limitation the rights
-to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
-copies of the Software, and to permit persons to whom the Software is
-furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in all
-copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
-IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
-FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
-AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
-LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
-OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
-SOFTWARE.
diff --git a/vendor/github.com/gobuffalo/logger/Makefile b/vendor/github.com/gobuffalo/logger/Makefile
deleted file mode 100644
index e0e2f3baa..000000000
--- a/vendor/github.com/gobuffalo/logger/Makefile
+++ /dev/null
@@ -1,55 +0,0 @@
-TAGS ?= "sqlite"
-GO_BIN ?= go
-
-install:
- packr
- $(GO_BIN) install -tags ${TAGS} -v .
- make tidy
-
-tidy:
-ifeq ($(GO111MODULE),on)
- $(GO_BIN) mod tidy
-else
- echo skipping go mod tidy
-endif
-
-deps:
- $(GO_BIN) get github.com/gobuffalo/release
- $(GO_BIN) get github.com/gobuffalo/packr/packr
- $(GO_BIN) get -tags ${TAGS} -t ./...
- make tidy
-
-build:
- packr
- $(GO_BIN) build -v .
- make tidy
-
-test:
- packr
- $(GO_BIN) test -tags ${TAGS} ./...
- make tidy
-
-ci-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
- make tidy
-
-lint:
- gometalinter --vendor ./... --deadline=1m --skip=internal
- make tidy
-
-update:
- $(GO_BIN) get -u -tags ${TAGS}
- make tidy
- packr
- make test
- make install
- make tidy
-
-release-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
- make tidy
-
-release:
- make tidy
- release -y -f version.go
- make tidy
diff --git a/vendor/github.com/gobuffalo/logger/README.md b/vendor/github.com/gobuffalo/logger/README.md
deleted file mode 100644
index 15aefce98..000000000
--- a/vendor/github.com/gobuffalo/logger/README.md
+++ /dev/null
@@ -1,22 +0,0 @@
-
-
-
-
-
-
-
-
-# Logger
-
-The [`logger.Logger`](https://godoc.org/github.com/gobuffalo/logger#Logger) interface is used throughout Buffalo apps, and other systems, to log a whole manner of things.
-
-## Installation
-
-```bash
-$ go get -u github.com/gobuffalo/logger
-```
-
-## Documentation
-
-* [GoDoc](https://godoc.org/github.com/gobuffalo/logger)
-* [General Buffalo Documentation](https://gobuffalo.io)
diff --git a/vendor/github.com/gobuffalo/logger/azure-pipelines.yml b/vendor/github.com/gobuffalo/logger/azure-pipelines.yml
deleted file mode 100644
index 144c4a209..000000000
--- a/vendor/github.com/gobuffalo/logger/azure-pipelines.yml
+++ /dev/null
@@ -1,59 +0,0 @@
-variables:
- GOBIN: "$(GOPATH)/bin" # Go binaries path
- GOPATH: "$(system.defaultWorkingDirectory)/gopath" # Go workspace path
- modulePath: "$(GOPATH)/src/github.com/$(build.repository.name)" # Path to the module"s code
-
-jobs:
-- job: Windows
- pool:
- vmImage: "vs2017-win2016"
- strategy:
- matrix:
- go 1.9:
- go_version: "1.9"
- go 1.10:
- go_version: "1.10"
- go 1.11 (on):
- go_version: "1.11"
- GO111MODULE: "on"
- go 1.11 (off):
- go_version: "1.11"
- GO111MODULE: "off"
- steps:
- - template: azure-tests.yml
-
-- job: macOS
- pool:
- vmImage: "macOS-10.13"
- strategy:
- matrix:
- go 1.9:
- go_version: "1.9"
- go 1.10:
- go_version: "1.10"
- go 1.11 (on):
- go_version: "1.11"
- GO111MODULE: "on"
- go 1.11 (off):
- go_version: "1.11"
- GO111MODULE: "off"
- steps:
- - template: azure-tests.yml
-
-- job: Linux
- pool:
- vmImage: "ubuntu-16.04"
- strategy:
- matrix:
- go 1.9:
- go_version: "1.9"
- go 1.10:
- go_version: "1.10"
- go 1.11 (on):
- go_version: "1.11"
- GO111MODULE: "on"
- go 1.11 (off):
- go_version: "1.11"
- GO111MODULE: "off"
- steps:
- - template: azure-tests.yml
diff --git a/vendor/github.com/gobuffalo/logger/azure-tests.yml b/vendor/github.com/gobuffalo/logger/azure-tests.yml
deleted file mode 100644
index eea5822fa..000000000
--- a/vendor/github.com/gobuffalo/logger/azure-tests.yml
+++ /dev/null
@@ -1,19 +0,0 @@
-steps:
- - task: GoTool@0
- inputs:
- version: $(go_version)
- - task: Bash@3
- inputs:
- targetType: inline
- script: |
- mkdir -p "$(GOBIN)"
- mkdir -p "$(GOPATH)/pkg"
- mkdir -p "$(modulePath)"
- shopt -s extglob
- mv !(gopath) "$(modulePath)"
- displayName: "Setup Go Workspace"
- - script: |
- go get -t -v ./...
- go test -race ./...
- workingDirectory: "$(modulePath)"
- displayName: "Tests"
diff --git a/vendor/github.com/gobuffalo/logger/formatter.go b/vendor/github.com/gobuffalo/logger/formatter.go
deleted file mode 100644
index cb173d77e..000000000
--- a/vendor/github.com/gobuffalo/logger/formatter.go
+++ /dev/null
@@ -1,153 +0,0 @@
-package logger
-
-// I really don't want to have this, but until (if) https://github.com/sirupsen/logrus/pull/606 is merged we're stuck with all this code. And yes, this is ALL needed just to remove some blank space in the logs
-
-import (
- "bytes"
- "fmt"
- "sort"
- "strings"
- "sync"
- "time"
-
- "github.com/sirupsen/logrus"
-)
-
-const (
- red = 31
- yellow = 33
- blue = 36
- gray = 37
-)
-
-// textFormatter formats logs into text
-type textFormatter struct {
- ForceColors bool
- isTerminal bool
- sync.Once
-}
-
-func (f *textFormatter) init(entry *logrus.Entry) {
- if entry.Logger != nil {
- f.isTerminal = checkIfTerminal(entry.Logger.Out)
- }
-}
-
-const defaultTimestampFormat = time.RFC3339
-
-// Format renders a single log entry
-func (f *textFormatter) Format(entry *logrus.Entry) ([]byte, error) {
- prefixFieldClashes(entry.Data)
-
- keys := make([]string, 0, len(entry.Data))
- for k := range entry.Data {
- keys = append(keys, k)
- }
-
- sort.Strings(keys)
-
- var b *bytes.Buffer
- if entry.Buffer != nil {
- b = entry.Buffer
- } else {
- b = &bytes.Buffer{}
- }
-
- f.Do(func() { f.init(entry) })
-
- isColored := (f.ForceColors || f.isTerminal)
-
- if isColored {
- f.printColored(b, entry, keys)
- } else {
- f.appendKeyValue(b, "level", entry.Level.String())
- if entry.Message != "" {
- f.appendKeyValue(b, "msg", entry.Message)
- }
- for _, key := range keys {
- f.appendKeyValue(b, key, entry.Data[key])
- }
- }
-
- b.WriteByte('\n')
- return b.Bytes(), nil
-}
-
-func (f *textFormatter) printColored(b *bytes.Buffer, entry *logrus.Entry, keys []string) {
- var levelColor int
- switch entry.Level {
- case logrus.DebugLevel:
- levelColor = gray
- case logrus.WarnLevel:
- levelColor = yellow
- case logrus.ErrorLevel, logrus.FatalLevel, logrus.PanicLevel:
- levelColor = red
- default:
- levelColor = blue
- }
-
- levelText := strings.ToUpper(entry.Level.String())[0:4]
-
- fmt.Fprintf(b, "\x1b[%dm%s\x1b[0m[%s]", levelColor, levelText, entry.Time.Format(defaultTimestampFormat))
-
- if entry.Message != "" {
- fmt.Fprintf(b, " %s", entry.Message)
- }
-
- for _, k := range keys {
- v := entry.Data[k]
- fmt.Fprintf(b, " \x1b[%dm%s\x1b[0m=", levelColor, k)
- f.appendValue(b, v)
- }
-}
-
-func (f *textFormatter) needsQuoting(text string) bool {
- if len(text) == 0 {
- return true
- }
- for _, ch := range text {
- if !((ch >= 'a' && ch <= 'z') ||
- (ch >= 'A' && ch <= 'Z') ||
- (ch >= '0' && ch <= '9') ||
- ch == '-' || ch == '.' || ch == '_' || ch == '/' || ch == '@' || ch == '^' || ch == '+') {
- return true
- }
- }
- return false
-}
-
-func (f *textFormatter) appendKeyValue(b *bytes.Buffer, key string, value interface{}) {
- if b.Len() > 0 {
- b.WriteByte(' ')
- }
- b.WriteString(key)
- b.WriteByte('=')
- f.appendValue(b, value)
-}
-
-func (f *textFormatter) appendValue(b *bytes.Buffer, value interface{}) {
- stringVal, ok := value.(string)
- if !ok {
- stringVal = fmt.Sprint(value)
- }
-
- if !f.needsQuoting(stringVal) {
- b.WriteString(stringVal)
- } else {
- b.WriteString(fmt.Sprintf("%q", stringVal))
- }
-}
-
-func prefixFieldClashes(data logrus.Fields) {
- if t, ok := data["time"]; ok {
- data["fields.time"] = t
- }
-
- if m, ok := data["msg"]; ok {
- data["fields.msg"] = m
- }
-
- if l, ok := data["level"]; ok {
- data["fields.level"] = l
- }
-}
diff --git a/vendor/github.com/gobuffalo/logger/go.mod b/vendor/github.com/gobuffalo/logger/go.mod
deleted file mode 100644
index 751943b33..000000000
--- a/vendor/github.com/gobuffalo/logger/go.mod
+++ /dev/null
@@ -1,7 +0,0 @@
-module github.com/gobuffalo/logger
-
-require (
- github.com/gobuffalo/envy v1.6.9
- github.com/sirupsen/logrus v1.2.0
- golang.org/x/crypto v0.0.0-20181127143415-eb0de9b17e85
-)
diff --git a/vendor/github.com/gobuffalo/logger/go.sum b/vendor/github.com/gobuffalo/logger/go.sum
deleted file mode 100644
index 0df0a19ba..000000000
--- a/vendor/github.com/gobuffalo/logger/go.sum
+++ /dev/null
@@ -1,20 +0,0 @@
-github.com/davecgh/go-spew v1.1.1 h1:vj9j/u1bqnvCEfJOwUhtlOARqs3+rkHYY13jYWTU97c=
-github.com/davecgh/go-spew v1.1.1/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38=
-github.com/gobuffalo/envy v1.6.9 h1:ShEJ/fUg/wr5qIYmTTOnUQ0sy1yGo+4uYQJNgg753S8=
-github.com/gobuffalo/envy v1.6.9/go.mod h1:N+GkhhZ/93bGZc6ZKhJLP6+m+tCNPKwgSpH9kaifseQ=
-github.com/joho/godotenv v1.3.0 h1:Zjp+RcGpHhGlrMbJzXTrZZPrWj+1vfm90La1wgB6Bhc=
-github.com/joho/godotenv v1.3.0/go.mod h1:7hK45KPybAkOC6peb+G5yklZfMxEjkZhHbwpqxOKXbg=
-github.com/konsorten/go-windows-terminal-sequences v1.0.1 h1:mweAR1A6xJ3oS2pRaGiHgQ4OO8tzTaLawm8vnODuwDk=
-github.com/konsorten/go-windows-terminal-sequences v1.0.1/go.mod h1:T0+1ngSBFLxvqU3pZ+m/2kptfBszLMUkC4ZK/EgS/cQ=
-github.com/pmezard/go-difflib v1.0.0 h1:4DBwDE0NGyQoBHbLQYPwSUPoCMWR5BEzIk/f1lZbAQM=
-github.com/pmezard/go-difflib v1.0.0/go.mod h1:iKH77koFhYxTK1pcRnkKkqfTogsbg7gZNVY4sRDYZ/4=
-github.com/sirupsen/logrus v1.2.0 h1:juTguoYk5qI21pwyTXY3B3Y5cOTH3ZUyZCg1v/mihuo=
-github.com/sirupsen/logrus v1.2.0/go.mod h1:LxeOpSwHxABJmUn/MG1IvRgCAasNZTLOkJPxbbu5VWo=
-github.com/stretchr/objx v0.1.1/go.mod h1:HFkY916IF+rwdDfMAkV7OtwuqBVzrE8GR6GFx+wExME=
-github.com/stretchr/testify v1.2.2 h1:bSDNvY7ZPG5RlJ8otE/7V6gMiyenm9RtJ7IUVIAoJ1w=
-github.com/stretchr/testify v1.2.2/go.mod h1:a8OnRcib4nhh0OaRAV+Yts87kKdq0PP7pXfy6kDkUVs=
-golang.org/x/crypto v0.0.0-20180904163835-0709b304e793/go.mod h1:6SG95UA2DQfeDnfUPMdvaQW0Q7yPrPDi9nlGo2tz2b4=
-golang.org/x/crypto v0.0.0-20181127143415-eb0de9b17e85 h1:et7+NAX3lLIk5qUCTA9QelBjGE/NkhzYw/mhnr0s7nI=
-golang.org/x/crypto v0.0.0-20181127143415-eb0de9b17e85/go.mod h1:6SG95UA2DQfeDnfUPMdvaQW0Q7yPrPDi9nlGo2tz2b4=
-golang.org/x/sys v0.0.0-20180905080454-ebe1bf3edb33 h1:I6FyU15t786LL7oL/hn43zqTuEGr4PN7F4XJ1p4E3Y8=
-golang.org/x/sys v0.0.0-20180905080454-ebe1bf3edb33/go.mod h1:STP8DvDyc/dI5b8T5hshtkjS+E42TnysNCUPdjciGhY=
diff --git a/vendor/github.com/gobuffalo/logger/level.go b/vendor/github.com/gobuffalo/logger/level.go
deleted file mode 100644
index 0c9199a7a..000000000
--- a/vendor/github.com/gobuffalo/logger/level.go
+++ /dev/null
@@ -1,25 +0,0 @@
-package logger
-
-import "github.com/sirupsen/logrus"
-
-// Level of the logger
-type Level = logrus.Level
-
-const (
- // PanicLevel level, highest level of severity. Logs and then calls panic with the
- // message passed to Debug, Info, ...
- PanicLevel = logrus.PanicLevel
- // FatalLevel level. Logs and then calls `logger.Exit(1)`. It will exit even if the
- // logging level is set to Panic.
- FatalLevel = logrus.FatalLevel
- // ErrorLevel level. Logs. Used for errors that should definitely be noted.
- // Commonly used for hooks to send errors to an error tracking service.
- ErrorLevel = logrus.ErrorLevel
- // WarnLevel level. Non-critical entries that deserve eyes.
- WarnLevel = logrus.WarnLevel
- // InfoLevel level. General operational entries about what's going on inside the
- // application.
- InfoLevel = logrus.InfoLevel
- // DebugLevel level. Usually only enabled when debugging. Very verbose logging.
- DebugLevel = logrus.DebugLevel
-)
diff --git a/vendor/github.com/gobuffalo/logger/logger.go b/vendor/github.com/gobuffalo/logger/logger.go
deleted file mode 100644
index ad7d1f8e8..000000000
--- a/vendor/github.com/gobuffalo/logger/logger.go
+++ /dev/null
@@ -1,64 +0,0 @@
-package logger
-
-import (
- "os"
-
- "github.com/gobuffalo/envy"
- "github.com/sirupsen/logrus"
-)
-
-// FieldLogger interface
-type FieldLogger interface {
- Logger
- WithField(string, interface{}) FieldLogger
- WithFields(map[string]interface{}) FieldLogger
-}
-
-// Logger interface is used throughout Buffalo
-// apps to log a whole manner of things.
-type Logger interface {
- Debugf(string, ...interface{})
- Infof(string, ...interface{})
- Printf(string, ...interface{})
- Warnf(string, ...interface{})
- Errorf(string, ...interface{})
- Fatalf(string, ...interface{})
- Debug(...interface{})
- Info(...interface{})
- Warn(...interface{})
- Error(...interface{})
- Fatal(...interface{})
- Panic(...interface{})
-}
-
-func ParseLevel(level string) (Level, error) {
- l, err := logrus.ParseLevel(level)
- return Level(l), err
-}
-
-// NewLogger based on the specified log level, defaults to "debug".
-// See `New` for more details.
-func NewLogger(level string) FieldLogger {
- lvl, err := logrus.ParseLevel(level)
- if err != nil {
- lvl = logrus.DebugLevel
- }
- return New(lvl)
-}
-
-// New based on the specified log level, defaults to "debug".
-// This logger will log to the STDOUT in a human readable,
-// but parseable form.
-/*
- Example: time="2016-12-01T21:02:07-05:00" level=info duration=225.283µs human_size="106 B" method=GET path="/" render=199.79µs request_id=2265736089 size=106 status=200
-*/
-func New(lvl Level) FieldLogger {
- dev := envy.Get("GO_ENV", "development") == "development"
- l := logrus.New()
- l.SetOutput(os.Stdout)
- l.Level = lvl
- l.Formatter = &textFormatter{
- ForceColors: dev,
- }
- return Logrus{l}
-}
diff --git a/vendor/github.com/gobuffalo/logger/logrus.go b/vendor/github.com/gobuffalo/logger/logrus.go
deleted file mode 100644
index bf13148ed..000000000
--- a/vendor/github.com/gobuffalo/logger/logrus.go
+++ /dev/null
@@ -1,34 +0,0 @@
-package logger
-
-import (
- "io"
-
- "github.com/sirupsen/logrus"
-)
-
-var _ Logger = Logrus{}
-var _ FieldLogger = Logrus{}
-var _ Outable = Logrus{}
-
-// Logrus is a Logger implementation backed by sirupsen/logrus
-type Logrus struct {
- logrus.FieldLogger
-}
-
-// SetOutput will try and set the output of the underlying
-// logrus.FieldLogger if it can
-func (l Logrus) SetOutput(w io.Writer) {
- if lg, ok := l.FieldLogger.(Outable); ok {
- lg.SetOutput(w)
- }
-}
-
-// WithField returns a new Logger with the field added
-func (l Logrus) WithField(s string, i interface{}) FieldLogger {
- return Logrus{l.FieldLogger.WithField(s, i)}
-}
-
-// WithFields returns a new Logger with the fields added
-func (l Logrus) WithFields(m map[string]interface{}) FieldLogger {
- return Logrus{l.FieldLogger.WithFields(m)}
-}
diff --git a/vendor/github.com/gobuffalo/logger/outable.go b/vendor/github.com/gobuffalo/logger/outable.go
deleted file mode 100644
index 459fe1972..000000000
--- a/vendor/github.com/gobuffalo/logger/outable.go
+++ /dev/null
@@ -1,8 +0,0 @@
-package logger
-
-import "io"
-
-// Outable interface for loggers that allow setting the output writer
-type Outable interface {
- SetOutput(out io.Writer)
-}
diff --git a/vendor/github.com/gobuffalo/logger/terminal_check.go b/vendor/github.com/gobuffalo/logger/terminal_check.go
deleted file mode 100644
index f7ec282c8..000000000
--- a/vendor/github.com/gobuffalo/logger/terminal_check.go
+++ /dev/null
@@ -1,19 +0,0 @@
-// +build !appengine
-
-package logger
-
-import (
- "io"
- "os"
-
- "golang.org/x/crypto/ssh/terminal"
-)
-
-func checkIfTerminal(w io.Writer) bool {
- switch v := w.(type) {
- case *os.File:
- return terminal.IsTerminal(int(v.Fd()))
- default:
- return false
- }
-}
diff --git a/vendor/github.com/gobuffalo/logger/terminal_check_appengine.go b/vendor/github.com/gobuffalo/logger/terminal_check_appengine.go
deleted file mode 100644
index fe84f0b89..000000000
--- a/vendor/github.com/gobuffalo/logger/terminal_check_appengine.go
+++ /dev/null
@@ -1,11 +0,0 @@
-// +build appengine
-
-package logger
-
-import (
- "io"
-)
-
-func checkIfTerminal(w io.Writer) bool {
- return true
-}
diff --git a/vendor/github.com/gobuffalo/logger/version.go b/vendor/github.com/gobuffalo/logger/version.go
deleted file mode 100644
index 40b8bf87a..000000000
--- a/vendor/github.com/gobuffalo/logger/version.go
+++ /dev/null
@@ -1,4 +0,0 @@
-package logger
-
-// Version of the logger
-const Version = "v0.0.1"
diff --git a/vendor/github.com/gobuffalo/mapi/.gitignore b/vendor/github.com/gobuffalo/mapi/.gitignore
deleted file mode 100644
index 368971859..000000000
--- a/vendor/github.com/gobuffalo/mapi/.gitignore
+++ /dev/null
@@ -1,29 +0,0 @@
-*.log
-.DS_Store
-doc
-tmp
-pkg
-*.gem
-*.pid
-coverage
-coverage.data
-build/*
-*.pbxuser
-*.mode1v3
-.svn
-profile
-.console_history
-.sass-cache/*
-.rake_tasks~
-*.log.lck
-solr/
-.jhw-cache/
-jhw.*
-*.sublime*
-node_modules/
-dist/
-generated/
-.vendor/
-bin/*
-gin-bin
-.idea/
diff --git a/vendor/github.com/gobuffalo/mapi/.gometalinter.json b/vendor/github.com/gobuffalo/mapi/.gometalinter.json
deleted file mode 100644
index e4f65a36e..000000000
--- a/vendor/github.com/gobuffalo/mapi/.gometalinter.json
+++ /dev/null
@@ -1,3 +0,0 @@
-{
- "Enable": ["vet", "golint", "goimports", "deadcode", "gotype", "ineffassign", "misspell", "nakedret", "unconvert", "megacheck", "varcheck"]
-}
diff --git a/vendor/github.com/gobuffalo/mapi/LICENSE b/vendor/github.com/gobuffalo/mapi/LICENSE
deleted file mode 100644
index a538bcbf2..000000000
--- a/vendor/github.com/gobuffalo/mapi/LICENSE
+++ /dev/null
@@ -1,21 +0,0 @@
-The MIT License (MIT)
-
-Copyright (c) 2018 Mark Bates
-
-Permission is hereby granted, free of charge, to any person obtaining a copy
-of this software and associated documentation files (the "Software"), to deal
-in the Software without restriction, including without limitation the rights
-to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
-copies of the Software, and to permit persons to whom the Software is
-furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in all
-copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
-IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
-FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
-AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
-LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
-OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
-SOFTWARE.
diff --git a/vendor/github.com/gobuffalo/mapi/Makefile b/vendor/github.com/gobuffalo/mapi/Makefile
deleted file mode 100644
index 187cb8a3f..000000000
--- a/vendor/github.com/gobuffalo/mapi/Makefile
+++ /dev/null
@@ -1,40 +0,0 @@
-TAGS ?= "sqlite"
-GO_BIN ?= go
-
-install:
- packr
- $(GO_BIN) install -v .
-
-deps:
- $(GO_BIN) get github.com/gobuffalo/release
- $(GO_BIN) get github.com/gobuffalo/packr/packr
- $(GO_BIN) get -tags ${TAGS} -t ./...
- $(GO_BIN) mod tidy
-
-build:
- packr
- $(GO_BIN) build -v .
-
-test:
- packr
- $(GO_BIN) test -tags ${TAGS} ./...
-
-ci-test: deps
- $(GO_BIN) test -tags ${TAGS} -race ./...
-
-lint:
- gometalinter --vendor ./... --deadline=1m --skip=internal
-
-update:
- $(GO_BIN) get -u -tags ${TAGS}
- $(GO_BIN) mod tidy
- packr
- make test
- make install
- $(GO_BIN) mod tidy
-
-release-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
-
-release:
- release -y -f version.go
diff --git a/vendor/github.com/gobuffalo/mapi/go.mod b/vendor/github.com/gobuffalo/mapi/go.mod
deleted file mode 100644
index 0408822d3..000000000
--- a/vendor/github.com/gobuffalo/mapi/go.mod
+++ /dev/null
@@ -1,8 +0,0 @@
-module github.com/gobuffalo/mapi
-
-require (
- github.com/davecgh/go-spew v1.1.1 // indirect
- github.com/pkg/errors v0.8.0
- github.com/pmezard/go-difflib v1.0.0 // indirect
- github.com/stretchr/testify v1.2.2
-)
diff --git a/vendor/github.com/gobuffalo/mapi/go.sum b/vendor/github.com/gobuffalo/mapi/go.sum
deleted file mode 100644
index 68c9735d5..000000000
--- a/vendor/github.com/gobuffalo/mapi/go.sum
+++ /dev/null
@@ -1,8 +0,0 @@
-github.com/davecgh/go-spew v1.1.1 h1:vj9j/u1bqnvCEfJOwUhtlOARqs3+rkHYY13jYWTU97c=
-github.com/davecgh/go-spew v1.1.1/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38=
-github.com/pkg/errors v0.8.0 h1:WdK/asTD0HN+q6hsWO3/vpuAkAr+tw6aNJNDFFf0+qw=
-github.com/pkg/errors v0.8.0/go.mod h1:bwawxfHBFNV+L2hUp1rHADufV3IMtnDRdf1r5NINEl0=
-github.com/pmezard/go-difflib v1.0.0 h1:4DBwDE0NGyQoBHbLQYPwSUPoCMWR5BEzIk/f1lZbAQM=
-github.com/pmezard/go-difflib v1.0.0/go.mod h1:iKH77koFhYxTK1pcRnkKkqfTogsbg7gZNVY4sRDYZ/4=
-github.com/stretchr/testify v1.2.2 h1:bSDNvY7ZPG5RlJ8otE/7V6gMiyenm9RtJ7IUVIAoJ1w=
-github.com/stretchr/testify v1.2.2/go.mod h1:a8OnRcib4nhh0OaRAV+Yts87kKdq0PP7pXfy6kDkUVs=
diff --git a/vendor/github.com/gobuffalo/mapi/mapi.go b/vendor/github.com/gobuffalo/mapi/mapi.go
deleted file mode 100644
index 21de16a3a..000000000
--- a/vendor/github.com/gobuffalo/mapi/mapi.go
+++ /dev/null
@@ -1,109 +0,0 @@
-package mapi
-
-import (
- "encoding/json"
- "reflect"
- "strings"
-
- "github.com/pkg/errors"
-)
-
-var ErrNotFound = errors.New("not found")
-
-type Mapi map[string]interface{}
-
-func (mi Mapi) String() string {
- b, _ := mi.MarshalJSON()
- return string(b)
-}
-
-func (mi Mapi) Interface() interface{} {
- return mi
-}
-
-func (mi Mapi) Pluck(s string) (interface{}, error) {
- keys := strings.Split(s, ":")
- return reduce(keys, mi)
-}
-
-func (mi *Mapi) UnmarshalJSON(b []byte) error {
- mm := map[string]interface{}{}
- if err := json.Unmarshal(b, &mm); err != nil {
- return errors.WithStack(err)
- }
- unmarshal(mm)
- (*mi) = Mapi(mm)
- return nil
-}
-
-func unmarshal(m map[string]interface{}) {
- for k, v := range m {
- if mv, ok := v.(map[string]interface{}); ok {
- unmarshal(mv)
- m[k] = Mapi(mv)
- }
- }
-}
-
-func (mi Mapi) MarshalJSON() ([]byte, error) {
- m := map[string]interface{}{}
-
- for k, v := range mi {
- rv := reflect.Indirect(reflect.ValueOf(v))
- switch rv.Kind() {
- case reflect.Map:
- mm := Mapi{}
- for _, xk := range rv.MapKeys() {
- mm[xk.String()] = rv.MapIndex(xk).Interface()
- }
- m[k] = mm
- default:
- if _, ok := v.(Mapi); ok {
- continue
- }
- if _, err := json.Marshal(v); err == nil {
- // if it can be marshaled, add it to the map
- m[k] = v
- }
- }
- }
- return json.Marshal(m)
-}
-
-func reduce(keys []string, in interface{}) (interface{}, error) {
- if len(keys) == 0 {
- return nil, ErrNotFound
- }
-
- rv := reflect.Indirect(reflect.ValueOf(in))
- if !rv.IsValid() {
- return nil, ErrNotFound
- }
- if rv.Kind() != reflect.Map {
- return nil, ErrNotFound
- }
-
- var key reflect.Value
- for _, k := range rv.MapKeys() {
- if k.String() == keys[0] {
- key = k
- break
- }
- }
- if !key.IsValid() {
- return nil, ErrNotFound
- }
-
- keys = keys[1:]
- iv := rv.MapIndex(key)
-
- if !iv.IsValid() {
- return nil, ErrNotFound
- }
-
- if len(keys) == 0 {
- return iv.Interface(), nil
- }
-
- return reduce(keys, iv.Interface())
-}
diff --git a/vendor/github.com/gobuffalo/mapi/shoulders.md b/vendor/github.com/gobuffalo/mapi/shoulders.md
deleted file mode 100644
index 47f65e8e0..000000000
--- a/vendor/github.com/gobuffalo/mapi/shoulders.md
+++ /dev/null
@@ -1,10 +0,0 @@
-# github.com/gobuffalo/mapi Stands on the Shoulders of Giants
-
-github.com/gobuffalo/mapi does not try to reinvent the wheel! Instead, it uses the already great wheels developed by the Go community and puts them all together in the best way possible. Without these giants this project would not be possible. Please make sure to check them out and thank them for all of their hard work.
-
-Thank you to the following **GIANTS**:
-
-
-* [github.com/gobuffalo/mapi](https://godoc.org/github.com/gobuffalo/mapi)
-
-* [github.com/pkg/errors](https://godoc.org/github.com/pkg/errors)
diff --git a/vendor/github.com/gobuffalo/mapi/version.go b/vendor/github.com/gobuffalo/mapi/version.go
deleted file mode 100644
index 5af0dd14a..000000000
--- a/vendor/github.com/gobuffalo/mapi/version.go
+++ /dev/null
@@ -1,3 +0,0 @@
-package mapi
-
-const Version = "v1.0.1"
diff --git a/vendor/github.com/gobuffalo/meta/.gitignore b/vendor/github.com/gobuffalo/meta/.gitignore
deleted file mode 100644
index 368971859..000000000
--- a/vendor/github.com/gobuffalo/meta/.gitignore
+++ /dev/null
@@ -1,29 +0,0 @@
-*.log
-.DS_Store
-doc
-tmp
-pkg
-*.gem
-*.pid
-coverage
-coverage.data
-build/*
-*.pbxuser
-*.mode1v3
-.svn
-profile
-.console_history
-.sass-cache/*
-.rake_tasks~
-*.log.lck
-solr/
-.jhw-cache/
-jhw.*
-*.sublime*
-node_modules/
-dist/
-generated/
-.vendor/
-bin/*
-gin-bin
-.idea/
diff --git a/vendor/github.com/gobuffalo/meta/.gometalinter.json b/vendor/github.com/gobuffalo/meta/.gometalinter.json
deleted file mode 100644
index e4f65a36e..000000000
--- a/vendor/github.com/gobuffalo/meta/.gometalinter.json
+++ /dev/null
@@ -1,3 +0,0 @@
-{
- "Enable": ["vet", "golint", "goimports", "deadcode", "gotype", "ineffassign", "misspell", "nakedret", "unconvert", "megacheck", "varcheck"]
-}
diff --git a/vendor/github.com/gobuffalo/meta/.travis.yml b/vendor/github.com/gobuffalo/meta/.travis.yml
deleted file mode 100644
index 1fb041a25..000000000
--- a/vendor/github.com/gobuffalo/meta/.travis.yml
+++ /dev/null
@@ -1,36 +0,0 @@
-language: go
-
-sudo: false
-
-matrix:
- include:
- - os: linux
- go: "1.9.x"
- - os: windows
- go: "1.9.x"
- - os: linux
- go: "1.10.x"
- - os: windows
- go: "1.10.x"
- - os: linux
- go: "1.11.x"
- env:
- - GO111MODULE=off
- - os: windows
- go: "1.11.x"
- env:
- - GO111MODULE=off
- - os: linux
- go: "1.11.x"
- env:
- - GO111MODULE=on
- - os: windows
- go: "1.11.x"
- env:
- - GO111MODULE=on
-
-install: false
-
-script:
- - go get -v -t ./...
- - go test -v -timeout=5s -race ./...
diff --git a/vendor/github.com/gobuffalo/meta/LICENSE b/vendor/github.com/gobuffalo/meta/LICENSE
deleted file mode 100644
index a538bcbf2..000000000
--- a/vendor/github.com/gobuffalo/meta/LICENSE
+++ /dev/null
@@ -1,21 +0,0 @@
-The MIT License (MIT)
-
-Copyright (c) 2018 Mark Bates
-
-Permission is hereby granted, free of charge, to any person obtaining a copy
-of this software and associated documentation files (the "Software"), to deal
-in the Software without restriction, including without limitation the rights
-to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
-copies of the Software, and to permit persons to whom the Software is
-furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in all
-copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
-IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
-FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
-AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
-LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
-OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
-SOFTWARE.
diff --git a/vendor/github.com/gobuffalo/meta/Makefile b/vendor/github.com/gobuffalo/meta/Makefile
deleted file mode 100644
index fee1bee00..000000000
--- a/vendor/github.com/gobuffalo/meta/Makefile
+++ /dev/null
@@ -1,46 +0,0 @@
-TAGS ?= "sqlite"
-GO_BIN ?= go
-
-install: deps
- packr
- $(GO_BIN) install -tags ${TAGS} -v .
-
-deps:
- $(GO_BIN) get github.com/gobuffalo/release
- $(GO_BIN) get github.com/gobuffalo/packr/packr
- $(GO_BIN) get -tags ${TAGS} -t ./...
-ifeq ($(GO111MODULE),on)
- $(GO_BIN) mod tidy
-endif
-
-build:
- packr
- $(GO_BIN) build -v .
-
-test:
- packr
- $(GO_BIN) test -tags ${TAGS} ./...
-
-ci-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
-
-lint:
- gometalinter --vendor ./... --deadline=1m --skip=internal
-
-update:
- $(GO_BIN) get -u -tags ${TAGS}
-ifeq ($(GO111MODULE),on)
- $(GO_BIN) mod tidy
-endif
- packr
- make test
- make install
-ifeq ($(GO111MODULE),on)
- $(GO_BIN) mod tidy
-endif
-
-release-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
-
-release:
- release -y -f version.go
diff --git a/vendor/github.com/gobuffalo/meta/SHOULDERS.md b/vendor/github.com/gobuffalo/meta/SHOULDERS.md
deleted file mode 100644
index 97639fee9..000000000
--- a/vendor/github.com/gobuffalo/meta/SHOULDERS.md
+++ /dev/null
@@ -1,20 +0,0 @@
-# `github.com/gobuffalo/meta` Stands on the Shoulders of Giants
-
-`github.com/gobuffalo/meta` does not try to reinvent the wheel! Instead, it uses the already great wheels developed by the Go community and puts them all together in the best way possible. Without these giants this project would not be possible. Please make sure to check them out and thank them for all of their hard work.
-
-Thank you to the following **GIANTS**:
-
-
-* [github.com/BurntSushi/toml](https://godoc.org/github.com/BurntSushi/toml)
-
-* [github.com/gobuffalo/envy](https://godoc.org/github.com/gobuffalo/envy)
-
-* [github.com/gobuffalo/flect](https://godoc.org/github.com/gobuffalo/flect)
-
-* [github.com/gobuffalo/flect/name](https://godoc.org/github.com/gobuffalo/flect/name)
-
-* [github.com/gobuffalo/meta](https://godoc.org/github.com/gobuffalo/meta)
-
-* [github.com/joho/godotenv](https://godoc.org/github.com/joho/godotenv)
-
-* [github.com/pkg/errors](https://godoc.org/github.com/pkg/errors)
diff --git a/vendor/github.com/gobuffalo/meta/app.go b/vendor/github.com/gobuffalo/meta/app.go
deleted file mode 100644
index e960a6d31..000000000
--- a/vendor/github.com/gobuffalo/meta/app.go
+++ /dev/null
@@ -1,156 +0,0 @@
-package meta
-
-import (
- "encoding/json"
- "fmt"
- "io"
- "io/ioutil"
- "os"
- "path"
- "path/filepath"
-
- "github.com/BurntSushi/toml"
- "github.com/gobuffalo/envy"
- "github.com/gobuffalo/flect/name"
- "github.com/markbates/oncer"
- "github.com/pkg/errors"
- "github.com/rogpeppe/go-internal/modfile"
-)
-
-// App represents meta data for a Buffalo application on disk
-type App struct {
- Pwd string `json:"pwd" toml:"-"`
- Root string `json:"root" toml:"-"`
- GoPath string `json:"go_path" toml:"-"`
- PackagePkg string `json:"package_path" toml:"-"`
- ActionsPkg string `json:"actions_path" toml:"-"`
- ModelsPkg string `json:"models_path" toml:"-"`
- GriftsPkg string `json:"grifts_path" toml:"-"`
- WithModules bool `json:"with_modules" toml:"-"`
- Name name.Ident `json:"name" toml:"name"`
- Bin string `json:"bin" toml:"bin"`
- VCS string `json:"vcs" toml:"vcs"`
- WithPop bool `json:"with_pop" toml:"with_pop"`
- WithSQLite bool `json:"with_sqlite" toml:"with_sqlite"`
- WithDep bool `json:"with_dep" toml:"with_dep"`
- WithWebpack bool `json:"with_webpack" toml:"with_webpack"`
- WithNodeJs bool `json:"with_nodejs" toml:"with_nodejs"`
- WithYarn bool `json:"with_yarn" toml:"with_yarn"`
- WithDocker bool `json:"with_docker" toml:"with_docker"`
- WithGrifts bool `json:"with_grifts" toml:"with_grifts"`
- AsWeb bool `json:"as_web" toml:"as_web"`
- AsAPI bool `json:"as_api" toml:"as_api"`
- packageJSON packageJSON
-}
-
-func (a App) IsZero() bool {
- return a.String() == App{}.String()
-}
-
-func resolvePackageName(name string, pwd string) string {
- result, _ := envy.CurrentModule()
-
- if filepath.Base(result) != name {
- result = path.Join(result, name)
- }
- if envy.Mods() {
- moddata, err := ioutil.ReadFile(filepath.Join(pwd, name, "go.mod"))
- if err != nil {
- return result
- }
- packagePath := modfile.ModulePath(moddata)
- if packagePath == "" {
- return name
- }
- return packagePath
- }
-
- return result
-}
-
-// ResolveSymlinks takes a path and gets the pointed path
-// if the original one is a symlink.
-func ResolveSymlinks(p string) string {
- cd, err := os.Lstat(p)
- if err != nil {
- return p
- }
- if cd.Mode()&os.ModeSymlink != 0 {
- // This is a symlink
- r, err := filepath.EvalSymlinks(p)
- if err != nil {
- return p
- }
- return r
- }
- return p
-}
-
-func (a App) String() string {
- b, _ := json.Marshal(a)
- return string(b)
-}
-
-// Encode the list of plugins, in TOML format, to the reader
-func (a App) Encode(w io.Writer) error {
- if err := toml.NewEncoder(w).Encode(a); err != nil {
- return errors.WithStack(err)
- }
- return nil
-}
-
-// Decode the list of plugins, in TOML format, from the reader
-func (a *App) Decode(r io.Reader) error {
- xa := New(".")
- if _, err := toml.DecodeReader(r, &xa); err != nil {
- return errors.WithStack(err)
- }
- (*a) = xa
- return nil
-}
-
-// PackageRoot sets the root package of the application and
-// recalculates package related values
-func (a *App) PackageRoot(pp string) {
- a.PackagePkg = pp
- a.ActionsPkg = pp + "/actions"
- a.ModelsPkg = pp + "/models"
- a.GriftsPkg = pp + "/grifts"
-}
-
-type packageJSON struct {
- Scripts map[string]string `json:"scripts"`
-}
-
-// NodeScript gets the "scripts" section from package.json and
-// returns the matching script if it exists.
-func (a App) NodeScript(name string) (string, error) {
- if !a.WithNodeJs {
- return "", errors.New("package.json not found")
- }
- var err error
- oncer.Do("meta.NodeScript", func() {
- var b []byte
- b, err = ioutil.ReadFile(filepath.Join(a.Root, "package.json"))
- if err != nil {
- err = errors.WithMessage(err, "could not read package.json")
- return
- }
- p := packageJSON{}
- if err = json.Unmarshal(b, &p); err != nil {
- err = errors.WithMessage(err, "could not parse package.json")
- return
- }
- a.packageJSON = p
- })
-
- if err != nil {
- return "", err
- }
-
- s, ok := a.packageJSON.Scripts[name]
- if ok {
- return s, nil
- }
- return "", fmt.Errorf("node script %s not found", name)
-}
diff --git a/vendor/github.com/gobuffalo/meta/go.mod b/vendor/github.com/gobuffalo/meta/go.mod
deleted file mode 100644
index 03dfa6e15..000000000
--- a/vendor/github.com/gobuffalo/meta/go.mod
+++ /dev/null
@@ -1,13 +0,0 @@
-module github.com/gobuffalo/meta
-
-require (
- github.com/BurntSushi/toml v0.3.1
- github.com/gobuffalo/envy v1.6.12
- github.com/gobuffalo/flect v0.0.0-20190117212819-a62e61d96794
- github.com/kr/pty v1.1.3 // indirect
- github.com/markbates/deplist v1.0.5 // indirect
- github.com/markbates/oncer v0.0.0-20181203154359-bf2de49a0be2
- github.com/pkg/errors v0.8.1
- github.com/rogpeppe/go-internal v1.1.0
- github.com/stretchr/testify v1.3.0
-)
diff --git a/vendor/github.com/gobuffalo/meta/go.sum b/vendor/github.com/gobuffalo/meta/go.sum
deleted file mode 100644
index 111704532..000000000
--- a/vendor/github.com/gobuffalo/meta/go.sum
+++ /dev/null
@@ -1,375 +0,0 @@
-github.com/BurntSushi/toml v0.3.1/go.mod h1:xHWCNGjB5oqiDr8zfno3MHue2Ht5sIBksp03qcyfWMU=
-github.com/Masterminds/semver v1.4.2/go.mod h1:MB6lktGJrhw8PrUyiEoblNEGEQ+RzHPF078ddwwvV3Y=
-github.com/ajg/form v0.0.0-20160822230020-523a5da1a92f/go.mod h1:uL1WgH+h2mgNtvBq0339dVnzXdBETtL2LeUXaIv25UY=
-github.com/armon/consul-api v0.0.0-20180202201655-eb2c6b5be1b6/go.mod h1:grANhF5doyWs3UAsr3K4I6qtAmlQcZDesFNEHPZAzj8=
-github.com/cockroachdb/apd v1.1.0/go.mod h1:8Sl8LxpKi29FqWXR16WEFZRNSz3SoPzUzeMeY4+DwBQ=
-github.com/cockroachdb/cockroach-go v0.0.0-20181001143604-e0a95dfd547c/go.mod h1:XGLbWH/ujMcbPbhZq52Nv6UrCghb1yGn//133kEsvDk=
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-golang.org/x/tools v0.0.0-20181024171208-a2dc47679d30/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20181026183834-f60e5f99f081/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20181105230042-78dc5bac0cac/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20181107215632-34b416bd17b3/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20181114190951-94339b83286c/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20181119130350-139d099f6620/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20181127195227-b4e97c0ed882/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20181127232545-e782529d0ddd/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20181203210056-e5f3ab76ea4b/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20181205224935-3576414c54a4/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20181206194817-bcd4e47d0288/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20181207183836-8bc39b988060/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20181212172921-837e80568c09/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20190102213336-ca9055ed7d04/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20190104182027-498d95493402/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-golang.org/x/tools v0.0.0-20190111214448-fc1d57b08d7b/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
-google.golang.org/appengine v1.2.0/go.mod h1:xpcJRLb0r/rnEns0DIKYYv+WjYCduHsrkT7/EB5XEv4=
-gopkg.in/airbrake/gobrake.v2 v2.0.9/go.mod h1:/h5ZAUhDkGaJfjzjKLSjv6zCL6O0LLBxU4K+aSYdM/U=
-gopkg.in/alexcesaro/quotedprintable.v3 v3.0.0-20150716171945-2caba252f4dc/go.mod h1:m7x9LTH6d71AHyAX77c9yqWCCa3UKHcVEj9y7hAtKDk=
-gopkg.in/check.v1 v0.0.0-20161208181325-20d25e280405/go.mod h1:Co6ibVJAznAaIkqp8huTwlJQCZ016jof/cbN4VW5Yz0=
-gopkg.in/check.v1 v1.0.0-20180628173108-788fd7840127/go.mod h1:Co6ibVJAznAaIkqp8huTwlJQCZ016jof/cbN4VW5Yz0=
-gopkg.in/errgo.v2 v2.1.0/go.mod h1:hNsd1EY+bozCKY1Ytp96fpM3vjJbqLJn88ws8XvfDNI=
-gopkg.in/fsnotify.v1 v1.4.7/go.mod h1:Tz8NjZHkW78fSQdbUxIjBTcgA1z1m8ZHf0WmKUhAMys=
-gopkg.in/gemnasium/logrus-airbrake-hook.v2 v2.1.2/go.mod h1:Xk6kEKp8OKb+X14hQBKWaSkCsqBpgog8nAV2xsGOxlo=
-gopkg.in/gomail.v2 v2.0.0-20160411212932-81ebce5c23df/go.mod h1:LRQQ+SO6ZHR7tOkpBDuZnXENFzX8qRjMDMyPD6BRkCw=
-gopkg.in/mail.v2 v2.0.0-20180731213649-a0242b2233b4/go.mod h1:htwXN1Qh09vZJ1NVKxQqHPBaCBbzKhp5GzuJEA4VJWw=
-gopkg.in/tomb.v1 v1.0.0-20141024135613-dd632973f1e7/go.mod h1:dt/ZhP58zS4L8KSrWDmTeBkI65Dw0HsyUHuEVlX15mw=
-gopkg.in/yaml.v2 v2.2.1/go.mod h1:hI93XBmqTisBFMUTm0b8Fm+jr3Dg1NNxqwp+5A1VGuI=
-gopkg.in/yaml.v2 v2.2.2/go.mod h1:hI93XBmqTisBFMUTm0b8Fm+jr3Dg1NNxqwp+5A1VGuI=
diff --git a/vendor/github.com/gobuffalo/meta/meta.go b/vendor/github.com/gobuffalo/meta/meta.go
deleted file mode 100644
index 850c0b608..000000000
--- a/vendor/github.com/gobuffalo/meta/meta.go
+++ /dev/null
@@ -1,115 +0,0 @@
-package meta
-
-import (
- "bytes"
- "fmt"
- "io/ioutil"
- "os"
- "path/filepath"
- "runtime"
- "strings"
-
- "github.com/BurntSushi/toml"
- "github.com/gobuffalo/envy"
- fname "github.com/gobuffalo/flect/name"
-)
-
-func Named(name string, root string) App {
- pwd, _ := os.Getwd()
- root = strings.TrimPrefix(root, "/private")
- if root == "." {
- root = pwd
- }
-
- // Handle symlinks
- var oldPwd = pwd
- pwd = ResolveSymlinks(pwd)
- os.Chdir(pwd)
- if runtime.GOOS != "windows" {
- // On Non-Windows OS, os.Getwd() uses PWD env var as a preferred
- // way to get the working dir.
- os.Setenv("PWD", pwd)
- }
- defer func() {
- // Restore PWD
- os.Chdir(oldPwd)
- if runtime.GOOS != "windows" {
- os.Setenv("PWD", oldPwd)
- }
- }()
-
- // Gather meta data
- if len(name) == 0 || name == "." {
- name = filepath.Base(root)
- }
- pp := resolvePackageName(name, pwd)
-
- app := App{
- Pwd: pwd,
- Root: root,
- GoPath: envy.GoPath(),
- Name: fname.New(name),
- WithModules: envy.Mods(),
- AsAPI: false,
- AsWeb: true,
- }
- app.PackageRoot(pp)
-
- app.Bin = filepath.Join("bin", app.Name.String())
-
- if runtime.GOOS == "windows" {
- app.Bin += ".exe"
- }
-
- cf, err := os.Open(filepath.Join(app.Root, "config", "buffalo-app.toml"))
- if err != nil {
- return oldSchool(app)
- }
- defer cf.Close()
-
- if _, err := toml.DecodeReader(cf, &app); err != nil {
- fmt.Println(err)
- }
-
- return app
-}
-
-// New App based on the details found at the provided root path
-func New(root string) App {
- return Named(filepath.Base(root), root)
-}
-
-func oldSchool(app App) App {
- root := app.Root
- db := filepath.Join(root, "database.yml")
- if _, err := os.Stat(db); err == nil {
- app.WithPop = true
- if b, err := ioutil.ReadFile(db); err == nil {
- app.WithSQLite = bytes.Contains(bytes.ToLower(b), []byte("sqlite"))
- }
- }
- if _, err := os.Stat(filepath.Join(root, "Gopkg.toml")); err == nil {
- app.WithDep = true
- }
- if _, err := os.Stat(filepath.Join(root, "package.json")); err == nil {
- app.WithNodeJs = true
- }
- if _, err := os.Stat(filepath.Join(root, "webpack.config.js")); err == nil {
- app.WithWebpack = true
- }
- if _, err := os.Stat(filepath.Join(root, "yarn.lock")); err == nil {
- app.WithYarn = true
- }
- if _, err := os.Stat(filepath.Join(root, "Dockerfile")); err == nil {
- app.WithDocker = true
- }
- if _, err := os.Stat(filepath.Join(root, "grifts")); err == nil {
- app.WithGrifts = true
- }
- if _, err := os.Stat(filepath.Join(root, ".git")); err == nil {
- app.VCS = "git"
- } else if _, err := os.Stat(filepath.Join(root, ".bzr")); err == nil {
- app.VCS = "bzr"
- }
- return app
-}
diff --git a/vendor/github.com/gobuffalo/meta/tags.go b/vendor/github.com/gobuffalo/meta/tags.go
deleted file mode 100644
index 82e89e413..000000000
--- a/vendor/github.com/gobuffalo/meta/tags.go
+++ /dev/null
@@ -1,39 +0,0 @@
-package meta
-
-import (
- "sort"
- "strings"
-)
-
-// BuildTags are tags used for building apps
-type BuildTags []string
-
-// String returns the tags in the form of:
-// "foo bar baz" (with the quotes!)
-func (t BuildTags) String() string {
- return strings.Join(t, " ")
-}
-
-// BuildTags combines the passed in env, and any additional tags,
-// with tags that Buffalo decides the build process requires.
-// An example would be adding the "sqlite" build tag if using
-// SQLite3.
-func (a App) BuildTags(env string, tags ...string) BuildTags {
- m := map[string]string{}
- m[env] = env
- for _, t := range tags {
- m[t] = t
- }
- if a.WithSQLite {
- m["sqlite"] = "sqlite"
- }
- var tt []string
- for k := range m {
- k = strings.TrimSpace(k)
- if len(k) != 0 {
- tt = append(tt, k)
- }
- }
- sort.Strings(tt)
- return BuildTags(tt)
-}
diff --git a/vendor/github.com/gobuffalo/meta/version.go b/vendor/github.com/gobuffalo/meta/version.go
deleted file mode 100644
index b6a333a35..000000000
--- a/vendor/github.com/gobuffalo/meta/version.go
+++ /dev/null
@@ -1,3 +0,0 @@
-package meta
-
-const Version = "v0.0.1"
diff --git a/vendor/github.com/gobuffalo/packd/.gitignore b/vendor/github.com/gobuffalo/packd/.gitignore
deleted file mode 100644
index 08a5f35a8..000000000
--- a/vendor/github.com/gobuffalo/packd/.gitignore
+++ /dev/null
@@ -1,30 +0,0 @@
-*.log
-.DS_Store
-doc
-tmp
-pkg
-*.gem
-*.pid
-coverage
-coverage.data
-build/*
-*.pbxuser
-*.mode1v3
-.svn
-profile
-.console_history
-.sass-cache/*
-.rake_tasks~
-*.log.lck
-solr/
-.jhw-cache/
-jhw.*
-*.sublime*
-node_modules/
-dist/
-generated/
-.vendor/
-bin/*
-gin-bin
-.idea/
-Dockerfile.gocker
diff --git a/vendor/github.com/gobuffalo/packd/.gometalinter.json b/vendor/github.com/gobuffalo/packd/.gometalinter.json
deleted file mode 100644
index e4f65a36e..000000000
--- a/vendor/github.com/gobuffalo/packd/.gometalinter.json
+++ /dev/null
@@ -1,3 +0,0 @@
-{
- "Enable": ["vet", "golint", "goimports", "deadcode", "gotype", "ineffassign", "misspell", "nakedret", "unconvert", "megacheck", "varcheck"]
-}
diff --git a/vendor/github.com/gobuffalo/packd/LICENSE b/vendor/github.com/gobuffalo/packd/LICENSE
deleted file mode 100644
index a538bcbf2..000000000
--- a/vendor/github.com/gobuffalo/packd/LICENSE
+++ /dev/null
@@ -1,21 +0,0 @@
-The MIT License (MIT)
-
-Copyright (c) 2018 Mark Bates
-
-Permission is hereby granted, free of charge, to any person obtaining a copy
-of this software and associated documentation files (the "Software"), to deal
-in the Software without restriction, including without limitation the rights
-to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
-copies of the Software, and to permit persons to whom the Software is
-furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in all
-copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
-IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
-FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
-AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
-LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
-OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
-SOFTWARE.
diff --git a/vendor/github.com/gobuffalo/packd/Makefile b/vendor/github.com/gobuffalo/packd/Makefile
deleted file mode 100644
index 399269e3e..000000000
--- a/vendor/github.com/gobuffalo/packd/Makefile
+++ /dev/null
@@ -1,57 +0,0 @@
-TAGS ?= "sqlite"
-GO_BIN ?= go
-
-install:
- packr
- $(GO_BIN) install -tags ${TAGS} -v .
- make tidy
-
-tidy:
-ifeq ($(GO111MODULE),on)
- $(GO_BIN) mod tidy
-else
- echo skipping go mod tidy
-endif
-
-deps:
- $(GO_BIN) get github.com/gobuffalo/release
- $(GO_BIN) get github.com/gobuffalo/packr/packr
- $(GO_BIN) get -tags ${TAGS} -t ./...
- make tidy
-
-build:
- packr
- $(GO_BIN) build -v .
- make tidy
-
-test:
- packr
- $(GO_BIN) test -tags ${TAGS} ./...
- make tidy
-
-ci-deps:
- $(GO_BIN) get -v -tags ${TAGS} -t ./...
-
-ci-test:
- $(GO_BIN) test -v -tags ${TAGS} -timeout=5s -race ./...
-
-lint:
- gometalinter --vendor ./... --deadline=1m --skip=internal
- make tidy
-
-update:
- $(GO_BIN) get -u -tags ${TAGS}
- make tidy
- packr
- make test
- make install
- make tidy
-
-release-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
- make tidy
-
-release:
- make tidy
- release -y -f version.go
- make tidy
diff --git a/vendor/github.com/gobuffalo/packd/README.md b/vendor/github.com/gobuffalo/packd/README.md
deleted file mode 100644
index 1c534cdd5..000000000
--- a/vendor/github.com/gobuffalo/packd/README.md
+++ /dev/null
@@ -1,24 +0,0 @@
-
-
-
-
-
-
-
-
-# github.com/gobuffalo/packd
-
-This is a collection of interfaces designed to make using [github.com/gobuffalo/packr](https://github.com/gobuffalo/packr) easier, and to make the transition between v1 and v2 as seamless as possible.
-
-They can, and should, be used for testing, alternate Box implementations, etc...
-
-
-## Installation
-
-```bash
-$ go get -u -v github.com/gobuffalo/packd
-```
-
-## Memory Box
-
-The [`packd#MemoryBox`](https://godoc.org/github.com/gobuffalo/packd#MemoryBox) is a complete, thread-safe, implementation of [`packd#Box`](https://godoc.org/github.com/gobuffalo/packd#Box)
diff --git a/vendor/github.com/gobuffalo/packd/azure-pipelines.yml b/vendor/github.com/gobuffalo/packd/azure-pipelines.yml
deleted file mode 100644
index 144c4a209..000000000
--- a/vendor/github.com/gobuffalo/packd/azure-pipelines.yml
+++ /dev/null
@@ -1,59 +0,0 @@
-variables:
- GOBIN: "$(GOPATH)/bin" # Go binaries path
- GOPATH: "$(system.defaultWorkingDirectory)/gopath" # Go workspace path
- modulePath: "$(GOPATH)/src/github.com/$(build.repository.name)" # Path to the module"s code
-
-jobs:
-- job: Windows
- pool:
- vmImage: "vs2017-win2016"
- strategy:
- matrix:
- go 1.9:
- go_version: "1.9"
- go 1.10:
- go_version: "1.10"
- go 1.11 (on):
- go_version: "1.11"
- GO111MODULE: "on"
- go 1.11 (off):
- go_version: "1.11"
- GO111MODULE: "off"
- steps:
- - template: azure-tests.yml
-
-- job: macOS
- pool:
- vmImage: "macOS-10.13"
- strategy:
- matrix:
- go 1.9:
- go_version: "1.9"
- go 1.10:
- go_version: "1.10"
- go 1.11 (on):
- go_version: "1.11"
- GO111MODULE: "on"
- go 1.11 (off):
- go_version: "1.11"
- GO111MODULE: "off"
- steps:
- - template: azure-tests.yml
-
-- job: Linux
- pool:
- vmImage: "ubuntu-16.04"
- strategy:
- matrix:
- go 1.9:
- go_version: "1.9"
- go 1.10:
- go_version: "1.10"
- go 1.11 (on):
- go_version: "1.11"
- GO111MODULE: "on"
- go 1.11 (off):
- go_version: "1.11"
- GO111MODULE: "off"
- steps:
- - template: azure-tests.yml
diff --git a/vendor/github.com/gobuffalo/packd/azure-tests.yml b/vendor/github.com/gobuffalo/packd/azure-tests.yml
deleted file mode 100644
index eea5822fa..000000000
--- a/vendor/github.com/gobuffalo/packd/azure-tests.yml
+++ /dev/null
@@ -1,19 +0,0 @@
-steps:
- - task: GoTool@0
- inputs:
- version: $(go_version)
- - task: Bash@3
- inputs:
- targetType: inline
- script: |
- mkdir -p "$(GOBIN)"
- mkdir -p "$(GOPATH)/pkg"
- mkdir -p "$(modulePath)"
- shopt -s extglob
- mv !(gopath) "$(modulePath)"
- displayName: "Setup Go Workspace"
- - script: |
- go get -t -v ./...
- go test -race ./...
- workingDirectory: "$(modulePath)"
- displayName: "Tests"
diff --git a/vendor/github.com/gobuffalo/packd/file.go b/vendor/github.com/gobuffalo/packd/file.go
deleted file mode 100644
index ee9f95c28..000000000
--- a/vendor/github.com/gobuffalo/packd/file.go
+++ /dev/null
@@ -1,128 +0,0 @@
-package packd
-
-import (
- "bytes"
- "fmt"
- "io"
- "os"
- "time"
-
- "github.com/pkg/errors"
-)
-
-var _ File = &virtualFile{}
-var _ io.Reader = &virtualFile{}
-var _ io.Writer = &virtualFile{}
-var _ fmt.Stringer = &virtualFile{}
-
-type virtualFile struct {
- io.Reader
- name string
- info fileInfo
- original []byte
-}
-
-func (f virtualFile) Name() string {
- return f.name
-}
-
-func (f *virtualFile) Seek(offset int64, whence int) (int64, error) {
- return f.Reader.(*bytes.Reader).Seek(offset, whence)
-}
-
-func (f virtualFile) FileInfo() (os.FileInfo, error) {
- return f.info, nil
-}
-
-func (f *virtualFile) Close() error {
- return nil
-}
-
-func (f virtualFile) Readdir(count int) ([]os.FileInfo, error) {
- return []os.FileInfo{f.info}, nil
-}
-
-func (f virtualFile) Stat() (os.FileInfo, error) {
- return f.info, nil
-}
-
-func (f virtualFile) String() string {
- return string(f.original)
-}
-
-// Read reads the next len(p) bytes from the virtualFile and
-// rewind read offset to 0 when it met EOF.
-func (f *virtualFile) Read(p []byte) (int, error) {
- i, err := f.Reader.Read(p)
-
- if i == 0 || err == io.EOF {
- f.Seek(0, io.SeekStart)
- }
- return i, err
-}
-
-// Write copies byte slice p to content of virtualFile.
-func (f *virtualFile) Write(p []byte) (int, error) {
- return f.write(p)
-}
-
-// write copies byte slice or data from io.Reader to content of the
-// virtualFile and update related information of the virtualFile.
-func (f *virtualFile) write(d interface{}) (c int, err error) {
- bb := &bytes.Buffer{}
- switch d.(type) {
- case []byte:
- c, err = bb.Write(d.([]byte))
- case io.Reader:
- if d != nil {
- i64, e := io.Copy(bb, d.(io.Reader))
- c = int(i64)
- err = e
- }
- default:
- err = errors.New("unknown type of argument")
- }
-
- if err != nil {
- return c, errors.WithStack(err)
- }
-
- f.info.size = int64(c)
- f.info.modTime = time.Now()
- f.original = bb.Bytes()
- f.Reader = bytes.NewReader(f.original)
- return c, nil
-}
-
-// NewFile returns a new "virtual" file
-func NewFile(name string, r io.Reader) (File, error) {
- return buildFile(name, r)
-}
-
-// NewDir returns a new "virtual" directory
-func NewDir(name string) (File, error) {
- v, err := buildFile(name, nil)
- if err != nil {
- return v, errors.WithStack(err)
- }
- v.info.isDir = true
- return v, nil
-}
-
-func buildFile(name string, r io.Reader) (*virtualFile, error) {
- vf := &virtualFile{
- name: name,
- info: fileInfo{
- Path: name,
- modTime: time.Now(),
- },
- }
-
- var err error
- if r != nil {
- _, err = vf.write(r)
- } else {
- _, err = vf.write([]byte{}) // for safety
- }
- return vf, errors.Wrap(err, "could not make virtual file")
-}
diff --git a/vendor/github.com/gobuffalo/packd/file_info.go b/vendor/github.com/gobuffalo/packd/file_info.go
deleted file mode 100644
index 8bed0b903..000000000
--- a/vendor/github.com/gobuffalo/packd/file_info.go
+++ /dev/null
@@ -1,39 +0,0 @@
-package packd
-
-import (
- "os"
- "time"
-)
-
-var _ os.FileInfo = fileInfo{}
-
-type fileInfo struct {
- Path string
- size int64
- modTime time.Time
- isDir bool
-}
-
-func (f fileInfo) Name() string {
- return f.Path
-}
-
-func (f fileInfo) Size() int64 {
- return f.size
-}
-
-func (f fileInfo) Mode() os.FileMode {
- return 0444
-}
-
-func (f fileInfo) ModTime() time.Time {
- return f.modTime
-}
-
-func (f fileInfo) IsDir() bool {
- return f.isDir
-}
-
-func (f fileInfo) Sys() interface{} {
- return nil
-}
diff --git a/vendor/github.com/gobuffalo/packd/go.mod b/vendor/github.com/gobuffalo/packd/go.mod
deleted file mode 100644
index 6732bbf59..000000000
--- a/vendor/github.com/gobuffalo/packd/go.mod
+++ /dev/null
@@ -1,7 +0,0 @@
-module github.com/gobuffalo/packd
-
-require (
- github.com/gobuffalo/syncx v0.0.0-20181120194010-558ac7de985f
- github.com/pkg/errors v0.8.0
- github.com/stretchr/testify v1.2.2
-)
diff --git a/vendor/github.com/gobuffalo/packd/go.sum b/vendor/github.com/gobuffalo/packd/go.sum
deleted file mode 100644
index 910029f15..000000000
--- a/vendor/github.com/gobuffalo/packd/go.sum
+++ /dev/null
@@ -1,10 +0,0 @@
-github.com/davecgh/go-spew v1.1.1 h1:vj9j/u1bqnvCEfJOwUhtlOARqs3+rkHYY13jYWTU97c=
-github.com/davecgh/go-spew v1.1.1/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38=
-github.com/gobuffalo/syncx v0.0.0-20181120194010-558ac7de985f h1:S5EeH1reN93KR0L6TQvkRpu9YggCYXrUqFh1iEgvdC0=
-github.com/gobuffalo/syncx v0.0.0-20181120194010-558ac7de985f/go.mod h1:HhnNqWY95UYwwW3uSASeV7vtgYkT2t16hJgV3AEPUpw=
-github.com/pkg/errors v0.8.0 h1:WdK/asTD0HN+q6hsWO3/vpuAkAr+tw6aNJNDFFf0+qw=
-github.com/pkg/errors v0.8.0/go.mod h1:bwawxfHBFNV+L2hUp1rHADufV3IMtnDRdf1r5NINEl0=
-github.com/pmezard/go-difflib v1.0.0 h1:4DBwDE0NGyQoBHbLQYPwSUPoCMWR5BEzIk/f1lZbAQM=
-github.com/pmezard/go-difflib v1.0.0/go.mod h1:iKH77koFhYxTK1pcRnkKkqfTogsbg7gZNVY4sRDYZ/4=
-github.com/stretchr/testify v1.2.2 h1:bSDNvY7ZPG5RlJ8otE/7V6gMiyenm9RtJ7IUVIAoJ1w=
-github.com/stretchr/testify v1.2.2/go.mod h1:a8OnRcib4nhh0OaRAV+Yts87kKdq0PP7pXfy6kDkUVs=
diff --git a/vendor/github.com/gobuffalo/packd/interfaces.go b/vendor/github.com/gobuffalo/packd/interfaces.go
deleted file mode 100644
index e8475f0aa..000000000
--- a/vendor/github.com/gobuffalo/packd/interfaces.go
+++ /dev/null
@@ -1,83 +0,0 @@
-package packd
-
-import (
- "fmt"
- "io"
- "net/http"
- "os"
-)
-
-type WalkFunc func(string, File) error
-
-// Box represents the entirety of the necessary
-// interfaces to form a "full" box.
-// github.com/gobuffalo/packr#Box is an example of this interface.
-type Box interface {
- HTTPBox
- Lister
- Addable
- Finder
- Walkable
- Haser
-}
-
-type Haser interface {
- Has(string) bool
-}
-
-type Walker interface {
- Walk(wf WalkFunc) error
-}
-
-type Walkable interface {
- Walker
- WalkPrefix(prefix string, wf WalkFunc) error
-}
-
-type Finder interface {
- Find(string) ([]byte, error)
- FindString(name string) (string, error)
-}
-
-type HTTPBox interface {
- Open(name string) (http.File, error)
-}
-
-type Lister interface {
- List() []string
-}
-
-type Addable interface {
- AddString(path string, t string) error
- AddBytes(path string, t []byte) error
-}
-
-type SimpleFile interface {
- fmt.Stringer
- io.Reader
- io.Writer
- Name() string
-}
-
-type HTTPFile interface {
- SimpleFile
- io.Closer
- io.Seeker
- Readdir(count int) ([]os.FileInfo, error)
- Stat() (os.FileInfo, error)
-}
-
-type File interface {
- HTTPFile
- FileInfo() (os.FileInfo, error)
-}
-
-// LegacyBox represents deprecated methods
-// that older Box implementations might have had.
-// github.com/gobuffalo/packr v1 is an example of a LegacyBox.
-type LegacyBox interface {
- String(name string) string
- MustString(name string) (string, error)
- Bytes(name string) []byte
- MustBytes(name string) ([]byte, error)
-}
diff --git a/vendor/github.com/gobuffalo/packd/memory_box.go b/vendor/github.com/gobuffalo/packd/memory_box.go
deleted file mode 100644
index ccc4590ad..000000000
--- a/vendor/github.com/gobuffalo/packd/memory_box.go
+++ /dev/null
@@ -1,157 +0,0 @@
-package packd
-
-import (
- "bytes"
- "net/http"
- "os"
- "path/filepath"
- "sort"
- "strings"
-
- "github.com/gobuffalo/syncx"
- "github.com/pkg/errors"
-)
-
-var _ Addable = NewMemoryBox()
-var _ Finder = NewMemoryBox()
-var _ Lister = NewMemoryBox()
-var _ HTTPBox = NewMemoryBox()
-var _ Haser = NewMemoryBox()
-var _ Walkable = NewMemoryBox()
-var _ Box = NewMemoryBox()
-
-// MemoryBox is a thread-safe, in-memory, implementation of the Box interface.
-type MemoryBox struct {
- files *syncx.ByteMap
-}
-
-func (m *MemoryBox) Has(path string) bool {
- _, ok := m.files.Load(path)
- return ok
-}
-
-func (m *MemoryBox) List() []string {
- var names []string
- m.files.Range(func(key string, value []byte) bool {
- names = append(names, key)
- return true
- })
-
- sort.Strings(names)
- return names
-}
-
-func (m *MemoryBox) Open(path string) (http.File, error) {
- cpath := strings.TrimPrefix(path, "/")
-
- if filepath.Ext(cpath) == "" {
- // it's a directory
- return NewDir(path)
- }
-
- if len(cpath) == 0 {
- cpath = "index.html"
- }
-
- b, err := m.Find(cpath)
- if err != nil {
- return nil, err
- }
-
- cpath = filepath.FromSlash(cpath)
-
- f, err := NewFile(cpath, bytes.NewReader(b))
- if err != nil {
- return nil, err
- }
- return f, nil
-}
-
-func (m *MemoryBox) FindString(path string) (string, error) {
- bb, err := m.Find(path)
- return string(bb), err
-}
-
-func (m *MemoryBox) Find(path string) (ret []byte, e error) {
- res, ok := m.files.Load(path)
- if !ok {
-
- var b []byte
- lpath := strings.ToLower(path)
- err := m.Walk(func(p string, file File) error {
- lp := strings.ToLower(p)
- if lp != lpath {
- return nil
- }
-
- res := file.String()
- b = []byte(res)
- return nil
- })
- if err != nil {
- return b, os.ErrNotExist
- }
- if len(b) == 0 {
- return b, os.ErrNotExist
- }
- return b, nil
- }
- return res, nil
-}
-
-func (m *MemoryBox) AddString(path string, t string) error {
- return m.AddBytes(path, []byte(t))
-}
-
-func (m *MemoryBox) AddBytes(path string, t []byte) error {
- m.files.Store(path, t)
- return nil
-}
-
-func (m *MemoryBox) Walk(wf WalkFunc) error {
- var err error
- m.files.Range(func(path string, b []byte) bool {
- var f File
- f, err = NewFile(path, bytes.NewReader(b))
- if err != nil {
- return false
- }
-
- err = wf(path, f)
- if err != nil {
- if errors.Cause(err) == filepath.SkipDir {
- err = nil
- return true
- }
- return false
- }
-
- return true
- })
-
- if errors.Cause(err) == filepath.SkipDir {
- return nil
- }
- return err
-}
-
-func (m *MemoryBox) WalkPrefix(pre string, wf WalkFunc) error {
- return m.Walk(func(path string, file File) error {
- if strings.HasPrefix(path, pre) {
- return wf(path, file)
- }
- return nil
- })
-}
-
-func (m *MemoryBox) Remove(path string) {
- m.files.Delete(path)
- m.files.Delete(strings.ToLower(path))
-}
-
-// NewMemoryBox returns a configured *MemoryBox
-func NewMemoryBox() *MemoryBox {
- return &MemoryBox{
- files: &syncx.ByteMap{},
- }
-}
diff --git a/vendor/github.com/gobuffalo/packd/skip_walker.go b/vendor/github.com/gobuffalo/packd/skip_walker.go
deleted file mode 100644
index 7a297af20..000000000
--- a/vendor/github.com/gobuffalo/packd/skip_walker.go
+++ /dev/null
@@ -1,45 +0,0 @@
-package packd
-
-import (
- "path/filepath"
- "strings"
-
- "github.com/pkg/errors"
-)
-
-var CommonSkipPrefixes = []string{".", "_", "node_modules", "vendor"}
-
-// SkipWalker will walk the Walker and call the WalkFunc for files who's directories
-// do no match any of the skipPrefixes. If no skipPrefixes are passed, then
-// CommonSkipPrefixes is used
-func SkipWalker(walker Walker, skipPrefixes []string, wf WalkFunc) error {
- if len(skipPrefixes) == 0 {
- skipPrefixes = append(skipPrefixes, CommonSkipPrefixes...)
- }
- return walker.Walk(func(path string, file File) error {
- fi, err := file.FileInfo()
- if err != nil {
- return errors.WithStack(err)
- }
-
- path = strings.Replace(path, "\\", "/", -1)
-
- parts := strings.Split(path, "/")
- if !fi.IsDir() {
- parts = parts[:len(parts)-1]
- }
-
- for _, base := range parts {
- if base != "." {
- for _, skip := range skipPrefixes {
- skip = strings.ToLower(skip)
- lbase := strings.ToLower(base)
- if strings.HasPrefix(lbase, skip) {
- return filepath.SkipDir
- }
- }
- }
- }
- return wf(path, file)
- })
-}
diff --git a/vendor/github.com/gobuffalo/packd/version.go b/vendor/github.com/gobuffalo/packd/version.go
deleted file mode 100644
index 4b359093a..000000000
--- a/vendor/github.com/gobuffalo/packd/version.go
+++ /dev/null
@@ -1,4 +0,0 @@
-package packd
-
-// Version of packd
-const Version = "v0.0.1"
diff --git a/vendor/github.com/gobuffalo/packr/v2/.gometalinter.json b/vendor/github.com/gobuffalo/packr/v2/.gometalinter.json
deleted file mode 100644
index e4f65a36e..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/.gometalinter.json
+++ /dev/null
@@ -1,3 +0,0 @@
-{
- "Enable": ["vet", "golint", "goimports", "deadcode", "gotype", "ineffassign", "misspell", "nakedret", "unconvert", "megacheck", "varcheck"]
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/.goreleaser.yml b/vendor/github.com/gobuffalo/packr/v2/.goreleaser.yml
deleted file mode 100644
index a0c56e8e8..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/.goreleaser.yml
+++ /dev/null
@@ -1,41 +0,0 @@
-# Code generated by github.com/gobuffalo/release. DO NOT EDIT.
-# Edit .goreleaser.yml.plush instead
-
-builds:
--
- goos:
- - darwin
- - linux
- - windows
- goarch:
- - ppc64le
- - 386
- - amd64
- env:
- - CGO_ENABLED=0
- ignore:
- - goos: darwin
- goarch: ppc64le
- - goos: windows
- goarch: ppc64le
- main: ./packr2/main.go
- binary: packr2
-
-checksum:
- name_template: 'checksums.txt'
-
-snapshot:
- name_template: "{{ .Tag }}-next"
-
-changelog:
- sort: asc
- filters:
- exclude:
- - '^docs:'
- - '^test:'
-
-brew:
- github:
- owner: gobuffalo
- name: homebrew-tap
-
diff --git a/vendor/github.com/gobuffalo/packr/v2/.goreleaser.yml.plush b/vendor/github.com/gobuffalo/packr/v2/.goreleaser.yml.plush
deleted file mode 100644
index 79e030def..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/.goreleaser.yml.plush
+++ /dev/null
@@ -1,38 +0,0 @@
-builds:
--
- goos:
- - darwin
- - linux
- - windows
- goarch:
- - ppc64le
- - 386
- - amd64
- env:
- - CGO_ENABLED=0
- ignore:
- - goos: darwin
- goarch: ppc64le
- - goos: windows
- goarch: ppc64le
- main: ./packr2/main.go
- binary: packr2
-
-checksum:
- name_template: 'checksums.txt'
-
-snapshot:
- name_template: "{{ .Tag }}-next"
-
-changelog:
- sort: asc
- filters:
- exclude:
- - '^docs:'
- - '^test:'
-<%= if (brew) { %>
-brew:
- github:
- owner: gobuffalo
- name: homebrew-tap
-<% } %>
diff --git a/vendor/github.com/gobuffalo/packr/v2/LICENSE.txt b/vendor/github.com/gobuffalo/packr/v2/LICENSE.txt
deleted file mode 100644
index 3ccb336a0..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/LICENSE.txt
+++ /dev/null
@@ -1,8 +0,0 @@
-The MIT License (MIT)
-Copyright (c) 2016 Mark Bates
-
-Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
diff --git a/vendor/github.com/gobuffalo/packr/v2/Makefile b/vendor/github.com/gobuffalo/packr/v2/Makefile
deleted file mode 100644
index 8de26c88b..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/Makefile
+++ /dev/null
@@ -1,47 +0,0 @@
-TAGS ?= "sqlite"
-GO_BIN ?= go
-
-install: deps
- echo "installing packr v2"
- packr2
- $(GO_BIN) install -v ./packr2
-
-tidy:
-ifeq ($(GO111MODULE),on)
- $(GO_BIN) mod tidy
-else
- echo skipping go mod tidy
-endif
-
-deps:
- $(GO_BIN) get github.com/gobuffalo/release
- $(GO_BIN) get -tags ${TAGS} -t ./...
- $(GO_BIN) install -v ./packr2
- make tidy
-
-build: deps
- packr2
- $(GO_BIN) build -v ./packr2
- make tidy
-
-test:
- packr2
- $(GO_BIN) test -tags ${TAGS} ./...
- make tidy
-
-lint:
- gometalinter --vendor ./... --deadline=1m --skip=internal
-
-update:
- $(GO_BIN) get -u -tags ${TAGS} ./...
- make tidy
- make install
- make test
- make tidy
-
-release-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
-
-release:
- release -y -f version.go
- make tidy
diff --git a/vendor/github.com/gobuffalo/packr/v2/README.md b/vendor/github.com/gobuffalo/packr/v2/README.md
deleted file mode 100644
index 6b79c7d47..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/README.md
+++ /dev/null
@@ -1,172 +0,0 @@
-# Packr (v2)
-
-[](https://godoc.org/github.com/gobuffalo/packr/v2)
-
-Packr is a simple solution for bundling static assets inside of Go binaries. Most importantly it does it in a way that is friendly to developers while they are developing.
-
-## Intro Video
-
-To get an idea of the what and why of Packr, please enjoy this short video: [https://vimeo.com/219863271](https://vimeo.com/219863271).
-
-## Library Installation
-
-```text
-$ go get -u github.com/gobuffalo/packr/v2/...
-```
-
-## Binary Installation
-
-```text
-$ go get -u github.com/gobuffalo/packr/v2/packr2
-```
-
-## New File Format FAQs
-
-In version `v2.0.0` the file format changed and is not backward compatible with the `packr-v1.x` library.
-
-#### Can `packr-v1.x` read the new format?
-
-No, it can not. Because of the way the new file format works porting it to `packr-v1.x` would be difficult. PR's are welcome though. :)
-
-#### Can `packr-v2.x` read `packr-v1.x` files?
-
-Yes it can, but that ability will eventually be phased out. Because of that we recommend moving to the new format.
-
-#### Can `packr-v2.x` generate `packr-v1.x` files?
-
-Yes it can, but that ability will eventually be phased out. Because of that we recommend moving to the new format.
-
-The `--legacy` command is available on all commands that generate `-packr.go` files.
-
-```bash
-$ packr2 --legacy
-$ packr2 install --legacy
-$ packr2 build --legacy
-```
-
-## Usage
-
-### In Code
-
-The first step in using Packr is to create a new box. A box represents a folder on disk. Once you have a box you can get `string` or `[]byte` representations of the file.
-
-```go
-// set up a new box by giving it a name and an optional (relative) path to a folder on disk:
-box := packr.New("My Box", "./templates")
-
-// Get the string representation of a file, or an error if it doesn't exist:
-html, err := box.FindString("index.html")
-
-// Get the []byte representation of a file, or an error if it doesn't exist:
-html, err := box.Find("index.html")
-```
-
-### What is a Box?
-
-A box represents a folder, and any sub-folders, on disk that you want to have access to in your binary. When compiling a binary using the `packr2` CLI the contents of the folder will be converted into Go files that can be compiled inside of a "standard" go binary. Inside of the compiled binary the files will be read from memory. When working locally the files will be read directly off of disk. This is a seamless switch that doesn't require any special attention on your part.
-
-#### Example
-
-Assume the follow directory structure:
-
-```
-├── main.go
-└── templates
- ├── admin
- │ └── index.html
- └── index.html
-```
-
-The following program will read the `./templates/admin/index.html` file and print it out.
-
-```go
-package main
-
-import (
- "fmt"
-
- "github.com/gobuffalo/packr/v2"
-)
-
-func main() {
- box := packr.New("myBox", "./templates")
-
- s, err := box.FindString("admin/index.html")
- if err != nil {
- log.Fatal(err)
- }
- fmt.Println(s)
-}
-```
-
-### Development Made Easy
-
-In order to get static files into a Go binary, those files must first be converted to Go code. To do that, Packr, ships with a few tools to help build binaries. See below.
-
-During development, however, it is painful to have to keep running a tool to compile those files.
-
-Packr uses the following resolution rules when looking for a file:
-
-1. Look for the file in-memory (inside a Go binary)
-1. Look for the file on disk (during development)
-
-Because Packr knows how to fall through to the file system, developers don't need to worry about constantly compiling their static files into a binary. They can work unimpeded.
-
-Packr takes file resolution a step further. When declaring a new box you use a relative path, `./templates`. When Packr recieves this call it calculates out the absolute path to that directory. By doing this it means you can be guaranteed that Packr can find your files correctly, even if you're not running in the directory that the box was created in. This helps with the problem of testing, where Go changes the `pwd` for each package, making relative paths difficult to work with. This is not a problem when using Packr.
-
----
-
-## Usage with HTTP
-
-A box implements the [`http.FileSystem`](https://golang.org/pkg/net/http/#FileSystemhttps://golang.org/pkg/net/http/#FileSystem) interface, meaning it can be used to serve static files.
-
-```go
-package main
-
-import (
- "net/http"
-
- "github.com/gobuffalo/packr/v2"
-)
-
-func main() {
- box := packr.New("someBoxName", "./templates")
-
- http.Handle("/", http.FileServer(box))
- http.ListenAndServe(":3000", nil)
-}
-```
-
----
-
-## Building a Binary (the easy way)
-
-When it comes time to build, or install, your Go binary, simply use `packr2 build` or `packr2 install` just as you would `go build` or `go install`. All flags for the `go` tool are supported and everything works the way you expect, the only difference is your static assets are now bundled in the generated binary. If you want more control over how this happens, looking at the following section on building binaries (the hard way).
-
-## Building a Binary (the hard way)
-
-Before you build your Go binary, run the `packr2` command first. It will look for all the boxes in your code and then generate `.go` files that pack the static files into bytes that can be bundled into the Go binary.
-
-```
-$ packr2
-```
-
-Then run your `go build command` like normal.
-
-*NOTE*: It is not recommended to check-in these generated `-packr.go` files. They can be large, and can easily become out of date if not careful. It is recommended that you always run `packr2 clean` after running the `packr2` tool.
-
-#### Cleaning Up
-
-When you're done it is recommended that you run the `packr2 clean` command. This will remove all of the generated files that Packr created for you.
-
-```
-$ packr2 clean
-```
-
-Why do you want to do this? Packr first looks to the information stored in these generated files, if the information isn't there it looks to disk. This makes it easy to work with in development.
-
----
-
-## Debugging
-
-The `packr2` command passes all arguments down to the underlying `go` command, this includes the `-v` flag to print out `go build` information. Packr looks for the `-v` flag, and will turn on its own verbose logging. This is very useful for trying to understand what the `packr` command is doing when it is run.
diff --git a/vendor/github.com/gobuffalo/packr/v2/SHOULDERS.md b/vendor/github.com/gobuffalo/packr/v2/SHOULDERS.md
deleted file mode 100644
index b1c980f6a..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/SHOULDERS.md
+++ /dev/null
@@ -1,36 +0,0 @@
-# github.com/gobuffalo/packr/v2 Stands on the Shoulders of Giants
-
-github.com/gobuffalo/packr/v2 does not try to reinvent the wheel! Instead, it uses the already great wheels developed by the Go community and puts them all together in the best way possible. Without these giants, this project would not be possible. Please make sure to check them out and thank them for all of their hard work.
-
-Thank you to the following **GIANTS**:
-
-
-* [github.com/gobuffalo/envy](https://godoc.org/github.com/gobuffalo/envy)
-
-* [github.com/gobuffalo/genny](https://godoc.org/github.com/gobuffalo/genny)
-
-* [github.com/gobuffalo/gogen](https://godoc.org/github.com/gobuffalo/gogen)
-
-* [github.com/gobuffalo/logger](https://godoc.org/github.com/gobuffalo/logger)
-
-* [github.com/gobuffalo/packd](https://godoc.org/github.com/gobuffalo/packd)
-
-* [github.com/karrick/godirwalk](https://godoc.org/github.com/karrick/godirwalk)
-
-* [github.com/markbates/oncer](https://godoc.org/github.com/markbates/oncer)
-
-* [github.com/markbates/safe](https://godoc.org/github.com/markbates/safe)
-
-* [github.com/pkg/errors](https://godoc.org/github.com/pkg/errors)
-
-* [github.com/rogpeppe/go-internal](https://godoc.org/github.com/rogpeppe/go-internal)
-
-* [github.com/sirupsen/logrus](https://godoc.org/github.com/sirupsen/logrus)
-
-* [github.com/spf13/cobra](https://godoc.org/github.com/spf13/cobra)
-
-* [github.com/stretchr/testify](https://godoc.org/github.com/stretchr/testify)
-
-* [golang.org/x/sync](https://godoc.org/golang.org/x/sync)
-
-* [golang.org/x/tools](https://godoc.org/golang.org/x/tools)
diff --git a/vendor/github.com/gobuffalo/packr/v2/box.go b/vendor/github.com/gobuffalo/packr/v2/box.go
deleted file mode 100644
index 3e4c74d22..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/box.go
+++ /dev/null
@@ -1,219 +0,0 @@
-package packr
-
-import (
- "bytes"
- "fmt"
- "io"
- "io/ioutil"
- "net/http"
- "os"
- "path/filepath"
- "sort"
- "strings"
-
- "github.com/gobuffalo/packd"
- "github.com/gobuffalo/packr/v2/file"
- "github.com/gobuffalo/packr/v2/file/resolver"
- "github.com/gobuffalo/packr/v2/plog"
- "github.com/markbates/oncer"
- "github.com/pkg/errors"
-)
-
-var _ packd.Box = &Box{}
-var _ packd.HTTPBox = &Box{}
-var _ packd.Addable = &Box{}
-var _ packd.Walkable = &Box{}
-var _ packd.Finder = &Box{}
-
-// Box represent a folder on a disk you want to
-// have access to in the built Go binary.
-type Box struct {
- Path string `json:"path"`
- Name string `json:"name"`
- ResolutionDir string `json:"resolution_dir"`
- DefaultResolver resolver.Resolver `json:"default_resolver"`
- resolvers resolversMap
- dirs dirsMap
-}
-
-// NewBox returns a Box that can be used to
-// retrieve files from either disk or the embedded
-// binary.
-// Deprecated: Use New instead.
-func NewBox(path string) *Box {
- oncer.Deprecate(0, "packr.NewBox", "Use packr.New instead.")
- return New(path, path)
-}
-
-// New returns a new Box with the name of the box
-// and the path of the box.
-func New(name string, path string) *Box {
- plog.Debug("packr", "New", "name", name, "path", path)
- b, _ := findBox(name)
- if b != nil {
- return b
- }
-
- b = construct(name, path)
- plog.Debug(b, "New", "Box", b, "ResolutionDir", b.ResolutionDir)
- b, err := placeBox(b)
- if err != nil {
- panic(err)
- }
-
- return b
-}
-
-// SetResolver allows for the use of a custom resolver for
-// the specified file
-func (b *Box) SetResolver(file string, res resolver.Resolver) {
- d := filepath.Dir(file)
- b.dirs.Store(d, true)
- plog.Debug(b, "SetResolver", "file", file, "resolver", fmt.Sprintf("%T", res))
- b.resolvers.Store(resolver.Key(file), res)
-}
-
-// AddString converts t to a byteslice and delegates to AddBytes to add to b.data
-func (b *Box) AddString(path string, t string) error {
- return b.AddBytes(path, []byte(t))
-}
-
-// AddBytes sets t in b.data by the given path
-func (b *Box) AddBytes(path string, t []byte) error {
- m := map[string]file.File{}
- f, err := file.NewFile(path, t)
- if err != nil {
- return errors.WithStack(err)
- }
- m[resolver.Key(path)] = f
- res := resolver.NewInMemory(m)
- b.SetResolver(path, res)
- return nil
-}
-
-// FindString returns either the string of the requested
-// file or an error if it can not be found.
-func (b *Box) FindString(name string) (string, error) {
- bb, err := b.Find(name)
- return string(bb), err
-}
-
-// Find returns either the byte slice of the requested
-// file or an error if it can not be found.
-func (b *Box) Find(name string) ([]byte, error) {
- f, err := b.Resolve(name)
- if err != nil {
- return []byte(""), err
- }
- bb := &bytes.Buffer{}
- io.Copy(bb, f)
- return bb.Bytes(), nil
-}
-
-// Has returns true if the resource exists in the box
-func (b *Box) Has(name string) bool {
- _, err := b.Find(name)
- return err == nil
-}
-
-// HasDir returns true if the directory exists in the box
-func (b *Box) HasDir(name string) bool {
- oncer.Do("packr2/box/HasDir", func() {
- for _, f := range b.List() {
- d := filepath.Dir(f)
- b.dirs.Store(d, true)
- }
- })
- if name == "/" {
- return b.Has("index.html")
- }
- _, ok := b.dirs.Load(name)
- return ok
-}
-
-// Open returns a File using the http.File interface
-func (b *Box) Open(name string) (http.File, error) {
- plog.Debug(b, "Open", "name", name)
- if len(filepath.Ext(name)) == 0 {
- if !b.HasDir(name) {
- return nil, os.ErrNotExist
- }
- d, err := file.NewDir(name)
- plog.Debug(b, "Open", "name", name, "dir", d)
- return d, err
- }
- f, err := b.Resolve(name)
- if err != nil {
- return f, err
- }
- f, err = file.NewFileR(name, f)
- plog.Debug(b, "Open", "name", f.Name(), "file", f.Name())
- return f, err
-}
-
-// List shows "What's in the box?"
-func (b *Box) List() []string {
- var keys []string
-
- b.Walk(func(path string, info File) error {
- if info == nil {
- return nil
- }
- finfo, _ := info.FileInfo()
- if !finfo.IsDir() {
- keys = append(keys, path)
- }
- return nil
- })
- sort.Strings(keys)
- return keys
-}
-
-// Resolve will attempt to find the file in the box,
-// returning an error if the find can not be found.
-func (b *Box) Resolve(key string) (file.File, error) {
- key = strings.TrimPrefix(key, "/")
-
- var r resolver.Resolver
-
- b.resolvers.Range(func(k string, vr resolver.Resolver) bool {
- lk := strings.ToLower(resolver.Key(k))
- lkey := strings.ToLower(resolver.Key(key))
- if lk == lkey {
- r = vr
- return false
- }
- return true
- })
-
- if r == nil {
- r = b.DefaultResolver
- if r == nil {
- r = resolver.DefaultResolver
- if r == nil {
- return nil, errors.New("resolver.DefaultResolver is nil")
- }
- }
- }
- plog.Debug(r, "Resolve", "box", b.Name, "key", key)
-
- f, err := r.Resolve(b.Name, key)
- if err != nil {
- z := filepath.Join(resolver.OsPath(b.ResolutionDir), resolver.OsPath(key))
- f, err = r.Resolve(b.Name, z)
- if err != nil {
- plog.Debug(r, "Resolve", "box", b.Name, "key", z, "err", err)
- return f, err
- }
- b, err := ioutil.ReadAll(f)
- if err != nil {
- return f, errors.WithStack(err)
- }
- f, err = file.NewFile(key, b)
- if err != nil {
- return f, errors.WithStack(err)
- }
- }
- plog.Debug(r, "Resolve", "box", b.Name, "key", key, "file", f.Name())
- return f, nil
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/box_map.go b/vendor/github.com/gobuffalo/packr/v2/box_map.go
deleted file mode 100644
index aafeffa1d..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/box_map.go
+++ /dev/null
@@ -1,73 +0,0 @@
-//go:generate mapgen -name "box" -zero "nil" -go-type "*Box" -pkg "" -a "New(`test-a`, ``)" -b "New(`test-b`, ``)" -c "New(`test-c`, ``)" -bb "New(`test-bb`, ``)" -destination "packr"
-// Code generated by github.com/gobuffalo/mapgen. DO NOT EDIT.
-
-package packr
-
-import (
- "sort"
- "sync"
-)
-
-// boxMap wraps sync.Map and uses the following types:
-// key: string
-// value: *Box
-type boxMap struct {
- data sync.Map
-}
-
-// Delete the key from the map
-func (m *boxMap) Delete(key string) {
- m.data.Delete(key)
-}
-
-// Load the key from the map.
-// Returns *Box or bool.
-// A false return indicates either the key was not found
-// or the value is not of type *Box
-func (m *boxMap) Load(key string) (*Box, bool) {
- i, ok := m.data.Load(key)
- if !ok {
- return nil, false
- }
- s, ok := i.(*Box)
- return s, ok
-}
-
-// LoadOrStore will return an existing key or
-// store the value if not already in the map
-func (m *boxMap) LoadOrStore(key string, value *Box) (*Box, bool) {
- i, _ := m.data.LoadOrStore(key, value)
- s, ok := i.(*Box)
- return s, ok
-}
-
-// Range over the *Box values in the map
-func (m *boxMap) Range(f func(key string, value *Box) bool) {
- m.data.Range(func(k, v interface{}) bool {
- key, ok := k.(string)
- if !ok {
- return false
- }
- value, ok := v.(*Box)
- if !ok {
- return false
- }
- return f(key, value)
- })
-}
-
-// Store a *Box in the map
-func (m *boxMap) Store(key string, value *Box) {
- m.data.Store(key, value)
-}
-
-// Keys returns a list of keys in the map
-func (m *boxMap) Keys() []string {
- var keys []string
- m.Range(func(key string, value *Box) bool {
- keys = append(keys, key)
- return true
- })
- sort.Strings(keys)
- return keys
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/deprecated.go b/vendor/github.com/gobuffalo/packr/v2/deprecated.go
deleted file mode 100644
index 409341068..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/deprecated.go
+++ /dev/null
@@ -1,79 +0,0 @@
-package packr
-
-import (
- "encoding/json"
- "errors"
-
- "github.com/gobuffalo/packr/v2/file"
- "github.com/gobuffalo/packr/v2/file/resolver"
- "github.com/markbates/oncer"
-)
-
-// File has been deprecated and file.File should be used instead
-type File = file.File
-
-var (
- // ErrResOutsideBox gets returned in case of the requested resources being outside the box
- // Deprecated
- ErrResOutsideBox = errors.New("can't find a resource outside the box")
-)
-
-// PackBytes packs bytes for a file into a box.
-// Deprecated
-func PackBytes(box string, name string, bb []byte) {
- b := NewBox(box)
- d := resolver.NewInMemory(map[string]file.File{})
- f, err := file.NewFile(name, bb)
- if err != nil {
- panic(err)
- }
- if err := d.Pack(name, f); err != nil {
- panic(err)
- }
- b.SetResolver(name, d)
-}
-
-// PackBytesGzip packets the gzipped compressed bytes into a box.
-// Deprecated
-func PackBytesGzip(box string, name string, bb []byte) error {
- // TODO: this function never did what it was supposed to do!
- PackBytes(box, name, bb)
- return nil
-}
-
-// PackJSONBytes packs JSON encoded bytes for a file into a box.
-// Deprecated
-func PackJSONBytes(box string, name string, jbb string) error {
- var bb []byte
- err := json.Unmarshal([]byte(jbb), &bb)
- if err != nil {
- return err
- }
- PackBytes(box, name, bb)
- return nil
-}
-
-// Bytes is deprecated. Use Find instead
-func (b *Box) Bytes(name string) []byte {
- bb, _ := b.Find(name)
- oncer.Deprecate(0, "github.com/gobuffalo/packr/v2#Box.Bytes", "Use github.com/gobuffalo/packr/v2#Box.Find instead.")
- return bb
-}
-
-// MustBytes is deprecated. Use Find instead.
-func (b *Box) MustBytes(name string) ([]byte, error) {
- oncer.Deprecate(0, "github.com/gobuffalo/packr/v2#Box.MustBytes", "Use github.com/gobuffalo/packr/v2#Box.Find instead.")
- return b.Find(name)
-}
-
-// String is deprecated. Use FindString instead
-func (b *Box) String(name string) string {
- oncer.Deprecate(0, "github.com/gobuffalo/packr/v2#Box.String", "Use github.com/gobuffalo/packr/v2#Box.FindString instead.")
- return string(b.Bytes(name))
-}
-
-// MustString is deprecated. Use FindString instead
-func (b *Box) MustString(name string) (string, error) {
- oncer.Deprecate(0, "github.com/gobuffalo/packr/v2#Box.MustString", "Use github.com/gobuffalo/packr/v2#Box.FindString instead.")
- return b.FindString(name)
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/dirs_map.go b/vendor/github.com/gobuffalo/packr/v2/dirs_map.go
deleted file mode 100644
index 9e6491399..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/dirs_map.go
+++ /dev/null
@@ -1,82 +0,0 @@
-//go:generate mapgen -name "dirs" -zero "false" -go-type "bool" -pkg "" -a "nil" -b "nil" -c "nil" -bb "nil" -destination "packr"
-// Code generated by github.com/gobuffalo/mapgen. DO NOT EDIT.
-
-package packr
-
-import (
- "sort"
- "strings"
- "sync"
-)
-
-// dirsMap wraps sync.Map and uses the following types:
-// key: string
-// value: bool
-type dirsMap struct {
- data sync.Map
-}
-
-// Delete the key from the map
-func (m *dirsMap) Delete(key string) {
- m.data.Delete(m.normalizeKey(key))
-}
-
-// Load the key from the map.
-// Returns bool or bool.
-// A false return indicates either the key was not found
-// or the value is not of type bool
-func (m *dirsMap) Load(key string) (bool, bool) {
- i, ok := m.data.Load(m.normalizeKey(key))
- if !ok {
- return false, false
- }
- s, ok := i.(bool)
- return s, ok
-}
-
-// LoadOrStore will return an existing key or
-// store the value if not already in the map
-func (m *dirsMap) LoadOrStore(key string, value bool) (bool, bool) {
- i, _ := m.data.LoadOrStore(m.normalizeKey(key), value)
- s, ok := i.(bool)
- return s, ok
-}
-
-// Range over the bool values in the map
-func (m *dirsMap) Range(f func(key string, value bool) bool) {
- m.data.Range(func(k, v interface{}) bool {
- key, ok := k.(string)
- if !ok {
- return false
- }
- value, ok := v.(bool)
- if !ok {
- return false
- }
- return f(key, value)
- })
-}
-
-// Store a bool in the map
-func (m *dirsMap) Store(key string, value bool) {
- d := m.normalizeKey(key)
- m.data.Store(d, value)
- m.data.Store(strings.TrimPrefix(d, "/"), value)
-}
-
-// Keys returns a list of keys in the map
-func (m *dirsMap) Keys() []string {
- var keys []string
- m.Range(func(key string, value bool) bool {
- keys = append(keys, key)
- return true
- })
- sort.Strings(keys)
- return keys
-}
-
-func (m *dirsMap) normalizeKey(key string) string {
- key = strings.Replace(key, "\\", "/", -1)
-
- return key
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/file/file.go b/vendor/github.com/gobuffalo/packr/v2/file/file.go
deleted file mode 100644
index bef50c8dd..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/file/file.go
+++ /dev/null
@@ -1,32 +0,0 @@
-package file
-
-import (
- "bytes"
- "io"
-
- "github.com/gobuffalo/packd"
-)
-
-// File represents a virtual, or physical, backing of
-// a file object in a Box
-type File = packd.File
-
-// FileMappable types are capable of returning a map of
-// path => File
-type FileMappable interface {
- FileMap() map[string]File
-}
-
-// NewFile returns a virtual File implementation
-func NewFile(name string, b []byte) (File, error) {
- return packd.NewFile(name, bytes.NewReader(b))
-}
-
-// NewDir returns a virtual dir implementation
-func NewDir(name string) (File, error) {
- return packd.NewDir(name)
-}
-
-func NewFileR(name string, r io.Reader) (File, error) {
- return packd.NewFile(name, r)
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/file/info.go b/vendor/github.com/gobuffalo/packr/v2/file/info.go
deleted file mode 100644
index 90acb8c21..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/file/info.go
+++ /dev/null
@@ -1,38 +0,0 @@
-package file
-
-import (
- "os"
- "time"
-)
-
-type info struct {
- Path string
- Contents []byte
- size int64
- modTime time.Time
- isDir bool
-}
-
-func (f info) Name() string {
- return f.Path
-}
-
-func (f info) Size() int64 {
- return f.size
-}
-
-func (f info) Mode() os.FileMode {
- return 0444
-}
-
-func (f info) ModTime() time.Time {
- return f.modTime
-}
-
-func (f info) IsDir() bool {
- return f.isDir
-}
-
-func (f info) Sys() interface{} {
- return nil
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/file/resolver/disk.go b/vendor/github.com/gobuffalo/packr/v2/file/resolver/disk.go
deleted file mode 100644
index 2a431179a..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/file/resolver/disk.go
+++ /dev/null
@@ -1,81 +0,0 @@
-package resolver
-
-import (
- "io/ioutil"
- "os"
- "path/filepath"
- "strings"
- "sync"
-
- "github.com/gobuffalo/packr/v2/file"
- "github.com/gobuffalo/packr/v2/plog"
- "github.com/karrick/godirwalk"
- "github.com/pkg/errors"
-)
-
-var _ Resolver = &Disk{}
-
-type Disk struct {
- Root string
-}
-
-func (d Disk) String() string {
- return String(&d)
-}
-
-func (d *Disk) Resolve(box string, name string) (file.File, error) {
- path := OsPath(name)
- if !filepath.IsAbs(path) {
- path = filepath.Join(OsPath(d.Root), path)
- }
- fi, err := os.Stat(path)
- if err != nil {
- return nil, err
- }
- if fi.IsDir() {
- return file.NewDir(OsPath(name))
- }
- if bb, err := ioutil.ReadFile(path); err == nil {
- return file.NewFile(OsPath(name), bb)
- }
- return nil, os.ErrNotExist
-}
-
-var _ file.FileMappable = &Disk{}
-
-func (d *Disk) FileMap() map[string]file.File {
- moot := &sync.Mutex{}
- m := map[string]file.File{}
- root := OsPath(d.Root)
- if _, err := os.Stat(root); err != nil {
- return m
- }
- callback := func(path string, de *godirwalk.Dirent) error {
- if _, err := os.Stat(root); err != nil {
- return nil
- }
- if !de.IsRegular() {
- return nil
- }
- moot.Lock()
- name := strings.TrimPrefix(path, root+string(filepath.Separator))
- b, err := ioutil.ReadFile(path)
- if err != nil {
- return errors.WithStack(err)
- }
- m[name], err = file.NewFile(name, b)
- if err != nil {
- return errors.WithStack(err)
- }
- moot.Unlock()
- return nil
- }
- err := godirwalk.Walk(root, &godirwalk.Options{
- FollowSymbolicLinks: true,
- Callback: callback,
- })
- if err != nil {
- plog.Logger.Errorf("[%s] error walking %v", root, err)
- }
- return m
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/file/resolver/encoding/hex/hex.go b/vendor/github.com/gobuffalo/packr/v2/file/resolver/encoding/hex/hex.go
deleted file mode 100644
index aee5aecb1..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/file/resolver/encoding/hex/hex.go
+++ /dev/null
@@ -1,315 +0,0 @@
-// Copyright 2009 The Go Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-// Package hex implements hexadecimal encoding and decoding.
-package hex
-
-import (
- "bytes"
- "errors"
- "fmt"
- "io"
-)
-
-const hextable = "0123456789abcdef"
-
-// EncodedLen returns the length of an encoding of n source bytes.
-// Specifically, it returns n * 2.
-func EncodedLen(n int) int { return n * 2 }
-
-// Encode encodes src into EncodedLen(len(src))
-// bytes of dst. As a convenience, it returns the number
-// of bytes written to dst, but this value is always EncodedLen(len(src)).
-// Encode implements hexadecimal encoding.
-func Encode(dst, src []byte) int {
- for i, v := range src {
- dst[i*2] = hextable[v>>4]
- dst[i*2+1] = hextable[v&0x0f]
- }
-
- return len(src) * 2
-}
-
-// ErrLength reports an attempt to decode an odd-length input
-// using Decode or DecodeString.
-// The stream-based Decoder returns io.ErrUnexpectedEOF instead of ErrLength.
-var ErrLength = errors.New("encoding/hex: odd length hex string")
-
-// InvalidByteError values describe errors resulting from an invalid byte in a hex string.
-type InvalidByteError byte
-
-func (e InvalidByteError) Error() string {
- return fmt.Sprintf("encoding/hex: invalid byte: %#U", rune(e))
-}
-
-// DecodedLen returns the length of a decoding of x source bytes.
-// Specifically, it returns x / 2.
-func DecodedLen(x int) int { return x / 2 }
-
-// Decode decodes src into DecodedLen(len(src)) bytes,
-// returning the actual number of bytes written to dst.
-//
-// Decode expects that src contains only hexadecimal
-// characters and that src has even length.
-// If the input is malformed, Decode returns the number
-// of bytes decoded before the error.
-func Decode(dst, src []byte) (int, error) {
- var i int
- for i = 0; i < len(src)/2; i++ {
- a, ok := fromHexChar(src[i*2])
- if !ok {
- return i, InvalidByteError(src[i*2])
- }
- b, ok := fromHexChar(src[i*2+1])
- if !ok {
- return i, InvalidByteError(src[i*2+1])
- }
- dst[i] = (a << 4) | b
- }
- if len(src)%2 == 1 {
- // Check for invalid char before reporting bad length,
- // since the invalid char (if present) is an earlier problem.
- if _, ok := fromHexChar(src[i*2]); !ok {
- return i, InvalidByteError(src[i*2])
- }
- return i, ErrLength
- }
- return i, nil
-}
-
-// fromHexChar converts a hex character into its value and a success flag.
-func fromHexChar(c byte) (byte, bool) {
- switch {
- case '0' <= c && c <= '9':
- return c - '0', true
- case 'a' <= c && c <= 'f':
- return c - 'a' + 10, true
- case 'A' <= c && c <= 'F':
- return c - 'A' + 10, true
- }
-
- return 0, false
-}
-
-// EncodeToString returns the hexadecimal encoding of src.
-func EncodeToString(src []byte) string {
- dst := make([]byte, EncodedLen(len(src)))
- Encode(dst, src)
- return string(dst)
-}
-
-// DecodeString returns the bytes represented by the hexadecimal string s.
-//
-// DecodeString expects that src contains only hexadecimal
-// characters and that src has even length.
-// If the input is malformed, DecodeString returns
-// the bytes decoded before the error.
-func DecodeString(s string) ([]byte, error) {
- src := []byte(s)
- // We can use the source slice itself as the destination
- // because the decode loop increments by one and then the 'seen' byte is not used anymore.
- n, err := Decode(src, src)
- return src[:n], err
-}
-
-// Dump returns a string that contains a hex dump of the given data. The format
-// of the hex dump matches the output of `hexdump -C` on the command line.
-func Dump(data []byte) string {
- var buf bytes.Buffer
- dumper := Dumper(&buf)
- dumper.Write(data)
- dumper.Close()
- return buf.String()
-}
-
-// bufferSize is the number of hexadecimal characters to buffer in encoder and decoder.
-const bufferSize = 1024
-
-type encoder struct {
- w io.Writer
- err error
- out [bufferSize]byte // output buffer
-}
-
-// NewEncoder returns an io.Writer that writes lowercase hexadecimal characters to w.
-func NewEncoder(w io.Writer) io.Writer {
- return &encoder{w: w}
-}
-
-func (e *encoder) Write(p []byte) (n int, err error) {
- for len(p) > 0 && e.err == nil {
- chunkSize := bufferSize / 2
- if len(p) < chunkSize {
- chunkSize = len(p)
- }
-
- var written int
- encoded := Encode(e.out[:], p[:chunkSize])
- written, e.err = e.w.Write(e.out[:encoded])
- n += written / 2
- p = p[chunkSize:]
- }
- return n, e.err
-}
-
-type decoder struct {
- r io.Reader
- err error
- in []byte // input buffer (encoded form)
- arr [bufferSize]byte // backing array for in
-}
-
-// NewDecoder returns an io.Reader that decodes hexadecimal characters from r.
-// NewDecoder expects that r contain only an even number of hexadecimal characters.
-func NewDecoder(r io.Reader) io.Reader {
- return &decoder{r: r}
-}
-
-func (d *decoder) Read(p []byte) (n int, err error) {
- // Fill internal buffer with sufficient bytes to decode
- if len(d.in) < 2 && d.err == nil {
- var numCopy, numRead int
- numCopy = copy(d.arr[:], d.in) // Copies either 0 or 1 bytes
- numRead, d.err = d.r.Read(d.arr[numCopy:])
- d.in = d.arr[:numCopy+numRead]
- if d.err == io.EOF && len(d.in)%2 != 0 {
- if _, ok := fromHexChar(d.in[len(d.in)-1]); !ok {
- d.err = InvalidByteError(d.in[len(d.in)-1])
- } else {
- d.err = io.ErrUnexpectedEOF
- }
- }
- }
-
- // Decode internal buffer into output buffer
- if numAvail := len(d.in) / 2; len(p) > numAvail {
- p = p[:numAvail]
- }
- numDec, err := Decode(p, d.in[:len(p)*2])
- d.in = d.in[2*numDec:]
- if err != nil {
- d.in, d.err = nil, err // Decode error; discard input remainder
- }
-
- if len(d.in) < 2 {
- return numDec, d.err // Only expose errors when buffer fully consumed
- }
- return numDec, nil
-}
-
-// Dumper returns a WriteCloser that writes a hex dump of all written data to
-// w. The format of the dump matches the output of `hexdump -C` on the command
-// line.
-func Dumper(w io.Writer) io.WriteCloser {
- return &dumper{w: w}
-}
-
-type dumper struct {
- w io.Writer
- rightChars [18]byte
- buf [14]byte
- used int // number of bytes in the current line
- n uint // number of bytes, total
- closed bool
-}
-
-func toChar(b byte) byte {
- if b < 32 || b > 126 {
- return '.'
- }
- return b
-}
-
-func (h *dumper) Write(data []byte) (n int, err error) {
- if h.closed {
- return 0, errors.New("encoding/hex: dumper closed")
- }
-
- // Output lines look like:
- // 00000010 2e 2f 30 31 32 33 34 35 36 37 38 39 3a 3b 3c 3d |./0123456789:;<=|
- // ^ offset ^ extra space ^ ASCII of line.
- for i := range data {
- if h.used == 0 {
- // At the beginning of a line we print the current
- // offset in hex.
- h.buf[0] = byte(h.n >> 24)
- h.buf[1] = byte(h.n >> 16)
- h.buf[2] = byte(h.n >> 8)
- h.buf[3] = byte(h.n)
- Encode(h.buf[4:], h.buf[:4])
- h.buf[12] = ' '
- h.buf[13] = ' '
- _, err = h.w.Write(h.buf[4:])
- if err != nil {
- return
- }
- }
- Encode(h.buf[:], data[i:i+1])
- h.buf[2] = ' '
- l := 3
- if h.used == 7 {
- // There's an additional space after the 8th byte.
- h.buf[3] = ' '
- l = 4
- } else if h.used == 15 {
- // At the end of the line there's an extra space and
- // the bar for the right column.
- h.buf[3] = ' '
- h.buf[4] = '|'
- l = 5
- }
- _, err = h.w.Write(h.buf[:l])
- if err != nil {
- return
- }
- n++
- h.rightChars[h.used] = toChar(data[i])
- h.used++
- h.n++
- if h.used == 16 {
- h.rightChars[16] = '|'
- h.rightChars[17] = '\n'
- _, err = h.w.Write(h.rightChars[:])
- if err != nil {
- return
- }
- h.used = 0
- }
- }
- return
-}
-
-func (h *dumper) Close() (err error) {
- // See the comments in Write() for the details of this format.
- if h.closed {
- return
- }
- h.closed = true
- if h.used == 0 {
- return
- }
- h.buf[0] = ' '
- h.buf[1] = ' '
- h.buf[2] = ' '
- h.buf[3] = ' '
- h.buf[4] = '|'
- nBytes := h.used
- for h.used < 16 {
- l := 3
- if h.used == 7 {
- l = 4
- } else if h.used == 15 {
- l = 5
- }
- _, err = h.w.Write(h.buf[:l])
- if err != nil {
- return
- }
- h.used++
- }
- h.rightChars[nBytes] = '|'
- h.rightChars[nBytes+1] = '\n'
- _, err = h.w.Write(h.rightChars[:nBytes+2])
- return
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/file/resolver/hex_gzip.go b/vendor/github.com/gobuffalo/packr/v2/file/resolver/hex_gzip.go
deleted file mode 100644
index 0fc5b7d6e..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/file/resolver/hex_gzip.go
+++ /dev/null
@@ -1,113 +0,0 @@
-package resolver
-
-import (
- "bytes"
- "compress/gzip"
- "io"
- "io/ioutil"
- "os"
- "strings"
- "sync"
-
- "github.com/gobuffalo/packr/v2/file/resolver/encoding/hex"
- "github.com/gobuffalo/packr/v2/plog"
-
- "github.com/gobuffalo/packr/v2/file"
- "github.com/pkg/errors"
-)
-
-var _ Resolver = &HexGzip{}
-
-type HexGzip struct {
- packed map[string]string
- unpacked map[string]string
- moot *sync.RWMutex
-}
-
-func (hg HexGzip) String() string {
- return String(&hg)
-}
-
-var _ file.FileMappable = &HexGzip{}
-
-func (hg *HexGzip) FileMap() map[string]file.File {
- hg.moot.RLock()
- var names []string
- for k := range hg.packed {
- names = append(names, k)
- }
- hg.moot.RUnlock()
- m := map[string]file.File{}
- for _, n := range names {
- if f, err := hg.Resolve("", n); err == nil {
- m[n] = f
- }
- }
- return m
-}
-
-func (hg *HexGzip) Resolve(box string, name string) (file.File, error) {
- plog.Debug(hg, "Resolve", "box", box, "name", name)
- hg.moot.Lock()
- defer hg.moot.Unlock()
-
- if s, ok := hg.unpacked[name]; ok {
- return file.NewFile(name, []byte(s))
- }
- packed, ok := hg.packed[name]
- if !ok {
- return nil, os.ErrNotExist
- }
-
- unpacked, err := UnHexGzipString(packed)
- if err != nil {
- return nil, errors.WithStack(err)
- }
-
- f, err := file.NewFile(OsPath(name), []byte(unpacked))
- if err != nil {
- return nil, errors.WithStack(err)
- }
- hg.unpacked[name] = f.String()
- return f, nil
-}
-
-func NewHexGzip(files map[string]string) (*HexGzip, error) {
- if files == nil {
- files = map[string]string{}
- }
-
- hg := &HexGzip{
- packed: files,
- unpacked: map[string]string{},
- moot: &sync.RWMutex{},
- }
-
- return hg, nil
-}
-
-func HexGzipString(s string) (string, error) {
- bb := &bytes.Buffer{}
- enc := hex.NewEncoder(bb)
- zw := gzip.NewWriter(enc)
- io.Copy(zw, strings.NewReader(s))
- zw.Close()
-
- return bb.String(), nil
-}
-
-func UnHexGzipString(packed string) (string, error) {
- br := bytes.NewBufferString(packed)
- dec := hex.NewDecoder(br)
- zr, err := gzip.NewReader(dec)
- if err != nil {
- return "", errors.WithStack(err)
- }
- defer zr.Close()
-
- b, err := ioutil.ReadAll(zr)
- if err != nil {
- return "", errors.WithStack(err)
- }
- return string(b), nil
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/file/resolver/ident.go b/vendor/github.com/gobuffalo/packr/v2/file/resolver/ident.go
deleted file mode 100644
index 0b90d1f4d..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/file/resolver/ident.go
+++ /dev/null
@@ -1,21 +0,0 @@
-package resolver
-
-import (
- "path/filepath"
- "runtime"
- "strings"
-)
-
-func Key(s string) string {
- s = strings.Replace(s, "\\", "/", -1)
- return s
-}
-
-func OsPath(s string) string {
- if runtime.GOOS == "windows" {
- s = strings.Replace(s, "/", string(filepath.Separator), -1)
- } else {
- s = strings.Replace(s, "\\", string(filepath.Separator), -1)
- }
- return s
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/file/resolver/in_memory.go b/vendor/github.com/gobuffalo/packr/v2/file/resolver/in_memory.go
deleted file mode 100644
index aa37297e6..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/file/resolver/in_memory.go
+++ /dev/null
@@ -1,64 +0,0 @@
-package resolver
-
-import (
- "io/ioutil"
-
- "github.com/gobuffalo/packd"
- "github.com/gobuffalo/packr/v2/file"
- "github.com/gobuffalo/packr/v2/plog"
- "github.com/pkg/errors"
-)
-
-var _ Resolver = &InMemory{}
-
-type InMemory struct {
- *packd.MemoryBox
-}
-
-func (d InMemory) String() string {
- return String(&d)
-}
-
-func (d *InMemory) Resolve(box string, name string) (file.File, error) {
- b, err := d.MemoryBox.Find(name)
- if err != nil {
- return nil, err
- }
- return file.NewFile(name, b)
-}
-
-func (d *InMemory) Pack(name string, f file.File) error {
- plog.Debug(d, "Pack", "name", name)
- b, err := ioutil.ReadAll(f)
- if err != nil {
- return errors.WithStack(err)
- }
- d.AddBytes(name, b)
- return nil
-}
-
-func (d *InMemory) FileMap() map[string]file.File {
- m := map[string]file.File{}
- d.Walk(func(path string, file file.File) error {
- m[path] = file
- return nil
- })
- return m
-}
-
-func NewInMemory(files map[string]file.File) *InMemory {
- if files == nil {
- files = map[string]file.File{}
- }
- box := packd.NewMemoryBox()
-
- for p, f := range files {
- if b, err := ioutil.ReadAll(f); err == nil {
- box.AddBytes(p, b)
- }
- }
-
- return &InMemory{
- MemoryBox: box,
- }
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/file/resolver/packable.go b/vendor/github.com/gobuffalo/packr/v2/file/resolver/packable.go
deleted file mode 100644
index ee551fcc0..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/file/resolver/packable.go
+++ /dev/null
@@ -1,7 +0,0 @@
-package resolver
-
-import "github.com/gobuffalo/packr/v2/file"
-
-type Packable interface {
- Pack(name string, f file.File) error
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/file/resolver/resolver.go b/vendor/github.com/gobuffalo/packr/v2/file/resolver/resolver.go
deleted file mode 100644
index 8b00397ab..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/file/resolver/resolver.go
+++ /dev/null
@@ -1,33 +0,0 @@
-package resolver
-
-import (
- "encoding/json"
- "fmt"
- "os"
-
- "github.com/gobuffalo/packr/v2/file"
-)
-
-type Resolver interface {
- Resolve(string, string) (file.File, error)
-}
-
-func defaultResolver() Resolver {
- pwd, _ := os.Getwd()
- return &Disk{
- Root: pwd,
- }
-}
-
-var DefaultResolver = defaultResolver()
-
-func String(r Resolver) string {
- m := map[string]interface{}{
- "name": fmt.Sprintf("%T", r),
- }
- if fm, ok := r.(file.FileMappable); ok {
- m["files"] = fm
- }
- b, _ := json.Marshal(m)
- return string(b)
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/go.mod b/vendor/github.com/gobuffalo/packr/v2/go.mod
deleted file mode 100644
index aeef9591e..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/go.mod
+++ /dev/null
@@ -1,19 +0,0 @@
-module github.com/gobuffalo/packr/v2
-
-require (
- github.com/gobuffalo/envy v1.6.15
- github.com/gobuffalo/genny v0.0.0-20190219203444-c95082806342
- github.com/gobuffalo/gogen v0.0.0-20190224213239-1c6076128bbc
- github.com/gobuffalo/logger v0.0.0-20190224201004-be78ebfea0fa
- github.com/gobuffalo/packd v0.0.0-20190224160250-d04dd98aca5b
- github.com/karrick/godirwalk v1.7.8
- github.com/markbates/oncer v0.0.0-20181203154359-bf2de49a0be2
- github.com/markbates/safe v1.0.1
- github.com/pkg/errors v0.8.1
- github.com/rogpeppe/go-internal v1.2.2
- github.com/sirupsen/logrus v1.3.0
- github.com/spf13/cobra v0.0.3
- github.com/stretchr/testify v1.3.0
- golang.org/x/sync v0.0.0-20181221193216-37e7f081c4d4
- golang.org/x/tools v0.0.0-20190221204921-83362c3779f5
-)
diff --git a/vendor/github.com/gobuffalo/packr/v2/go.sum b/vendor/github.com/gobuffalo/packr/v2/go.sum
deleted file mode 100644
index 7c49ea0f0..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/go.sum
+++ /dev/null
@@ -1,556 +0,0 @@
-cloud.google.com/go v0.26.0/go.mod h1:aQUYkXzVsufM+DwF1aE+0xfcU+56JwCaLick0ClmMTw=
-cloud.google.com/go v0.31.0/go.mod h1:aQUYkXzVsufM+DwF1aE+0xfcU+56JwCaLick0ClmMTw=
-cloud.google.com/go v0.36.0/go.mod h1:RUoy9p/M4ge0HzT8L+SDZ8jg+Q6fth0CiBuhFJpSV40=
-dmitri.shuralyov.com/app/changes v0.0.0-20180602232624-0a106ad413e3/go.mod h1:Yl+fi1br7+Rr3LqpNJf1/uxUdtRUV+Tnj0o93V2B9MU=
-dmitri.shuralyov.com/html/belt v0.0.0-20180602232347-f7d459c86be0/go.mod h1:JLBrvjyP0v+ecvNYvCpyZgu5/xkfAUhi6wJj28eUfSU=
-dmitri.shuralyov.com/service/change v0.0.0-20181023043359-a85b471d5412/go.mod h1:a1inKt/atXimZ4Mv927x+r7UpyzRUf4emIoiiSC2TN4=
-dmitri.shuralyov.com/state v0.0.0-20180228185332-28bcc343414c/go.mod h1:0PRwlb0D6DFvNNtx+9ybjezNCa8XF0xaYcETyp6rHWU=
-git.apache.org/thrift.git v0.0.0-20180902110319-2566ecd5d999/go.mod h1:fPE2ZNJGynbRyZ4dJvy6G277gSllfV2HJqblrnkyeyg=
-github.com/BurntSushi/toml v0.3.1 h1:WXkYYl6Yr3qBf1K79EBnL4mak0OimBfB0XUf9Vl28OQ=
-github.com/BurntSushi/toml v0.3.1/go.mod h1:xHWCNGjB5oqiDr8zfno3MHue2Ht5sIBksp03qcyfWMU=
-github.com/Masterminds/semver v1.4.2 h1:WBLTQ37jOCzSLtXNdoo8bNM8876KhNqOKvrlGITgsTc=
-github.com/Masterminds/semver v1.4.2/go.mod h1:MB6lktGJrhw8PrUyiEoblNEGEQ+RzHPF078ddwwvV3Y=
-github.com/ajg/form v0.0.0-20160822230020-523a5da1a92f/go.mod h1:uL1WgH+h2mgNtvBq0339dVnzXdBETtL2LeUXaIv25UY=
-github.com/anmitsu/go-shlex v0.0.0-20161002113705-648efa622239/go.mod h1:2FmKhYUyUczH0OGQWaF5ceTx0UBShxjsH6f8oGKYe2c=
-github.com/armon/consul-api v0.0.0-20180202201655-eb2c6b5be1b6/go.mod h1:grANhF5doyWs3UAsr3K4I6qtAmlQcZDesFNEHPZAzj8=
-github.com/beorn7/perks v0.0.0-20180321164747-3a771d992973/go.mod h1:Dwedo/Wpr24TaqPxmxbtue+5NUziq4I4S80YR8gNf3Q=
-github.com/bradfitz/go-smtpd v0.0.0-20170404230938-deb6d6237625/go.mod h1:HYsPBTaaSFSlLx/70C2HPIMNZpVV8+vt/A+FMnYP11g=
-github.com/client9/misspell v0.3.4/go.mod h1:qj6jICC3Q7zFZvVWo7KLAzC3yx5G7kyvSDkc90ppPyw=
-github.com/cockroachdb/apd v1.1.0/go.mod h1:8Sl8LxpKi29FqWXR16WEFZRNSz3SoPzUzeMeY4+DwBQ=
-github.com/cockroachdb/cockroach-go v0.0.0-20181001143604-e0a95dfd547c/go.mod h1:XGLbWH/ujMcbPbhZq52Nv6UrCghb1yGn//133kEsvDk=
-github.com/codegangsta/negroni v1.0.0/go.mod h1:v0y3T5G7Y1UlFfyxFn/QLRU4a2EuNau2iZY63YTKWo0=
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-honnef.co/go/tools v0.0.0-20190106161140-3f1c8253044a/go.mod h1:rf3lG4BRIbNafJWhAfAdb/ePZxsR/4RtNHQocxwk9r4=
-sourcegraph.com/sourcegraph/go-diff v0.5.0/go.mod h1:kuch7UrkMzY0X+p9CRK03kfuPQ2zzQcaEFbx8wA8rck=
-sourcegraph.com/sqs/pbtypes v0.0.0-20180604144634-d3ebe8f20ae4/go.mod h1:ketZ/q3QxT9HOBeFhu6RdvsftgpsbFHBF5Cas6cDKZ0=
diff --git a/vendor/github.com/gobuffalo/packr/v2/helpers.go b/vendor/github.com/gobuffalo/packr/v2/helpers.go
deleted file mode 100644
index 3654dffa8..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/helpers.go
+++ /dev/null
@@ -1,73 +0,0 @@
-package packr
-
-import (
- "os"
- "path/filepath"
- "runtime"
- "strings"
-
- "github.com/gobuffalo/envy"
- "github.com/gobuffalo/packr/v2/plog"
-)
-
-func construct(name string, path string) *Box {
- return &Box{
- Path: path,
- Name: name,
- ResolutionDir: resolutionDir(path),
- resolvers: resolversMap{},
- dirs: dirsMap{},
- }
-}
-
-func resolutionDirTestFilename(filename, og string) (string, bool) {
- ng := filepath.Join(filepath.Dir(filename), og)
-
- // // this little hack courtesy of the `-cover` flag!!
- cov := filepath.Join("_test", "_obj_test")
- ng = strings.Replace(ng, string(filepath.Separator)+cov, "", 1)
-
- if resolutionDirExists(ng, og) {
- return ng, true
- }
-
- ng = filepath.Join(envy.GoPath(), "src", ng)
- if resolutionDirExists(ng, og) {
- return ng, true
- }
-
- return og, false
-}
-
-func resolutionDirExists(s, og string) bool {
- _, err := os.Stat(s)
- if err != nil {
- return false
- }
- plog.Debug("packr", "resolutionDir", "original", og, "resolved", s)
- return true
-}
-
-func resolutionDir(og string) string {
- ng, _ := filepath.Abs(og)
-
- if resolutionDirExists(ng, og) {
- return ng
- }
-
- // packr.New
- _, filename, _, _ := runtime.Caller(3)
- ng, ok := resolutionDirTestFilename(filename, og)
- if ok {
- return ng
- }
-
- // packr.NewBox (deprecated)
- _, filename, _, _ = runtime.Caller(4)
- ng, ok = resolutionDirTestFilename(filename, og)
- if ok {
- return ng
- }
-
- return og
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/jam/parser/args.go b/vendor/github.com/gobuffalo/packr/v2/jam/parser/args.go
deleted file mode 100644
index 5f042d15e..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/jam/parser/args.go
+++ /dev/null
@@ -1,53 +0,0 @@
-package parser
-
-import (
- "encoding/json"
-
- "github.com/pkg/errors"
-)
-
-// FromArgs is useful when writing packr store-cmd binaries.
-/*
- package main
-
- import (
- "log"
- "os"
-
- "github.com/gobuffalo/packr/v2/jam/parser"
- "github.com/markbates/s3packr/s3packr"
- )
-
- func main() {
- err := parser.FromArgs(os.Args[1:], func(boxes parser.Boxes) error {
- for _, box := range boxes {
- s3 := s3packr.New(box)
- if err := s3.Pack(box); err != nil {
- return err
- }
- }
- return nil
- })
-
- if err != nil {
- log.Fatal(err)
- }
- }
-*/
-func FromArgs(args []string, fn func(Boxes) error) error {
- if len(args) == 0 {
- return errors.New("you must supply a payload")
- }
- payload := args[0]
- if len(payload) == 0 {
- return errors.New("you must supply a payload")
- }
-
- var boxes Boxes
- err := json.Unmarshal([]byte(payload), &boxes)
- if err != nil {
- return err
- }
-
- return fn(boxes)
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/jam/parser/box.go b/vendor/github.com/gobuffalo/packr/v2/jam/parser/box.go
deleted file mode 100644
index b29419127..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/jam/parser/box.go
+++ /dev/null
@@ -1,40 +0,0 @@
-package parser
-
-import (
- "encoding/json"
- "os"
- "strings"
-)
-
-// Box found while parsing a file
-type Box struct {
- Name string // name of the box
- Path string // relative path of folder NewBox("./templates")
- AbsPath string // absolute path of Path
- Package string // the package name the box was found in
- PWD string // the PWD when the parser was run
- PackageDir string // the absolute path of the package where the box was found
-}
-
-type Boxes []*Box
-
-// String - json returned
-func (b Box) String() string {
- x, _ := json.Marshal(b)
- return string(x)
-}
-
-// NewBox stub from the name and the path provided
-func NewBox(name string, path string) *Box {
- if len(name) == 0 {
- name = path
- }
- name = strings.Replace(name, "\"", "", -1)
- pwd, _ := os.Getwd()
- box := &Box{
- Name: name,
- Path: path,
- PWD: pwd,
- }
- return box
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/jam/parser/file.go b/vendor/github.com/gobuffalo/packr/v2/jam/parser/file.go
deleted file mode 100644
index 3bf49cd0a..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/jam/parser/file.go
+++ /dev/null
@@ -1,54 +0,0 @@
-package parser
-
-import (
- "bytes"
- "io"
- "io/ioutil"
- "path/filepath"
-)
-
-// File that is to be parsed
-type File struct {
- io.Reader
- Path string
- AbsPath string
-}
-
-// Name of the file "app.go"
-func (f File) Name() string {
- return f.Path
-}
-
-// String returns the contents of the reader
-func (f *File) String() string {
- src, _ := ioutil.ReadAll(f)
- f.Reader = bytes.NewReader(src)
- return string(src)
-}
-
-func (s *File) Write(p []byte) (int, error) {
- bb := &bytes.Buffer{}
- i, err := bb.Write(p)
- s.Reader = bb
- return i, err
-}
-
-// NewFile takes the name of the file you want to
-// write to and a reader to reader from
-func NewFile(path string, r io.Reader) *File {
- if r == nil {
- r = &bytes.Buffer{}
- }
- if seek, ok := r.(io.Seeker); ok {
- seek.Seek(0, 0)
- }
- abs := path
- if !filepath.IsAbs(path) {
- abs, _ = filepath.Abs(path)
- }
- return &File{
- Reader: r,
- Path: path,
- AbsPath: abs,
- }
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/jam/parser/finder.go b/vendor/github.com/gobuffalo/packr/v2/jam/parser/finder.go
deleted file mode 100644
index 164638829..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/jam/parser/finder.go
+++ /dev/null
@@ -1,101 +0,0 @@
-package parser
-
-import (
- "fmt"
- "go/build"
- "path/filepath"
- "strings"
- "time"
-
- "github.com/gobuffalo/packr/v2/plog"
- "github.com/karrick/godirwalk"
- "github.com/markbates/oncer"
- "github.com/pkg/errors"
-)
-
-type finder struct {
- id time.Time
-}
-
-func (fd *finder) key(m, dir string) string {
- return fmt.Sprintf("%s-*parser.finder#%s-%s", fd.id, m, dir)
-}
-
-// findAllGoFiles *.go files for a given diretory
-func (fd *finder) findAllGoFiles(dir string) ([]string, error) {
- var err error
- var names []string
- oncer.Do(fd.key("findAllGoFiles", dir), func() {
- plog.Debug(fd, "findAllGoFiles", "dir", dir)
-
- callback := func(path string, do *godirwalk.Dirent) error {
- ext := filepath.Ext(path)
- if ext != ".go" {
- return nil
- }
- names = append(names, path)
- return nil
- }
- err = godirwalk.Walk(dir, &godirwalk.Options{
- FollowSymbolicLinks: true,
- Callback: callback,
- })
- })
-
- return names, err
-}
-
-func (fd *finder) findAllGoFilesImports(dir string) ([]string, error) {
- var err error
- var names []string
- oncer.Do(fd.key("findAllGoFilesImports", dir), func() {
- ctx := build.Default
-
- if len(ctx.SrcDirs()) == 0 {
- err = errors.New("no src directories found")
- return
- }
-
- pkg, err := ctx.ImportDir(dir, 0)
- if strings.HasPrefix(pkg.ImportPath, "github.com/gobuffalo/packr") {
- return
- }
-
- if err != nil {
- if !strings.Contains(err.Error(), "cannot find package") {
- if _, ok := errors.Cause(err).(*build.NoGoError); !ok {
- err = errors.WithStack(err)
- return
- }
- }
- }
-
- if pkg.Goroot {
- return
- }
- if len(pkg.GoFiles) <= 0 {
- return
- }
-
- plog.Debug(fd, "findAllGoFilesImports", "dir", dir)
-
- names, _ = fd.findAllGoFiles(dir)
- for _, n := range pkg.GoFiles {
- names = append(names, filepath.Join(pkg.Dir, n))
- }
- for _, imp := range pkg.Imports {
- if len(ctx.SrcDirs()) == 0 {
- continue
- }
- d := ctx.SrcDirs()[len(ctx.SrcDirs())-1]
- ip := filepath.Join(d, imp)
- n, err := fd.findAllGoFilesImports(ip)
- if err != nil && len(n) != 0 {
- names = n
- return
- }
- names = append(names, n...)
- }
- })
- return names, err
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/jam/parser/parser.go b/vendor/github.com/gobuffalo/packr/v2/jam/parser/parser.go
deleted file mode 100644
index 17c1516d8..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/jam/parser/parser.go
+++ /dev/null
@@ -1,47 +0,0 @@
-package parser
-
-import (
- "os"
- "sort"
- "strings"
-
- "github.com/gobuffalo/packr/v2/plog"
- "github.com/pkg/errors"
-)
-
-// Parser to find boxes
-type Parser struct {
- Prospects []*File // a list of files to check for boxes
- IgnoreImports bool
-}
-
-// Run the parser and run any boxes found
-func (p *Parser) Run() (Boxes, error) {
- var boxes Boxes
- for _, pros := range p.Prospects {
- plog.Debug(p, "Run", "parsing", pros.Name())
- v := NewVisitor(pros)
- pbr, err := v.Run()
- if err != nil {
- return boxes, errors.WithStack(err)
- }
- for _, b := range pbr {
- plog.Debug(p, "Run", "file", pros.Name(), "box", b.Name)
- boxes = append(boxes, b)
- }
- }
-
- pwd, _ := os.Getwd()
- sort.Slice(boxes, func(a, b int) bool {
- b1 := boxes[a]
- return !strings.HasPrefix(b1.AbsPath, pwd)
- })
- return boxes, nil
-}
-
-// New Parser from a list of File
-func New(prospects ...*File) *Parser {
- return &Parser{
- Prospects: prospects,
- }
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/jam/parser/prospect.go b/vendor/github.com/gobuffalo/packr/v2/jam/parser/prospect.go
deleted file mode 100644
index d5421cc1d..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/jam/parser/prospect.go
+++ /dev/null
@@ -1,77 +0,0 @@
-package parser
-
-import (
- "os"
- "path/filepath"
- "strings"
-
- "github.com/gobuffalo/packr/v2/file/resolver"
- "github.com/gobuffalo/packr/v2/plog"
-)
-
-var DefaultIgnoredFolders = []string{".", "_", "vendor", "node_modules", "_fixtures"}
-
-func IsProspect(path string, ignore ...string) (status bool) {
- // plog.Debug("parser", "IsProspect", "path", path, "ignore", ignore)
- defer func() {
- if status {
- plog.Debug("parser", "IsProspect (TRUE)", "path", path, "status", status)
- }
- }()
- if path == "." {
- return true
- }
-
- ext := filepath.Ext(path)
- dir := filepath.Dir(path)
-
- fi, _ := os.Stat(path)
- if fi != nil {
- if fi.IsDir() {
- dir = filepath.Base(path)
- } else {
- if len(ext) > 0 {
- dir = filepath.Base(filepath.Dir(path))
- }
- }
- }
-
- path = strings.ToLower(path)
- dir = strings.ToLower(dir)
-
- if strings.HasSuffix(path, "-packr.go") {
- return false
- }
-
- if strings.HasSuffix(path, "_test.go") {
- return false
- }
-
- ignore = append(ignore, DefaultIgnoredFolders...)
- for i, x := range ignore {
- ignore[i] = strings.TrimSpace(strings.ToLower(x))
- }
-
- parts := strings.Split(resolver.OsPath(path), string(filepath.Separator))
- if len(parts) == 0 {
- return false
- }
-
- for _, i := range ignore {
- for _, p := range parts {
- if strings.HasPrefix(p, i) {
- return false
- }
- }
- }
-
- un := filepath.Base(path)
- if len(ext) != 0 {
- un = filepath.Base(filepath.Dir(path))
- }
- if strings.HasPrefix(un, "_") {
- return false
- }
-
- return ext == ".go"
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/jam/parser/roots.go b/vendor/github.com/gobuffalo/packr/v2/jam/parser/roots.go
deleted file mode 100644
index 777f535de..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/jam/parser/roots.go
+++ /dev/null
@@ -1,90 +0,0 @@
-package parser
-
-import (
- "bytes"
- "encoding/json"
- "io/ioutil"
- "os"
- "path/filepath"
- "time"
-
- "github.com/gobuffalo/packr/v2/plog"
- "github.com/karrick/godirwalk"
- "github.com/pkg/errors"
-)
-
-type RootsOptions struct {
- IgnoreImports bool
- Ignores []string
-}
-
-func (r RootsOptions) String() string {
- x, _ := json.Marshal(r)
- return string(x)
-}
-
-// NewFromRoots scans the file roots provided and returns a
-// new Parser containing the prospects
-func NewFromRoots(roots []string, opts *RootsOptions) (*Parser, error) {
- if opts == nil {
- opts = &RootsOptions{}
- }
-
- if len(roots) == 0 {
- pwd, _ := os.Getwd()
- roots = append(roots, pwd)
- }
- p := New()
- plog.Debug(p, "NewFromRoots", "roots", roots, "options", opts)
- callback := func(path string, de *godirwalk.Dirent) error {
- if IsProspect(path, opts.Ignores...) {
- if de.IsDir() {
- return nil
- }
- roots = append(roots, path)
- return nil
- }
- if de.IsDir() {
- return filepath.SkipDir
- }
- return nil
- }
- wopts := &godirwalk.Options{
- FollowSymbolicLinks: true,
- Callback: callback,
- }
- for _, root := range roots {
- plog.Debug(p, "NewFromRoots", "walking", root)
- err := godirwalk.Walk(root, wopts)
- if err != nil {
- return p, errors.WithStack(err)
- }
- }
-
- dd := map[string]string{}
- fd := &finder{id: time.Now()}
- for _, r := range roots {
- var names []string
- if opts.IgnoreImports {
- names, _ = fd.findAllGoFiles(r)
- } else {
- names, _ = fd.findAllGoFilesImports(r)
- }
- for _, n := range names {
- if IsProspect(n) {
- plog.Debug(p, "NewFromRoots", "mapping", n)
- dd[n] = n
- }
- }
- }
- for path := range dd {
- plog.Debug(p, "NewFromRoots", "reading file", path)
- b, err := ioutil.ReadFile(path)
- if err != nil {
- return nil, errors.WithStack(err)
- }
- p.Prospects = append(p.Prospects, NewFile(path, bytes.NewReader(b)))
- }
- plog.Debug(p, "NewFromRoots", "found prospects", len(p.Prospects))
- return p, nil
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/jam/parser/visitor.go b/vendor/github.com/gobuffalo/packr/v2/jam/parser/visitor.go
deleted file mode 100644
index 47b0c9ecf..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/jam/parser/visitor.go
+++ /dev/null
@@ -1,326 +0,0 @@
-package parser
-
-import (
- "fmt"
- "go/ast"
- "os"
- "path/filepath"
- "sort"
- "strings"
-
- "github.com/gobuffalo/genny"
- "github.com/gobuffalo/gogen"
- "github.com/pkg/errors"
-)
-
-type Visitor struct {
- File genny.File
- Package string
- boxes map[string]*Box
- errors []error
-}
-
-func NewVisitor(f *File) *Visitor {
- return &Visitor{
- File: f,
- boxes: map[string]*Box{},
- errors: []error{},
- }
-}
-
-func (v *Visitor) Run() (Boxes, error) {
- var boxes Boxes
- pf, err := gogen.ParseFile(v.File)
- if err != nil {
- return boxes, errors.Wrap(err, v.File.Name())
- }
-
- v.Package = pf.Ast.Name.Name
- ast.Walk(v, pf.Ast)
-
- for _, vb := range v.boxes {
- boxes = append(boxes, vb)
- }
-
- sort.Slice(boxes, func(i, j int) bool {
- return boxes[i].Name < boxes[j].Name
- })
-
- if len(v.errors) > 0 {
- s := make([]string, len(v.errors))
- for i, e := range v.errors {
- s[i] = e.Error()
- }
- return boxes, errors.Wrap(errors.New(strings.Join(s, "\n")), v.File.Name())
- }
- return boxes, nil
-}
-
-func (v *Visitor) Visit(node ast.Node) ast.Visitor {
- if node == nil {
- return v
- }
- if err := v.eval(node); err != nil {
- v.errors = append(v.errors, err)
- }
-
- return v
-}
-
-func (v *Visitor) eval(node ast.Node) error {
- switch t := node.(type) {
- case *ast.CallExpr:
- return v.evalExpr(t)
- case *ast.Ident:
- return v.evalIdent(t)
- case *ast.GenDecl:
- for _, n := range t.Specs {
- if err := v.eval(n); err != nil {
- return errors.WithStack(err)
- }
- }
- case *ast.FuncDecl:
- if t.Body == nil {
- return nil
- }
- for _, b := range t.Body.List {
- if err := v.evalStmt(b); err != nil {
- return errors.WithStack(err)
- }
- }
- return nil
- case *ast.ValueSpec:
- for _, e := range t.Values {
- if err := v.evalExpr(e); err != nil {
- return errors.WithStack(err)
- }
- }
- }
- return nil
-}
-
-func (v *Visitor) evalStmt(stmt ast.Stmt) error {
- switch t := stmt.(type) {
- case *ast.ExprStmt:
- return v.evalExpr(t.X)
- case *ast.AssignStmt:
- for _, e := range t.Rhs {
- if err := v.evalArgs(e); err != nil {
- return errors.WithStack(err)
- }
- }
- }
- return nil
-}
-
-func (v *Visitor) evalExpr(expr ast.Expr) error {
- switch t := expr.(type) {
- case *ast.CallExpr:
- if t.Fun == nil {
- return nil
- }
- for _, a := range t.Args {
- switch at := a.(type) {
- case *ast.CallExpr:
- if sel, ok := t.Fun.(*ast.SelectorExpr); ok {
- return v.evalSelector(at, sel)
- }
-
- if err := v.evalArgs(at); err != nil {
- return errors.WithStack(err)
- }
- case *ast.CompositeLit:
- for _, e := range at.Elts {
- if err := v.evalExpr(e); err != nil {
- return errors.WithStack(err)
- }
- }
- }
- }
- if ft, ok := t.Fun.(*ast.SelectorExpr); ok {
- return v.evalSelector(t, ft)
- }
- case *ast.KeyValueExpr:
- return v.evalExpr(t.Value)
- }
- return nil
-}
-
-func (v *Visitor) evalArgs(expr ast.Expr) error {
- switch at := expr.(type) {
- case *ast.CompositeLit:
- for _, e := range at.Elts {
- if err := v.evalExpr(e); err != nil {
- return errors.WithStack(err)
- }
- }
- case *ast.CallExpr:
- if at.Fun == nil {
- return nil
- }
- switch st := at.Fun.(type) {
- case *ast.SelectorExpr:
- if err := v.evalSelector(at, st); err != nil {
- return errors.WithStack(err)
- }
- case *ast.Ident:
- return v.evalIdent(st)
- }
- for _, a := range at.Args {
- if err := v.evalArgs(a); err != nil {
- return errors.WithStack(err)
- }
- }
- }
- return nil
-}
-
-func (v *Visitor) evalSelector(expr *ast.CallExpr, sel *ast.SelectorExpr) error {
- x, ok := sel.X.(*ast.Ident)
- if !ok {
- return nil
- }
- if x.Name == "packr" {
- switch sel.Sel.Name {
- case "New":
- if len(expr.Args) != 2 {
- return errors.New("`New` requires two arguments")
- }
-
- zz := func(e ast.Expr) (string, error) {
- switch at := e.(type) {
- case *ast.Ident:
- switch at.Obj.Kind {
- case ast.Var:
- if as, ok := at.Obj.Decl.(*ast.AssignStmt); ok {
- return v.fromVariable(as)
- }
- case ast.Con:
- if vs, ok := at.Obj.Decl.(*ast.ValueSpec); ok {
- return v.fromConstant(vs)
- }
- }
- return "", v.evalIdent(at)
- case *ast.BasicLit:
- return at.Value, nil
- case *ast.CallExpr:
- return "", v.evalExpr(at)
- }
- return "", errors.Errorf("can't handle %T", e)
- }
-
- k1, err := zz(expr.Args[0])
- if err != nil {
- return errors.WithStack(err)
- }
- k2, err := zz(expr.Args[1])
- if err != nil {
- return errors.WithStack(err)
- }
- v.addBox(k1, k2)
-
- return nil
- case "NewBox":
- for _, e := range expr.Args {
- switch at := e.(type) {
- case *ast.Ident:
- switch at.Obj.Kind {
- case ast.Var:
- if as, ok := at.Obj.Decl.(*ast.AssignStmt); ok {
- v.addVariable("", as)
- }
- case ast.Con:
- if vs, ok := at.Obj.Decl.(*ast.ValueSpec); ok {
- v.addConstant("", vs)
- }
- }
- return v.evalIdent(at)
- case *ast.BasicLit:
- v.addBox("", at.Value)
- case *ast.CallExpr:
- return v.evalExpr(at)
- }
- }
- }
- }
-
- return nil
-}
-
-func (v *Visitor) evalIdent(i *ast.Ident) error {
- if i.Obj == nil {
- return nil
- }
- if s, ok := i.Obj.Decl.(*ast.AssignStmt); ok {
- return v.evalStmt(s)
- }
- return nil
-}
-
-func (v *Visitor) addBox(name string, path string) {
- if len(name) == 0 {
- name = path
- }
- name = strings.Replace(name, "\"", "", -1)
- path = strings.Replace(path, "\"", "", -1)
- abs := path
- if _, ok := v.boxes[name]; !ok {
- box := NewBox(name, path)
- box.Package = v.Package
-
- pd := filepath.Dir(v.File.Name())
- pwd, _ := os.Getwd()
- if !filepath.IsAbs(pd) {
- pd = filepath.Join(pwd, pd)
- }
- box.PackageDir = pd
-
- if !filepath.IsAbs(abs) {
- abs = filepath.Join(pd, abs)
- }
- box.AbsPath = abs
- v.boxes[name] = box
- }
-}
-func (v *Visitor) fromVariable(as *ast.AssignStmt) (string, error) {
- if len(as.Rhs) == 1 {
- if bs, ok := as.Rhs[0].(*ast.BasicLit); ok {
- return bs.Value, nil
- }
- }
- return "", errors.Wrap(errors.New("unable to find value from variable"), fmt.Sprint(as))
-}
-
-func (v *Visitor) addVariable(bn string, as *ast.AssignStmt) error {
- bv, err := v.fromVariable(as)
- if err != nil {
- return nil
- }
- if len(bn) == 0 {
- bn = bv
- }
- v.addBox(bn, bv)
- return nil
-}
-
-func (v *Visitor) fromConstant(vs *ast.ValueSpec) (string, error) {
- if len(vs.Values) == 1 {
- if bs, ok := vs.Values[0].(*ast.BasicLit); ok {
- return bs.Value, nil
- }
- }
- return "", errors.Wrap(errors.New("unable to find value from constant"), fmt.Sprint(vs))
-}
-
-func (v *Visitor) addConstant(bn string, vs *ast.ValueSpec) error {
- if len(vs.Values) == 1 {
- if bs, ok := vs.Values[0].(*ast.BasicLit); ok {
- bv := bs.Value
- if len(bn) == 0 {
- bn = bv
- }
- v.addBox(bn, bv)
- }
- }
- return nil
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/packr.go b/vendor/github.com/gobuffalo/packr/v2/packr.go
deleted file mode 100644
index fc43f9d37..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/packr.go
+++ /dev/null
@@ -1,55 +0,0 @@
-package packr
-
-import (
- "github.com/gobuffalo/packr/v2/file/resolver"
- "github.com/gobuffalo/packr/v2/jam/parser"
- "github.com/gobuffalo/packr/v2/plog"
- "github.com/markbates/safe"
- "github.com/pkg/errors"
-)
-
-var boxes = &boxMap{}
-
-var _ = safe.Run(func() {
- p, err := parser.NewFromRoots([]string{}, nil)
- if err != nil {
- plog.Logger.Error(err)
- return
- }
- boxes, err := p.Run()
- if err != nil {
- plog.Logger.Error(err)
- return
- }
- for _, box := range boxes {
- b := construct(box.Name, box.AbsPath)
- _, err = placeBox(b)
- if err != nil {
- plog.Logger.Error(err)
- return
- }
- }
-
-})
-
-func findBox(name string) (*Box, error) {
- key := resolver.Key(name)
- plog.Debug("packr", "findBox", "name", name, "key", key)
-
- b, ok := boxes.Load(key)
- if !ok {
- plog.Debug("packr", "findBox", "name", name, "key", key, "found", ok)
- return nil, errors.Errorf("could not find box %s", name)
- }
-
- plog.Debug(b, "found", "box", b)
- return b, nil
-}
-
-func placeBox(b *Box) (*Box, error) {
- key := resolver.Key(b.Name)
- eb, _ := boxes.LoadOrStore(key, b)
-
- plog.Debug("packr", "placeBox", "name", eb.Name, "path", eb.Path, "resolution directory", eb.ResolutionDir)
- return eb, nil
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/plog/plog.go b/vendor/github.com/gobuffalo/packr/v2/plog/plog.go
deleted file mode 100644
index 8b1eec109..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/plog/plog.go
+++ /dev/null
@@ -1,41 +0,0 @@
-package plog
-
-import (
- "encoding/json"
- "fmt"
-
- "github.com/gobuffalo/logger"
- "github.com/sirupsen/logrus"
-)
-
-var Logger = logger.New(logger.ErrorLevel)
-
-func Debug(t interface{}, m string, args ...interface{}) {
- if len(args)%2 == 1 {
- args = append(args, "")
- }
- f := logrus.Fields{}
- for i := 0; i < len(args); i += 2 {
- k := fmt.Sprint(args[i])
- v := args[i+1]
- if s, ok := v.(fmt.Stringer); ok {
- f[k] = s.String()
- continue
- }
- if s, ok := v.(string); ok {
- f[k] = s
- continue
- }
- if b, err := json.Marshal(v); err == nil {
- f[k] = string(b)
- continue
- }
- f[k] = v
- }
- e := Logger.WithFields(f)
- if s, ok := t.(string); ok {
- e.Debugf("%s#%s", s, m)
- return
- }
- e.Debugf("%T#%s", t, m)
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/pointer.go b/vendor/github.com/gobuffalo/packr/v2/pointer.go
deleted file mode 100644
index 10ef1cd05..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/pointer.go
+++ /dev/null
@@ -1,33 +0,0 @@
-package packr
-
-import (
- "github.com/gobuffalo/packr/v2/file"
- "github.com/gobuffalo/packr/v2/file/resolver"
- "github.com/gobuffalo/packr/v2/plog"
- "github.com/pkg/errors"
-)
-
-// Pointer is a resolvr which resolves
-// a file from a different box.
-type Pointer struct {
- ForwardBox string
- ForwardPath string
-}
-
-var _ resolver.Resolver = Pointer{}
-
-// Resolve attempts to find the file in the specific box
-// with the specified key
-func (p Pointer) Resolve(box string, path string) (file.File, error) {
- plog.Debug(p, "Resolve", "box", box, "path", path, "forward-box", p.ForwardBox, "forward-path", p.ForwardPath)
- b, err := findBox(p.ForwardBox)
- if err != nil {
- return nil, errors.WithStack(err)
- }
- f, err := b.Resolve(p.ForwardPath)
- if err != nil {
- return f, errors.WithStack(errors.Wrap(err, path))
- }
- plog.Debug(p, "Resolve", "box", box, "path", path, "file", f)
- return file.NewFileR(path, f)
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/resolvers_map.go b/vendor/github.com/gobuffalo/packr/v2/resolvers_map.go
deleted file mode 100644
index 24a042671..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/resolvers_map.go
+++ /dev/null
@@ -1,75 +0,0 @@
-//go:generate mapgen -name "resolvers" -zero "nil" -go-type "resolver.Resolver" -pkg "" -a "nil" -b "nil" -c "nil" -bb "nil" -destination "packr"
-// Code generated by github.com/gobuffalo/mapgen. DO NOT EDIT.
-
-package packr
-
-import (
- "sort"
- "sync"
-
- "github.com/gobuffalo/packr/v2/file/resolver"
-)
-
-// resolversMap wraps sync.Map and uses the following types:
-// key: string
-// value: resolver.Resolver
-type resolversMap struct {
- data sync.Map
-}
-
-// Delete the key from the map
-func (m *resolversMap) Delete(key string) {
- m.data.Delete(key)
-}
-
-// Load the key from the map.
-// Returns resolver.Resolver or bool.
-// A false return indicates either the key was not found
-// or the value is not of type resolver.Resolver
-func (m *resolversMap) Load(key string) (resolver.Resolver, bool) {
- i, ok := m.data.Load(key)
- if !ok {
- return nil, false
- }
- s, ok := i.(resolver.Resolver)
- return s, ok
-}
-
-// LoadOrStore will return an existing key or
-// store the value if not already in the map
-func (m *resolversMap) LoadOrStore(key string, value resolver.Resolver) (resolver.Resolver, bool) {
- i, _ := m.data.LoadOrStore(key, value)
- s, ok := i.(resolver.Resolver)
- return s, ok
-}
-
-// Range over the resolver.Resolver values in the map
-func (m *resolversMap) Range(f func(key string, value resolver.Resolver) bool) {
- m.data.Range(func(k, v interface{}) bool {
- key, ok := k.(string)
- if !ok {
- return false
- }
- value, ok := v.(resolver.Resolver)
- if !ok {
- return false
- }
- return f(key, value)
- })
-}
-
-// Store a resolver.Resolver in the map
-func (m *resolversMap) Store(key string, value resolver.Resolver) {
- m.data.Store(key, value)
-}
-
-// Keys returns a list of keys in the map
-func (m *resolversMap) Keys() []string {
- var keys []string
- m.Range(func(key string, value resolver.Resolver) bool {
- keys = append(keys, key)
- return true
- })
- sort.Strings(keys)
- return keys
-}
diff --git a/vendor/github.com/gobuffalo/packr/v2/version.go b/vendor/github.com/gobuffalo/packr/v2/version.go
deleted file mode 100644
index f42e20d08..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/version.go
+++ /dev/null
@@ -1,4 +0,0 @@
-package packr
-
-// Version of Packr
-const Version = "v2.0.2"
diff --git a/vendor/github.com/gobuffalo/packr/v2/walk.go b/vendor/github.com/gobuffalo/packr/v2/walk.go
deleted file mode 100644
index 40cd1f375..000000000
--- a/vendor/github.com/gobuffalo/packr/v2/walk.go
+++ /dev/null
@@ -1,81 +0,0 @@
-package packr
-
-import (
- "sort"
- "strings"
-
- "github.com/gobuffalo/packd"
- "github.com/gobuffalo/packr/v2/file"
- "github.com/gobuffalo/packr/v2/file/resolver"
- "github.com/gobuffalo/packr/v2/plog"
- "github.com/pkg/errors"
-)
-
-// WalkFunc is used to walk a box
-type WalkFunc = packd.WalkFunc
-
-// Walk will traverse the box and call the WalkFunc for each file in the box/folder.
-func (b *Box) Walk(wf WalkFunc) error {
- m := map[string]file.File{}
-
- dr := b.DefaultResolver
- if dr == nil {
- cd := resolver.OsPath(b.ResolutionDir)
- dr = &resolver.Disk{Root: cd}
- }
- if fm, ok := dr.(file.FileMappable); ok {
- for n, f := range fm.FileMap() {
- m[n] = f
- }
- }
- var err error
- b.resolvers.Range(func(n string, r resolver.Resolver) bool {
- var f file.File
- f, err = r.Resolve("", n)
- if err != nil {
- return false
- }
- keep := true
- for k := range m {
- if strings.EqualFold(k, n) {
- keep = false
- }
- }
- if keep {
- m[n] = f
- }
- return true
- })
- if err != nil {
- return errors.WithStack(err)
- }
-
- var keys = make([]string, 0, len(m))
- for k := range m {
- keys = append(keys, k)
- }
- sort.Strings(keys)
-
- for _, k := range keys {
- osPath := resolver.OsPath(k)
- plog.Debug(b, "Walk", "path", k, "osPath", osPath)
- if err := wf(osPath, m[k]); err != nil {
- return errors.WithStack(err)
- }
- }
- return nil
-}
-
-// WalkPrefix will call box.Walk and call the WalkFunc when it finds paths that have a matching prefix
-func (b *Box) WalkPrefix(prefix string, wf WalkFunc) error {
- ipref := resolver.OsPath(prefix)
- return b.Walk(func(path string, f File) error {
- ipath := resolver.OsPath(path)
- if strings.HasPrefix(ipath, ipref) {
- if err := wf(path, f); err != nil {
- return errors.WithStack(err)
- }
- }
- return nil
- })
-}
diff --git a/vendor/github.com/gobuffalo/syncx/.gitignore b/vendor/github.com/gobuffalo/syncx/.gitignore
deleted file mode 100644
index 368971859..000000000
--- a/vendor/github.com/gobuffalo/syncx/.gitignore
+++ /dev/null
@@ -1,29 +0,0 @@
-*.log
-.DS_Store
-doc
-tmp
-pkg
-*.gem
-*.pid
-coverage
-coverage.data
-build/*
-*.pbxuser
-*.mode1v3
-.svn
-profile
-.console_history
-.sass-cache/*
-.rake_tasks~
-*.log.lck
-solr/
-.jhw-cache/
-jhw.*
-*.sublime*
-node_modules/
-dist/
-generated/
-.vendor/
-bin/*
-gin-bin
-.idea/
diff --git a/vendor/github.com/gobuffalo/syncx/.gometalinter.json b/vendor/github.com/gobuffalo/syncx/.gometalinter.json
deleted file mode 100644
index e4f65a36e..000000000
--- a/vendor/github.com/gobuffalo/syncx/.gometalinter.json
+++ /dev/null
@@ -1,3 +0,0 @@
-{
- "Enable": ["vet", "golint", "goimports", "deadcode", "gotype", "ineffassign", "misspell", "nakedret", "unconvert", "megacheck", "varcheck"]
-}
diff --git a/vendor/github.com/gobuffalo/syncx/.travis.yml b/vendor/github.com/gobuffalo/syncx/.travis.yml
deleted file mode 100644
index 1fb041a25..000000000
--- a/vendor/github.com/gobuffalo/syncx/.travis.yml
+++ /dev/null
@@ -1,36 +0,0 @@
-language: go
-
-sudo: false
-
-matrix:
- include:
- - os: linux
- go: "1.9.x"
- - os: windows
- go: "1.9.x"
- - os: linux
- go: "1.10.x"
- - os: windows
- go: "1.10.x"
- - os: linux
- go: "1.11.x"
- env:
- - GO111MODULE=off
- - os: windows
- go: "1.11.x"
- env:
- - GO111MODULE=off
- - os: linux
- go: "1.11.x"
- env:
- - GO111MODULE=on
- - os: windows
- go: "1.11.x"
- env:
- - GO111MODULE=on
-
-install: false
-
-script:
- - go get -v -t ./...
- - go test -v -timeout=5s -race ./...
diff --git a/vendor/github.com/gobuffalo/syncx/LICENSE b/vendor/github.com/gobuffalo/syncx/LICENSE
deleted file mode 100644
index a538bcbf2..000000000
--- a/vendor/github.com/gobuffalo/syncx/LICENSE
+++ /dev/null
@@ -1,21 +0,0 @@
-The MIT License (MIT)
-
-Copyright (c) 2018 Mark Bates
-
-Permission is hereby granted, free of charge, to any person obtaining a copy
-of this software and associated documentation files (the "Software"), to deal
-in the Software without restriction, including without limitation the rights
-to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
-copies of the Software, and to permit persons to whom the Software is
-furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in all
-copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
-IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
-FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
-AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
-LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
-OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
-SOFTWARE.
diff --git a/vendor/github.com/gobuffalo/syncx/Makefile b/vendor/github.com/gobuffalo/syncx/Makefile
deleted file mode 100644
index 2b893c0a2..000000000
--- a/vendor/github.com/gobuffalo/syncx/Makefile
+++ /dev/null
@@ -1,52 +0,0 @@
-TAGS ?= "sqlite"
-GO_BIN ?= go
-
-install:
- $(GO_BIN) install -tags ${TAGS} -v .
- make tidy
-
-tidy:
-ifeq ($(GO111MODULE),on)
- $(GO_BIN) mod tidy
-else
- echo skipping go mod tidy
-endif
-
-deps:
- $(GO_BIN) get github.com/gobuffalo/release
- $(GO_BIN) get -tags ${TAGS} -t ./...
- make tidy
-
-build:
- $(GO_BIN) build -v .
- make tidy
-
-test:
- $(GO_BIN) test -tags ${TAGS} ./...
- make tidy
-
-ci-deps:
- $(GO_BIN) get -tags ${TAGS} -t ./...
-
-ci-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
-
-lint:
- gometalinter --vendor ./... --deadline=1m --skip=internal
- make tidy
-
-update:
- $(GO_BIN) get -u -tags ${TAGS}
- make tidy
- make test
- make install
- make tidy
-
-release-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
- make tidy
-
-release:
- make tidy
- release -y -f version.go
- make tidy
diff --git a/vendor/github.com/gobuffalo/syncx/README.md b/vendor/github.com/gobuffalo/syncx/README.md
deleted file mode 100644
index 0f0d02b20..000000000
--- a/vendor/github.com/gobuffalo/syncx/README.md
+++ /dev/null
@@ -1,18 +0,0 @@
-
-
-
-
-
-
-
-# github.com/gobuffalo/syncx
-
-This package provides a set of types and tools for working in current environments.
-
-See [https://godoc.org/github.com/gobuffalo/syncx](https://godoc.org/github.com/gobuffalo/syncx) for more details.
-
-# Installation
-
-```bash
-$ go get github.com/gobuffalo/syncx
-```
diff --git a/vendor/github.com/gobuffalo/syncx/byte_map.go b/vendor/github.com/gobuffalo/syncx/byte_map.go
deleted file mode 100644
index 39b7dae16..000000000
--- a/vendor/github.com/gobuffalo/syncx/byte_map.go
+++ /dev/null
@@ -1,73 +0,0 @@
-//go:generate mapgen -name "Byte" -zero "[]byte(``)" -go-type "[]byte" -pkg "" -a "[]byte(`A`)" -b "[]byte(`B`)" -c "[]byte(`C`)" -bb "[]byte(`BB`)" -destination "syncx"
-// Code generated by github.com/gobuffalo/mapgen. DO NOT EDIT.
-
-package syncx
-
-import (
- "sort"
- "sync"
-)
-
-// ByteMap wraps sync.Map and uses the following types:
-// key: string
-// value: []byte
-type ByteMap struct {
- data sync.Map
-}
-
-// Delete the key from the map
-func (m *ByteMap) Delete(key string) {
- m.data.Delete(key)
-}
-
-// Load the key from the map.
-// Returns []byte or bool.
-// A false return indicates either the key was not found
-// or the value is not of type []byte
-func (m *ByteMap) Load(key string) ([]byte, bool) {
- i, ok := m.data.Load(key)
- if !ok {
- return []byte(``), false
- }
- s, ok := i.([]byte)
- return s, ok
-}
-
-// LoadOrStore will return an existing key or
-// store the value if not already in the map
-func (m *ByteMap) LoadOrStore(key string, value []byte) ([]byte, bool) {
- i, _ := m.data.LoadOrStore(key, value)
- s, ok := i.([]byte)
- return s, ok
-}
-
-// Range over the []byte values in the map
-func (m *ByteMap) Range(f func(key string, value []byte) bool) {
- m.data.Range(func(k, v interface{}) bool {
- key, ok := k.(string)
- if !ok {
- return false
- }
- value, ok := v.([]byte)
- if !ok {
- return false
- }
- return f(key, value)
- })
-}
-
-// Store a []byte in the map
-func (m *ByteMap) Store(key string, value []byte) {
- m.data.Store(key, value)
-}
-
-// Keys returns a list of keys in the map
-func (m *ByteMap) Keys() []string {
- var keys []string
- m.Range(func(key string, value []byte) bool {
- keys = append(keys, key)
- return true
- })
- sort.Strings(keys)
- return keys
-}
diff --git a/vendor/github.com/gobuffalo/syncx/go.mod b/vendor/github.com/gobuffalo/syncx/go.mod
deleted file mode 100644
index 7474082fa..000000000
--- a/vendor/github.com/gobuffalo/syncx/go.mod
+++ /dev/null
@@ -1,7 +0,0 @@
-module github.com/gobuffalo/syncx
-
-require (
- github.com/davecgh/go-spew v1.1.1 // indirect
- github.com/pmezard/go-difflib v1.0.0 // indirect
- github.com/stretchr/testify v1.2.2
-)
diff --git a/vendor/github.com/gobuffalo/syncx/go.sum b/vendor/github.com/gobuffalo/syncx/go.sum
deleted file mode 100644
index e03ee77d9..000000000
--- a/vendor/github.com/gobuffalo/syncx/go.sum
+++ /dev/null
@@ -1,6 +0,0 @@
-github.com/davecgh/go-spew v1.1.1 h1:vj9j/u1bqnvCEfJOwUhtlOARqs3+rkHYY13jYWTU97c=
-github.com/davecgh/go-spew v1.1.1/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38=
-github.com/pmezard/go-difflib v1.0.0 h1:4DBwDE0NGyQoBHbLQYPwSUPoCMWR5BEzIk/f1lZbAQM=
-github.com/pmezard/go-difflib v1.0.0/go.mod h1:iKH77koFhYxTK1pcRnkKkqfTogsbg7gZNVY4sRDYZ/4=
-github.com/stretchr/testify v1.2.2 h1:bSDNvY7ZPG5RlJ8otE/7V6gMiyenm9RtJ7IUVIAoJ1w=
-github.com/stretchr/testify v1.2.2/go.mod h1:a8OnRcib4nhh0OaRAV+Yts87kKdq0PP7pXfy6kDkUVs=
diff --git a/vendor/github.com/gobuffalo/syncx/int_map.go b/vendor/github.com/gobuffalo/syncx/int_map.go
deleted file mode 100644
index f6eba4dce..000000000
--- a/vendor/github.com/gobuffalo/syncx/int_map.go
+++ /dev/null
@@ -1,73 +0,0 @@
-//go:generate mapgen -name "Int" -zero "0" -go-type "int" -pkg "" -a "0" -b "1" -c "2" -bb "-1" -destination "syncx"
-// Code generated by github.com/gobuffalo/mapgen. DO NOT EDIT.
-
-package syncx
-
-import (
- "sort"
- "sync"
-)
-
-// IntMap wraps sync.Map and uses the following types:
-// key: string
-// value: int
-type IntMap struct {
- data sync.Map
-}
-
-// Delete the key from the map
-func (m *IntMap) Delete(key string) {
- m.data.Delete(key)
-}
-
-// Load the key from the map.
-// Returns int or bool.
-// A false return indicates either the key was not found
-// or the value is not of type int
-func (m *IntMap) Load(key string) (int, bool) {
- i, ok := m.data.Load(key)
- if !ok {
- return 0, false
- }
- s, ok := i.(int)
- return s, ok
-}
-
-// LoadOrStore will return an existing key or
-// store the value if not already in the map
-func (m *IntMap) LoadOrStore(key string, value int) (int, bool) {
- i, _ := m.data.LoadOrStore(key, value)
- s, ok := i.(int)
- return s, ok
-}
-
-// Range over the int values in the map
-func (m *IntMap) Range(f func(key string, value int) bool) {
- m.data.Range(func(k, v interface{}) bool {
- key, ok := k.(string)
- if !ok {
- return false
- }
- value, ok := v.(int)
- if !ok {
- return false
- }
- return f(key, value)
- })
-}
-
-// Store a int in the map
-func (m *IntMap) Store(key string, value int) {
- m.data.Store(key, value)
-}
-
-// Keys returns a list of keys in the map
-func (m *IntMap) Keys() []string {
- var keys []string
- m.Range(func(key string, value int) bool {
- keys = append(keys, key)
- return true
- })
- sort.Strings(keys)
- return keys
-}
diff --git a/vendor/github.com/gobuffalo/syncx/interface_map.go b/vendor/github.com/gobuffalo/syncx/interface_map.go
deleted file mode 100644
index 93376135d..000000000
--- a/vendor/github.com/gobuffalo/syncx/interface_map.go
+++ /dev/null
@@ -1,73 +0,0 @@
-//go:generate mapgen -name "" -zero "nil" -go-type "interface{}" -pkg "" -a "0" -b "1" -c "2" -bb "-1" -destination "syncx"
-// Code generated by github.com/gobuffalo/mapgen. DO NOT EDIT.
-
-package syncx
-
-import (
- "sort"
- "sync"
-)
-
-// Map wraps sync.Map and uses the following types:
-// key: string
-// value: interface{}
-type Map struct {
- data sync.Map
-}
-
-// Delete the key from the map
-func (m *Map) Delete(key string) {
- m.data.Delete(key)
-}
-
-// Load the key from the map.
-// Returns interface{} or bool.
-// A false return indicates either the key was not found
-// or the value is not of type interface{}
-func (m *Map) Load(key string) (interface{}, bool) {
- i, ok := m.data.Load(key)
- if !ok {
- return nil, false
- }
- s, ok := i.(interface{})
- return s, ok
-}
-
-// LoadOrStore will return an existing key or
-// store the value if not already in the map
-func (m *Map) LoadOrStore(key string, value interface{}) (interface{}, bool) {
- i, _ := m.data.LoadOrStore(key, value)
- s, ok := i.(interface{})
- return s, ok
-}
-
-// Range over the interface{} values in the map
-func (m *Map) Range(f func(key string, value interface{}) bool) {
- m.data.Range(func(k, v interface{}) bool {
- key, ok := k.(string)
- if !ok {
- return false
- }
- value, ok := v.(interface{})
- if !ok {
- return false
- }
- return f(key, value)
- })
-}
-
-// Store a interface{} in the map
-func (m *Map) Store(key string, value interface{}) {
- m.data.Store(key, value)
-}
-
-// Keys returns a list of keys in the map
-func (m *Map) Keys() []string {
- var keys []string
- m.Range(func(key string, value interface{}) bool {
- keys = append(keys, key)
- return true
- })
- sort.Strings(keys)
- return keys
-}
diff --git a/vendor/github.com/gobuffalo/syncx/string_map.go b/vendor/github.com/gobuffalo/syncx/string_map.go
deleted file mode 100644
index 2bb37cf4b..000000000
--- a/vendor/github.com/gobuffalo/syncx/string_map.go
+++ /dev/null
@@ -1,73 +0,0 @@
-//go:generate mapgen -name "String" -zero "``" -go-type "string" -pkg "" -a "`A`" -b "`B`" -c "`C`" -bb "`BB`" -destination "syncx"
-// Code generated by github.com/gobuffalo/mapgen. DO NOT EDIT.
-
-package syncx
-
-import (
- "sort"
- "sync"
-)
-
-// StringMap wraps sync.Map and uses the following types:
-// key: string
-// value: string
-type StringMap struct {
- data sync.Map
-}
-
-// Delete the key from the map
-func (m *StringMap) Delete(key string) {
- m.data.Delete(key)
-}
-
-// Load the key from the map.
-// Returns string or bool.
-// A false return indicates either the key was not found
-// or the value is not of type string
-func (m *StringMap) Load(key string) (string, bool) {
- i, ok := m.data.Load(key)
- if !ok {
- return ``, false
- }
- s, ok := i.(string)
- return s, ok
-}
-
-// LoadOrStore will return an existing key or
-// store the value if not already in the map
-func (m *StringMap) LoadOrStore(key string, value string) (string, bool) {
- i, _ := m.data.LoadOrStore(key, value)
- s, ok := i.(string)
- return s, ok
-}
-
-// Range over the string values in the map
-func (m *StringMap) Range(f func(key string, value string) bool) {
- m.data.Range(func(k, v interface{}) bool {
- key, ok := k.(string)
- if !ok {
- return false
- }
- value, ok := v.(string)
- if !ok {
- return false
- }
- return f(key, value)
- })
-}
-
-// Store a string in the map
-func (m *StringMap) Store(key string, value string) {
- m.data.Store(key, value)
-}
-
-// Keys returns a list of keys in the map
-func (m *StringMap) Keys() []string {
- var keys []string
- m.Range(func(key string, value string) bool {
- keys = append(keys, key)
- return true
- })
- sort.Strings(keys)
- return keys
-}
diff --git a/vendor/github.com/gobuffalo/syncx/version.go b/vendor/github.com/gobuffalo/syncx/version.go
deleted file mode 100644
index 97ee3e4ca..000000000
--- a/vendor/github.com/gobuffalo/syncx/version.go
+++ /dev/null
@@ -1,4 +0,0 @@
-package syncx
-
-// Version of syncx
-const Version = "v0.0.1"
diff --git a/vendor/github.com/golang-migrate/migrate/v4/.dockerignore b/vendor/github.com/golang-migrate/migrate/v4/.dockerignore
deleted file mode 100644
index df33687f9..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/.dockerignore
+++ /dev/null
@@ -1,13 +0,0 @@
-# Project
-FAQ.md
-README.md
-LICENSE
-Makefile
-.gitignore
-.travis.yml
-CONTRIBUTING.md
-MIGRATIONS.md
-docker-deploy.sh
-
-# Golang
-testing
diff --git a/vendor/github.com/golang-migrate/migrate/v4/.gitignore b/vendor/github.com/golang-migrate/migrate/v4/.gitignore
deleted file mode 100644
index 00b92cb33..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/.gitignore
+++ /dev/null
@@ -1,7 +0,0 @@
-.DS_Store
-cli/build
-cli/cli
-cli/migrate
-.coverage
-.godoc.pid
-vendor/
\ No newline at end of file
diff --git a/vendor/github.com/golang-migrate/migrate/v4/.golangci.yml b/vendor/github.com/golang-migrate/migrate/v4/.golangci.yml
deleted file mode 100644
index 2d4d89158..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/.golangci.yml
+++ /dev/null
@@ -1,27 +0,0 @@
-run:
- # timeout for analysis, e.g. 30s, 5m, default is 1m
- deadline: 2m
-linters:
- enable:
- #- golint
- - interfacer
- - unconvert
- #- dupl
- - goconst
- - gofmt
- - misspell
- - maligned
- - unparam
- - nakedret
- - prealloc
- #- gosec
-linters-settings:
- misspell:
- locale: US
-issues:
- max-same: 0
- max-per-linter: 0
- exclude-use-default: false
- exclude:
- # gosec: Duplicated errcheck checks
- - G104
diff --git a/vendor/github.com/golang-migrate/migrate/v4/.travis.yml b/vendor/github.com/golang-migrate/migrate/v4/.travis.yml
deleted file mode 100644
index 3a3ee8179..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/.travis.yml
+++ /dev/null
@@ -1,128 +0,0 @@
-language: go
-sudo: required
-
-matrix:
- allow_failures:
- - go: master
- include:
- # Supported versions of Go: https://golang.org/dl/
- - go: "1.11.x"
- - go: "1.12.x"
- - go: master
-
-go_import_path: github.com/golang-migrate/migrate
-
-env:
- global:
- - GO111MODULE=on
- - MIGRATE_TEST_CONTAINER_BOOT_TIMEOUT=60
- - DOCKER_USERNAME=golangmigrate
- - secure: "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"
-
-services:
- - docker
-
-cache:
- directories:
- - $GOPATH/pkg
-
-before_install:
- - curl -sfL https://install.goreleaser.com/github.com/golangci/golangci-lint.sh | sh -s -- -b $(go env GOPATH)/bin v1.16.0
- - echo "TRAVIS_GO_VERSION=${TRAVIS_GO_VERSION}"
-
-install:
- - go get github.com/mattn/goveralls
-
-script:
- - golangci-lint run
- - make test COVERAGE_DIR=/tmp/coverage
-
-after_success:
- - goveralls -service=travis-ci -coverprofile /tmp/coverage/combined.txt
- - make list-external-deps > dependency_tree.txt && cat dependency_tree.txt
- - make build-cli
- - gem install --no-document fpm
- - fpm -s dir -t deb -n migrate -v "$(git describe --tags 2>/dev/null | cut -c 2-)" --license MIT -m dhui@users.noreply.github.com --url https://github.com/golang-migrate/migrate --description='Database migrations' -a amd64 -p migrate.$(git describe --tags 2>/dev/null | cut -c 2-).deb --deb-no-default-config-files -f -C cli/build migrate.linux-amd64=/usr/local/bin/migrate
-
-deploy:
- - provider: releases
- api_key:
- secure: hWH1HLPpzpfA8pXQ93T1qKQVFSpQp0as/JLQ7D91jHuJ8p+RxVeqblDrR6HQY/95R/nyiE9GJmvUolSuw5h449LSrGxPtVWhdh6EnkxlQHlen5XeMhVjRjFV0sE9qGe8v7uAkiTfRO61ktTWHrEAvw5qpyqnNISodmZS78XIasPODQbNlzwINhWhDTHIjXGb4FpizYaL3OGCanrxfR9fQyCaqKGGBjRq3Mfq8U6Yd4mApmsE+uJxgaZV8K5zBqpkSzQRWhcVGNL5DuLsU3gfSJOo7kZeA2G71SHffH577dBoqtCZ4VFv169CoUZehLWCb+7XKJZmHXVujCURATSySLGUOPc6EoLFAn3YtsCA04mS4bZVo5FZPWVwfhjmkhtDR4f6wscKp7r1HsFHSOgm59QfETQdrn4MnZ44H2Jd39axqndn5DvK9EcZVjPHynOPnueXP2u6mTuUgh2VyyWBCDO3CNo0fGlo7VJI69IkIWNSD87K9cHZWYMClyKZkUzS+PmRAhHRYbVd+9ZjKOmnU36kUHNDG/ft1D4ogsY+rhVtXB4lgWDM5adri+EIScYdYnB1/pQexLBigcJY9uE7nQTR0U6QgVNYvun7uRNs40E0c4voSfmPdFO0FlOD2y1oQhnaXfWLbu9nMcTcs4RFGrcC7NzkUN4/WjG8s285V6w=
- skip_cleanup: true
- on:
- go: "1.12.x"
- repo: golang-migrate/migrate
- tags: true
- file:
- - cli/build/migrate.linux-amd64.tar.gz
- - cli/build/migrate.darwin-amd64.tar.gz
- - cli/build/migrate.windows-amd64.exe.tar.gz
- - cli/build/sha256sum.txt
- - dependency_tree.txt
- - provider: packagecloud
- repository: migrate
- username: golang-migrate
- token:
- secure: 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
- dist: ubuntu/xenial
- package_glob: '*.deb'
- skip_cleanup: true
- on:
- go: "1.12.x"
- repo: golang-migrate/migrate
- tags: true
- - provider: packagecloud
- repository: migrate
- username: golang-migrate
- token:
- secure: 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
- dist: ubuntu/bionic
- package_glob: '*.deb'
- skip_cleanup: true
- on:
- go: "1.12.x"
- repo: golang-migrate/migrate
- tags: true
- - provider: packagecloud
- repository: migrate
- username: golang-migrate
- token:
- secure: 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
- dist: ubuntu/cosmic
- package_glob: '*.deb'
- skip_cleanup: true
- on:
- go: "1.12.x"
- repo: golang-migrate/migrate
- tags: true
- - provider: packagecloud
- repository: migrate
- username: golang-migrate
- token:
- secure: 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
- dist: debian/stretch
- package_glob: '*.deb'
- skip_cleanup: true
- on:
- go: "1.12.x"
- repo: golang-migrate/migrate
- tags: true
- - provider: packagecloud
- repository: migrate
- username: golang-migrate
- token:
- secure: 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
- dist: debian/buster
- package_glob: '*.deb'
- skip_cleanup: true
- on:
- go: "1.12.x"
- repo: golang-migrate/migrate
- tags: true
- - provider: script
- script: ./docker-deploy.sh
- skip_cleanup: true
- on:
- go: "1.12.x"
- repo: golang-migrate/migrate
- tags: true
diff --git a/vendor/github.com/golang-migrate/migrate/v4/CONTRIBUTING.md b/vendor/github.com/golang-migrate/migrate/v4/CONTRIBUTING.md
deleted file mode 100644
index 84fb8238a..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/CONTRIBUTING.md
+++ /dev/null
@@ -1,24 +0,0 @@
-# Development, Testing and Contributing
-
- 1. Make sure you have a running Docker daemon
- (Install for [MacOS](https://docs.docker.com/docker-for-mac/))
- 1. Use a version of Go that supports [modules](https://golang.org/cmd/go/#hdr-Modules__module_versions__and_more) (e.g. Go 1.11+)
- 1. Fork this repo and `git clone` somewhere to `$GOPATH/src/github.com/golang-migrate/migrate`
- * Ensure that [Go modules are enabled](https://golang.org/cmd/go/#hdr-Preliminary_module_support) (e.g. your repo path or the `GO111MODULE` environment variable are set correctly)
- 1. Install [golangci-lint](https://github.com/golangci/golangci-lint#install)
- 1. Run the linter: `golangci-lint run`
- 1. Confirm tests are working: `make test-short`
- 1. Write awesome code ...
- 1. `make test` to run all tests against all database versions
- 1. Push code and open Pull Request
-
-Some more helpful commands:
-
- * You can specify which database/ source tests to run:
- `make test-short SOURCE='file go_bindata' DATABASE='postgres cassandra'`
- * After `make test`, run `make html-coverage` which opens a shiny test coverage overview.
- * `make build-cli` builds the CLI in directory `cli/build/`.
- * `make list-external-deps` lists all external dependencies for each package
- * `make docs && make open-docs` opens godoc in your browser, `make kill-docs` kills the godoc server.
- Repeatedly call `make docs` to refresh the server.
- * Set the `DOCKER_API_VERSION` environment variable to the latest supported version if you get errors regarding the docker client API version being too new.
diff --git a/vendor/github.com/golang-migrate/migrate/v4/Dockerfile b/vendor/github.com/golang-migrate/migrate/v4/Dockerfile
deleted file mode 100644
index 13ca3f7ff..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/Dockerfile
+++ /dev/null
@@ -1,23 +0,0 @@
-FROM golang:1.12-alpine3.9 AS downloader
-ARG VERSION
-
-RUN apk add --no-cache git gcc musl-dev
-
-WORKDIR /go/src/github.com/golang-migrate/migrate
-
-COPY . ./
-
-ENV GO111MODULE=on
-ENV DATABASES="postgres mysql redshift cassandra spanner cockroachdb clickhouse mongodb"
-ENV SOURCES="file go_bindata github aws_s3 google_cloud_storage godoc_vfs gitlab"
-
-RUN go build -a -o build/migrate.linux-386 -ldflags="-X main.Version=${VERSION}" -tags "$DATABASES $SOURCES" ./cmd/migrate
-
-FROM alpine:3.9
-
-RUN apk add --no-cache ca-certificates
-
-COPY --from=downloader /go/src/github.com/golang-migrate/migrate/build/migrate.linux-386 /migrate
-
-ENTRYPOINT ["/migrate"]
-CMD ["--help"]
diff --git a/vendor/github.com/golang-migrate/migrate/v4/FAQ.md b/vendor/github.com/golang-migrate/migrate/v4/FAQ.md
deleted file mode 100644
index 1142f5972..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/FAQ.md
+++ /dev/null
@@ -1,70 +0,0 @@
-# FAQ
-
-#### How is the code base structured?
- ```
- / package migrate (the heart of everything)
- /cli the CLI wrapper
- /database database driver and sub directories have the actual driver implementations
- /source source driver and sub directories have the actual driver implementations
- ```
-
-#### Why is there no `source/driver.go:Last()`?
- It's not needed. And unless the source has a "native" way to read a directory in reversed order,
- it might be expensive to do a full directory scan in order to get the last element.
-
-#### What is a NilMigration? NilVersion?
- NilMigration defines a migration without a body. NilVersion is defined as const -1.
-
-#### What is the difference between uint(version) and int(targetVersion)?
- version refers to an existing migration version coming from a source and therefor can never be negative.
- targetVersion can either be a version OR represent a NilVersion, which equals -1.
-
-#### What's the difference between Next/Previous and Up/Down?
- ```
- 1_first_migration.up.extension next -> 2_second_migration.up.extension ...
- 1_first_migration.down.extension <- previous 2_second_migration.down.extension ...
- ```
-
-#### Why two separate files (up and down) for a migration?
- It makes all of our lives easier. No new markup/syntax to learn for users
- and existing database utility tools continue to work as expected.
-
-#### How many migrations can migrate handle?
- Whatever the maximum positive signed integer value is for your platform.
- For 32bit it would be 2,147,483,647 migrations. Migrate only keeps references to
- the currently run and pre-fetched migrations in memory. Please note that some
- source drivers need to do build a full "directory" tree first, which puts some
- heat on the memory consumption.
-
-#### Are the table tests in migrate_test.go bloated?
- Yes and no. There are duplicate test cases for sure but they don't hurt here. In fact
- the tests are very visual now and might help new users understand expected behaviors quickly.
- Migrate from version x to y and y is the last migration? Just check out the test for
- that particular case and know what's going on instantly.
-
-#### What is Docker being used for?
- Only for testing. See [testing/docker.go](testing/docker.go)
-
-#### Why not just use docker-compose?
- It doesn't give us enough runtime control for testing. We want to be able to bring up containers fast
- and whenever we want, not just once at the beginning of all tests.
-
-#### Can I maintain my driver in my own repository?
- Yes, technically thats possible. We want to encourage you to contribute your driver to this respository though.
- The driver's functionality is dictated by migrate's interfaces. That means there should really
- just be one driver for a database/ source. We want to prevent a future where several drivers doing the exact same thing,
- just implemented a bit differently, co-exist somewhere on Github. If users have to do research first to find the
- "best" available driver for a database in order to get started, we would have failed as an open source community.
-
-#### Can I mix multiple sources during a batch of migrations?
- No.
-
-#### What does "dirty" database mean?
- Before a migration runs, each database sets a dirty flag. Execution stops if a migration fails and the dirty state persists,
- which prevents attempts to run more migrations on top of a failed migration. You need to manually fix the error
- and then "force" the expected version.
-
-#### What happens if two programs try and update the database at the same time?
-Database-specific locking features are used by *some* database drivers to prevent multiple instances of migrate from running migrations at the same time
- the same database at the same time. For example, the MySQL driver uses the `GET_LOCK` function, while the Postgres driver uses
- the `pg_advisory_lock` function.
diff --git a/vendor/github.com/golang-migrate/migrate/v4/LICENSE b/vendor/github.com/golang-migrate/migrate/v4/LICENSE
deleted file mode 100644
index d03742c9f..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/LICENSE
+++ /dev/null
@@ -1,28 +0,0 @@
-The MIT License (MIT)
-
-Original Work
-Copyright (c) 2016 Matthias Kadenbach
-https://github.com/mattes/migrate
-
-Modified Work
-Copyright (c) 2018 Dale Hui
-https://github.com/golang-migrate/migrate
-
-
-Permission is hereby granted, free of charge, to any person obtaining a copy
-of this software and associated documentation files (the "Software"), to deal
-in the Software without restriction, including without limitation the rights
-to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
-copies of the Software, and to permit persons to whom the Software is
-furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in
-all copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
-IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
-FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
-AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
-LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
-OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
-THE SOFTWARE.
diff --git a/vendor/github.com/golang-migrate/migrate/v4/MIGRATIONS.md b/vendor/github.com/golang-migrate/migrate/v4/MIGRATIONS.md
deleted file mode 100644
index 836388702..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/MIGRATIONS.md
+++ /dev/null
@@ -1,81 +0,0 @@
-# Migrations
-
-## Migration Filename Format
-
-A single logical migration is represented as two separate migration files, one
-to migrate "up" to the specified version from the previous version, and a second
-to migrate back "down" to the previous version. These migrations can be provided
-by any one of the supported [migration sources](./README.md#migration-sources).
-
-The ordering and direction of the migration files is determined by the filenames
-used for them. `migrate` expects the filenames of migrations to have the format:
-
- {version}_{title}.up.{extension}
- {version}_{title}.down.{extension}
-
-The `title` of each migration is unused, and is only for readability. Similarly,
-the `extension` of the migration files is not checked by the library, and should
-be an appropriate format for the database in use (`.sql` for SQL variants, for
-instance).
-
-Versions of migrations may be represented as any 64 bit unsigned integer.
-All migrations are applied upward in order of increasing version number, and
-downward by decreasing version number.
-
-Common versioning schemes include incrementing integers:
-
- 1_initialize_schema.down.sql
- 1_initialize_schema.up.sql
- 2_add_table.down.sql
- 2_add_table.up.sql
- ...
-
-Or timestamps at an appropriate resolution:
-
- 1500360784_initialize_schema.down.sql
- 1500360784_initialize_schema.up.sql
- 1500445949_add_table.down.sql
- 1500445949_add_table.up.sql
- ...
-
-But any scheme resulting in distinct, incrementing integers as versions is valid.
-
-It is suggested that the version number of corresponding `up` and `down` migration
-files be equivalent for clarity, but they are allowed to differ so long as the
-relative ordering of the migrations is preserved.
-
-The migration files are permitted to be empty, so in the event that a migration
-is a no-op or is irreversible, it is recommended to still include both migration
-files, and either leaving them empty or adding a comment as appropriate.
-
-## Migration Content Format
-
-The format of the migration files themselves varies between database systems.
-Different databases have different semantics around schema changes and when and
-how they are allowed to occur
-(for instance, [if schema changes can occur within a transaction](https://wiki.postgresql.org/wiki/Transactional_DDL_in_PostgreSQL:_A_Competitive_Analysis)).
-
-As such, the `migrate` library has little to no checking around the format of
-migration sources. The migration files are generally processed directly by the
-drivers as raw operations.
-
-## Reversibility of Migrations
-
-Best practice for writing schema migration is that all migrations should be
-reversible. It should in theory be possible for run migrations down and back up
-through any and all versions with the state being fully cleaned and recreated
-by doing so.
-
-By adhering to this recommended practice, development and deployment of new code
-is cleaner and easier (cleaning database state for a new feature should be as
-easy as migrating down to a prior version, and back up to the latest).
-
-As opposed to some other migration libraries, `migrate` represents up and down
-migrations as separate files. This prevents any non-standard file syntax from
-being introduced which may result in unintended behavior or errors, depending
-on what database is processing the file.
-
-While it is technically possible for an up or down migration to exist on its own
-without an equivalently versioned counterpart, it is strongly recommended to
-always include a down migration which cleans up the state of the corresponding
-up migration.
diff --git a/vendor/github.com/golang-migrate/migrate/v4/Makefile b/vendor/github.com/golang-migrate/migrate/v4/Makefile
deleted file mode 100644
index b1afc221b..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/Makefile
+++ /dev/null
@@ -1,118 +0,0 @@
-SOURCE ?= file go_bindata github aws_s3 google_cloud_storage godoc_vfs gitlab
-DATABASE ?= postgres mysql redshift cassandra spanner cockroachdb clickhouse mongodb
-VERSION ?= $(shell git describe --tags 2>/dev/null | cut -c 2-)
-TEST_FLAGS ?=
-REPO_OWNER ?= $(shell cd .. && basename "$$(pwd)")
-COVERAGE_DIR ?= .coverage
-
-
-build-cli: clean
- -mkdir ./cli/build
- cd ./cmd/migrate && CGO_ENABLED=0 GOOS=linux GOARCH=amd64 go build -a -o ../../cli/build/migrate.linux-amd64 -ldflags='-X main.Version=$(VERSION) -extldflags "-static"' -tags '$(DATABASE) $(SOURCE)' .
- cd ./cmd/migrate && CGO_ENABLED=0 GOOS=darwin GOARCH=amd64 go build -a -o ../../cli/build/migrate.darwin-amd64 -ldflags='-X main.Version=$(VERSION) -extldflags "-static"' -tags '$(DATABASE) $(SOURCE)' .
- cd ./cmd/migrate && CGO_ENABLED=0 GOOS=windows GOARCH=amd64 go build -a -o ../../cli/build/migrate.windows-amd64.exe -ldflags='-X main.Version=$(VERSION) -extldflags "-static"' -tags '$(DATABASE) $(SOURCE)' .
- cd ./cli/build && find . -name 'migrate*' | xargs -I{} tar czf {}.tar.gz {}
- cd ./cli/build && shasum -a 256 * > sha256sum.txt
- cat ./cli/build/sha256sum.txt
-
-
-clean:
- -rm -r ./cli/build
-
-
-test-short:
- make test-with-flags --ignore-errors TEST_FLAGS='-short'
-
-
-test:
- @-rm -r $(COVERAGE_DIR)
- @mkdir $(COVERAGE_DIR)
- make test-with-flags TEST_FLAGS='-v -race -covermode atomic -coverprofile $$(COVERAGE_DIR)/_$$(RAND).txt -bench=. -benchmem -timeout 20m'
- @echo 'mode: atomic' > $(COVERAGE_DIR)/combined.txt
- @cat $(COVERAGE_DIR)/_*.txt | grep -v 'mode: atomic' >> $(COVERAGE_DIR)/combined.txt
-
-
-test-with-flags:
- @echo SOURCE: $(SOURCE)
- @echo DATABASE: $(DATABASE)
-
- @go test $(TEST_FLAGS) .
- @go test $(TEST_FLAGS) ./cli/...
- @go test $(TEST_FLAGS) ./database
- @go test $(TEST_FLAGS) ./testing/...
-
- @echo -n '$(SOURCE)' | tr -s ' ' '\n' | xargs -I{} go test $(TEST_FLAGS) ./source/{}
- @go test $(TEST_FLAGS) ./source/testing/...
- @go test $(TEST_FLAGS) ./source/stub/...
-
- @echo -n '$(DATABASE)' | tr -s ' ' '\n' | xargs -I{} go test $(TEST_FLAGS) ./database/{}
- @go test $(TEST_FLAGS) ./database/testing/...
- @go test $(TEST_FLAGS) ./database/stub/...
-
-
-kill-orphaned-docker-containers:
- docker rm -f $(shell docker ps -aq --filter label=migrate_test)
-
-
-html-coverage:
- go tool cover -html=$(COVERAGE_DIR)/combined.txt
-
-
-list-external-deps:
- $(call external_deps,'.')
- $(call external_deps,'./cli/...')
- $(call external_deps,'./testing/...')
-
- $(foreach v, $(SOURCE), $(call external_deps,'./source/$(v)/...'))
- $(call external_deps,'./source/testing/...')
- $(call external_deps,'./source/stub/...')
-
- $(foreach v, $(DATABASE), $(call external_deps,'./database/$(v)/...'))
- $(call external_deps,'./database/testing/...')
- $(call external_deps,'./database/stub/...')
-
-
-restore-import-paths:
- find . -name '*.go' -type f -execdir sed -i '' s%\"github.com/$(REPO_OWNER)/migrate%\"github.com/mattes/migrate%g '{}' \;
-
-
-rewrite-import-paths:
- find . -name '*.go' -type f -execdir sed -i '' s%\"github.com/mattes/migrate%\"github.com/$(REPO_OWNER)/migrate%g '{}' \;
-
-
-# example: fswatch -0 --exclude .godoc.pid --event Updated . | xargs -0 -n1 -I{} make docs
-docs:
- -make kill-docs
- nohup godoc -play -http=127.0.0.1:6064 /dev/null 2>&1 & echo $$! > .godoc.pid
- cat .godoc.pid
-
-
-kill-docs:
- @cat .godoc.pid
- kill -9 $$(cat .godoc.pid)
- rm .godoc.pid
-
-
-open-docs:
- open http://localhost:6064/pkg/github.com/$(REPO_OWNER)/migrate
-
-
-# example: make release V=0.0.0
-release:
- git tag v$(V)
- @read -p "Press enter to confirm and push to origin ..." && git push origin v$(V)
-
-
-define external_deps
- @echo '-- $(1)'; go list -f '{{join .Deps "\n"}}' $(1) | grep -v github.com/$(REPO_OWNER)/migrate | xargs go list -f '{{if not .Standard}}{{.ImportPath}}{{end}}'
-
-endef
-
-
-.PHONY: build-cli clean test-short test test-with-flags html-coverage \
- restore-import-paths rewrite-import-paths list-external-deps release \
- docs kill-docs open-docs kill-orphaned-docker-containers
-
-SHELL = /bin/bash
-RAND = $(shell echo $$RANDOM)
-
diff --git a/vendor/github.com/golang-migrate/migrate/v4/README.md b/vendor/github.com/golang-migrate/migrate/v4/README.md
deleted file mode 100644
index a55726674..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/README.md
+++ /dev/null
@@ -1,172 +0,0 @@
-[](https://travis-ci.com/golang-migrate/migrate)
-[](https://godoc.org/github.com/golang-migrate/migrate)
-[](https://coveralls.io/github/golang-migrate/migrate?branch=master)
-[](https://packagecloud.io/golang-migrate/migrate?filter=debs)
-[](https://hub.docker.com/r/migrate/migrate/)
-
-[](https://github.com/golang-migrate/migrate/releases)
-
-
-# migrate
-
-__Database migrations written in Go. Use as [CLI](#cli-usage) or import as [library](#use-in-your-go-project).__
-
- * Migrate reads migrations from [sources](#migration-sources)
- and applies them in correct order to a [database](#databases).
- * Drivers are "dumb", migrate glues everything together and makes sure the logic is bulletproof.
- (Keeps the drivers lightweight, too.)
- * Database drivers don't assume things or try to correct user input. When in doubt, fail.
-
-Forked from [mattes/migrate](https://github.com/mattes/migrate)
-
-## Databases
-
-Database drivers run migrations. [Add a new database?](database/driver.go)
-
- * [PostgreSQL](database/postgres)
- * [Redshift](database/redshift)
- * [Ql](database/ql)
- * [Cassandra](database/cassandra)
- * [SQLite](database/sqlite3) ([todo #165](https://github.com/mattes/migrate/issues/165))
- * [MySQL/ MariaDB](database/mysql)
- * [Neo4j](database/neo4j) ([todo #167](https://github.com/mattes/migrate/issues/167))
- * [MongoDB](database/mongodb)
- * [CrateDB](database/crate) ([todo #170](https://github.com/mattes/migrate/issues/170))
- * [Shell](database/shell) ([todo #171](https://github.com/mattes/migrate/issues/171))
- * [Google Cloud Spanner](database/spanner)
- * [CockroachDB](database/cockroachdb)
- * [ClickHouse](database/clickhouse)
- * [Firebird](database/firebird)
-
-### Database URLs
-
-Database connection strings are specified via URLs. The URL format is driver dependent but generally has the form: `dbdriver://username:password@host:port/dbname?option1=true&option2=false`
-
-Any [reserved URL characters](https://en.wikipedia.org/wiki/Percent-encoding#Percent-encoding_reserved_characters) need to be escaped. Note, the `%` character also [needs to be escaped](https://en.wikipedia.org/wiki/Percent-encoding#Percent-encoding_the_percent_character)
-
-Explicitly, the following characters need to be escaped:
-`!`, `#`, `$`, `%`, `&`, `'`, `(`, `)`, `*`, `+`, `,`, `/`, `:`, `;`, `=`, `?`, `@`, `[`, `]`
-
-It's easiest to always run the URL parts of your DB connection URL (e.g. username, password, etc) through an URL encoder. See the example Python snippets below:
-```bash
-$ python3 -c 'import urllib.parse; print(urllib.parse.quote(input("String to encode: "), ""))'
-String to encode: FAKEpassword!#$%&'()*+,/:;=?@[]
-FAKEpassword%21%23%24%25%26%27%28%29%2A%2B%2C%2F%3A%3B%3D%3F%40%5B%5D
-$ python2 -c 'import urllib; print urllib.quote(raw_input("String to encode: "), "")'
-String to encode: FAKEpassword!#$%&'()*+,/:;=?@[]
-FAKEpassword%21%23%24%25%26%27%28%29%2A%2B%2C%2F%3A%3B%3D%3F%40%5B%5D
-$
-```
-
-## Migration Sources
-
-Source drivers read migrations from local or remote sources. [Add a new source?](source/driver.go)
-
- * [Filesystem](source/file) - read from fileystem
- * [Go-Bindata](source/go_bindata) - read from embedded binary data ([jteeuwen/go-bindata](https://github.com/jteeuwen/go-bindata))
- * [Github](source/github) - read from remote Github repositories
- * [Gitlab](source/gitlab) - read from remote Gitlab repositories
- * [AWS S3](source/aws_s3) - read from Amazon Web Services S3
- * [Google Cloud Storage](source/google_cloud_storage) - read from Google Cloud Platform Storage
-
-
-
-## CLI usage
-
- * Simple wrapper around this library.
- * Handles ctrl+c (SIGINT) gracefully.
- * No config search paths, no config files, no magic ENV var injections.
-
-__[CLI Documentation](cli)__
-
-### Basic usage:
-
-```
-$ migrate -source file://path/to/migrations -database postgres://localhost:5432/database up 2
-```
-
-### Docker usage
-
-```
-$ docker run -v {{ migration dir }}:/migrations --network host migrate/migrate
- -path=/migrations/ -database postgres://localhost:5432/database up 2
-```
-
-## Use in your Go project
-
- * API is stable and frozen for this release (v3 & v4).
- * Uses [Go modules](https://golang.org/cmd/go/#hdr-Modules__module_versions__and_more) to manage dependencies.
- * To help prevent database corruptions, it supports graceful stops via `GracefulStop chan bool`.
- * Bring your own logger.
- * Uses `io.Reader` streams internally for low memory overhead.
- * Thread-safe and no goroutine leaks.
-
-__[Go Documentation](https://godoc.org/github.com/golang-migrate/migrate)__
-
-```go
-import (
- "github.com/golang-migrate/migrate/v4"
- _ "github.com/golang-migrate/migrate/v4/database/postgres"
- _ "github.com/golang-migrate/migrate/v4/source/github"
-)
-
-func main() {
- m, err := migrate.New(
- "github://mattes:personal-access-token@mattes/migrate_test",
- "postgres://localhost:5432/database?sslmode=enable")
- m.Steps(2)
-}
-```
-
-Want to use an existing database client?
-
-```go
-import (
- "database/sql"
- _ "github.com/lib/pq"
- "github.com/golang-migrate/migrate/v4"
- "github.com/golang-migrate/migrate/v4/database/postgres"
- _ "github.com/golang-migrate/migrate/v4/source/file"
-)
-
-func main() {
- db, err := sql.Open("postgres", "postgres://localhost:5432/database?sslmode=enable")
- driver, err := postgres.WithInstance(db, &postgres.Config{})
- m, err := migrate.NewWithDatabaseInstance(
- "file:///migrations",
- "postgres", driver)
- m.Steps(2)
-}
-```
-
-## Migration files
-
-Each migration has an up and down migration. [Why?](FAQ.md#why-two-separate-files-up-and-down-for-a-migration)
-
-```
-1481574547_create_users_table.up.sql
-1481574547_create_users_table.down.sql
-```
-
-[Best practices: How to write migrations.](MIGRATIONS.md)
-
-## Versions
-
-Version | Supported? | Import | Notes
---------|------------|--------|------
-**master** | :white_check_mark: | `import "github.com/golang-migrate/migrate/v4"` | New features and bug fixes arrive here first |
-**v4** | :white_check_mark: | `import "github.com/golang-migrate/migrate/v4"` | Used for stable releases |
-**v3** | :x: | `import "github.com/golang-migrate/migrate"` (with package manager) or `import "gopkg.in/golang-migrate/migrate.v3"` (not recommended) | **DO NOT USE** - No longer supported |
-
-## Development and Contributing
-
-Yes, please! [`Makefile`](Makefile) is your friend,
-read the [development guide](CONTRIBUTING.md).
-
-Also have a look at the [FAQ](FAQ.md).
-
-
-
----
-
-Looking for alternatives? [https://awesome-go.com/#database](https://awesome-go.com/#database).
diff --git a/vendor/github.com/golang-migrate/migrate/v4/database/driver.go b/vendor/github.com/golang-migrate/migrate/v4/database/driver.go
deleted file mode 100644
index 901e5dd66..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/database/driver.go
+++ /dev/null
@@ -1,126 +0,0 @@
-// Package database provides the Database interface.
-// All database drivers must implement this interface, register themselves,
-// optionally provide a `WithInstance` function and pass the tests
-// in package database/testing.
-package database
-
-import (
- "fmt"
- "io"
- nurl "net/url"
- "sync"
-)
-
-var (
- ErrLocked = fmt.Errorf("can't acquire lock")
-)
-
-const NilVersion int = -1
-
-var driversMu sync.RWMutex
-var drivers = make(map[string]Driver)
-
-// Driver is the interface every database driver must implement.
-//
-// How to implement a database driver?
-// 1. Implement this interface.
-// 2. Optionally, add a function named `WithInstance`.
-// This function should accept an existing DB instance and a Config{} struct
-// and return a driver instance.
-// 3. Add a test that calls database/testing.go:Test()
-// 4. Add own tests for Open(), WithInstance() (when provided) and Close().
-// All other functions are tested by tests in database/testing.
-// Saves you some time and makes sure all database drivers behave the same way.
-// 5. Call Register in init().
-// 6. Create a migrate/cli/build_.go file
-// 7. Add driver name in 'DATABASE' variable in Makefile
-//
-// Guidelines:
-// * Don't try to correct user input. Don't assume things.
-// When in doubt, return an error and explain the situation to the user.
-// * All configuration input must come from the URL string in func Open()
-// or the Config{} struct in WithInstance. Don't os.Getenv().
-type Driver interface {
- // Open returns a new driver instance configured with parameters
- // coming from the URL string. Migrate will call this function
- // only once per instance.
- Open(url string) (Driver, error)
-
- // Close closes the underlying database instance managed by the driver.
- // Migrate will call this function only once per instance.
- Close() error
-
- // Lock should acquire a database lock so that only one migration process
- // can run at a time. Migrate will call this function before Run is called.
- // If the implementation can't provide this functionality, return nil.
- // Return database.ErrLocked if database is already locked.
- Lock() error
-
- // Unlock should release the lock. Migrate will call this function after
- // all migrations have been run.
- Unlock() error
-
- // Run applies a migration to the database. migration is garantueed to be not nil.
- Run(migration io.Reader) error
-
- // SetVersion saves version and dirty state.
- // Migrate will call this function before and after each call to Run.
- // version must be >= -1. -1 means NilVersion.
- SetVersion(version int, dirty bool) error
-
- // Version returns the currently active version and if the database is dirty.
- // When no migration has been applied, it must return version -1.
- // Dirty means, a previous migration failed and user interaction is required.
- Version() (version int, dirty bool, err error)
-
- // Drop deletes everything in the database.
- // Note that this is a breaking action, a new call to Open() is necessary to
- // ensure subsequent calls work as expected.
- Drop() error
-}
-
-// Open returns a new driver instance.
-func Open(url string) (Driver, error) {
- u, err := nurl.Parse(url)
- if err != nil {
- return nil, fmt.Errorf("Unable to parse URL. Did you escape all reserved URL characters? "+
- "See: https://github.com/golang-migrate/migrate#database-urls Error: %v", err)
- }
-
- if u.Scheme == "" {
- return nil, fmt.Errorf("database driver: invalid URL scheme")
- }
-
- driversMu.RLock()
- d, ok := drivers[u.Scheme]
- driversMu.RUnlock()
- if !ok {
- return nil, fmt.Errorf("database driver: unknown driver %v (forgotten import?)", u.Scheme)
- }
-
- return d.Open(url)
-}
-
-// Register globally registers a driver.
-func Register(name string, driver Driver) {
- driversMu.Lock()
- defer driversMu.Unlock()
- if driver == nil {
- panic("Register driver is nil")
- }
- if _, dup := drivers[name]; dup {
- panic("Register called twice for driver " + name)
- }
- drivers[name] = driver
-}
-
-// List lists the registered drivers
-func List() []string {
- driversMu.RLock()
- defer driversMu.RUnlock()
- names := make([]string, 0, len(drivers))
- for n := range drivers {
- names = append(names, n)
- }
- return names
-}
diff --git a/vendor/github.com/golang-migrate/migrate/v4/database/error.go b/vendor/github.com/golang-migrate/migrate/v4/database/error.go
deleted file mode 100644
index eb802c753..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/database/error.go
+++ /dev/null
@@ -1,27 +0,0 @@
-package database
-
-import (
- "fmt"
-)
-
-// Error should be used for errors involving queries ran against the database
-type Error struct {
- // Optional: the line number
- Line uint
-
- // Query is a query excerpt
- Query []byte
-
- // Err is a useful/helping error message for humans
- Err string
-
- // OrigErr is the underlying error
- OrigErr error
-}
-
-func (e Error) Error() string {
- if len(e.Err) == 0 {
- return fmt.Sprintf("%v in line %v: %s", e.OrigErr, e.Line, e.Query)
- }
- return fmt.Sprintf("%v in line %v: %s (details: %v)", e.Err, e.Line, e.Query, e.OrigErr)
-}
diff --git a/vendor/github.com/golang-migrate/migrate/v4/database/sqlite3/README.md b/vendor/github.com/golang-migrate/migrate/v4/database/sqlite3/README.md
deleted file mode 100644
index e69de29bb..000000000
diff --git a/vendor/github.com/golang-migrate/migrate/v4/database/sqlite3/sqlite3.go b/vendor/github.com/golang-migrate/migrate/v4/database/sqlite3/sqlite3.go
deleted file mode 100644
index 9cedc6bf2..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/database/sqlite3/sqlite3.go
+++ /dev/null
@@ -1,238 +0,0 @@
-package sqlite3
-
-import (
- "database/sql"
- "fmt"
- "io"
- "io/ioutil"
- nurl "net/url"
- "strings"
-
- "github.com/golang-migrate/migrate/v4"
- "github.com/golang-migrate/migrate/v4/database"
- "github.com/hashicorp/go-multierror"
- _ "github.com/mattn/go-sqlite3"
-)
-
-func init() {
- database.Register("sqlite3", &Sqlite{})
-}
-
-var DefaultMigrationsTable = "schema_migrations"
-var (
- ErrDatabaseDirty = fmt.Errorf("database is dirty")
- ErrNilConfig = fmt.Errorf("no config")
- ErrNoDatabaseName = fmt.Errorf("no database name")
-)
-
-type Config struct {
- MigrationsTable string
- DatabaseName string
-}
-
-type Sqlite struct {
- db *sql.DB
- isLocked bool
-
- config *Config
-}
-
-func WithInstance(instance *sql.DB, config *Config) (database.Driver, error) {
- if config == nil {
- return nil, ErrNilConfig
- }
-
- if err := instance.Ping(); err != nil {
- return nil, err
- }
-
- if len(config.MigrationsTable) == 0 {
- config.MigrationsTable = DefaultMigrationsTable
- }
-
- mx := &Sqlite{
- db: instance,
- config: config,
- }
- if err := mx.ensureVersionTable(); err != nil {
- return nil, err
- }
- return mx, nil
-}
-
-// ensureVersionTable checks if versions table exists and, if not, creates it.
-// Note that this function locks the database, which deviates from the usual
-// convention of "caller locks" in the Sqlite type.
-func (m *Sqlite) ensureVersionTable() (err error) {
- if err = m.Lock(); err != nil {
- return err
- }
-
- defer func() {
- if e := m.Unlock(); e != nil {
- if err == nil {
- err = e
- } else {
- err = multierror.Append(err, e)
- }
- }
- }()
-
- query := fmt.Sprintf(`
- CREATE TABLE IF NOT EXISTS %s (version uint64,dirty bool);
- CREATE UNIQUE INDEX IF NOT EXISTS version_unique ON %s (version);
- `, m.config.MigrationsTable, m.config.MigrationsTable)
-
- if _, err := m.db.Exec(query); err != nil {
- return err
- }
- return nil
-}
-
-func (m *Sqlite) Open(url string) (database.Driver, error) {
- purl, err := nurl.Parse(url)
- if err != nil {
- return nil, err
- }
- dbfile := strings.Replace(migrate.FilterCustomQuery(purl).String(), "sqlite3://", "", 1)
- db, err := sql.Open("sqlite3", dbfile)
- if err != nil {
- return nil, err
- }
-
- migrationsTable := purl.Query().Get("x-migrations-table")
- if len(migrationsTable) == 0 {
- migrationsTable = DefaultMigrationsTable
- }
- mx, err := WithInstance(db, &Config{
- DatabaseName: purl.Path,
- MigrationsTable: migrationsTable,
- })
- if err != nil {
- return nil, err
- }
- return mx, nil
-}
-
-func (m *Sqlite) Close() error {
- return m.db.Close()
-}
-
-func (m *Sqlite) Drop() (err error) {
- query := `SELECT name FROM sqlite_master WHERE type = 'table';`
- tables, err := m.db.Query(query)
- if err != nil {
- return &database.Error{OrigErr: err, Query: []byte(query)}
- }
- defer func() {
- if errClose := tables.Close(); errClose != nil {
- err = multierror.Append(err, errClose)
- }
- }()
- tableNames := make([]string, 0)
- for tables.Next() {
- var tableName string
- if err := tables.Scan(&tableName); err != nil {
- return err
- }
- if len(tableName) > 0 {
- tableNames = append(tableNames, tableName)
- }
- }
- if len(tableNames) > 0 {
- for _, t := range tableNames {
- query := "DROP TABLE " + t
- err = m.executeQuery(query)
- if err != nil {
- return &database.Error{OrigErr: err, Query: []byte(query)}
- }
- }
- query := "VACUUM"
- _, err = m.db.Query(query)
- if err != nil {
- return &database.Error{OrigErr: err, Query: []byte(query)}
- }
- }
-
- return nil
-}
-
-func (m *Sqlite) Lock() error {
- if m.isLocked {
- return database.ErrLocked
- }
- m.isLocked = true
- return nil
-}
-
-func (m *Sqlite) Unlock() error {
- if !m.isLocked {
- return nil
- }
- m.isLocked = false
- return nil
-}
-
-func (m *Sqlite) Run(migration io.Reader) error {
- migr, err := ioutil.ReadAll(migration)
- if err != nil {
- return err
- }
- query := string(migr[:])
-
- return m.executeQuery(query)
-}
-
-func (m *Sqlite) executeQuery(query string) error {
- tx, err := m.db.Begin()
- if err != nil {
- return &database.Error{OrigErr: err, Err: "transaction start failed"}
- }
- if _, err := tx.Exec(query); err != nil {
- if errRollback := tx.Rollback(); errRollback != nil {
- err = multierror.Append(err, errRollback)
- }
- return &database.Error{OrigErr: err, Query: []byte(query)}
- }
- if err := tx.Commit(); err != nil {
- return &database.Error{OrigErr: err, Err: "transaction commit failed"}
- }
- return nil
-}
-
-func (m *Sqlite) SetVersion(version int, dirty bool) error {
- tx, err := m.db.Begin()
- if err != nil {
- return &database.Error{OrigErr: err, Err: "transaction start failed"}
- }
-
- query := "DELETE FROM " + m.config.MigrationsTable
- if _, err := tx.Exec(query); err != nil {
- return &database.Error{OrigErr: err, Query: []byte(query)}
- }
-
- if version >= 0 {
- query := fmt.Sprintf(`INSERT INTO %s (version, dirty) VALUES (%d, '%t')`, m.config.MigrationsTable, version, dirty)
- if _, err := tx.Exec(query); err != nil {
- if errRollback := tx.Rollback(); errRollback != nil {
- err = multierror.Append(err, errRollback)
- }
- return &database.Error{OrigErr: err, Query: []byte(query)}
- }
- }
-
- if err := tx.Commit(); err != nil {
- return &database.Error{OrigErr: err, Err: "transaction commit failed"}
- }
-
- return nil
-}
-
-func (m *Sqlite) Version() (version int, dirty bool, err error) {
- query := "SELECT version, dirty FROM " + m.config.MigrationsTable + " LIMIT 1"
- err = m.db.QueryRow(query).Scan(&version, &dirty)
- if err != nil {
- return database.NilVersion, false, nil
- }
- return version, dirty, nil
-}
diff --git a/vendor/github.com/golang-migrate/migrate/v4/database/util.go b/vendor/github.com/golang-migrate/migrate/v4/database/util.go
deleted file mode 100644
index 976ad3534..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/database/util.go
+++ /dev/null
@@ -1,19 +0,0 @@
-package database
-
-import (
- "fmt"
- "hash/crc32"
- "strings"
-)
-
-const advisoryLockIDSalt uint = 1486364155
-
-// GenerateAdvisoryLockId inspired by rails migrations, see https://goo.gl/8o9bCT
-func GenerateAdvisoryLockId(databaseName string, additionalNames ...string) (string, error) { // nolint: golint
- if len(additionalNames) > 0 {
- databaseName = strings.Join(append(additionalNames, databaseName), "\x00")
- }
- sum := crc32.ChecksumIEEE([]byte(databaseName))
- sum = sum * uint32(advisoryLockIDSalt)
- return fmt.Sprint(sum), nil
-}
diff --git a/vendor/github.com/golang-migrate/migrate/v4/docker-deploy.sh b/vendor/github.com/golang-migrate/migrate/v4/docker-deploy.sh
deleted file mode 100644
index 558ea79be..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/docker-deploy.sh
+++ /dev/null
@@ -1,5 +0,0 @@
-#!/bin/bash
-
-echo "$DOCKER_PASSWORD" | docker login -u "$DOCKER_USERNAME" --password-stdin && \
-docker build --build-arg VERSION="$TRAVIS_TAG" . -t migrate/migrate -t migrate/migrate:"$TRAVIS_TAG" && \
-docker push migrate/migrate:"$TRAVIS_TAG" && docker push migrate/migrate
diff --git a/vendor/github.com/golang-migrate/migrate/v4/go.mod b/vendor/github.com/golang-migrate/migrate/v4/go.mod
deleted file mode 100644
index 58df5095c..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/go.mod
+++ /dev/null
@@ -1,54 +0,0 @@
-module github.com/golang-migrate/migrate/v4
-
-require (
- cloud.google.com/go v0.37.4
- github.com/aws/aws-sdk-go v1.17.7
- github.com/bitly/go-hostpool v0.0.0-20171023180738-a3a6125de932 // indirect
- github.com/bmizerany/assert v0.0.0-20160611221934-b7ed37b82869 // indirect
- github.com/cockroachdb/apd v1.1.0 // indirect
- github.com/cockroachdb/cockroach-go v0.0.0-20181001143604-e0a95dfd547c
- github.com/cznic/ql v1.2.0
- github.com/dhui/dktest v0.3.0
- github.com/docker/docker v0.7.3-0.20190108045446-77df18c24acf
- github.com/fsouza/fake-gcs-server v1.7.0
- github.com/go-sql-driver/mysql v1.4.1
- github.com/gocql/gocql v0.0.0-20190301043612-f6df8288f9b4
- github.com/gogo/protobuf v1.2.1 // indirect
- github.com/golang/protobuf v1.3.1 // indirect
- github.com/golang/snappy v0.0.1 // indirect
- github.com/google/go-github v17.0.0+incompatible
- github.com/hashicorp/go-multierror v1.0.0
- github.com/hashicorp/golang-lru v0.5.1 // indirect
- github.com/jackc/fake v0.0.0-20150926172116-812a484cc733 // indirect
- github.com/jackc/pgx v3.2.0+incompatible // indirect
- github.com/kardianos/osext v0.0.0-20190222173326-2bc1f35cddc0 // indirect
- github.com/konsorten/go-windows-terminal-sequences v1.0.2 // indirect
- github.com/kr/pretty v0.1.0 // indirect
- github.com/kshvakov/clickhouse v1.3.5
- github.com/lib/pq v1.0.0
- github.com/mattn/go-sqlite3 v1.10.0
- github.com/mongodb/mongo-go-driver v0.3.0
- github.com/nakagami/firebirdsql v0.0.0-20190310045651-3c02a58cfed8
- github.com/pkg/errors v0.8.1 // indirect
- github.com/satori/go.uuid v1.2.0 // indirect
- github.com/shopspring/decimal v0.0.0-20180709203117-cd690d0c9e24 // indirect
- github.com/sirupsen/logrus v1.4.1 // indirect
- github.com/stretchr/testify v1.3.0 // indirect
- github.com/tidwall/pretty v0.0.0-20180105212114-65a9db5fad51 // indirect
- github.com/xanzy/go-gitlab v0.15.0
- github.com/xdg/scram v0.0.0-20180814205039-7eeb5667e42c // indirect
- github.com/xdg/stringprep v1.0.0 // indirect
- gitlab.com/nyarla/go-crypt v0.0.0-20160106005555-d9a5dc2b789b // indirect
- golang.org/x/crypto v0.0.0-20190426145343-a29dc8fdc734 // indirect
- golang.org/x/net v0.0.0-20190424112056-4829fb13d2c6
- golang.org/x/oauth2 v0.0.0-20190402181905-9f3314589c9a // indirect
- golang.org/x/sys v0.0.0-20190426135247-a129542de9ae // indirect
- golang.org/x/text v0.3.2 // indirect
- golang.org/x/time v0.0.0-20190308202827-9d24e82272b4 // indirect
- golang.org/x/tools v0.0.0-20190425222832-ad9eeb80039a
- google.golang.org/api v0.4.0
- google.golang.org/appengine v1.5.0 // indirect
- google.golang.org/genproto v0.0.0-20190425155659-357c62f0e4bb
- google.golang.org/grpc v1.20.1 // indirect
- gopkg.in/check.v1 v1.0.0-20180628173108-788fd7840127 // indirect
-)
diff --git a/vendor/github.com/golang-migrate/migrate/v4/go.sum b/vendor/github.com/golang-migrate/migrate/v4/go.sum
deleted file mode 100644
index 52d422433..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/go.sum
+++ /dev/null
@@ -1,300 +0,0 @@
-cloud.google.com/go v0.26.0/go.mod h1:aQUYkXzVsufM+DwF1aE+0xfcU+56JwCaLick0ClmMTw=
-cloud.google.com/go v0.34.0/go.mod h1:aQUYkXzVsufM+DwF1aE+0xfcU+56JwCaLick0ClmMTw=
-cloud.google.com/go v0.37.4 h1:glPeL3BQJsbF6aIIYfZizMwc5LTYz250bDMjttbBGAU=
-cloud.google.com/go v0.37.4/go.mod h1:NHPJ89PdicEuT9hdPXMROBD91xc5uRDxsMtSB16k7hw=
-github.com/Azure/go-ansiterm v0.0.0-20170929234023-d6e3b3328b78 h1:w+iIsaOQNcT7OZ575w+acHgRric5iCyQh+xv+KJ4HB8=
-github.com/Azure/go-ansiterm v0.0.0-20170929234023-d6e3b3328b78/go.mod h1:LmzpDX56iTiv29bbRTIsUNlaFfuhWRQBWjQdVyAevI8=
-github.com/BurntSushi/toml v0.3.1/go.mod h1:xHWCNGjB5oqiDr8zfno3MHue2Ht5sIBksp03qcyfWMU=
-github.com/Microsoft/go-winio v0.4.11 h1:zoIOcVf0xPN1tnMVbTtEdI+P8OofVk3NObnwOQ6nK2Q=
-github.com/Microsoft/go-winio v0.4.11/go.mod h1:VhR8bwka0BXejwEJY73c50VrPtXAaKcyvVC4A4RozmA=
-github.com/Nvveen/Gotty v0.0.0-20120604004816-cd527374f1e5 h1:TngWCqHvy9oXAN6lEVMRuU21PR1EtLVZJmdB18Gu3Rw=
-github.com/Nvveen/Gotty v0.0.0-20120604004816-cd527374f1e5/go.mod h1:lmUJ/7eu/Q8D7ML55dXQrVaamCz2vxCfdQBasLZfHKk=
-github.com/Shopify/sarama v1.19.0/go.mod h1:FVkBWblsNy7DGZRfXLU0O9RCGt5g3g3yEuWXgklEdEo=
-github.com/Shopify/toxiproxy v2.1.4+incompatible/go.mod h1:OXgGpZ6Cli1/URJOF1DMxUHB2q5Ap20/P/eIdh4G0pI=
-github.com/alecthomas/template v0.0.0-20160405071501-a0175ee3bccc/go.mod h1:LOuyumcjzFXgccqObfd/Ljyb9UuFJ6TxHnclSeseNhc=
-github.com/alecthomas/units v0.0.0-20151022065526-2efee857e7cf/go.mod h1:ybxpYRFXyAe+OPACYpWeL0wqObRcbAqCMya13uyzqw0=
-github.com/apache/thrift v0.12.0/go.mod h1:cp2SuWMxlEZw2r+iP2GNCdIi4C1qmUzdZFSVb+bacwQ=
-github.com/aws/aws-sdk-go v1.17.7 h1:/4+rDPe0W95KBmNGYCG+NUvdL8ssPYBMxL+aSCg6nIA=
-github.com/aws/aws-sdk-go v1.17.7/go.mod h1:KmX6BPdI08NWTb3/sm4ZGu5ShLoqVDhKgpiN924inxo=
-github.com/beorn7/perks v0.0.0-20180321164747-3a771d992973/go.mod h1:Dwedo/Wpr24TaqPxmxbtue+5NUziq4I4S80YR8gNf3Q=
-github.com/bitly/go-hostpool v0.0.0-20171023180738-a3a6125de932 h1:mXoPYz/Ul5HYEDvkta6I8/rnYM5gSdSV2tJ6XbZuEtY=
-github.com/bitly/go-hostpool v0.0.0-20171023180738-a3a6125de932/go.mod h1:NOuUCSz6Q9T7+igc/hlvDOUdtWKryOrtFyIVABv/p7k=
-github.com/bmizerany/assert v0.0.0-20160611221934-b7ed37b82869 h1:DDGfHa7BWjL4YnC6+E63dPcxHo2sUxDIu8g3QgEJdRY=
-github.com/bmizerany/assert v0.0.0-20160611221934-b7ed37b82869/go.mod h1:Ekp36dRnpXw/yCqJaO+ZrUyxD+3VXMFFr56k5XYrpB4=
-github.com/client9/misspell v0.3.4/go.mod h1:qj6jICC3Q7zFZvVWo7KLAzC3yx5G7kyvSDkc90ppPyw=
-github.com/cockroachdb/apd v1.1.0 h1:3LFP3629v+1aKXU5Q37mxmRxX/pIu1nijXydLShEq5I=
-github.com/cockroachdb/apd v1.1.0/go.mod h1:8Sl8LxpKi29FqWXR16WEFZRNSz3SoPzUzeMeY4+DwBQ=
-github.com/cockroachdb/cockroach-go v0.0.0-20181001143604-e0a95dfd547c h1:2zRrJWIt/f9c9HhNHAgrRgq0San5gRRUJTBXLkchal0=
-github.com/cockroachdb/cockroach-go v0.0.0-20181001143604-e0a95dfd547c/go.mod h1:XGLbWH/ujMcbPbhZq52Nv6UrCghb1yGn//133kEsvDk=
-github.com/cznic/b v0.0.0-20180115125044-35e9bbe41f07 h1:UHFGPvSxX4C4YBApSPvmUfL8tTvWLj2ryqvT9K4Jcuk=
-github.com/cznic/b v0.0.0-20180115125044-35e9bbe41f07/go.mod h1:URriBxXwVq5ijiJ12C7iIZqlA69nTlI+LgI6/pwftG8=
-github.com/cznic/fileutil v0.0.0-20180108211300-6a051e75936f h1:7uSNgsgcarNk4oiN/nNkO0J7KAjlsF5Yv5Gf/tFdHas=
-github.com/cznic/fileutil v0.0.0-20180108211300-6a051e75936f/go.mod h1:8S58EK26zhXSxzv7NQFpnliaOQsmDUxvoQO3rt154Vg=
-github.com/cznic/golex v0.0.0-20170803123110-4ab7c5e190e4 h1:CVAqftqbj+exlab+8KJQrE+kNIVlQfJt58j4GxCMF1s=
-github.com/cznic/golex v0.0.0-20170803123110-4ab7c5e190e4/go.mod h1:+bmmJDNmKlhWNG+gwWCkaBoTy39Fs+bzRxVBzoTQbIc=
-github.com/cznic/internal v0.0.0-20180608152220-f44710a21d00 h1:FHpbUtp2K8X53/b4aFNj4my5n+i3x+CQCZWNuHWH/+E=
-github.com/cznic/internal v0.0.0-20180608152220-f44710a21d00/go.mod h1:olo7eAdKwJdXxb55TKGLiJ6xt1H0/tiiRCWKVLmtjY4=
-github.com/cznic/lldb v1.1.0 h1:AIA+ham6TSJ+XkMe8imQ/g8KPzMUVWAwqUQQdtuMsHs=
-github.com/cznic/lldb v1.1.0/go.mod h1:FIZVUmYUVhPwRiPzL8nD/mpFcJ/G7SSXjjXYG4uRI3A=
-github.com/cznic/mathutil v0.0.0-20180504122225-ca4c9f2c1369 h1:XNT/Zf5l++1Pyg08/HV04ppB0gKxAqtZQBRYiYrUuYk=
-github.com/cznic/mathutil v0.0.0-20180504122225-ca4c9f2c1369/go.mod h1:e6NPNENfs9mPDVNRekM7lKScauxd5kXTr1Mfyig6TDM=
-github.com/cznic/ql v1.2.0 h1:lcKp95ZtdF0XkWhGnVIXGF8dVD2X+ClS08tglKtf+ak=
-github.com/cznic/ql v1.2.0/go.mod h1:FbpzhyZrqr0PVlK6ury+PoW3T0ODUV22OeWIxcaOrSE=
-github.com/cznic/sortutil v0.0.0-20150617083342-4c7342852e65 h1:hxuZop6tSoOi0sxFzoGGYdRqNrPubyaIf9KoBG9tPiE=
-github.com/cznic/sortutil v0.0.0-20150617083342-4c7342852e65/go.mod h1:q2w6Bg5jeox1B+QkJ6Wp/+Vn0G/bo3f1uY7Fn3vivIQ=
-github.com/cznic/strutil v0.0.0-20171016134553-529a34b1c186 h1:0rkFMAbn5KBKNpJyHQ6Prb95vIKanmAe62KxsrN+sqA=
-github.com/cznic/strutil v0.0.0-20171016134553-529a34b1c186/go.mod h1:AHHPPPXTw0h6pVabbcbyGRK1DckRn7r/STdZEeIDzZc=
-github.com/cznic/zappy v0.0.0-20160723133515-2533cb5b45cc h1:YKKpTb2BrXN2GYyGaygIdis1vXbE7SSAG9axGWIMClg=
-github.com/cznic/zappy v0.0.0-20160723133515-2533cb5b45cc/go.mod h1:Y1SNZ4dRUOKXshKUbwUapqNncRrho4mkjQebgEHZLj8=
-github.com/davecgh/go-spew v1.1.0/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38=
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-github.com/docker/go-connections v0.4.0 h1:El9xVISelRB7BuFusrZozjnkIM5YnzCViNKohAFqRJQ=
-github.com/docker/go-connections v0.4.0/go.mod h1:Gbd7IOopHjR8Iph03tsViu4nIes5XhDvyHbTtUxmeec=
-github.com/docker/go-units v0.3.3 h1:Xk8S3Xj5sLGlG5g67hJmYMmUgXv5N4PhkjJHHqrwnTk=
-github.com/docker/go-units v0.3.3/go.mod h1:fgPhTUdO+D/Jk86RDLlptpiXQzgHJF7gydDDbaIK4Dk=
-github.com/eapache/go-resiliency v1.1.0/go.mod h1:kFI+JgMyC7bLPUVY133qvEBtVayf5mFgVsvEsIPBvNs=
-github.com/eapache/go-xerial-snappy v0.0.0-20180814174437-776d5712da21/go.mod h1:+020luEh2TKB4/GOp8oxxtq0Daoen/Cii55CzbTV6DU=
-github.com/eapache/queue v1.1.0/go.mod h1:6eCeP0CKFpHLu8blIFXhExK/dRa7WDZfr6jVFPTqq+I=
-github.com/edsrzf/mmap-go v0.0.0-20170320065105-0bce6a688712 h1:aaQcKT9WumO6JEJcRyTqFVq4XUZiUcKR2/GI31TOcz8=
-github.com/edsrzf/mmap-go v0.0.0-20170320065105-0bce6a688712/go.mod h1:YO35OhQPt3KJa3ryjFM5Bs14WD66h8eGKpfaBNrHW5M=
-github.com/fsnotify/fsnotify v1.4.7/go.mod h1:jwhsz4b93w/PPRr/qN1Yymfu8t87LnFCMoQvtojpjFo=
-github.com/fsouza/fake-gcs-server v1.7.0 h1:Un0BXUXrRWYSmYyC1Rqm2e2WJfTPyDy/HGMz31emTi8=
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-github.com/go-kit/kit v0.8.0/go.mod h1:xBxKIO96dXMWWy0MnWVtmwkA9/13aqxPnvrjFYMA2as=
-github.com/go-logfmt/logfmt v0.3.0/go.mod h1:Qt1PoO58o5twSAckw1HlFXLmHsOX5/0LbT9GBnD5lWE=
-github.com/go-sql-driver/mysql v1.4.1 h1:g24URVg0OFbNUTx9qqY1IRZ9D9z3iPyi5zKhQZpNwpA=
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-github.com/go-stack/stack v1.8.0 h1:5SgMzNM5HxrEjV0ww2lTmX6E2Izsfxas4+YHWRs3Lsk=
-github.com/go-stack/stack v1.8.0/go.mod h1:v0f6uXyyMGvRgIKkXu+yp6POWl0qKG85gN/melR3HDY=
-github.com/gocql/gocql v0.0.0-20190301043612-f6df8288f9b4 h1:vF83LI8tAakwEwvWZtrIEx7pOySacl2TOxx6eXk4ePo=
-github.com/gocql/gocql v0.0.0-20190301043612-f6df8288f9b4/go.mod h1:4Fw1eo5iaEhDUs8XyuhSVCVy52Jq3L+/3GJgYkwc+/0=
-github.com/gogo/protobuf v1.1.1/go.mod h1:r8qH/GZQm5c6nD/R0oafs1akxWv10x8SbQlK7atdtwQ=
-github.com/gogo/protobuf v1.2.0/go.mod h1:r8qH/GZQm5c6nD/R0oafs1akxWv10x8SbQlK7atdtwQ=
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-github.com/golang/glog v0.0.0-20160126235308-23def4e6c14b h1:VKtxabqXZkF25pY9ekfRL6a582T4P37/31XEstQ5p58=
-github.com/golang/glog v0.0.0-20160126235308-23def4e6c14b/go.mod h1:SBH7ygxi8pfUlaOkMMuAQtPIUF8ecWP5IEl/CR7VP2Q=
-github.com/golang/mock v1.1.1/go.mod h1:oTYuIxOrZwtPieC+H1uAHpcLFnEyAGVDL/k47Jfbm0A=
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-github.com/golang/protobuf v1.2.0/go.mod h1:6lQm79b+lXiMfvg/cZm0SGofjICqVBUtrP5yJMmIC1U=
-github.com/golang/protobuf v1.3.1 h1:YF8+flBXS5eO826T4nzqPrxfhQThhXl0YzfuUPu4SBg=
-github.com/golang/protobuf v1.3.1/go.mod h1:6lQm79b+lXiMfvg/cZm0SGofjICqVBUtrP5yJMmIC1U=
-github.com/golang/snappy v0.0.0-20170215233205-553a64147049/go.mod h1:/XxbfmMg8lxefKM7IXC3fBNl/7bRcc72aCRzEWrmP2Q=
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diff --git a/vendor/github.com/golang-migrate/migrate/v4/log.go b/vendor/github.com/golang-migrate/migrate/v4/log.go
deleted file mode 100644
index cb00b7798..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/log.go
+++ /dev/null
@@ -1,12 +0,0 @@
-package migrate
-
-// Logger is an interface so you can pass in your own
-// logging implementation.
-type Logger interface {
-
- // Printf is like fmt.Printf
- Printf(format string, v ...interface{})
-
- // Verbose should return true when verbose logging output is wanted
- Verbose() bool
-}
diff --git a/vendor/github.com/golang-migrate/migrate/v4/migrate.go b/vendor/github.com/golang-migrate/migrate/v4/migrate.go
deleted file mode 100644
index a4a694b40..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/migrate.go
+++ /dev/null
@@ -1,977 +0,0 @@
-// Package migrate reads migrations from sources and runs them against databases.
-// Sources are defined by the `source.Driver` and databases by the `database.Driver`
-// interface. The driver interfaces are kept "dump", all migration logic is kept
-// in this package.
-package migrate
-
-import (
- "errors"
- "fmt"
- "github.com/hashicorp/go-multierror"
- "os"
- "sync"
- "time"
-
- "github.com/golang-migrate/migrate/v4/database"
- "github.com/golang-migrate/migrate/v4/source"
-)
-
-// DefaultPrefetchMigrations sets the number of migrations to pre-read
-// from the source. This is helpful if the source is remote, but has little
-// effect for a local source (i.e. file system).
-// Please note that this setting has a major impact on the memory usage,
-// since each pre-read migration is buffered in memory. See DefaultBufferSize.
-var DefaultPrefetchMigrations = uint(10)
-
-// DefaultLockTimeout sets the max time a database driver has to acquire a lock.
-var DefaultLockTimeout = 15 * time.Second
-
-var (
- ErrNoChange = errors.New("no change")
- ErrNilVersion = errors.New("no migration")
- ErrInvalidVersion = errors.New("version must be >= -1")
- ErrLocked = errors.New("database locked")
- ErrLockTimeout = errors.New("timeout: can't acquire database lock")
-)
-
-// ErrShortLimit is an error returned when not enough migrations
-// can be returned by a source for a given limit.
-type ErrShortLimit struct {
- Short uint
-}
-
-// Error implements the error interface.
-func (e ErrShortLimit) Error() string {
- return fmt.Sprintf("limit %v short", e.Short)
-}
-
-type ErrDirty struct {
- Version int
-}
-
-func (e ErrDirty) Error() string {
- return fmt.Sprintf("Dirty database version %v. Fix and force version.", e.Version)
-}
-
-type Migrate struct {
- sourceName string
- sourceDrv source.Driver
- databaseName string
- databaseDrv database.Driver
-
- // Log accepts a Logger interface
- Log Logger
-
- // GracefulStop accepts `true` and will stop executing migrations
- // as soon as possible at a safe break point, so that the database
- // is not corrupted.
- GracefulStop chan bool
- isLockedMu *sync.Mutex
-
- isGracefulStop bool
- isLocked bool
-
- // PrefetchMigrations defaults to DefaultPrefetchMigrations,
- // but can be set per Migrate instance.
- PrefetchMigrations uint
-
- // LockTimeout defaults to DefaultLockTimeout,
- // but can be set per Migrate instance.
- LockTimeout time.Duration
-}
-
-// New returns a new Migrate instance from a source URL and a database URL.
-// The URL scheme is defined by each driver.
-func New(sourceURL, databaseURL string) (*Migrate, error) {
- m := newCommon()
-
- sourceName, err := sourceSchemeFromURL(sourceURL)
- if err != nil {
- return nil, err
- }
- m.sourceName = sourceName
-
- databaseName, err := databaseSchemeFromURL(databaseURL)
- if err != nil {
- return nil, err
- }
- m.databaseName = databaseName
-
- sourceDrv, err := source.Open(sourceURL)
- if err != nil {
- return nil, err
- }
- m.sourceDrv = sourceDrv
-
- databaseDrv, err := database.Open(databaseURL)
- if err != nil {
- return nil, err
- }
- m.databaseDrv = databaseDrv
-
- return m, nil
-}
-
-// NewWithDatabaseInstance returns a new Migrate instance from a source URL
-// and an existing database instance. The source URL scheme is defined by each driver.
-// Use any string that can serve as an identifier during logging as databaseName.
-// You are responsible for closing the underlying database client if necessary.
-func NewWithDatabaseInstance(sourceURL string, databaseName string, databaseInstance database.Driver) (*Migrate, error) {
- m := newCommon()
-
- sourceName, err := schemeFromURL(sourceURL)
- if err != nil {
- return nil, err
- }
- m.sourceName = sourceName
-
- m.databaseName = databaseName
-
- sourceDrv, err := source.Open(sourceURL)
- if err != nil {
- return nil, err
- }
- m.sourceDrv = sourceDrv
-
- m.databaseDrv = databaseInstance
-
- return m, nil
-}
-
-// NewWithSourceInstance returns a new Migrate instance from an existing source instance
-// and a database URL. The database URL scheme is defined by each driver.
-// Use any string that can serve as an identifier during logging as sourceName.
-// You are responsible for closing the underlying source client if necessary.
-func NewWithSourceInstance(sourceName string, sourceInstance source.Driver, databaseURL string) (*Migrate, error) {
- m := newCommon()
-
- databaseName, err := schemeFromURL(databaseURL)
- if err != nil {
- return nil, err
- }
- m.databaseName = databaseName
-
- m.sourceName = sourceName
-
- databaseDrv, err := database.Open(databaseURL)
- if err != nil {
- return nil, err
- }
- m.databaseDrv = databaseDrv
-
- m.sourceDrv = sourceInstance
-
- return m, nil
-}
-
-// NewWithInstance returns a new Migrate instance from an existing source and
-// database instance. Use any string that can serve as an identifier during logging
-// as sourceName and databaseName. You are responsible for closing down
-// the underlying source and database client if necessary.
-func NewWithInstance(sourceName string, sourceInstance source.Driver, databaseName string, databaseInstance database.Driver) (*Migrate, error) {
- m := newCommon()
-
- m.sourceName = sourceName
- m.databaseName = databaseName
-
- m.sourceDrv = sourceInstance
- m.databaseDrv = databaseInstance
-
- return m, nil
-}
-
-func newCommon() *Migrate {
- return &Migrate{
- GracefulStop: make(chan bool, 1),
- PrefetchMigrations: DefaultPrefetchMigrations,
- LockTimeout: DefaultLockTimeout,
- isLockedMu: &sync.Mutex{},
- }
-}
-
-// Close closes the source and the database.
-func (m *Migrate) Close() (source error, database error) {
- databaseSrvClose := make(chan error)
- sourceSrvClose := make(chan error)
-
- m.logVerbosePrintf("Closing source and database\n")
-
- go func() {
- databaseSrvClose <- m.databaseDrv.Close()
- }()
-
- go func() {
- sourceSrvClose <- m.sourceDrv.Close()
- }()
-
- return <-sourceSrvClose, <-databaseSrvClose
-}
-
-// Migrate looks at the currently active migration version,
-// then migrates either up or down to the specified version.
-func (m *Migrate) Migrate(version uint) error {
- if err := m.lock(); err != nil {
- return err
- }
-
- curVersion, dirty, err := m.databaseDrv.Version()
- if err != nil {
- return m.unlockErr(err)
- }
-
- if dirty {
- return m.unlockErr(ErrDirty{curVersion})
- }
-
- ret := make(chan interface{}, m.PrefetchMigrations)
- go m.read(curVersion, int(version), ret)
-
- return m.unlockErr(m.runMigrations(ret))
-}
-
-// Steps looks at the currently active migration version.
-// It will migrate up if n > 0, and down if n < 0.
-func (m *Migrate) Steps(n int) error {
- if n == 0 {
- return ErrNoChange
- }
-
- if err := m.lock(); err != nil {
- return err
- }
-
- curVersion, dirty, err := m.databaseDrv.Version()
- if err != nil {
- return m.unlockErr(err)
- }
-
- if dirty {
- return m.unlockErr(ErrDirty{curVersion})
- }
-
- ret := make(chan interface{}, m.PrefetchMigrations)
-
- if n > 0 {
- go m.readUp(curVersion, n, ret)
- } else {
- go m.readDown(curVersion, -n, ret)
- }
-
- return m.unlockErr(m.runMigrations(ret))
-}
-
-// Up looks at the currently active migration version
-// and will migrate all the way up (applying all up migrations).
-func (m *Migrate) Up() error {
- if err := m.lock(); err != nil {
- return err
- }
-
- curVersion, dirty, err := m.databaseDrv.Version()
- if err != nil {
- return m.unlockErr(err)
- }
-
- if dirty {
- return m.unlockErr(ErrDirty{curVersion})
- }
-
- ret := make(chan interface{}, m.PrefetchMigrations)
-
- go m.readUp(curVersion, -1, ret)
- return m.unlockErr(m.runMigrations(ret))
-}
-
-// Down looks at the currently active migration version
-// and will migrate all the way down (applying all down migrations).
-func (m *Migrate) Down() error {
- if err := m.lock(); err != nil {
- return err
- }
-
- curVersion, dirty, err := m.databaseDrv.Version()
- if err != nil {
- return m.unlockErr(err)
- }
-
- if dirty {
- return m.unlockErr(ErrDirty{curVersion})
- }
-
- ret := make(chan interface{}, m.PrefetchMigrations)
- go m.readDown(curVersion, -1, ret)
- return m.unlockErr(m.runMigrations(ret))
-}
-
-// Drop deletes everything in the database.
-func (m *Migrate) Drop() error {
- if err := m.lock(); err != nil {
- return err
- }
- if err := m.databaseDrv.Drop(); err != nil {
- return m.unlockErr(err)
- }
- return m.unlock()
-}
-
-// Run runs any migration provided by you against the database.
-// It does not check any currently active version in database.
-// Usually you don't need this function at all. Use Migrate,
-// Steps, Up or Down instead.
-func (m *Migrate) Run(migration ...*Migration) error {
- if len(migration) == 0 {
- return ErrNoChange
- }
-
- if err := m.lock(); err != nil {
- return err
- }
-
- curVersion, dirty, err := m.databaseDrv.Version()
- if err != nil {
- return m.unlockErr(err)
- }
-
- if dirty {
- return m.unlockErr(ErrDirty{curVersion})
- }
-
- ret := make(chan interface{}, m.PrefetchMigrations)
-
- go func() {
- defer close(ret)
- for _, migr := range migration {
- if m.PrefetchMigrations > 0 && migr.Body != nil {
- m.logVerbosePrintf("Start buffering %v\n", migr.LogString())
- } else {
- m.logVerbosePrintf("Scheduled %v\n", migr.LogString())
- }
-
- ret <- migr
- go func(migr *Migration) {
- if err := migr.Buffer(); err != nil {
- m.logErr(err)
- }
- }(migr)
- }
- }()
-
- return m.unlockErr(m.runMigrations(ret))
-}
-
-// Force sets a migration version.
-// It does not check any currently active version in database.
-// It resets the dirty state to false.
-func (m *Migrate) Force(version int) error {
- if version < -1 {
- return ErrInvalidVersion
- }
-
- if err := m.lock(); err != nil {
- return err
- }
-
- if err := m.databaseDrv.SetVersion(version, false); err != nil {
- return m.unlockErr(err)
- }
-
- return m.unlock()
-}
-
-// Version returns the currently active migration version.
-// If no migration has been applied, yet, it will return ErrNilVersion.
-func (m *Migrate) Version() (version uint, dirty bool, err error) {
- v, d, err := m.databaseDrv.Version()
- if err != nil {
- return 0, false, err
- }
-
- if v == database.NilVersion {
- return 0, false, ErrNilVersion
- }
-
- return suint(v), d, nil
-}
-
-// read reads either up or down migrations from source `from` to `to`.
-// Each migration is then written to the ret channel.
-// If an error occurs during reading, that error is written to the ret channel, too.
-// Once read is done reading it will close the ret channel.
-func (m *Migrate) read(from int, to int, ret chan<- interface{}) {
- defer close(ret)
-
- // check if from version exists
- if from >= 0 {
- if err := m.versionExists(suint(from)); err != nil {
- ret <- err
- return
- }
- }
-
- // check if to version exists
- if to >= 0 {
- if err := m.versionExists(suint(to)); err != nil {
- ret <- err
- return
- }
- }
-
- // no change?
- if from == to {
- ret <- ErrNoChange
- return
- }
-
- if from < to {
- // it's going up
- // apply first migration if from is nil version
- if from == -1 {
- firstVersion, err := m.sourceDrv.First()
- if err != nil {
- ret <- err
- return
- }
-
- migr, err := m.newMigration(firstVersion, int(firstVersion))
- if err != nil {
- ret <- err
- return
- }
-
- ret <- migr
- go func() {
- if err := migr.Buffer(); err != nil {
- m.logErr(err)
- }
- }()
-
- from = int(firstVersion)
- }
-
- // run until we reach target ...
- for from < to {
- if m.stop() {
- return
- }
-
- next, err := m.sourceDrv.Next(suint(from))
- if err != nil {
- ret <- err
- return
- }
-
- migr, err := m.newMigration(next, int(next))
- if err != nil {
- ret <- err
- return
- }
-
- ret <- migr
- go func() {
- if err := migr.Buffer(); err != nil {
- m.logErr(err)
- }
- }()
-
- from = int(next)
- }
-
- } else {
- // it's going down
- // run until we reach target ...
- for from > to && from >= 0 {
- if m.stop() {
- return
- }
-
- prev, err := m.sourceDrv.Prev(suint(from))
- if os.IsNotExist(err) && to == -1 {
- // apply nil migration
- migr, err := m.newMigration(suint(from), -1)
- if err != nil {
- ret <- err
- return
- }
- ret <- migr
- go func() {
- if err := migr.Buffer(); err != nil {
- m.logErr(err)
- }
- }()
-
- return
-
- } else if err != nil {
- ret <- err
- return
- }
-
- migr, err := m.newMigration(suint(from), int(prev))
- if err != nil {
- ret <- err
- return
- }
-
- ret <- migr
- go func() {
- if err := migr.Buffer(); err != nil {
- m.logErr(err)
- }
- }()
-
- from = int(prev)
- }
- }
-}
-
-// readUp reads up migrations from `from` limitted by `limit`.
-// limit can be -1, implying no limit and reading until there are no more migrations.
-// Each migration is then written to the ret channel.
-// If an error occurs during reading, that error is written to the ret channel, too.
-// Once readUp is done reading it will close the ret channel.
-func (m *Migrate) readUp(from int, limit int, ret chan<- interface{}) {
- defer close(ret)
-
- // check if from version exists
- if from >= 0 {
- if err := m.versionExists(suint(from)); err != nil {
- ret <- err
- return
- }
- }
-
- if limit == 0 {
- ret <- ErrNoChange
- return
- }
-
- count := 0
- for count < limit || limit == -1 {
- if m.stop() {
- return
- }
-
- // apply first migration if from is nil version
- if from == -1 {
- firstVersion, err := m.sourceDrv.First()
- if err != nil {
- ret <- err
- return
- }
-
- migr, err := m.newMigration(firstVersion, int(firstVersion))
- if err != nil {
- ret <- err
- return
- }
-
- ret <- migr
- go func() {
- if err := migr.Buffer(); err != nil {
- m.logErr(err)
- }
- }()
- from = int(firstVersion)
- count++
- continue
- }
-
- // apply next migration
- next, err := m.sourceDrv.Next(suint(from))
- if os.IsNotExist(err) {
- // no limit, but no migrations applied?
- if limit == -1 && count == 0 {
- ret <- ErrNoChange
- return
- }
-
- // no limit, reached end
- if limit == -1 {
- return
- }
-
- // reached end, and didn't apply any migrations
- if limit > 0 && count == 0 {
- ret <- os.ErrNotExist
- return
- }
-
- // applied less migrations than limit?
- if count < limit {
- ret <- ErrShortLimit{suint(limit - count)}
- return
- }
- }
- if err != nil {
- ret <- err
- return
- }
-
- migr, err := m.newMigration(next, int(next))
- if err != nil {
- ret <- err
- return
- }
-
- ret <- migr
- go func() {
- if err := migr.Buffer(); err != nil {
- m.logErr(err)
- }
- }()
- from = int(next)
- count++
- }
-}
-
-// readDown reads down migrations from `from` limitted by `limit`.
-// limit can be -1, implying no limit and reading until there are no more migrations.
-// Each migration is then written to the ret channel.
-// If an error occurs during reading, that error is written to the ret channel, too.
-// Once readDown is done reading it will close the ret channel.
-func (m *Migrate) readDown(from int, limit int, ret chan<- interface{}) {
- defer close(ret)
-
- // check if from version exists
- if from >= 0 {
- if err := m.versionExists(suint(from)); err != nil {
- ret <- err
- return
- }
- }
-
- if limit == 0 {
- ret <- ErrNoChange
- return
- }
-
- // no change if already at nil version
- if from == -1 && limit == -1 {
- ret <- ErrNoChange
- return
- }
-
- // can't go over limit if already at nil version
- if from == -1 && limit > 0 {
- ret <- os.ErrNotExist
- return
- }
-
- count := 0
- for count < limit || limit == -1 {
- if m.stop() {
- return
- }
-
- prev, err := m.sourceDrv.Prev(suint(from))
- if os.IsNotExist(err) {
- // no limit or haven't reached limit, apply "first" migration
- if limit == -1 || limit-count > 0 {
- firstVersion, err := m.sourceDrv.First()
- if err != nil {
- ret <- err
- return
- }
-
- migr, err := m.newMigration(firstVersion, -1)
- if err != nil {
- ret <- err
- return
- }
- ret <- migr
- go func() {
- if err := migr.Buffer(); err != nil {
- m.logErr(err)
- }
- }()
- count++
- }
-
- if count < limit {
- ret <- ErrShortLimit{suint(limit - count)}
- }
- return
- }
- if err != nil {
- ret <- err
- return
- }
-
- migr, err := m.newMigration(suint(from), int(prev))
- if err != nil {
- ret <- err
- return
- }
-
- ret <- migr
- go func() {
- if err := migr.Buffer(); err != nil {
- m.logErr(err)
- }
- }()
- from = int(prev)
- count++
- }
-}
-
-// runMigrations reads *Migration and error from a channel. Any other type
-// sent on this channel will result in a panic. Each migration is then
-// proxied to the database driver and run against the database.
-// Before running a newly received migration it will check if it's supposed
-// to stop execution because it might have received a stop signal on the
-// GracefulStop channel.
-func (m *Migrate) runMigrations(ret <-chan interface{}) error {
- for r := range ret {
-
- if m.stop() {
- return nil
- }
-
- switch r := r.(type) {
- case error:
- return r
-
- case *Migration:
- migr := r
-
- // set version with dirty state
- if err := m.databaseDrv.SetVersion(migr.TargetVersion, true); err != nil {
- return err
- }
-
- if migr.Body != nil {
- m.logVerbosePrintf("Read and execute %v\n", migr.LogString())
- if err := m.databaseDrv.Run(migr.BufferedBody); err != nil {
- return err
- }
- }
-
- // set clean state
- if err := m.databaseDrv.SetVersion(migr.TargetVersion, false); err != nil {
- return err
- }
-
- endTime := time.Now()
- readTime := migr.FinishedReading.Sub(migr.StartedBuffering)
- runTime := endTime.Sub(migr.FinishedReading)
-
- // log either verbose or normal
- if m.Log != nil {
- if m.Log.Verbose() {
- m.logPrintf("Finished %v (read %v, ran %v)\n", migr.LogString(), readTime, runTime)
- } else {
- m.logPrintf("%v (%v)\n", migr.LogString(), readTime+runTime)
- }
- }
-
- default:
- return fmt.Errorf("unknown type: %T with value: %+v", r, r)
- }
- }
- return nil
-}
-
-// versionExists checks the source if either the up or down migration for
-// the specified migration version exists.
-func (m *Migrate) versionExists(version uint) (result error) {
- // try up migration first
- up, _, err := m.sourceDrv.ReadUp(version)
- if err == nil {
- defer func() {
- if errClose := up.Close(); errClose != nil {
- result = multierror.Append(result, errClose)
- }
- }()
- }
- if os.IsExist(err) {
- return nil
- } else if !os.IsNotExist(err) {
- return err
- }
-
- // then try down migration
- down, _, err := m.sourceDrv.ReadDown(version)
- if err == nil {
- defer func() {
- if errClose := down.Close(); errClose != nil {
- result = multierror.Append(result, errClose)
- }
- }()
- }
- if os.IsExist(err) {
- return nil
- } else if !os.IsNotExist(err) {
- return err
- }
-
- return os.ErrNotExist
-}
-
-// stop returns true if no more migrations should be run against the database
-// because a stop signal was received on the GracefulStop channel.
-// Calls are cheap and this function is not blocking.
-func (m *Migrate) stop() bool {
- if m.isGracefulStop {
- return true
- }
-
- select {
- case <-m.GracefulStop:
- m.isGracefulStop = true
- return true
-
- default:
- return false
- }
-}
-
-// newMigration is a helper func that returns a *Migration for the
-// specified version and targetVersion.
-func (m *Migrate) newMigration(version uint, targetVersion int) (*Migration, error) {
- var migr *Migration
-
- if targetVersion >= int(version) {
- r, identifier, err := m.sourceDrv.ReadUp(version)
- if os.IsNotExist(err) {
- // create "empty" migration
- migr, err = NewMigration(nil, "", version, targetVersion)
- if err != nil {
- return nil, err
- }
-
- } else if err != nil {
- return nil, err
-
- } else {
- // create migration from up source
- migr, err = NewMigration(r, identifier, version, targetVersion)
- if err != nil {
- return nil, err
- }
- }
-
- } else {
- r, identifier, err := m.sourceDrv.ReadDown(version)
- if os.IsNotExist(err) {
- // create "empty" migration
- migr, err = NewMigration(nil, "", version, targetVersion)
- if err != nil {
- return nil, err
- }
-
- } else if err != nil {
- return nil, err
-
- } else {
- // create migration from down source
- migr, err = NewMigration(r, identifier, version, targetVersion)
- if err != nil {
- return nil, err
- }
- }
- }
-
- if m.PrefetchMigrations > 0 && migr.Body != nil {
- m.logVerbosePrintf("Start buffering %v\n", migr.LogString())
- } else {
- m.logVerbosePrintf("Scheduled %v\n", migr.LogString())
- }
-
- return migr, nil
-}
-
-// lock is a thread safe helper function to lock the database.
-// It should be called as late as possible when running migrations.
-func (m *Migrate) lock() error {
- m.isLockedMu.Lock()
- defer m.isLockedMu.Unlock()
-
- if m.isLocked {
- return ErrLocked
- }
-
- // create done channel, used in the timeout goroutine
- done := make(chan bool, 1)
- defer func() {
- done <- true
- }()
-
- // use errchan to signal error back to this context
- errchan := make(chan error, 2)
-
- // start timeout goroutine
- timeout := time.After(m.LockTimeout)
- go func() {
- for {
- select {
- case <-done:
- return
- case <-timeout:
- errchan <- ErrLockTimeout
- return
- }
- }
- }()
-
- // now try to acquire the lock
- go func() {
- if err := m.databaseDrv.Lock(); err != nil {
- errchan <- err
- } else {
- errchan <- nil
- }
- }()
-
- // wait until we either receive ErrLockTimeout or error from Lock operation
- err := <-errchan
- if err == nil {
- m.isLocked = true
- }
- return err
-}
-
-// unlock is a thread safe helper function to unlock the database.
-// It should be called as early as possible when no more migrations are
-// expected to be executed.
-func (m *Migrate) unlock() error {
- m.isLockedMu.Lock()
- defer m.isLockedMu.Unlock()
-
- if err := m.databaseDrv.Unlock(); err != nil {
- // BUG: Can potentially create a deadlock. Add a timeout.
- return err
- }
-
- m.isLocked = false
- return nil
-}
-
-// unlockErr calls unlock and returns a combined error
-// if a prevErr is not nil.
-func (m *Migrate) unlockErr(prevErr error) error {
- if err := m.unlock(); err != nil {
- return NewMultiError(prevErr, err)
- }
- return prevErr
-}
-
-// logPrintf writes to m.Log if not nil
-func (m *Migrate) logPrintf(format string, v ...interface{}) {
- if m.Log != nil {
- m.Log.Printf(format, v...)
- }
-}
-
-// logVerbosePrintf writes to m.Log if not nil. Use for verbose logging output.
-func (m *Migrate) logVerbosePrintf(format string, v ...interface{}) {
- if m.Log != nil && m.Log.Verbose() {
- m.Log.Printf(format, v...)
- }
-}
-
-// logErr writes error to m.Log if not nil
-func (m *Migrate) logErr(err error) {
- if m.Log != nil {
- m.Log.Printf("error: %v", err)
- }
-}
diff --git a/vendor/github.com/golang-migrate/migrate/v4/migration.go b/vendor/github.com/golang-migrate/migrate/v4/migration.go
deleted file mode 100644
index 704fef49e..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/migration.go
+++ /dev/null
@@ -1,160 +0,0 @@
-package migrate
-
-import (
- "bufio"
- "fmt"
- "io"
- "time"
-)
-
-// DefaultBufferSize sets the in memory buffer size (in Bytes) for every
-// pre-read migration (see DefaultPrefetchMigrations).
-var DefaultBufferSize = uint(100000)
-
-// Migration holds information about a migration.
-// It is initially created from data coming from the source and then
-// used when run against the database.
-type Migration struct {
- // Identifier can be any string to help identifying
- // the migration in the source.
- Identifier string
-
- // Version is the version of this migration.
- Version uint
-
- // TargetVersion is the migration version after this migration
- // has been applied to the database.
- // Can be -1, implying that this is a NilVersion.
- TargetVersion int
-
- // Body holds an io.ReadCloser to the source.
- Body io.ReadCloser
-
- // BufferedBody holds an buffered io.Reader to the underlying Body.
- BufferedBody io.Reader
-
- // BufferSize defaults to DefaultBufferSize
- BufferSize uint
-
- // bufferWriter holds an io.WriteCloser and pipes to BufferBody.
- // It's an *Closer for flow control.
- bufferWriter io.WriteCloser
-
- // Scheduled is the time when the migration was scheduled/ queued.
- Scheduled time.Time
-
- // StartedBuffering is the time when buffering of the migration source started.
- StartedBuffering time.Time
-
- // FinishedBuffering is the time when buffering of the migration source finished.
- FinishedBuffering time.Time
-
- // FinishedReading is the time when the migration source is fully read.
- FinishedReading time.Time
-
- // BytesRead holds the number of Bytes read from the migration source.
- BytesRead int64
-}
-
-// NewMigration returns a new Migration and sets the body, identifier,
-// version and targetVersion. Body can be nil, which turns this migration
-// into a "NilMigration". If no identifier is provided, it will default to "".
-// targetVersion can be -1, implying it is a NilVersion.
-//
-// What is a NilMigration?
-// Usually each migration version coming from source is expected to have an
-// Up and Down migration. This is not a hard requirement though, leading to
-// a situation where only the Up or Down migration is present. So let's say
-// the user wants to migrate up to a version that doesn't have the actual Up
-// migration, in that case we still want to apply the version, but with an empty
-// body. We are calling that a NilMigration, a migration with an empty body.
-//
-// What is a NilVersion?
-// NilVersion is a const(-1). When running down migrations and we are at the
-// last down migration, there is no next down migration, the targetVersion should
-// be nil. Nil in this case is represented by -1 (because type int).
-func NewMigration(body io.ReadCloser, identifier string,
- version uint, targetVersion int) (*Migration, error) {
- tnow := time.Now()
- m := &Migration{
- Identifier: identifier,
- Version: version,
- TargetVersion: targetVersion,
- Scheduled: tnow,
- }
-
- if body == nil {
- if len(identifier) == 0 {
- m.Identifier = ""
- }
-
- m.StartedBuffering = tnow
- m.FinishedBuffering = tnow
- m.FinishedReading = tnow
- return m, nil
- }
-
- br, bw := io.Pipe()
- m.Body = body // want to simulate low latency? newSlowReader(body)
- m.BufferSize = DefaultBufferSize
- m.BufferedBody = br
- m.bufferWriter = bw
- return m, nil
-}
-
-// String implements string.Stringer and is used in tests.
-func (m *Migration) String() string {
- return fmt.Sprintf("%v [%v=>%v]", m.Identifier, m.Version, m.TargetVersion)
-}
-
-// LogString returns a string describing this migration to humans.
-func (m *Migration) LogString() string {
- directionStr := "u"
- if m.TargetVersion < int(m.Version) {
- directionStr = "d"
- }
- return fmt.Sprintf("%v/%v %v", m.Version, directionStr, m.Identifier)
-}
-
-// Buffer buffers Body up to BufferSize.
-// Calling this function blocks. Call with goroutine.
-func (m *Migration) Buffer() error {
- if m.Body == nil {
- return nil
- }
-
- m.StartedBuffering = time.Now()
-
- b := bufio.NewReaderSize(m.Body, int(m.BufferSize))
-
- // start reading from body, peek won't move the read pointer though
- // poor man's solution?
- if _, err := b.Peek(int(m.BufferSize)); err != nil && err != io.EOF {
- return err
- }
-
- m.FinishedBuffering = time.Now()
-
- // write to bufferWriter, this will block until
- // something starts reading from m.Buffer
- n, err := b.WriteTo(m.bufferWriter)
- if err != nil {
- return err
- }
-
- m.FinishedReading = time.Now()
- m.BytesRead = n
-
- // close bufferWriter so Buffer knows that there is no
- // more data coming
- if err := m.bufferWriter.Close(); err != nil {
- return err
- }
-
- // it's safe to close the Body too
- if err := m.Body.Close(); err != nil {
- return err
- }
-
- return nil
-}
diff --git a/vendor/github.com/golang-migrate/migrate/v4/source/driver.go b/vendor/github.com/golang-migrate/migrate/v4/source/driver.go
deleted file mode 100644
index 05f97adab..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/source/driver.go
+++ /dev/null
@@ -1,118 +0,0 @@
-// Package source provides the Source interface.
-// All source drivers must implement this interface, register themselves,
-// optionally provide a `WithInstance` function and pass the tests
-// in package source/testing.
-package source
-
-import (
- "fmt"
- "io"
- nurl "net/url"
- "sync"
-)
-
-var driversMu sync.RWMutex
-var drivers = make(map[string]Driver)
-
-// Driver is the interface every source driver must implement.
-//
-// How to implement a source driver?
-// 1. Implement this interface.
-// 2. Optionally, add a function named `WithInstance`.
-// This function should accept an existing source instance and a Config{} struct
-// and return a driver instance.
-// 3. Add a test that calls source/testing.go:Test()
-// 4. Add own tests for Open(), WithInstance() (when provided) and Close().
-// All other functions are tested by tests in source/testing.
-// Saves you some time and makes sure all source drivers behave the same way.
-// 5. Call Register in init().
-//
-// Guidelines:
-// * All configuration input must come from the URL string in func Open()
-// or the Config{} struct in WithInstance. Don't os.Getenv().
-// * Drivers are supposed to be read only.
-// * Ideally don't load any contents (into memory) in Open or WithInstance.
-type Driver interface {
- // Open returns a a new driver instance configured with parameters
- // coming from the URL string. Migrate will call this function
- // only once per instance.
- Open(url string) (Driver, error)
-
- // Close closes the underlying source instance managed by the driver.
- // Migrate will call this function only once per instance.
- Close() error
-
- // First returns the very first migration version available to the driver.
- // Migrate will call this function multiple times.
- // If there is no version available, it must return os.ErrNotExist.
- First() (version uint, err error)
-
- // Prev returns the previous version for a given version available to the driver.
- // Migrate will call this function multiple times.
- // If there is no previous version available, it must return os.ErrNotExist.
- Prev(version uint) (prevVersion uint, err error)
-
- // Next returns the next version for a given version available to the driver.
- // Migrate will call this function multiple times.
- // If there is no next version available, it must return os.ErrNotExist.
- Next(version uint) (nextVersion uint, err error)
-
- // ReadUp returns the UP migration body and an identifier that helps
- // finding this migration in the source for a given version.
- // If there is no up migration available for this version,
- // it must return os.ErrNotExist.
- // Do not start reading, just return the ReadCloser!
- ReadUp(version uint) (r io.ReadCloser, identifier string, err error)
-
- // ReadDown returns the DOWN migration body and an identifier that helps
- // finding this migration in the source for a given version.
- // If there is no down migration available for this version,
- // it must return os.ErrNotExist.
- // Do not start reading, just return the ReadCloser!
- ReadDown(version uint) (r io.ReadCloser, identifier string, err error)
-}
-
-// Open returns a new driver instance.
-func Open(url string) (Driver, error) {
- u, err := nurl.Parse(url)
- if err != nil {
- return nil, err
- }
-
- if u.Scheme == "" {
- return nil, fmt.Errorf("source driver: invalid URL scheme")
- }
-
- driversMu.RLock()
- d, ok := drivers[u.Scheme]
- driversMu.RUnlock()
- if !ok {
- return nil, fmt.Errorf("source driver: unknown driver %v (forgotten import?)", u.Scheme)
- }
-
- return d.Open(url)
-}
-
-// Register globally registers a driver.
-func Register(name string, driver Driver) {
- driversMu.Lock()
- defer driversMu.Unlock()
- if driver == nil {
- panic("Register driver is nil")
- }
- if _, dup := drivers[name]; dup {
- panic("Register called twice for driver " + name)
- }
- drivers[name] = driver
-}
-
-// List lists the registered drivers
-func List() []string {
- driversMu.RLock()
- defer driversMu.RUnlock()
- names := make([]string, 0, len(drivers))
- for n := range drivers {
- names = append(names, n)
- }
- return names
-}
diff --git a/vendor/github.com/golang-migrate/migrate/v4/source/file/README.md b/vendor/github.com/golang-migrate/migrate/v4/source/file/README.md
deleted file mode 100644
index 7912eff66..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/source/file/README.md
+++ /dev/null
@@ -1,4 +0,0 @@
-# file
-
-`file:///absolute/path`
-`file://relative/path`
diff --git a/vendor/github.com/golang-migrate/migrate/v4/source/file/file.go b/vendor/github.com/golang-migrate/migrate/v4/source/file/file.go
deleted file mode 100644
index a0c641931..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/source/file/file.go
+++ /dev/null
@@ -1,127 +0,0 @@
-package file
-
-import (
- "fmt"
- "io"
- "io/ioutil"
- nurl "net/url"
- "os"
- "path"
- "path/filepath"
-
- "github.com/golang-migrate/migrate/v4/source"
-)
-
-func init() {
- source.Register("file", &File{})
-}
-
-type File struct {
- url string
- path string
- migrations *source.Migrations
-}
-
-func (f *File) Open(url string) (source.Driver, error) {
- u, err := nurl.Parse(url)
- if err != nil {
- return nil, err
- }
-
- // concat host and path to restore full path
- // host might be `.`
- p := u.Opaque
- if len(p) == 0 {
- p = u.Host + u.Path
- }
-
- if len(p) == 0 {
- // default to current directory if no path
- wd, err := os.Getwd()
- if err != nil {
- return nil, err
- }
- p = wd
-
- } else if p[0:1] == "." || p[0:1] != "/" {
- // make path absolute if relative
- abs, err := filepath.Abs(p)
- if err != nil {
- return nil, err
- }
- p = abs
- }
-
- // scan directory
- files, err := ioutil.ReadDir(p)
- if err != nil {
- return nil, err
- }
-
- nf := &File{
- url: url,
- path: p,
- migrations: source.NewMigrations(),
- }
-
- for _, fi := range files {
- if !fi.IsDir() {
- m, err := source.DefaultParse(fi.Name())
- if err != nil {
- continue // ignore files that we can't parse
- }
- if !nf.migrations.Append(m) {
- return nil, fmt.Errorf("unable to parse file %v", fi.Name())
- }
- }
- }
- return nf, nil
-}
-
-func (f *File) Close() error {
- // nothing do to here
- return nil
-}
-
-func (f *File) First() (version uint, err error) {
- if v, ok := f.migrations.First(); ok {
- return v, nil
- }
- return 0, &os.PathError{Op: "first", Path: f.path, Err: os.ErrNotExist}
-}
-
-func (f *File) Prev(version uint) (prevVersion uint, err error) {
- if v, ok := f.migrations.Prev(version); ok {
- return v, nil
- }
- return 0, &os.PathError{Op: fmt.Sprintf("prev for version %v", version), Path: f.path, Err: os.ErrNotExist}
-}
-
-func (f *File) Next(version uint) (nextVersion uint, err error) {
- if v, ok := f.migrations.Next(version); ok {
- return v, nil
- }
- return 0, &os.PathError{Op: fmt.Sprintf("next for version %v", version), Path: f.path, Err: os.ErrNotExist}
-}
-
-func (f *File) ReadUp(version uint) (r io.ReadCloser, identifier string, err error) {
- if m, ok := f.migrations.Up(version); ok {
- r, err := os.Open(path.Join(f.path, m.Raw))
- if err != nil {
- return nil, "", err
- }
- return r, m.Identifier, nil
- }
- return nil, "", &os.PathError{Op: fmt.Sprintf("read version %v", version), Path: f.path, Err: os.ErrNotExist}
-}
-
-func (f *File) ReadDown(version uint) (r io.ReadCloser, identifier string, err error) {
- if m, ok := f.migrations.Down(version); ok {
- r, err := os.Open(path.Join(f.path, m.Raw))
- if err != nil {
- return nil, "", err
- }
- return r, m.Identifier, nil
- }
- return nil, "", &os.PathError{Op: fmt.Sprintf("read version %v", version), Path: f.path, Err: os.ErrNotExist}
-}
diff --git a/vendor/github.com/golang-migrate/migrate/v4/source/migration.go b/vendor/github.com/golang-migrate/migrate/v4/source/migration.go
deleted file mode 100644
index b8bb79020..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/source/migration.go
+++ /dev/null
@@ -1,143 +0,0 @@
-package source
-
-import (
- "sort"
-)
-
-// Direction is either up or down.
-type Direction string
-
-const (
- Down Direction = "down"
- Up Direction = "up"
-)
-
-// Migration is a helper struct for source drivers that need to
-// build the full directory tree in memory.
-// Migration is fully independent from migrate.Migration.
-type Migration struct {
- // Version is the version of this migration.
- Version uint
-
- // Identifier can be any string that helps identifying
- // this migration in the source.
- Identifier string
-
- // Direction is either Up or Down.
- Direction Direction
-
- // Raw holds the raw location path to this migration in source.
- // ReadUp and ReadDown will use this.
- Raw string
-}
-
-// Migrations wraps Migration and has an internal index
-// to keep track of Migration order.
-type Migrations struct {
- index uintSlice
- migrations map[uint]map[Direction]*Migration
-}
-
-func NewMigrations() *Migrations {
- return &Migrations{
- index: make(uintSlice, 0),
- migrations: make(map[uint]map[Direction]*Migration),
- }
-}
-
-func (i *Migrations) Append(m *Migration) (ok bool) {
- if m == nil {
- return false
- }
-
- if i.migrations[m.Version] == nil {
- i.migrations[m.Version] = make(map[Direction]*Migration)
- }
-
- // reject duplicate versions
- if _, dup := i.migrations[m.Version][m.Direction]; dup {
- return false
- }
-
- i.migrations[m.Version][m.Direction] = m
- i.buildIndex()
-
- return true
-}
-
-func (i *Migrations) buildIndex() {
- i.index = make(uintSlice, 0)
- for version := range i.migrations {
- i.index = append(i.index, version)
- }
- sort.Sort(i.index)
-}
-
-func (i *Migrations) First() (version uint, ok bool) {
- if len(i.index) == 0 {
- return 0, false
- }
- return i.index[0], true
-}
-
-func (i *Migrations) Prev(version uint) (prevVersion uint, ok bool) {
- pos := i.findPos(version)
- if pos >= 1 && len(i.index) > pos-1 {
- return i.index[pos-1], true
- }
- return 0, false
-}
-
-func (i *Migrations) Next(version uint) (nextVersion uint, ok bool) {
- pos := i.findPos(version)
- if pos >= 0 && len(i.index) > pos+1 {
- return i.index[pos+1], true
- }
- return 0, false
-}
-
-func (i *Migrations) Up(version uint) (m *Migration, ok bool) {
- if _, ok := i.migrations[version]; ok {
- if mx, ok := i.migrations[version][Up]; ok {
- return mx, true
- }
- }
- return nil, false
-}
-
-func (i *Migrations) Down(version uint) (m *Migration, ok bool) {
- if _, ok := i.migrations[version]; ok {
- if mx, ok := i.migrations[version][Down]; ok {
- return mx, true
- }
- }
- return nil, false
-}
-
-func (i *Migrations) findPos(version uint) int {
- if len(i.index) > 0 {
- ix := i.index.Search(version)
- if ix < len(i.index) && i.index[ix] == version {
- return ix
- }
- }
- return -1
-}
-
-type uintSlice []uint
-
-func (s uintSlice) Len() int {
- return len(s)
-}
-
-func (s uintSlice) Swap(i, j int) {
- s[i], s[j] = s[j], s[i]
-}
-
-func (s uintSlice) Less(i, j int) bool {
- return s[i] < s[j]
-}
-
-func (s uintSlice) Search(x uint) int {
- return sort.Search(len(s), func(i int) bool { return s[i] >= x })
-}
diff --git a/vendor/github.com/golang-migrate/migrate/v4/source/parse.go b/vendor/github.com/golang-migrate/migrate/v4/source/parse.go
deleted file mode 100644
index 2f888fe75..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/source/parse.go
+++ /dev/null
@@ -1,39 +0,0 @@
-package source
-
-import (
- "fmt"
- "regexp"
- "strconv"
-)
-
-var (
- ErrParse = fmt.Errorf("no match")
-)
-
-var (
- DefaultParse = Parse
- DefaultRegex = Regex
-)
-
-// Regex matches the following pattern:
-// 123_name.up.ext
-// 123_name.down.ext
-var Regex = regexp.MustCompile(`^([0-9]+)_(.*)\.(` + string(Down) + `|` + string(Up) + `)\.(.*)$`)
-
-// Parse returns Migration for matching Regex pattern.
-func Parse(raw string) (*Migration, error) {
- m := Regex.FindStringSubmatch(raw)
- if len(m) == 5 {
- versionUint64, err := strconv.ParseUint(m[1], 10, 64)
- if err != nil {
- return nil, err
- }
- return &Migration{
- Version: uint(versionUint64),
- Identifier: m[2],
- Direction: Direction(m[3]),
- Raw: raw,
- }, nil
- }
- return nil, ErrParse
-}
diff --git a/vendor/github.com/golang-migrate/migrate/v4/util.go b/vendor/github.com/golang-migrate/migrate/v4/util.go
deleted file mode 100644
index 4aeb0f221..000000000
--- a/vendor/github.com/golang-migrate/migrate/v4/util.go
+++ /dev/null
@@ -1,94 +0,0 @@
-package migrate
-
-import (
- "errors"
- "fmt"
- nurl "net/url"
- "strings"
-)
-
-// MultiError holds multiple errors.
-type MultiError struct {
- Errs []error
-}
-
-// NewMultiError returns an error type holding multiple errors.
-func NewMultiError(errs ...error) MultiError {
- compactErrs := make([]error, 0)
- for _, e := range errs {
- if e != nil {
- compactErrs = append(compactErrs, e)
- }
- }
- return MultiError{compactErrs}
-}
-
-// Error implements error. Multiple errors are concatenated with 'and's.
-func (m MultiError) Error() string {
- var strs = make([]string, 0)
- for _, e := range m.Errs {
- if len(e.Error()) > 0 {
- strs = append(strs, e.Error())
- }
- }
- return strings.Join(strs, " and ")
-}
-
-// suint safely converts int to uint
-// see https://goo.gl/wEcqof
-// see https://goo.gl/pai7Dr
-func suint(n int) uint {
- if n < 0 {
- panic(fmt.Sprintf("suint(%v) expects input >= 0", n))
- }
- return uint(n)
-}
-
-var errNoScheme = errors.New("no scheme")
-var errEmptyURL = errors.New("URL cannot be empty")
-
-func sourceSchemeFromURL(url string) (string, error) {
- u, err := schemeFromURL(url)
- if err != nil {
- return "", fmt.Errorf("source: %v", err)
- }
- return u, nil
-}
-
-func databaseSchemeFromURL(url string) (string, error) {
- u, err := schemeFromURL(url)
- if err != nil {
- return "", fmt.Errorf("database: %v", err)
- }
- return u, nil
-}
-
-// schemeFromURL returns the scheme from a URL string
-func schemeFromURL(url string) (string, error) {
- if url == "" {
- return "", errEmptyURL
- }
-
- u, err := nurl.Parse(url)
- if err != nil {
- return "", err
- }
- if len(u.Scheme) == 0 {
- return "", errNoScheme
- }
-
- return u.Scheme, nil
-}
-
-// FilterCustomQuery filters all query values starting with `x-`
-func FilterCustomQuery(u *nurl.URL) *nurl.URL {
- ux := *u
- vx := make(nurl.Values)
- for k, v := range ux.Query() {
- if len(k) <= 1 || (len(k) > 1 && k[0:2] != "x-") {
- vx[k] = v
- }
- }
- ux.RawQuery = vx.Encode()
- return &ux
-}
diff --git a/vendor/github.com/gorilla/websocket/.gitignore b/vendor/github.com/gorilla/websocket/.gitignore
deleted file mode 100644
index cd3fcd1ef..000000000
--- a/vendor/github.com/gorilla/websocket/.gitignore
+++ /dev/null
@@ -1,25 +0,0 @@
-# Compiled Object files, Static and Dynamic libs (Shared Objects)
-*.o
-*.a
-*.so
-
-# Folders
-_obj
-_test
-
-# Architecture specific extensions/prefixes
-*.[568vq]
-[568vq].out
-
-*.cgo1.go
-*.cgo2.c
-_cgo_defun.c
-_cgo_gotypes.go
-_cgo_export.*
-
-_testmain.go
-
-*.exe
-
-.idea/
-*.iml
diff --git a/vendor/github.com/gorilla/websocket/.travis.yml b/vendor/github.com/gorilla/websocket/.travis.yml
deleted file mode 100644
index a49db51c4..000000000
--- a/vendor/github.com/gorilla/websocket/.travis.yml
+++ /dev/null
@@ -1,19 +0,0 @@
-language: go
-sudo: false
-
-matrix:
- include:
- - go: 1.7.x
- - go: 1.8.x
- - go: 1.9.x
- - go: 1.10.x
- - go: 1.11.x
- - go: tip
- allow_failures:
- - go: tip
-
-script:
- - go get -t -v ./...
- - diff -u <(echo -n) <(gofmt -d .)
- - go vet $(go list ./... | grep -v /vendor/)
- - go test -v -race ./...
diff --git a/vendor/github.com/gorilla/websocket/AUTHORS b/vendor/github.com/gorilla/websocket/AUTHORS
deleted file mode 100644
index 1931f4006..000000000
--- a/vendor/github.com/gorilla/websocket/AUTHORS
+++ /dev/null
@@ -1,9 +0,0 @@
-# This is the official list of Gorilla WebSocket authors for copyright
-# purposes.
-#
-# Please keep the list sorted.
-
-Gary Burd
-Google LLC (https://opensource.google.com/)
-Joachim Bauch
-
diff --git a/vendor/github.com/gorilla/websocket/LICENSE b/vendor/github.com/gorilla/websocket/LICENSE
deleted file mode 100644
index 9171c9722..000000000
--- a/vendor/github.com/gorilla/websocket/LICENSE
+++ /dev/null
@@ -1,22 +0,0 @@
-Copyright (c) 2013 The Gorilla WebSocket Authors. All rights reserved.
-
-Redistribution and use in source and binary forms, with or without
-modification, are permitted provided that the following conditions are met:
-
- Redistributions of source code must retain the above copyright notice, this
- list of conditions and the following disclaimer.
-
- Redistributions in binary form must reproduce the above copyright notice,
- this list of conditions and the following disclaimer in the documentation
- and/or other materials provided with the distribution.
-
-THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
-ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
-WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
-DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
-FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
-DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
-SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
-CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
-OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
-OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
diff --git a/vendor/github.com/gorilla/websocket/README.md b/vendor/github.com/gorilla/websocket/README.md
deleted file mode 100644
index 20e391f86..000000000
--- a/vendor/github.com/gorilla/websocket/README.md
+++ /dev/null
@@ -1,64 +0,0 @@
-# Gorilla WebSocket
-
-Gorilla WebSocket is a [Go](http://golang.org/) implementation of the
-[WebSocket](http://www.rfc-editor.org/rfc/rfc6455.txt) protocol.
-
-[](https://travis-ci.org/gorilla/websocket)
-[](https://godoc.org/github.com/gorilla/websocket)
-
-### Documentation
-
-* [API Reference](http://godoc.org/github.com/gorilla/websocket)
-* [Chat example](https://github.com/gorilla/websocket/tree/master/examples/chat)
-* [Command example](https://github.com/gorilla/websocket/tree/master/examples/command)
-* [Client and server example](https://github.com/gorilla/websocket/tree/master/examples/echo)
-* [File watch example](https://github.com/gorilla/websocket/tree/master/examples/filewatch)
-
-### Status
-
-The Gorilla WebSocket package provides a complete and tested implementation of
-the [WebSocket](http://www.rfc-editor.org/rfc/rfc6455.txt) protocol. The
-package API is stable.
-
-### Installation
-
- go get github.com/gorilla/websocket
-
-### Protocol Compliance
-
-The Gorilla WebSocket package passes the server tests in the [Autobahn Test
-Suite](http://autobahn.ws/testsuite) using the application in the [examples/autobahn
-subdirectory](https://github.com/gorilla/websocket/tree/master/examples/autobahn).
-
-### Gorilla WebSocket compared with other packages
-
-
-
-Notes:
-
-1. Large messages are fragmented in [Chrome's new WebSocket implementation](http://www.ietf.org/mail-archive/web/hybi/current/msg10503.html).
-2. The application can get the type of a received data message by implementing
- a [Codec marshal](http://godoc.org/golang.org/x/net/websocket#Codec.Marshal)
- function.
-3. The go.net io.Reader and io.Writer operate across WebSocket frame boundaries.
- Read returns when the input buffer is full or a frame boundary is
- encountered. Each call to Write sends a single frame message. The Gorilla
- io.Reader and io.WriteCloser operate on a single WebSocket message.
-
diff --git a/vendor/github.com/gorilla/websocket/client.go b/vendor/github.com/gorilla/websocket/client.go
deleted file mode 100644
index 2e32fd506..000000000
--- a/vendor/github.com/gorilla/websocket/client.go
+++ /dev/null
@@ -1,395 +0,0 @@
-// Copyright 2013 The Gorilla WebSocket Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package websocket
-
-import (
- "bytes"
- "context"
- "crypto/tls"
- "errors"
- "io"
- "io/ioutil"
- "net"
- "net/http"
- "net/http/httptrace"
- "net/url"
- "strings"
- "time"
-)
-
-// ErrBadHandshake is returned when the server response to opening handshake is
-// invalid.
-var ErrBadHandshake = errors.New("websocket: bad handshake")
-
-var errInvalidCompression = errors.New("websocket: invalid compression negotiation")
-
-// NewClient creates a new client connection using the given net connection.
-// The URL u specifies the host and request URI. Use requestHeader to specify
-// the origin (Origin), subprotocols (Sec-WebSocket-Protocol) and cookies
-// (Cookie). Use the response.Header to get the selected subprotocol
-// (Sec-WebSocket-Protocol) and cookies (Set-Cookie).
-//
-// If the WebSocket handshake fails, ErrBadHandshake is returned along with a
-// non-nil *http.Response so that callers can handle redirects, authentication,
-// etc.
-//
-// Deprecated: Use Dialer instead.
-func NewClient(netConn net.Conn, u *url.URL, requestHeader http.Header, readBufSize, writeBufSize int) (c *Conn, response *http.Response, err error) {
- d := Dialer{
- ReadBufferSize: readBufSize,
- WriteBufferSize: writeBufSize,
- NetDial: func(net, addr string) (net.Conn, error) {
- return netConn, nil
- },
- }
- return d.Dial(u.String(), requestHeader)
-}
-
-// A Dialer contains options for connecting to WebSocket server.
-type Dialer struct {
- // NetDial specifies the dial function for creating TCP connections. If
- // NetDial is nil, net.Dial is used.
- NetDial func(network, addr string) (net.Conn, error)
-
- // NetDialContext specifies the dial function for creating TCP connections. If
- // NetDialContext is nil, net.DialContext is used.
- NetDialContext func(ctx context.Context, network, addr string) (net.Conn, error)
-
- // Proxy specifies a function to return a proxy for a given
- // Request. If the function returns a non-nil error, the
- // request is aborted with the provided error.
- // If Proxy is nil or returns a nil *URL, no proxy is used.
- Proxy func(*http.Request) (*url.URL, error)
-
- // TLSClientConfig specifies the TLS configuration to use with tls.Client.
- // If nil, the default configuration is used.
- TLSClientConfig *tls.Config
-
- // HandshakeTimeout specifies the duration for the handshake to complete.
- HandshakeTimeout time.Duration
-
- // ReadBufferSize and WriteBufferSize specify I/O buffer sizes. If a buffer
- // size is zero, then a useful default size is used. The I/O buffer sizes
- // do not limit the size of the messages that can be sent or received.
- ReadBufferSize, WriteBufferSize int
-
- // WriteBufferPool is a pool of buffers for write operations. If the value
- // is not set, then write buffers are allocated to the connection for the
- // lifetime of the connection.
- //
- // A pool is most useful when the application has a modest volume of writes
- // across a large number of connections.
- //
- // Applications should use a single pool for each unique value of
- // WriteBufferSize.
- WriteBufferPool BufferPool
-
- // Subprotocols specifies the client's requested subprotocols.
- Subprotocols []string
-
- // EnableCompression specifies if the client should attempt to negotiate
- // per message compression (RFC 7692). Setting this value to true does not
- // guarantee that compression will be supported. Currently only "no context
- // takeover" modes are supported.
- EnableCompression bool
-
- // Jar specifies the cookie jar.
- // If Jar is nil, cookies are not sent in requests and ignored
- // in responses.
- Jar http.CookieJar
-}
-
-// Dial creates a new client connection by calling DialContext with a background context.
-func (d *Dialer) Dial(urlStr string, requestHeader http.Header) (*Conn, *http.Response, error) {
- return d.DialContext(context.Background(), urlStr, requestHeader)
-}
-
-var errMalformedURL = errors.New("malformed ws or wss URL")
-
-func hostPortNoPort(u *url.URL) (hostPort, hostNoPort string) {
- hostPort = u.Host
- hostNoPort = u.Host
- if i := strings.LastIndex(u.Host, ":"); i > strings.LastIndex(u.Host, "]") {
- hostNoPort = hostNoPort[:i]
- } else {
- switch u.Scheme {
- case "wss":
- hostPort += ":443"
- case "https":
- hostPort += ":443"
- default:
- hostPort += ":80"
- }
- }
- return hostPort, hostNoPort
-}
-
-// DefaultDialer is a dialer with all fields set to the default values.
-var DefaultDialer = &Dialer{
- Proxy: http.ProxyFromEnvironment,
- HandshakeTimeout: 45 * time.Second,
-}
-
-// nilDialer is dialer to use when receiver is nil.
-var nilDialer = *DefaultDialer
-
-// DialContext creates a new client connection. Use requestHeader to specify the
-// origin (Origin), subprotocols (Sec-WebSocket-Protocol) and cookies (Cookie).
-// Use the response.Header to get the selected subprotocol
-// (Sec-WebSocket-Protocol) and cookies (Set-Cookie).
-//
-// The context will be used in the request and in the Dialer
-//
-// If the WebSocket handshake fails, ErrBadHandshake is returned along with a
-// non-nil *http.Response so that callers can handle redirects, authentication,
-// etcetera. The response body may not contain the entire response and does not
-// need to be closed by the application.
-func (d *Dialer) DialContext(ctx context.Context, urlStr string, requestHeader http.Header) (*Conn, *http.Response, error) {
- if d == nil {
- d = &nilDialer
- }
-
- challengeKey, err := generateChallengeKey()
- if err != nil {
- return nil, nil, err
- }
-
- u, err := url.Parse(urlStr)
- if err != nil {
- return nil, nil, err
- }
-
- switch u.Scheme {
- case "ws":
- u.Scheme = "http"
- case "wss":
- u.Scheme = "https"
- default:
- return nil, nil, errMalformedURL
- }
-
- if u.User != nil {
- // User name and password are not allowed in websocket URIs.
- return nil, nil, errMalformedURL
- }
-
- req := &http.Request{
- Method: "GET",
- URL: u,
- Proto: "HTTP/1.1",
- ProtoMajor: 1,
- ProtoMinor: 1,
- Header: make(http.Header),
- Host: u.Host,
- }
- req = req.WithContext(ctx)
-
- // Set the cookies present in the cookie jar of the dialer
- if d.Jar != nil {
- for _, cookie := range d.Jar.Cookies(u) {
- req.AddCookie(cookie)
- }
- }
-
- // Set the request headers using the capitalization for names and values in
- // RFC examples. Although the capitalization shouldn't matter, there are
- // servers that depend on it. The Header.Set method is not used because the
- // method canonicalizes the header names.
- req.Header["Upgrade"] = []string{"websocket"}
- req.Header["Connection"] = []string{"Upgrade"}
- req.Header["Sec-WebSocket-Key"] = []string{challengeKey}
- req.Header["Sec-WebSocket-Version"] = []string{"13"}
- if len(d.Subprotocols) > 0 {
- req.Header["Sec-WebSocket-Protocol"] = []string{strings.Join(d.Subprotocols, ", ")}
- }
- for k, vs := range requestHeader {
- switch {
- case k == "Host":
- if len(vs) > 0 {
- req.Host = vs[0]
- }
- case k == "Upgrade" ||
- k == "Connection" ||
- k == "Sec-Websocket-Key" ||
- k == "Sec-Websocket-Version" ||
- k == "Sec-Websocket-Extensions" ||
- (k == "Sec-Websocket-Protocol" && len(d.Subprotocols) > 0):
- return nil, nil, errors.New("websocket: duplicate header not allowed: " + k)
- case k == "Sec-Websocket-Protocol":
- req.Header["Sec-WebSocket-Protocol"] = vs
- default:
- req.Header[k] = vs
- }
- }
-
- if d.EnableCompression {
- req.Header["Sec-WebSocket-Extensions"] = []string{"permessage-deflate; server_no_context_takeover; client_no_context_takeover"}
- }
-
- if d.HandshakeTimeout != 0 {
- var cancel func()
- ctx, cancel = context.WithTimeout(ctx, d.HandshakeTimeout)
- defer cancel()
- }
-
- // Get network dial function.
- var netDial func(network, add string) (net.Conn, error)
-
- if d.NetDialContext != nil {
- netDial = func(network, addr string) (net.Conn, error) {
- return d.NetDialContext(ctx, network, addr)
- }
- } else if d.NetDial != nil {
- netDial = d.NetDial
- } else {
- netDialer := &net.Dialer{}
- netDial = func(network, addr string) (net.Conn, error) {
- return netDialer.DialContext(ctx, network, addr)
- }
- }
-
- // If needed, wrap the dial function to set the connection deadline.
- if deadline, ok := ctx.Deadline(); ok {
- forwardDial := netDial
- netDial = func(network, addr string) (net.Conn, error) {
- c, err := forwardDial(network, addr)
- if err != nil {
- return nil, err
- }
- err = c.SetDeadline(deadline)
- if err != nil {
- c.Close()
- return nil, err
- }
- return c, nil
- }
- }
-
- // If needed, wrap the dial function to connect through a proxy.
- if d.Proxy != nil {
- proxyURL, err := d.Proxy(req)
- if err != nil {
- return nil, nil, err
- }
- if proxyURL != nil {
- dialer, err := proxy_FromURL(proxyURL, netDialerFunc(netDial))
- if err != nil {
- return nil, nil, err
- }
- netDial = dialer.Dial
- }
- }
-
- hostPort, hostNoPort := hostPortNoPort(u)
- trace := httptrace.ContextClientTrace(ctx)
- if trace != nil && trace.GetConn != nil {
- trace.GetConn(hostPort)
- }
-
- netConn, err := netDial("tcp", hostPort)
- if trace != nil && trace.GotConn != nil {
- trace.GotConn(httptrace.GotConnInfo{
- Conn: netConn,
- })
- }
- if err != nil {
- return nil, nil, err
- }
-
- defer func() {
- if netConn != nil {
- netConn.Close()
- }
- }()
-
- if u.Scheme == "https" {
- cfg := cloneTLSConfig(d.TLSClientConfig)
- if cfg.ServerName == "" {
- cfg.ServerName = hostNoPort
- }
- tlsConn := tls.Client(netConn, cfg)
- netConn = tlsConn
-
- var err error
- if trace != nil {
- err = doHandshakeWithTrace(trace, tlsConn, cfg)
- } else {
- err = doHandshake(tlsConn, cfg)
- }
-
- if err != nil {
- return nil, nil, err
- }
- }
-
- conn := newConn(netConn, false, d.ReadBufferSize, d.WriteBufferSize, d.WriteBufferPool, nil, nil)
-
- if err := req.Write(netConn); err != nil {
- return nil, nil, err
- }
-
- if trace != nil && trace.GotFirstResponseByte != nil {
- if peek, err := conn.br.Peek(1); err == nil && len(peek) == 1 {
- trace.GotFirstResponseByte()
- }
- }
-
- resp, err := http.ReadResponse(conn.br, req)
- if err != nil {
- return nil, nil, err
- }
-
- if d.Jar != nil {
- if rc := resp.Cookies(); len(rc) > 0 {
- d.Jar.SetCookies(u, rc)
- }
- }
-
- if resp.StatusCode != 101 ||
- !strings.EqualFold(resp.Header.Get("Upgrade"), "websocket") ||
- !strings.EqualFold(resp.Header.Get("Connection"), "upgrade") ||
- resp.Header.Get("Sec-Websocket-Accept") != computeAcceptKey(challengeKey) {
- // Before closing the network connection on return from this
- // function, slurp up some of the response to aid application
- // debugging.
- buf := make([]byte, 1024)
- n, _ := io.ReadFull(resp.Body, buf)
- resp.Body = ioutil.NopCloser(bytes.NewReader(buf[:n]))
- return nil, resp, ErrBadHandshake
- }
-
- for _, ext := range parseExtensions(resp.Header) {
- if ext[""] != "permessage-deflate" {
- continue
- }
- _, snct := ext["server_no_context_takeover"]
- _, cnct := ext["client_no_context_takeover"]
- if !snct || !cnct {
- return nil, resp, errInvalidCompression
- }
- conn.newCompressionWriter = compressNoContextTakeover
- conn.newDecompressionReader = decompressNoContextTakeover
- break
- }
-
- resp.Body = ioutil.NopCloser(bytes.NewReader([]byte{}))
- conn.subprotocol = resp.Header.Get("Sec-Websocket-Protocol")
-
- netConn.SetDeadline(time.Time{})
- netConn = nil // to avoid close in defer.
- return conn, resp, nil
-}
-
-func doHandshake(tlsConn *tls.Conn, cfg *tls.Config) error {
- if err := tlsConn.Handshake(); err != nil {
- return err
- }
- if !cfg.InsecureSkipVerify {
- if err := tlsConn.VerifyHostname(cfg.ServerName); err != nil {
- return err
- }
- }
- return nil
-}
diff --git a/vendor/github.com/gorilla/websocket/client_clone.go b/vendor/github.com/gorilla/websocket/client_clone.go
deleted file mode 100644
index 4f0d94372..000000000
--- a/vendor/github.com/gorilla/websocket/client_clone.go
+++ /dev/null
@@ -1,16 +0,0 @@
-// Copyright 2013 The Gorilla WebSocket Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-// +build go1.8
-
-package websocket
-
-import "crypto/tls"
-
-func cloneTLSConfig(cfg *tls.Config) *tls.Config {
- if cfg == nil {
- return &tls.Config{}
- }
- return cfg.Clone()
-}
diff --git a/vendor/github.com/gorilla/websocket/client_clone_legacy.go b/vendor/github.com/gorilla/websocket/client_clone_legacy.go
deleted file mode 100644
index babb007fb..000000000
--- a/vendor/github.com/gorilla/websocket/client_clone_legacy.go
+++ /dev/null
@@ -1,38 +0,0 @@
-// Copyright 2013 The Gorilla WebSocket Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-// +build !go1.8
-
-package websocket
-
-import "crypto/tls"
-
-// cloneTLSConfig clones all public fields except the fields
-// SessionTicketsDisabled and SessionTicketKey. This avoids copying the
-// sync.Mutex in the sync.Once and makes it safe to call cloneTLSConfig on a
-// config in active use.
-func cloneTLSConfig(cfg *tls.Config) *tls.Config {
- if cfg == nil {
- return &tls.Config{}
- }
- return &tls.Config{
- Rand: cfg.Rand,
- Time: cfg.Time,
- Certificates: cfg.Certificates,
- NameToCertificate: cfg.NameToCertificate,
- GetCertificate: cfg.GetCertificate,
- RootCAs: cfg.RootCAs,
- NextProtos: cfg.NextProtos,
- ServerName: cfg.ServerName,
- ClientAuth: cfg.ClientAuth,
- ClientCAs: cfg.ClientCAs,
- InsecureSkipVerify: cfg.InsecureSkipVerify,
- CipherSuites: cfg.CipherSuites,
- PreferServerCipherSuites: cfg.PreferServerCipherSuites,
- ClientSessionCache: cfg.ClientSessionCache,
- MinVersion: cfg.MinVersion,
- MaxVersion: cfg.MaxVersion,
- CurvePreferences: cfg.CurvePreferences,
- }
-}
diff --git a/vendor/github.com/gorilla/websocket/compression.go b/vendor/github.com/gorilla/websocket/compression.go
deleted file mode 100644
index 813ffb1e8..000000000
--- a/vendor/github.com/gorilla/websocket/compression.go
+++ /dev/null
@@ -1,148 +0,0 @@
-// Copyright 2017 The Gorilla WebSocket Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package websocket
-
-import (
- "compress/flate"
- "errors"
- "io"
- "strings"
- "sync"
-)
-
-const (
- minCompressionLevel = -2 // flate.HuffmanOnly not defined in Go < 1.6
- maxCompressionLevel = flate.BestCompression
- defaultCompressionLevel = 1
-)
-
-var (
- flateWriterPools [maxCompressionLevel - minCompressionLevel + 1]sync.Pool
- flateReaderPool = sync.Pool{New: func() interface{} {
- return flate.NewReader(nil)
- }}
-)
-
-func decompressNoContextTakeover(r io.Reader) io.ReadCloser {
- const tail =
- // Add four bytes as specified in RFC
- "\x00\x00\xff\xff" +
- // Add final block to squelch unexpected EOF error from flate reader.
- "\x01\x00\x00\xff\xff"
-
- fr, _ := flateReaderPool.Get().(io.ReadCloser)
- fr.(flate.Resetter).Reset(io.MultiReader(r, strings.NewReader(tail)), nil)
- return &flateReadWrapper{fr}
-}
-
-func isValidCompressionLevel(level int) bool {
- return minCompressionLevel <= level && level <= maxCompressionLevel
-}
-
-func compressNoContextTakeover(w io.WriteCloser, level int) io.WriteCloser {
- p := &flateWriterPools[level-minCompressionLevel]
- tw := &truncWriter{w: w}
- fw, _ := p.Get().(*flate.Writer)
- if fw == nil {
- fw, _ = flate.NewWriter(tw, level)
- } else {
- fw.Reset(tw)
- }
- return &flateWriteWrapper{fw: fw, tw: tw, p: p}
-}
-
-// truncWriter is an io.Writer that writes all but the last four bytes of the
-// stream to another io.Writer.
-type truncWriter struct {
- w io.WriteCloser
- n int
- p [4]byte
-}
-
-func (w *truncWriter) Write(p []byte) (int, error) {
- n := 0
-
- // fill buffer first for simplicity.
- if w.n < len(w.p) {
- n = copy(w.p[w.n:], p)
- p = p[n:]
- w.n += n
- if len(p) == 0 {
- return n, nil
- }
- }
-
- m := len(p)
- if m > len(w.p) {
- m = len(w.p)
- }
-
- if nn, err := w.w.Write(w.p[:m]); err != nil {
- return n + nn, err
- }
-
- copy(w.p[:], w.p[m:])
- copy(w.p[len(w.p)-m:], p[len(p)-m:])
- nn, err := w.w.Write(p[:len(p)-m])
- return n + nn, err
-}
-
-type flateWriteWrapper struct {
- fw *flate.Writer
- tw *truncWriter
- p *sync.Pool
-}
-
-func (w *flateWriteWrapper) Write(p []byte) (int, error) {
- if w.fw == nil {
- return 0, errWriteClosed
- }
- return w.fw.Write(p)
-}
-
-func (w *flateWriteWrapper) Close() error {
- if w.fw == nil {
- return errWriteClosed
- }
- err1 := w.fw.Flush()
- w.p.Put(w.fw)
- w.fw = nil
- if w.tw.p != [4]byte{0, 0, 0xff, 0xff} {
- return errors.New("websocket: internal error, unexpected bytes at end of flate stream")
- }
- err2 := w.tw.w.Close()
- if err1 != nil {
- return err1
- }
- return err2
-}
-
-type flateReadWrapper struct {
- fr io.ReadCloser
-}
-
-func (r *flateReadWrapper) Read(p []byte) (int, error) {
- if r.fr == nil {
- return 0, io.ErrClosedPipe
- }
- n, err := r.fr.Read(p)
- if err == io.EOF {
- // Preemptively place the reader back in the pool. This helps with
- // scenarios where the application does not call NextReader() soon after
- // this final read.
- r.Close()
- }
- return n, err
-}
-
-func (r *flateReadWrapper) Close() error {
- if r.fr == nil {
- return io.ErrClosedPipe
- }
- err := r.fr.Close()
- flateReaderPool.Put(r.fr)
- r.fr = nil
- return err
-}
diff --git a/vendor/github.com/gorilla/websocket/conn.go b/vendor/github.com/gorilla/websocket/conn.go
deleted file mode 100644
index d2a21c148..000000000
--- a/vendor/github.com/gorilla/websocket/conn.go
+++ /dev/null
@@ -1,1165 +0,0 @@
-// Copyright 2013 The Gorilla WebSocket Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package websocket
-
-import (
- "bufio"
- "encoding/binary"
- "errors"
- "io"
- "io/ioutil"
- "math/rand"
- "net"
- "strconv"
- "sync"
- "time"
- "unicode/utf8"
-)
-
-const (
- // Frame header byte 0 bits from Section 5.2 of RFC 6455
- finalBit = 1 << 7
- rsv1Bit = 1 << 6
- rsv2Bit = 1 << 5
- rsv3Bit = 1 << 4
-
- // Frame header byte 1 bits from Section 5.2 of RFC 6455
- maskBit = 1 << 7
-
- maxFrameHeaderSize = 2 + 8 + 4 // Fixed header + length + mask
- maxControlFramePayloadSize = 125
-
- writeWait = time.Second
-
- defaultReadBufferSize = 4096
- defaultWriteBufferSize = 4096
-
- continuationFrame = 0
- noFrame = -1
-)
-
-// Close codes defined in RFC 6455, section 11.7.
-const (
- CloseNormalClosure = 1000
- CloseGoingAway = 1001
- CloseProtocolError = 1002
- CloseUnsupportedData = 1003
- CloseNoStatusReceived = 1005
- CloseAbnormalClosure = 1006
- CloseInvalidFramePayloadData = 1007
- ClosePolicyViolation = 1008
- CloseMessageTooBig = 1009
- CloseMandatoryExtension = 1010
- CloseInternalServerErr = 1011
- CloseServiceRestart = 1012
- CloseTryAgainLater = 1013
- CloseTLSHandshake = 1015
-)
-
-// The message types are defined in RFC 6455, section 11.8.
-const (
- // TextMessage denotes a text data message. The text message payload is
- // interpreted as UTF-8 encoded text data.
- TextMessage = 1
-
- // BinaryMessage denotes a binary data message.
- BinaryMessage = 2
-
- // CloseMessage denotes a close control message. The optional message
- // payload contains a numeric code and text. Use the FormatCloseMessage
- // function to format a close message payload.
- CloseMessage = 8
-
- // PingMessage denotes a ping control message. The optional message payload
- // is UTF-8 encoded text.
- PingMessage = 9
-
- // PongMessage denotes a pong control message. The optional message payload
- // is UTF-8 encoded text.
- PongMessage = 10
-)
-
-// ErrCloseSent is returned when the application writes a message to the
-// connection after sending a close message.
-var ErrCloseSent = errors.New("websocket: close sent")
-
-// ErrReadLimit is returned when reading a message that is larger than the
-// read limit set for the connection.
-var ErrReadLimit = errors.New("websocket: read limit exceeded")
-
-// netError satisfies the net Error interface.
-type netError struct {
- msg string
- temporary bool
- timeout bool
-}
-
-func (e *netError) Error() string { return e.msg }
-func (e *netError) Temporary() bool { return e.temporary }
-func (e *netError) Timeout() bool { return e.timeout }
-
-// CloseError represents a close message.
-type CloseError struct {
- // Code is defined in RFC 6455, section 11.7.
- Code int
-
- // Text is the optional text payload.
- Text string
-}
-
-func (e *CloseError) Error() string {
- s := []byte("websocket: close ")
- s = strconv.AppendInt(s, int64(e.Code), 10)
- switch e.Code {
- case CloseNormalClosure:
- s = append(s, " (normal)"...)
- case CloseGoingAway:
- s = append(s, " (going away)"...)
- case CloseProtocolError:
- s = append(s, " (protocol error)"...)
- case CloseUnsupportedData:
- s = append(s, " (unsupported data)"...)
- case CloseNoStatusReceived:
- s = append(s, " (no status)"...)
- case CloseAbnormalClosure:
- s = append(s, " (abnormal closure)"...)
- case CloseInvalidFramePayloadData:
- s = append(s, " (invalid payload data)"...)
- case ClosePolicyViolation:
- s = append(s, " (policy violation)"...)
- case CloseMessageTooBig:
- s = append(s, " (message too big)"...)
- case CloseMandatoryExtension:
- s = append(s, " (mandatory extension missing)"...)
- case CloseInternalServerErr:
- s = append(s, " (internal server error)"...)
- case CloseTLSHandshake:
- s = append(s, " (TLS handshake error)"...)
- }
- if e.Text != "" {
- s = append(s, ": "...)
- s = append(s, e.Text...)
- }
- return string(s)
-}
-
-// IsCloseError returns boolean indicating whether the error is a *CloseError
-// with one of the specified codes.
-func IsCloseError(err error, codes ...int) bool {
- if e, ok := err.(*CloseError); ok {
- for _, code := range codes {
- if e.Code == code {
- return true
- }
- }
- }
- return false
-}
-
-// IsUnexpectedCloseError returns boolean indicating whether the error is a
-// *CloseError with a code not in the list of expected codes.
-func IsUnexpectedCloseError(err error, expectedCodes ...int) bool {
- if e, ok := err.(*CloseError); ok {
- for _, code := range expectedCodes {
- if e.Code == code {
- return false
- }
- }
- return true
- }
- return false
-}
-
-var (
- errWriteTimeout = &netError{msg: "websocket: write timeout", timeout: true, temporary: true}
- errUnexpectedEOF = &CloseError{Code: CloseAbnormalClosure, Text: io.ErrUnexpectedEOF.Error()}
- errBadWriteOpCode = errors.New("websocket: bad write message type")
- errWriteClosed = errors.New("websocket: write closed")
- errInvalidControlFrame = errors.New("websocket: invalid control frame")
-)
-
-func newMaskKey() [4]byte {
- n := rand.Uint32()
- return [4]byte{byte(n), byte(n >> 8), byte(n >> 16), byte(n >> 24)}
-}
-
-func hideTempErr(err error) error {
- if e, ok := err.(net.Error); ok && e.Temporary() {
- err = &netError{msg: e.Error(), timeout: e.Timeout()}
- }
- return err
-}
-
-func isControl(frameType int) bool {
- return frameType == CloseMessage || frameType == PingMessage || frameType == PongMessage
-}
-
-func isData(frameType int) bool {
- return frameType == TextMessage || frameType == BinaryMessage
-}
-
-var validReceivedCloseCodes = map[int]bool{
- // see http://www.iana.org/assignments/websocket/websocket.xhtml#close-code-number
-
- CloseNormalClosure: true,
- CloseGoingAway: true,
- CloseProtocolError: true,
- CloseUnsupportedData: true,
- CloseNoStatusReceived: false,
- CloseAbnormalClosure: false,
- CloseInvalidFramePayloadData: true,
- ClosePolicyViolation: true,
- CloseMessageTooBig: true,
- CloseMandatoryExtension: true,
- CloseInternalServerErr: true,
- CloseServiceRestart: true,
- CloseTryAgainLater: true,
- CloseTLSHandshake: false,
-}
-
-func isValidReceivedCloseCode(code int) bool {
- return validReceivedCloseCodes[code] || (code >= 3000 && code <= 4999)
-}
-
-// BufferPool represents a pool of buffers. The *sync.Pool type satisfies this
-// interface. The type of the value stored in a pool is not specified.
-type BufferPool interface {
- // Get gets a value from the pool or returns nil if the pool is empty.
- Get() interface{}
- // Put adds a value to the pool.
- Put(interface{})
-}
-
-// writePoolData is the type added to the write buffer pool. This wrapper is
-// used to prevent applications from peeking at and depending on the values
-// added to the pool.
-type writePoolData struct{ buf []byte }
-
-// The Conn type represents a WebSocket connection.
-type Conn struct {
- conn net.Conn
- isServer bool
- subprotocol string
-
- // Write fields
- mu chan bool // used as mutex to protect write to conn
- writeBuf []byte // frame is constructed in this buffer.
- writePool BufferPool
- writeBufSize int
- writeDeadline time.Time
- writer io.WriteCloser // the current writer returned to the application
- isWriting bool // for best-effort concurrent write detection
-
- writeErrMu sync.Mutex
- writeErr error
-
- enableWriteCompression bool
- compressionLevel int
- newCompressionWriter func(io.WriteCloser, int) io.WriteCloser
-
- // Read fields
- reader io.ReadCloser // the current reader returned to the application
- readErr error
- br *bufio.Reader
- readRemaining int64 // bytes remaining in current frame.
- readFinal bool // true the current message has more frames.
- readLength int64 // Message size.
- readLimit int64 // Maximum message size.
- readMaskPos int
- readMaskKey [4]byte
- handlePong func(string) error
- handlePing func(string) error
- handleClose func(int, string) error
- readErrCount int
- messageReader *messageReader // the current low-level reader
-
- readDecompress bool // whether last read frame had RSV1 set
- newDecompressionReader func(io.Reader) io.ReadCloser
-}
-
-func newConn(conn net.Conn, isServer bool, readBufferSize, writeBufferSize int, writeBufferPool BufferPool, br *bufio.Reader, writeBuf []byte) *Conn {
-
- if br == nil {
- if readBufferSize == 0 {
- readBufferSize = defaultReadBufferSize
- } else if readBufferSize < maxControlFramePayloadSize {
- // must be large enough for control frame
- readBufferSize = maxControlFramePayloadSize
- }
- br = bufio.NewReaderSize(conn, readBufferSize)
- }
-
- if writeBufferSize <= 0 {
- writeBufferSize = defaultWriteBufferSize
- }
- writeBufferSize += maxFrameHeaderSize
-
- if writeBuf == nil && writeBufferPool == nil {
- writeBuf = make([]byte, writeBufferSize)
- }
-
- mu := make(chan bool, 1)
- mu <- true
- c := &Conn{
- isServer: isServer,
- br: br,
- conn: conn,
- mu: mu,
- readFinal: true,
- writeBuf: writeBuf,
- writePool: writeBufferPool,
- writeBufSize: writeBufferSize,
- enableWriteCompression: true,
- compressionLevel: defaultCompressionLevel,
- }
- c.SetCloseHandler(nil)
- c.SetPingHandler(nil)
- c.SetPongHandler(nil)
- return c
-}
-
-// Subprotocol returns the negotiated protocol for the connection.
-func (c *Conn) Subprotocol() string {
- return c.subprotocol
-}
-
-// Close closes the underlying network connection without sending or waiting
-// for a close message.
-func (c *Conn) Close() error {
- return c.conn.Close()
-}
-
-// LocalAddr returns the local network address.
-func (c *Conn) LocalAddr() net.Addr {
- return c.conn.LocalAddr()
-}
-
-// RemoteAddr returns the remote network address.
-func (c *Conn) RemoteAddr() net.Addr {
- return c.conn.RemoteAddr()
-}
-
-// Write methods
-
-func (c *Conn) writeFatal(err error) error {
- err = hideTempErr(err)
- c.writeErrMu.Lock()
- if c.writeErr == nil {
- c.writeErr = err
- }
- c.writeErrMu.Unlock()
- return err
-}
-
-func (c *Conn) read(n int) ([]byte, error) {
- p, err := c.br.Peek(n)
- if err == io.EOF {
- err = errUnexpectedEOF
- }
- c.br.Discard(len(p))
- return p, err
-}
-
-func (c *Conn) write(frameType int, deadline time.Time, buf0, buf1 []byte) error {
- <-c.mu
- defer func() { c.mu <- true }()
-
- c.writeErrMu.Lock()
- err := c.writeErr
- c.writeErrMu.Unlock()
- if err != nil {
- return err
- }
-
- c.conn.SetWriteDeadline(deadline)
- if len(buf1) == 0 {
- _, err = c.conn.Write(buf0)
- } else {
- err = c.writeBufs(buf0, buf1)
- }
- if err != nil {
- return c.writeFatal(err)
- }
- if frameType == CloseMessage {
- c.writeFatal(ErrCloseSent)
- }
- return nil
-}
-
-// WriteControl writes a control message with the given deadline. The allowed
-// message types are CloseMessage, PingMessage and PongMessage.
-func (c *Conn) WriteControl(messageType int, data []byte, deadline time.Time) error {
- if !isControl(messageType) {
- return errBadWriteOpCode
- }
- if len(data) > maxControlFramePayloadSize {
- return errInvalidControlFrame
- }
-
- b0 := byte(messageType) | finalBit
- b1 := byte(len(data))
- if !c.isServer {
- b1 |= maskBit
- }
-
- buf := make([]byte, 0, maxFrameHeaderSize+maxControlFramePayloadSize)
- buf = append(buf, b0, b1)
-
- if c.isServer {
- buf = append(buf, data...)
- } else {
- key := newMaskKey()
- buf = append(buf, key[:]...)
- buf = append(buf, data...)
- maskBytes(key, 0, buf[6:])
- }
-
- d := time.Hour * 1000
- if !deadline.IsZero() {
- d = deadline.Sub(time.Now())
- if d < 0 {
- return errWriteTimeout
- }
- }
-
- timer := time.NewTimer(d)
- select {
- case <-c.mu:
- timer.Stop()
- case <-timer.C:
- return errWriteTimeout
- }
- defer func() { c.mu <- true }()
-
- c.writeErrMu.Lock()
- err := c.writeErr
- c.writeErrMu.Unlock()
- if err != nil {
- return err
- }
-
- c.conn.SetWriteDeadline(deadline)
- _, err = c.conn.Write(buf)
- if err != nil {
- return c.writeFatal(err)
- }
- if messageType == CloseMessage {
- c.writeFatal(ErrCloseSent)
- }
- return err
-}
-
-func (c *Conn) prepWrite(messageType int) error {
- // Close previous writer if not already closed by the application. It's
- // probably better to return an error in this situation, but we cannot
- // change this without breaking existing applications.
- if c.writer != nil {
- c.writer.Close()
- c.writer = nil
- }
-
- if !isControl(messageType) && !isData(messageType) {
- return errBadWriteOpCode
- }
-
- c.writeErrMu.Lock()
- err := c.writeErr
- c.writeErrMu.Unlock()
- if err != nil {
- return err
- }
-
- if c.writeBuf == nil {
- wpd, ok := c.writePool.Get().(writePoolData)
- if ok {
- c.writeBuf = wpd.buf
- } else {
- c.writeBuf = make([]byte, c.writeBufSize)
- }
- }
- return nil
-}
-
-// NextWriter returns a writer for the next message to send. The writer's Close
-// method flushes the complete message to the network.
-//
-// There can be at most one open writer on a connection. NextWriter closes the
-// previous writer if the application has not already done so.
-//
-// All message types (TextMessage, BinaryMessage, CloseMessage, PingMessage and
-// PongMessage) are supported.
-func (c *Conn) NextWriter(messageType int) (io.WriteCloser, error) {
- if err := c.prepWrite(messageType); err != nil {
- return nil, err
- }
-
- mw := &messageWriter{
- c: c,
- frameType: messageType,
- pos: maxFrameHeaderSize,
- }
- c.writer = mw
- if c.newCompressionWriter != nil && c.enableWriteCompression && isData(messageType) {
- w := c.newCompressionWriter(c.writer, c.compressionLevel)
- mw.compress = true
- c.writer = w
- }
- return c.writer, nil
-}
-
-type messageWriter struct {
- c *Conn
- compress bool // whether next call to flushFrame should set RSV1
- pos int // end of data in writeBuf.
- frameType int // type of the current frame.
- err error
-}
-
-func (w *messageWriter) fatal(err error) error {
- if w.err != nil {
- w.err = err
- w.c.writer = nil
- }
- return err
-}
-
-// flushFrame writes buffered data and extra as a frame to the network. The
-// final argument indicates that this is the last frame in the message.
-func (w *messageWriter) flushFrame(final bool, extra []byte) error {
- c := w.c
- length := w.pos - maxFrameHeaderSize + len(extra)
-
- // Check for invalid control frames.
- if isControl(w.frameType) &&
- (!final || length > maxControlFramePayloadSize) {
- return w.fatal(errInvalidControlFrame)
- }
-
- b0 := byte(w.frameType)
- if final {
- b0 |= finalBit
- }
- if w.compress {
- b0 |= rsv1Bit
- }
- w.compress = false
-
- b1 := byte(0)
- if !c.isServer {
- b1 |= maskBit
- }
-
- // Assume that the frame starts at beginning of c.writeBuf.
- framePos := 0
- if c.isServer {
- // Adjust up if mask not included in the header.
- framePos = 4
- }
-
- switch {
- case length >= 65536:
- c.writeBuf[framePos] = b0
- c.writeBuf[framePos+1] = b1 | 127
- binary.BigEndian.PutUint64(c.writeBuf[framePos+2:], uint64(length))
- case length > 125:
- framePos += 6
- c.writeBuf[framePos] = b0
- c.writeBuf[framePos+1] = b1 | 126
- binary.BigEndian.PutUint16(c.writeBuf[framePos+2:], uint16(length))
- default:
- framePos += 8
- c.writeBuf[framePos] = b0
- c.writeBuf[framePos+1] = b1 | byte(length)
- }
-
- if !c.isServer {
- key := newMaskKey()
- copy(c.writeBuf[maxFrameHeaderSize-4:], key[:])
- maskBytes(key, 0, c.writeBuf[maxFrameHeaderSize:w.pos])
- if len(extra) > 0 {
- return c.writeFatal(errors.New("websocket: internal error, extra used in client mode"))
- }
- }
-
- // Write the buffers to the connection with best-effort detection of
- // concurrent writes. See the concurrency section in the package
- // documentation for more info.
-
- if c.isWriting {
- panic("concurrent write to websocket connection")
- }
- c.isWriting = true
-
- err := c.write(w.frameType, c.writeDeadline, c.writeBuf[framePos:w.pos], extra)
-
- if !c.isWriting {
- panic("concurrent write to websocket connection")
- }
- c.isWriting = false
-
- if err != nil {
- return w.fatal(err)
- }
-
- if final {
- c.writer = nil
- if c.writePool != nil {
- c.writePool.Put(writePoolData{buf: c.writeBuf})
- c.writeBuf = nil
- }
- return nil
- }
-
- // Setup for next frame.
- w.pos = maxFrameHeaderSize
- w.frameType = continuationFrame
- return nil
-}
-
-func (w *messageWriter) ncopy(max int) (int, error) {
- n := len(w.c.writeBuf) - w.pos
- if n <= 0 {
- if err := w.flushFrame(false, nil); err != nil {
- return 0, err
- }
- n = len(w.c.writeBuf) - w.pos
- }
- if n > max {
- n = max
- }
- return n, nil
-}
-
-func (w *messageWriter) Write(p []byte) (int, error) {
- if w.err != nil {
- return 0, w.err
- }
-
- if len(p) > 2*len(w.c.writeBuf) && w.c.isServer {
- // Don't buffer large messages.
- err := w.flushFrame(false, p)
- if err != nil {
- return 0, err
- }
- return len(p), nil
- }
-
- nn := len(p)
- for len(p) > 0 {
- n, err := w.ncopy(len(p))
- if err != nil {
- return 0, err
- }
- copy(w.c.writeBuf[w.pos:], p[:n])
- w.pos += n
- p = p[n:]
- }
- return nn, nil
-}
-
-func (w *messageWriter) WriteString(p string) (int, error) {
- if w.err != nil {
- return 0, w.err
- }
-
- nn := len(p)
- for len(p) > 0 {
- n, err := w.ncopy(len(p))
- if err != nil {
- return 0, err
- }
- copy(w.c.writeBuf[w.pos:], p[:n])
- w.pos += n
- p = p[n:]
- }
- return nn, nil
-}
-
-func (w *messageWriter) ReadFrom(r io.Reader) (nn int64, err error) {
- if w.err != nil {
- return 0, w.err
- }
- for {
- if w.pos == len(w.c.writeBuf) {
- err = w.flushFrame(false, nil)
- if err != nil {
- break
- }
- }
- var n int
- n, err = r.Read(w.c.writeBuf[w.pos:])
- w.pos += n
- nn += int64(n)
- if err != nil {
- if err == io.EOF {
- err = nil
- }
- break
- }
- }
- return nn, err
-}
-
-func (w *messageWriter) Close() error {
- if w.err != nil {
- return w.err
- }
- if err := w.flushFrame(true, nil); err != nil {
- return err
- }
- w.err = errWriteClosed
- return nil
-}
-
-// WritePreparedMessage writes prepared message into connection.
-func (c *Conn) WritePreparedMessage(pm *PreparedMessage) error {
- frameType, frameData, err := pm.frame(prepareKey{
- isServer: c.isServer,
- compress: c.newCompressionWriter != nil && c.enableWriteCompression && isData(pm.messageType),
- compressionLevel: c.compressionLevel,
- })
- if err != nil {
- return err
- }
- if c.isWriting {
- panic("concurrent write to websocket connection")
- }
- c.isWriting = true
- err = c.write(frameType, c.writeDeadline, frameData, nil)
- if !c.isWriting {
- panic("concurrent write to websocket connection")
- }
- c.isWriting = false
- return err
-}
-
-// WriteMessage is a helper method for getting a writer using NextWriter,
-// writing the message and closing the writer.
-func (c *Conn) WriteMessage(messageType int, data []byte) error {
-
- if c.isServer && (c.newCompressionWriter == nil || !c.enableWriteCompression) {
- // Fast path with no allocations and single frame.
-
- if err := c.prepWrite(messageType); err != nil {
- return err
- }
- mw := messageWriter{c: c, frameType: messageType, pos: maxFrameHeaderSize}
- n := copy(c.writeBuf[mw.pos:], data)
- mw.pos += n
- data = data[n:]
- return mw.flushFrame(true, data)
- }
-
- w, err := c.NextWriter(messageType)
- if err != nil {
- return err
- }
- if _, err = w.Write(data); err != nil {
- return err
- }
- return w.Close()
-}
-
-// SetWriteDeadline sets the write deadline on the underlying network
-// connection. After a write has timed out, the websocket state is corrupt and
-// all future writes will return an error. A zero value for t means writes will
-// not time out.
-func (c *Conn) SetWriteDeadline(t time.Time) error {
- c.writeDeadline = t
- return nil
-}
-
-// Read methods
-
-func (c *Conn) advanceFrame() (int, error) {
- // 1. Skip remainder of previous frame.
-
- if c.readRemaining > 0 {
- if _, err := io.CopyN(ioutil.Discard, c.br, c.readRemaining); err != nil {
- return noFrame, err
- }
- }
-
- // 2. Read and parse first two bytes of frame header.
-
- p, err := c.read(2)
- if err != nil {
- return noFrame, err
- }
-
- final := p[0]&finalBit != 0
- frameType := int(p[0] & 0xf)
- mask := p[1]&maskBit != 0
- c.readRemaining = int64(p[1] & 0x7f)
-
- c.readDecompress = false
- if c.newDecompressionReader != nil && (p[0]&rsv1Bit) != 0 {
- c.readDecompress = true
- p[0] &^= rsv1Bit
- }
-
- if rsv := p[0] & (rsv1Bit | rsv2Bit | rsv3Bit); rsv != 0 {
- return noFrame, c.handleProtocolError("unexpected reserved bits 0x" + strconv.FormatInt(int64(rsv), 16))
- }
-
- switch frameType {
- case CloseMessage, PingMessage, PongMessage:
- if c.readRemaining > maxControlFramePayloadSize {
- return noFrame, c.handleProtocolError("control frame length > 125")
- }
- if !final {
- return noFrame, c.handleProtocolError("control frame not final")
- }
- case TextMessage, BinaryMessage:
- if !c.readFinal {
- return noFrame, c.handleProtocolError("message start before final message frame")
- }
- c.readFinal = final
- case continuationFrame:
- if c.readFinal {
- return noFrame, c.handleProtocolError("continuation after final message frame")
- }
- c.readFinal = final
- default:
- return noFrame, c.handleProtocolError("unknown opcode " + strconv.Itoa(frameType))
- }
-
- // 3. Read and parse frame length.
-
- switch c.readRemaining {
- case 126:
- p, err := c.read(2)
- if err != nil {
- return noFrame, err
- }
- c.readRemaining = int64(binary.BigEndian.Uint16(p))
- case 127:
- p, err := c.read(8)
- if err != nil {
- return noFrame, err
- }
- c.readRemaining = int64(binary.BigEndian.Uint64(p))
- }
-
- // 4. Handle frame masking.
-
- if mask != c.isServer {
- return noFrame, c.handleProtocolError("incorrect mask flag")
- }
-
- if mask {
- c.readMaskPos = 0
- p, err := c.read(len(c.readMaskKey))
- if err != nil {
- return noFrame, err
- }
- copy(c.readMaskKey[:], p)
- }
-
- // 5. For text and binary messages, enforce read limit and return.
-
- if frameType == continuationFrame || frameType == TextMessage || frameType == BinaryMessage {
-
- c.readLength += c.readRemaining
- if c.readLimit > 0 && c.readLength > c.readLimit {
- c.WriteControl(CloseMessage, FormatCloseMessage(CloseMessageTooBig, ""), time.Now().Add(writeWait))
- return noFrame, ErrReadLimit
- }
-
- return frameType, nil
- }
-
- // 6. Read control frame payload.
-
- var payload []byte
- if c.readRemaining > 0 {
- payload, err = c.read(int(c.readRemaining))
- c.readRemaining = 0
- if err != nil {
- return noFrame, err
- }
- if c.isServer {
- maskBytes(c.readMaskKey, 0, payload)
- }
- }
-
- // 7. Process control frame payload.
-
- switch frameType {
- case PongMessage:
- if err := c.handlePong(string(payload)); err != nil {
- return noFrame, err
- }
- case PingMessage:
- if err := c.handlePing(string(payload)); err != nil {
- return noFrame, err
- }
- case CloseMessage:
- closeCode := CloseNoStatusReceived
- closeText := ""
- if len(payload) >= 2 {
- closeCode = int(binary.BigEndian.Uint16(payload))
- if !isValidReceivedCloseCode(closeCode) {
- return noFrame, c.handleProtocolError("invalid close code")
- }
- closeText = string(payload[2:])
- if !utf8.ValidString(closeText) {
- return noFrame, c.handleProtocolError("invalid utf8 payload in close frame")
- }
- }
- if err := c.handleClose(closeCode, closeText); err != nil {
- return noFrame, err
- }
- return noFrame, &CloseError{Code: closeCode, Text: closeText}
- }
-
- return frameType, nil
-}
-
-func (c *Conn) handleProtocolError(message string) error {
- c.WriteControl(CloseMessage, FormatCloseMessage(CloseProtocolError, message), time.Now().Add(writeWait))
- return errors.New("websocket: " + message)
-}
-
-// NextReader returns the next data message received from the peer. The
-// returned messageType is either TextMessage or BinaryMessage.
-//
-// There can be at most one open reader on a connection. NextReader discards
-// the previous message if the application has not already consumed it.
-//
-// Applications must break out of the application's read loop when this method
-// returns a non-nil error value. Errors returned from this method are
-// permanent. Once this method returns a non-nil error, all subsequent calls to
-// this method return the same error.
-func (c *Conn) NextReader() (messageType int, r io.Reader, err error) {
- // Close previous reader, only relevant for decompression.
- if c.reader != nil {
- c.reader.Close()
- c.reader = nil
- }
-
- c.messageReader = nil
- c.readLength = 0
-
- for c.readErr == nil {
- frameType, err := c.advanceFrame()
- if err != nil {
- c.readErr = hideTempErr(err)
- break
- }
- if frameType == TextMessage || frameType == BinaryMessage {
- c.messageReader = &messageReader{c}
- c.reader = c.messageReader
- if c.readDecompress {
- c.reader = c.newDecompressionReader(c.reader)
- }
- return frameType, c.reader, nil
- }
- }
-
- // Applications that do handle the error returned from this method spin in
- // tight loop on connection failure. To help application developers detect
- // this error, panic on repeated reads to the failed connection.
- c.readErrCount++
- if c.readErrCount >= 1000 {
- panic("repeated read on failed websocket connection")
- }
-
- return noFrame, nil, c.readErr
-}
-
-type messageReader struct{ c *Conn }
-
-func (r *messageReader) Read(b []byte) (int, error) {
- c := r.c
- if c.messageReader != r {
- return 0, io.EOF
- }
-
- for c.readErr == nil {
-
- if c.readRemaining > 0 {
- if int64(len(b)) > c.readRemaining {
- b = b[:c.readRemaining]
- }
- n, err := c.br.Read(b)
- c.readErr = hideTempErr(err)
- if c.isServer {
- c.readMaskPos = maskBytes(c.readMaskKey, c.readMaskPos, b[:n])
- }
- c.readRemaining -= int64(n)
- if c.readRemaining > 0 && c.readErr == io.EOF {
- c.readErr = errUnexpectedEOF
- }
- return n, c.readErr
- }
-
- if c.readFinal {
- c.messageReader = nil
- return 0, io.EOF
- }
-
- frameType, err := c.advanceFrame()
- switch {
- case err != nil:
- c.readErr = hideTempErr(err)
- case frameType == TextMessage || frameType == BinaryMessage:
- c.readErr = errors.New("websocket: internal error, unexpected text or binary in Reader")
- }
- }
-
- err := c.readErr
- if err == io.EOF && c.messageReader == r {
- err = errUnexpectedEOF
- }
- return 0, err
-}
-
-func (r *messageReader) Close() error {
- return nil
-}
-
-// ReadMessage is a helper method for getting a reader using NextReader and
-// reading from that reader to a buffer.
-func (c *Conn) ReadMessage() (messageType int, p []byte, err error) {
- var r io.Reader
- messageType, r, err = c.NextReader()
- if err != nil {
- return messageType, nil, err
- }
- p, err = ioutil.ReadAll(r)
- return messageType, p, err
-}
-
-// SetReadDeadline sets the read deadline on the underlying network connection.
-// After a read has timed out, the websocket connection state is corrupt and
-// all future reads will return an error. A zero value for t means reads will
-// not time out.
-func (c *Conn) SetReadDeadline(t time.Time) error {
- return c.conn.SetReadDeadline(t)
-}
-
-// SetReadLimit sets the maximum size for a message read from the peer. If a
-// message exceeds the limit, the connection sends a close message to the peer
-// and returns ErrReadLimit to the application.
-func (c *Conn) SetReadLimit(limit int64) {
- c.readLimit = limit
-}
-
-// CloseHandler returns the current close handler
-func (c *Conn) CloseHandler() func(code int, text string) error {
- return c.handleClose
-}
-
-// SetCloseHandler sets the handler for close messages received from the peer.
-// The code argument to h is the received close code or CloseNoStatusReceived
-// if the close message is empty. The default close handler sends a close
-// message back to the peer.
-//
-// The handler function is called from the NextReader, ReadMessage and message
-// reader Read methods. The application must read the connection to process
-// close messages as described in the section on Control Messages above.
-//
-// The connection read methods return a CloseError when a close message is
-// received. Most applications should handle close messages as part of their
-// normal error handling. Applications should only set a close handler when the
-// application must perform some action before sending a close message back to
-// the peer.
-func (c *Conn) SetCloseHandler(h func(code int, text string) error) {
- if h == nil {
- h = func(code int, text string) error {
- message := FormatCloseMessage(code, "")
- c.WriteControl(CloseMessage, message, time.Now().Add(writeWait))
- return nil
- }
- }
- c.handleClose = h
-}
-
-// PingHandler returns the current ping handler
-func (c *Conn) PingHandler() func(appData string) error {
- return c.handlePing
-}
-
-// SetPingHandler sets the handler for ping messages received from the peer.
-// The appData argument to h is the PING message application data. The default
-// ping handler sends a pong to the peer.
-//
-// The handler function is called from the NextReader, ReadMessage and message
-// reader Read methods. The application must read the connection to process
-// ping messages as described in the section on Control Messages above.
-func (c *Conn) SetPingHandler(h func(appData string) error) {
- if h == nil {
- h = func(message string) error {
- err := c.WriteControl(PongMessage, []byte(message), time.Now().Add(writeWait))
- if err == ErrCloseSent {
- return nil
- } else if e, ok := err.(net.Error); ok && e.Temporary() {
- return nil
- }
- return err
- }
- }
- c.handlePing = h
-}
-
-// PongHandler returns the current pong handler
-func (c *Conn) PongHandler() func(appData string) error {
- return c.handlePong
-}
-
-// SetPongHandler sets the handler for pong messages received from the peer.
-// The appData argument to h is the PONG message application data. The default
-// pong handler does nothing.
-//
-// The handler function is called from the NextReader, ReadMessage and message
-// reader Read methods. The application must read the connection to process
-// pong messages as described in the section on Control Messages above.
-func (c *Conn) SetPongHandler(h func(appData string) error) {
- if h == nil {
- h = func(string) error { return nil }
- }
- c.handlePong = h
-}
-
-// UnderlyingConn returns the internal net.Conn. This can be used to further
-// modifications to connection specific flags.
-func (c *Conn) UnderlyingConn() net.Conn {
- return c.conn
-}
-
-// EnableWriteCompression enables and disables write compression of
-// subsequent text and binary messages. This function is a noop if
-// compression was not negotiated with the peer.
-func (c *Conn) EnableWriteCompression(enable bool) {
- c.enableWriteCompression = enable
-}
-
-// SetCompressionLevel sets the flate compression level for subsequent text and
-// binary messages. This function is a noop if compression was not negotiated
-// with the peer. See the compress/flate package for a description of
-// compression levels.
-func (c *Conn) SetCompressionLevel(level int) error {
- if !isValidCompressionLevel(level) {
- return errors.New("websocket: invalid compression level")
- }
- c.compressionLevel = level
- return nil
-}
-
-// FormatCloseMessage formats closeCode and text as a WebSocket close message.
-// An empty message is returned for code CloseNoStatusReceived.
-func FormatCloseMessage(closeCode int, text string) []byte {
- if closeCode == CloseNoStatusReceived {
- // Return empty message because it's illegal to send
- // CloseNoStatusReceived. Return non-nil value in case application
- // checks for nil.
- return []byte{}
- }
- buf := make([]byte, 2+len(text))
- binary.BigEndian.PutUint16(buf, uint16(closeCode))
- copy(buf[2:], text)
- return buf
-}
diff --git a/vendor/github.com/gorilla/websocket/conn_write.go b/vendor/github.com/gorilla/websocket/conn_write.go
deleted file mode 100644
index a509a21f8..000000000
--- a/vendor/github.com/gorilla/websocket/conn_write.go
+++ /dev/null
@@ -1,15 +0,0 @@
-// Copyright 2016 The Gorilla WebSocket Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-// +build go1.8
-
-package websocket
-
-import "net"
-
-func (c *Conn) writeBufs(bufs ...[]byte) error {
- b := net.Buffers(bufs)
- _, err := b.WriteTo(c.conn)
- return err
-}
diff --git a/vendor/github.com/gorilla/websocket/conn_write_legacy.go b/vendor/github.com/gorilla/websocket/conn_write_legacy.go
deleted file mode 100644
index 37edaff5a..000000000
--- a/vendor/github.com/gorilla/websocket/conn_write_legacy.go
+++ /dev/null
@@ -1,18 +0,0 @@
-// Copyright 2016 The Gorilla WebSocket Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-// +build !go1.8
-
-package websocket
-
-func (c *Conn) writeBufs(bufs ...[]byte) error {
- for _, buf := range bufs {
- if len(buf) > 0 {
- if _, err := c.conn.Write(buf); err != nil {
- return err
- }
- }
- }
- return nil
-}
diff --git a/vendor/github.com/gorilla/websocket/doc.go b/vendor/github.com/gorilla/websocket/doc.go
deleted file mode 100644
index dcce1a63c..000000000
--- a/vendor/github.com/gorilla/websocket/doc.go
+++ /dev/null
@@ -1,180 +0,0 @@
-// Copyright 2013 The Gorilla WebSocket Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-// Package websocket implements the WebSocket protocol defined in RFC 6455.
-//
-// Overview
-//
-// The Conn type represents a WebSocket connection. A server application calls
-// the Upgrader.Upgrade method from an HTTP request handler to get a *Conn:
-//
-// var upgrader = websocket.Upgrader{
-// ReadBufferSize: 1024,
-// WriteBufferSize: 1024,
-// }
-//
-// func handler(w http.ResponseWriter, r *http.Request) {
-// conn, err := upgrader.Upgrade(w, r, nil)
-// if err != nil {
-// log.Println(err)
-// return
-// }
-// ... Use conn to send and receive messages.
-// }
-//
-// Call the connection's WriteMessage and ReadMessage methods to send and
-// receive messages as a slice of bytes. This snippet of code shows how to echo
-// messages using these methods:
-//
-// for {
-// messageType, p, err := conn.ReadMessage()
-// if err != nil {
-// log.Println(err)
-// return
-// }
-// if err := conn.WriteMessage(messageType, p); err != nil {
-// log.Println(err)
-// return
-// }
-// }
-//
-// In above snippet of code, p is a []byte and messageType is an int with value
-// websocket.BinaryMessage or websocket.TextMessage.
-//
-// An application can also send and receive messages using the io.WriteCloser
-// and io.Reader interfaces. To send a message, call the connection NextWriter
-// method to get an io.WriteCloser, write the message to the writer and close
-// the writer when done. To receive a message, call the connection NextReader
-// method to get an io.Reader and read until io.EOF is returned. This snippet
-// shows how to echo messages using the NextWriter and NextReader methods:
-//
-// for {
-// messageType, r, err := conn.NextReader()
-// if err != nil {
-// return
-// }
-// w, err := conn.NextWriter(messageType)
-// if err != nil {
-// return err
-// }
-// if _, err := io.Copy(w, r); err != nil {
-// return err
-// }
-// if err := w.Close(); err != nil {
-// return err
-// }
-// }
-//
-// Data Messages
-//
-// The WebSocket protocol distinguishes between text and binary data messages.
-// Text messages are interpreted as UTF-8 encoded text. The interpretation of
-// binary messages is left to the application.
-//
-// This package uses the TextMessage and BinaryMessage integer constants to
-// identify the two data message types. The ReadMessage and NextReader methods
-// return the type of the received message. The messageType argument to the
-// WriteMessage and NextWriter methods specifies the type of a sent message.
-//
-// It is the application's responsibility to ensure that text messages are
-// valid UTF-8 encoded text.
-//
-// Control Messages
-//
-// The WebSocket protocol defines three types of control messages: close, ping
-// and pong. Call the connection WriteControl, WriteMessage or NextWriter
-// methods to send a control message to the peer.
-//
-// Connections handle received close messages by calling the handler function
-// set with the SetCloseHandler method and by returning a *CloseError from the
-// NextReader, ReadMessage or the message Read method. The default close
-// handler sends a close message to the peer.
-//
-// Connections handle received ping messages by calling the handler function
-// set with the SetPingHandler method. The default ping handler sends a pong
-// message to the peer.
-//
-// Connections handle received pong messages by calling the handler function
-// set with the SetPongHandler method. The default pong handler does nothing.
-// If an application sends ping messages, then the application should set a
-// pong handler to receive the corresponding pong.
-//
-// The control message handler functions are called from the NextReader,
-// ReadMessage and message reader Read methods. The default close and ping
-// handlers can block these methods for a short time when the handler writes to
-// the connection.
-//
-// The application must read the connection to process close, ping and pong
-// messages sent from the peer. If the application is not otherwise interested
-// in messages from the peer, then the application should start a goroutine to
-// read and discard messages from the peer. A simple example is:
-//
-// func readLoop(c *websocket.Conn) {
-// for {
-// if _, _, err := c.NextReader(); err != nil {
-// c.Close()
-// break
-// }
-// }
-// }
-//
-// Concurrency
-//
-// Connections support one concurrent reader and one concurrent writer.
-//
-// Applications are responsible for ensuring that no more than one goroutine
-// calls the write methods (NextWriter, SetWriteDeadline, WriteMessage,
-// WriteJSON, EnableWriteCompression, SetCompressionLevel) concurrently and
-// that no more than one goroutine calls the read methods (NextReader,
-// SetReadDeadline, ReadMessage, ReadJSON, SetPongHandler, SetPingHandler)
-// concurrently.
-//
-// The Close and WriteControl methods can be called concurrently with all other
-// methods.
-//
-// Origin Considerations
-//
-// Web browsers allow Javascript applications to open a WebSocket connection to
-// any host. It's up to the server to enforce an origin policy using the Origin
-// request header sent by the browser.
-//
-// The Upgrader calls the function specified in the CheckOrigin field to check
-// the origin. If the CheckOrigin function returns false, then the Upgrade
-// method fails the WebSocket handshake with HTTP status 403.
-//
-// If the CheckOrigin field is nil, then the Upgrader uses a safe default: fail
-// the handshake if the Origin request header is present and the Origin host is
-// not equal to the Host request header.
-//
-// The deprecated package-level Upgrade function does not perform origin
-// checking. The application is responsible for checking the Origin header
-// before calling the Upgrade function.
-//
-// Compression EXPERIMENTAL
-//
-// Per message compression extensions (RFC 7692) are experimentally supported
-// by this package in a limited capacity. Setting the EnableCompression option
-// to true in Dialer or Upgrader will attempt to negotiate per message deflate
-// support.
-//
-// var upgrader = websocket.Upgrader{
-// EnableCompression: true,
-// }
-//
-// If compression was successfully negotiated with the connection's peer, any
-// message received in compressed form will be automatically decompressed.
-// All Read methods will return uncompressed bytes.
-//
-// Per message compression of messages written to a connection can be enabled
-// or disabled by calling the corresponding Conn method:
-//
-// conn.EnableWriteCompression(false)
-//
-// Currently this package does not support compression with "context takeover".
-// This means that messages must be compressed and decompressed in isolation,
-// without retaining sliding window or dictionary state across messages. For
-// more details refer to RFC 7692.
-//
-// Use of compression is experimental and may result in decreased performance.
-package websocket
diff --git a/vendor/github.com/gorilla/websocket/json.go b/vendor/github.com/gorilla/websocket/json.go
deleted file mode 100644
index dc2c1f641..000000000
--- a/vendor/github.com/gorilla/websocket/json.go
+++ /dev/null
@@ -1,60 +0,0 @@
-// Copyright 2013 The Gorilla WebSocket Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package websocket
-
-import (
- "encoding/json"
- "io"
-)
-
-// WriteJSON writes the JSON encoding of v as a message.
-//
-// Deprecated: Use c.WriteJSON instead.
-func WriteJSON(c *Conn, v interface{}) error {
- return c.WriteJSON(v)
-}
-
-// WriteJSON writes the JSON encoding of v as a message.
-//
-// See the documentation for encoding/json Marshal for details about the
-// conversion of Go values to JSON.
-func (c *Conn) WriteJSON(v interface{}) error {
- w, err := c.NextWriter(TextMessage)
- if err != nil {
- return err
- }
- err1 := json.NewEncoder(w).Encode(v)
- err2 := w.Close()
- if err1 != nil {
- return err1
- }
- return err2
-}
-
-// ReadJSON reads the next JSON-encoded message from the connection and stores
-// it in the value pointed to by v.
-//
-// Deprecated: Use c.ReadJSON instead.
-func ReadJSON(c *Conn, v interface{}) error {
- return c.ReadJSON(v)
-}
-
-// ReadJSON reads the next JSON-encoded message from the connection and stores
-// it in the value pointed to by v.
-//
-// See the documentation for the encoding/json Unmarshal function for details
-// about the conversion of JSON to a Go value.
-func (c *Conn) ReadJSON(v interface{}) error {
- _, r, err := c.NextReader()
- if err != nil {
- return err
- }
- err = json.NewDecoder(r).Decode(v)
- if err == io.EOF {
- // One value is expected in the message.
- err = io.ErrUnexpectedEOF
- }
- return err
-}
diff --git a/vendor/github.com/gorilla/websocket/mask.go b/vendor/github.com/gorilla/websocket/mask.go
deleted file mode 100644
index 577fce9ef..000000000
--- a/vendor/github.com/gorilla/websocket/mask.go
+++ /dev/null
@@ -1,54 +0,0 @@
-// Copyright 2016 The Gorilla WebSocket Authors. All rights reserved. Use of
-// this source code is governed by a BSD-style license that can be found in the
-// LICENSE file.
-
-// +build !appengine
-
-package websocket
-
-import "unsafe"
-
-const wordSize = int(unsafe.Sizeof(uintptr(0)))
-
-func maskBytes(key [4]byte, pos int, b []byte) int {
- // Mask one byte at a time for small buffers.
- if len(b) < 2*wordSize {
- for i := range b {
- b[i] ^= key[pos&3]
- pos++
- }
- return pos & 3
- }
-
- // Mask one byte at a time to word boundary.
- if n := int(uintptr(unsafe.Pointer(&b[0]))) % wordSize; n != 0 {
- n = wordSize - n
- for i := range b[:n] {
- b[i] ^= key[pos&3]
- pos++
- }
- b = b[n:]
- }
-
- // Create aligned word size key.
- var k [wordSize]byte
- for i := range k {
- k[i] = key[(pos+i)&3]
- }
- kw := *(*uintptr)(unsafe.Pointer(&k))
-
- // Mask one word at a time.
- n := (len(b) / wordSize) * wordSize
- for i := 0; i < n; i += wordSize {
- *(*uintptr)(unsafe.Pointer(uintptr(unsafe.Pointer(&b[0])) + uintptr(i))) ^= kw
- }
-
- // Mask one byte at a time for remaining bytes.
- b = b[n:]
- for i := range b {
- b[i] ^= key[pos&3]
- pos++
- }
-
- return pos & 3
-}
diff --git a/vendor/github.com/gorilla/websocket/mask_safe.go b/vendor/github.com/gorilla/websocket/mask_safe.go
deleted file mode 100644
index 2aac060e5..000000000
--- a/vendor/github.com/gorilla/websocket/mask_safe.go
+++ /dev/null
@@ -1,15 +0,0 @@
-// Copyright 2016 The Gorilla WebSocket Authors. All rights reserved. Use of
-// this source code is governed by a BSD-style license that can be found in the
-// LICENSE file.
-
-// +build appengine
-
-package websocket
-
-func maskBytes(key [4]byte, pos int, b []byte) int {
- for i := range b {
- b[i] ^= key[pos&3]
- pos++
- }
- return pos & 3
-}
diff --git a/vendor/github.com/gorilla/websocket/prepared.go b/vendor/github.com/gorilla/websocket/prepared.go
deleted file mode 100644
index 74ec565d2..000000000
--- a/vendor/github.com/gorilla/websocket/prepared.go
+++ /dev/null
@@ -1,102 +0,0 @@
-// Copyright 2017 The Gorilla WebSocket Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package websocket
-
-import (
- "bytes"
- "net"
- "sync"
- "time"
-)
-
-// PreparedMessage caches on the wire representations of a message payload.
-// Use PreparedMessage to efficiently send a message payload to multiple
-// connections. PreparedMessage is especially useful when compression is used
-// because the CPU and memory expensive compression operation can be executed
-// once for a given set of compression options.
-type PreparedMessage struct {
- messageType int
- data []byte
- mu sync.Mutex
- frames map[prepareKey]*preparedFrame
-}
-
-// prepareKey defines a unique set of options to cache prepared frames in PreparedMessage.
-type prepareKey struct {
- isServer bool
- compress bool
- compressionLevel int
-}
-
-// preparedFrame contains data in wire representation.
-type preparedFrame struct {
- once sync.Once
- data []byte
-}
-
-// NewPreparedMessage returns an initialized PreparedMessage. You can then send
-// it to connection using WritePreparedMessage method. Valid wire
-// representation will be calculated lazily only once for a set of current
-// connection options.
-func NewPreparedMessage(messageType int, data []byte) (*PreparedMessage, error) {
- pm := &PreparedMessage{
- messageType: messageType,
- frames: make(map[prepareKey]*preparedFrame),
- data: data,
- }
-
- // Prepare a plain server frame.
- _, frameData, err := pm.frame(prepareKey{isServer: true, compress: false})
- if err != nil {
- return nil, err
- }
-
- // To protect against caller modifying the data argument, remember the data
- // copied to the plain server frame.
- pm.data = frameData[len(frameData)-len(data):]
- return pm, nil
-}
-
-func (pm *PreparedMessage) frame(key prepareKey) (int, []byte, error) {
- pm.mu.Lock()
- frame, ok := pm.frames[key]
- if !ok {
- frame = &preparedFrame{}
- pm.frames[key] = frame
- }
- pm.mu.Unlock()
-
- var err error
- frame.once.Do(func() {
- // Prepare a frame using a 'fake' connection.
- // TODO: Refactor code in conn.go to allow more direct construction of
- // the frame.
- mu := make(chan bool, 1)
- mu <- true
- var nc prepareConn
- c := &Conn{
- conn: &nc,
- mu: mu,
- isServer: key.isServer,
- compressionLevel: key.compressionLevel,
- enableWriteCompression: true,
- writeBuf: make([]byte, defaultWriteBufferSize+maxFrameHeaderSize),
- }
- if key.compress {
- c.newCompressionWriter = compressNoContextTakeover
- }
- err = c.WriteMessage(pm.messageType, pm.data)
- frame.data = nc.buf.Bytes()
- })
- return pm.messageType, frame.data, err
-}
-
-type prepareConn struct {
- buf bytes.Buffer
- net.Conn
-}
-
-func (pc *prepareConn) Write(p []byte) (int, error) { return pc.buf.Write(p) }
-func (pc *prepareConn) SetWriteDeadline(t time.Time) error { return nil }
diff --git a/vendor/github.com/gorilla/websocket/proxy.go b/vendor/github.com/gorilla/websocket/proxy.go
deleted file mode 100644
index bf2478e43..000000000
--- a/vendor/github.com/gorilla/websocket/proxy.go
+++ /dev/null
@@ -1,77 +0,0 @@
-// Copyright 2017 The Gorilla WebSocket Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package websocket
-
-import (
- "bufio"
- "encoding/base64"
- "errors"
- "net"
- "net/http"
- "net/url"
- "strings"
-)
-
-type netDialerFunc func(network, addr string) (net.Conn, error)
-
-func (fn netDialerFunc) Dial(network, addr string) (net.Conn, error) {
- return fn(network, addr)
-}
-
-func init() {
- proxy_RegisterDialerType("http", func(proxyURL *url.URL, forwardDialer proxy_Dialer) (proxy_Dialer, error) {
- return &httpProxyDialer{proxyURL: proxyURL, fowardDial: forwardDialer.Dial}, nil
- })
-}
-
-type httpProxyDialer struct {
- proxyURL *url.URL
- fowardDial func(network, addr string) (net.Conn, error)
-}
-
-func (hpd *httpProxyDialer) Dial(network string, addr string) (net.Conn, error) {
- hostPort, _ := hostPortNoPort(hpd.proxyURL)
- conn, err := hpd.fowardDial(network, hostPort)
- if err != nil {
- return nil, err
- }
-
- connectHeader := make(http.Header)
- if user := hpd.proxyURL.User; user != nil {
- proxyUser := user.Username()
- if proxyPassword, passwordSet := user.Password(); passwordSet {
- credential := base64.StdEncoding.EncodeToString([]byte(proxyUser + ":" + proxyPassword))
- connectHeader.Set("Proxy-Authorization", "Basic "+credential)
- }
- }
-
- connectReq := &http.Request{
- Method: "CONNECT",
- URL: &url.URL{Opaque: addr},
- Host: addr,
- Header: connectHeader,
- }
-
- if err := connectReq.Write(conn); err != nil {
- conn.Close()
- return nil, err
- }
-
- // Read response. It's OK to use and discard buffered reader here becaue
- // the remote server does not speak until spoken to.
- br := bufio.NewReader(conn)
- resp, err := http.ReadResponse(br, connectReq)
- if err != nil {
- conn.Close()
- return nil, err
- }
-
- if resp.StatusCode != 200 {
- conn.Close()
- f := strings.SplitN(resp.Status, " ", 2)
- return nil, errors.New(f[1])
- }
- return conn, nil
-}
diff --git a/vendor/github.com/gorilla/websocket/server.go b/vendor/github.com/gorilla/websocket/server.go
deleted file mode 100644
index a761824b3..000000000
--- a/vendor/github.com/gorilla/websocket/server.go
+++ /dev/null
@@ -1,363 +0,0 @@
-// Copyright 2013 The Gorilla WebSocket Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package websocket
-
-import (
- "bufio"
- "errors"
- "io"
- "net/http"
- "net/url"
- "strings"
- "time"
-)
-
-// HandshakeError describes an error with the handshake from the peer.
-type HandshakeError struct {
- message string
-}
-
-func (e HandshakeError) Error() string { return e.message }
-
-// Upgrader specifies parameters for upgrading an HTTP connection to a
-// WebSocket connection.
-type Upgrader struct {
- // HandshakeTimeout specifies the duration for the handshake to complete.
- HandshakeTimeout time.Duration
-
- // ReadBufferSize and WriteBufferSize specify I/O buffer sizes. If a buffer
- // size is zero, then buffers allocated by the HTTP server are used. The
- // I/O buffer sizes do not limit the size of the messages that can be sent
- // or received.
- ReadBufferSize, WriteBufferSize int
-
- // WriteBufferPool is a pool of buffers for write operations. If the value
- // is not set, then write buffers are allocated to the connection for the
- // lifetime of the connection.
- //
- // A pool is most useful when the application has a modest volume of writes
- // across a large number of connections.
- //
- // Applications should use a single pool for each unique value of
- // WriteBufferSize.
- WriteBufferPool BufferPool
-
- // Subprotocols specifies the server's supported protocols in order of
- // preference. If this field is not nil, then the Upgrade method negotiates a
- // subprotocol by selecting the first match in this list with a protocol
- // requested by the client. If there's no match, then no protocol is
- // negotiated (the Sec-Websocket-Protocol header is not included in the
- // handshake response).
- Subprotocols []string
-
- // Error specifies the function for generating HTTP error responses. If Error
- // is nil, then http.Error is used to generate the HTTP response.
- Error func(w http.ResponseWriter, r *http.Request, status int, reason error)
-
- // CheckOrigin returns true if the request Origin header is acceptable. If
- // CheckOrigin is nil, then a safe default is used: return false if the
- // Origin request header is present and the origin host is not equal to
- // request Host header.
- //
- // A CheckOrigin function should carefully validate the request origin to
- // prevent cross-site request forgery.
- CheckOrigin func(r *http.Request) bool
-
- // EnableCompression specify if the server should attempt to negotiate per
- // message compression (RFC 7692). Setting this value to true does not
- // guarantee that compression will be supported. Currently only "no context
- // takeover" modes are supported.
- EnableCompression bool
-}
-
-func (u *Upgrader) returnError(w http.ResponseWriter, r *http.Request, status int, reason string) (*Conn, error) {
- err := HandshakeError{reason}
- if u.Error != nil {
- u.Error(w, r, status, err)
- } else {
- w.Header().Set("Sec-Websocket-Version", "13")
- http.Error(w, http.StatusText(status), status)
- }
- return nil, err
-}
-
-// checkSameOrigin returns true if the origin is not set or is equal to the request host.
-func checkSameOrigin(r *http.Request) bool {
- origin := r.Header["Origin"]
- if len(origin) == 0 {
- return true
- }
- u, err := url.Parse(origin[0])
- if err != nil {
- return false
- }
- return equalASCIIFold(u.Host, r.Host)
-}
-
-func (u *Upgrader) selectSubprotocol(r *http.Request, responseHeader http.Header) string {
- if u.Subprotocols != nil {
- clientProtocols := Subprotocols(r)
- for _, serverProtocol := range u.Subprotocols {
- for _, clientProtocol := range clientProtocols {
- if clientProtocol == serverProtocol {
- return clientProtocol
- }
- }
- }
- } else if responseHeader != nil {
- return responseHeader.Get("Sec-Websocket-Protocol")
- }
- return ""
-}
-
-// Upgrade upgrades the HTTP server connection to the WebSocket protocol.
-//
-// The responseHeader is included in the response to the client's upgrade
-// request. Use the responseHeader to specify cookies (Set-Cookie) and the
-// application negotiated subprotocol (Sec-WebSocket-Protocol).
-//
-// If the upgrade fails, then Upgrade replies to the client with an HTTP error
-// response.
-func (u *Upgrader) Upgrade(w http.ResponseWriter, r *http.Request, responseHeader http.Header) (*Conn, error) {
- const badHandshake = "websocket: the client is not using the websocket protocol: "
-
- if !tokenListContainsValue(r.Header, "Connection", "upgrade") {
- return u.returnError(w, r, http.StatusBadRequest, badHandshake+"'upgrade' token not found in 'Connection' header")
- }
-
- if !tokenListContainsValue(r.Header, "Upgrade", "websocket") {
- return u.returnError(w, r, http.StatusBadRequest, badHandshake+"'websocket' token not found in 'Upgrade' header")
- }
-
- if r.Method != "GET" {
- return u.returnError(w, r, http.StatusMethodNotAllowed, badHandshake+"request method is not GET")
- }
-
- if !tokenListContainsValue(r.Header, "Sec-Websocket-Version", "13") {
- return u.returnError(w, r, http.StatusBadRequest, "websocket: unsupported version: 13 not found in 'Sec-Websocket-Version' header")
- }
-
- if _, ok := responseHeader["Sec-Websocket-Extensions"]; ok {
- return u.returnError(w, r, http.StatusInternalServerError, "websocket: application specific 'Sec-WebSocket-Extensions' headers are unsupported")
- }
-
- checkOrigin := u.CheckOrigin
- if checkOrigin == nil {
- checkOrigin = checkSameOrigin
- }
- if !checkOrigin(r) {
- return u.returnError(w, r, http.StatusForbidden, "websocket: request origin not allowed by Upgrader.CheckOrigin")
- }
-
- challengeKey := r.Header.Get("Sec-Websocket-Key")
- if challengeKey == "" {
- return u.returnError(w, r, http.StatusBadRequest, "websocket: not a websocket handshake: `Sec-WebSocket-Key' header is missing or blank")
- }
-
- subprotocol := u.selectSubprotocol(r, responseHeader)
-
- // Negotiate PMCE
- var compress bool
- if u.EnableCompression {
- for _, ext := range parseExtensions(r.Header) {
- if ext[""] != "permessage-deflate" {
- continue
- }
- compress = true
- break
- }
- }
-
- h, ok := w.(http.Hijacker)
- if !ok {
- return u.returnError(w, r, http.StatusInternalServerError, "websocket: response does not implement http.Hijacker")
- }
- var brw *bufio.ReadWriter
- netConn, brw, err := h.Hijack()
- if err != nil {
- return u.returnError(w, r, http.StatusInternalServerError, err.Error())
- }
-
- if brw.Reader.Buffered() > 0 {
- netConn.Close()
- return nil, errors.New("websocket: client sent data before handshake is complete")
- }
-
- var br *bufio.Reader
- if u.ReadBufferSize == 0 && bufioReaderSize(netConn, brw.Reader) > 256 {
- // Reuse hijacked buffered reader as connection reader.
- br = brw.Reader
- }
-
- buf := bufioWriterBuffer(netConn, brw.Writer)
-
- var writeBuf []byte
- if u.WriteBufferPool == nil && u.WriteBufferSize == 0 && len(buf) >= maxFrameHeaderSize+256 {
- // Reuse hijacked write buffer as connection buffer.
- writeBuf = buf
- }
-
- c := newConn(netConn, true, u.ReadBufferSize, u.WriteBufferSize, u.WriteBufferPool, br, writeBuf)
- c.subprotocol = subprotocol
-
- if compress {
- c.newCompressionWriter = compressNoContextTakeover
- c.newDecompressionReader = decompressNoContextTakeover
- }
-
- // Use larger of hijacked buffer and connection write buffer for header.
- p := buf
- if len(c.writeBuf) > len(p) {
- p = c.writeBuf
- }
- p = p[:0]
-
- p = append(p, "HTTP/1.1 101 Switching Protocols\r\nUpgrade: websocket\r\nConnection: Upgrade\r\nSec-WebSocket-Accept: "...)
- p = append(p, computeAcceptKey(challengeKey)...)
- p = append(p, "\r\n"...)
- if c.subprotocol != "" {
- p = append(p, "Sec-WebSocket-Protocol: "...)
- p = append(p, c.subprotocol...)
- p = append(p, "\r\n"...)
- }
- if compress {
- p = append(p, "Sec-WebSocket-Extensions: permessage-deflate; server_no_context_takeover; client_no_context_takeover\r\n"...)
- }
- for k, vs := range responseHeader {
- if k == "Sec-Websocket-Protocol" {
- continue
- }
- for _, v := range vs {
- p = append(p, k...)
- p = append(p, ": "...)
- for i := 0; i < len(v); i++ {
- b := v[i]
- if b <= 31 {
- // prevent response splitting.
- b = ' '
- }
- p = append(p, b)
- }
- p = append(p, "\r\n"...)
- }
- }
- p = append(p, "\r\n"...)
-
- // Clear deadlines set by HTTP server.
- netConn.SetDeadline(time.Time{})
-
- if u.HandshakeTimeout > 0 {
- netConn.SetWriteDeadline(time.Now().Add(u.HandshakeTimeout))
- }
- if _, err = netConn.Write(p); err != nil {
- netConn.Close()
- return nil, err
- }
- if u.HandshakeTimeout > 0 {
- netConn.SetWriteDeadline(time.Time{})
- }
-
- return c, nil
-}
-
-// Upgrade upgrades the HTTP server connection to the WebSocket protocol.
-//
-// Deprecated: Use websocket.Upgrader instead.
-//
-// Upgrade does not perform origin checking. The application is responsible for
-// checking the Origin header before calling Upgrade. An example implementation
-// of the same origin policy check is:
-//
-// if req.Header.Get("Origin") != "http://"+req.Host {
-// http.Error(w, "Origin not allowed", http.StatusForbidden)
-// return
-// }
-//
-// If the endpoint supports subprotocols, then the application is responsible
-// for negotiating the protocol used on the connection. Use the Subprotocols()
-// function to get the subprotocols requested by the client. Use the
-// Sec-Websocket-Protocol response header to specify the subprotocol selected
-// by the application.
-//
-// The responseHeader is included in the response to the client's upgrade
-// request. Use the responseHeader to specify cookies (Set-Cookie) and the
-// negotiated subprotocol (Sec-Websocket-Protocol).
-//
-// The connection buffers IO to the underlying network connection. The
-// readBufSize and writeBufSize parameters specify the size of the buffers to
-// use. Messages can be larger than the buffers.
-//
-// If the request is not a valid WebSocket handshake, then Upgrade returns an
-// error of type HandshakeError. Applications should handle this error by
-// replying to the client with an HTTP error response.
-func Upgrade(w http.ResponseWriter, r *http.Request, responseHeader http.Header, readBufSize, writeBufSize int) (*Conn, error) {
- u := Upgrader{ReadBufferSize: readBufSize, WriteBufferSize: writeBufSize}
- u.Error = func(w http.ResponseWriter, r *http.Request, status int, reason error) {
- // don't return errors to maintain backwards compatibility
- }
- u.CheckOrigin = func(r *http.Request) bool {
- // allow all connections by default
- return true
- }
- return u.Upgrade(w, r, responseHeader)
-}
-
-// Subprotocols returns the subprotocols requested by the client in the
-// Sec-Websocket-Protocol header.
-func Subprotocols(r *http.Request) []string {
- h := strings.TrimSpace(r.Header.Get("Sec-Websocket-Protocol"))
- if h == "" {
- return nil
- }
- protocols := strings.Split(h, ",")
- for i := range protocols {
- protocols[i] = strings.TrimSpace(protocols[i])
- }
- return protocols
-}
-
-// IsWebSocketUpgrade returns true if the client requested upgrade to the
-// WebSocket protocol.
-func IsWebSocketUpgrade(r *http.Request) bool {
- return tokenListContainsValue(r.Header, "Connection", "upgrade") &&
- tokenListContainsValue(r.Header, "Upgrade", "websocket")
-}
-
-// bufioReaderSize size returns the size of a bufio.Reader.
-func bufioReaderSize(originalReader io.Reader, br *bufio.Reader) int {
- // This code assumes that peek on a reset reader returns
- // bufio.Reader.buf[:0].
- // TODO: Use bufio.Reader.Size() after Go 1.10
- br.Reset(originalReader)
- if p, err := br.Peek(0); err == nil {
- return cap(p)
- }
- return 0
-}
-
-// writeHook is an io.Writer that records the last slice passed to it vio
-// io.Writer.Write.
-type writeHook struct {
- p []byte
-}
-
-func (wh *writeHook) Write(p []byte) (int, error) {
- wh.p = p
- return len(p), nil
-}
-
-// bufioWriterBuffer grabs the buffer from a bufio.Writer.
-func bufioWriterBuffer(originalWriter io.Writer, bw *bufio.Writer) []byte {
- // This code assumes that bufio.Writer.buf[:1] is passed to the
- // bufio.Writer's underlying writer.
- var wh writeHook
- bw.Reset(&wh)
- bw.WriteByte(0)
- bw.Flush()
-
- bw.Reset(originalWriter)
-
- return wh.p[:cap(wh.p)]
-}
diff --git a/vendor/github.com/gorilla/websocket/trace.go b/vendor/github.com/gorilla/websocket/trace.go
deleted file mode 100644
index 834f122a0..000000000
--- a/vendor/github.com/gorilla/websocket/trace.go
+++ /dev/null
@@ -1,19 +0,0 @@
-// +build go1.8
-
-package websocket
-
-import (
- "crypto/tls"
- "net/http/httptrace"
-)
-
-func doHandshakeWithTrace(trace *httptrace.ClientTrace, tlsConn *tls.Conn, cfg *tls.Config) error {
- if trace.TLSHandshakeStart != nil {
- trace.TLSHandshakeStart()
- }
- err := doHandshake(tlsConn, cfg)
- if trace.TLSHandshakeDone != nil {
- trace.TLSHandshakeDone(tlsConn.ConnectionState(), err)
- }
- return err
-}
diff --git a/vendor/github.com/gorilla/websocket/trace_17.go b/vendor/github.com/gorilla/websocket/trace_17.go
deleted file mode 100644
index 77d05a0b5..000000000
--- a/vendor/github.com/gorilla/websocket/trace_17.go
+++ /dev/null
@@ -1,12 +0,0 @@
-// +build !go1.8
-
-package websocket
-
-import (
- "crypto/tls"
- "net/http/httptrace"
-)
-
-func doHandshakeWithTrace(trace *httptrace.ClientTrace, tlsConn *tls.Conn, cfg *tls.Config) error {
- return doHandshake(tlsConn, cfg)
-}
diff --git a/vendor/github.com/gorilla/websocket/util.go b/vendor/github.com/gorilla/websocket/util.go
deleted file mode 100644
index 354001e1e..000000000
--- a/vendor/github.com/gorilla/websocket/util.go
+++ /dev/null
@@ -1,237 +0,0 @@
-// Copyright 2013 The Gorilla WebSocket Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package websocket
-
-import (
- "crypto/rand"
- "crypto/sha1"
- "encoding/base64"
- "io"
- "net/http"
- "strings"
- "unicode/utf8"
-)
-
-var keyGUID = []byte("258EAFA5-E914-47DA-95CA-C5AB0DC85B11")
-
-func computeAcceptKey(challengeKey string) string {
- h := sha1.New()
- h.Write([]byte(challengeKey))
- h.Write(keyGUID)
- return base64.StdEncoding.EncodeToString(h.Sum(nil))
-}
-
-func generateChallengeKey() (string, error) {
- p := make([]byte, 16)
- if _, err := io.ReadFull(rand.Reader, p); err != nil {
- return "", err
- }
- return base64.StdEncoding.EncodeToString(p), nil
-}
-
-// Octet types from RFC 2616.
-var octetTypes [256]byte
-
-const (
- isTokenOctet = 1 << iota
- isSpaceOctet
-)
-
-func init() {
- // From RFC 2616
- //
- // OCTET =
- // CHAR =
- // CTL =
- // CR =
- // LF =
- // SP =
- // HT =
- // <"> =
- // CRLF = CR LF
- // LWS = [CRLF] 1*( SP | HT )
- // TEXT =
- // separators = "(" | ")" | "<" | ">" | "@" | "," | ";" | ":" | "\" | <">
- // | "/" | "[" | "]" | "?" | "=" | "{" | "}" | SP | HT
- // token = 1*
- // qdtext = >
-
- for c := 0; c < 256; c++ {
- var t byte
- isCtl := c <= 31 || c == 127
- isChar := 0 <= c && c <= 127
- isSeparator := strings.IndexRune(" \t\"(),/:;<=>?@[]\\{}", rune(c)) >= 0
- if strings.IndexRune(" \t\r\n", rune(c)) >= 0 {
- t |= isSpaceOctet
- }
- if isChar && !isCtl && !isSeparator {
- t |= isTokenOctet
- }
- octetTypes[c] = t
- }
-}
-
-func skipSpace(s string) (rest string) {
- i := 0
- for ; i < len(s); i++ {
- if octetTypes[s[i]]&isSpaceOctet == 0 {
- break
- }
- }
- return s[i:]
-}
-
-func nextToken(s string) (token, rest string) {
- i := 0
- for ; i < len(s); i++ {
- if octetTypes[s[i]]&isTokenOctet == 0 {
- break
- }
- }
- return s[:i], s[i:]
-}
-
-func nextTokenOrQuoted(s string) (value string, rest string) {
- if !strings.HasPrefix(s, "\"") {
- return nextToken(s)
- }
- s = s[1:]
- for i := 0; i < len(s); i++ {
- switch s[i] {
- case '"':
- return s[:i], s[i+1:]
- case '\\':
- p := make([]byte, len(s)-1)
- j := copy(p, s[:i])
- escape := true
- for i = i + 1; i < len(s); i++ {
- b := s[i]
- switch {
- case escape:
- escape = false
- p[j] = b
- j++
- case b == '\\':
- escape = true
- case b == '"':
- return string(p[:j]), s[i+1:]
- default:
- p[j] = b
- j++
- }
- }
- return "", ""
- }
- }
- return "", ""
-}
-
-// equalASCIIFold returns true if s is equal to t with ASCII case folding.
-func equalASCIIFold(s, t string) bool {
- for s != "" && t != "" {
- sr, size := utf8.DecodeRuneInString(s)
- s = s[size:]
- tr, size := utf8.DecodeRuneInString(t)
- t = t[size:]
- if sr == tr {
- continue
- }
- if 'A' <= sr && sr <= 'Z' {
- sr = sr + 'a' - 'A'
- }
- if 'A' <= tr && tr <= 'Z' {
- tr = tr + 'a' - 'A'
- }
- if sr != tr {
- return false
- }
- }
- return s == t
-}
-
-// tokenListContainsValue returns true if the 1#token header with the given
-// name contains a token equal to value with ASCII case folding.
-func tokenListContainsValue(header http.Header, name string, value string) bool {
-headers:
- for _, s := range header[name] {
- for {
- var t string
- t, s = nextToken(skipSpace(s))
- if t == "" {
- continue headers
- }
- s = skipSpace(s)
- if s != "" && s[0] != ',' {
- continue headers
- }
- if equalASCIIFold(t, value) {
- return true
- }
- if s == "" {
- continue headers
- }
- s = s[1:]
- }
- }
- return false
-}
-
-// parseExtensions parses WebSocket extensions from a header.
-func parseExtensions(header http.Header) []map[string]string {
- // From RFC 6455:
- //
- // Sec-WebSocket-Extensions = extension-list
- // extension-list = 1#extension
- // extension = extension-token *( ";" extension-param )
- // extension-token = registered-token
- // registered-token = token
- // extension-param = token [ "=" (token | quoted-string) ]
- // ;When using the quoted-string syntax variant, the value
- // ;after quoted-string unescaping MUST conform to the
- // ;'token' ABNF.
-
- var result []map[string]string
-headers:
- for _, s := range header["Sec-Websocket-Extensions"] {
- for {
- var t string
- t, s = nextToken(skipSpace(s))
- if t == "" {
- continue headers
- }
- ext := map[string]string{"": t}
- for {
- s = skipSpace(s)
- if !strings.HasPrefix(s, ";") {
- break
- }
- var k string
- k, s = nextToken(skipSpace(s[1:]))
- if k == "" {
- continue headers
- }
- s = skipSpace(s)
- var v string
- if strings.HasPrefix(s, "=") {
- v, s = nextTokenOrQuoted(skipSpace(s[1:]))
- s = skipSpace(s)
- }
- if s != "" && s[0] != ',' && s[0] != ';' {
- continue headers
- }
- ext[k] = v
- }
- if s != "" && s[0] != ',' {
- continue headers
- }
- result = append(result, ext)
- if s == "" {
- continue headers
- }
- s = s[1:]
- }
- }
- return result
-}
diff --git a/vendor/github.com/gorilla/websocket/x_net_proxy.go b/vendor/github.com/gorilla/websocket/x_net_proxy.go
deleted file mode 100644
index 2e668f6b8..000000000
--- a/vendor/github.com/gorilla/websocket/x_net_proxy.go
+++ /dev/null
@@ -1,473 +0,0 @@
-// Code generated by golang.org/x/tools/cmd/bundle. DO NOT EDIT.
-//go:generate bundle -o x_net_proxy.go golang.org/x/net/proxy
-
-// Package proxy provides support for a variety of protocols to proxy network
-// data.
-//
-
-package websocket
-
-import (
- "errors"
- "io"
- "net"
- "net/url"
- "os"
- "strconv"
- "strings"
- "sync"
-)
-
-type proxy_direct struct{}
-
-// Direct is a direct proxy: one that makes network connections directly.
-var proxy_Direct = proxy_direct{}
-
-func (proxy_direct) Dial(network, addr string) (net.Conn, error) {
- return net.Dial(network, addr)
-}
-
-// A PerHost directs connections to a default Dialer unless the host name
-// requested matches one of a number of exceptions.
-type proxy_PerHost struct {
- def, bypass proxy_Dialer
-
- bypassNetworks []*net.IPNet
- bypassIPs []net.IP
- bypassZones []string
- bypassHosts []string
-}
-
-// NewPerHost returns a PerHost Dialer that directs connections to either
-// defaultDialer or bypass, depending on whether the connection matches one of
-// the configured rules.
-func proxy_NewPerHost(defaultDialer, bypass proxy_Dialer) *proxy_PerHost {
- return &proxy_PerHost{
- def: defaultDialer,
- bypass: bypass,
- }
-}
-
-// Dial connects to the address addr on the given network through either
-// defaultDialer or bypass.
-func (p *proxy_PerHost) Dial(network, addr string) (c net.Conn, err error) {
- host, _, err := net.SplitHostPort(addr)
- if err != nil {
- return nil, err
- }
-
- return p.dialerForRequest(host).Dial(network, addr)
-}
-
-func (p *proxy_PerHost) dialerForRequest(host string) proxy_Dialer {
- if ip := net.ParseIP(host); ip != nil {
- for _, net := range p.bypassNetworks {
- if net.Contains(ip) {
- return p.bypass
- }
- }
- for _, bypassIP := range p.bypassIPs {
- if bypassIP.Equal(ip) {
- return p.bypass
- }
- }
- return p.def
- }
-
- for _, zone := range p.bypassZones {
- if strings.HasSuffix(host, zone) {
- return p.bypass
- }
- if host == zone[1:] {
- // For a zone ".example.com", we match "example.com"
- // too.
- return p.bypass
- }
- }
- for _, bypassHost := range p.bypassHosts {
- if bypassHost == host {
- return p.bypass
- }
- }
- return p.def
-}
-
-// AddFromString parses a string that contains comma-separated values
-// specifying hosts that should use the bypass proxy. Each value is either an
-// IP address, a CIDR range, a zone (*.example.com) or a host name
-// (localhost). A best effort is made to parse the string and errors are
-// ignored.
-func (p *proxy_PerHost) AddFromString(s string) {
- hosts := strings.Split(s, ",")
- for _, host := range hosts {
- host = strings.TrimSpace(host)
- if len(host) == 0 {
- continue
- }
- if strings.Contains(host, "/") {
- // We assume that it's a CIDR address like 127.0.0.0/8
- if _, net, err := net.ParseCIDR(host); err == nil {
- p.AddNetwork(net)
- }
- continue
- }
- if ip := net.ParseIP(host); ip != nil {
- p.AddIP(ip)
- continue
- }
- if strings.HasPrefix(host, "*.") {
- p.AddZone(host[1:])
- continue
- }
- p.AddHost(host)
- }
-}
-
-// AddIP specifies an IP address that will use the bypass proxy. Note that
-// this will only take effect if a literal IP address is dialed. A connection
-// to a named host will never match an IP.
-func (p *proxy_PerHost) AddIP(ip net.IP) {
- p.bypassIPs = append(p.bypassIPs, ip)
-}
-
-// AddNetwork specifies an IP range that will use the bypass proxy. Note that
-// this will only take effect if a literal IP address is dialed. A connection
-// to a named host will never match.
-func (p *proxy_PerHost) AddNetwork(net *net.IPNet) {
- p.bypassNetworks = append(p.bypassNetworks, net)
-}
-
-// AddZone specifies a DNS suffix that will use the bypass proxy. A zone of
-// "example.com" matches "example.com" and all of its subdomains.
-func (p *proxy_PerHost) AddZone(zone string) {
- if strings.HasSuffix(zone, ".") {
- zone = zone[:len(zone)-1]
- }
- if !strings.HasPrefix(zone, ".") {
- zone = "." + zone
- }
- p.bypassZones = append(p.bypassZones, zone)
-}
-
-// AddHost specifies a host name that will use the bypass proxy.
-func (p *proxy_PerHost) AddHost(host string) {
- if strings.HasSuffix(host, ".") {
- host = host[:len(host)-1]
- }
- p.bypassHosts = append(p.bypassHosts, host)
-}
-
-// A Dialer is a means to establish a connection.
-type proxy_Dialer interface {
- // Dial connects to the given address via the proxy.
- Dial(network, addr string) (c net.Conn, err error)
-}
-
-// Auth contains authentication parameters that specific Dialers may require.
-type proxy_Auth struct {
- User, Password string
-}
-
-// FromEnvironment returns the dialer specified by the proxy related variables in
-// the environment.
-func proxy_FromEnvironment() proxy_Dialer {
- allProxy := proxy_allProxyEnv.Get()
- if len(allProxy) == 0 {
- return proxy_Direct
- }
-
- proxyURL, err := url.Parse(allProxy)
- if err != nil {
- return proxy_Direct
- }
- proxy, err := proxy_FromURL(proxyURL, proxy_Direct)
- if err != nil {
- return proxy_Direct
- }
-
- noProxy := proxy_noProxyEnv.Get()
- if len(noProxy) == 0 {
- return proxy
- }
-
- perHost := proxy_NewPerHost(proxy, proxy_Direct)
- perHost.AddFromString(noProxy)
- return perHost
-}
-
-// proxySchemes is a map from URL schemes to a function that creates a Dialer
-// from a URL with such a scheme.
-var proxy_proxySchemes map[string]func(*url.URL, proxy_Dialer) (proxy_Dialer, error)
-
-// RegisterDialerType takes a URL scheme and a function to generate Dialers from
-// a URL with that scheme and a forwarding Dialer. Registered schemes are used
-// by FromURL.
-func proxy_RegisterDialerType(scheme string, f func(*url.URL, proxy_Dialer) (proxy_Dialer, error)) {
- if proxy_proxySchemes == nil {
- proxy_proxySchemes = make(map[string]func(*url.URL, proxy_Dialer) (proxy_Dialer, error))
- }
- proxy_proxySchemes[scheme] = f
-}
-
-// FromURL returns a Dialer given a URL specification and an underlying
-// Dialer for it to make network requests.
-func proxy_FromURL(u *url.URL, forward proxy_Dialer) (proxy_Dialer, error) {
- var auth *proxy_Auth
- if u.User != nil {
- auth = new(proxy_Auth)
- auth.User = u.User.Username()
- if p, ok := u.User.Password(); ok {
- auth.Password = p
- }
- }
-
- switch u.Scheme {
- case "socks5":
- return proxy_SOCKS5("tcp", u.Host, auth, forward)
- }
-
- // If the scheme doesn't match any of the built-in schemes, see if it
- // was registered by another package.
- if proxy_proxySchemes != nil {
- if f, ok := proxy_proxySchemes[u.Scheme]; ok {
- return f(u, forward)
- }
- }
-
- return nil, errors.New("proxy: unknown scheme: " + u.Scheme)
-}
-
-var (
- proxy_allProxyEnv = &proxy_envOnce{
- names: []string{"ALL_PROXY", "all_proxy"},
- }
- proxy_noProxyEnv = &proxy_envOnce{
- names: []string{"NO_PROXY", "no_proxy"},
- }
-)
-
-// envOnce looks up an environment variable (optionally by multiple
-// names) once. It mitigates expensive lookups on some platforms
-// (e.g. Windows).
-// (Borrowed from net/http/transport.go)
-type proxy_envOnce struct {
- names []string
- once sync.Once
- val string
-}
-
-func (e *proxy_envOnce) Get() string {
- e.once.Do(e.init)
- return e.val
-}
-
-func (e *proxy_envOnce) init() {
- for _, n := range e.names {
- e.val = os.Getenv(n)
- if e.val != "" {
- return
- }
- }
-}
-
-// SOCKS5 returns a Dialer that makes SOCKSv5 connections to the given address
-// with an optional username and password. See RFC 1928 and RFC 1929.
-func proxy_SOCKS5(network, addr string, auth *proxy_Auth, forward proxy_Dialer) (proxy_Dialer, error) {
- s := &proxy_socks5{
- network: network,
- addr: addr,
- forward: forward,
- }
- if auth != nil {
- s.user = auth.User
- s.password = auth.Password
- }
-
- return s, nil
-}
-
-type proxy_socks5 struct {
- user, password string
- network, addr string
- forward proxy_Dialer
-}
-
-const proxy_socks5Version = 5
-
-const (
- proxy_socks5AuthNone = 0
- proxy_socks5AuthPassword = 2
-)
-
-const proxy_socks5Connect = 1
-
-const (
- proxy_socks5IP4 = 1
- proxy_socks5Domain = 3
- proxy_socks5IP6 = 4
-)
-
-var proxy_socks5Errors = []string{
- "",
- "general failure",
- "connection forbidden",
- "network unreachable",
- "host unreachable",
- "connection refused",
- "TTL expired",
- "command not supported",
- "address type not supported",
-}
-
-// Dial connects to the address addr on the given network via the SOCKS5 proxy.
-func (s *proxy_socks5) Dial(network, addr string) (net.Conn, error) {
- switch network {
- case "tcp", "tcp6", "tcp4":
- default:
- return nil, errors.New("proxy: no support for SOCKS5 proxy connections of type " + network)
- }
-
- conn, err := s.forward.Dial(s.network, s.addr)
- if err != nil {
- return nil, err
- }
- if err := s.connect(conn, addr); err != nil {
- conn.Close()
- return nil, err
- }
- return conn, nil
-}
-
-// connect takes an existing connection to a socks5 proxy server,
-// and commands the server to extend that connection to target,
-// which must be a canonical address with a host and port.
-func (s *proxy_socks5) connect(conn net.Conn, target string) error {
- host, portStr, err := net.SplitHostPort(target)
- if err != nil {
- return err
- }
-
- port, err := strconv.Atoi(portStr)
- if err != nil {
- return errors.New("proxy: failed to parse port number: " + portStr)
- }
- if port < 1 || port > 0xffff {
- return errors.New("proxy: port number out of range: " + portStr)
- }
-
- // the size here is just an estimate
- buf := make([]byte, 0, 6+len(host))
-
- buf = append(buf, proxy_socks5Version)
- if len(s.user) > 0 && len(s.user) < 256 && len(s.password) < 256 {
- buf = append(buf, 2 /* num auth methods */, proxy_socks5AuthNone, proxy_socks5AuthPassword)
- } else {
- buf = append(buf, 1 /* num auth methods */, proxy_socks5AuthNone)
- }
-
- if _, err := conn.Write(buf); err != nil {
- return errors.New("proxy: failed to write greeting to SOCKS5 proxy at " + s.addr + ": " + err.Error())
- }
-
- if _, err := io.ReadFull(conn, buf[:2]); err != nil {
- return errors.New("proxy: failed to read greeting from SOCKS5 proxy at " + s.addr + ": " + err.Error())
- }
- if buf[0] != 5 {
- return errors.New("proxy: SOCKS5 proxy at " + s.addr + " has unexpected version " + strconv.Itoa(int(buf[0])))
- }
- if buf[1] == 0xff {
- return errors.New("proxy: SOCKS5 proxy at " + s.addr + " requires authentication")
- }
-
- // See RFC 1929
- if buf[1] == proxy_socks5AuthPassword {
- buf = buf[:0]
- buf = append(buf, 1 /* password protocol version */)
- buf = append(buf, uint8(len(s.user)))
- buf = append(buf, s.user...)
- buf = append(buf, uint8(len(s.password)))
- buf = append(buf, s.password...)
-
- if _, err := conn.Write(buf); err != nil {
- return errors.New("proxy: failed to write authentication request to SOCKS5 proxy at " + s.addr + ": " + err.Error())
- }
-
- if _, err := io.ReadFull(conn, buf[:2]); err != nil {
- return errors.New("proxy: failed to read authentication reply from SOCKS5 proxy at " + s.addr + ": " + err.Error())
- }
-
- if buf[1] != 0 {
- return errors.New("proxy: SOCKS5 proxy at " + s.addr + " rejected username/password")
- }
- }
-
- buf = buf[:0]
- buf = append(buf, proxy_socks5Version, proxy_socks5Connect, 0 /* reserved */)
-
- if ip := net.ParseIP(host); ip != nil {
- if ip4 := ip.To4(); ip4 != nil {
- buf = append(buf, proxy_socks5IP4)
- ip = ip4
- } else {
- buf = append(buf, proxy_socks5IP6)
- }
- buf = append(buf, ip...)
- } else {
- if len(host) > 255 {
- return errors.New("proxy: destination host name too long: " + host)
- }
- buf = append(buf, proxy_socks5Domain)
- buf = append(buf, byte(len(host)))
- buf = append(buf, host...)
- }
- buf = append(buf, byte(port>>8), byte(port))
-
- if _, err := conn.Write(buf); err != nil {
- return errors.New("proxy: failed to write connect request to SOCKS5 proxy at " + s.addr + ": " + err.Error())
- }
-
- if _, err := io.ReadFull(conn, buf[:4]); err != nil {
- return errors.New("proxy: failed to read connect reply from SOCKS5 proxy at " + s.addr + ": " + err.Error())
- }
-
- failure := "unknown error"
- if int(buf[1]) < len(proxy_socks5Errors) {
- failure = proxy_socks5Errors[buf[1]]
- }
-
- if len(failure) > 0 {
- return errors.New("proxy: SOCKS5 proxy at " + s.addr + " failed to connect: " + failure)
- }
-
- bytesToDiscard := 0
- switch buf[3] {
- case proxy_socks5IP4:
- bytesToDiscard = net.IPv4len
- case proxy_socks5IP6:
- bytesToDiscard = net.IPv6len
- case proxy_socks5Domain:
- _, err := io.ReadFull(conn, buf[:1])
- if err != nil {
- return errors.New("proxy: failed to read domain length from SOCKS5 proxy at " + s.addr + ": " + err.Error())
- }
- bytesToDiscard = int(buf[0])
- default:
- return errors.New("proxy: got unknown address type " + strconv.Itoa(int(buf[3])) + " from SOCKS5 proxy at " + s.addr)
- }
-
- if cap(buf) < bytesToDiscard {
- buf = make([]byte, bytesToDiscard)
- } else {
- buf = buf[:bytesToDiscard]
- }
- if _, err := io.ReadFull(conn, buf); err != nil {
- return errors.New("proxy: failed to read address from SOCKS5 proxy at " + s.addr + ": " + err.Error())
- }
-
- // Also need to discard the port number
- if _, err := io.ReadFull(conn, buf[:2]); err != nil {
- return errors.New("proxy: failed to read port from SOCKS5 proxy at " + s.addr + ": " + err.Error())
- }
-
- return nil
-}
diff --git a/vendor/github.com/h2non/filetype/.editorconfig b/vendor/github.com/h2non/filetype/.editorconfig
deleted file mode 100644
index 000dc0a7a..000000000
--- a/vendor/github.com/h2non/filetype/.editorconfig
+++ /dev/null
@@ -1,12 +0,0 @@
-root = true
-
-[*]
-indent_style = tabs
-indent_size = 2
-end_of_line = lf
-charset = utf-8
-trim_trailing_whitespace = true
-insert_final_newline = true
-
-[*.md]
-trim_trailing_whitespace = false
diff --git a/vendor/github.com/h2non/filetype/.gitignore b/vendor/github.com/h2non/filetype/.gitignore
deleted file mode 100644
index 6fefe6cce..000000000
--- a/vendor/github.com/h2non/filetype/.gitignore
+++ /dev/null
@@ -1,2 +0,0 @@
-bin
-.DS_Store
diff --git a/vendor/github.com/h2non/filetype/.travis.yml b/vendor/github.com/h2non/filetype/.travis.yml
deleted file mode 100644
index 370dc0472..000000000
--- a/vendor/github.com/h2non/filetype/.travis.yml
+++ /dev/null
@@ -1,15 +0,0 @@
-language: go
-
-go:
- - "1.11"
- - "1.10"
- - "tip"
-
-before_install:
- - go get -u -v golang.org/x/lint/golint
-
-script:
- - diff -u <(echo -n) <(gofmt -s -d ./)
- - diff -u <(echo -n) <(go vet ./...)
- - diff -u <(echo -n) <(golint)
- - go test -v -race ./...
diff --git a/vendor/github.com/h2non/filetype/History.md b/vendor/github.com/h2non/filetype/History.md
deleted file mode 100644
index 3c02be1fc..000000000
--- a/vendor/github.com/h2non/filetype/History.md
+++ /dev/null
@@ -1,109 +0,0 @@
-
-v1.0.8 / 2019-02-10
-===================
-
- * refactor(images): heic -> heif
- * feat(docs): add heif format
- * Merge pull request #60 from rikonor/master
- * add heif/heic support
- * fix(docs): dicom -> dcm
- * feat: add dicom type
- * Merge pull request #58 from Fentonz/master
- * Merge pull request #59 from kmanley/master
- * fix example; related to h2non/filetype#43
- * Added DICOM type to archive
-
-
-v1.0.7 / 2019-02-09
-===================
-
- * Merge pull request #56 from akupila/wasm
- * add wasm to readme
- * detect wasm file type
-
-v1.0.6 / 2019-01-22
-===================
-
- * Merge pull request #55 from ivanlemeshev/master
- * Added ftypmp4v to MP4 matcher
- * Merge pull request #54 from aofei/master
- * chore: add support for Go modules
- * feat: add support for AAC (audio/aac)
- * Merge pull request #53 from lynxbyorion/check-for-docoments
- * Added checks for documents.
- * Merge pull request #51 from eriken/master
- * fixed bad mime and import paths
- * Merge pull request #50 from eriken/jpeg2000_support
- * fix import paths
- * jpeg2000 support
- * Merge pull request #47 from Ma124/master
- * Merge pull request #49 from amoore614/master
- * more robust check for .mov files
- * bugfix: reverse order of matcher key list so user registered matchers appear first
- * bugfix: store ptr to MatcherKeys in case user registered matchers are used.
- * update comment
- * Bump buffer size to 8K to allow for more custom file matching
- * refactor(readme): update package import path
- * Merge pull request #48 from kumakichi/support_msooxml
- * do not use v1
- * ok, master already changed travis
- * add fixtures, but MatchReader may not work for some msooxml files, 4096 bytes maybe not enough
- * support ms ooxml, #40
- * Fixed misspells
- * fix(travis): use string notation for matrix items
- * Merge pull request #42 from bruth/patch-2
- * refactor(travis): remove Go 1.6, add Go 1.10
- * Change maximum bytes required for detection
- * Merge pull request #36 from yiiTT/patch-1
- * Add MP4 dash and additional ISO formats
- * Merge pull request #34 from RangelReale/fix-mp4-case
- * Merge pull request #32 from yiiTT/fix-m4v
- * Fixed mp4 detection case-sensitivity according to http://www.ftyps.com/
- * Fix M4v matcher
-
-v1.0.5 / 2017-12-12
-===================
-
- * Merge pull request #30 from RangelReale/fix_mp4
- * Fix duplicated item in mp4 fix
- * Fix MP4 matcher, with information from http://www.file-recovery.com/mp4-signature-format.htm
- * Merge pull request #28 from ikovic/master
- * Updated file header example.
-
-v1.0.4 / 2017-11-29
-===================
-
- * fix: tests and document types matchers
- * refactor(docs): remove codesponsor
- * Merge pull request #26 from bienkma/master
- * Add support check file type: .doc, .docx, .pptx, .ppt, .xls, .xlsx
- * feat(docs): add code sponsor banner
- * feat(travis): add go 1.9
- * Merge pull request #24 from strazzere/patch-1
- * Fix typo in unknown
-
-v1.0.3 / 2017-08-03
-===================
-
- * Merge pull request #21 from elemeta/master
- * Add Elf file as supported matcher archive type
-
-v1.0.2 / 2017-07-26
-===================
-
- * Merge pull request #20 from marshyski/master
- * Added RedHat RPM as supported matcher archive type
- * Merge pull request #19 from nlamirault/patch-1
- * Fix typo in documentation
-
-v1.0.1 / 2017-02-24
-===================
-
- * Merge pull request #18 from Impyy/enable-webm
- * Enable the webm matcher
- * feat(docs): add Go version badge
-
-1.0.0 / 2016-12-11
-==================
-
-- Initial stable version (v1.0.0).
diff --git a/vendor/github.com/h2non/filetype/LICENSE b/vendor/github.com/h2non/filetype/LICENSE
deleted file mode 100644
index 30ede59b6..000000000
--- a/vendor/github.com/h2non/filetype/LICENSE
+++ /dev/null
@@ -1,24 +0,0 @@
-The MIT License
-
-Copyright (c) Tomas Aparicio
-
-Permission is hereby granted, free of charge, to any person
-obtaining a copy of this software and associated documentation
-files (the "Software"), to deal in the Software without
-restriction, including without limitation the rights to use,
-copy, modify, merge, publish, distribute, sublicense, and/or sell
-copies of the Software, and to permit persons to whom the
-Software is furnished to do so, subject to the following
-conditions:
-
-The above copyright notice and this permission notice shall be
-included in all copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
-EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES
-OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
-NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT
-HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
-WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
-FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
-OTHER DEALINGS IN THE SOFTWARE.
diff --git a/vendor/github.com/h2non/filetype/README.md b/vendor/github.com/h2non/filetype/README.md
deleted file mode 100644
index 2968ae244..000000000
--- a/vendor/github.com/h2non/filetype/README.md
+++ /dev/null
@@ -1,287 +0,0 @@
-# filetype [](https://travis-ci.org/h2non/filetype) [](https://godoc.org/github.com/h2non/filetype) [](http://goreportcard.com/report/h2non/filetype) [](https://github.com/h2non/gentleman)
-
-Small and dependency free [Go](https://golang.org) package to infer file and MIME type checking the [magic numbers](https://en.wikipedia.org/wiki/Magic_number_(programming)#Magic_numbers_in_files) signature.
-
-For SVG file type checking, see [go-is-svg](https://github.com/h2non/go-is-svg) package.
-
-## Features
-
-- Supports a [wide range](#supported-types) of file types
-- Provides file extension and proper MIME type
-- File discovery by extension or MIME type
-- File discovery by class (image, video, audio...)
-- Provides a bunch of helpers and file matching shortcuts
-- [Pluggable](#add-additional-file-type-matchers): add custom new types and matchers
-- Simple and semantic API
-- [Blazing fast](#benchmarks), even processing large files
-- Only first 262 bytes representing the max file header is required, so you can just [pass a slice](#file-header)
-- Dependency free (just Go code, no C compilation needed)
-- Cross-platform file recognition
-
-## Installation
-
-```bash
-go get github.com/h2non/filetype
-```
-
-## API
-
-See [Godoc](https://godoc.org/github.com/h2non/filetype) reference.
-
-### Subpackages
-
-- [`github.com/h2non/filetype/types`](https://godoc.org/github.com/h2non/filetype/types)
-- [`github.com/h2non/filetype/matchers`](https://godoc.org/github.com/h2non/filetype/matchers)
-
-## Examples
-
-#### Simple file type checking
-
-```go
-package main
-
-import (
- "fmt"
- "io/ioutil"
-
- "github.com/h2non/filetype"
-)
-
-func main() {
- buf, _ := ioutil.ReadFile("sample.jpg")
-
- kind, _ := filetype.Match(buf)
- if kind == filetype.Unknown {
- fmt.Println("Unknown file type")
- return
- }
-
- fmt.Printf("File type: %s. MIME: %s\n", kind.Extension, kind.MIME.Value)
-}
-```
-
-#### Check type class
-
-```go
-package main
-
-import (
- "fmt"
- "io/ioutil"
-
- "github.com/h2non/filetype"
-)
-
-func main() {
- buf, _ := ioutil.ReadFile("sample.jpg")
-
- if filetype.IsImage(buf) {
- fmt.Println("File is an image")
- } else {
- fmt.Println("Not an image")
- }
-}
-```
-
-#### Supported type
-
-```go
-package main
-
-import (
- "fmt"
-
- "github.com/h2non/filetype"
-)
-
-func main() {
- // Check if file is supported by extension
- if filetype.IsSupported("jpg") {
- fmt.Println("Extension supported")
- } else {
- fmt.Println("Extension not supported")
- }
-
- // Check if file is supported by extension
- if filetype.IsMIMESupported("image/jpeg") {
- fmt.Println("MIME type supported")
- } else {
- fmt.Println("MIME type not supported")
- }
-}
-```
-
-#### File header
-
-```go
-package main
-
-import (
- "fmt"
- "io/ioutil"
-
- "github.com/h2non/filetype"
-)
-
-func main() {
- // Open a file descriptor
- file, _ := os.Open("movie.mp4")
-
- // We only have to pass the file header = first 261 bytes
- head := make([]byte, 261)
- file.Read(head)
-
- if filetype.IsImage(head) {
- fmt.Println("File is an image")
- } else {
- fmt.Println("Not an image")
- }
-}
-```
-
-#### Add additional file type matchers
-
-```go
-package main
-
-import (
- "fmt"
-
- "github.com/h2non/filetype"
-)
-
-var fooType = filetype.NewType("foo", "foo/foo")
-
-func fooMatcher(buf []byte) bool {
- return len(buf) > 1 && buf[0] == 0x01 && buf[1] == 0x02
-}
-
-func main() {
- // Register the new matcher and its type
- filetype.AddMatcher(fooType, fooMatcher)
-
- // Check if the new type is supported by extension
- if filetype.IsSupported("foo") {
- fmt.Println("New supported type: foo")
- }
-
- // Check if the new type is supported by MIME
- if filetype.IsMIMESupported("foo/foo") {
- fmt.Println("New supported MIME type: foo/foo")
- }
-
- // Try to match the file
- fooFile := []byte{0x01, 0x02}
- kind, _ := filetype.Match(fooFile)
- if kind == filetype.Unknown {
- fmt.Println("Unknown file type")
- } else {
- fmt.Printf("File type matched: %s\n", kind.Extension)
- }
-}
-```
-
-## Supported types
-
-#### Image
-
-- **jpg** - `image/jpeg`
-- **png** - `image/png`
-- **gif** - `image/gif`
-- **webp** - `image/webp`
-- **cr2** - `image/x-canon-cr2`
-- **tif** - `image/tiff`
-- **bmp** - `image/bmp`
-- **heif** - `image/heif`
-- **jxr** - `image/vnd.ms-photo`
-- **psd** - `image/vnd.adobe.photoshop`
-- **ico** - `image/x-icon`
-
-#### Video
-
-- **mp4** - `video/mp4`
-- **m4v** - `video/x-m4v`
-- **mkv** - `video/x-matroska`
-- **webm** - `video/webm`
-- **mov** - `video/quicktime`
-- **avi** - `video/x-msvideo`
-- **wmv** - `video/x-ms-wmv`
-- **mpg** - `video/mpeg`
-- **flv** - `video/x-flv`
-
-#### Audio
-
-- **mid** - `audio/midi`
-- **mp3** - `audio/mpeg`
-- **m4a** - `audio/m4a`
-- **ogg** - `audio/ogg`
-- **flac** - `audio/x-flac`
-- **wav** - `audio/x-wav`
-- **amr** - `audio/amr`
-- **aac** - `audio/aac`
-
-#### Archive
-
-- **epub** - `application/epub+zip`
-- **zip** - `application/zip`
-- **tar** - `application/x-tar`
-- **rar** - `application/x-rar-compressed`
-- **gz** - `application/gzip`
-- **bz2** - `application/x-bzip2`
-- **7z** - `application/x-7z-compressed`
-- **xz** - `application/x-xz`
-- **pdf** - `application/pdf`
-- **exe** - `application/x-msdownload`
-- **swf** - `application/x-shockwave-flash`
-- **rtf** - `application/rtf`
-- **eot** - `application/octet-stream`
-- **ps** - `application/postscript`
-- **sqlite** - `application/x-sqlite3`
-- **nes** - `application/x-nintendo-nes-rom`
-- **crx** - `application/x-google-chrome-extension`
-- **cab** - `application/vnd.ms-cab-compressed`
-- **deb** - `application/x-deb`
-- **ar** - `application/x-unix-archive`
-- **Z** - `application/x-compress`
-- **lz** - `application/x-lzip`
-- **rpm** - `application/x-rpm`
-- **elf** - `application/x-executable`
-- **dcm** - `application/dicom`
-
-#### Documents
-
-- **doc** - `application/msword`
-- **docx** - `application/vnd.openxmlformats-officedocument.wordprocessingml.document`
-- **xls** - `application/vnd.ms-excel`
-- **xlsx** - `application/vnd.openxmlformats-officedocument.spreadsheetml.sheet`
-- **ppt** - `application/vnd.ms-powerpoint`
-- **pptx** - `application/vnd.openxmlformats-officedocument.presentationml.presentation`
-
-#### Font
-
-- **woff** - `application/font-woff`
-- **woff2** - `application/font-woff`
-- **ttf** - `application/font-sfnt`
-- **otf** - `application/font-sfnt`
-
-#### Application
-
-- **wasm** - `application/wasm`
-
-## Benchmarks
-
-Measured using [real files](https://github.com/h2non/filetype/tree/master/fixtures).
-
-Environment: OSX x64 i7 2.7 Ghz
-
-```bash
-BenchmarkMatchTar-8 1000000 1083 ns/op
-BenchmarkMatchZip-8 1000000 1162 ns/op
-BenchmarkMatchJpeg-8 1000000 1280 ns/op
-BenchmarkMatchGif-8 1000000 1315 ns/op
-BenchmarkMatchPng-8 1000000 1121 ns/op
-```
-
-## License
-
-MIT - Tomas Aparicio
diff --git a/vendor/github.com/h2non/filetype/filetype.go b/vendor/github.com/h2non/filetype/filetype.go
deleted file mode 100644
index 933058c85..000000000
--- a/vendor/github.com/h2non/filetype/filetype.go
+++ /dev/null
@@ -1,87 +0,0 @@
-package filetype
-
-import (
- "errors"
-
- "github.com/h2non/filetype/matchers"
- "github.com/h2non/filetype/types"
-)
-
-// Types stores a map of supported types
-var Types = types.Types
-
-// NewType creates and registers a new type
-var NewType = types.NewType
-
-// Unknown represents an unknown file type
-var Unknown = types.Unknown
-
-// ErrEmptyBuffer represents an empty buffer error
-var ErrEmptyBuffer = errors.New("Empty buffer")
-
-// ErrUnknownBuffer represents a unknown buffer error
-var ErrUnknownBuffer = errors.New("Unknown buffer type")
-
-// AddType registers a new file type
-func AddType(ext, mime string) types.Type {
- return types.NewType(ext, mime)
-}
-
-// Is checks if a given buffer matches with the given file type extension
-func Is(buf []byte, ext string) bool {
- kind, ok := types.Types[ext]
- if ok {
- return IsType(buf, kind)
- }
- return false
-}
-
-// IsExtension semantic alias to Is()
-func IsExtension(buf []byte, ext string) bool {
- return Is(buf, ext)
-}
-
-// IsType checks if a given buffer matches with the given file type
-func IsType(buf []byte, kind types.Type) bool {
- matcher := matchers.Matchers[kind]
- if matcher == nil {
- return false
- }
- return matcher(buf) != types.Unknown
-}
-
-// IsMIME checks if a given buffer matches with the given MIME type
-func IsMIME(buf []byte, mime string) bool {
- for _, kind := range types.Types {
- if kind.MIME.Value == mime {
- matcher := matchers.Matchers[kind]
- return matcher(buf) != types.Unknown
- }
- }
- return false
-}
-
-// IsSupported checks if a given file extension is supported
-func IsSupported(ext string) bool {
- for name := range Types {
- if name == ext {
- return true
- }
- }
- return false
-}
-
-// IsMIMESupported checks if a given MIME type is supported
-func IsMIMESupported(mime string) bool {
- for _, m := range Types {
- if m.MIME.Value == mime {
- return true
- }
- }
- return false
-}
-
-// GetType retrieves a Type by file extension
-func GetType(ext string) types.Type {
- return types.Get(ext)
-}
diff --git a/vendor/github.com/h2non/filetype/go.mod b/vendor/github.com/h2non/filetype/go.mod
deleted file mode 100644
index 765d393f8..000000000
--- a/vendor/github.com/h2non/filetype/go.mod
+++ /dev/null
@@ -1 +0,0 @@
-module github.com/h2non/filetype
diff --git a/vendor/github.com/h2non/filetype/kind.go b/vendor/github.com/h2non/filetype/kind.go
deleted file mode 100644
index de8473507..000000000
--- a/vendor/github.com/h2non/filetype/kind.go
+++ /dev/null
@@ -1,80 +0,0 @@
-package filetype
-
-import (
- "github.com/h2non/filetype/matchers"
- "github.com/h2non/filetype/types"
-)
-
-// Image tries to match a file as image type
-func Image(buf []byte) (types.Type, error) {
- return doMatchMap(buf, matchers.Image)
-}
-
-// IsImage checks if the given buffer is an image type
-func IsImage(buf []byte) bool {
- kind, _ := Image(buf)
- return kind != types.Unknown
-}
-
-// Audio tries to match a file as audio type
-func Audio(buf []byte) (types.Type, error) {
- return doMatchMap(buf, matchers.Audio)
-}
-
-// IsAudio checks if the given buffer is an audio type
-func IsAudio(buf []byte) bool {
- kind, _ := Audio(buf)
- return kind != types.Unknown
-}
-
-// Video tries to match a file as video type
-func Video(buf []byte) (types.Type, error) {
- return doMatchMap(buf, matchers.Video)
-}
-
-// IsVideo checks if the given buffer is a video type
-func IsVideo(buf []byte) bool {
- kind, _ := Video(buf)
- return kind != types.Unknown
-}
-
-// Font tries to match a file as text font type
-func Font(buf []byte) (types.Type, error) {
- return doMatchMap(buf, matchers.Font)
-}
-
-// IsFont checks if the given buffer is a font type
-func IsFont(buf []byte) bool {
- kind, _ := Font(buf)
- return kind != types.Unknown
-}
-
-// Archive tries to match a file as generic archive type
-func Archive(buf []byte) (types.Type, error) {
- return doMatchMap(buf, matchers.Archive)
-}
-
-// IsArchive checks if the given buffer is an archive type
-func IsArchive(buf []byte) bool {
- kind, _ := Archive(buf)
- return kind != types.Unknown
-}
-
-// Document tries to match a file as document type
-func Document(buf []byte) (types.Type, error) {
- return doMatchMap(buf, matchers.Document)
-}
-
-// IsDocument checks if the given buffer is an document type
-func IsDocument(buf []byte) bool {
- kind, _ := Document(buf)
- return kind != types.Unknown
-}
-
-func doMatchMap(buf []byte, machers matchers.Map) (types.Type, error) {
- kind := MatchMap(buf, machers)
- if kind != types.Unknown {
- return kind, nil
- }
- return kind, ErrUnknownBuffer
-}
diff --git a/vendor/github.com/h2non/filetype/match.go b/vendor/github.com/h2non/filetype/match.go
deleted file mode 100644
index 82cf80468..000000000
--- a/vendor/github.com/h2non/filetype/match.go
+++ /dev/null
@@ -1,90 +0,0 @@
-package filetype
-
-import (
- "io"
- "os"
-
- "github.com/h2non/filetype/matchers"
- "github.com/h2non/filetype/types"
-)
-
-// Matchers is an alias to matchers.Matchers
-var Matchers = matchers.Matchers
-
-// MatcherKeys is an alias to matchers.MatcherKeys
-var MatcherKeys = &matchers.MatcherKeys
-
-// NewMatcher is an alias to matchers.NewMatcher
-var NewMatcher = matchers.NewMatcher
-
-// Match infers the file type of a given buffer inspecting its magic numbers signature
-func Match(buf []byte) (types.Type, error) {
- length := len(buf)
- if length == 0 {
- return types.Unknown, ErrEmptyBuffer
- }
-
- for _, kind := range *MatcherKeys {
- checker := Matchers[kind]
- match := checker(buf)
- if match != types.Unknown && match.Extension != "" {
- return match, nil
- }
- }
-
- return types.Unknown, nil
-}
-
-// Get is an alias to Match()
-func Get(buf []byte) (types.Type, error) {
- return Match(buf)
-}
-
-// MatchFile infers a file type for a file
-func MatchFile(filepath string) (types.Type, error) {
- file, err := os.Open(filepath)
- if err != nil {
- return types.Unknown, err
- }
- defer file.Close()
-
- return MatchReader(file)
-}
-
-// MatchReader is convenient wrapper to Match() any Reader
-func MatchReader(reader io.Reader) (types.Type, error) {
- buffer := make([]byte, 8192) // 8K makes msooxml tests happy and allows for expanded custom file checks
-
- _, err := reader.Read(buffer)
- if err != nil && err != io.EOF {
- return types.Unknown, err
- }
-
- return Match(buffer)
-}
-
-// AddMatcher registers a new matcher type
-func AddMatcher(fileType types.Type, matcher matchers.Matcher) matchers.TypeMatcher {
- return matchers.NewMatcher(fileType, matcher)
-}
-
-// Matches checks if the given buffer matches with some supported file type
-func Matches(buf []byte) bool {
- kind, _ := Match(buf)
- return kind != types.Unknown
-}
-
-// MatchMap performs a file matching against a map of match functions
-func MatchMap(buf []byte, matchers matchers.Map) types.Type {
- for kind, matcher := range matchers {
- if matcher(buf) {
- return kind
- }
- }
- return types.Unknown
-}
-
-// MatchesMap is an alias to Matches() but using matching against a map of match functions
-func MatchesMap(buf []byte, matchers matchers.Map) bool {
- return MatchMap(buf, matchers) != types.Unknown
-}
diff --git a/vendor/github.com/h2non/filetype/matchers/application.go b/vendor/github.com/h2non/filetype/matchers/application.go
deleted file mode 100644
index f482062d6..000000000
--- a/vendor/github.com/h2non/filetype/matchers/application.go
+++ /dev/null
@@ -1,20 +0,0 @@
-package matchers
-
-var (
- TypeWasm = newType("wasm", "application/wasm")
-)
-
-var Application = Map{
- TypeWasm: Wasm,
-}
-
-// Wasm detects a Web Assembly 1.0 filetype.
-func Wasm(buf []byte) bool {
- // WASM has starts with `\0asm`, followed by the version.
- // http://webassembly.github.io/spec/core/binary/modules.html#binary-magic
- return len(buf) >= 8 &&
- buf[0] == 0x00 && buf[1] == 0x61 &&
- buf[2] == 0x73 && buf[3] == 0x6D &&
- buf[4] == 0x01 && buf[5] == 0x00 &&
- buf[6] == 0x00 && buf[7] == 0x00
-}
diff --git a/vendor/github.com/h2non/filetype/matchers/archive.go b/vendor/github.com/h2non/filetype/matchers/archive.go
deleted file mode 100644
index 0e88af144..000000000
--- a/vendor/github.com/h2non/filetype/matchers/archive.go
+++ /dev/null
@@ -1,225 +0,0 @@
-package matchers
-
-var (
- TypeEpub = newType("epub", "application/epub+zip")
- TypeZip = newType("zip", "application/zip")
- TypeTar = newType("tar", "application/x-tar")
- TypeRar = newType("rar", "application/x-rar-compressed")
- TypeGz = newType("gz", "application/gzip")
- TypeBz2 = newType("bz2", "application/x-bzip2")
- Type7z = newType("7z", "application/x-7z-compressed")
- TypeXz = newType("xz", "application/x-xz")
- TypePdf = newType("pdf", "application/pdf")
- TypeExe = newType("exe", "application/x-msdownload")
- TypeSwf = newType("swf", "application/x-shockwave-flash")
- TypeRtf = newType("rtf", "application/rtf")
- TypeEot = newType("eot", "application/octet-stream")
- TypePs = newType("ps", "application/postscript")
- TypeSqlite = newType("sqlite", "application/x-sqlite3")
- TypeNes = newType("nes", "application/x-nintendo-nes-rom")
- TypeCrx = newType("crx", "application/x-google-chrome-extension")
- TypeCab = newType("cab", "application/vnd.ms-cab-compressed")
- TypeDeb = newType("deb", "application/x-deb")
- TypeAr = newType("ar", "application/x-unix-archive")
- TypeZ = newType("Z", "application/x-compress")
- TypeLz = newType("lz", "application/x-lzip")
- TypeRpm = newType("rpm", "application/x-rpm")
- TypeElf = newType("elf", "application/x-executable")
- TypeDcm = newType("dcm", "application/dicom")
-)
-
-var Archive = Map{
- TypeEpub: Epub,
- TypeZip: Zip,
- TypeTar: Tar,
- TypeRar: Rar,
- TypeGz: Gz,
- TypeBz2: Bz2,
- Type7z: SevenZ,
- TypeXz: Xz,
- TypePdf: Pdf,
- TypeExe: Exe,
- TypeSwf: Swf,
- TypeRtf: Rtf,
- TypeEot: Eot,
- TypePs: Ps,
- TypeSqlite: Sqlite,
- TypeNes: Nes,
- TypeCrx: Crx,
- TypeCab: Cab,
- TypeDeb: Deb,
- TypeAr: Ar,
- TypeZ: Z,
- TypeLz: Lz,
- TypeRpm: Rpm,
- TypeElf: Elf,
- TypeDcm: Dcm,
-}
-
-func Epub(buf []byte) bool {
- return len(buf) > 57 &&
- buf[0] == 0x50 && buf[1] == 0x4B && buf[2] == 0x3 && buf[3] == 0x4 &&
- buf[30] == 0x6D && buf[31] == 0x69 && buf[32] == 0x6D && buf[33] == 0x65 &&
- buf[34] == 0x74 && buf[35] == 0x79 && buf[36] == 0x70 && buf[37] == 0x65 &&
- buf[38] == 0x61 && buf[39] == 0x70 && buf[40] == 0x70 && buf[41] == 0x6C &&
- buf[42] == 0x69 && buf[43] == 0x63 && buf[44] == 0x61 && buf[45] == 0x74 &&
- buf[46] == 0x69 && buf[47] == 0x6F && buf[48] == 0x6E && buf[49] == 0x2F &&
- buf[50] == 0x65 && buf[51] == 0x70 && buf[52] == 0x75 && buf[53] == 0x62 &&
- buf[54] == 0x2B && buf[55] == 0x7A && buf[56] == 0x69 && buf[57] == 0x70
-}
-
-func Zip(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x50 && buf[1] == 0x4B &&
- (buf[2] == 0x3 || buf[2] == 0x5 || buf[2] == 0x7) &&
- (buf[3] == 0x4 || buf[3] == 0x6 || buf[3] == 0x8)
-}
-
-func Tar(buf []byte) bool {
- return len(buf) > 261 &&
- buf[257] == 0x75 && buf[258] == 0x73 &&
- buf[259] == 0x74 && buf[260] == 0x61 &&
- buf[261] == 0x72
-}
-
-func Rar(buf []byte) bool {
- return len(buf) > 6 &&
- buf[0] == 0x52 && buf[1] == 0x61 && buf[2] == 0x72 &&
- buf[3] == 0x21 && buf[4] == 0x1A && buf[5] == 0x7 &&
- (buf[6] == 0x0 || buf[6] == 0x1)
-}
-
-func Gz(buf []byte) bool {
- return len(buf) > 2 &&
- buf[0] == 0x1F && buf[1] == 0x8B && buf[2] == 0x8
-}
-
-func Bz2(buf []byte) bool {
- return len(buf) > 2 &&
- buf[0] == 0x42 && buf[1] == 0x5A && buf[2] == 0x68
-}
-
-func SevenZ(buf []byte) bool {
- return len(buf) > 5 &&
- buf[0] == 0x37 && buf[1] == 0x7A && buf[2] == 0xBC &&
- buf[3] == 0xAF && buf[4] == 0x27 && buf[5] == 0x1C
-}
-
-func Pdf(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x25 && buf[1] == 0x50 &&
- buf[2] == 0x44 && buf[3] == 0x46
-}
-
-func Exe(buf []byte) bool {
- return len(buf) > 1 &&
- buf[0] == 0x4D && buf[1] == 0x5A
-}
-
-func Swf(buf []byte) bool {
- return len(buf) > 2 &&
- (buf[0] == 0x43 || buf[0] == 0x46) &&
- buf[1] == 0x57 && buf[2] == 0x53
-}
-
-func Rtf(buf []byte) bool {
- return len(buf) > 4 &&
- buf[0] == 0x7B && buf[1] == 0x5C &&
- buf[2] == 0x72 && buf[3] == 0x74 &&
- buf[4] == 0x66
-}
-
-func Nes(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x4E && buf[1] == 0x45 &&
- buf[2] == 0x53 && buf[3] == 0x1A
-}
-
-func Crx(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x43 && buf[1] == 0x72 &&
- buf[2] == 0x32 && buf[3] == 0x34
-}
-
-func Cab(buf []byte) bool {
- return len(buf) > 3 &&
- ((buf[0] == 0x4D && buf[1] == 0x53 && buf[2] == 0x43 && buf[3] == 0x46) ||
- (buf[0] == 0x49 && buf[1] == 0x53 && buf[2] == 0x63 && buf[3] == 0x28))
-}
-
-func Eot(buf []byte) bool {
- return len(buf) > 35 &&
- buf[34] == 0x4C && buf[35] == 0x50 &&
- ((buf[8] == 0x02 && buf[9] == 0x00 &&
- buf[10] == 0x01) || (buf[8] == 0x01 &&
- buf[9] == 0x00 && buf[10] == 0x00) ||
- (buf[8] == 0x02 && buf[9] == 0x00 &&
- buf[10] == 0x02))
-}
-
-func Ps(buf []byte) bool {
- return len(buf) > 1 &&
- buf[0] == 0x25 && buf[1] == 0x21
-}
-
-func Xz(buf []byte) bool {
- return len(buf) > 5 &&
- buf[0] == 0xFD && buf[1] == 0x37 &&
- buf[2] == 0x7A && buf[3] == 0x58 &&
- buf[4] == 0x5A && buf[5] == 0x00
-}
-
-func Sqlite(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x53 && buf[1] == 0x51 &&
- buf[2] == 0x4C && buf[3] == 0x69
-}
-
-func Deb(buf []byte) bool {
- return len(buf) > 20 &&
- buf[0] == 0x21 && buf[1] == 0x3C && buf[2] == 0x61 &&
- buf[3] == 0x72 && buf[4] == 0x63 && buf[5] == 0x68 &&
- buf[6] == 0x3E && buf[7] == 0x0A && buf[8] == 0x64 &&
- buf[9] == 0x65 && buf[10] == 0x62 && buf[11] == 0x69 &&
- buf[12] == 0x61 && buf[13] == 0x6E && buf[14] == 0x2D &&
- buf[15] == 0x62 && buf[16] == 0x69 && buf[17] == 0x6E &&
- buf[18] == 0x61 && buf[19] == 0x72 && buf[20] == 0x79
-}
-
-func Ar(buf []byte) bool {
- return len(buf) > 6 &&
- buf[0] == 0x21 && buf[1] == 0x3C &&
- buf[2] == 0x61 && buf[3] == 0x72 &&
- buf[4] == 0x63 && buf[5] == 0x68 &&
- buf[6] == 0x3E
-}
-
-func Z(buf []byte) bool {
- return len(buf) > 1 &&
- ((buf[0] == 0x1F && buf[1] == 0xA0) ||
- (buf[0] == 0x1F && buf[1] == 0x9D))
-}
-
-func Lz(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x4C && buf[1] == 0x5A &&
- buf[2] == 0x49 && buf[3] == 0x50
-}
-
-func Rpm(buf []byte) bool {
- return len(buf) > 96 &&
- buf[0] == 0xED && buf[1] == 0xAB &&
- buf[2] == 0xEE && buf[3] == 0xDB
-}
-
-func Elf(buf []byte) bool {
- return len(buf) > 52 &&
- buf[0] == 0x7F && buf[1] == 0x45 &&
- buf[2] == 0x4C && buf[3] == 0x46
-}
-
-func Dcm(buf []byte) bool {
- return len(buf) > 131 &&
- buf[128] == 0x44 && buf[129] == 0x49 &&
- buf[130] == 0x43 && buf[131] == 0x4D
-}
diff --git a/vendor/github.com/h2non/filetype/matchers/audio.go b/vendor/github.com/h2non/filetype/matchers/audio.go
deleted file mode 100644
index 6d532630a..000000000
--- a/vendor/github.com/h2non/filetype/matchers/audio.go
+++ /dev/null
@@ -1,75 +0,0 @@
-package matchers
-
-var (
- TypeMidi = newType("mid", "audio/midi")
- TypeMp3 = newType("mp3", "audio/mpeg")
- TypeM4a = newType("m4a", "audio/m4a")
- TypeOgg = newType("ogg", "audio/ogg")
- TypeFlac = newType("flac", "audio/x-flac")
- TypeWav = newType("wav", "audio/x-wav")
- TypeAmr = newType("amr", "audio/amr")
- TypeAac = newType("aac", "audio/aac")
-)
-
-var Audio = Map{
- TypeMidi: Midi,
- TypeMp3: Mp3,
- TypeM4a: M4a,
- TypeOgg: Ogg,
- TypeFlac: Flac,
- TypeWav: Wav,
- TypeAmr: Amr,
- TypeAac: Aac,
-}
-
-func Midi(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x4D && buf[1] == 0x54 &&
- buf[2] == 0x68 && buf[3] == 0x64
-}
-
-func Mp3(buf []byte) bool {
- return len(buf) > 2 &&
- ((buf[0] == 0x49 && buf[1] == 0x44 && buf[2] == 0x33) ||
- (buf[0] == 0xFF && buf[1] == 0xfb))
-}
-
-func M4a(buf []byte) bool {
- return len(buf) > 10 &&
- ((buf[4] == 0x66 && buf[5] == 0x74 && buf[6] == 0x79 &&
- buf[7] == 0x70 && buf[8] == 0x4D && buf[9] == 0x34 && buf[10] == 0x41) ||
- (buf[0] == 0x4D && buf[1] == 0x34 && buf[2] == 0x41 && buf[3] == 0x20))
-}
-
-func Ogg(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x4F && buf[1] == 0x67 &&
- buf[2] == 0x67 && buf[3] == 0x53
-}
-
-func Flac(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x66 && buf[1] == 0x4C &&
- buf[2] == 0x61 && buf[3] == 0x43
-}
-
-func Wav(buf []byte) bool {
- return len(buf) > 11 &&
- buf[0] == 0x52 && buf[1] == 0x49 &&
- buf[2] == 0x46 && buf[3] == 0x46 &&
- buf[8] == 0x57 && buf[9] == 0x41 &&
- buf[10] == 0x56 && buf[11] == 0x45
-}
-
-func Amr(buf []byte) bool {
- return len(buf) > 11 &&
- buf[0] == 0x23 && buf[1] == 0x21 &&
- buf[2] == 0x41 && buf[3] == 0x4D &&
- buf[4] == 0x52 && buf[5] == 0x0A
-}
-
-func Aac(buf []byte) bool {
- return len(buf) > 1 &&
- ((buf[0] == 0xFF && buf[1] == 0xF1) ||
- (buf[0] == 0xFF && buf[1] == 0xF9))
-}
diff --git a/vendor/github.com/h2non/filetype/matchers/document.go b/vendor/github.com/h2non/filetype/matchers/document.go
deleted file mode 100644
index 7e1ef851d..000000000
--- a/vendor/github.com/h2non/filetype/matchers/document.go
+++ /dev/null
@@ -1,182 +0,0 @@
-package matchers
-
-import (
- "bytes"
- "encoding/binary"
-)
-
-var (
- TypeDoc = newType("doc", "application/msword")
- TypeDocx = newType("docx", "application/vnd.openxmlformats-officedocument.wordprocessingml.document")
- TypeXls = newType("xls", "application/vnd.ms-excel")
- TypeXlsx = newType("xlsx", "application/vnd.openxmlformats-officedocument.spreadsheetml.sheet")
- TypePpt = newType("ppt", "application/vnd.ms-powerpoint")
- TypePptx = newType("pptx", "application/vnd.openxmlformats-officedocument.presentationml.presentation")
-)
-
-var Document = Map{
- TypeDoc: Doc,
- TypeDocx: Docx,
- TypeXls: Xls,
- TypeXlsx: Xlsx,
- TypePpt: Ppt,
- TypePptx: Pptx,
-}
-
-type docType int
-
-const (
- TYPE_DOC docType = iota
- TYPE_DOCX
- TYPE_XLS
- TYPE_XLSX
- TYPE_PPT
- TYPE_PPTX
- TYPE_OOXML
-)
-
-func Doc(buf []byte) bool {
- return len(buf) > 7 &&
- buf[0] == 0xD0 && buf[1] == 0xCF &&
- buf[2] == 0x11 && buf[3] == 0xE0 &&
- buf[4] == 0xA1 && buf[5] == 0xB1 &&
- buf[6] == 0x1A && buf[7] == 0xE1
-}
-
-func Docx(buf []byte) bool {
- typ, ok := msooxml(buf)
- return ok && typ == TYPE_DOCX
-}
-
-func Xls(buf []byte) bool {
- return len(buf) > 7 &&
- buf[0] == 0xD0 && buf[1] == 0xCF &&
- buf[2] == 0x11 && buf[3] == 0xE0 &&
- buf[4] == 0xA1 && buf[5] == 0xB1 &&
- buf[6] == 0x1A && buf[7] == 0xE1
-}
-
-func Xlsx(buf []byte) bool {
- typ, ok := msooxml(buf)
- return ok && typ == TYPE_XLSX
-}
-
-func Ppt(buf []byte) bool {
- return len(buf) > 7 &&
- buf[0] == 0xD0 && buf[1] == 0xCF &&
- buf[2] == 0x11 && buf[3] == 0xE0 &&
- buf[4] == 0xA1 && buf[5] == 0xB1 &&
- buf[6] == 0x1A && buf[7] == 0xE1
-}
-
-func Pptx(buf []byte) bool {
- typ, ok := msooxml(buf)
- return ok && typ == TYPE_PPTX
-}
-
-func msooxml(buf []byte) (typ docType, found bool) {
- signature := []byte{'P', 'K', 0x03, 0x04}
-
- // start by checking for ZIP local file header signature
- if ok := compareBytes(buf, signature, 0); !ok {
- return
- }
-
- // make sure the first file is correct
- if v, ok := checkMSOoml(buf, 0x1E); ok {
- return v, ok
- }
-
- if !compareBytes(buf, []byte("[Content_Types].xml"), 0x1E) && !compareBytes(buf, []byte("_rels/.rels"), 0x1E) {
- return
- }
-
- // skip to the second local file header
- // since some documents include a 520-byte extra field following the file
- // header, we need to scan for the next header
- startOffset := int(binary.LittleEndian.Uint32(buf[18:22]) + 49)
- idx := search(buf, startOffset, 6000)
- if idx == -1 {
- return
- }
-
- // now skip to the *third* local file header; again, we need to scan due to a
- // 520-byte extra field following the file header
- startOffset += idx + 4 + 26
- idx = search(buf, startOffset, 6000)
- if idx == -1 {
- return
- }
-
- // and check the subdirectory name to determine which type of OOXML
- // file we have. Correct the mimetype with the registered ones:
- // http://technet.microsoft.com/en-us/library/cc179224.aspx
- startOffset += idx + 4 + 26
- if typ, ok := checkMSOoml(buf, startOffset); ok {
- return typ, ok
- }
-
- // OpenOffice/Libreoffice orders ZIP entry differently, so check the 4th file
- startOffset += 26
- idx = search(buf, startOffset, 6000)
- if idx == -1 {
- return TYPE_OOXML, true
- }
-
- startOffset += idx + 4 + 26
- if typ, ok := checkMSOoml(buf, startOffset); ok {
- return typ, ok
- } else {
- return TYPE_OOXML, true
- }
-}
-
-func compareBytes(slice, subSlice []byte, startOffset int) bool {
- sl := len(subSlice)
-
- if startOffset+sl > len(slice) {
- return false
- }
-
- s := slice[startOffset : startOffset+sl]
- for i := range s {
- if subSlice[i] != s[i] {
- return false
- }
- }
-
- return true
-}
-
-func checkMSOoml(buf []byte, offset int) (typ docType, ok bool) {
- ok = true
-
- switch {
- case compareBytes(buf, []byte("word/"), offset):
- typ = TYPE_DOCX
- case compareBytes(buf, []byte("ppt/"), offset):
- typ = TYPE_PPTX
- case compareBytes(buf, []byte("xl/"), offset):
- typ = TYPE_XLSX
- default:
- ok = false
- }
-
- return
-}
-
-func search(buf []byte, start, rangeNum int) int {
- length := len(buf)
- end := start + rangeNum
- signature := []byte{'P', 'K', 0x03, 0x04}
-
- if end > length {
- end = length
- }
-
- if start >= end {
- return -1
- }
-
- return bytes.Index(buf[start:end], signature)
-}
diff --git a/vendor/github.com/h2non/filetype/matchers/font.go b/vendor/github.com/h2non/filetype/matchers/font.go
deleted file mode 100644
index f39171675..000000000
--- a/vendor/github.com/h2non/filetype/matchers/font.go
+++ /dev/null
@@ -1,45 +0,0 @@
-package matchers
-
-var (
- TypeWoff = newType("woff", "application/font-woff")
- TypeWoff2 = newType("woff2", "application/font-woff")
- TypeTtf = newType("ttf", "application/font-sfnt")
- TypeOtf = newType("otf", "application/font-sfnt")
-)
-
-var Font = Map{
- TypeWoff: Woff,
- TypeWoff2: Woff2,
- TypeTtf: Ttf,
- TypeOtf: Otf,
-}
-
-func Woff(buf []byte) bool {
- return len(buf) > 7 &&
- buf[0] == 0x77 && buf[1] == 0x4F &&
- buf[2] == 0x46 && buf[3] == 0x46 &&
- buf[4] == 0x00 && buf[5] == 0x01 &&
- buf[6] == 0x00 && buf[7] == 0x00
-}
-
-func Woff2(buf []byte) bool {
- return len(buf) > 7 &&
- buf[0] == 0x77 && buf[1] == 0x4F &&
- buf[2] == 0x46 && buf[3] == 0x32 &&
- buf[4] == 0x00 && buf[5] == 0x01 &&
- buf[6] == 0x00 && buf[7] == 0x00
-}
-
-func Ttf(buf []byte) bool {
- return len(buf) > 4 &&
- buf[0] == 0x00 && buf[1] == 0x01 &&
- buf[2] == 0x00 && buf[3] == 0x00 &&
- buf[4] == 0x00
-}
-
-func Otf(buf []byte) bool {
- return len(buf) > 4 &&
- buf[0] == 0x4F && buf[1] == 0x54 &&
- buf[2] == 0x54 && buf[3] == 0x4F &&
- buf[4] == 0x00
-}
diff --git a/vendor/github.com/h2non/filetype/matchers/image.go b/vendor/github.com/h2non/filetype/matchers/image.go
deleted file mode 100644
index 5405477a6..000000000
--- a/vendor/github.com/h2non/filetype/matchers/image.go
+++ /dev/null
@@ -1,133 +0,0 @@
-package matchers
-
-import "github.com/h2non/filetype/matchers/isobmff"
-
-var (
- TypeJpeg = newType("jpg", "image/jpeg")
- TypeJpeg2000 = newType("jp2", "image/jp2")
- TypePng = newType("png", "image/png")
- TypeGif = newType("gif", "image/gif")
- TypeWebp = newType("webp", "image/webp")
- TypeCR2 = newType("cr2", "image/x-canon-cr2")
- TypeTiff = newType("tif", "image/tiff")
- TypeBmp = newType("bmp", "image/bmp")
- TypeJxr = newType("jxr", "image/vnd.ms-photo")
- TypePsd = newType("psd", "image/vnd.adobe.photoshop")
- TypeIco = newType("ico", "image/x-icon")
- TypeHeif = newType("heif", "image/heif")
-)
-
-var Image = Map{
- TypeJpeg: Jpeg,
- TypeJpeg2000: Jpeg2000,
- TypePng: Png,
- TypeGif: Gif,
- TypeWebp: Webp,
- TypeCR2: CR2,
- TypeTiff: Tiff,
- TypeBmp: Bmp,
- TypeJxr: Jxr,
- TypePsd: Psd,
- TypeIco: Ico,
- TypeHeif: Heif,
-}
-
-func Jpeg(buf []byte) bool {
- return len(buf) > 2 &&
- buf[0] == 0xFF &&
- buf[1] == 0xD8 &&
- buf[2] == 0xFF
-}
-
-func Jpeg2000(buf []byte) bool {
- return len(buf) > 12 &&
- buf[0] == 0x0 &&
- buf[1] == 0x0 &&
- buf[2] == 0x0 &&
- buf[3] == 0xC &&
- buf[4] == 0x6A &&
- buf[5] == 0x50 &&
- buf[6] == 0x20 &&
- buf[7] == 0x20 &&
- buf[8] == 0xD &&
- buf[9] == 0xA &&
- buf[10] == 0x87 &&
- buf[11] == 0xA &&
- buf[12] == 0x0
-}
-
-func Png(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x89 && buf[1] == 0x50 &&
- buf[2] == 0x4E && buf[3] == 0x47
-}
-
-func Gif(buf []byte) bool {
- return len(buf) > 2 &&
- buf[0] == 0x47 && buf[1] == 0x49 && buf[2] == 0x46
-}
-
-func Webp(buf []byte) bool {
- return len(buf) > 11 &&
- buf[8] == 0x57 && buf[9] == 0x45 &&
- buf[10] == 0x42 && buf[11] == 0x50
-}
-
-func CR2(buf []byte) bool {
- return len(buf) > 9 &&
- ((buf[0] == 0x49 && buf[1] == 0x49 && buf[2] == 0x2A && buf[3] == 0x0) ||
- (buf[0] == 0x4D && buf[1] == 0x4D && buf[2] == 0x0 && buf[3] == 0x2A)) &&
- buf[8] == 0x43 && buf[9] == 0x52
-}
-
-func Tiff(buf []byte) bool {
- return len(buf) > 3 &&
- ((buf[0] == 0x49 && buf[1] == 0x49 && buf[2] == 0x2A && buf[3] == 0x0) ||
- (buf[0] == 0x4D && buf[1] == 0x4D && buf[2] == 0x0 && buf[3] == 0x2A))
-}
-
-func Bmp(buf []byte) bool {
- return len(buf) > 1 &&
- buf[0] == 0x42 &&
- buf[1] == 0x4D
-}
-
-func Jxr(buf []byte) bool {
- return len(buf) > 2 &&
- buf[0] == 0x49 &&
- buf[1] == 0x49 &&
- buf[2] == 0xBC
-}
-
-func Psd(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x38 && buf[1] == 0x42 &&
- buf[2] == 0x50 && buf[3] == 0x53
-}
-
-func Ico(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x00 && buf[1] == 0x00 &&
- buf[2] == 0x01 && buf[3] == 0x00
-}
-
-func Heif(buf []byte) bool {
- if !isobmff.IsISOBMFF(buf) {
- return false
- }
-
- majorBrand, _, compatibleBrands := isobmff.GetFtyp(buf)
- if majorBrand == "heic" {
- return true
- }
-
- if majorBrand == "mif1" || majorBrand == "msf1" {
- for _, compatibleBrand := range compatibleBrands {
- if compatibleBrand == "heic" {
- return true
- }
- }
- }
-
- return false
-}
diff --git a/vendor/github.com/h2non/filetype/matchers/isobmff/isobmff.go b/vendor/github.com/h2non/filetype/matchers/isobmff/isobmff.go
deleted file mode 100644
index 963e80568..000000000
--- a/vendor/github.com/h2non/filetype/matchers/isobmff/isobmff.go
+++ /dev/null
@@ -1,31 +0,0 @@
-package isobmff
-
-import "encoding/binary"
-
-// IsISOBMFF checks whether the given buffer represents ISO Base Media File Format data
-func IsISOBMFF(buf []byte) bool {
- if len(buf) < 16 || string(buf[4:8]) != "ftyp" {
- return false
- }
-
- if ftypLength := binary.BigEndian.Uint32(buf[0:4]); len(buf) < int(ftypLength) {
- return false
- }
-
- return true
-}
-
-// GetFtyp returns the major brand, minor version and compatible brands of the ISO-BMFF data
-func GetFtyp(buf []byte) (string, string, []string) {
- ftypLength := binary.BigEndian.Uint32(buf[0:4])
-
- majorBrand := string(buf[8:12])
- minorVersion := string(buf[12:16])
-
- compatibleBrands := []string{}
- for i := 16; i < int(ftypLength); i += 4 {
- compatibleBrands = append(compatibleBrands, string(buf[i:i+4]))
- }
-
- return majorBrand, minorVersion, compatibleBrands
-}
diff --git a/vendor/github.com/h2non/filetype/matchers/matchers.go b/vendor/github.com/h2non/filetype/matchers/matchers.go
deleted file mode 100644
index 20d74d080..000000000
--- a/vendor/github.com/h2non/filetype/matchers/matchers.go
+++ /dev/null
@@ -1,51 +0,0 @@
-package matchers
-
-import (
- "github.com/h2non/filetype/types"
-)
-
-// Internal shortcut to NewType
-var newType = types.NewType
-
-// Matcher function interface as type alias
-type Matcher func([]byte) bool
-
-// Type interface to store pairs of type with its matcher function
-type Map map[types.Type]Matcher
-
-// Type specific matcher function interface
-type TypeMatcher func([]byte) types.Type
-
-// Store registered file type matchers
-var Matchers = make(map[types.Type]TypeMatcher)
-var MatcherKeys []types.Type
-
-// Create and register a new type matcher function
-func NewMatcher(kind types.Type, fn Matcher) TypeMatcher {
- matcher := func(buf []byte) types.Type {
- if fn(buf) {
- return kind
- }
- return types.Unknown
- }
-
- Matchers[kind] = matcher
- // prepend here so any user defined matchers get added first
- MatcherKeys = append([]types.Type{kind}, MatcherKeys...)
- return matcher
-}
-
-func register(matchers ...Map) {
- MatcherKeys = MatcherKeys[:0]
- for _, m := range matchers {
- for kind, matcher := range m {
- NewMatcher(kind, matcher)
- }
- }
-}
-
-func init() {
- // Arguments order is intentional
- // Archive files will be checked last due to prepend above in func NewMatcher
- register(Archive, Document, Font, Audio, Video, Image, Application)
-}
diff --git a/vendor/github.com/h2non/filetype/matchers/video.go b/vendor/github.com/h2non/filetype/matchers/video.go
deleted file mode 100644
index 2c7803810..000000000
--- a/vendor/github.com/h2non/filetype/matchers/video.go
+++ /dev/null
@@ -1,129 +0,0 @@
-package matchers
-
-var (
- TypeMp4 = newType("mp4", "video/mp4")
- TypeM4v = newType("m4v", "video/x-m4v")
- TypeMkv = newType("mkv", "video/x-matroska")
- TypeWebm = newType("webm", "video/webm")
- TypeMov = newType("mov", "video/quicktime")
- TypeAvi = newType("avi", "video/x-msvideo")
- TypeWmv = newType("wmv", "video/x-ms-wmv")
- TypeMpeg = newType("mpg", "video/mpeg")
- TypeFlv = newType("flv", "video/x-flv")
-)
-
-var Video = Map{
- TypeMp4: Mp4,
- TypeM4v: M4v,
- TypeMkv: Mkv,
- TypeWebm: Webm,
- TypeMov: Mov,
- TypeAvi: Avi,
- TypeWmv: Wmv,
- TypeMpeg: Mpeg,
- TypeFlv: Flv,
-}
-
-func M4v(buf []byte) bool {
- return len(buf) > 10 &&
- buf[4] == 0x66 && buf[5] == 0x74 &&
- buf[6] == 0x79 && buf[7] == 0x70 &&
- buf[8] == 0x4D && buf[9] == 0x34 &&
- buf[10] == 0x56
-}
-
-func Mkv(buf []byte) bool {
- return (len(buf) > 15 &&
- buf[0] == 0x1A && buf[1] == 0x45 &&
- buf[2] == 0xDF && buf[3] == 0xA3 &&
- buf[4] == 0x93 && buf[5] == 0x42 &&
- buf[6] == 0x82 && buf[7] == 0x88 &&
- buf[8] == 0x6D && buf[9] == 0x61 &&
- buf[10] == 0x74 && buf[11] == 0x72 &&
- buf[12] == 0x6F && buf[13] == 0x73 &&
- buf[14] == 0x6B && buf[15] == 0x61) ||
- (len(buf) > 38 &&
- buf[31] == 0x6D && buf[32] == 0x61 &&
- buf[33] == 0x74 && buf[34] == 0x72 &&
- buf[35] == 0x6f && buf[36] == 0x73 &&
- buf[37] == 0x6B && buf[38] == 0x61)
-}
-
-func Webm(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x1A && buf[1] == 0x45 &&
- buf[2] == 0xDF && buf[3] == 0xA3
-}
-
-func Mov(buf []byte) bool {
- return len(buf) > 15 && ((buf[0] == 0x0 && buf[1] == 0x0 &&
- buf[2] == 0x0 && buf[3] == 0x14 &&
- buf[4] == 0x66 && buf[5] == 0x74 &&
- buf[6] == 0x79 && buf[7] == 0x70) ||
- (buf[4] == 0x6d && buf[5] == 0x6f && buf[6] == 0x6f && buf[7] == 0x76) ||
- (buf[4] == 0x6d && buf[5] == 0x64 && buf[6] == 0x61 && buf[7] == 0x74) ||
- (buf[12] == 0x6d && buf[13] == 0x64 && buf[14] == 0x61 && buf[15] == 0x74))
-}
-
-func Avi(buf []byte) bool {
- return len(buf) > 10 &&
- buf[0] == 0x52 && buf[1] == 0x49 &&
- buf[2] == 0x46 && buf[3] == 0x46 &&
- buf[8] == 0x41 && buf[9] == 0x56 &&
- buf[10] == 0x49
-}
-
-func Wmv(buf []byte) bool {
- return len(buf) > 9 &&
- buf[0] == 0x30 && buf[1] == 0x26 &&
- buf[2] == 0xB2 && buf[3] == 0x75 &&
- buf[4] == 0x8E && buf[5] == 0x66 &&
- buf[6] == 0xCF && buf[7] == 0x11 &&
- buf[8] == 0xA6 && buf[9] == 0xD9
-}
-
-func Mpeg(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x0 && buf[1] == 0x0 &&
- buf[2] == 0x1 && buf[3] >= 0xb0 &&
- buf[3] <= 0xbf
-}
-
-func Flv(buf []byte) bool {
- return len(buf) > 3 &&
- buf[0] == 0x46 && buf[1] == 0x4C &&
- buf[2] == 0x56 && buf[3] == 0x01
-}
-
-func Mp4(buf []byte) bool {
- return len(buf) > 11 &&
- (buf[4] == 'f' && buf[5] == 't' && buf[6] == 'y' && buf[7] == 'p') &&
- ((buf[8] == 'a' && buf[9] == 'v' && buf[10] == 'c' && buf[11] == '1') ||
- (buf[8] == 'd' && buf[9] == 'a' && buf[10] == 's' && buf[11] == 'h') ||
- (buf[8] == 'i' && buf[9] == 's' && buf[10] == 'o' && buf[11] == '2') ||
- (buf[8] == 'i' && buf[9] == 's' && buf[10] == 'o' && buf[11] == '3') ||
- (buf[8] == 'i' && buf[9] == 's' && buf[10] == 'o' && buf[11] == '4') ||
- (buf[8] == 'i' && buf[9] == 's' && buf[10] == 'o' && buf[11] == '5') ||
- (buf[8] == 'i' && buf[9] == 's' && buf[10] == 'o' && buf[11] == '6') ||
- (buf[8] == 'i' && buf[9] == 's' && buf[10] == 'o' && buf[11] == 'm') ||
- (buf[8] == 'm' && buf[9] == 'm' && buf[10] == 'p' && buf[11] == '4') ||
- (buf[8] == 'm' && buf[9] == 'p' && buf[10] == '4' && buf[11] == '1') ||
- (buf[8] == 'm' && buf[9] == 'p' && buf[10] == '4' && buf[11] == '2') ||
- (buf[8] == 'm' && buf[9] == 'p' && buf[10] == '4' && buf[11] == 'v') ||
- (buf[8] == 'm' && buf[9] == 'p' && buf[10] == '7' && buf[11] == '1') ||
- (buf[8] == 'M' && buf[9] == 'S' && buf[10] == 'N' && buf[11] == 'V') ||
- (buf[8] == 'N' && buf[9] == 'D' && buf[10] == 'A' && buf[11] == 'S') ||
- (buf[8] == 'N' && buf[9] == 'D' && buf[10] == 'S' && buf[11] == 'C') ||
- (buf[8] == 'N' && buf[9] == 'S' && buf[10] == 'D' && buf[11] == 'C') ||
- (buf[8] == 'N' && buf[9] == 'D' && buf[10] == 'S' && buf[11] == 'H') ||
- (buf[8] == 'N' && buf[9] == 'D' && buf[10] == 'S' && buf[11] == 'M') ||
- (buf[8] == 'N' && buf[9] == 'D' && buf[10] == 'S' && buf[11] == 'P') ||
- (buf[8] == 'N' && buf[9] == 'D' && buf[10] == 'S' && buf[11] == 'S') ||
- (buf[8] == 'N' && buf[9] == 'D' && buf[10] == 'X' && buf[11] == 'C') ||
- (buf[8] == 'N' && buf[9] == 'D' && buf[10] == 'X' && buf[11] == 'H') ||
- (buf[8] == 'N' && buf[9] == 'D' && buf[10] == 'X' && buf[11] == 'M') ||
- (buf[8] == 'N' && buf[9] == 'D' && buf[10] == 'X' && buf[11] == 'P') ||
- (buf[8] == 'N' && buf[9] == 'D' && buf[10] == 'X' && buf[11] == 'S') ||
- (buf[8] == 'F' && buf[9] == '4' && buf[10] == 'V' && buf[11] == ' ') ||
- (buf[8] == 'F' && buf[9] == '4' && buf[10] == 'P' && buf[11] == ' '))
-}
diff --git a/vendor/github.com/h2non/filetype/types/defaults.go b/vendor/github.com/h2non/filetype/types/defaults.go
deleted file mode 100644
index 0d985a05d..000000000
--- a/vendor/github.com/h2non/filetype/types/defaults.go
+++ /dev/null
@@ -1,4 +0,0 @@
-package types
-
-// Unknown default type
-var Unknown = NewType("unknown", "")
diff --git a/vendor/github.com/h2non/filetype/types/mime.go b/vendor/github.com/h2non/filetype/types/mime.go
deleted file mode 100644
index fe8ea822e..000000000
--- a/vendor/github.com/h2non/filetype/types/mime.go
+++ /dev/null
@@ -1,14 +0,0 @@
-package types
-
-// MIME stores the file MIME type values
-type MIME struct {
- Type string
- Subtype string
- Value string
-}
-
-// Creates a new MIME type
-func NewMIME(mime string) MIME {
- kind, subtype := splitMime(mime)
- return MIME{Type: kind, Subtype: subtype, Value: mime}
-}
diff --git a/vendor/github.com/h2non/filetype/types/split.go b/vendor/github.com/h2non/filetype/types/split.go
deleted file mode 100644
index 68a5a8b3b..000000000
--- a/vendor/github.com/h2non/filetype/types/split.go
+++ /dev/null
@@ -1,11 +0,0 @@
-package types
-
-import "strings"
-
-func splitMime(s string) (string, string) {
- x := strings.Split(s, "/")
- if len(x) > 1 {
- return x[0], x[1]
- }
- return x[0], ""
-}
diff --git a/vendor/github.com/h2non/filetype/types/type.go b/vendor/github.com/h2non/filetype/types/type.go
deleted file mode 100644
index 5cf7dfc4b..000000000
--- a/vendor/github.com/h2non/filetype/types/type.go
+++ /dev/null
@@ -1,16 +0,0 @@
-package types
-
-// Type represents a file MIME type and its extension
-type Type struct {
- MIME MIME
- Extension string
-}
-
-// NewType creates a new Type
-func NewType(ext, mime string) Type {
- t := Type{
- MIME: NewMIME(mime),
- Extension: ext,
- }
- return Add(t)
-}
diff --git a/vendor/github.com/h2non/filetype/types/types.go b/vendor/github.com/h2non/filetype/types/types.go
deleted file mode 100644
index 27d433eec..000000000
--- a/vendor/github.com/h2non/filetype/types/types.go
+++ /dev/null
@@ -1,18 +0,0 @@
-package types
-
-var Types = make(map[string]Type)
-
-// Add registers a new type in the package
-func Add(t Type) Type {
- Types[t.Extension] = t
- return t
-}
-
-// Get retrieves a Type by extension
-func Get(ext string) Type {
- kind := Types[ext]
- if kind.Extension != "" {
- return kind
- }
- return Unknown
-}
diff --git a/vendor/github.com/h2non/filetype/version.go b/vendor/github.com/h2non/filetype/version.go
deleted file mode 100644
index be84ec228..000000000
--- a/vendor/github.com/h2non/filetype/version.go
+++ /dev/null
@@ -1,4 +0,0 @@
-package filetype
-
-// Version exposes the current package version.
-const Version = "1.0.8"
diff --git a/vendor/github.com/hashicorp/errwrap/LICENSE b/vendor/github.com/hashicorp/errwrap/LICENSE
deleted file mode 100644
index c33dcc7c9..000000000
--- a/vendor/github.com/hashicorp/errwrap/LICENSE
+++ /dev/null
@@ -1,354 +0,0 @@
-Mozilla Public License, version 2.0
-
-1. Definitions
-
-1.1. “Contributor”
-
- means each individual or legal entity that creates, contributes to the
- creation of, or owns Covered Software.
-
-1.2. “Contributor Version”
-
- means the combination of the Contributions of others (if any) used by a
- Contributor and that particular Contributor’s Contribution.
-
-1.3. “Contribution”
-
- means Covered Software of a particular Contributor.
-
-1.4. “Covered Software”
-
- means Source Code Form to which the initial Contributor has attached the
- notice in Exhibit A, the Executable Form of such Source Code Form, and
- Modifications of such Source Code Form, in each case including portions
- thereof.
-
-1.5. “Incompatible With Secondary Licenses”
- means
-
- a. that the initial Contributor has attached the notice described in
- Exhibit B to the Covered Software; or
-
- b. that the Covered Software was made available under the terms of version
- 1.1 or earlier of the License, but not also under the terms of a
- Secondary License.
-
-1.6. “Executable Form”
-
- means any form of the work other than Source Code Form.
-
-1.7. “Larger Work”
-
- means a work that combines Covered Software with other material, in a separate
- file or files, that is not Covered Software.
-
-1.8. “License”
-
- means this document.
-
-1.9. “Licensable”
-
- means having the right to grant, to the maximum extent possible, whether at the
- time of the initial grant or subsequently, any and all of the rights conveyed by
- this License.
-
-1.10. “Modifications”
-
- means any of the following:
-
- a. any file in Source Code Form that results from an addition to, deletion
- from, or modification of the contents of Covered Software; or
-
- b. any new file in Source Code Form that contains any Covered Software.
-
-1.11. “Patent Claims” of a Contributor
-
- means any patent claim(s), including without limitation, method, process,
- and apparatus claims, in any patent Licensable by such Contributor that
- would be infringed, but for the grant of the License, by the making,
- using, selling, offering for sale, having made, import, or transfer of
- either its Contributions or its Contributor Version.
-
-1.12. “Secondary License”
-
- means either the GNU General Public License, Version 2.0, the GNU Lesser
- General Public License, Version 2.1, the GNU Affero General Public
- License, Version 3.0, or any later versions of those licenses.
-
-1.13. “Source Code Form”
-
- means the form of the work preferred for making modifications.
-
-1.14. “You” (or “Your”)
-
- means an individual or a legal entity exercising rights under this
- License. For legal entities, “You” includes any entity that controls, is
- controlled by, or is under common control with You. For purposes of this
- definition, “control” means (a) the power, direct or indirect, to cause
- the direction or management of such entity, whether by contract or
- otherwise, or (b) ownership of more than fifty percent (50%) of the
- outstanding shares or beneficial ownership of such entity.
-
-
-2. License Grants and Conditions
-
-2.1. Grants
-
- Each Contributor hereby grants You a world-wide, royalty-free,
- non-exclusive license:
-
- a. under intellectual property rights (other than patent or trademark)
- Licensable by such Contributor to use, reproduce, make available,
- modify, display, perform, distribute, and otherwise exploit its
- Contributions, either on an unmodified basis, with Modifications, or as
- part of a Larger Work; and
-
- b. under Patent Claims of such Contributor to make, use, sell, offer for
- sale, have made, import, and otherwise transfer either its Contributions
- or its Contributor Version.
-
-2.2. Effective Date
-
- The licenses granted in Section 2.1 with respect to any Contribution become
- effective for each Contribution on the date the Contributor first distributes
- such Contribution.
-
-2.3. Limitations on Grant Scope
-
- The licenses granted in this Section 2 are the only rights granted under this
- License. No additional rights or licenses will be implied from the distribution
- or licensing of Covered Software under this License. Notwithstanding Section
- 2.1(b) above, no patent license is granted by a Contributor:
-
- a. for any code that a Contributor has removed from Covered Software; or
-
- b. for infringements caused by: (i) Your and any other third party’s
- modifications of Covered Software, or (ii) the combination of its
- Contributions with other software (except as part of its Contributor
- Version); or
-
- c. under Patent Claims infringed by Covered Software in the absence of its
- Contributions.
-
- This License does not grant any rights in the trademarks, service marks, or
- logos of any Contributor (except as may be necessary to comply with the
- notice requirements in Section 3.4).
-
-2.4. Subsequent Licenses
-
- No Contributor makes additional grants as a result of Your choice to
- distribute the Covered Software under a subsequent version of this License
- (see Section 10.2) or under the terms of a Secondary License (if permitted
- under the terms of Section 3.3).
-
-2.5. Representation
-
- Each Contributor represents that the Contributor believes its Contributions
- are its original creation(s) or it has sufficient rights to grant the
- rights to its Contributions conveyed by this License.
-
-2.6. Fair Use
-
- This License is not intended to limit any rights You have under applicable
- copyright doctrines of fair use, fair dealing, or other equivalents.
-
-2.7. Conditions
-
- Sections 3.1, 3.2, 3.3, and 3.4 are conditions of the licenses granted in
- Section 2.1.
-
-
-3. Responsibilities
-
-3.1. Distribution of Source Form
-
- All distribution of Covered Software in Source Code Form, including any
- Modifications that You create or to which You contribute, must be under the
- terms of this License. You must inform recipients that the Source Code Form
- of the Covered Software is governed by the terms of this License, and how
- they can obtain a copy of this License. You may not attempt to alter or
- restrict the recipients’ rights in the Source Code Form.
-
-3.2. Distribution of Executable Form
-
- If You distribute Covered Software in Executable Form then:
-
- a. such Covered Software must also be made available in Source Code Form,
- as described in Section 3.1, and You must inform recipients of the
- Executable Form how they can obtain a copy of such Source Code Form by
- reasonable means in a timely manner, at a charge no more than the cost
- of distribution to the recipient; and
-
- b. You may distribute such Executable Form under the terms of this License,
- or sublicense it under different terms, provided that the license for
- the Executable Form does not attempt to limit or alter the recipients’
- rights in the Source Code Form under this License.
-
-3.3. Distribution of a Larger Work
-
- You may create and distribute a Larger Work under terms of Your choice,
- provided that You also comply with the requirements of this License for the
- Covered Software. If the Larger Work is a combination of Covered Software
- with a work governed by one or more Secondary Licenses, and the Covered
- Software is not Incompatible With Secondary Licenses, this License permits
- You to additionally distribute such Covered Software under the terms of
- such Secondary License(s), so that the recipient of the Larger Work may, at
- their option, further distribute the Covered Software under the terms of
- either this License or such Secondary License(s).
-
-3.4. Notices
-
- You may not remove or alter the substance of any license notices (including
- copyright notices, patent notices, disclaimers of warranty, or limitations
- of liability) contained within the Source Code Form of the Covered
- Software, except that You may alter any license notices to the extent
- required to remedy known factual inaccuracies.
-
-3.5. Application of Additional Terms
-
- You may choose to offer, and to charge a fee for, warranty, support,
- indemnity or liability obligations to one or more recipients of Covered
- Software. However, You may do so only on Your own behalf, and not on behalf
- of any Contributor. You must make it absolutely clear that any such
- warranty, support, indemnity, or liability obligation is offered by You
- alone, and You hereby agree to indemnify every Contributor for any
- liability incurred by such Contributor as a result of warranty, support,
- indemnity or liability terms You offer. You may include additional
- disclaimers of warranty and limitations of liability specific to any
- jurisdiction.
-
-4. Inability to Comply Due to Statute or Regulation
-
- If it is impossible for You to comply with any of the terms of this License
- with respect to some or all of the Covered Software due to statute, judicial
- order, or regulation then You must: (a) comply with the terms of this License
- to the maximum extent possible; and (b) describe the limitations and the code
- they affect. Such description must be placed in a text file included with all
- distributions of the Covered Software under this License. Except to the
- extent prohibited by statute or regulation, such description must be
- sufficiently detailed for a recipient of ordinary skill to be able to
- understand it.
-
-5. Termination
-
-5.1. The rights granted under this License will terminate automatically if You
- fail to comply with any of its terms. However, if You become compliant,
- then the rights granted under this License from a particular Contributor
- are reinstated (a) provisionally, unless and until such Contributor
- explicitly and finally terminates Your grants, and (b) on an ongoing basis,
- if such Contributor fails to notify You of the non-compliance by some
- reasonable means prior to 60 days after You have come back into compliance.
- Moreover, Your grants from a particular Contributor are reinstated on an
- ongoing basis if such Contributor notifies You of the non-compliance by
- some reasonable means, this is the first time You have received notice of
- non-compliance with this License from such Contributor, and You become
- compliant prior to 30 days after Your receipt of the notice.
-
-5.2. If You initiate litigation against any entity by asserting a patent
- infringement claim (excluding declaratory judgment actions, counter-claims,
- and cross-claims) alleging that a Contributor Version directly or
- indirectly infringes any patent, then the rights granted to You by any and
- all Contributors for the Covered Software under Section 2.1 of this License
- shall terminate.
-
-5.3. In the event of termination under Sections 5.1 or 5.2 above, all end user
- license agreements (excluding distributors and resellers) which have been
- validly granted by You or Your distributors under this License prior to
- termination shall survive termination.
-
-6. Disclaimer of Warranty
-
- Covered Software is provided under this License on an “as is” basis, without
- warranty of any kind, either expressed, implied, or statutory, including,
- without limitation, warranties that the Covered Software is free of defects,
- merchantable, fit for a particular purpose or non-infringing. The entire
- risk as to the quality and performance of the Covered Software is with You.
- Should any Covered Software prove defective in any respect, You (not any
- Contributor) assume the cost of any necessary servicing, repair, or
- correction. This disclaimer of warranty constitutes an essential part of this
- License. No use of any Covered Software is authorized under this License
- except under this disclaimer.
-
-7. Limitation of Liability
-
- Under no circumstances and under no legal theory, whether tort (including
- negligence), contract, or otherwise, shall any Contributor, or anyone who
- distributes Covered Software as permitted above, be liable to You for any
- direct, indirect, special, incidental, or consequential damages of any
- character including, without limitation, damages for lost profits, loss of
- goodwill, work stoppage, computer failure or malfunction, or any and all
- other commercial damages or losses, even if such party shall have been
- informed of the possibility of such damages. This limitation of liability
- shall not apply to liability for death or personal injury resulting from such
- party’s negligence to the extent applicable law prohibits such limitation.
- Some jurisdictions do not allow the exclusion or limitation of incidental or
- consequential damages, so this exclusion and limitation may not apply to You.
-
-8. Litigation
-
- Any litigation relating to this License may be brought only in the courts of
- a jurisdiction where the defendant maintains its principal place of business
- and such litigation shall be governed by laws of that jurisdiction, without
- reference to its conflict-of-law provisions. Nothing in this Section shall
- prevent a party’s ability to bring cross-claims or counter-claims.
-
-9. Miscellaneous
-
- This License represents the complete agreement concerning the subject matter
- hereof. If any provision of this License is held to be unenforceable, such
- provision shall be reformed only to the extent necessary to make it
- enforceable. Any law or regulation which provides that the language of a
- contract shall be construed against the drafter shall not be used to construe
- this License against a Contributor.
-
-
-10. Versions of the License
-
-10.1. New Versions
-
- Mozilla Foundation is the license steward. Except as provided in Section
- 10.3, no one other than the license steward has the right to modify or
- publish new versions of this License. Each version will be given a
- distinguishing version number.
-
-10.2. Effect of New Versions
-
- You may distribute the Covered Software under the terms of the version of
- the License under which You originally received the Covered Software, or
- under the terms of any subsequent version published by the license
- steward.
-
-10.3. Modified Versions
-
- If you create software not governed by this License, and you want to
- create a new license for such software, you may create and use a modified
- version of this License if you rename the license and remove any
- references to the name of the license steward (except to note that such
- modified license differs from this License).
-
-10.4. Distributing Source Code Form that is Incompatible With Secondary Licenses
- If You choose to distribute Source Code Form that is Incompatible With
- Secondary Licenses under the terms of this version of the License, the
- notice described in Exhibit B of this License must be attached.
-
-Exhibit A - Source Code Form License Notice
-
- This Source Code Form is subject to the
- terms of the Mozilla Public License, v.
- 2.0. If a copy of the MPL was not
- distributed with this file, You can
- obtain one at
- http://mozilla.org/MPL/2.0/.
-
-If it is not possible or desirable to put the notice in a particular file, then
-You may include the notice in a location (such as a LICENSE file in a relevant
-directory) where a recipient would be likely to look for such a notice.
-
-You may add additional accurate notices of copyright ownership.
-
-Exhibit B - “Incompatible With Secondary Licenses” Notice
-
- This Source Code Form is “Incompatible
- With Secondary Licenses”, as defined by
- the Mozilla Public License, v. 2.0.
-
diff --git a/vendor/github.com/hashicorp/errwrap/README.md b/vendor/github.com/hashicorp/errwrap/README.md
deleted file mode 100644
index 444df08f8..000000000
--- a/vendor/github.com/hashicorp/errwrap/README.md
+++ /dev/null
@@ -1,89 +0,0 @@
-# errwrap
-
-`errwrap` is a package for Go that formalizes the pattern of wrapping errors
-and checking if an error contains another error.
-
-There is a common pattern in Go of taking a returned `error` value and
-then wrapping it (such as with `fmt.Errorf`) before returning it. The problem
-with this pattern is that you completely lose the original `error` structure.
-
-Arguably the _correct_ approach is that you should make a custom structure
-implementing the `error` interface, and have the original error as a field
-on that structure, such [as this example](http://golang.org/pkg/os/#PathError).
-This is a good approach, but you have to know the entire chain of possible
-rewrapping that happens, when you might just care about one.
-
-`errwrap` formalizes this pattern (it doesn't matter what approach you use
-above) by giving a single interface for wrapping errors, checking if a specific
-error is wrapped, and extracting that error.
-
-## Installation and Docs
-
-Install using `go get github.com/hashicorp/errwrap`.
-
-Full documentation is available at
-http://godoc.org/github.com/hashicorp/errwrap
-
-## Usage
-
-#### Basic Usage
-
-Below is a very basic example of its usage:
-
-```go
-// A function that always returns an error, but wraps it, like a real
-// function might.
-func tryOpen() error {
- _, err := os.Open("/i/dont/exist")
- if err != nil {
- return errwrap.Wrapf("Doesn't exist: {{err}}", err)
- }
-
- return nil
-}
-
-func main() {
- err := tryOpen()
-
- // We can use the Contains helpers to check if an error contains
- // another error. It is safe to do this with a nil error, or with
- // an error that doesn't even use the errwrap package.
- if errwrap.Contains(err, "does not exist") {
- // Do something
- }
- if errwrap.ContainsType(err, new(os.PathError)) {
- // Do something
- }
-
- // Or we can use the associated `Get` functions to just extract
- // a specific error. This would return nil if that specific error doesn't
- // exist.
- perr := errwrap.GetType(err, new(os.PathError))
-}
-```
-
-#### Custom Types
-
-If you're already making custom types that properly wrap errors, then
-you can get all the functionality of `errwraps.Contains` and such by
-implementing the `Wrapper` interface with just one function. Example:
-
-```go
-type AppError {
- Code ErrorCode
- Err error
-}
-
-func (e *AppError) WrappedErrors() []error {
- return []error{e.Err}
-}
-```
-
-Now this works:
-
-```go
-err := &AppError{Err: fmt.Errorf("an error")}
-if errwrap.ContainsType(err, fmt.Errorf("")) {
- // This will work!
-}
-```
diff --git a/vendor/github.com/hashicorp/errwrap/errwrap.go b/vendor/github.com/hashicorp/errwrap/errwrap.go
deleted file mode 100644
index a733bef18..000000000
--- a/vendor/github.com/hashicorp/errwrap/errwrap.go
+++ /dev/null
@@ -1,169 +0,0 @@
-// Package errwrap implements methods to formalize error wrapping in Go.
-//
-// All of the top-level functions that take an `error` are built to be able
-// to take any error, not just wrapped errors. This allows you to use errwrap
-// without having to type-check and type-cast everywhere.
-package errwrap
-
-import (
- "errors"
- "reflect"
- "strings"
-)
-
-// WalkFunc is the callback called for Walk.
-type WalkFunc func(error)
-
-// Wrapper is an interface that can be implemented by custom types to
-// have all the Contains, Get, etc. functions in errwrap work.
-//
-// When Walk reaches a Wrapper, it will call the callback for every
-// wrapped error in addition to the wrapper itself. Since all the top-level
-// functions in errwrap use Walk, this means that all those functions work
-// with your custom type.
-type Wrapper interface {
- WrappedErrors() []error
-}
-
-// Wrap defines that outer wraps inner, returning an error type that
-// can be cleanly used with the other methods in this package, such as
-// Contains, GetAll, etc.
-//
-// This function won't modify the error message at all (the outer message
-// will be used).
-func Wrap(outer, inner error) error {
- return &wrappedError{
- Outer: outer,
- Inner: inner,
- }
-}
-
-// Wrapf wraps an error with a formatting message. This is similar to using
-// `fmt.Errorf` to wrap an error. If you're using `fmt.Errorf` to wrap
-// errors, you should replace it with this.
-//
-// format is the format of the error message. The string '{{err}}' will
-// be replaced with the original error message.
-func Wrapf(format string, err error) error {
- outerMsg := ""
- if err != nil {
- outerMsg = err.Error()
- }
-
- outer := errors.New(strings.Replace(
- format, "{{err}}", outerMsg, -1))
-
- return Wrap(outer, err)
-}
-
-// Contains checks if the given error contains an error with the
-// message msg. If err is not a wrapped error, this will always return
-// false unless the error itself happens to match this msg.
-func Contains(err error, msg string) bool {
- return len(GetAll(err, msg)) > 0
-}
-
-// ContainsType checks if the given error contains an error with
-// the same concrete type as v. If err is not a wrapped error, this will
-// check the err itself.
-func ContainsType(err error, v interface{}) bool {
- return len(GetAllType(err, v)) > 0
-}
-
-// Get is the same as GetAll but returns the deepest matching error.
-func Get(err error, msg string) error {
- es := GetAll(err, msg)
- if len(es) > 0 {
- return es[len(es)-1]
- }
-
- return nil
-}
-
-// GetType is the same as GetAllType but returns the deepest matching error.
-func GetType(err error, v interface{}) error {
- es := GetAllType(err, v)
- if len(es) > 0 {
- return es[len(es)-1]
- }
-
- return nil
-}
-
-// GetAll gets all the errors that might be wrapped in err with the
-// given message. The order of the errors is such that the outermost
-// matching error (the most recent wrap) is index zero, and so on.
-func GetAll(err error, msg string) []error {
- var result []error
-
- Walk(err, func(err error) {
- if err.Error() == msg {
- result = append(result, err)
- }
- })
-
- return result
-}
-
-// GetAllType gets all the errors that are the same type as v.
-//
-// The order of the return value is the same as described in GetAll.
-func GetAllType(err error, v interface{}) []error {
- var result []error
-
- var search string
- if v != nil {
- search = reflect.TypeOf(v).String()
- }
- Walk(err, func(err error) {
- var needle string
- if err != nil {
- needle = reflect.TypeOf(err).String()
- }
-
- if needle == search {
- result = append(result, err)
- }
- })
-
- return result
-}
-
-// Walk walks all the wrapped errors in err and calls the callback. If
-// err isn't a wrapped error, this will be called once for err. If err
-// is a wrapped error, the callback will be called for both the wrapper
-// that implements error as well as the wrapped error itself.
-func Walk(err error, cb WalkFunc) {
- if err == nil {
- return
- }
-
- switch e := err.(type) {
- case *wrappedError:
- cb(e.Outer)
- Walk(e.Inner, cb)
- case Wrapper:
- cb(err)
-
- for _, err := range e.WrappedErrors() {
- Walk(err, cb)
- }
- default:
- cb(err)
- }
-}
-
-// wrappedError is an implementation of error that has both the
-// outer and inner errors.
-type wrappedError struct {
- Outer error
- Inner error
-}
-
-func (w *wrappedError) Error() string {
- return w.Outer.Error()
-}
-
-func (w *wrappedError) WrappedErrors() []error {
- return []error{w.Outer, w.Inner}
-}
diff --git a/vendor/github.com/hashicorp/errwrap/go.mod b/vendor/github.com/hashicorp/errwrap/go.mod
deleted file mode 100644
index c9b84022c..000000000
--- a/vendor/github.com/hashicorp/errwrap/go.mod
+++ /dev/null
@@ -1 +0,0 @@
-module github.com/hashicorp/errwrap
diff --git a/vendor/github.com/hashicorp/go-multierror/.travis.yml b/vendor/github.com/hashicorp/go-multierror/.travis.yml
deleted file mode 100644
index 304a83595..000000000
--- a/vendor/github.com/hashicorp/go-multierror/.travis.yml
+++ /dev/null
@@ -1,12 +0,0 @@
-sudo: false
-
-language: go
-
-go:
- - 1.x
-
-branches:
- only:
- - master
-
-script: make test testrace
diff --git a/vendor/github.com/hashicorp/go-multierror/LICENSE b/vendor/github.com/hashicorp/go-multierror/LICENSE
deleted file mode 100644
index 82b4de97c..000000000
--- a/vendor/github.com/hashicorp/go-multierror/LICENSE
+++ /dev/null
@@ -1,353 +0,0 @@
-Mozilla Public License, version 2.0
-
-1. Definitions
-
-1.1. “Contributor”
-
- means each individual or legal entity that creates, contributes to the
- creation of, or owns Covered Software.
-
-1.2. “Contributor Version”
-
- means the combination of the Contributions of others (if any) used by a
- Contributor and that particular Contributor’s Contribution.
-
-1.3. “Contribution”
-
- means Covered Software of a particular Contributor.
-
-1.4. “Covered Software”
-
- means Source Code Form to which the initial Contributor has attached the
- notice in Exhibit A, the Executable Form of such Source Code Form, and
- Modifications of such Source Code Form, in each case including portions
- thereof.
-
-1.5. “Incompatible With Secondary Licenses”
- means
-
- a. that the initial Contributor has attached the notice described in
- Exhibit B to the Covered Software; or
-
- b. that the Covered Software was made available under the terms of version
- 1.1 or earlier of the License, but not also under the terms of a
- Secondary License.
-
-1.6. “Executable Form”
-
- means any form of the work other than Source Code Form.
-
-1.7. “Larger Work”
-
- means a work that combines Covered Software with other material, in a separate
- file or files, that is not Covered Software.
-
-1.8. “License”
-
- means this document.
-
-1.9. “Licensable”
-
- means having the right to grant, to the maximum extent possible, whether at the
- time of the initial grant or subsequently, any and all of the rights conveyed by
- this License.
-
-1.10. “Modifications”
-
- means any of the following:
-
- a. any file in Source Code Form that results from an addition to, deletion
- from, or modification of the contents of Covered Software; or
-
- b. any new file in Source Code Form that contains any Covered Software.
-
-1.11. “Patent Claims” of a Contributor
-
- means any patent claim(s), including without limitation, method, process,
- and apparatus claims, in any patent Licensable by such Contributor that
- would be infringed, but for the grant of the License, by the making,
- using, selling, offering for sale, having made, import, or transfer of
- either its Contributions or its Contributor Version.
-
-1.12. “Secondary License”
-
- means either the GNU General Public License, Version 2.0, the GNU Lesser
- General Public License, Version 2.1, the GNU Affero General Public
- License, Version 3.0, or any later versions of those licenses.
-
-1.13. “Source Code Form”
-
- means the form of the work preferred for making modifications.
-
-1.14. “You” (or “Your”)
-
- means an individual or a legal entity exercising rights under this
- License. For legal entities, “You” includes any entity that controls, is
- controlled by, or is under common control with You. For purposes of this
- definition, “control” means (a) the power, direct or indirect, to cause
- the direction or management of such entity, whether by contract or
- otherwise, or (b) ownership of more than fifty percent (50%) of the
- outstanding shares or beneficial ownership of such entity.
-
-
-2. License Grants and Conditions
-
-2.1. Grants
-
- Each Contributor hereby grants You a world-wide, royalty-free,
- non-exclusive license:
-
- a. under intellectual property rights (other than patent or trademark)
- Licensable by such Contributor to use, reproduce, make available,
- modify, display, perform, distribute, and otherwise exploit its
- Contributions, either on an unmodified basis, with Modifications, or as
- part of a Larger Work; and
-
- b. under Patent Claims of such Contributor to make, use, sell, offer for
- sale, have made, import, and otherwise transfer either its Contributions
- or its Contributor Version.
-
-2.2. Effective Date
-
- The licenses granted in Section 2.1 with respect to any Contribution become
- effective for each Contribution on the date the Contributor first distributes
- such Contribution.
-
-2.3. Limitations on Grant Scope
-
- The licenses granted in this Section 2 are the only rights granted under this
- License. No additional rights or licenses will be implied from the distribution
- or licensing of Covered Software under this License. Notwithstanding Section
- 2.1(b) above, no patent license is granted by a Contributor:
-
- a. for any code that a Contributor has removed from Covered Software; or
-
- b. for infringements caused by: (i) Your and any other third party’s
- modifications of Covered Software, or (ii) the combination of its
- Contributions with other software (except as part of its Contributor
- Version); or
-
- c. under Patent Claims infringed by Covered Software in the absence of its
- Contributions.
-
- This License does not grant any rights in the trademarks, service marks, or
- logos of any Contributor (except as may be necessary to comply with the
- notice requirements in Section 3.4).
-
-2.4. Subsequent Licenses
-
- No Contributor makes additional grants as a result of Your choice to
- distribute the Covered Software under a subsequent version of this License
- (see Section 10.2) or under the terms of a Secondary License (if permitted
- under the terms of Section 3.3).
-
-2.5. Representation
-
- Each Contributor represents that the Contributor believes its Contributions
- are its original creation(s) or it has sufficient rights to grant the
- rights to its Contributions conveyed by this License.
-
-2.6. Fair Use
-
- This License is not intended to limit any rights You have under applicable
- copyright doctrines of fair use, fair dealing, or other equivalents.
-
-2.7. Conditions
-
- Sections 3.1, 3.2, 3.3, and 3.4 are conditions of the licenses granted in
- Section 2.1.
-
-
-3. Responsibilities
-
-3.1. Distribution of Source Form
-
- All distribution of Covered Software in Source Code Form, including any
- Modifications that You create or to which You contribute, must be under the
- terms of this License. You must inform recipients that the Source Code Form
- of the Covered Software is governed by the terms of this License, and how
- they can obtain a copy of this License. You may not attempt to alter or
- restrict the recipients’ rights in the Source Code Form.
-
-3.2. Distribution of Executable Form
-
- If You distribute Covered Software in Executable Form then:
-
- a. such Covered Software must also be made available in Source Code Form,
- as described in Section 3.1, and You must inform recipients of the
- Executable Form how they can obtain a copy of such Source Code Form by
- reasonable means in a timely manner, at a charge no more than the cost
- of distribution to the recipient; and
-
- b. You may distribute such Executable Form under the terms of this License,
- or sublicense it under different terms, provided that the license for
- the Executable Form does not attempt to limit or alter the recipients’
- rights in the Source Code Form under this License.
-
-3.3. Distribution of a Larger Work
-
- You may create and distribute a Larger Work under terms of Your choice,
- provided that You also comply with the requirements of this License for the
- Covered Software. If the Larger Work is a combination of Covered Software
- with a work governed by one or more Secondary Licenses, and the Covered
- Software is not Incompatible With Secondary Licenses, this License permits
- You to additionally distribute such Covered Software under the terms of
- such Secondary License(s), so that the recipient of the Larger Work may, at
- their option, further distribute the Covered Software under the terms of
- either this License or such Secondary License(s).
-
-3.4. Notices
-
- You may not remove or alter the substance of any license notices (including
- copyright notices, patent notices, disclaimers of warranty, or limitations
- of liability) contained within the Source Code Form of the Covered
- Software, except that You may alter any license notices to the extent
- required to remedy known factual inaccuracies.
-
-3.5. Application of Additional Terms
-
- You may choose to offer, and to charge a fee for, warranty, support,
- indemnity or liability obligations to one or more recipients of Covered
- Software. However, You may do so only on Your own behalf, and not on behalf
- of any Contributor. You must make it absolutely clear that any such
- warranty, support, indemnity, or liability obligation is offered by You
- alone, and You hereby agree to indemnify every Contributor for any
- liability incurred by such Contributor as a result of warranty, support,
- indemnity or liability terms You offer. You may include additional
- disclaimers of warranty and limitations of liability specific to any
- jurisdiction.
-
-4. Inability to Comply Due to Statute or Regulation
-
- If it is impossible for You to comply with any of the terms of this License
- with respect to some or all of the Covered Software due to statute, judicial
- order, or regulation then You must: (a) comply with the terms of this License
- to the maximum extent possible; and (b) describe the limitations and the code
- they affect. Such description must be placed in a text file included with all
- distributions of the Covered Software under this License. Except to the
- extent prohibited by statute or regulation, such description must be
- sufficiently detailed for a recipient of ordinary skill to be able to
- understand it.
-
-5. Termination
-
-5.1. The rights granted under this License will terminate automatically if You
- fail to comply with any of its terms. However, if You become compliant,
- then the rights granted under this License from a particular Contributor
- are reinstated (a) provisionally, unless and until such Contributor
- explicitly and finally terminates Your grants, and (b) on an ongoing basis,
- if such Contributor fails to notify You of the non-compliance by some
- reasonable means prior to 60 days after You have come back into compliance.
- Moreover, Your grants from a particular Contributor are reinstated on an
- ongoing basis if such Contributor notifies You of the non-compliance by
- some reasonable means, this is the first time You have received notice of
- non-compliance with this License from such Contributor, and You become
- compliant prior to 30 days after Your receipt of the notice.
-
-5.2. If You initiate litigation against any entity by asserting a patent
- infringement claim (excluding declaratory judgment actions, counter-claims,
- and cross-claims) alleging that a Contributor Version directly or
- indirectly infringes any patent, then the rights granted to You by any and
- all Contributors for the Covered Software under Section 2.1 of this License
- shall terminate.
-
-5.3. In the event of termination under Sections 5.1 or 5.2 above, all end user
- license agreements (excluding distributors and resellers) which have been
- validly granted by You or Your distributors under this License prior to
- termination shall survive termination.
-
-6. Disclaimer of Warranty
-
- Covered Software is provided under this License on an “as is” basis, without
- warranty of any kind, either expressed, implied, or statutory, including,
- without limitation, warranties that the Covered Software is free of defects,
- merchantable, fit for a particular purpose or non-infringing. The entire
- risk as to the quality and performance of the Covered Software is with You.
- Should any Covered Software prove defective in any respect, You (not any
- Contributor) assume the cost of any necessary servicing, repair, or
- correction. This disclaimer of warranty constitutes an essential part of this
- License. No use of any Covered Software is authorized under this License
- except under this disclaimer.
-
-7. Limitation of Liability
-
- Under no circumstances and under no legal theory, whether tort (including
- negligence), contract, or otherwise, shall any Contributor, or anyone who
- distributes Covered Software as permitted above, be liable to You for any
- direct, indirect, special, incidental, or consequential damages of any
- character including, without limitation, damages for lost profits, loss of
- goodwill, work stoppage, computer failure or malfunction, or any and all
- other commercial damages or losses, even if such party shall have been
- informed of the possibility of such damages. This limitation of liability
- shall not apply to liability for death or personal injury resulting from such
- party’s negligence to the extent applicable law prohibits such limitation.
- Some jurisdictions do not allow the exclusion or limitation of incidental or
- consequential damages, so this exclusion and limitation may not apply to You.
-
-8. Litigation
-
- Any litigation relating to this License may be brought only in the courts of
- a jurisdiction where the defendant maintains its principal place of business
- and such litigation shall be governed by laws of that jurisdiction, without
- reference to its conflict-of-law provisions. Nothing in this Section shall
- prevent a party’s ability to bring cross-claims or counter-claims.
-
-9. Miscellaneous
-
- This License represents the complete agreement concerning the subject matter
- hereof. If any provision of this License is held to be unenforceable, such
- provision shall be reformed only to the extent necessary to make it
- enforceable. Any law or regulation which provides that the language of a
- contract shall be construed against the drafter shall not be used to construe
- this License against a Contributor.
-
-
-10. Versions of the License
-
-10.1. New Versions
-
- Mozilla Foundation is the license steward. Except as provided in Section
- 10.3, no one other than the license steward has the right to modify or
- publish new versions of this License. Each version will be given a
- distinguishing version number.
-
-10.2. Effect of New Versions
-
- You may distribute the Covered Software under the terms of the version of
- the License under which You originally received the Covered Software, or
- under the terms of any subsequent version published by the license
- steward.
-
-10.3. Modified Versions
-
- If you create software not governed by this License, and you want to
- create a new license for such software, you may create and use a modified
- version of this License if you rename the license and remove any
- references to the name of the license steward (except to note that such
- modified license differs from this License).
-
-10.4. Distributing Source Code Form that is Incompatible With Secondary Licenses
- If You choose to distribute Source Code Form that is Incompatible With
- Secondary Licenses under the terms of this version of the License, the
- notice described in Exhibit B of this License must be attached.
-
-Exhibit A - Source Code Form License Notice
-
- This Source Code Form is subject to the
- terms of the Mozilla Public License, v.
- 2.0. If a copy of the MPL was not
- distributed with this file, You can
- obtain one at
- http://mozilla.org/MPL/2.0/.
-
-If it is not possible or desirable to put the notice in a particular file, then
-You may include the notice in a location (such as a LICENSE file in a relevant
-directory) where a recipient would be likely to look for such a notice.
-
-You may add additional accurate notices of copyright ownership.
-
-Exhibit B - “Incompatible With Secondary Licenses” Notice
-
- This Source Code Form is “Incompatible
- With Secondary Licenses”, as defined by
- the Mozilla Public License, v. 2.0.
diff --git a/vendor/github.com/hashicorp/go-multierror/Makefile b/vendor/github.com/hashicorp/go-multierror/Makefile
deleted file mode 100644
index b97cd6ed0..000000000
--- a/vendor/github.com/hashicorp/go-multierror/Makefile
+++ /dev/null
@@ -1,31 +0,0 @@
-TEST?=./...
-
-default: test
-
-# test runs the test suite and vets the code.
-test: generate
- @echo "==> Running tests..."
- @go list $(TEST) \
- | grep -v "/vendor/" \
- | xargs -n1 go test -timeout=60s -parallel=10 ${TESTARGS}
-
-# testrace runs the race checker
-testrace: generate
- @echo "==> Running tests (race)..."
- @go list $(TEST) \
- | grep -v "/vendor/" \
- | xargs -n1 go test -timeout=60s -race ${TESTARGS}
-
-# updatedeps installs all the dependencies needed to run and build.
-updatedeps:
- @sh -c "'${CURDIR}/scripts/deps.sh' '${NAME}'"
-
-# generate runs `go generate` to build the dynamically generated source files.
-generate:
- @echo "==> Generating..."
- @find . -type f -name '.DS_Store' -delete
- @go list ./... \
- | grep -v "/vendor/" \
- | xargs -n1 go generate
-
-.PHONY: default test testrace updatedeps generate
diff --git a/vendor/github.com/hashicorp/go-multierror/README.md b/vendor/github.com/hashicorp/go-multierror/README.md
deleted file mode 100644
index ead5830f7..000000000
--- a/vendor/github.com/hashicorp/go-multierror/README.md
+++ /dev/null
@@ -1,97 +0,0 @@
-# go-multierror
-
-[][travis]
-[][godocs]
-
-[travis]: https://travis-ci.org/hashicorp/go-multierror
-[godocs]: https://godoc.org/github.com/hashicorp/go-multierror
-
-`go-multierror` is a package for Go that provides a mechanism for
-representing a list of `error` values as a single `error`.
-
-This allows a function in Go to return an `error` that might actually
-be a list of errors. If the caller knows this, they can unwrap the
-list and access the errors. If the caller doesn't know, the error
-formats to a nice human-readable format.
-
-`go-multierror` implements the
-[errwrap](https://github.com/hashicorp/errwrap) interface so that it can
-be used with that library, as well.
-
-## Installation and Docs
-
-Install using `go get github.com/hashicorp/go-multierror`.
-
-Full documentation is available at
-http://godoc.org/github.com/hashicorp/go-multierror
-
-## Usage
-
-go-multierror is easy to use and purposely built to be unobtrusive in
-existing Go applications/libraries that may not be aware of it.
-
-**Building a list of errors**
-
-The `Append` function is used to create a list of errors. This function
-behaves a lot like the Go built-in `append` function: it doesn't matter
-if the first argument is nil, a `multierror.Error`, or any other `error`,
-the function behaves as you would expect.
-
-```go
-var result error
-
-if err := step1(); err != nil {
- result = multierror.Append(result, err)
-}
-if err := step2(); err != nil {
- result = multierror.Append(result, err)
-}
-
-return result
-```
-
-**Customizing the formatting of the errors**
-
-By specifying a custom `ErrorFormat`, you can customize the format
-of the `Error() string` function:
-
-```go
-var result *multierror.Error
-
-// ... accumulate errors here, maybe using Append
-
-if result != nil {
- result.ErrorFormat = func([]error) string {
- return "errors!"
- }
-}
-```
-
-**Accessing the list of errors**
-
-`multierror.Error` implements `error` so if the caller doesn't know about
-multierror, it will work just fine. But if you're aware a multierror might
-be returned, you can use type switches to access the list of errors:
-
-```go
-if err := something(); err != nil {
- if merr, ok := err.(*multierror.Error); ok {
- // Use merr.Errors
- }
-}
-```
-
-**Returning a multierror only if there are errors**
-
-If you build a `multierror.Error`, you can use the `ErrorOrNil` function
-to return an `error` implementation only if there are errors to return:
-
-```go
-var result *multierror.Error
-
-// ... accumulate errors here
-
-// Return the `error` only if errors were added to the multierror, otherwise
-// return nil since there are no errors.
-return result.ErrorOrNil()
-```
diff --git a/vendor/github.com/hashicorp/go-multierror/append.go b/vendor/github.com/hashicorp/go-multierror/append.go
deleted file mode 100644
index 775b6e753..000000000
--- a/vendor/github.com/hashicorp/go-multierror/append.go
+++ /dev/null
@@ -1,41 +0,0 @@
-package multierror
-
-// Append is a helper function that will append more errors
-// onto an Error in order to create a larger multi-error.
-//
-// If err is not a multierror.Error, then it will be turned into
-// one. If any of the errs are multierr.Error, they will be flattened
-// one level into err.
-func Append(err error, errs ...error) *Error {
- switch err := err.(type) {
- case *Error:
- // Typed nils can reach here, so initialize if we are nil
- if err == nil {
- err = new(Error)
- }
-
- // Go through each error and flatten
- for _, e := range errs {
- switch e := e.(type) {
- case *Error:
- if e != nil {
- err.Errors = append(err.Errors, e.Errors...)
- }
- default:
- if e != nil {
- err.Errors = append(err.Errors, e)
- }
- }
- }
-
- return err
- default:
- newErrs := make([]error, 0, len(errs)+1)
- if err != nil {
- newErrs = append(newErrs, err)
- }
- newErrs = append(newErrs, errs...)
-
- return Append(&Error{}, newErrs...)
- }
-}
diff --git a/vendor/github.com/hashicorp/go-multierror/flatten.go b/vendor/github.com/hashicorp/go-multierror/flatten.go
deleted file mode 100644
index aab8e9abe..000000000
--- a/vendor/github.com/hashicorp/go-multierror/flatten.go
+++ /dev/null
@@ -1,26 +0,0 @@
-package multierror
-
-// Flatten flattens the given error, merging any *Errors together into
-// a single *Error.
-func Flatten(err error) error {
- // If it isn't an *Error, just return the error as-is
- if _, ok := err.(*Error); !ok {
- return err
- }
-
- // Otherwise, make the result and flatten away!
- flatErr := new(Error)
- flatten(err, flatErr)
- return flatErr
-}
-
-func flatten(err error, flatErr *Error) {
- switch err := err.(type) {
- case *Error:
- for _, e := range err.Errors {
- flatten(e, flatErr)
- }
- default:
- flatErr.Errors = append(flatErr.Errors, err)
- }
-}
diff --git a/vendor/github.com/hashicorp/go-multierror/format.go b/vendor/github.com/hashicorp/go-multierror/format.go
deleted file mode 100644
index 47f13c49a..000000000
--- a/vendor/github.com/hashicorp/go-multierror/format.go
+++ /dev/null
@@ -1,27 +0,0 @@
-package multierror
-
-import (
- "fmt"
- "strings"
-)
-
-// ErrorFormatFunc is a function callback that is called by Error to
-// turn the list of errors into a string.
-type ErrorFormatFunc func([]error) string
-
-// ListFormatFunc is a basic formatter that outputs the number of errors
-// that occurred along with a bullet point list of the errors.
-func ListFormatFunc(es []error) string {
- if len(es) == 1 {
- return fmt.Sprintf("1 error occurred:\n\t* %s\n\n", es[0])
- }
-
- points := make([]string, len(es))
- for i, err := range es {
- points[i] = fmt.Sprintf("* %s", err)
- }
-
- return fmt.Sprintf(
- "%d errors occurred:\n\t%s\n\n",
- len(es), strings.Join(points, "\n\t"))
-}
diff --git a/vendor/github.com/hashicorp/go-multierror/go.mod b/vendor/github.com/hashicorp/go-multierror/go.mod
deleted file mode 100644
index 2534331d5..000000000
--- a/vendor/github.com/hashicorp/go-multierror/go.mod
+++ /dev/null
@@ -1,3 +0,0 @@
-module github.com/hashicorp/go-multierror
-
-require github.com/hashicorp/errwrap v1.0.0
diff --git a/vendor/github.com/hashicorp/go-multierror/go.sum b/vendor/github.com/hashicorp/go-multierror/go.sum
deleted file mode 100644
index 85b1f8ff3..000000000
--- a/vendor/github.com/hashicorp/go-multierror/go.sum
+++ /dev/null
@@ -1,4 +0,0 @@
-github.com/hashicorp/errwrap v0.0.0-20141028054710-7554cd9344ce h1:prjrVgOk2Yg6w+PflHoszQNLTUh4kaByUcEWM/9uin4=
-github.com/hashicorp/errwrap v0.0.0-20141028054710-7554cd9344ce/go.mod h1:YH+1FKiLXxHSkmPseP+kNlulaMuP3n2brvKWEqk/Jc4=
-github.com/hashicorp/errwrap v1.0.0 h1:hLrqtEDnRye3+sgx6z4qVLNuviH3MR5aQ0ykNJa/UYA=
-github.com/hashicorp/errwrap v1.0.0/go.mod h1:YH+1FKiLXxHSkmPseP+kNlulaMuP3n2brvKWEqk/Jc4=
diff --git a/vendor/github.com/hashicorp/go-multierror/multierror.go b/vendor/github.com/hashicorp/go-multierror/multierror.go
deleted file mode 100644
index 89b1422d1..000000000
--- a/vendor/github.com/hashicorp/go-multierror/multierror.go
+++ /dev/null
@@ -1,51 +0,0 @@
-package multierror
-
-import (
- "fmt"
-)
-
-// Error is an error type to track multiple errors. This is used to
-// accumulate errors in cases and return them as a single "error".
-type Error struct {
- Errors []error
- ErrorFormat ErrorFormatFunc
-}
-
-func (e *Error) Error() string {
- fn := e.ErrorFormat
- if fn == nil {
- fn = ListFormatFunc
- }
-
- return fn(e.Errors)
-}
-
-// ErrorOrNil returns an error interface if this Error represents
-// a list of errors, or returns nil if the list of errors is empty. This
-// function is useful at the end of accumulation to make sure that the value
-// returned represents the existence of errors.
-func (e *Error) ErrorOrNil() error {
- if e == nil {
- return nil
- }
- if len(e.Errors) == 0 {
- return nil
- }
-
- return e
-}
-
-func (e *Error) GoString() string {
- return fmt.Sprintf("*%#v", *e)
-}
-
-// WrappedErrors returns the list of errors that this Error is wrapping.
-// It is an implementation of the errwrap.Wrapper interface so that
-// multierror.Error can be used with that library.
-//
-// This method is not safe to be called concurrently and is no different
-// than accessing the Errors field directly. It is implemented only to
-// satisfy the errwrap.Wrapper interface.
-func (e *Error) WrappedErrors() []error {
- return e.Errors
-}
diff --git a/vendor/github.com/hashicorp/go-multierror/prefix.go b/vendor/github.com/hashicorp/go-multierror/prefix.go
deleted file mode 100644
index 5c477abe4..000000000
--- a/vendor/github.com/hashicorp/go-multierror/prefix.go
+++ /dev/null
@@ -1,37 +0,0 @@
-package multierror
-
-import (
- "fmt"
-
- "github.com/hashicorp/errwrap"
-)
-
-// Prefix is a helper function that will prefix some text
-// to the given error. If the error is a multierror.Error, then
-// it will be prefixed to each wrapped error.
-//
-// This is useful to use when appending multiple multierrors
-// together in order to give better scoping.
-func Prefix(err error, prefix string) error {
- if err == nil {
- return nil
- }
-
- format := fmt.Sprintf("%s {{err}}", prefix)
- switch err := err.(type) {
- case *Error:
- // Typed nils can reach here, so initialize if we are nil
- if err == nil {
- err = new(Error)
- }
-
- // Wrap each of the errors
- for i, e := range err.Errors {
- err.Errors[i] = errwrap.Wrapf(format, e)
- }
-
- return err
- default:
- return errwrap.Wrapf(format, err)
- }
-}
diff --git a/vendor/github.com/hashicorp/go-multierror/sort.go b/vendor/github.com/hashicorp/go-multierror/sort.go
deleted file mode 100644
index fecb14e81..000000000
--- a/vendor/github.com/hashicorp/go-multierror/sort.go
+++ /dev/null
@@ -1,16 +0,0 @@
-package multierror
-
-// Len implements sort.Interface function for length
-func (err Error) Len() int {
- return len(err.Errors)
-}
-
-// Swap implements sort.Interface function for swapping elements
-func (err Error) Swap(i, j int) {
- err.Errors[i], err.Errors[j] = err.Errors[j], err.Errors[i]
-}
-
-// Less implements sort.Interface function for determining order
-func (err Error) Less(i, j int) bool {
- return err.Errors[i].Error() < err.Errors[j].Error()
-}
diff --git a/vendor/github.com/hashicorp/golang-lru/.gitignore b/vendor/github.com/hashicorp/golang-lru/.gitignore
deleted file mode 100644
index 836562412..000000000
--- a/vendor/github.com/hashicorp/golang-lru/.gitignore
+++ /dev/null
@@ -1,23 +0,0 @@
-# Compiled Object files, Static and Dynamic libs (Shared Objects)
-*.o
-*.a
-*.so
-
-# Folders
-_obj
-_test
-
-# Architecture specific extensions/prefixes
-*.[568vq]
-[568vq].out
-
-*.cgo1.go
-*.cgo2.c
-_cgo_defun.c
-_cgo_gotypes.go
-_cgo_export.*
-
-_testmain.go
-
-*.exe
-*.test
diff --git a/vendor/github.com/hashicorp/golang-lru/2q.go b/vendor/github.com/hashicorp/golang-lru/2q.go
deleted file mode 100644
index e474cd075..000000000
--- a/vendor/github.com/hashicorp/golang-lru/2q.go
+++ /dev/null
@@ -1,223 +0,0 @@
-package lru
-
-import (
- "fmt"
- "sync"
-
- "github.com/hashicorp/golang-lru/simplelru"
-)
-
-const (
- // Default2QRecentRatio is the ratio of the 2Q cache dedicated
- // to recently added entries that have only been accessed once.
- Default2QRecentRatio = 0.25
-
- // Default2QGhostEntries is the default ratio of ghost
- // entries kept to track entries recently evicted
- Default2QGhostEntries = 0.50
-)
-
-// TwoQueueCache is a thread-safe fixed size 2Q cache.
-// 2Q is an enhancement over the standard LRU cache
-// in that it tracks both frequently and recently used
-// entries separately. This avoids a burst in access to new
-// entries from evicting frequently used entries. It adds some
-// additional tracking overhead to the standard LRU cache, and is
-// computationally about 2x the cost, and adds some metadata over
-// head. The ARCCache is similar, but does not require setting any
-// parameters.
-type TwoQueueCache struct {
- size int
- recentSize int
-
- recent simplelru.LRUCache
- frequent simplelru.LRUCache
- recentEvict simplelru.LRUCache
- lock sync.RWMutex
-}
-
-// New2Q creates a new TwoQueueCache using the default
-// values for the parameters.
-func New2Q(size int) (*TwoQueueCache, error) {
- return New2QParams(size, Default2QRecentRatio, Default2QGhostEntries)
-}
-
-// New2QParams creates a new TwoQueueCache using the provided
-// parameter values.
-func New2QParams(size int, recentRatio float64, ghostRatio float64) (*TwoQueueCache, error) {
- if size <= 0 {
- return nil, fmt.Errorf("invalid size")
- }
- if recentRatio < 0.0 || recentRatio > 1.0 {
- return nil, fmt.Errorf("invalid recent ratio")
- }
- if ghostRatio < 0.0 || ghostRatio > 1.0 {
- return nil, fmt.Errorf("invalid ghost ratio")
- }
-
- // Determine the sub-sizes
- recentSize := int(float64(size) * recentRatio)
- evictSize := int(float64(size) * ghostRatio)
-
- // Allocate the LRUs
- recent, err := simplelru.NewLRU(size, nil)
- if err != nil {
- return nil, err
- }
- frequent, err := simplelru.NewLRU(size, nil)
- if err != nil {
- return nil, err
- }
- recentEvict, err := simplelru.NewLRU(evictSize, nil)
- if err != nil {
- return nil, err
- }
-
- // Initialize the cache
- c := &TwoQueueCache{
- size: size,
- recentSize: recentSize,
- recent: recent,
- frequent: frequent,
- recentEvict: recentEvict,
- }
- return c, nil
-}
-
-// Get looks up a key's value from the cache.
-func (c *TwoQueueCache) Get(key interface{}) (value interface{}, ok bool) {
- c.lock.Lock()
- defer c.lock.Unlock()
-
- // Check if this is a frequent value
- if val, ok := c.frequent.Get(key); ok {
- return val, ok
- }
-
- // If the value is contained in recent, then we
- // promote it to frequent
- if val, ok := c.recent.Peek(key); ok {
- c.recent.Remove(key)
- c.frequent.Add(key, val)
- return val, ok
- }
-
- // No hit
- return nil, false
-}
-
-// Add adds a value to the cache.
-func (c *TwoQueueCache) Add(key, value interface{}) {
- c.lock.Lock()
- defer c.lock.Unlock()
-
- // Check if the value is frequently used already,
- // and just update the value
- if c.frequent.Contains(key) {
- c.frequent.Add(key, value)
- return
- }
-
- // Check if the value is recently used, and promote
- // the value into the frequent list
- if c.recent.Contains(key) {
- c.recent.Remove(key)
- c.frequent.Add(key, value)
- return
- }
-
- // If the value was recently evicted, add it to the
- // frequently used list
- if c.recentEvict.Contains(key) {
- c.ensureSpace(true)
- c.recentEvict.Remove(key)
- c.frequent.Add(key, value)
- return
- }
-
- // Add to the recently seen list
- c.ensureSpace(false)
- c.recent.Add(key, value)
- return
-}
-
-// ensureSpace is used to ensure we have space in the cache
-func (c *TwoQueueCache) ensureSpace(recentEvict bool) {
- // If we have space, nothing to do
- recentLen := c.recent.Len()
- freqLen := c.frequent.Len()
- if recentLen+freqLen < c.size {
- return
- }
-
- // If the recent buffer is larger than
- // the target, evict from there
- if recentLen > 0 && (recentLen > c.recentSize || (recentLen == c.recentSize && !recentEvict)) {
- k, _, _ := c.recent.RemoveOldest()
- c.recentEvict.Add(k, nil)
- return
- }
-
- // Remove from the frequent list otherwise
- c.frequent.RemoveOldest()
-}
-
-// Len returns the number of items in the cache.
-func (c *TwoQueueCache) Len() int {
- c.lock.RLock()
- defer c.lock.RUnlock()
- return c.recent.Len() + c.frequent.Len()
-}
-
-// Keys returns a slice of the keys in the cache.
-// The frequently used keys are first in the returned slice.
-func (c *TwoQueueCache) Keys() []interface{} {
- c.lock.RLock()
- defer c.lock.RUnlock()
- k1 := c.frequent.Keys()
- k2 := c.recent.Keys()
- return append(k1, k2...)
-}
-
-// Remove removes the provided key from the cache.
-func (c *TwoQueueCache) Remove(key interface{}) {
- c.lock.Lock()
- defer c.lock.Unlock()
- if c.frequent.Remove(key) {
- return
- }
- if c.recent.Remove(key) {
- return
- }
- if c.recentEvict.Remove(key) {
- return
- }
-}
-
-// Purge is used to completely clear the cache.
-func (c *TwoQueueCache) Purge() {
- c.lock.Lock()
- defer c.lock.Unlock()
- c.recent.Purge()
- c.frequent.Purge()
- c.recentEvict.Purge()
-}
-
-// Contains is used to check if the cache contains a key
-// without updating recency or frequency.
-func (c *TwoQueueCache) Contains(key interface{}) bool {
- c.lock.RLock()
- defer c.lock.RUnlock()
- return c.frequent.Contains(key) || c.recent.Contains(key)
-}
-
-// Peek is used to inspect the cache value of a key
-// without updating recency or frequency.
-func (c *TwoQueueCache) Peek(key interface{}) (value interface{}, ok bool) {
- c.lock.RLock()
- defer c.lock.RUnlock()
- if val, ok := c.frequent.Peek(key); ok {
- return val, ok
- }
- return c.recent.Peek(key)
-}
diff --git a/vendor/github.com/hashicorp/golang-lru/LICENSE b/vendor/github.com/hashicorp/golang-lru/LICENSE
deleted file mode 100644
index be2cc4dfb..000000000
--- a/vendor/github.com/hashicorp/golang-lru/LICENSE
+++ /dev/null
@@ -1,362 +0,0 @@
-Mozilla Public License, version 2.0
-
-1. Definitions
-
-1.1. "Contributor"
-
- means each individual or legal entity that creates, contributes to the
- creation of, or owns Covered Software.
-
-1.2. "Contributor Version"
-
- means the combination of the Contributions of others (if any) used by a
- Contributor and that particular Contributor's Contribution.
-
-1.3. "Contribution"
-
- means Covered Software of a particular Contributor.
-
-1.4. "Covered Software"
-
- means Source Code Form to which the initial Contributor has attached the
- notice in Exhibit A, the Executable Form of such Source Code Form, and
- Modifications of such Source Code Form, in each case including portions
- thereof.
-
-1.5. "Incompatible With Secondary Licenses"
- means
-
- a. that the initial Contributor has attached the notice described in
- Exhibit B to the Covered Software; or
-
- b. that the Covered Software was made available under the terms of
- version 1.1 or earlier of the License, but not also under the terms of
- a Secondary License.
-
-1.6. "Executable Form"
-
- means any form of the work other than Source Code Form.
-
-1.7. "Larger Work"
-
- means a work that combines Covered Software with other material, in a
- separate file or files, that is not Covered Software.
-
-1.8. "License"
-
- means this document.
-
-1.9. "Licensable"
-
- means having the right to grant, to the maximum extent possible, whether
- at the time of the initial grant or subsequently, any and all of the
- rights conveyed by this License.
-
-1.10. "Modifications"
-
- means any of the following:
-
- a. any file in Source Code Form that results from an addition to,
- deletion from, or modification of the contents of Covered Software; or
-
- b. any new file in Source Code Form that contains any Covered Software.
-
-1.11. "Patent Claims" of a Contributor
-
- means any patent claim(s), including without limitation, method,
- process, and apparatus claims, in any patent Licensable by such
- Contributor that would be infringed, but for the grant of the License,
- by the making, using, selling, offering for sale, having made, import,
- or transfer of either its Contributions or its Contributor Version.
-
-1.12. "Secondary License"
-
- means either the GNU General Public License, Version 2.0, the GNU Lesser
- General Public License, Version 2.1, the GNU Affero General Public
- License, Version 3.0, or any later versions of those licenses.
-
-1.13. "Source Code Form"
-
- means the form of the work preferred for making modifications.
-
-1.14. "You" (or "Your")
-
- means an individual or a legal entity exercising rights under this
- License. For legal entities, "You" includes any entity that controls, is
- controlled by, or is under common control with You. For purposes of this
- definition, "control" means (a) the power, direct or indirect, to cause
- the direction or management of such entity, whether by contract or
- otherwise, or (b) ownership of more than fifty percent (50%) of the
- outstanding shares or beneficial ownership of such entity.
-
-
-2. License Grants and Conditions
-
-2.1. Grants
-
- Each Contributor hereby grants You a world-wide, royalty-free,
- non-exclusive license:
-
- a. under intellectual property rights (other than patent or trademark)
- Licensable by such Contributor to use, reproduce, make available,
- modify, display, perform, distribute, and otherwise exploit its
- Contributions, either on an unmodified basis, with Modifications, or
- as part of a Larger Work; and
-
- b. under Patent Claims of such Contributor to make, use, sell, offer for
- sale, have made, import, and otherwise transfer either its
- Contributions or its Contributor Version.
-
-2.2. Effective Date
-
- The licenses granted in Section 2.1 with respect to any Contribution
- become effective for each Contribution on the date the Contributor first
- distributes such Contribution.
-
-2.3. Limitations on Grant Scope
-
- The licenses granted in this Section 2 are the only rights granted under
- this License. No additional rights or licenses will be implied from the
- distribution or licensing of Covered Software under this License.
- Notwithstanding Section 2.1(b) above, no patent license is granted by a
- Contributor:
-
- a. for any code that a Contributor has removed from Covered Software; or
-
- b. for infringements caused by: (i) Your and any other third party's
- modifications of Covered Software, or (ii) the combination of its
- Contributions with other software (except as part of its Contributor
- Version); or
-
- c. under Patent Claims infringed by Covered Software in the absence of
- its Contributions.
-
- This License does not grant any rights in the trademarks, service marks,
- or logos of any Contributor (except as may be necessary to comply with
- the notice requirements in Section 3.4).
-
-2.4. Subsequent Licenses
-
- No Contributor makes additional grants as a result of Your choice to
- distribute the Covered Software under a subsequent version of this
- License (see Section 10.2) or under the terms of a Secondary License (if
- permitted under the terms of Section 3.3).
-
-2.5. Representation
-
- Each Contributor represents that the Contributor believes its
- Contributions are its original creation(s) or it has sufficient rights to
- grant the rights to its Contributions conveyed by this License.
-
-2.6. Fair Use
-
- This License is not intended to limit any rights You have under
- applicable copyright doctrines of fair use, fair dealing, or other
- equivalents.
-
-2.7. Conditions
-
- Sections 3.1, 3.2, 3.3, and 3.4 are conditions of the licenses granted in
- Section 2.1.
-
-
-3. Responsibilities
-
-3.1. Distribution of Source Form
-
- All distribution of Covered Software in Source Code Form, including any
- Modifications that You create or to which You contribute, must be under
- the terms of this License. You must inform recipients that the Source
- Code Form of the Covered Software is governed by the terms of this
- License, and how they can obtain a copy of this License. You may not
- attempt to alter or restrict the recipients' rights in the Source Code
- Form.
-
-3.2. Distribution of Executable Form
-
- If You distribute Covered Software in Executable Form then:
-
- a. such Covered Software must also be made available in Source Code Form,
- as described in Section 3.1, and You must inform recipients of the
- Executable Form how they can obtain a copy of such Source Code Form by
- reasonable means in a timely manner, at a charge no more than the cost
- of distribution to the recipient; and
-
- b. You may distribute such Executable Form under the terms of this
- License, or sublicense it under different terms, provided that the
- license for the Executable Form does not attempt to limit or alter the
- recipients' rights in the Source Code Form under this License.
-
-3.3. Distribution of a Larger Work
-
- You may create and distribute a Larger Work under terms of Your choice,
- provided that You also comply with the requirements of this License for
- the Covered Software. If the Larger Work is a combination of Covered
- Software with a work governed by one or more Secondary Licenses, and the
- Covered Software is not Incompatible With Secondary Licenses, this
- License permits You to additionally distribute such Covered Software
- under the terms of such Secondary License(s), so that the recipient of
- the Larger Work may, at their option, further distribute the Covered
- Software under the terms of either this License or such Secondary
- License(s).
-
-3.4. Notices
-
- You may not remove or alter the substance of any license notices
- (including copyright notices, patent notices, disclaimers of warranty, or
- limitations of liability) contained within the Source Code Form of the
- Covered Software, except that You may alter any license notices to the
- extent required to remedy known factual inaccuracies.
-
-3.5. Application of Additional Terms
-
- You may choose to offer, and to charge a fee for, warranty, support,
- indemnity or liability obligations to one or more recipients of Covered
- Software. However, You may do so only on Your own behalf, and not on
- behalf of any Contributor. You must make it absolutely clear that any
- such warranty, support, indemnity, or liability obligation is offered by
- You alone, and You hereby agree to indemnify every Contributor for any
- liability incurred by such Contributor as a result of warranty, support,
- indemnity or liability terms You offer. You may include additional
- disclaimers of warranty and limitations of liability specific to any
- jurisdiction.
-
-4. Inability to Comply Due to Statute or Regulation
-
- If it is impossible for You to comply with any of the terms of this License
- with respect to some or all of the Covered Software due to statute,
- judicial order, or regulation then You must: (a) comply with the terms of
- this License to the maximum extent possible; and (b) describe the
- limitations and the code they affect. Such description must be placed in a
- text file included with all distributions of the Covered Software under
- this License. Except to the extent prohibited by statute or regulation,
- such description must be sufficiently detailed for a recipient of ordinary
- skill to be able to understand it.
-
-5. Termination
-
-5.1. The rights granted under this License will terminate automatically if You
- fail to comply with any of its terms. However, if You become compliant,
- then the rights granted under this License from a particular Contributor
- are reinstated (a) provisionally, unless and until such Contributor
- explicitly and finally terminates Your grants, and (b) on an ongoing
- basis, if such Contributor fails to notify You of the non-compliance by
- some reasonable means prior to 60 days after You have come back into
- compliance. Moreover, Your grants from a particular Contributor are
- reinstated on an ongoing basis if such Contributor notifies You of the
- non-compliance by some reasonable means, this is the first time You have
- received notice of non-compliance with this License from such
- Contributor, and You become compliant prior to 30 days after Your receipt
- of the notice.
-
-5.2. If You initiate litigation against any entity by asserting a patent
- infringement claim (excluding declaratory judgment actions,
- counter-claims, and cross-claims) alleging that a Contributor Version
- directly or indirectly infringes any patent, then the rights granted to
- You by any and all Contributors for the Covered Software under Section
- 2.1 of this License shall terminate.
-
-5.3. In the event of termination under Sections 5.1 or 5.2 above, all end user
- license agreements (excluding distributors and resellers) which have been
- validly granted by You or Your distributors under this License prior to
- termination shall survive termination.
-
-6. Disclaimer of Warranty
-
- Covered Software is provided under this License on an "as is" basis,
- without warranty of any kind, either expressed, implied, or statutory,
- including, without limitation, warranties that the Covered Software is free
- of defects, merchantable, fit for a particular purpose or non-infringing.
- The entire risk as to the quality and performance of the Covered Software
- is with You. Should any Covered Software prove defective in any respect,
- You (not any Contributor) assume the cost of any necessary servicing,
- repair, or correction. This disclaimer of warranty constitutes an essential
- part of this License. No use of any Covered Software is authorized under
- this License except under this disclaimer.
-
-7. Limitation of Liability
-
- Under no circumstances and under no legal theory, whether tort (including
- negligence), contract, or otherwise, shall any Contributor, or anyone who
- distributes Covered Software as permitted above, be liable to You for any
- direct, indirect, special, incidental, or consequential damages of any
- character including, without limitation, damages for lost profits, loss of
- goodwill, work stoppage, computer failure or malfunction, or any and all
- other commercial damages or losses, even if such party shall have been
- informed of the possibility of such damages. This limitation of liability
- shall not apply to liability for death or personal injury resulting from
- such party's negligence to the extent applicable law prohibits such
- limitation. Some jurisdictions do not allow the exclusion or limitation of
- incidental or consequential damages, so this exclusion and limitation may
- not apply to You.
-
-8. Litigation
-
- Any litigation relating to this License may be brought only in the courts
- of a jurisdiction where the defendant maintains its principal place of
- business and such litigation shall be governed by laws of that
- jurisdiction, without reference to its conflict-of-law provisions. Nothing
- in this Section shall prevent a party's ability to bring cross-claims or
- counter-claims.
-
-9. Miscellaneous
-
- This License represents the complete agreement concerning the subject
- matter hereof. If any provision of this License is held to be
- unenforceable, such provision shall be reformed only to the extent
- necessary to make it enforceable. Any law or regulation which provides that
- the language of a contract shall be construed against the drafter shall not
- be used to construe this License against a Contributor.
-
-
-10. Versions of the License
-
-10.1. New Versions
-
- Mozilla Foundation is the license steward. Except as provided in Section
- 10.3, no one other than the license steward has the right to modify or
- publish new versions of this License. Each version will be given a
- distinguishing version number.
-
-10.2. Effect of New Versions
-
- You may distribute the Covered Software under the terms of the version
- of the License under which You originally received the Covered Software,
- or under the terms of any subsequent version published by the license
- steward.
-
-10.3. Modified Versions
-
- If you create software not governed by this License, and you want to
- create a new license for such software, you may create and use a
- modified version of this License if you rename the license and remove
- any references to the name of the license steward (except to note that
- such modified license differs from this License).
-
-10.4. Distributing Source Code Form that is Incompatible With Secondary
- Licenses If You choose to distribute Source Code Form that is
- Incompatible With Secondary Licenses under the terms of this version of
- the License, the notice described in Exhibit B of this License must be
- attached.
-
-Exhibit A - Source Code Form License Notice
-
- This Source Code Form is subject to the
- terms of the Mozilla Public License, v.
- 2.0. If a copy of the MPL was not
- distributed with this file, You can
- obtain one at
- http://mozilla.org/MPL/2.0/.
-
-If it is not possible or desirable to put the notice in a particular file,
-then You may include the notice in a location (such as a LICENSE file in a
-relevant directory) where a recipient would be likely to look for such a
-notice.
-
-You may add additional accurate notices of copyright ownership.
-
-Exhibit B - "Incompatible With Secondary Licenses" Notice
-
- This Source Code Form is "Incompatible
- With Secondary Licenses", as defined by
- the Mozilla Public License, v. 2.0.
diff --git a/vendor/github.com/hashicorp/golang-lru/README.md b/vendor/github.com/hashicorp/golang-lru/README.md
deleted file mode 100644
index 33e58cfaf..000000000
--- a/vendor/github.com/hashicorp/golang-lru/README.md
+++ /dev/null
@@ -1,25 +0,0 @@
-golang-lru
-==========
-
-This provides the `lru` package which implements a fixed-size
-thread safe LRU cache. It is based on the cache in Groupcache.
-
-Documentation
-=============
-
-Full docs are available on [Godoc](http://godoc.org/github.com/hashicorp/golang-lru)
-
-Example
-=======
-
-Using the LRU is very simple:
-
-```go
-l, _ := New(128)
-for i := 0; i < 256; i++ {
- l.Add(i, nil)
-}
-if l.Len() != 128 {
- panic(fmt.Sprintf("bad len: %v", l.Len()))
-}
-```
diff --git a/vendor/github.com/hashicorp/golang-lru/arc.go b/vendor/github.com/hashicorp/golang-lru/arc.go
deleted file mode 100644
index 555225a21..000000000
--- a/vendor/github.com/hashicorp/golang-lru/arc.go
+++ /dev/null
@@ -1,257 +0,0 @@
-package lru
-
-import (
- "sync"
-
- "github.com/hashicorp/golang-lru/simplelru"
-)
-
-// ARCCache is a thread-safe fixed size Adaptive Replacement Cache (ARC).
-// ARC is an enhancement over the standard LRU cache in that tracks both
-// frequency and recency of use. This avoids a burst in access to new
-// entries from evicting the frequently used older entries. It adds some
-// additional tracking overhead to a standard LRU cache, computationally
-// it is roughly 2x the cost, and the extra memory overhead is linear
-// with the size of the cache. ARC has been patented by IBM, but is
-// similar to the TwoQueueCache (2Q) which requires setting parameters.
-type ARCCache struct {
- size int // Size is the total capacity of the cache
- p int // P is the dynamic preference towards T1 or T2
-
- t1 simplelru.LRUCache // T1 is the LRU for recently accessed items
- b1 simplelru.LRUCache // B1 is the LRU for evictions from t1
-
- t2 simplelru.LRUCache // T2 is the LRU for frequently accessed items
- b2 simplelru.LRUCache // B2 is the LRU for evictions from t2
-
- lock sync.RWMutex
-}
-
-// NewARC creates an ARC of the given size
-func NewARC(size int) (*ARCCache, error) {
- // Create the sub LRUs
- b1, err := simplelru.NewLRU(size, nil)
- if err != nil {
- return nil, err
- }
- b2, err := simplelru.NewLRU(size, nil)
- if err != nil {
- return nil, err
- }
- t1, err := simplelru.NewLRU(size, nil)
- if err != nil {
- return nil, err
- }
- t2, err := simplelru.NewLRU(size, nil)
- if err != nil {
- return nil, err
- }
-
- // Initialize the ARC
- c := &ARCCache{
- size: size,
- p: 0,
- t1: t1,
- b1: b1,
- t2: t2,
- b2: b2,
- }
- return c, nil
-}
-
-// Get looks up a key's value from the cache.
-func (c *ARCCache) Get(key interface{}) (value interface{}, ok bool) {
- c.lock.Lock()
- defer c.lock.Unlock()
-
- // If the value is contained in T1 (recent), then
- // promote it to T2 (frequent)
- if val, ok := c.t1.Peek(key); ok {
- c.t1.Remove(key)
- c.t2.Add(key, val)
- return val, ok
- }
-
- // Check if the value is contained in T2 (frequent)
- if val, ok := c.t2.Get(key); ok {
- return val, ok
- }
-
- // No hit
- return nil, false
-}
-
-// Add adds a value to the cache.
-func (c *ARCCache) Add(key, value interface{}) {
- c.lock.Lock()
- defer c.lock.Unlock()
-
- // Check if the value is contained in T1 (recent), and potentially
- // promote it to frequent T2
- if c.t1.Contains(key) {
- c.t1.Remove(key)
- c.t2.Add(key, value)
- return
- }
-
- // Check if the value is already in T2 (frequent) and update it
- if c.t2.Contains(key) {
- c.t2.Add(key, value)
- return
- }
-
- // Check if this value was recently evicted as part of the
- // recently used list
- if c.b1.Contains(key) {
- // T1 set is too small, increase P appropriately
- delta := 1
- b1Len := c.b1.Len()
- b2Len := c.b2.Len()
- if b2Len > b1Len {
- delta = b2Len / b1Len
- }
- if c.p+delta >= c.size {
- c.p = c.size
- } else {
- c.p += delta
- }
-
- // Potentially need to make room in the cache
- if c.t1.Len()+c.t2.Len() >= c.size {
- c.replace(false)
- }
-
- // Remove from B1
- c.b1.Remove(key)
-
- // Add the key to the frequently used list
- c.t2.Add(key, value)
- return
- }
-
- // Check if this value was recently evicted as part of the
- // frequently used list
- if c.b2.Contains(key) {
- // T2 set is too small, decrease P appropriately
- delta := 1
- b1Len := c.b1.Len()
- b2Len := c.b2.Len()
- if b1Len > b2Len {
- delta = b1Len / b2Len
- }
- if delta >= c.p {
- c.p = 0
- } else {
- c.p -= delta
- }
-
- // Potentially need to make room in the cache
- if c.t1.Len()+c.t2.Len() >= c.size {
- c.replace(true)
- }
-
- // Remove from B2
- c.b2.Remove(key)
-
- // Add the key to the frequently used list
- c.t2.Add(key, value)
- return
- }
-
- // Potentially need to make room in the cache
- if c.t1.Len()+c.t2.Len() >= c.size {
- c.replace(false)
- }
-
- // Keep the size of the ghost buffers trim
- if c.b1.Len() > c.size-c.p {
- c.b1.RemoveOldest()
- }
- if c.b2.Len() > c.p {
- c.b2.RemoveOldest()
- }
-
- // Add to the recently seen list
- c.t1.Add(key, value)
- return
-}
-
-// replace is used to adaptively evict from either T1 or T2
-// based on the current learned value of P
-func (c *ARCCache) replace(b2ContainsKey bool) {
- t1Len := c.t1.Len()
- if t1Len > 0 && (t1Len > c.p || (t1Len == c.p && b2ContainsKey)) {
- k, _, ok := c.t1.RemoveOldest()
- if ok {
- c.b1.Add(k, nil)
- }
- } else {
- k, _, ok := c.t2.RemoveOldest()
- if ok {
- c.b2.Add(k, nil)
- }
- }
-}
-
-// Len returns the number of cached entries
-func (c *ARCCache) Len() int {
- c.lock.RLock()
- defer c.lock.RUnlock()
- return c.t1.Len() + c.t2.Len()
-}
-
-// Keys returns all the cached keys
-func (c *ARCCache) Keys() []interface{} {
- c.lock.RLock()
- defer c.lock.RUnlock()
- k1 := c.t1.Keys()
- k2 := c.t2.Keys()
- return append(k1, k2...)
-}
-
-// Remove is used to purge a key from the cache
-func (c *ARCCache) Remove(key interface{}) {
- c.lock.Lock()
- defer c.lock.Unlock()
- if c.t1.Remove(key) {
- return
- }
- if c.t2.Remove(key) {
- return
- }
- if c.b1.Remove(key) {
- return
- }
- if c.b2.Remove(key) {
- return
- }
-}
-
-// Purge is used to clear the cache
-func (c *ARCCache) Purge() {
- c.lock.Lock()
- defer c.lock.Unlock()
- c.t1.Purge()
- c.t2.Purge()
- c.b1.Purge()
- c.b2.Purge()
-}
-
-// Contains is used to check if the cache contains a key
-// without updating recency or frequency.
-func (c *ARCCache) Contains(key interface{}) bool {
- c.lock.RLock()
- defer c.lock.RUnlock()
- return c.t1.Contains(key) || c.t2.Contains(key)
-}
-
-// Peek is used to inspect the cache value of a key
-// without updating recency or frequency.
-func (c *ARCCache) Peek(key interface{}) (value interface{}, ok bool) {
- c.lock.RLock()
- defer c.lock.RUnlock()
- if val, ok := c.t1.Peek(key); ok {
- return val, ok
- }
- return c.t2.Peek(key)
-}
diff --git a/vendor/github.com/hashicorp/golang-lru/doc.go b/vendor/github.com/hashicorp/golang-lru/doc.go
deleted file mode 100644
index 2547df979..000000000
--- a/vendor/github.com/hashicorp/golang-lru/doc.go
+++ /dev/null
@@ -1,21 +0,0 @@
-// Package lru provides three different LRU caches of varying sophistication.
-//
-// Cache is a simple LRU cache. It is based on the
-// LRU implementation in groupcache:
-// https://github.com/golang/groupcache/tree/master/lru
-//
-// TwoQueueCache tracks frequently used and recently used entries separately.
-// This avoids a burst of accesses from taking out frequently used entries,
-// at the cost of about 2x computational overhead and some extra bookkeeping.
-//
-// ARCCache is an adaptive replacement cache. It tracks recent evictions as
-// well as recent usage in both the frequent and recent caches. Its
-// computational overhead is comparable to TwoQueueCache, but the memory
-// overhead is linear with the size of the cache.
-//
-// ARC has been patented by IBM, so do not use it if that is problematic for
-// your program.
-//
-// All caches in this package take locks while operating, and are therefore
-// thread-safe for consumers.
-package lru
diff --git a/vendor/github.com/hashicorp/golang-lru/go.mod b/vendor/github.com/hashicorp/golang-lru/go.mod
deleted file mode 100644
index 824cb97e8..000000000
--- a/vendor/github.com/hashicorp/golang-lru/go.mod
+++ /dev/null
@@ -1 +0,0 @@
-module github.com/hashicorp/golang-lru
diff --git a/vendor/github.com/hashicorp/golang-lru/lru.go b/vendor/github.com/hashicorp/golang-lru/lru.go
deleted file mode 100644
index 1cbe04b7d..000000000
--- a/vendor/github.com/hashicorp/golang-lru/lru.go
+++ /dev/null
@@ -1,116 +0,0 @@
-package lru
-
-import (
- "sync"
-
- "github.com/hashicorp/golang-lru/simplelru"
-)
-
-// Cache is a thread-safe fixed size LRU cache.
-type Cache struct {
- lru simplelru.LRUCache
- lock sync.RWMutex
-}
-
-// New creates an LRU of the given size.
-func New(size int) (*Cache, error) {
- return NewWithEvict(size, nil)
-}
-
-// NewWithEvict constructs a fixed size cache with the given eviction
-// callback.
-func NewWithEvict(size int, onEvicted func(key interface{}, value interface{})) (*Cache, error) {
- lru, err := simplelru.NewLRU(size, simplelru.EvictCallback(onEvicted))
- if err != nil {
- return nil, err
- }
- c := &Cache{
- lru: lru,
- }
- return c, nil
-}
-
-// Purge is used to completely clear the cache.
-func (c *Cache) Purge() {
- c.lock.Lock()
- c.lru.Purge()
- c.lock.Unlock()
-}
-
-// Add adds a value to the cache. Returns true if an eviction occurred.
-func (c *Cache) Add(key, value interface{}) (evicted bool) {
- c.lock.Lock()
- evicted = c.lru.Add(key, value)
- c.lock.Unlock()
- return evicted
-}
-
-// Get looks up a key's value from the cache.
-func (c *Cache) Get(key interface{}) (value interface{}, ok bool) {
- c.lock.Lock()
- value, ok = c.lru.Get(key)
- c.lock.Unlock()
- return value, ok
-}
-
-// Contains checks if a key is in the cache, without updating the
-// recent-ness or deleting it for being stale.
-func (c *Cache) Contains(key interface{}) bool {
- c.lock.RLock()
- containKey := c.lru.Contains(key)
- c.lock.RUnlock()
- return containKey
-}
-
-// Peek returns the key value (or undefined if not found) without updating
-// the "recently used"-ness of the key.
-func (c *Cache) Peek(key interface{}) (value interface{}, ok bool) {
- c.lock.RLock()
- value, ok = c.lru.Peek(key)
- c.lock.RUnlock()
- return value, ok
-}
-
-// ContainsOrAdd checks if a key is in the cache without updating the
-// recent-ness or deleting it for being stale, and if not, adds the value.
-// Returns whether found and whether an eviction occurred.
-func (c *Cache) ContainsOrAdd(key, value interface{}) (ok, evicted bool) {
- c.lock.Lock()
- defer c.lock.Unlock()
-
- if c.lru.Contains(key) {
- return true, false
- }
- evicted = c.lru.Add(key, value)
- return false, evicted
-}
-
-// Remove removes the provided key from the cache.
-func (c *Cache) Remove(key interface{}) {
- c.lock.Lock()
- c.lru.Remove(key)
- c.lock.Unlock()
-}
-
-// RemoveOldest removes the oldest item from the cache.
-func (c *Cache) RemoveOldest() {
- c.lock.Lock()
- c.lru.RemoveOldest()
- c.lock.Unlock()
-}
-
-// Keys returns a slice of the keys in the cache, from oldest to newest.
-func (c *Cache) Keys() []interface{} {
- c.lock.RLock()
- keys := c.lru.Keys()
- c.lock.RUnlock()
- return keys
-}
-
-// Len returns the number of items in the cache.
-func (c *Cache) Len() int {
- c.lock.RLock()
- length := c.lru.Len()
- c.lock.RUnlock()
- return length
-}
diff --git a/vendor/github.com/hashicorp/golang-lru/simplelru/lru.go b/vendor/github.com/hashicorp/golang-lru/simplelru/lru.go
deleted file mode 100644
index 5673773b2..000000000
--- a/vendor/github.com/hashicorp/golang-lru/simplelru/lru.go
+++ /dev/null
@@ -1,161 +0,0 @@
-package simplelru
-
-import (
- "container/list"
- "errors"
-)
-
-// EvictCallback is used to get a callback when a cache entry is evicted
-type EvictCallback func(key interface{}, value interface{})
-
-// LRU implements a non-thread safe fixed size LRU cache
-type LRU struct {
- size int
- evictList *list.List
- items map[interface{}]*list.Element
- onEvict EvictCallback
-}
-
-// entry is used to hold a value in the evictList
-type entry struct {
- key interface{}
- value interface{}
-}
-
-// NewLRU constructs an LRU of the given size
-func NewLRU(size int, onEvict EvictCallback) (*LRU, error) {
- if size <= 0 {
- return nil, errors.New("Must provide a positive size")
- }
- c := &LRU{
- size: size,
- evictList: list.New(),
- items: make(map[interface{}]*list.Element),
- onEvict: onEvict,
- }
- return c, nil
-}
-
-// Purge is used to completely clear the cache.
-func (c *LRU) Purge() {
- for k, v := range c.items {
- if c.onEvict != nil {
- c.onEvict(k, v.Value.(*entry).value)
- }
- delete(c.items, k)
- }
- c.evictList.Init()
-}
-
-// Add adds a value to the cache. Returns true if an eviction occurred.
-func (c *LRU) Add(key, value interface{}) (evicted bool) {
- // Check for existing item
- if ent, ok := c.items[key]; ok {
- c.evictList.MoveToFront(ent)
- ent.Value.(*entry).value = value
- return false
- }
-
- // Add new item
- ent := &entry{key, value}
- entry := c.evictList.PushFront(ent)
- c.items[key] = entry
-
- evict := c.evictList.Len() > c.size
- // Verify size not exceeded
- if evict {
- c.removeOldest()
- }
- return evict
-}
-
-// Get looks up a key's value from the cache.
-func (c *LRU) Get(key interface{}) (value interface{}, ok bool) {
- if ent, ok := c.items[key]; ok {
- c.evictList.MoveToFront(ent)
- return ent.Value.(*entry).value, true
- }
- return
-}
-
-// Contains checks if a key is in the cache, without updating the recent-ness
-// or deleting it for being stale.
-func (c *LRU) Contains(key interface{}) (ok bool) {
- _, ok = c.items[key]
- return ok
-}
-
-// Peek returns the key value (or undefined if not found) without updating
-// the "recently used"-ness of the key.
-func (c *LRU) Peek(key interface{}) (value interface{}, ok bool) {
- var ent *list.Element
- if ent, ok = c.items[key]; ok {
- return ent.Value.(*entry).value, true
- }
- return nil, ok
-}
-
-// Remove removes the provided key from the cache, returning if the
-// key was contained.
-func (c *LRU) Remove(key interface{}) (present bool) {
- if ent, ok := c.items[key]; ok {
- c.removeElement(ent)
- return true
- }
- return false
-}
-
-// RemoveOldest removes the oldest item from the cache.
-func (c *LRU) RemoveOldest() (key interface{}, value interface{}, ok bool) {
- ent := c.evictList.Back()
- if ent != nil {
- c.removeElement(ent)
- kv := ent.Value.(*entry)
- return kv.key, kv.value, true
- }
- return nil, nil, false
-}
-
-// GetOldest returns the oldest entry
-func (c *LRU) GetOldest() (key interface{}, value interface{}, ok bool) {
- ent := c.evictList.Back()
- if ent != nil {
- kv := ent.Value.(*entry)
- return kv.key, kv.value, true
- }
- return nil, nil, false
-}
-
-// Keys returns a slice of the keys in the cache, from oldest to newest.
-func (c *LRU) Keys() []interface{} {
- keys := make([]interface{}, len(c.items))
- i := 0
- for ent := c.evictList.Back(); ent != nil; ent = ent.Prev() {
- keys[i] = ent.Value.(*entry).key
- i++
- }
- return keys
-}
-
-// Len returns the number of items in the cache.
-func (c *LRU) Len() int {
- return c.evictList.Len()
-}
-
-// removeOldest removes the oldest item from the cache.
-func (c *LRU) removeOldest() {
- ent := c.evictList.Back()
- if ent != nil {
- c.removeElement(ent)
- }
-}
-
-// removeElement is used to remove a given list element from the cache
-func (c *LRU) removeElement(e *list.Element) {
- c.evictList.Remove(e)
- kv := e.Value.(*entry)
- delete(c.items, kv.key)
- if c.onEvict != nil {
- c.onEvict(kv.key, kv.value)
- }
-}
diff --git a/vendor/github.com/hashicorp/golang-lru/simplelru/lru_interface.go b/vendor/github.com/hashicorp/golang-lru/simplelru/lru_interface.go
deleted file mode 100644
index 74c707744..000000000
--- a/vendor/github.com/hashicorp/golang-lru/simplelru/lru_interface.go
+++ /dev/null
@@ -1,36 +0,0 @@
-package simplelru
-
-// LRUCache is the interface for simple LRU cache.
-type LRUCache interface {
- // Adds a value to the cache, returns true if an eviction occurred and
- // updates the "recently used"-ness of the key.
- Add(key, value interface{}) bool
-
- // Returns key's value from the cache and
- // updates the "recently used"-ness of the key. #value, isFound
- Get(key interface{}) (value interface{}, ok bool)
-
- // Check if a key exsists in cache without updating the recent-ness.
- Contains(key interface{}) (ok bool)
-
- // Returns key's value without updating the "recently used"-ness of the key.
- Peek(key interface{}) (value interface{}, ok bool)
-
- // Removes a key from the cache.
- Remove(key interface{}) bool
-
- // Removes the oldest entry from cache.
- RemoveOldest() (interface{}, interface{}, bool)
-
- // Returns the oldest entry from the cache. #key, value, isFound
- GetOldest() (interface{}, interface{}, bool)
-
- // Returns a slice of the keys in the cache, from oldest to newest.
- Keys() []interface{}
-
- // Returns the number of items in the cache.
- Len() int
-
- // Clear all cache entries
- Purge()
-}
diff --git a/vendor/github.com/hashicorp/hcl/.gitignore b/vendor/github.com/hashicorp/hcl/.gitignore
deleted file mode 100644
index 15586a2b5..000000000
--- a/vendor/github.com/hashicorp/hcl/.gitignore
+++ /dev/null
@@ -1,9 +0,0 @@
-y.output
-
-# ignore intellij files
-.idea
-*.iml
-*.ipr
-*.iws
-
-*.test
diff --git a/vendor/github.com/hashicorp/hcl/.travis.yml b/vendor/github.com/hashicorp/hcl/.travis.yml
deleted file mode 100644
index cb63a3216..000000000
--- a/vendor/github.com/hashicorp/hcl/.travis.yml
+++ /dev/null
@@ -1,13 +0,0 @@
-sudo: false
-
-language: go
-
-go:
- - 1.x
- - tip
-
-branches:
- only:
- - master
-
-script: make test
diff --git a/vendor/github.com/hashicorp/hcl/LICENSE b/vendor/github.com/hashicorp/hcl/LICENSE
deleted file mode 100644
index c33dcc7c9..000000000
--- a/vendor/github.com/hashicorp/hcl/LICENSE
+++ /dev/null
@@ -1,354 +0,0 @@
-Mozilla Public License, version 2.0
-
-1. Definitions
-
-1.1. “Contributor”
-
- means each individual or legal entity that creates, contributes to the
- creation of, or owns Covered Software.
-
-1.2. “Contributor Version”
-
- means the combination of the Contributions of others (if any) used by a
- Contributor and that particular Contributor’s Contribution.
-
-1.3. “Contribution”
-
- means Covered Software of a particular Contributor.
-
-1.4. “Covered Software”
-
- means Source Code Form to which the initial Contributor has attached the
- notice in Exhibit A, the Executable Form of such Source Code Form, and
- Modifications of such Source Code Form, in each case including portions
- thereof.
-
-1.5. “Incompatible With Secondary Licenses”
- means
-
- a. that the initial Contributor has attached the notice described in
- Exhibit B to the Covered Software; or
-
- b. that the Covered Software was made available under the terms of version
- 1.1 or earlier of the License, but not also under the terms of a
- Secondary License.
-
-1.6. “Executable Form”
-
- means any form of the work other than Source Code Form.
-
-1.7. “Larger Work”
-
- means a work that combines Covered Software with other material, in a separate
- file or files, that is not Covered Software.
-
-1.8. “License”
-
- means this document.
-
-1.9. “Licensable”
-
- means having the right to grant, to the maximum extent possible, whether at the
- time of the initial grant or subsequently, any and all of the rights conveyed by
- this License.
-
-1.10. “Modifications”
-
- means any of the following:
-
- a. any file in Source Code Form that results from an addition to, deletion
- from, or modification of the contents of Covered Software; or
-
- b. any new file in Source Code Form that contains any Covered Software.
-
-1.11. “Patent Claims” of a Contributor
-
- means any patent claim(s), including without limitation, method, process,
- and apparatus claims, in any patent Licensable by such Contributor that
- would be infringed, but for the grant of the License, by the making,
- using, selling, offering for sale, having made, import, or transfer of
- either its Contributions or its Contributor Version.
-
-1.12. “Secondary License”
-
- means either the GNU General Public License, Version 2.0, the GNU Lesser
- General Public License, Version 2.1, the GNU Affero General Public
- License, Version 3.0, or any later versions of those licenses.
-
-1.13. “Source Code Form”
-
- means the form of the work preferred for making modifications.
-
-1.14. “You” (or “Your”)
-
- means an individual or a legal entity exercising rights under this
- License. For legal entities, “You” includes any entity that controls, is
- controlled by, or is under common control with You. For purposes of this
- definition, “control” means (a) the power, direct or indirect, to cause
- the direction or management of such entity, whether by contract or
- otherwise, or (b) ownership of more than fifty percent (50%) of the
- outstanding shares or beneficial ownership of such entity.
-
-
-2. License Grants and Conditions
-
-2.1. Grants
-
- Each Contributor hereby grants You a world-wide, royalty-free,
- non-exclusive license:
-
- a. under intellectual property rights (other than patent or trademark)
- Licensable by such Contributor to use, reproduce, make available,
- modify, display, perform, distribute, and otherwise exploit its
- Contributions, either on an unmodified basis, with Modifications, or as
- part of a Larger Work; and
-
- b. under Patent Claims of such Contributor to make, use, sell, offer for
- sale, have made, import, and otherwise transfer either its Contributions
- or its Contributor Version.
-
-2.2. Effective Date
-
- The licenses granted in Section 2.1 with respect to any Contribution become
- effective for each Contribution on the date the Contributor first distributes
- such Contribution.
-
-2.3. Limitations on Grant Scope
-
- The licenses granted in this Section 2 are the only rights granted under this
- License. No additional rights or licenses will be implied from the distribution
- or licensing of Covered Software under this License. Notwithstanding Section
- 2.1(b) above, no patent license is granted by a Contributor:
-
- a. for any code that a Contributor has removed from Covered Software; or
-
- b. for infringements caused by: (i) Your and any other third party’s
- modifications of Covered Software, or (ii) the combination of its
- Contributions with other software (except as part of its Contributor
- Version); or
-
- c. under Patent Claims infringed by Covered Software in the absence of its
- Contributions.
-
- This License does not grant any rights in the trademarks, service marks, or
- logos of any Contributor (except as may be necessary to comply with the
- notice requirements in Section 3.4).
-
-2.4. Subsequent Licenses
-
- No Contributor makes additional grants as a result of Your choice to
- distribute the Covered Software under a subsequent version of this License
- (see Section 10.2) or under the terms of a Secondary License (if permitted
- under the terms of Section 3.3).
-
-2.5. Representation
-
- Each Contributor represents that the Contributor believes its Contributions
- are its original creation(s) or it has sufficient rights to grant the
- rights to its Contributions conveyed by this License.
-
-2.6. Fair Use
-
- This License is not intended to limit any rights You have under applicable
- copyright doctrines of fair use, fair dealing, or other equivalents.
-
-2.7. Conditions
-
- Sections 3.1, 3.2, 3.3, and 3.4 are conditions of the licenses granted in
- Section 2.1.
-
-
-3. Responsibilities
-
-3.1. Distribution of Source Form
-
- All distribution of Covered Software in Source Code Form, including any
- Modifications that You create or to which You contribute, must be under the
- terms of this License. You must inform recipients that the Source Code Form
- of the Covered Software is governed by the terms of this License, and how
- they can obtain a copy of this License. You may not attempt to alter or
- restrict the recipients’ rights in the Source Code Form.
-
-3.2. Distribution of Executable Form
-
- If You distribute Covered Software in Executable Form then:
-
- a. such Covered Software must also be made available in Source Code Form,
- as described in Section 3.1, and You must inform recipients of the
- Executable Form how they can obtain a copy of such Source Code Form by
- reasonable means in a timely manner, at a charge no more than the cost
- of distribution to the recipient; and
-
- b. You may distribute such Executable Form under the terms of this License,
- or sublicense it under different terms, provided that the license for
- the Executable Form does not attempt to limit or alter the recipients’
- rights in the Source Code Form under this License.
-
-3.3. Distribution of a Larger Work
-
- You may create and distribute a Larger Work under terms of Your choice,
- provided that You also comply with the requirements of this License for the
- Covered Software. If the Larger Work is a combination of Covered Software
- with a work governed by one or more Secondary Licenses, and the Covered
- Software is not Incompatible With Secondary Licenses, this License permits
- You to additionally distribute such Covered Software under the terms of
- such Secondary License(s), so that the recipient of the Larger Work may, at
- their option, further distribute the Covered Software under the terms of
- either this License or such Secondary License(s).
-
-3.4. Notices
-
- You may not remove or alter the substance of any license notices (including
- copyright notices, patent notices, disclaimers of warranty, or limitations
- of liability) contained within the Source Code Form of the Covered
- Software, except that You may alter any license notices to the extent
- required to remedy known factual inaccuracies.
-
-3.5. Application of Additional Terms
-
- You may choose to offer, and to charge a fee for, warranty, support,
- indemnity or liability obligations to one or more recipients of Covered
- Software. However, You may do so only on Your own behalf, and not on behalf
- of any Contributor. You must make it absolutely clear that any such
- warranty, support, indemnity, or liability obligation is offered by You
- alone, and You hereby agree to indemnify every Contributor for any
- liability incurred by such Contributor as a result of warranty, support,
- indemnity or liability terms You offer. You may include additional
- disclaimers of warranty and limitations of liability specific to any
- jurisdiction.
-
-4. Inability to Comply Due to Statute or Regulation
-
- If it is impossible for You to comply with any of the terms of this License
- with respect to some or all of the Covered Software due to statute, judicial
- order, or regulation then You must: (a) comply with the terms of this License
- to the maximum extent possible; and (b) describe the limitations and the code
- they affect. Such description must be placed in a text file included with all
- distributions of the Covered Software under this License. Except to the
- extent prohibited by statute or regulation, such description must be
- sufficiently detailed for a recipient of ordinary skill to be able to
- understand it.
-
-5. Termination
-
-5.1. The rights granted under this License will terminate automatically if You
- fail to comply with any of its terms. However, if You become compliant,
- then the rights granted under this License from a particular Contributor
- are reinstated (a) provisionally, unless and until such Contributor
- explicitly and finally terminates Your grants, and (b) on an ongoing basis,
- if such Contributor fails to notify You of the non-compliance by some
- reasonable means prior to 60 days after You have come back into compliance.
- Moreover, Your grants from a particular Contributor are reinstated on an
- ongoing basis if such Contributor notifies You of the non-compliance by
- some reasonable means, this is the first time You have received notice of
- non-compliance with this License from such Contributor, and You become
- compliant prior to 30 days after Your receipt of the notice.
-
-5.2. If You initiate litigation against any entity by asserting a patent
- infringement claim (excluding declaratory judgment actions, counter-claims,
- and cross-claims) alleging that a Contributor Version directly or
- indirectly infringes any patent, then the rights granted to You by any and
- all Contributors for the Covered Software under Section 2.1 of this License
- shall terminate.
-
-5.3. In the event of termination under Sections 5.1 or 5.2 above, all end user
- license agreements (excluding distributors and resellers) which have been
- validly granted by You or Your distributors under this License prior to
- termination shall survive termination.
-
-6. Disclaimer of Warranty
-
- Covered Software is provided under this License on an “as is” basis, without
- warranty of any kind, either expressed, implied, or statutory, including,
- without limitation, warranties that the Covered Software is free of defects,
- merchantable, fit for a particular purpose or non-infringing. The entire
- risk as to the quality and performance of the Covered Software is with You.
- Should any Covered Software prove defective in any respect, You (not any
- Contributor) assume the cost of any necessary servicing, repair, or
- correction. This disclaimer of warranty constitutes an essential part of this
- License. No use of any Covered Software is authorized under this License
- except under this disclaimer.
-
-7. Limitation of Liability
-
- Under no circumstances and under no legal theory, whether tort (including
- negligence), contract, or otherwise, shall any Contributor, or anyone who
- distributes Covered Software as permitted above, be liable to You for any
- direct, indirect, special, incidental, or consequential damages of any
- character including, without limitation, damages for lost profits, loss of
- goodwill, work stoppage, computer failure or malfunction, or any and all
- other commercial damages or losses, even if such party shall have been
- informed of the possibility of such damages. This limitation of liability
- shall not apply to liability for death or personal injury resulting from such
- party’s negligence to the extent applicable law prohibits such limitation.
- Some jurisdictions do not allow the exclusion or limitation of incidental or
- consequential damages, so this exclusion and limitation may not apply to You.
-
-8. Litigation
-
- Any litigation relating to this License may be brought only in the courts of
- a jurisdiction where the defendant maintains its principal place of business
- and such litigation shall be governed by laws of that jurisdiction, without
- reference to its conflict-of-law provisions. Nothing in this Section shall
- prevent a party’s ability to bring cross-claims or counter-claims.
-
-9. Miscellaneous
-
- This License represents the complete agreement concerning the subject matter
- hereof. If any provision of this License is held to be unenforceable, such
- provision shall be reformed only to the extent necessary to make it
- enforceable. Any law or regulation which provides that the language of a
- contract shall be construed against the drafter shall not be used to construe
- this License against a Contributor.
-
-
-10. Versions of the License
-
-10.1. New Versions
-
- Mozilla Foundation is the license steward. Except as provided in Section
- 10.3, no one other than the license steward has the right to modify or
- publish new versions of this License. Each version will be given a
- distinguishing version number.
-
-10.2. Effect of New Versions
-
- You may distribute the Covered Software under the terms of the version of
- the License under which You originally received the Covered Software, or
- under the terms of any subsequent version published by the license
- steward.
-
-10.3. Modified Versions
-
- If you create software not governed by this License, and you want to
- create a new license for such software, you may create and use a modified
- version of this License if you rename the license and remove any
- references to the name of the license steward (except to note that such
- modified license differs from this License).
-
-10.4. Distributing Source Code Form that is Incompatible With Secondary Licenses
- If You choose to distribute Source Code Form that is Incompatible With
- Secondary Licenses under the terms of this version of the License, the
- notice described in Exhibit B of this License must be attached.
-
-Exhibit A - Source Code Form License Notice
-
- This Source Code Form is subject to the
- terms of the Mozilla Public License, v.
- 2.0. If a copy of the MPL was not
- distributed with this file, You can
- obtain one at
- http://mozilla.org/MPL/2.0/.
-
-If it is not possible or desirable to put the notice in a particular file, then
-You may include the notice in a location (such as a LICENSE file in a relevant
-directory) where a recipient would be likely to look for such a notice.
-
-You may add additional accurate notices of copyright ownership.
-
-Exhibit B - “Incompatible With Secondary Licenses” Notice
-
- This Source Code Form is “Incompatible
- With Secondary Licenses”, as defined by
- the Mozilla Public License, v. 2.0.
-
diff --git a/vendor/github.com/hashicorp/hcl/Makefile b/vendor/github.com/hashicorp/hcl/Makefile
deleted file mode 100644
index 84fd743f5..000000000
--- a/vendor/github.com/hashicorp/hcl/Makefile
+++ /dev/null
@@ -1,18 +0,0 @@
-TEST?=./...
-
-default: test
-
-fmt: generate
- go fmt ./...
-
-test: generate
- go get -t ./...
- go test $(TEST) $(TESTARGS)
-
-generate:
- go generate ./...
-
-updatedeps:
- go get -u golang.org/x/tools/cmd/stringer
-
-.PHONY: default generate test updatedeps
diff --git a/vendor/github.com/hashicorp/hcl/README.md b/vendor/github.com/hashicorp/hcl/README.md
deleted file mode 100644
index c8223326d..000000000
--- a/vendor/github.com/hashicorp/hcl/README.md
+++ /dev/null
@@ -1,125 +0,0 @@
-# HCL
-
-[](https://godoc.org/github.com/hashicorp/hcl) [](https://travis-ci.org/hashicorp/hcl)
-
-HCL (HashiCorp Configuration Language) is a configuration language built
-by HashiCorp. The goal of HCL is to build a structured configuration language
-that is both human and machine friendly for use with command-line tools, but
-specifically targeted towards DevOps tools, servers, etc.
-
-HCL is also fully JSON compatible. That is, JSON can be used as completely
-valid input to a system expecting HCL. This helps makes systems
-interoperable with other systems.
-
-HCL is heavily inspired by
-[libucl](https://github.com/vstakhov/libucl),
-nginx configuration, and others similar.
-
-## Why?
-
-A common question when viewing HCL is to ask the question: why not
-JSON, YAML, etc.?
-
-Prior to HCL, the tools we built at [HashiCorp](http://www.hashicorp.com)
-used a variety of configuration languages from full programming languages
-such as Ruby to complete data structure languages such as JSON. What we
-learned is that some people wanted human-friendly configuration languages
-and some people wanted machine-friendly languages.
-
-JSON fits a nice balance in this, but is fairly verbose and most
-importantly doesn't support comments. With YAML, we found that beginners
-had a really hard time determining what the actual structure was, and
-ended up guessing more often than not whether to use a hyphen, colon, etc.
-in order to represent some configuration key.
-
-Full programming languages such as Ruby enable complex behavior
-a configuration language shouldn't usually allow, and also forces
-people to learn some set of Ruby.
-
-Because of this, we decided to create our own configuration language
-that is JSON-compatible. Our configuration language (HCL) is designed
-to be written and modified by humans. The API for HCL allows JSON
-as an input so that it is also machine-friendly (machines can generate
-JSON instead of trying to generate HCL).
-
-Our goal with HCL is not to alienate other configuration languages.
-It is instead to provide HCL as a specialized language for our tools,
-and JSON as the interoperability layer.
-
-## Syntax
-
-For a complete grammar, please see the parser itself. A high-level overview
-of the syntax and grammar is listed here.
-
- * Single line comments start with `#` or `//`
-
- * Multi-line comments are wrapped in `/*` and `*/`. Nested block comments
- are not allowed. A multi-line comment (also known as a block comment)
- terminates at the first `*/` found.
-
- * Values are assigned with the syntax `key = value` (whitespace doesn't
- matter). The value can be any primitive: a string, number, boolean,
- object, or list.
-
- * Strings are double-quoted and can contain any UTF-8 characters.
- Example: `"Hello, World"`
-
- * Multi-line strings start with `<-
- echo %Path%
-
- go version
-
- go env
-
- go get -t ./...
-
-build_script:
-- cmd: go test -v ./...
diff --git a/vendor/github.com/hashicorp/hcl/decoder.go b/vendor/github.com/hashicorp/hcl/decoder.go
deleted file mode 100644
index bed9ebbe1..000000000
--- a/vendor/github.com/hashicorp/hcl/decoder.go
+++ /dev/null
@@ -1,729 +0,0 @@
-package hcl
-
-import (
- "errors"
- "fmt"
- "reflect"
- "sort"
- "strconv"
- "strings"
-
- "github.com/hashicorp/hcl/hcl/ast"
- "github.com/hashicorp/hcl/hcl/parser"
- "github.com/hashicorp/hcl/hcl/token"
-)
-
-// This is the tag to use with structures to have settings for HCL
-const tagName = "hcl"
-
-var (
- // nodeType holds a reference to the type of ast.Node
- nodeType reflect.Type = findNodeType()
-)
-
-// Unmarshal accepts a byte slice as input and writes the
-// data to the value pointed to by v.
-func Unmarshal(bs []byte, v interface{}) error {
- root, err := parse(bs)
- if err != nil {
- return err
- }
-
- return DecodeObject(v, root)
-}
-
-// Decode reads the given input and decodes it into the structure
-// given by `out`.
-func Decode(out interface{}, in string) error {
- obj, err := Parse(in)
- if err != nil {
- return err
- }
-
- return DecodeObject(out, obj)
-}
-
-// DecodeObject is a lower-level version of Decode. It decodes a
-// raw Object into the given output.
-func DecodeObject(out interface{}, n ast.Node) error {
- val := reflect.ValueOf(out)
- if val.Kind() != reflect.Ptr {
- return errors.New("result must be a pointer")
- }
-
- // If we have the file, we really decode the root node
- if f, ok := n.(*ast.File); ok {
- n = f.Node
- }
-
- var d decoder
- return d.decode("root", n, val.Elem())
-}
-
-type decoder struct {
- stack []reflect.Kind
-}
-
-func (d *decoder) decode(name string, node ast.Node, result reflect.Value) error {
- k := result
-
- // If we have an interface with a valid value, we use that
- // for the check.
- if result.Kind() == reflect.Interface {
- elem := result.Elem()
- if elem.IsValid() {
- k = elem
- }
- }
-
- // Push current onto stack unless it is an interface.
- if k.Kind() != reflect.Interface {
- d.stack = append(d.stack, k.Kind())
-
- // Schedule a pop
- defer func() {
- d.stack = d.stack[:len(d.stack)-1]
- }()
- }
-
- switch k.Kind() {
- case reflect.Bool:
- return d.decodeBool(name, node, result)
- case reflect.Float32, reflect.Float64:
- return d.decodeFloat(name, node, result)
- case reflect.Int, reflect.Int32, reflect.Int64:
- return d.decodeInt(name, node, result)
- case reflect.Interface:
- // When we see an interface, we make our own thing
- return d.decodeInterface(name, node, result)
- case reflect.Map:
- return d.decodeMap(name, node, result)
- case reflect.Ptr:
- return d.decodePtr(name, node, result)
- case reflect.Slice:
- return d.decodeSlice(name, node, result)
- case reflect.String:
- return d.decodeString(name, node, result)
- case reflect.Struct:
- return d.decodeStruct(name, node, result)
- default:
- return &parser.PosError{
- Pos: node.Pos(),
- Err: fmt.Errorf("%s: unknown kind to decode into: %s", name, k.Kind()),
- }
- }
-}
-
-func (d *decoder) decodeBool(name string, node ast.Node, result reflect.Value) error {
- switch n := node.(type) {
- case *ast.LiteralType:
- if n.Token.Type == token.BOOL {
- v, err := strconv.ParseBool(n.Token.Text)
- if err != nil {
- return err
- }
-
- result.Set(reflect.ValueOf(v))
- return nil
- }
- }
-
- return &parser.PosError{
- Pos: node.Pos(),
- Err: fmt.Errorf("%s: unknown type %T", name, node),
- }
-}
-
-func (d *decoder) decodeFloat(name string, node ast.Node, result reflect.Value) error {
- switch n := node.(type) {
- case *ast.LiteralType:
- if n.Token.Type == token.FLOAT || n.Token.Type == token.NUMBER {
- v, err := strconv.ParseFloat(n.Token.Text, 64)
- if err != nil {
- return err
- }
-
- result.Set(reflect.ValueOf(v).Convert(result.Type()))
- return nil
- }
- }
-
- return &parser.PosError{
- Pos: node.Pos(),
- Err: fmt.Errorf("%s: unknown type %T", name, node),
- }
-}
-
-func (d *decoder) decodeInt(name string, node ast.Node, result reflect.Value) error {
- switch n := node.(type) {
- case *ast.LiteralType:
- switch n.Token.Type {
- case token.NUMBER:
- v, err := strconv.ParseInt(n.Token.Text, 0, 0)
- if err != nil {
- return err
- }
-
- if result.Kind() == reflect.Interface {
- result.Set(reflect.ValueOf(int(v)))
- } else {
- result.SetInt(v)
- }
- return nil
- case token.STRING:
- v, err := strconv.ParseInt(n.Token.Value().(string), 0, 0)
- if err != nil {
- return err
- }
-
- if result.Kind() == reflect.Interface {
- result.Set(reflect.ValueOf(int(v)))
- } else {
- result.SetInt(v)
- }
- return nil
- }
- }
-
- return &parser.PosError{
- Pos: node.Pos(),
- Err: fmt.Errorf("%s: unknown type %T", name, node),
- }
-}
-
-func (d *decoder) decodeInterface(name string, node ast.Node, result reflect.Value) error {
- // When we see an ast.Node, we retain the value to enable deferred decoding.
- // Very useful in situations where we want to preserve ast.Node information
- // like Pos
- if result.Type() == nodeType && result.CanSet() {
- result.Set(reflect.ValueOf(node))
- return nil
- }
-
- var set reflect.Value
- redecode := true
-
- // For testing types, ObjectType should just be treated as a list. We
- // set this to a temporary var because we want to pass in the real node.
- testNode := node
- if ot, ok := node.(*ast.ObjectType); ok {
- testNode = ot.List
- }
-
- switch n := testNode.(type) {
- case *ast.ObjectList:
- // If we're at the root or we're directly within a slice, then we
- // decode objects into map[string]interface{}, otherwise we decode
- // them into lists.
- if len(d.stack) == 0 || d.stack[len(d.stack)-1] == reflect.Slice {
- var temp map[string]interface{}
- tempVal := reflect.ValueOf(temp)
- result := reflect.MakeMap(
- reflect.MapOf(
- reflect.TypeOf(""),
- tempVal.Type().Elem()))
-
- set = result
- } else {
- var temp []map[string]interface{}
- tempVal := reflect.ValueOf(temp)
- result := reflect.MakeSlice(
- reflect.SliceOf(tempVal.Type().Elem()), 0, len(n.Items))
- set = result
- }
- case *ast.ObjectType:
- // If we're at the root or we're directly within a slice, then we
- // decode objects into map[string]interface{}, otherwise we decode
- // them into lists.
- if len(d.stack) == 0 || d.stack[len(d.stack)-1] == reflect.Slice {
- var temp map[string]interface{}
- tempVal := reflect.ValueOf(temp)
- result := reflect.MakeMap(
- reflect.MapOf(
- reflect.TypeOf(""),
- tempVal.Type().Elem()))
-
- set = result
- } else {
- var temp []map[string]interface{}
- tempVal := reflect.ValueOf(temp)
- result := reflect.MakeSlice(
- reflect.SliceOf(tempVal.Type().Elem()), 0, 1)
- set = result
- }
- case *ast.ListType:
- var temp []interface{}
- tempVal := reflect.ValueOf(temp)
- result := reflect.MakeSlice(
- reflect.SliceOf(tempVal.Type().Elem()), 0, 0)
- set = result
- case *ast.LiteralType:
- switch n.Token.Type {
- case token.BOOL:
- var result bool
- set = reflect.Indirect(reflect.New(reflect.TypeOf(result)))
- case token.FLOAT:
- var result float64
- set = reflect.Indirect(reflect.New(reflect.TypeOf(result)))
- case token.NUMBER:
- var result int
- set = reflect.Indirect(reflect.New(reflect.TypeOf(result)))
- case token.STRING, token.HEREDOC:
- set = reflect.Indirect(reflect.New(reflect.TypeOf("")))
- default:
- return &parser.PosError{
- Pos: node.Pos(),
- Err: fmt.Errorf("%s: cannot decode into interface: %T", name, node),
- }
- }
- default:
- return fmt.Errorf(
- "%s: cannot decode into interface: %T",
- name, node)
- }
-
- // Set the result to what its supposed to be, then reset
- // result so we don't reflect into this method anymore.
- result.Set(set)
-
- if redecode {
- // Revisit the node so that we can use the newly instantiated
- // thing and populate it.
- if err := d.decode(name, node, result); err != nil {
- return err
- }
- }
-
- return nil
-}
-
-func (d *decoder) decodeMap(name string, node ast.Node, result reflect.Value) error {
- if item, ok := node.(*ast.ObjectItem); ok {
- node = &ast.ObjectList{Items: []*ast.ObjectItem{item}}
- }
-
- if ot, ok := node.(*ast.ObjectType); ok {
- node = ot.List
- }
-
- n, ok := node.(*ast.ObjectList)
- if !ok {
- return &parser.PosError{
- Pos: node.Pos(),
- Err: fmt.Errorf("%s: not an object type for map (%T)", name, node),
- }
- }
-
- // If we have an interface, then we can address the interface,
- // but not the slice itself, so get the element but set the interface
- set := result
- if result.Kind() == reflect.Interface {
- result = result.Elem()
- }
-
- resultType := result.Type()
- resultElemType := resultType.Elem()
- resultKeyType := resultType.Key()
- if resultKeyType.Kind() != reflect.String {
- return &parser.PosError{
- Pos: node.Pos(),
- Err: fmt.Errorf("%s: map must have string keys", name),
- }
- }
-
- // Make a map if it is nil
- resultMap := result
- if result.IsNil() {
- resultMap = reflect.MakeMap(
- reflect.MapOf(resultKeyType, resultElemType))
- }
-
- // Go through each element and decode it.
- done := make(map[string]struct{})
- for _, item := range n.Items {
- if item.Val == nil {
- continue
- }
-
- // github.com/hashicorp/terraform/issue/5740
- if len(item.Keys) == 0 {
- return &parser.PosError{
- Pos: node.Pos(),
- Err: fmt.Errorf("%s: map must have string keys", name),
- }
- }
-
- // Get the key we're dealing with, which is the first item
- keyStr := item.Keys[0].Token.Value().(string)
-
- // If we've already processed this key, then ignore it
- if _, ok := done[keyStr]; ok {
- continue
- }
-
- // Determine the value. If we have more than one key, then we
- // get the objectlist of only these keys.
- itemVal := item.Val
- if len(item.Keys) > 1 {
- itemVal = n.Filter(keyStr)
- done[keyStr] = struct{}{}
- }
-
- // Make the field name
- fieldName := fmt.Sprintf("%s.%s", name, keyStr)
-
- // Get the key/value as reflection values
- key := reflect.ValueOf(keyStr)
- val := reflect.Indirect(reflect.New(resultElemType))
-
- // If we have a pre-existing value in the map, use that
- oldVal := resultMap.MapIndex(key)
- if oldVal.IsValid() {
- val.Set(oldVal)
- }
-
- // Decode!
- if err := d.decode(fieldName, itemVal, val); err != nil {
- return err
- }
-
- // Set the value on the map
- resultMap.SetMapIndex(key, val)
- }
-
- // Set the final map if we can
- set.Set(resultMap)
- return nil
-}
-
-func (d *decoder) decodePtr(name string, node ast.Node, result reflect.Value) error {
- // Create an element of the concrete (non pointer) type and decode
- // into that. Then set the value of the pointer to this type.
- resultType := result.Type()
- resultElemType := resultType.Elem()
- val := reflect.New(resultElemType)
- if err := d.decode(name, node, reflect.Indirect(val)); err != nil {
- return err
- }
-
- result.Set(val)
- return nil
-}
-
-func (d *decoder) decodeSlice(name string, node ast.Node, result reflect.Value) error {
- // If we have an interface, then we can address the interface,
- // but not the slice itself, so get the element but set the interface
- set := result
- if result.Kind() == reflect.Interface {
- result = result.Elem()
- }
- // Create the slice if it isn't nil
- resultType := result.Type()
- resultElemType := resultType.Elem()
- if result.IsNil() {
- resultSliceType := reflect.SliceOf(resultElemType)
- result = reflect.MakeSlice(
- resultSliceType, 0, 0)
- }
-
- // Figure out the items we'll be copying into the slice
- var items []ast.Node
- switch n := node.(type) {
- case *ast.ObjectList:
- items = make([]ast.Node, len(n.Items))
- for i, item := range n.Items {
- items[i] = item
- }
- case *ast.ObjectType:
- items = []ast.Node{n}
- case *ast.ListType:
- items = n.List
- default:
- return &parser.PosError{
- Pos: node.Pos(),
- Err: fmt.Errorf("unknown slice type: %T", node),
- }
- }
-
- for i, item := range items {
- fieldName := fmt.Sprintf("%s[%d]", name, i)
-
- // Decode
- val := reflect.Indirect(reflect.New(resultElemType))
-
- // if item is an object that was decoded from ambiguous JSON and
- // flattened, make sure it's expanded if it needs to decode into a
- // defined structure.
- item := expandObject(item, val)
-
- if err := d.decode(fieldName, item, val); err != nil {
- return err
- }
-
- // Append it onto the slice
- result = reflect.Append(result, val)
- }
-
- set.Set(result)
- return nil
-}
-
-// expandObject detects if an ambiguous JSON object was flattened to a List which
-// should be decoded into a struct, and expands the ast to properly deocode.
-func expandObject(node ast.Node, result reflect.Value) ast.Node {
- item, ok := node.(*ast.ObjectItem)
- if !ok {
- return node
- }
-
- elemType := result.Type()
-
- // our target type must be a struct
- switch elemType.Kind() {
- case reflect.Ptr:
- switch elemType.Elem().Kind() {
- case reflect.Struct:
- //OK
- default:
- return node
- }
- case reflect.Struct:
- //OK
- default:
- return node
- }
-
- // A list value will have a key and field name. If it had more fields,
- // it wouldn't have been flattened.
- if len(item.Keys) != 2 {
- return node
- }
-
- keyToken := item.Keys[0].Token
- item.Keys = item.Keys[1:]
-
- // we need to un-flatten the ast enough to decode
- newNode := &ast.ObjectItem{
- Keys: []*ast.ObjectKey{
- &ast.ObjectKey{
- Token: keyToken,
- },
- },
- Val: &ast.ObjectType{
- List: &ast.ObjectList{
- Items: []*ast.ObjectItem{item},
- },
- },
- }
-
- return newNode
-}
-
-func (d *decoder) decodeString(name string, node ast.Node, result reflect.Value) error {
- switch n := node.(type) {
- case *ast.LiteralType:
- switch n.Token.Type {
- case token.NUMBER:
- result.Set(reflect.ValueOf(n.Token.Text).Convert(result.Type()))
- return nil
- case token.STRING, token.HEREDOC:
- result.Set(reflect.ValueOf(n.Token.Value()).Convert(result.Type()))
- return nil
- }
- }
-
- return &parser.PosError{
- Pos: node.Pos(),
- Err: fmt.Errorf("%s: unknown type for string %T", name, node),
- }
-}
-
-func (d *decoder) decodeStruct(name string, node ast.Node, result reflect.Value) error {
- var item *ast.ObjectItem
- if it, ok := node.(*ast.ObjectItem); ok {
- item = it
- node = it.Val
- }
-
- if ot, ok := node.(*ast.ObjectType); ok {
- node = ot.List
- }
-
- // Handle the special case where the object itself is a literal. Previously
- // the yacc parser would always ensure top-level elements were arrays. The new
- // parser does not make the same guarantees, thus we need to convert any
- // top-level literal elements into a list.
- if _, ok := node.(*ast.LiteralType); ok && item != nil {
- node = &ast.ObjectList{Items: []*ast.ObjectItem{item}}
- }
-
- list, ok := node.(*ast.ObjectList)
- if !ok {
- return &parser.PosError{
- Pos: node.Pos(),
- Err: fmt.Errorf("%s: not an object type for struct (%T)", name, node),
- }
- }
-
- // This slice will keep track of all the structs we'll be decoding.
- // There can be more than one struct if there are embedded structs
- // that are squashed.
- structs := make([]reflect.Value, 1, 5)
- structs[0] = result
-
- // Compile the list of all the fields that we're going to be decoding
- // from all the structs.
- type field struct {
- field reflect.StructField
- val reflect.Value
- }
- fields := []field{}
- for len(structs) > 0 {
- structVal := structs[0]
- structs = structs[1:]
-
- structType := structVal.Type()
- for i := 0; i < structType.NumField(); i++ {
- fieldType := structType.Field(i)
- tagParts := strings.Split(fieldType.Tag.Get(tagName), ",")
-
- // Ignore fields with tag name "-"
- if tagParts[0] == "-" {
- continue
- }
-
- if fieldType.Anonymous {
- fieldKind := fieldType.Type.Kind()
- if fieldKind != reflect.Struct {
- return &parser.PosError{
- Pos: node.Pos(),
- Err: fmt.Errorf("%s: unsupported type to struct: %s",
- fieldType.Name, fieldKind),
- }
- }
-
- // We have an embedded field. We "squash" the fields down
- // if specified in the tag.
- squash := false
- for _, tag := range tagParts[1:] {
- if tag == "squash" {
- squash = true
- break
- }
- }
-
- if squash {
- structs = append(
- structs, result.FieldByName(fieldType.Name))
- continue
- }
- }
-
- // Normal struct field, store it away
- fields = append(fields, field{fieldType, structVal.Field(i)})
- }
- }
-
- usedKeys := make(map[string]struct{})
- decodedFields := make([]string, 0, len(fields))
- decodedFieldsVal := make([]reflect.Value, 0)
- unusedKeysVal := make([]reflect.Value, 0)
- for _, f := range fields {
- field, fieldValue := f.field, f.val
- if !fieldValue.IsValid() {
- // This should never happen
- panic("field is not valid")
- }
-
- // If we can't set the field, then it is unexported or something,
- // and we just continue onwards.
- if !fieldValue.CanSet() {
- continue
- }
-
- fieldName := field.Name
-
- tagValue := field.Tag.Get(tagName)
- tagParts := strings.SplitN(tagValue, ",", 2)
- if len(tagParts) >= 2 {
- switch tagParts[1] {
- case "decodedFields":
- decodedFieldsVal = append(decodedFieldsVal, fieldValue)
- continue
- case "key":
- if item == nil {
- return &parser.PosError{
- Pos: node.Pos(),
- Err: fmt.Errorf("%s: %s asked for 'key', impossible",
- name, fieldName),
- }
- }
-
- fieldValue.SetString(item.Keys[0].Token.Value().(string))
- continue
- case "unusedKeys":
- unusedKeysVal = append(unusedKeysVal, fieldValue)
- continue
- }
- }
-
- if tagParts[0] != "" {
- fieldName = tagParts[0]
- }
-
- // Determine the element we'll use to decode. If it is a single
- // match (only object with the field), then we decode it exactly.
- // If it is a prefix match, then we decode the matches.
- filter := list.Filter(fieldName)
-
- prefixMatches := filter.Children()
- matches := filter.Elem()
- if len(matches.Items) == 0 && len(prefixMatches.Items) == 0 {
- continue
- }
-
- // Track the used key
- usedKeys[fieldName] = struct{}{}
-
- // Create the field name and decode. We range over the elements
- // because we actually want the value.
- fieldName = fmt.Sprintf("%s.%s", name, fieldName)
- if len(prefixMatches.Items) > 0 {
- if err := d.decode(fieldName, prefixMatches, fieldValue); err != nil {
- return err
- }
- }
- for _, match := range matches.Items {
- var decodeNode ast.Node = match.Val
- if ot, ok := decodeNode.(*ast.ObjectType); ok {
- decodeNode = &ast.ObjectList{Items: ot.List.Items}
- }
-
- if err := d.decode(fieldName, decodeNode, fieldValue); err != nil {
- return err
- }
- }
-
- decodedFields = append(decodedFields, field.Name)
- }
-
- if len(decodedFieldsVal) > 0 {
- // Sort it so that it is deterministic
- sort.Strings(decodedFields)
-
- for _, v := range decodedFieldsVal {
- v.Set(reflect.ValueOf(decodedFields))
- }
- }
-
- return nil
-}
-
-// findNodeType returns the type of ast.Node
-func findNodeType() reflect.Type {
- var nodeContainer struct {
- Node ast.Node
- }
- value := reflect.ValueOf(nodeContainer).FieldByName("Node")
- return value.Type()
-}
diff --git a/vendor/github.com/hashicorp/hcl/go.mod b/vendor/github.com/hashicorp/hcl/go.mod
deleted file mode 100644
index 4debbbe35..000000000
--- a/vendor/github.com/hashicorp/hcl/go.mod
+++ /dev/null
@@ -1,3 +0,0 @@
-module github.com/hashicorp/hcl
-
-require github.com/davecgh/go-spew v1.1.1
diff --git a/vendor/github.com/hashicorp/hcl/go.sum b/vendor/github.com/hashicorp/hcl/go.sum
deleted file mode 100644
index b5e2922e8..000000000
--- a/vendor/github.com/hashicorp/hcl/go.sum
+++ /dev/null
@@ -1,2 +0,0 @@
-github.com/davecgh/go-spew v1.1.1 h1:vj9j/u1bqnvCEfJOwUhtlOARqs3+rkHYY13jYWTU97c=
-github.com/davecgh/go-spew v1.1.1/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38=
diff --git a/vendor/github.com/hashicorp/hcl/hcl.go b/vendor/github.com/hashicorp/hcl/hcl.go
deleted file mode 100644
index 575a20b50..000000000
--- a/vendor/github.com/hashicorp/hcl/hcl.go
+++ /dev/null
@@ -1,11 +0,0 @@
-// Package hcl decodes HCL into usable Go structures.
-//
-// hcl input can come in either pure HCL format or JSON format.
-// It can be parsed into an AST, and then decoded into a structure,
-// or it can be decoded directly from a string into a structure.
-//
-// If you choose to parse HCL into a raw AST, the benefit is that you
-// can write custom visitor implementations to implement custom
-// semantic checks. By default, HCL does not perform any semantic
-// checks.
-package hcl
diff --git a/vendor/github.com/hashicorp/hcl/hcl/ast/ast.go b/vendor/github.com/hashicorp/hcl/hcl/ast/ast.go
deleted file mode 100644
index 6e5ef654b..000000000
--- a/vendor/github.com/hashicorp/hcl/hcl/ast/ast.go
+++ /dev/null
@@ -1,219 +0,0 @@
-// Package ast declares the types used to represent syntax trees for HCL
-// (HashiCorp Configuration Language)
-package ast
-
-import (
- "fmt"
- "strings"
-
- "github.com/hashicorp/hcl/hcl/token"
-)
-
-// Node is an element in the abstract syntax tree.
-type Node interface {
- node()
- Pos() token.Pos
-}
-
-func (File) node() {}
-func (ObjectList) node() {}
-func (ObjectKey) node() {}
-func (ObjectItem) node() {}
-func (Comment) node() {}
-func (CommentGroup) node() {}
-func (ObjectType) node() {}
-func (LiteralType) node() {}
-func (ListType) node() {}
-
-// File represents a single HCL file
-type File struct {
- Node Node // usually a *ObjectList
- Comments []*CommentGroup // list of all comments in the source
-}
-
-func (f *File) Pos() token.Pos {
- return f.Node.Pos()
-}
-
-// ObjectList represents a list of ObjectItems. An HCL file itself is an
-// ObjectList.
-type ObjectList struct {
- Items []*ObjectItem
-}
-
-func (o *ObjectList) Add(item *ObjectItem) {
- o.Items = append(o.Items, item)
-}
-
-// Filter filters out the objects with the given key list as a prefix.
-//
-// The returned list of objects contain ObjectItems where the keys have
-// this prefix already stripped off. This might result in objects with
-// zero-length key lists if they have no children.
-//
-// If no matches are found, an empty ObjectList (non-nil) is returned.
-func (o *ObjectList) Filter(keys ...string) *ObjectList {
- var result ObjectList
- for _, item := range o.Items {
- // If there aren't enough keys, then ignore this
- if len(item.Keys) < len(keys) {
- continue
- }
-
- match := true
- for i, key := range item.Keys[:len(keys)] {
- key := key.Token.Value().(string)
- if key != keys[i] && !strings.EqualFold(key, keys[i]) {
- match = false
- break
- }
- }
- if !match {
- continue
- }
-
- // Strip off the prefix from the children
- newItem := *item
- newItem.Keys = newItem.Keys[len(keys):]
- result.Add(&newItem)
- }
-
- return &result
-}
-
-// Children returns further nested objects (key length > 0) within this
-// ObjectList. This should be used with Filter to get at child items.
-func (o *ObjectList) Children() *ObjectList {
- var result ObjectList
- for _, item := range o.Items {
- if len(item.Keys) > 0 {
- result.Add(item)
- }
- }
-
- return &result
-}
-
-// Elem returns items in the list that are direct element assignments
-// (key length == 0). This should be used with Filter to get at elements.
-func (o *ObjectList) Elem() *ObjectList {
- var result ObjectList
- for _, item := range o.Items {
- if len(item.Keys) == 0 {
- result.Add(item)
- }
- }
-
- return &result
-}
-
-func (o *ObjectList) Pos() token.Pos {
- // always returns the uninitiliazed position
- return o.Items[0].Pos()
-}
-
-// ObjectItem represents a HCL Object Item. An item is represented with a key
-// (or keys). It can be an assignment or an object (both normal and nested)
-type ObjectItem struct {
- // keys is only one length long if it's of type assignment. If it's a
- // nested object it can be larger than one. In that case "assign" is
- // invalid as there is no assignments for a nested object.
- Keys []*ObjectKey
-
- // assign contains the position of "=", if any
- Assign token.Pos
-
- // val is the item itself. It can be an object,list, number, bool or a
- // string. If key length is larger than one, val can be only of type
- // Object.
- Val Node
-
- LeadComment *CommentGroup // associated lead comment
- LineComment *CommentGroup // associated line comment
-}
-
-func (o *ObjectItem) Pos() token.Pos {
- // I'm not entirely sure what causes this, but removing this causes
- // a test failure. We should investigate at some point.
- if len(o.Keys) == 0 {
- return token.Pos{}
- }
-
- return o.Keys[0].Pos()
-}
-
-// ObjectKeys are either an identifier or of type string.
-type ObjectKey struct {
- Token token.Token
-}
-
-func (o *ObjectKey) Pos() token.Pos {
- return o.Token.Pos
-}
-
-// LiteralType represents a literal of basic type. Valid types are:
-// token.NUMBER, token.FLOAT, token.BOOL and token.STRING
-type LiteralType struct {
- Token token.Token
-
- // comment types, only used when in a list
- LeadComment *CommentGroup
- LineComment *CommentGroup
-}
-
-func (l *LiteralType) Pos() token.Pos {
- return l.Token.Pos
-}
-
-// ListStatement represents a HCL List type
-type ListType struct {
- Lbrack token.Pos // position of "["
- Rbrack token.Pos // position of "]"
- List []Node // the elements in lexical order
-}
-
-func (l *ListType) Pos() token.Pos {
- return l.Lbrack
-}
-
-func (l *ListType) Add(node Node) {
- l.List = append(l.List, node)
-}
-
-// ObjectType represents a HCL Object Type
-type ObjectType struct {
- Lbrace token.Pos // position of "{"
- Rbrace token.Pos // position of "}"
- List *ObjectList // the nodes in lexical order
-}
-
-func (o *ObjectType) Pos() token.Pos {
- return o.Lbrace
-}
-
-// Comment node represents a single //, # style or /*- style commment
-type Comment struct {
- Start token.Pos // position of / or #
- Text string
-}
-
-func (c *Comment) Pos() token.Pos {
- return c.Start
-}
-
-// CommentGroup node represents a sequence of comments with no other tokens and
-// no empty lines between.
-type CommentGroup struct {
- List []*Comment // len(List) > 0
-}
-
-func (c *CommentGroup) Pos() token.Pos {
- return c.List[0].Pos()
-}
-
-//-------------------------------------------------------------------
-// GoStringer
-//-------------------------------------------------------------------
-
-func (o *ObjectKey) GoString() string { return fmt.Sprintf("*%#v", *o) }
-func (o *ObjectList) GoString() string { return fmt.Sprintf("*%#v", *o) }
diff --git a/vendor/github.com/hashicorp/hcl/hcl/ast/walk.go b/vendor/github.com/hashicorp/hcl/hcl/ast/walk.go
deleted file mode 100644
index ba07ad42b..000000000
--- a/vendor/github.com/hashicorp/hcl/hcl/ast/walk.go
+++ /dev/null
@@ -1,52 +0,0 @@
-package ast
-
-import "fmt"
-
-// WalkFunc describes a function to be called for each node during a Walk. The
-// returned node can be used to rewrite the AST. Walking stops the returned
-// bool is false.
-type WalkFunc func(Node) (Node, bool)
-
-// Walk traverses an AST in depth-first order: It starts by calling fn(node);
-// node must not be nil. If fn returns true, Walk invokes fn recursively for
-// each of the non-nil children of node, followed by a call of fn(nil). The
-// returned node of fn can be used to rewrite the passed node to fn.
-func Walk(node Node, fn WalkFunc) Node {
- rewritten, ok := fn(node)
- if !ok {
- return rewritten
- }
-
- switch n := node.(type) {
- case *File:
- n.Node = Walk(n.Node, fn)
- case *ObjectList:
- for i, item := range n.Items {
- n.Items[i] = Walk(item, fn).(*ObjectItem)
- }
- case *ObjectKey:
- // nothing to do
- case *ObjectItem:
- for i, k := range n.Keys {
- n.Keys[i] = Walk(k, fn).(*ObjectKey)
- }
-
- if n.Val != nil {
- n.Val = Walk(n.Val, fn)
- }
- case *LiteralType:
- // nothing to do
- case *ListType:
- for i, l := range n.List {
- n.List[i] = Walk(l, fn)
- }
- case *ObjectType:
- n.List = Walk(n.List, fn).(*ObjectList)
- default:
- // should we panic here?
- fmt.Printf("unknown type: %T\n", n)
- }
-
- fn(nil)
- return rewritten
-}
diff --git a/vendor/github.com/hashicorp/hcl/hcl/parser/error.go b/vendor/github.com/hashicorp/hcl/hcl/parser/error.go
deleted file mode 100644
index 5c99381df..000000000
--- a/vendor/github.com/hashicorp/hcl/hcl/parser/error.go
+++ /dev/null
@@ -1,17 +0,0 @@
-package parser
-
-import (
- "fmt"
-
- "github.com/hashicorp/hcl/hcl/token"
-)
-
-// PosError is a parse error that contains a position.
-type PosError struct {
- Pos token.Pos
- Err error
-}
-
-func (e *PosError) Error() string {
- return fmt.Sprintf("At %s: %s", e.Pos, e.Err)
-}
diff --git a/vendor/github.com/hashicorp/hcl/hcl/parser/parser.go b/vendor/github.com/hashicorp/hcl/hcl/parser/parser.go
deleted file mode 100644
index 64c83bcfb..000000000
--- a/vendor/github.com/hashicorp/hcl/hcl/parser/parser.go
+++ /dev/null
@@ -1,532 +0,0 @@
-// Package parser implements a parser for HCL (HashiCorp Configuration
-// Language)
-package parser
-
-import (
- "bytes"
- "errors"
- "fmt"
- "strings"
-
- "github.com/hashicorp/hcl/hcl/ast"
- "github.com/hashicorp/hcl/hcl/scanner"
- "github.com/hashicorp/hcl/hcl/token"
-)
-
-type Parser struct {
- sc *scanner.Scanner
-
- // Last read token
- tok token.Token
- commaPrev token.Token
-
- comments []*ast.CommentGroup
- leadComment *ast.CommentGroup // last lead comment
- lineComment *ast.CommentGroup // last line comment
-
- enableTrace bool
- indent int
- n int // buffer size (max = 1)
-}
-
-func newParser(src []byte) *Parser {
- return &Parser{
- sc: scanner.New(src),
- }
-}
-
-// Parse returns the fully parsed source and returns the abstract syntax tree.
-func Parse(src []byte) (*ast.File, error) {
- // normalize all line endings
- // since the scanner and output only work with "\n" line endings, we may
- // end up with dangling "\r" characters in the parsed data.
- src = bytes.Replace(src, []byte("\r\n"), []byte("\n"), -1)
-
- p := newParser(src)
- return p.Parse()
-}
-
-var errEofToken = errors.New("EOF token found")
-
-// Parse returns the fully parsed source and returns the abstract syntax tree.
-func (p *Parser) Parse() (*ast.File, error) {
- f := &ast.File{}
- var err, scerr error
- p.sc.Error = func(pos token.Pos, msg string) {
- scerr = &PosError{Pos: pos, Err: errors.New(msg)}
- }
-
- f.Node, err = p.objectList(false)
- if scerr != nil {
- return nil, scerr
- }
- if err != nil {
- return nil, err
- }
-
- f.Comments = p.comments
- return f, nil
-}
-
-// objectList parses a list of items within an object (generally k/v pairs).
-// The parameter" obj" tells this whether to we are within an object (braces:
-// '{', '}') or just at the top level. If we're within an object, we end
-// at an RBRACE.
-func (p *Parser) objectList(obj bool) (*ast.ObjectList, error) {
- defer un(trace(p, "ParseObjectList"))
- node := &ast.ObjectList{}
-
- for {
- if obj {
- tok := p.scan()
- p.unscan()
- if tok.Type == token.RBRACE {
- break
- }
- }
-
- n, err := p.objectItem()
- if err == errEofToken {
- break // we are finished
- }
-
- // we don't return a nil node, because might want to use already
- // collected items.
- if err != nil {
- return node, err
- }
-
- node.Add(n)
-
- // object lists can be optionally comma-delimited e.g. when a list of maps
- // is being expressed, so a comma is allowed here - it's simply consumed
- tok := p.scan()
- if tok.Type != token.COMMA {
- p.unscan()
- }
- }
- return node, nil
-}
-
-func (p *Parser) consumeComment() (comment *ast.Comment, endline int) {
- endline = p.tok.Pos.Line
-
- // count the endline if it's multiline comment, ie starting with /*
- if len(p.tok.Text) > 1 && p.tok.Text[1] == '*' {
- // don't use range here - no need to decode Unicode code points
- for i := 0; i < len(p.tok.Text); i++ {
- if p.tok.Text[i] == '\n' {
- endline++
- }
- }
- }
-
- comment = &ast.Comment{Start: p.tok.Pos, Text: p.tok.Text}
- p.tok = p.sc.Scan()
- return
-}
-
-func (p *Parser) consumeCommentGroup(n int) (comments *ast.CommentGroup, endline int) {
- var list []*ast.Comment
- endline = p.tok.Pos.Line
-
- for p.tok.Type == token.COMMENT && p.tok.Pos.Line <= endline+n {
- var comment *ast.Comment
- comment, endline = p.consumeComment()
- list = append(list, comment)
- }
-
- // add comment group to the comments list
- comments = &ast.CommentGroup{List: list}
- p.comments = append(p.comments, comments)
-
- return
-}
-
-// objectItem parses a single object item
-func (p *Parser) objectItem() (*ast.ObjectItem, error) {
- defer un(trace(p, "ParseObjectItem"))
-
- keys, err := p.objectKey()
- if len(keys) > 0 && err == errEofToken {
- // We ignore eof token here since it is an error if we didn't
- // receive a value (but we did receive a key) for the item.
- err = nil
- }
- if len(keys) > 0 && err != nil && p.tok.Type == token.RBRACE {
- // This is a strange boolean statement, but what it means is:
- // We have keys with no value, and we're likely in an object
- // (since RBrace ends an object). For this, we set err to nil so
- // we continue and get the error below of having the wrong value
- // type.
- err = nil
-
- // Reset the token type so we don't think it completed fine. See
- // objectType which uses p.tok.Type to check if we're done with
- // the object.
- p.tok.Type = token.EOF
- }
- if err != nil {
- return nil, err
- }
-
- o := &ast.ObjectItem{
- Keys: keys,
- }
-
- if p.leadComment != nil {
- o.LeadComment = p.leadComment
- p.leadComment = nil
- }
-
- switch p.tok.Type {
- case token.ASSIGN:
- o.Assign = p.tok.Pos
- o.Val, err = p.object()
- if err != nil {
- return nil, err
- }
- case token.LBRACE:
- o.Val, err = p.objectType()
- if err != nil {
- return nil, err
- }
- default:
- keyStr := make([]string, 0, len(keys))
- for _, k := range keys {
- keyStr = append(keyStr, k.Token.Text)
- }
-
- return nil, &PosError{
- Pos: p.tok.Pos,
- Err: fmt.Errorf(
- "key '%s' expected start of object ('{') or assignment ('=')",
- strings.Join(keyStr, " ")),
- }
- }
-
- // key=#comment
- // val
- if p.lineComment != nil {
- o.LineComment, p.lineComment = p.lineComment, nil
- }
-
- // do a look-ahead for line comment
- p.scan()
- if len(keys) > 0 && o.Val.Pos().Line == keys[0].Pos().Line && p.lineComment != nil {
- o.LineComment = p.lineComment
- p.lineComment = nil
- }
- p.unscan()
- return o, nil
-}
-
-// objectKey parses an object key and returns a ObjectKey AST
-func (p *Parser) objectKey() ([]*ast.ObjectKey, error) {
- keyCount := 0
- keys := make([]*ast.ObjectKey, 0)
-
- for {
- tok := p.scan()
- switch tok.Type {
- case token.EOF:
- // It is very important to also return the keys here as well as
- // the error. This is because we need to be able to tell if we
- // did parse keys prior to finding the EOF, or if we just found
- // a bare EOF.
- return keys, errEofToken
- case token.ASSIGN:
- // assignment or object only, but not nested objects. this is not
- // allowed: `foo bar = {}`
- if keyCount > 1 {
- return nil, &PosError{
- Pos: p.tok.Pos,
- Err: fmt.Errorf("nested object expected: LBRACE got: %s", p.tok.Type),
- }
- }
-
- if keyCount == 0 {
- return nil, &PosError{
- Pos: p.tok.Pos,
- Err: errors.New("no object keys found!"),
- }
- }
-
- return keys, nil
- case token.LBRACE:
- var err error
-
- // If we have no keys, then it is a syntax error. i.e. {{}} is not
- // allowed.
- if len(keys) == 0 {
- err = &PosError{
- Pos: p.tok.Pos,
- Err: fmt.Errorf("expected: IDENT | STRING got: %s", p.tok.Type),
- }
- }
-
- // object
- return keys, err
- case token.IDENT, token.STRING:
- keyCount++
- keys = append(keys, &ast.ObjectKey{Token: p.tok})
- case token.ILLEGAL:
- return keys, &PosError{
- Pos: p.tok.Pos,
- Err: fmt.Errorf("illegal character"),
- }
- default:
- return keys, &PosError{
- Pos: p.tok.Pos,
- Err: fmt.Errorf("expected: IDENT | STRING | ASSIGN | LBRACE got: %s", p.tok.Type),
- }
- }
- }
-}
-
-// object parses any type of object, such as number, bool, string, object or
-// list.
-func (p *Parser) object() (ast.Node, error) {
- defer un(trace(p, "ParseType"))
- tok := p.scan()
-
- switch tok.Type {
- case token.NUMBER, token.FLOAT, token.BOOL, token.STRING, token.HEREDOC:
- return p.literalType()
- case token.LBRACE:
- return p.objectType()
- case token.LBRACK:
- return p.listType()
- case token.COMMENT:
- // implement comment
- case token.EOF:
- return nil, errEofToken
- }
-
- return nil, &PosError{
- Pos: tok.Pos,
- Err: fmt.Errorf("Unknown token: %+v", tok),
- }
-}
-
-// objectType parses an object type and returns a ObjectType AST
-func (p *Parser) objectType() (*ast.ObjectType, error) {
- defer un(trace(p, "ParseObjectType"))
-
- // we assume that the currently scanned token is a LBRACE
- o := &ast.ObjectType{
- Lbrace: p.tok.Pos,
- }
-
- l, err := p.objectList(true)
-
- // if we hit RBRACE, we are good to go (means we parsed all Items), if it's
- // not a RBRACE, it's an syntax error and we just return it.
- if err != nil && p.tok.Type != token.RBRACE {
- return nil, err
- }
-
- // No error, scan and expect the ending to be a brace
- if tok := p.scan(); tok.Type != token.RBRACE {
- return nil, &PosError{
- Pos: tok.Pos,
- Err: fmt.Errorf("object expected closing RBRACE got: %s", tok.Type),
- }
- }
-
- o.List = l
- o.Rbrace = p.tok.Pos // advanced via parseObjectList
- return o, nil
-}
-
-// listType parses a list type and returns a ListType AST
-func (p *Parser) listType() (*ast.ListType, error) {
- defer un(trace(p, "ParseListType"))
-
- // we assume that the currently scanned token is a LBRACK
- l := &ast.ListType{
- Lbrack: p.tok.Pos,
- }
-
- needComma := false
- for {
- tok := p.scan()
- if needComma {
- switch tok.Type {
- case token.COMMA, token.RBRACK:
- default:
- return nil, &PosError{
- Pos: tok.Pos,
- Err: fmt.Errorf(
- "error parsing list, expected comma or list end, got: %s",
- tok.Type),
- }
- }
- }
- switch tok.Type {
- case token.BOOL, token.NUMBER, token.FLOAT, token.STRING, token.HEREDOC:
- node, err := p.literalType()
- if err != nil {
- return nil, err
- }
-
- // If there is a lead comment, apply it
- if p.leadComment != nil {
- node.LeadComment = p.leadComment
- p.leadComment = nil
- }
-
- l.Add(node)
- needComma = true
- case token.COMMA:
- // get next list item or we are at the end
- // do a look-ahead for line comment
- p.scan()
- if p.lineComment != nil && len(l.List) > 0 {
- lit, ok := l.List[len(l.List)-1].(*ast.LiteralType)
- if ok {
- lit.LineComment = p.lineComment
- l.List[len(l.List)-1] = lit
- p.lineComment = nil
- }
- }
- p.unscan()
-
- needComma = false
- continue
- case token.LBRACE:
- // Looks like a nested object, so parse it out
- node, err := p.objectType()
- if err != nil {
- return nil, &PosError{
- Pos: tok.Pos,
- Err: fmt.Errorf(
- "error while trying to parse object within list: %s", err),
- }
- }
- l.Add(node)
- needComma = true
- case token.LBRACK:
- node, err := p.listType()
- if err != nil {
- return nil, &PosError{
- Pos: tok.Pos,
- Err: fmt.Errorf(
- "error while trying to parse list within list: %s", err),
- }
- }
- l.Add(node)
- case token.RBRACK:
- // finished
- l.Rbrack = p.tok.Pos
- return l, nil
- default:
- return nil, &PosError{
- Pos: tok.Pos,
- Err: fmt.Errorf("unexpected token while parsing list: %s", tok.Type),
- }
- }
- }
-}
-
-// literalType parses a literal type and returns a LiteralType AST
-func (p *Parser) literalType() (*ast.LiteralType, error) {
- defer un(trace(p, "ParseLiteral"))
-
- return &ast.LiteralType{
- Token: p.tok,
- }, nil
-}
-
-// scan returns the next token from the underlying scanner. If a token has
-// been unscanned then read that instead. In the process, it collects any
-// comment groups encountered, and remembers the last lead and line comments.
-func (p *Parser) scan() token.Token {
- // If we have a token on the buffer, then return it.
- if p.n != 0 {
- p.n = 0
- return p.tok
- }
-
- // Otherwise read the next token from the scanner and Save it to the buffer
- // in case we unscan later.
- prev := p.tok
- p.tok = p.sc.Scan()
-
- if p.tok.Type == token.COMMENT {
- var comment *ast.CommentGroup
- var endline int
-
- // fmt.Printf("p.tok.Pos.Line = %+v prev: %d endline %d \n",
- // p.tok.Pos.Line, prev.Pos.Line, endline)
- if p.tok.Pos.Line == prev.Pos.Line {
- // The comment is on same line as the previous token; it
- // cannot be a lead comment but may be a line comment.
- comment, endline = p.consumeCommentGroup(0)
- if p.tok.Pos.Line != endline {
- // The next token is on a different line, thus
- // the last comment group is a line comment.
- p.lineComment = comment
- }
- }
-
- // consume successor comments, if any
- endline = -1
- for p.tok.Type == token.COMMENT {
- comment, endline = p.consumeCommentGroup(1)
- }
-
- if endline+1 == p.tok.Pos.Line && p.tok.Type != token.RBRACE {
- switch p.tok.Type {
- case token.RBRACE, token.RBRACK:
- // Do not count for these cases
- default:
- // The next token is following on the line immediately after the
- // comment group, thus the last comment group is a lead comment.
- p.leadComment = comment
- }
- }
-
- }
-
- return p.tok
-}
-
-// unscan pushes the previously read token back onto the buffer.
-func (p *Parser) unscan() {
- p.n = 1
-}
-
-// ----------------------------------------------------------------------------
-// Parsing support
-
-func (p *Parser) printTrace(a ...interface{}) {
- if !p.enableTrace {
- return
- }
-
- const dots = ". . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . "
- const n = len(dots)
- fmt.Printf("%5d:%3d: ", p.tok.Pos.Line, p.tok.Pos.Column)
-
- i := 2 * p.indent
- for i > n {
- fmt.Print(dots)
- i -= n
- }
- // i <= n
- fmt.Print(dots[0:i])
- fmt.Println(a...)
-}
-
-func trace(p *Parser, msg string) *Parser {
- p.printTrace(msg, "(")
- p.indent++
- return p
-}
-
-// Usage pattern: defer un(trace(p, "..."))
-func un(p *Parser) {
- p.indent--
- p.printTrace(")")
-}
diff --git a/vendor/github.com/hashicorp/hcl/hcl/printer/nodes.go b/vendor/github.com/hashicorp/hcl/hcl/printer/nodes.go
deleted file mode 100644
index 7c038d12a..000000000
--- a/vendor/github.com/hashicorp/hcl/hcl/printer/nodes.go
+++ /dev/null
@@ -1,789 +0,0 @@
-package printer
-
-import (
- "bytes"
- "fmt"
- "sort"
-
- "github.com/hashicorp/hcl/hcl/ast"
- "github.com/hashicorp/hcl/hcl/token"
-)
-
-const (
- blank = byte(' ')
- newline = byte('\n')
- tab = byte('\t')
- infinity = 1 << 30 // offset or line
-)
-
-var (
- unindent = []byte("\uE123") // in the private use space
-)
-
-type printer struct {
- cfg Config
- prev token.Pos
-
- comments []*ast.CommentGroup // may be nil, contains all comments
- standaloneComments []*ast.CommentGroup // contains all standalone comments (not assigned to any node)
-
- enableTrace bool
- indentTrace int
-}
-
-type ByPosition []*ast.CommentGroup
-
-func (b ByPosition) Len() int { return len(b) }
-func (b ByPosition) Swap(i, j int) { b[i], b[j] = b[j], b[i] }
-func (b ByPosition) Less(i, j int) bool { return b[i].Pos().Before(b[j].Pos()) }
-
-// collectComments comments all standalone comments which are not lead or line
-// comment
-func (p *printer) collectComments(node ast.Node) {
- // first collect all comments. This is already stored in
- // ast.File.(comments)
- ast.Walk(node, func(nn ast.Node) (ast.Node, bool) {
- switch t := nn.(type) {
- case *ast.File:
- p.comments = t.Comments
- return nn, false
- }
- return nn, true
- })
-
- standaloneComments := make(map[token.Pos]*ast.CommentGroup, 0)
- for _, c := range p.comments {
- standaloneComments[c.Pos()] = c
- }
-
- // next remove all lead and line comments from the overall comment map.
- // This will give us comments which are standalone, comments which are not
- // assigned to any kind of node.
- ast.Walk(node, func(nn ast.Node) (ast.Node, bool) {
- switch t := nn.(type) {
- case *ast.LiteralType:
- if t.LeadComment != nil {
- for _, comment := range t.LeadComment.List {
- if _, ok := standaloneComments[comment.Pos()]; ok {
- delete(standaloneComments, comment.Pos())
- }
- }
- }
-
- if t.LineComment != nil {
- for _, comment := range t.LineComment.List {
- if _, ok := standaloneComments[comment.Pos()]; ok {
- delete(standaloneComments, comment.Pos())
- }
- }
- }
- case *ast.ObjectItem:
- if t.LeadComment != nil {
- for _, comment := range t.LeadComment.List {
- if _, ok := standaloneComments[comment.Pos()]; ok {
- delete(standaloneComments, comment.Pos())
- }
- }
- }
-
- if t.LineComment != nil {
- for _, comment := range t.LineComment.List {
- if _, ok := standaloneComments[comment.Pos()]; ok {
- delete(standaloneComments, comment.Pos())
- }
- }
- }
- }
-
- return nn, true
- })
-
- for _, c := range standaloneComments {
- p.standaloneComments = append(p.standaloneComments, c)
- }
-
- sort.Sort(ByPosition(p.standaloneComments))
-}
-
-// output prints creates b printable HCL output and returns it.
-func (p *printer) output(n interface{}) []byte {
- var buf bytes.Buffer
-
- switch t := n.(type) {
- case *ast.File:
- // File doesn't trace so we add the tracing here
- defer un(trace(p, "File"))
- return p.output(t.Node)
- case *ast.ObjectList:
- defer un(trace(p, "ObjectList"))
-
- var index int
- for {
- // Determine the location of the next actual non-comment
- // item. If we're at the end, the next item is at "infinity"
- var nextItem token.Pos
- if index != len(t.Items) {
- nextItem = t.Items[index].Pos()
- } else {
- nextItem = token.Pos{Offset: infinity, Line: infinity}
- }
-
- // Go through the standalone comments in the file and print out
- // the comments that we should be for this object item.
- for _, c := range p.standaloneComments {
- // Go through all the comments in the group. The group
- // should be printed together, not separated by double newlines.
- printed := false
- newlinePrinted := false
- for _, comment := range c.List {
- // We only care about comments after the previous item
- // we've printed so that comments are printed in the
- // correct locations (between two objects for example).
- // And before the next item.
- if comment.Pos().After(p.prev) && comment.Pos().Before(nextItem) {
- // if we hit the end add newlines so we can print the comment
- // we don't do this if prev is invalid which means the
- // beginning of the file since the first comment should
- // be at the first line.
- if !newlinePrinted && p.prev.IsValid() && index == len(t.Items) {
- buf.Write([]byte{newline, newline})
- newlinePrinted = true
- }
-
- // Write the actual comment.
- buf.WriteString(comment.Text)
- buf.WriteByte(newline)
-
- // Set printed to true to note that we printed something
- printed = true
- }
- }
-
- // If we're not at the last item, write a new line so
- // that there is a newline separating this comment from
- // the next object.
- if printed && index != len(t.Items) {
- buf.WriteByte(newline)
- }
- }
-
- if index == len(t.Items) {
- break
- }
-
- buf.Write(p.output(t.Items[index]))
- if index != len(t.Items)-1 {
- // Always write a newline to separate us from the next item
- buf.WriteByte(newline)
-
- // Need to determine if we're going to separate the next item
- // with a blank line. The logic here is simple, though there
- // are a few conditions:
- //
- // 1. The next object is more than one line away anyways,
- // so we need an empty line.
- //
- // 2. The next object is not a "single line" object, so
- // we need an empty line.
- //
- // 3. This current object is not a single line object,
- // so we need an empty line.
- current := t.Items[index]
- next := t.Items[index+1]
- if next.Pos().Line != t.Items[index].Pos().Line+1 ||
- !p.isSingleLineObject(next) ||
- !p.isSingleLineObject(current) {
- buf.WriteByte(newline)
- }
- }
- index++
- }
- case *ast.ObjectKey:
- buf.WriteString(t.Token.Text)
- case *ast.ObjectItem:
- p.prev = t.Pos()
- buf.Write(p.objectItem(t))
- case *ast.LiteralType:
- buf.Write(p.literalType(t))
- case *ast.ListType:
- buf.Write(p.list(t))
- case *ast.ObjectType:
- buf.Write(p.objectType(t))
- default:
- fmt.Printf(" unknown type: %T\n", n)
- }
-
- return buf.Bytes()
-}
-
-func (p *printer) literalType(lit *ast.LiteralType) []byte {
- result := []byte(lit.Token.Text)
- switch lit.Token.Type {
- case token.HEREDOC:
- // Clear the trailing newline from heredocs
- if result[len(result)-1] == '\n' {
- result = result[:len(result)-1]
- }
-
- // Poison lines 2+ so that we don't indent them
- result = p.heredocIndent(result)
- case token.STRING:
- // If this is a multiline string, poison lines 2+ so we don't
- // indent them.
- if bytes.IndexRune(result, '\n') >= 0 {
- result = p.heredocIndent(result)
- }
- }
-
- return result
-}
-
-// objectItem returns the printable HCL form of an object item. An object type
-// starts with one/multiple keys and has a value. The value might be of any
-// type.
-func (p *printer) objectItem(o *ast.ObjectItem) []byte {
- defer un(trace(p, fmt.Sprintf("ObjectItem: %s", o.Keys[0].Token.Text)))
- var buf bytes.Buffer
-
- if o.LeadComment != nil {
- for _, comment := range o.LeadComment.List {
- buf.WriteString(comment.Text)
- buf.WriteByte(newline)
- }
- }
-
- // If key and val are on different lines, treat line comments like lead comments.
- if o.LineComment != nil && o.Val.Pos().Line != o.Keys[0].Pos().Line {
- for _, comment := range o.LineComment.List {
- buf.WriteString(comment.Text)
- buf.WriteByte(newline)
- }
- }
-
- for i, k := range o.Keys {
- buf.WriteString(k.Token.Text)
- buf.WriteByte(blank)
-
- // reach end of key
- if o.Assign.IsValid() && i == len(o.Keys)-1 && len(o.Keys) == 1 {
- buf.WriteString("=")
- buf.WriteByte(blank)
- }
- }
-
- buf.Write(p.output(o.Val))
-
- if o.LineComment != nil && o.Val.Pos().Line == o.Keys[0].Pos().Line {
- buf.WriteByte(blank)
- for _, comment := range o.LineComment.List {
- buf.WriteString(comment.Text)
- }
- }
-
- return buf.Bytes()
-}
-
-// objectType returns the printable HCL form of an object type. An object type
-// begins with a brace and ends with a brace.
-func (p *printer) objectType(o *ast.ObjectType) []byte {
- defer un(trace(p, "ObjectType"))
- var buf bytes.Buffer
- buf.WriteString("{")
-
- var index int
- var nextItem token.Pos
- var commented, newlinePrinted bool
- for {
- // Determine the location of the next actual non-comment
- // item. If we're at the end, the next item is the closing brace
- if index != len(o.List.Items) {
- nextItem = o.List.Items[index].Pos()
- } else {
- nextItem = o.Rbrace
- }
-
- // Go through the standalone comments in the file and print out
- // the comments that we should be for this object item.
- for _, c := range p.standaloneComments {
- printed := false
- var lastCommentPos token.Pos
- for _, comment := range c.List {
- // We only care about comments after the previous item
- // we've printed so that comments are printed in the
- // correct locations (between two objects for example).
- // And before the next item.
- if comment.Pos().After(p.prev) && comment.Pos().Before(nextItem) {
- // If there are standalone comments and the initial newline has not
- // been printed yet, do it now.
- if !newlinePrinted {
- newlinePrinted = true
- buf.WriteByte(newline)
- }
-
- // add newline if it's between other printed nodes
- if index > 0 {
- commented = true
- buf.WriteByte(newline)
- }
-
- // Store this position
- lastCommentPos = comment.Pos()
-
- // output the comment itself
- buf.Write(p.indent(p.heredocIndent([]byte(comment.Text))))
-
- // Set printed to true to note that we printed something
- printed = true
-
- /*
- if index != len(o.List.Items) {
- buf.WriteByte(newline) // do not print on the end
- }
- */
- }
- }
-
- // Stuff to do if we had comments
- if printed {
- // Always write a newline
- buf.WriteByte(newline)
-
- // If there is another item in the object and our comment
- // didn't hug it directly, then make sure there is a blank
- // line separating them.
- if nextItem != o.Rbrace && nextItem.Line != lastCommentPos.Line+1 {
- buf.WriteByte(newline)
- }
- }
- }
-
- if index == len(o.List.Items) {
- p.prev = o.Rbrace
- break
- }
-
- // At this point we are sure that it's not a totally empty block: print
- // the initial newline if it hasn't been printed yet by the previous
- // block about standalone comments.
- if !newlinePrinted {
- buf.WriteByte(newline)
- newlinePrinted = true
- }
-
- // check if we have adjacent one liner items. If yes we'll going to align
- // the comments.
- var aligned []*ast.ObjectItem
- for _, item := range o.List.Items[index:] {
- // we don't group one line lists
- if len(o.List.Items) == 1 {
- break
- }
-
- // one means a oneliner with out any lead comment
- // two means a oneliner with lead comment
- // anything else might be something else
- cur := lines(string(p.objectItem(item)))
- if cur > 2 {
- break
- }
-
- curPos := item.Pos()
-
- nextPos := token.Pos{}
- if index != len(o.List.Items)-1 {
- nextPos = o.List.Items[index+1].Pos()
- }
-
- prevPos := token.Pos{}
- if index != 0 {
- prevPos = o.List.Items[index-1].Pos()
- }
-
- // fmt.Println("DEBUG ----------------")
- // fmt.Printf("prev = %+v prevPos: %s\n", prev, prevPos)
- // fmt.Printf("cur = %+v curPos: %s\n", cur, curPos)
- // fmt.Printf("next = %+v nextPos: %s\n", next, nextPos)
-
- if curPos.Line+1 == nextPos.Line {
- aligned = append(aligned, item)
- index++
- continue
- }
-
- if curPos.Line-1 == prevPos.Line {
- aligned = append(aligned, item)
- index++
-
- // finish if we have a new line or comment next. This happens
- // if the next item is not adjacent
- if curPos.Line+1 != nextPos.Line {
- break
- }
- continue
- }
-
- break
- }
-
- // put newlines if the items are between other non aligned items.
- // newlines are also added if there is a standalone comment already, so
- // check it too
- if !commented && index != len(aligned) {
- buf.WriteByte(newline)
- }
-
- if len(aligned) >= 1 {
- p.prev = aligned[len(aligned)-1].Pos()
-
- items := p.alignedItems(aligned)
- buf.Write(p.indent(items))
- } else {
- p.prev = o.List.Items[index].Pos()
-
- buf.Write(p.indent(p.objectItem(o.List.Items[index])))
- index++
- }
-
- buf.WriteByte(newline)
- }
-
- buf.WriteString("}")
- return buf.Bytes()
-}
-
-func (p *printer) alignedItems(items []*ast.ObjectItem) []byte {
- var buf bytes.Buffer
-
- // find the longest key and value length, needed for alignment
- var longestKeyLen int // longest key length
- var longestValLen int // longest value length
- for _, item := range items {
- key := len(item.Keys[0].Token.Text)
- val := len(p.output(item.Val))
-
- if key > longestKeyLen {
- longestKeyLen = key
- }
-
- if val > longestValLen {
- longestValLen = val
- }
- }
-
- for i, item := range items {
- if item.LeadComment != nil {
- for _, comment := range item.LeadComment.List {
- buf.WriteString(comment.Text)
- buf.WriteByte(newline)
- }
- }
-
- for i, k := range item.Keys {
- keyLen := len(k.Token.Text)
- buf.WriteString(k.Token.Text)
- for i := 0; i < longestKeyLen-keyLen+1; i++ {
- buf.WriteByte(blank)
- }
-
- // reach end of key
- if i == len(item.Keys)-1 && len(item.Keys) == 1 {
- buf.WriteString("=")
- buf.WriteByte(blank)
- }
- }
-
- val := p.output(item.Val)
- valLen := len(val)
- buf.Write(val)
-
- if item.Val.Pos().Line == item.Keys[0].Pos().Line && item.LineComment != nil {
- for i := 0; i < longestValLen-valLen+1; i++ {
- buf.WriteByte(blank)
- }
-
- for _, comment := range item.LineComment.List {
- buf.WriteString(comment.Text)
- }
- }
-
- // do not print for the last item
- if i != len(items)-1 {
- buf.WriteByte(newline)
- }
- }
-
- return buf.Bytes()
-}
-
-// list returns the printable HCL form of an list type.
-func (p *printer) list(l *ast.ListType) []byte {
- if p.isSingleLineList(l) {
- return p.singleLineList(l)
- }
-
- var buf bytes.Buffer
- buf.WriteString("[")
- buf.WriteByte(newline)
-
- var longestLine int
- for _, item := range l.List {
- // for now we assume that the list only contains literal types
- if lit, ok := item.(*ast.LiteralType); ok {
- lineLen := len(lit.Token.Text)
- if lineLen > longestLine {
- longestLine = lineLen
- }
- }
- }
-
- haveEmptyLine := false
- for i, item := range l.List {
- // If we have a lead comment, then we want to write that first
- leadComment := false
- if lit, ok := item.(*ast.LiteralType); ok && lit.LeadComment != nil {
- leadComment = true
-
- // Ensure an empty line before every element with a
- // lead comment (except the first item in a list).
- if !haveEmptyLine && i != 0 {
- buf.WriteByte(newline)
- }
-
- for _, comment := range lit.LeadComment.List {
- buf.Write(p.indent([]byte(comment.Text)))
- buf.WriteByte(newline)
- }
- }
-
- // also indent each line
- val := p.output(item)
- curLen := len(val)
- buf.Write(p.indent(val))
-
- // if this item is a heredoc, then we output the comma on
- // the next line. This is the only case this happens.
- comma := []byte{','}
- if lit, ok := item.(*ast.LiteralType); ok && lit.Token.Type == token.HEREDOC {
- buf.WriteByte(newline)
- comma = p.indent(comma)
- }
-
- buf.Write(comma)
-
- if lit, ok := item.(*ast.LiteralType); ok && lit.LineComment != nil {
- // if the next item doesn't have any comments, do not align
- buf.WriteByte(blank) // align one space
- for i := 0; i < longestLine-curLen; i++ {
- buf.WriteByte(blank)
- }
-
- for _, comment := range lit.LineComment.List {
- buf.WriteString(comment.Text)
- }
- }
-
- buf.WriteByte(newline)
-
- // Ensure an empty line after every element with a
- // lead comment (except the first item in a list).
- haveEmptyLine = leadComment && i != len(l.List)-1
- if haveEmptyLine {
- buf.WriteByte(newline)
- }
- }
-
- buf.WriteString("]")
- return buf.Bytes()
-}
-
-// isSingleLineList returns true if:
-// * they were previously formatted entirely on one line
-// * they consist entirely of literals
-// * there are either no heredoc strings or the list has exactly one element
-// * there are no line comments
-func (printer) isSingleLineList(l *ast.ListType) bool {
- for _, item := range l.List {
- if item.Pos().Line != l.Lbrack.Line {
- return false
- }
-
- lit, ok := item.(*ast.LiteralType)
- if !ok {
- return false
- }
-
- if lit.Token.Type == token.HEREDOC && len(l.List) != 1 {
- return false
- }
-
- if lit.LineComment != nil {
- return false
- }
- }
-
- return true
-}
-
-// singleLineList prints a simple single line list.
-// For a definition of "simple", see isSingleLineList above.
-func (p *printer) singleLineList(l *ast.ListType) []byte {
- buf := &bytes.Buffer{}
-
- buf.WriteString("[")
- for i, item := range l.List {
- if i != 0 {
- buf.WriteString(", ")
- }
-
- // Output the item itself
- buf.Write(p.output(item))
-
- // The heredoc marker needs to be at the end of line.
- if lit, ok := item.(*ast.LiteralType); ok && lit.Token.Type == token.HEREDOC {
- buf.WriteByte(newline)
- }
- }
-
- buf.WriteString("]")
- return buf.Bytes()
-}
-
-// indent indents the lines of the given buffer for each non-empty line
-func (p *printer) indent(buf []byte) []byte {
- var prefix []byte
- if p.cfg.SpacesWidth != 0 {
- for i := 0; i < p.cfg.SpacesWidth; i++ {
- prefix = append(prefix, blank)
- }
- } else {
- prefix = []byte{tab}
- }
-
- var res []byte
- bol := true
- for _, c := range buf {
- if bol && c != '\n' {
- res = append(res, prefix...)
- }
-
- res = append(res, c)
- bol = c == '\n'
- }
- return res
-}
-
-// unindent removes all the indentation from the tombstoned lines
-func (p *printer) unindent(buf []byte) []byte {
- var res []byte
- for i := 0; i < len(buf); i++ {
- skip := len(buf)-i <= len(unindent)
- if !skip {
- skip = !bytes.Equal(unindent, buf[i:i+len(unindent)])
- }
- if skip {
- res = append(res, buf[i])
- continue
- }
-
- // We have a marker. we have to backtrace here and clean out
- // any whitespace ahead of our tombstone up to a \n
- for j := len(res) - 1; j >= 0; j-- {
- if res[j] == '\n' {
- break
- }
-
- res = res[:j]
- }
-
- // Skip the entire unindent marker
- i += len(unindent) - 1
- }
-
- return res
-}
-
-// heredocIndent marks all the 2nd and further lines as unindentable
-func (p *printer) heredocIndent(buf []byte) []byte {
- var res []byte
- bol := false
- for _, c := range buf {
- if bol && c != '\n' {
- res = append(res, unindent...)
- }
- res = append(res, c)
- bol = c == '\n'
- }
- return res
-}
-
-// isSingleLineObject tells whether the given object item is a single
-// line object such as "obj {}".
-//
-// A single line object:
-//
-// * has no lead comments (hence multi-line)
-// * has no assignment
-// * has no values in the stanza (within {})
-//
-func (p *printer) isSingleLineObject(val *ast.ObjectItem) bool {
- // If there is a lead comment, can't be one line
- if val.LeadComment != nil {
- return false
- }
-
- // If there is assignment, we always break by line
- if val.Assign.IsValid() {
- return false
- }
-
- // If it isn't an object type, then its not a single line object
- ot, ok := val.Val.(*ast.ObjectType)
- if !ok {
- return false
- }
-
- // If the object has no items, it is single line!
- return len(ot.List.Items) == 0
-}
-
-func lines(txt string) int {
- endline := 1
- for i := 0; i < len(txt); i++ {
- if txt[i] == '\n' {
- endline++
- }
- }
- return endline
-}
-
-// ----------------------------------------------------------------------------
-// Tracing support
-
-func (p *printer) printTrace(a ...interface{}) {
- if !p.enableTrace {
- return
- }
-
- const dots = ". . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . "
- const n = len(dots)
- i := 2 * p.indentTrace
- for i > n {
- fmt.Print(dots)
- i -= n
- }
- // i <= n
- fmt.Print(dots[0:i])
- fmt.Println(a...)
-}
-
-func trace(p *printer, msg string) *printer {
- p.printTrace(msg, "(")
- p.indentTrace++
- return p
-}
-
-// Usage pattern: defer un(trace(p, "..."))
-func un(p *printer) {
- p.indentTrace--
- p.printTrace(")")
-}
diff --git a/vendor/github.com/hashicorp/hcl/hcl/printer/printer.go b/vendor/github.com/hashicorp/hcl/hcl/printer/printer.go
deleted file mode 100644
index 6617ab8e7..000000000
--- a/vendor/github.com/hashicorp/hcl/hcl/printer/printer.go
+++ /dev/null
@@ -1,66 +0,0 @@
-// Package printer implements printing of AST nodes to HCL format.
-package printer
-
-import (
- "bytes"
- "io"
- "text/tabwriter"
-
- "github.com/hashicorp/hcl/hcl/ast"
- "github.com/hashicorp/hcl/hcl/parser"
-)
-
-var DefaultConfig = Config{
- SpacesWidth: 2,
-}
-
-// A Config node controls the output of Fprint.
-type Config struct {
- SpacesWidth int // if set, it will use spaces instead of tabs for alignment
-}
-
-func (c *Config) Fprint(output io.Writer, node ast.Node) error {
- p := &printer{
- cfg: *c,
- comments: make([]*ast.CommentGroup, 0),
- standaloneComments: make([]*ast.CommentGroup, 0),
- // enableTrace: true,
- }
-
- p.collectComments(node)
-
- if _, err := output.Write(p.unindent(p.output(node))); err != nil {
- return err
- }
-
- // flush tabwriter, if any
- var err error
- if tw, _ := output.(*tabwriter.Writer); tw != nil {
- err = tw.Flush()
- }
-
- return err
-}
-
-// Fprint "pretty-prints" an HCL node to output
-// It calls Config.Fprint with default settings.
-func Fprint(output io.Writer, node ast.Node) error {
- return DefaultConfig.Fprint(output, node)
-}
-
-// Format formats src HCL and returns the result.
-func Format(src []byte) ([]byte, error) {
- node, err := parser.Parse(src)
- if err != nil {
- return nil, err
- }
-
- var buf bytes.Buffer
- if err := DefaultConfig.Fprint(&buf, node); err != nil {
- return nil, err
- }
-
- // Add trailing newline to result
- buf.WriteString("\n")
- return buf.Bytes(), nil
-}
diff --git a/vendor/github.com/hashicorp/hcl/hcl/scanner/scanner.go b/vendor/github.com/hashicorp/hcl/hcl/scanner/scanner.go
deleted file mode 100644
index 624a18fe3..000000000
--- a/vendor/github.com/hashicorp/hcl/hcl/scanner/scanner.go
+++ /dev/null
@@ -1,652 +0,0 @@
-// Package scanner implements a scanner for HCL (HashiCorp Configuration
-// Language) source text.
-package scanner
-
-import (
- "bytes"
- "fmt"
- "os"
- "regexp"
- "unicode"
- "unicode/utf8"
-
- "github.com/hashicorp/hcl/hcl/token"
-)
-
-// eof represents a marker rune for the end of the reader.
-const eof = rune(0)
-
-// Scanner defines a lexical scanner
-type Scanner struct {
- buf *bytes.Buffer // Source buffer for advancing and scanning
- src []byte // Source buffer for immutable access
-
- // Source Position
- srcPos token.Pos // current position
- prevPos token.Pos // previous position, used for peek() method
-
- lastCharLen int // length of last character in bytes
- lastLineLen int // length of last line in characters (for correct column reporting)
-
- tokStart int // token text start position
- tokEnd int // token text end position
-
- // Error is called for each error encountered. If no Error
- // function is set, the error is reported to os.Stderr.
- Error func(pos token.Pos, msg string)
-
- // ErrorCount is incremented by one for each error encountered.
- ErrorCount int
-
- // tokPos is the start position of most recently scanned token; set by
- // Scan. The Filename field is always left untouched by the Scanner. If
- // an error is reported (via Error) and Position is invalid, the scanner is
- // not inside a token.
- tokPos token.Pos
-}
-
-// New creates and initializes a new instance of Scanner using src as
-// its source content.
-func New(src []byte) *Scanner {
- // even though we accept a src, we read from a io.Reader compatible type
- // (*bytes.Buffer). So in the future we might easily change it to streaming
- // read.
- b := bytes.NewBuffer(src)
- s := &Scanner{
- buf: b,
- src: src,
- }
-
- // srcPosition always starts with 1
- s.srcPos.Line = 1
- return s
-}
-
-// next reads the next rune from the bufferred reader. Returns the rune(0) if
-// an error occurs (or io.EOF is returned).
-func (s *Scanner) next() rune {
- ch, size, err := s.buf.ReadRune()
- if err != nil {
- // advance for error reporting
- s.srcPos.Column++
- s.srcPos.Offset += size
- s.lastCharLen = size
- return eof
- }
-
- // remember last position
- s.prevPos = s.srcPos
-
- s.srcPos.Column++
- s.lastCharLen = size
- s.srcPos.Offset += size
-
- if ch == utf8.RuneError && size == 1 {
- s.err("illegal UTF-8 encoding")
- return ch
- }
-
- if ch == '\n' {
- s.srcPos.Line++
- s.lastLineLen = s.srcPos.Column
- s.srcPos.Column = 0
- }
-
- if ch == '\x00' {
- s.err("unexpected null character (0x00)")
- return eof
- }
-
- if ch == '\uE123' {
- s.err("unicode code point U+E123 reserved for internal use")
- return utf8.RuneError
- }
-
- // debug
- // fmt.Printf("ch: %q, offset:column: %d:%d\n", ch, s.srcPos.Offset, s.srcPos.Column)
- return ch
-}
-
-// unread unreads the previous read Rune and updates the source position
-func (s *Scanner) unread() {
- if err := s.buf.UnreadRune(); err != nil {
- panic(err) // this is user fault, we should catch it
- }
- s.srcPos = s.prevPos // put back last position
-}
-
-// peek returns the next rune without advancing the reader.
-func (s *Scanner) peek() rune {
- peek, _, err := s.buf.ReadRune()
- if err != nil {
- return eof
- }
-
- s.buf.UnreadRune()
- return peek
-}
-
-// Scan scans the next token and returns the token.
-func (s *Scanner) Scan() token.Token {
- ch := s.next()
-
- // skip white space
- for isWhitespace(ch) {
- ch = s.next()
- }
-
- var tok token.Type
-
- // token text markings
- s.tokStart = s.srcPos.Offset - s.lastCharLen
-
- // token position, initial next() is moving the offset by one(size of rune
- // actually), though we are interested with the starting point
- s.tokPos.Offset = s.srcPos.Offset - s.lastCharLen
- if s.srcPos.Column > 0 {
- // common case: last character was not a '\n'
- s.tokPos.Line = s.srcPos.Line
- s.tokPos.Column = s.srcPos.Column
- } else {
- // last character was a '\n'
- // (we cannot be at the beginning of the source
- // since we have called next() at least once)
- s.tokPos.Line = s.srcPos.Line - 1
- s.tokPos.Column = s.lastLineLen
- }
-
- switch {
- case isLetter(ch):
- tok = token.IDENT
- lit := s.scanIdentifier()
- if lit == "true" || lit == "false" {
- tok = token.BOOL
- }
- case isDecimal(ch):
- tok = s.scanNumber(ch)
- default:
- switch ch {
- case eof:
- tok = token.EOF
- case '"':
- tok = token.STRING
- s.scanString()
- case '#', '/':
- tok = token.COMMENT
- s.scanComment(ch)
- case '.':
- tok = token.PERIOD
- ch = s.peek()
- if isDecimal(ch) {
- tok = token.FLOAT
- ch = s.scanMantissa(ch)
- ch = s.scanExponent(ch)
- }
- case '<':
- tok = token.HEREDOC
- s.scanHeredoc()
- case '[':
- tok = token.LBRACK
- case ']':
- tok = token.RBRACK
- case '{':
- tok = token.LBRACE
- case '}':
- tok = token.RBRACE
- case ',':
- tok = token.COMMA
- case '=':
- tok = token.ASSIGN
- case '+':
- tok = token.ADD
- case '-':
- if isDecimal(s.peek()) {
- ch := s.next()
- tok = s.scanNumber(ch)
- } else {
- tok = token.SUB
- }
- default:
- s.err("illegal char")
- }
- }
-
- // finish token ending
- s.tokEnd = s.srcPos.Offset
-
- // create token literal
- var tokenText string
- if s.tokStart >= 0 {
- tokenText = string(s.src[s.tokStart:s.tokEnd])
- }
- s.tokStart = s.tokEnd // ensure idempotency of tokenText() call
-
- return token.Token{
- Type: tok,
- Pos: s.tokPos,
- Text: tokenText,
- }
-}
-
-func (s *Scanner) scanComment(ch rune) {
- // single line comments
- if ch == '#' || (ch == '/' && s.peek() != '*') {
- if ch == '/' && s.peek() != '/' {
- s.err("expected '/' for comment")
- return
- }
-
- ch = s.next()
- for ch != '\n' && ch >= 0 && ch != eof {
- ch = s.next()
- }
- if ch != eof && ch >= 0 {
- s.unread()
- }
- return
- }
-
- // be sure we get the character after /* This allows us to find comment's
- // that are not erminated
- if ch == '/' {
- s.next()
- ch = s.next() // read character after "/*"
- }
-
- // look for /* - style comments
- for {
- if ch < 0 || ch == eof {
- s.err("comment not terminated")
- break
- }
-
- ch0 := ch
- ch = s.next()
- if ch0 == '*' && ch == '/' {
- break
- }
- }
-}
-
-// scanNumber scans a HCL number definition starting with the given rune
-func (s *Scanner) scanNumber(ch rune) token.Type {
- if ch == '0' {
- // check for hexadecimal, octal or float
- ch = s.next()
- if ch == 'x' || ch == 'X' {
- // hexadecimal
- ch = s.next()
- found := false
- for isHexadecimal(ch) {
- ch = s.next()
- found = true
- }
-
- if !found {
- s.err("illegal hexadecimal number")
- }
-
- if ch != eof {
- s.unread()
- }
-
- return token.NUMBER
- }
-
- // now it's either something like: 0421(octal) or 0.1231(float)
- illegalOctal := false
- for isDecimal(ch) {
- ch = s.next()
- if ch == '8' || ch == '9' {
- // this is just a possibility. For example 0159 is illegal, but
- // 0159.23 is valid. So we mark a possible illegal octal. If
- // the next character is not a period, we'll print the error.
- illegalOctal = true
- }
- }
-
- if ch == 'e' || ch == 'E' {
- ch = s.scanExponent(ch)
- return token.FLOAT
- }
-
- if ch == '.' {
- ch = s.scanFraction(ch)
-
- if ch == 'e' || ch == 'E' {
- ch = s.next()
- ch = s.scanExponent(ch)
- }
- return token.FLOAT
- }
-
- if illegalOctal {
- s.err("illegal octal number")
- }
-
- if ch != eof {
- s.unread()
- }
- return token.NUMBER
- }
-
- s.scanMantissa(ch)
- ch = s.next() // seek forward
- if ch == 'e' || ch == 'E' {
- ch = s.scanExponent(ch)
- return token.FLOAT
- }
-
- if ch == '.' {
- ch = s.scanFraction(ch)
- if ch == 'e' || ch == 'E' {
- ch = s.next()
- ch = s.scanExponent(ch)
- }
- return token.FLOAT
- }
-
- if ch != eof {
- s.unread()
- }
- return token.NUMBER
-}
-
-// scanMantissa scans the mantissa beginning from the rune. It returns the next
-// non decimal rune. It's used to determine wheter it's a fraction or exponent.
-func (s *Scanner) scanMantissa(ch rune) rune {
- scanned := false
- for isDecimal(ch) {
- ch = s.next()
- scanned = true
- }
-
- if scanned && ch != eof {
- s.unread()
- }
- return ch
-}
-
-// scanFraction scans the fraction after the '.' rune
-func (s *Scanner) scanFraction(ch rune) rune {
- if ch == '.' {
- ch = s.peek() // we peek just to see if we can move forward
- ch = s.scanMantissa(ch)
- }
- return ch
-}
-
-// scanExponent scans the remaining parts of an exponent after the 'e' or 'E'
-// rune.
-func (s *Scanner) scanExponent(ch rune) rune {
- if ch == 'e' || ch == 'E' {
- ch = s.next()
- if ch == '-' || ch == '+' {
- ch = s.next()
- }
- ch = s.scanMantissa(ch)
- }
- return ch
-}
-
-// scanHeredoc scans a heredoc string
-func (s *Scanner) scanHeredoc() {
- // Scan the second '<' in example: '<= len(identBytes) && identRegexp.Match(s.src[lineStart:s.srcPos.Offset-s.lastCharLen]) {
- break
- }
-
- // Not an anchor match, record the start of a new line
- lineStart = s.srcPos.Offset
- }
-
- if ch == eof {
- s.err("heredoc not terminated")
- return
- }
- }
-
- return
-}
-
-// scanString scans a quoted string
-func (s *Scanner) scanString() {
- braces := 0
- for {
- // '"' opening already consumed
- // read character after quote
- ch := s.next()
-
- if (ch == '\n' && braces == 0) || ch < 0 || ch == eof {
- s.err("literal not terminated")
- return
- }
-
- if ch == '"' && braces == 0 {
- break
- }
-
- // If we're going into a ${} then we can ignore quotes for awhile
- if braces == 0 && ch == '$' && s.peek() == '{' {
- braces++
- s.next()
- } else if braces > 0 && ch == '{' {
- braces++
- }
- if braces > 0 && ch == '}' {
- braces--
- }
-
- if ch == '\\' {
- s.scanEscape()
- }
- }
-
- return
-}
-
-// scanEscape scans an escape sequence
-func (s *Scanner) scanEscape() rune {
- // http://en.cppreference.com/w/cpp/language/escape
- ch := s.next() // read character after '/'
- switch ch {
- case 'a', 'b', 'f', 'n', 'r', 't', 'v', '\\', '"':
- // nothing to do
- case '0', '1', '2', '3', '4', '5', '6', '7':
- // octal notation
- ch = s.scanDigits(ch, 8, 3)
- case 'x':
- // hexademical notation
- ch = s.scanDigits(s.next(), 16, 2)
- case 'u':
- // universal character name
- ch = s.scanDigits(s.next(), 16, 4)
- case 'U':
- // universal character name
- ch = s.scanDigits(s.next(), 16, 8)
- default:
- s.err("illegal char escape")
- }
- return ch
-}
-
-// scanDigits scans a rune with the given base for n times. For example an
-// octal notation \184 would yield in scanDigits(ch, 8, 3)
-func (s *Scanner) scanDigits(ch rune, base, n int) rune {
- start := n
- for n > 0 && digitVal(ch) < base {
- ch = s.next()
- if ch == eof {
- // If we see an EOF, we halt any more scanning of digits
- // immediately.
- break
- }
-
- n--
- }
- if n > 0 {
- s.err("illegal char escape")
- }
-
- if n != start && ch != eof {
- // we scanned all digits, put the last non digit char back,
- // only if we read anything at all
- s.unread()
- }
-
- return ch
-}
-
-// scanIdentifier scans an identifier and returns the literal string
-func (s *Scanner) scanIdentifier() string {
- offs := s.srcPos.Offset - s.lastCharLen
- ch := s.next()
- for isLetter(ch) || isDigit(ch) || ch == '-' || ch == '.' {
- ch = s.next()
- }
-
- if ch != eof {
- s.unread() // we got identifier, put back latest char
- }
-
- return string(s.src[offs:s.srcPos.Offset])
-}
-
-// recentPosition returns the position of the character immediately after the
-// character or token returned by the last call to Scan.
-func (s *Scanner) recentPosition() (pos token.Pos) {
- pos.Offset = s.srcPos.Offset - s.lastCharLen
- switch {
- case s.srcPos.Column > 0:
- // common case: last character was not a '\n'
- pos.Line = s.srcPos.Line
- pos.Column = s.srcPos.Column
- case s.lastLineLen > 0:
- // last character was a '\n'
- // (we cannot be at the beginning of the source
- // since we have called next() at least once)
- pos.Line = s.srcPos.Line - 1
- pos.Column = s.lastLineLen
- default:
- // at the beginning of the source
- pos.Line = 1
- pos.Column = 1
- }
- return
-}
-
-// err prints the error of any scanning to s.Error function. If the function is
-// not defined, by default it prints them to os.Stderr
-func (s *Scanner) err(msg string) {
- s.ErrorCount++
- pos := s.recentPosition()
-
- if s.Error != nil {
- s.Error(pos, msg)
- return
- }
-
- fmt.Fprintf(os.Stderr, "%s: %s\n", pos, msg)
-}
-
-// isHexadecimal returns true if the given rune is a letter
-func isLetter(ch rune) bool {
- return 'a' <= ch && ch <= 'z' || 'A' <= ch && ch <= 'Z' || ch == '_' || ch >= 0x80 && unicode.IsLetter(ch)
-}
-
-// isDigit returns true if the given rune is a decimal digit
-func isDigit(ch rune) bool {
- return '0' <= ch && ch <= '9' || ch >= 0x80 && unicode.IsDigit(ch)
-}
-
-// isDecimal returns true if the given rune is a decimal number
-func isDecimal(ch rune) bool {
- return '0' <= ch && ch <= '9'
-}
-
-// isHexadecimal returns true if the given rune is an hexadecimal number
-func isHexadecimal(ch rune) bool {
- return '0' <= ch && ch <= '9' || 'a' <= ch && ch <= 'f' || 'A' <= ch && ch <= 'F'
-}
-
-// isWhitespace returns true if the rune is a space, tab, newline or carriage return
-func isWhitespace(ch rune) bool {
- return ch == ' ' || ch == '\t' || ch == '\n' || ch == '\r'
-}
-
-// digitVal returns the integer value of a given octal,decimal or hexadecimal rune
-func digitVal(ch rune) int {
- switch {
- case '0' <= ch && ch <= '9':
- return int(ch - '0')
- case 'a' <= ch && ch <= 'f':
- return int(ch - 'a' + 10)
- case 'A' <= ch && ch <= 'F':
- return int(ch - 'A' + 10)
- }
- return 16 // larger than any legal digit val
-}
diff --git a/vendor/github.com/hashicorp/hcl/hcl/strconv/quote.go b/vendor/github.com/hashicorp/hcl/hcl/strconv/quote.go
deleted file mode 100644
index 5f981eaa2..000000000
--- a/vendor/github.com/hashicorp/hcl/hcl/strconv/quote.go
+++ /dev/null
@@ -1,241 +0,0 @@
-package strconv
-
-import (
- "errors"
- "unicode/utf8"
-)
-
-// ErrSyntax indicates that a value does not have the right syntax for the target type.
-var ErrSyntax = errors.New("invalid syntax")
-
-// Unquote interprets s as a single-quoted, double-quoted,
-// or backquoted Go string literal, returning the string value
-// that s quotes. (If s is single-quoted, it would be a Go
-// character literal; Unquote returns the corresponding
-// one-character string.)
-func Unquote(s string) (t string, err error) {
- n := len(s)
- if n < 2 {
- return "", ErrSyntax
- }
- quote := s[0]
- if quote != s[n-1] {
- return "", ErrSyntax
- }
- s = s[1 : n-1]
-
- if quote != '"' {
- return "", ErrSyntax
- }
- if !contains(s, '$') && !contains(s, '{') && contains(s, '\n') {
- return "", ErrSyntax
- }
-
- // Is it trivial? Avoid allocation.
- if !contains(s, '\\') && !contains(s, quote) && !contains(s, '$') {
- switch quote {
- case '"':
- return s, nil
- case '\'':
- r, size := utf8.DecodeRuneInString(s)
- if size == len(s) && (r != utf8.RuneError || size != 1) {
- return s, nil
- }
- }
- }
-
- var runeTmp [utf8.UTFMax]byte
- buf := make([]byte, 0, 3*len(s)/2) // Try to avoid more allocations.
- for len(s) > 0 {
- // If we're starting a '${}' then let it through un-unquoted.
- // Specifically: we don't unquote any characters within the `${}`
- // section.
- if s[0] == '$' && len(s) > 1 && s[1] == '{' {
- buf = append(buf, '$', '{')
- s = s[2:]
-
- // Continue reading until we find the closing brace, copying as-is
- braces := 1
- for len(s) > 0 && braces > 0 {
- r, size := utf8.DecodeRuneInString(s)
- if r == utf8.RuneError {
- return "", ErrSyntax
- }
-
- s = s[size:]
-
- n := utf8.EncodeRune(runeTmp[:], r)
- buf = append(buf, runeTmp[:n]...)
-
- switch r {
- case '{':
- braces++
- case '}':
- braces--
- }
- }
- if braces != 0 {
- return "", ErrSyntax
- }
- if len(s) == 0 {
- // If there's no string left, we're done!
- break
- } else {
- // If there's more left, we need to pop back up to the top of the loop
- // in case there's another interpolation in this string.
- continue
- }
- }
-
- if s[0] == '\n' {
- return "", ErrSyntax
- }
-
- c, multibyte, ss, err := unquoteChar(s, quote)
- if err != nil {
- return "", err
- }
- s = ss
- if c < utf8.RuneSelf || !multibyte {
- buf = append(buf, byte(c))
- } else {
- n := utf8.EncodeRune(runeTmp[:], c)
- buf = append(buf, runeTmp[:n]...)
- }
- if quote == '\'' && len(s) != 0 {
- // single-quoted must be single character
- return "", ErrSyntax
- }
- }
- return string(buf), nil
-}
-
-// contains reports whether the string contains the byte c.
-func contains(s string, c byte) bool {
- for i := 0; i < len(s); i++ {
- if s[i] == c {
- return true
- }
- }
- return false
-}
-
-func unhex(b byte) (v rune, ok bool) {
- c := rune(b)
- switch {
- case '0' <= c && c <= '9':
- return c - '0', true
- case 'a' <= c && c <= 'f':
- return c - 'a' + 10, true
- case 'A' <= c && c <= 'F':
- return c - 'A' + 10, true
- }
- return
-}
-
-func unquoteChar(s string, quote byte) (value rune, multibyte bool, tail string, err error) {
- // easy cases
- switch c := s[0]; {
- case c == quote && (quote == '\'' || quote == '"'):
- err = ErrSyntax
- return
- case c >= utf8.RuneSelf:
- r, size := utf8.DecodeRuneInString(s)
- return r, true, s[size:], nil
- case c != '\\':
- return rune(s[0]), false, s[1:], nil
- }
-
- // hard case: c is backslash
- if len(s) <= 1 {
- err = ErrSyntax
- return
- }
- c := s[1]
- s = s[2:]
-
- switch c {
- case 'a':
- value = '\a'
- case 'b':
- value = '\b'
- case 'f':
- value = '\f'
- case 'n':
- value = '\n'
- case 'r':
- value = '\r'
- case 't':
- value = '\t'
- case 'v':
- value = '\v'
- case 'x', 'u', 'U':
- n := 0
- switch c {
- case 'x':
- n = 2
- case 'u':
- n = 4
- case 'U':
- n = 8
- }
- var v rune
- if len(s) < n {
- err = ErrSyntax
- return
- }
- for j := 0; j < n; j++ {
- x, ok := unhex(s[j])
- if !ok {
- err = ErrSyntax
- return
- }
- v = v<<4 | x
- }
- s = s[n:]
- if c == 'x' {
- // single-byte string, possibly not UTF-8
- value = v
- break
- }
- if v > utf8.MaxRune {
- err = ErrSyntax
- return
- }
- value = v
- multibyte = true
- case '0', '1', '2', '3', '4', '5', '6', '7':
- v := rune(c) - '0'
- if len(s) < 2 {
- err = ErrSyntax
- return
- }
- for j := 0; j < 2; j++ { // one digit already; two more
- x := rune(s[j]) - '0'
- if x < 0 || x > 7 {
- err = ErrSyntax
- return
- }
- v = (v << 3) | x
- }
- s = s[2:]
- if v > 255 {
- err = ErrSyntax
- return
- }
- value = v
- case '\\':
- value = '\\'
- case '\'', '"':
- if c != quote {
- err = ErrSyntax
- return
- }
- value = rune(c)
- default:
- err = ErrSyntax
- return
- }
- tail = s
- return
-}
diff --git a/vendor/github.com/hashicorp/hcl/hcl/token/position.go b/vendor/github.com/hashicorp/hcl/hcl/token/position.go
deleted file mode 100644
index 59c1bb72d..000000000
--- a/vendor/github.com/hashicorp/hcl/hcl/token/position.go
+++ /dev/null
@@ -1,46 +0,0 @@
-package token
-
-import "fmt"
-
-// Pos describes an arbitrary source position
-// including the file, line, and column location.
-// A Position is valid if the line number is > 0.
-type Pos struct {
- Filename string // filename, if any
- Offset int // offset, starting at 0
- Line int // line number, starting at 1
- Column int // column number, starting at 1 (character count)
-}
-
-// IsValid returns true if the position is valid.
-func (p *Pos) IsValid() bool { return p.Line > 0 }
-
-// String returns a string in one of several forms:
-//
-// file:line:column valid position with file name
-// line:column valid position without file name
-// file invalid position with file name
-// - invalid position without file name
-func (p Pos) String() string {
- s := p.Filename
- if p.IsValid() {
- if s != "" {
- s += ":"
- }
- s += fmt.Sprintf("%d:%d", p.Line, p.Column)
- }
- if s == "" {
- s = "-"
- }
- return s
-}
-
-// Before reports whether the position p is before u.
-func (p Pos) Before(u Pos) bool {
- return u.Offset > p.Offset || u.Line > p.Line
-}
-
-// After reports whether the position p is after u.
-func (p Pos) After(u Pos) bool {
- return u.Offset < p.Offset || u.Line < p.Line
-}
diff --git a/vendor/github.com/hashicorp/hcl/hcl/token/token.go b/vendor/github.com/hashicorp/hcl/hcl/token/token.go
deleted file mode 100644
index e37c0664e..000000000
--- a/vendor/github.com/hashicorp/hcl/hcl/token/token.go
+++ /dev/null
@@ -1,219 +0,0 @@
-// Package token defines constants representing the lexical tokens for HCL
-// (HashiCorp Configuration Language)
-package token
-
-import (
- "fmt"
- "strconv"
- "strings"
-
- hclstrconv "github.com/hashicorp/hcl/hcl/strconv"
-)
-
-// Token defines a single HCL token which can be obtained via the Scanner
-type Token struct {
- Type Type
- Pos Pos
- Text string
- JSON bool
-}
-
-// Type is the set of lexical tokens of the HCL (HashiCorp Configuration Language)
-type Type int
-
-const (
- // Special tokens
- ILLEGAL Type = iota
- EOF
- COMMENT
-
- identifier_beg
- IDENT // literals
- literal_beg
- NUMBER // 12345
- FLOAT // 123.45
- BOOL // true,false
- STRING // "abc"
- HEREDOC // < 0 {
- // Pop the current item
- n := len(frontier)
- item := frontier[n-1]
- frontier = frontier[:n-1]
-
- switch v := item.Val.(type) {
- case *ast.ObjectType:
- items, frontier = flattenObjectType(v, item, items, frontier)
- case *ast.ListType:
- items, frontier = flattenListType(v, item, items, frontier)
- default:
- items = append(items, item)
- }
- }
-
- // Reverse the list since the frontier model runs things backwards
- for i := len(items)/2 - 1; i >= 0; i-- {
- opp := len(items) - 1 - i
- items[i], items[opp] = items[opp], items[i]
- }
-
- // Done! Set the original items
- list.Items = items
- return n, true
- })
-}
-
-func flattenListType(
- ot *ast.ListType,
- item *ast.ObjectItem,
- items []*ast.ObjectItem,
- frontier []*ast.ObjectItem) ([]*ast.ObjectItem, []*ast.ObjectItem) {
- // If the list is empty, keep the original list
- if len(ot.List) == 0 {
- items = append(items, item)
- return items, frontier
- }
-
- // All the elements of this object must also be objects!
- for _, subitem := range ot.List {
- if _, ok := subitem.(*ast.ObjectType); !ok {
- items = append(items, item)
- return items, frontier
- }
- }
-
- // Great! We have a match go through all the items and flatten
- for _, elem := range ot.List {
- // Add it to the frontier so that we can recurse
- frontier = append(frontier, &ast.ObjectItem{
- Keys: item.Keys,
- Assign: item.Assign,
- Val: elem,
- LeadComment: item.LeadComment,
- LineComment: item.LineComment,
- })
- }
-
- return items, frontier
-}
-
-func flattenObjectType(
- ot *ast.ObjectType,
- item *ast.ObjectItem,
- items []*ast.ObjectItem,
- frontier []*ast.ObjectItem) ([]*ast.ObjectItem, []*ast.ObjectItem) {
- // If the list has no items we do not have to flatten anything
- if ot.List.Items == nil {
- items = append(items, item)
- return items, frontier
- }
-
- // All the elements of this object must also be objects!
- for _, subitem := range ot.List.Items {
- if _, ok := subitem.Val.(*ast.ObjectType); !ok {
- items = append(items, item)
- return items, frontier
- }
- }
-
- // Great! We have a match go through all the items and flatten
- for _, subitem := range ot.List.Items {
- // Copy the new key
- keys := make([]*ast.ObjectKey, len(item.Keys)+len(subitem.Keys))
- copy(keys, item.Keys)
- copy(keys[len(item.Keys):], subitem.Keys)
-
- // Add it to the frontier so that we can recurse
- frontier = append(frontier, &ast.ObjectItem{
- Keys: keys,
- Assign: item.Assign,
- Val: subitem.Val,
- LeadComment: item.LeadComment,
- LineComment: item.LineComment,
- })
- }
-
- return items, frontier
-}
diff --git a/vendor/github.com/hashicorp/hcl/json/parser/parser.go b/vendor/github.com/hashicorp/hcl/json/parser/parser.go
deleted file mode 100644
index 125a5f072..000000000
--- a/vendor/github.com/hashicorp/hcl/json/parser/parser.go
+++ /dev/null
@@ -1,313 +0,0 @@
-package parser
-
-import (
- "errors"
- "fmt"
-
- "github.com/hashicorp/hcl/hcl/ast"
- hcltoken "github.com/hashicorp/hcl/hcl/token"
- "github.com/hashicorp/hcl/json/scanner"
- "github.com/hashicorp/hcl/json/token"
-)
-
-type Parser struct {
- sc *scanner.Scanner
-
- // Last read token
- tok token.Token
- commaPrev token.Token
-
- enableTrace bool
- indent int
- n int // buffer size (max = 1)
-}
-
-func newParser(src []byte) *Parser {
- return &Parser{
- sc: scanner.New(src),
- }
-}
-
-// Parse returns the fully parsed source and returns the abstract syntax tree.
-func Parse(src []byte) (*ast.File, error) {
- p := newParser(src)
- return p.Parse()
-}
-
-var errEofToken = errors.New("EOF token found")
-
-// Parse returns the fully parsed source and returns the abstract syntax tree.
-func (p *Parser) Parse() (*ast.File, error) {
- f := &ast.File{}
- var err, scerr error
- p.sc.Error = func(pos token.Pos, msg string) {
- scerr = fmt.Errorf("%s: %s", pos, msg)
- }
-
- // The root must be an object in JSON
- object, err := p.object()
- if scerr != nil {
- return nil, scerr
- }
- if err != nil {
- return nil, err
- }
-
- // We make our final node an object list so it is more HCL compatible
- f.Node = object.List
-
- // Flatten it, which finds patterns and turns them into more HCL-like
- // AST trees.
- flattenObjects(f.Node)
-
- return f, nil
-}
-
-func (p *Parser) objectList() (*ast.ObjectList, error) {
- defer un(trace(p, "ParseObjectList"))
- node := &ast.ObjectList{}
-
- for {
- n, err := p.objectItem()
- if err == errEofToken {
- break // we are finished
- }
-
- // we don't return a nil node, because might want to use already
- // collected items.
- if err != nil {
- return node, err
- }
-
- node.Add(n)
-
- // Check for a followup comma. If it isn't a comma, then we're done
- if tok := p.scan(); tok.Type != token.COMMA {
- break
- }
- }
-
- return node, nil
-}
-
-// objectItem parses a single object item
-func (p *Parser) objectItem() (*ast.ObjectItem, error) {
- defer un(trace(p, "ParseObjectItem"))
-
- keys, err := p.objectKey()
- if err != nil {
- return nil, err
- }
-
- o := &ast.ObjectItem{
- Keys: keys,
- }
-
- switch p.tok.Type {
- case token.COLON:
- pos := p.tok.Pos
- o.Assign = hcltoken.Pos{
- Filename: pos.Filename,
- Offset: pos.Offset,
- Line: pos.Line,
- Column: pos.Column,
- }
-
- o.Val, err = p.objectValue()
- if err != nil {
- return nil, err
- }
- }
-
- return o, nil
-}
-
-// objectKey parses an object key and returns a ObjectKey AST
-func (p *Parser) objectKey() ([]*ast.ObjectKey, error) {
- keyCount := 0
- keys := make([]*ast.ObjectKey, 0)
-
- for {
- tok := p.scan()
- switch tok.Type {
- case token.EOF:
- return nil, errEofToken
- case token.STRING:
- keyCount++
- keys = append(keys, &ast.ObjectKey{
- Token: p.tok.HCLToken(),
- })
- case token.COLON:
- // If we have a zero keycount it means that we never got
- // an object key, i.e. `{ :`. This is a syntax error.
- if keyCount == 0 {
- return nil, fmt.Errorf("expected: STRING got: %s", p.tok.Type)
- }
-
- // Done
- return keys, nil
- case token.ILLEGAL:
- return nil, errors.New("illegal")
- default:
- return nil, fmt.Errorf("expected: STRING got: %s", p.tok.Type)
- }
- }
-}
-
-// object parses any type of object, such as number, bool, string, object or
-// list.
-func (p *Parser) objectValue() (ast.Node, error) {
- defer un(trace(p, "ParseObjectValue"))
- tok := p.scan()
-
- switch tok.Type {
- case token.NUMBER, token.FLOAT, token.BOOL, token.NULL, token.STRING:
- return p.literalType()
- case token.LBRACE:
- return p.objectType()
- case token.LBRACK:
- return p.listType()
- case token.EOF:
- return nil, errEofToken
- }
-
- return nil, fmt.Errorf("Expected object value, got unknown token: %+v", tok)
-}
-
-// object parses any type of object, such as number, bool, string, object or
-// list.
-func (p *Parser) object() (*ast.ObjectType, error) {
- defer un(trace(p, "ParseType"))
- tok := p.scan()
-
- switch tok.Type {
- case token.LBRACE:
- return p.objectType()
- case token.EOF:
- return nil, errEofToken
- }
-
- return nil, fmt.Errorf("Expected object, got unknown token: %+v", tok)
-}
-
-// objectType parses an object type and returns a ObjectType AST
-func (p *Parser) objectType() (*ast.ObjectType, error) {
- defer un(trace(p, "ParseObjectType"))
-
- // we assume that the currently scanned token is a LBRACE
- o := &ast.ObjectType{}
-
- l, err := p.objectList()
-
- // if we hit RBRACE, we are good to go (means we parsed all Items), if it's
- // not a RBRACE, it's an syntax error and we just return it.
- if err != nil && p.tok.Type != token.RBRACE {
- return nil, err
- }
-
- o.List = l
- return o, nil
-}
-
-// listType parses a list type and returns a ListType AST
-func (p *Parser) listType() (*ast.ListType, error) {
- defer un(trace(p, "ParseListType"))
-
- // we assume that the currently scanned token is a LBRACK
- l := &ast.ListType{}
-
- for {
- tok := p.scan()
- switch tok.Type {
- case token.NUMBER, token.FLOAT, token.STRING:
- node, err := p.literalType()
- if err != nil {
- return nil, err
- }
-
- l.Add(node)
- case token.COMMA:
- continue
- case token.LBRACE:
- node, err := p.objectType()
- if err != nil {
- return nil, err
- }
-
- l.Add(node)
- case token.BOOL:
- // TODO(arslan) should we support? not supported by HCL yet
- case token.LBRACK:
- // TODO(arslan) should we support nested lists? Even though it's
- // written in README of HCL, it's not a part of the grammar
- // (not defined in parse.y)
- case token.RBRACK:
- // finished
- return l, nil
- default:
- return nil, fmt.Errorf("unexpected token while parsing list: %s", tok.Type)
- }
-
- }
-}
-
-// literalType parses a literal type and returns a LiteralType AST
-func (p *Parser) literalType() (*ast.LiteralType, error) {
- defer un(trace(p, "ParseLiteral"))
-
- return &ast.LiteralType{
- Token: p.tok.HCLToken(),
- }, nil
-}
-
-// scan returns the next token from the underlying scanner. If a token has
-// been unscanned then read that instead.
-func (p *Parser) scan() token.Token {
- // If we have a token on the buffer, then return it.
- if p.n != 0 {
- p.n = 0
- return p.tok
- }
-
- p.tok = p.sc.Scan()
- return p.tok
-}
-
-// unscan pushes the previously read token back onto the buffer.
-func (p *Parser) unscan() {
- p.n = 1
-}
-
-// ----------------------------------------------------------------------------
-// Parsing support
-
-func (p *Parser) printTrace(a ...interface{}) {
- if !p.enableTrace {
- return
- }
-
- const dots = ". . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . "
- const n = len(dots)
- fmt.Printf("%5d:%3d: ", p.tok.Pos.Line, p.tok.Pos.Column)
-
- i := 2 * p.indent
- for i > n {
- fmt.Print(dots)
- i -= n
- }
- // i <= n
- fmt.Print(dots[0:i])
- fmt.Println(a...)
-}
-
-func trace(p *Parser, msg string) *Parser {
- p.printTrace(msg, "(")
- p.indent++
- return p
-}
-
-// Usage pattern: defer un(trace(p, "..."))
-func un(p *Parser) {
- p.indent--
- p.printTrace(")")
-}
diff --git a/vendor/github.com/hashicorp/hcl/json/scanner/scanner.go b/vendor/github.com/hashicorp/hcl/json/scanner/scanner.go
deleted file mode 100644
index fe3f0f095..000000000
--- a/vendor/github.com/hashicorp/hcl/json/scanner/scanner.go
+++ /dev/null
@@ -1,451 +0,0 @@
-package scanner
-
-import (
- "bytes"
- "fmt"
- "os"
- "unicode"
- "unicode/utf8"
-
- "github.com/hashicorp/hcl/json/token"
-)
-
-// eof represents a marker rune for the end of the reader.
-const eof = rune(0)
-
-// Scanner defines a lexical scanner
-type Scanner struct {
- buf *bytes.Buffer // Source buffer for advancing and scanning
- src []byte // Source buffer for immutable access
-
- // Source Position
- srcPos token.Pos // current position
- prevPos token.Pos // previous position, used for peek() method
-
- lastCharLen int // length of last character in bytes
- lastLineLen int // length of last line in characters (for correct column reporting)
-
- tokStart int // token text start position
- tokEnd int // token text end position
-
- // Error is called for each error encountered. If no Error
- // function is set, the error is reported to os.Stderr.
- Error func(pos token.Pos, msg string)
-
- // ErrorCount is incremented by one for each error encountered.
- ErrorCount int
-
- // tokPos is the start position of most recently scanned token; set by
- // Scan. The Filename field is always left untouched by the Scanner. If
- // an error is reported (via Error) and Position is invalid, the scanner is
- // not inside a token.
- tokPos token.Pos
-}
-
-// New creates and initializes a new instance of Scanner using src as
-// its source content.
-func New(src []byte) *Scanner {
- // even though we accept a src, we read from a io.Reader compatible type
- // (*bytes.Buffer). So in the future we might easily change it to streaming
- // read.
- b := bytes.NewBuffer(src)
- s := &Scanner{
- buf: b,
- src: src,
- }
-
- // srcPosition always starts with 1
- s.srcPos.Line = 1
- return s
-}
-
-// next reads the next rune from the bufferred reader. Returns the rune(0) if
-// an error occurs (or io.EOF is returned).
-func (s *Scanner) next() rune {
- ch, size, err := s.buf.ReadRune()
- if err != nil {
- // advance for error reporting
- s.srcPos.Column++
- s.srcPos.Offset += size
- s.lastCharLen = size
- return eof
- }
-
- if ch == utf8.RuneError && size == 1 {
- s.srcPos.Column++
- s.srcPos.Offset += size
- s.lastCharLen = size
- s.err("illegal UTF-8 encoding")
- return ch
- }
-
- // remember last position
- s.prevPos = s.srcPos
-
- s.srcPos.Column++
- s.lastCharLen = size
- s.srcPos.Offset += size
-
- if ch == '\n' {
- s.srcPos.Line++
- s.lastLineLen = s.srcPos.Column
- s.srcPos.Column = 0
- }
-
- // debug
- // fmt.Printf("ch: %q, offset:column: %d:%d\n", ch, s.srcPos.Offset, s.srcPos.Column)
- return ch
-}
-
-// unread unreads the previous read Rune and updates the source position
-func (s *Scanner) unread() {
- if err := s.buf.UnreadRune(); err != nil {
- panic(err) // this is user fault, we should catch it
- }
- s.srcPos = s.prevPos // put back last position
-}
-
-// peek returns the next rune without advancing the reader.
-func (s *Scanner) peek() rune {
- peek, _, err := s.buf.ReadRune()
- if err != nil {
- return eof
- }
-
- s.buf.UnreadRune()
- return peek
-}
-
-// Scan scans the next token and returns the token.
-func (s *Scanner) Scan() token.Token {
- ch := s.next()
-
- // skip white space
- for isWhitespace(ch) {
- ch = s.next()
- }
-
- var tok token.Type
-
- // token text markings
- s.tokStart = s.srcPos.Offset - s.lastCharLen
-
- // token position, initial next() is moving the offset by one(size of rune
- // actually), though we are interested with the starting point
- s.tokPos.Offset = s.srcPos.Offset - s.lastCharLen
- if s.srcPos.Column > 0 {
- // common case: last character was not a '\n'
- s.tokPos.Line = s.srcPos.Line
- s.tokPos.Column = s.srcPos.Column
- } else {
- // last character was a '\n'
- // (we cannot be at the beginning of the source
- // since we have called next() at least once)
- s.tokPos.Line = s.srcPos.Line - 1
- s.tokPos.Column = s.lastLineLen
- }
-
- switch {
- case isLetter(ch):
- lit := s.scanIdentifier()
- if lit == "true" || lit == "false" {
- tok = token.BOOL
- } else if lit == "null" {
- tok = token.NULL
- } else {
- s.err("illegal char")
- }
- case isDecimal(ch):
- tok = s.scanNumber(ch)
- default:
- switch ch {
- case eof:
- tok = token.EOF
- case '"':
- tok = token.STRING
- s.scanString()
- case '.':
- tok = token.PERIOD
- ch = s.peek()
- if isDecimal(ch) {
- tok = token.FLOAT
- ch = s.scanMantissa(ch)
- ch = s.scanExponent(ch)
- }
- case '[':
- tok = token.LBRACK
- case ']':
- tok = token.RBRACK
- case '{':
- tok = token.LBRACE
- case '}':
- tok = token.RBRACE
- case ',':
- tok = token.COMMA
- case ':':
- tok = token.COLON
- case '-':
- if isDecimal(s.peek()) {
- ch := s.next()
- tok = s.scanNumber(ch)
- } else {
- s.err("illegal char")
- }
- default:
- s.err("illegal char: " + string(ch))
- }
- }
-
- // finish token ending
- s.tokEnd = s.srcPos.Offset
-
- // create token literal
- var tokenText string
- if s.tokStart >= 0 {
- tokenText = string(s.src[s.tokStart:s.tokEnd])
- }
- s.tokStart = s.tokEnd // ensure idempotency of tokenText() call
-
- return token.Token{
- Type: tok,
- Pos: s.tokPos,
- Text: tokenText,
- }
-}
-
-// scanNumber scans a HCL number definition starting with the given rune
-func (s *Scanner) scanNumber(ch rune) token.Type {
- zero := ch == '0'
- pos := s.srcPos
-
- s.scanMantissa(ch)
- ch = s.next() // seek forward
- if ch == 'e' || ch == 'E' {
- ch = s.scanExponent(ch)
- return token.FLOAT
- }
-
- if ch == '.' {
- ch = s.scanFraction(ch)
- if ch == 'e' || ch == 'E' {
- ch = s.next()
- ch = s.scanExponent(ch)
- }
- return token.FLOAT
- }
-
- if ch != eof {
- s.unread()
- }
-
- // If we have a larger number and this is zero, error
- if zero && pos != s.srcPos {
- s.err("numbers cannot start with 0")
- }
-
- return token.NUMBER
-}
-
-// scanMantissa scans the mantissa beginning from the rune. It returns the next
-// non decimal rune. It's used to determine wheter it's a fraction or exponent.
-func (s *Scanner) scanMantissa(ch rune) rune {
- scanned := false
- for isDecimal(ch) {
- ch = s.next()
- scanned = true
- }
-
- if scanned && ch != eof {
- s.unread()
- }
- return ch
-}
-
-// scanFraction scans the fraction after the '.' rune
-func (s *Scanner) scanFraction(ch rune) rune {
- if ch == '.' {
- ch = s.peek() // we peek just to see if we can move forward
- ch = s.scanMantissa(ch)
- }
- return ch
-}
-
-// scanExponent scans the remaining parts of an exponent after the 'e' or 'E'
-// rune.
-func (s *Scanner) scanExponent(ch rune) rune {
- if ch == 'e' || ch == 'E' {
- ch = s.next()
- if ch == '-' || ch == '+' {
- ch = s.next()
- }
- ch = s.scanMantissa(ch)
- }
- return ch
-}
-
-// scanString scans a quoted string
-func (s *Scanner) scanString() {
- braces := 0
- for {
- // '"' opening already consumed
- // read character after quote
- ch := s.next()
-
- if ch == '\n' || ch < 0 || ch == eof {
- s.err("literal not terminated")
- return
- }
-
- if ch == '"' {
- break
- }
-
- // If we're going into a ${} then we can ignore quotes for awhile
- if braces == 0 && ch == '$' && s.peek() == '{' {
- braces++
- s.next()
- } else if braces > 0 && ch == '{' {
- braces++
- }
- if braces > 0 && ch == '}' {
- braces--
- }
-
- if ch == '\\' {
- s.scanEscape()
- }
- }
-
- return
-}
-
-// scanEscape scans an escape sequence
-func (s *Scanner) scanEscape() rune {
- // http://en.cppreference.com/w/cpp/language/escape
- ch := s.next() // read character after '/'
- switch ch {
- case 'a', 'b', 'f', 'n', 'r', 't', 'v', '\\', '"':
- // nothing to do
- case '0', '1', '2', '3', '4', '5', '6', '7':
- // octal notation
- ch = s.scanDigits(ch, 8, 3)
- case 'x':
- // hexademical notation
- ch = s.scanDigits(s.next(), 16, 2)
- case 'u':
- // universal character name
- ch = s.scanDigits(s.next(), 16, 4)
- case 'U':
- // universal character name
- ch = s.scanDigits(s.next(), 16, 8)
- default:
- s.err("illegal char escape")
- }
- return ch
-}
-
-// scanDigits scans a rune with the given base for n times. For example an
-// octal notation \184 would yield in scanDigits(ch, 8, 3)
-func (s *Scanner) scanDigits(ch rune, base, n int) rune {
- for n > 0 && digitVal(ch) < base {
- ch = s.next()
- n--
- }
- if n > 0 {
- s.err("illegal char escape")
- }
-
- // we scanned all digits, put the last non digit char back
- s.unread()
- return ch
-}
-
-// scanIdentifier scans an identifier and returns the literal string
-func (s *Scanner) scanIdentifier() string {
- offs := s.srcPos.Offset - s.lastCharLen
- ch := s.next()
- for isLetter(ch) || isDigit(ch) || ch == '-' {
- ch = s.next()
- }
-
- if ch != eof {
- s.unread() // we got identifier, put back latest char
- }
-
- return string(s.src[offs:s.srcPos.Offset])
-}
-
-// recentPosition returns the position of the character immediately after the
-// character or token returned by the last call to Scan.
-func (s *Scanner) recentPosition() (pos token.Pos) {
- pos.Offset = s.srcPos.Offset - s.lastCharLen
- switch {
- case s.srcPos.Column > 0:
- // common case: last character was not a '\n'
- pos.Line = s.srcPos.Line
- pos.Column = s.srcPos.Column
- case s.lastLineLen > 0:
- // last character was a '\n'
- // (we cannot be at the beginning of the source
- // since we have called next() at least once)
- pos.Line = s.srcPos.Line - 1
- pos.Column = s.lastLineLen
- default:
- // at the beginning of the source
- pos.Line = 1
- pos.Column = 1
- }
- return
-}
-
-// err prints the error of any scanning to s.Error function. If the function is
-// not defined, by default it prints them to os.Stderr
-func (s *Scanner) err(msg string) {
- s.ErrorCount++
- pos := s.recentPosition()
-
- if s.Error != nil {
- s.Error(pos, msg)
- return
- }
-
- fmt.Fprintf(os.Stderr, "%s: %s\n", pos, msg)
-}
-
-// isHexadecimal returns true if the given rune is a letter
-func isLetter(ch rune) bool {
- return 'a' <= ch && ch <= 'z' || 'A' <= ch && ch <= 'Z' || ch == '_' || ch >= 0x80 && unicode.IsLetter(ch)
-}
-
-// isHexadecimal returns true if the given rune is a decimal digit
-func isDigit(ch rune) bool {
- return '0' <= ch && ch <= '9' || ch >= 0x80 && unicode.IsDigit(ch)
-}
-
-// isHexadecimal returns true if the given rune is a decimal number
-func isDecimal(ch rune) bool {
- return '0' <= ch && ch <= '9'
-}
-
-// isHexadecimal returns true if the given rune is an hexadecimal number
-func isHexadecimal(ch rune) bool {
- return '0' <= ch && ch <= '9' || 'a' <= ch && ch <= 'f' || 'A' <= ch && ch <= 'F'
-}
-
-// isWhitespace returns true if the rune is a space, tab, newline or carriage return
-func isWhitespace(ch rune) bool {
- return ch == ' ' || ch == '\t' || ch == '\n' || ch == '\r'
-}
-
-// digitVal returns the integer value of a given octal,decimal or hexadecimal rune
-func digitVal(ch rune) int {
- switch {
- case '0' <= ch && ch <= '9':
- return int(ch - '0')
- case 'a' <= ch && ch <= 'f':
- return int(ch - 'a' + 10)
- case 'A' <= ch && ch <= 'F':
- return int(ch - 'A' + 10)
- }
- return 16 // larger than any legal digit val
-}
diff --git a/vendor/github.com/hashicorp/hcl/json/token/position.go b/vendor/github.com/hashicorp/hcl/json/token/position.go
deleted file mode 100644
index 59c1bb72d..000000000
--- a/vendor/github.com/hashicorp/hcl/json/token/position.go
+++ /dev/null
@@ -1,46 +0,0 @@
-package token
-
-import "fmt"
-
-// Pos describes an arbitrary source position
-// including the file, line, and column location.
-// A Position is valid if the line number is > 0.
-type Pos struct {
- Filename string // filename, if any
- Offset int // offset, starting at 0
- Line int // line number, starting at 1
- Column int // column number, starting at 1 (character count)
-}
-
-// IsValid returns true if the position is valid.
-func (p *Pos) IsValid() bool { return p.Line > 0 }
-
-// String returns a string in one of several forms:
-//
-// file:line:column valid position with file name
-// line:column valid position without file name
-// file invalid position with file name
-// - invalid position without file name
-func (p Pos) String() string {
- s := p.Filename
- if p.IsValid() {
- if s != "" {
- s += ":"
- }
- s += fmt.Sprintf("%d:%d", p.Line, p.Column)
- }
- if s == "" {
- s = "-"
- }
- return s
-}
-
-// Before reports whether the position p is before u.
-func (p Pos) Before(u Pos) bool {
- return u.Offset > p.Offset || u.Line > p.Line
-}
-
-// After reports whether the position p is after u.
-func (p Pos) After(u Pos) bool {
- return u.Offset < p.Offset || u.Line < p.Line
-}
diff --git a/vendor/github.com/hashicorp/hcl/json/token/token.go b/vendor/github.com/hashicorp/hcl/json/token/token.go
deleted file mode 100644
index 95a0c3eee..000000000
--- a/vendor/github.com/hashicorp/hcl/json/token/token.go
+++ /dev/null
@@ -1,118 +0,0 @@
-package token
-
-import (
- "fmt"
- "strconv"
-
- hcltoken "github.com/hashicorp/hcl/hcl/token"
-)
-
-// Token defines a single HCL token which can be obtained via the Scanner
-type Token struct {
- Type Type
- Pos Pos
- Text string
-}
-
-// Type is the set of lexical tokens of the HCL (HashiCorp Configuration Language)
-type Type int
-
-const (
- // Special tokens
- ILLEGAL Type = iota
- EOF
-
- identifier_beg
- literal_beg
- NUMBER // 12345
- FLOAT // 123.45
- BOOL // true,false
- STRING // "abc"
- NULL // null
- literal_end
- identifier_end
-
- operator_beg
- LBRACK // [
- LBRACE // {
- COMMA // ,
- PERIOD // .
- COLON // :
-
- RBRACK // ]
- RBRACE // }
-
- operator_end
-)
-
-var tokens = [...]string{
- ILLEGAL: "ILLEGAL",
-
- EOF: "EOF",
-
- NUMBER: "NUMBER",
- FLOAT: "FLOAT",
- BOOL: "BOOL",
- STRING: "STRING",
- NULL: "NULL",
-
- LBRACK: "LBRACK",
- LBRACE: "LBRACE",
- COMMA: "COMMA",
- PERIOD: "PERIOD",
- COLON: "COLON",
-
- RBRACK: "RBRACK",
- RBRACE: "RBRACE",
-}
-
-// String returns the string corresponding to the token tok.
-func (t Type) String() string {
- s := ""
- if 0 <= t && t < Type(len(tokens)) {
- s = tokens[t]
- }
- if s == "" {
- s = "token(" + strconv.Itoa(int(t)) + ")"
- }
- return s
-}
-
-// IsIdentifier returns true for tokens corresponding to identifiers and basic
-// type literals; it returns false otherwise.
-func (t Type) IsIdentifier() bool { return identifier_beg < t && t < identifier_end }
-
-// IsLiteral returns true for tokens corresponding to basic type literals; it
-// returns false otherwise.
-func (t Type) IsLiteral() bool { return literal_beg < t && t < literal_end }
-
-// IsOperator returns true for tokens corresponding to operators and
-// delimiters; it returns false otherwise.
-func (t Type) IsOperator() bool { return operator_beg < t && t < operator_end }
-
-// String returns the token's literal text. Note that this is only
-// applicable for certain token types, such as token.IDENT,
-// token.STRING, etc..
-func (t Token) String() string {
- return fmt.Sprintf("%s %s %s", t.Pos.String(), t.Type.String(), t.Text)
-}
-
-// HCLToken converts this token to an HCL token.
-//
-// The token type must be a literal type or this will panic.
-func (t Token) HCLToken() hcltoken.Token {
- switch t.Type {
- case BOOL:
- return hcltoken.Token{Type: hcltoken.BOOL, Text: t.Text}
- case FLOAT:
- return hcltoken.Token{Type: hcltoken.FLOAT, Text: t.Text}
- case NULL:
- return hcltoken.Token{Type: hcltoken.STRING, Text: ""}
- case NUMBER:
- return hcltoken.Token{Type: hcltoken.NUMBER, Text: t.Text}
- case STRING:
- return hcltoken.Token{Type: hcltoken.STRING, Text: t.Text, JSON: true}
- default:
- panic(fmt.Sprintf("unimplemented HCLToken for type: %s", t.Type))
- }
-}
diff --git a/vendor/github.com/hashicorp/hcl/lex.go b/vendor/github.com/hashicorp/hcl/lex.go
deleted file mode 100644
index d9993c292..000000000
--- a/vendor/github.com/hashicorp/hcl/lex.go
+++ /dev/null
@@ -1,38 +0,0 @@
-package hcl
-
-import (
- "unicode"
- "unicode/utf8"
-)
-
-type lexModeValue byte
-
-const (
- lexModeUnknown lexModeValue = iota
- lexModeHcl
- lexModeJson
-)
-
-// lexMode returns whether we're going to be parsing in JSON
-// mode or HCL mode.
-func lexMode(v []byte) lexModeValue {
- var (
- r rune
- w int
- offset int
- )
-
- for {
- r, w = utf8.DecodeRune(v[offset:])
- offset += w
- if unicode.IsSpace(r) {
- continue
- }
- if r == '{' {
- return lexModeJson
- }
- break
- }
-
- return lexModeHcl
-}
diff --git a/vendor/github.com/hashicorp/hcl/parse.go b/vendor/github.com/hashicorp/hcl/parse.go
deleted file mode 100644
index 1fca53c4c..000000000
--- a/vendor/github.com/hashicorp/hcl/parse.go
+++ /dev/null
@@ -1,39 +0,0 @@
-package hcl
-
-import (
- "fmt"
-
- "github.com/hashicorp/hcl/hcl/ast"
- hclParser "github.com/hashicorp/hcl/hcl/parser"
- jsonParser "github.com/hashicorp/hcl/json/parser"
-)
-
-// ParseBytes accepts as input byte slice and returns ast tree.
-//
-// Input can be either JSON or HCL
-func ParseBytes(in []byte) (*ast.File, error) {
- return parse(in)
-}
-
-// ParseString accepts input as a string and returns ast tree.
-func ParseString(input string) (*ast.File, error) {
- return parse([]byte(input))
-}
-
-func parse(in []byte) (*ast.File, error) {
- switch lexMode(in) {
- case lexModeHcl:
- return hclParser.Parse(in)
- case lexModeJson:
- return jsonParser.Parse(in)
- }
-
- return nil, fmt.Errorf("unknown config format")
-}
-
-// Parse parses the given input and returns the root object.
-//
-// The input format can be either HCL or JSON.
-func Parse(input string) (*ast.File, error) {
- return parse([]byte(input))
-}
diff --git a/vendor/github.com/inconshreveable/mousetrap/LICENSE b/vendor/github.com/inconshreveable/mousetrap/LICENSE
deleted file mode 100644
index 5f0d1fb6a..000000000
--- a/vendor/github.com/inconshreveable/mousetrap/LICENSE
+++ /dev/null
@@ -1,13 +0,0 @@
-Copyright 2014 Alan Shreve
-
-Licensed under the Apache License, Version 2.0 (the "License");
-you may not use this file except in compliance with the License.
-You may obtain a copy of the License at
-
- http://www.apache.org/licenses/LICENSE-2.0
-
-Unless required by applicable law or agreed to in writing, software
-distributed under the License is distributed on an "AS IS" BASIS,
-WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-See the License for the specific language governing permissions and
-limitations under the License.
diff --git a/vendor/github.com/inconshreveable/mousetrap/README.md b/vendor/github.com/inconshreveable/mousetrap/README.md
deleted file mode 100644
index 7a950d177..000000000
--- a/vendor/github.com/inconshreveable/mousetrap/README.md
+++ /dev/null
@@ -1,23 +0,0 @@
-# mousetrap
-
-mousetrap is a tiny library that answers a single question.
-
-On a Windows machine, was the process invoked by someone double clicking on
-the executable file while browsing in explorer?
-
-### Motivation
-
-Windows developers unfamiliar with command line tools will often "double-click"
-the executable for a tool. Because most CLI tools print the help and then exit
-when invoked without arguments, this is often very frustrating for those users.
-
-mousetrap provides a way to detect these invocations so that you can provide
-more helpful behavior and instructions on how to run the CLI tool. To see what
-this looks like, both from an organizational and a technical perspective, see
-https://inconshreveable.com/09-09-2014/sweat-the-small-stuff/
-
-### The interface
-
-The library exposes a single interface:
-
- func StartedByExplorer() (bool)
diff --git a/vendor/github.com/inconshreveable/mousetrap/trap_others.go b/vendor/github.com/inconshreveable/mousetrap/trap_others.go
deleted file mode 100644
index 9d2d8a4ba..000000000
--- a/vendor/github.com/inconshreveable/mousetrap/trap_others.go
+++ /dev/null
@@ -1,15 +0,0 @@
-// +build !windows
-
-package mousetrap
-
-// StartedByExplorer returns true if the program was invoked by the user
-// double-clicking on the executable from explorer.exe
-//
-// It is conservative and returns false if any of the internal calls fail.
-// It does not guarantee that the program was run from a terminal. It only can tell you
-// whether it was launched from explorer.exe
-//
-// On non-Windows platforms, it always returns false.
-func StartedByExplorer() bool {
- return false
-}
diff --git a/vendor/github.com/inconshreveable/mousetrap/trap_windows.go b/vendor/github.com/inconshreveable/mousetrap/trap_windows.go
deleted file mode 100644
index 336142a5e..000000000
--- a/vendor/github.com/inconshreveable/mousetrap/trap_windows.go
+++ /dev/null
@@ -1,98 +0,0 @@
-// +build windows
-// +build !go1.4
-
-package mousetrap
-
-import (
- "fmt"
- "os"
- "syscall"
- "unsafe"
-)
-
-const (
- // defined by the Win32 API
- th32cs_snapprocess uintptr = 0x2
-)
-
-var (
- kernel = syscall.MustLoadDLL("kernel32.dll")
- CreateToolhelp32Snapshot = kernel.MustFindProc("CreateToolhelp32Snapshot")
- Process32First = kernel.MustFindProc("Process32FirstW")
- Process32Next = kernel.MustFindProc("Process32NextW")
-)
-
-// ProcessEntry32 structure defined by the Win32 API
-type processEntry32 struct {
- dwSize uint32
- cntUsage uint32
- th32ProcessID uint32
- th32DefaultHeapID int
- th32ModuleID uint32
- cntThreads uint32
- th32ParentProcessID uint32
- pcPriClassBase int32
- dwFlags uint32
- szExeFile [syscall.MAX_PATH]uint16
-}
-
-func getProcessEntry(pid int) (pe *processEntry32, err error) {
- snapshot, _, e1 := CreateToolhelp32Snapshot.Call(th32cs_snapprocess, uintptr(0))
- if snapshot == uintptr(syscall.InvalidHandle) {
- err = fmt.Errorf("CreateToolhelp32Snapshot: %v", e1)
- return
- }
- defer syscall.CloseHandle(syscall.Handle(snapshot))
-
- var processEntry processEntry32
- processEntry.dwSize = uint32(unsafe.Sizeof(processEntry))
- ok, _, e1 := Process32First.Call(snapshot, uintptr(unsafe.Pointer(&processEntry)))
- if ok == 0 {
- err = fmt.Errorf("Process32First: %v", e1)
- return
- }
-
- for {
- if processEntry.th32ProcessID == uint32(pid) {
- pe = &processEntry
- return
- }
-
- ok, _, e1 = Process32Next.Call(snapshot, uintptr(unsafe.Pointer(&processEntry)))
- if ok == 0 {
- err = fmt.Errorf("Process32Next: %v", e1)
- return
- }
- }
-}
-
-func getppid() (pid int, err error) {
- pe, err := getProcessEntry(os.Getpid())
- if err != nil {
- return
- }
-
- pid = int(pe.th32ParentProcessID)
- return
-}
-
-// StartedByExplorer returns true if the program was invoked by the user double-clicking
-// on the executable from explorer.exe
-//
-// It is conservative and returns false if any of the internal calls fail.
-// It does not guarantee that the program was run from a terminal. It only can tell you
-// whether it was launched from explorer.exe
-func StartedByExplorer() bool {
- ppid, err := getppid()
- if err != nil {
- return false
- }
-
- pe, err := getProcessEntry(ppid)
- if err != nil {
- return false
- }
-
- name := syscall.UTF16ToString(pe.szExeFile[:])
- return name == "explorer.exe"
-}
diff --git a/vendor/github.com/inconshreveable/mousetrap/trap_windows_1.4.go b/vendor/github.com/inconshreveable/mousetrap/trap_windows_1.4.go
deleted file mode 100644
index 9a28e57c3..000000000
--- a/vendor/github.com/inconshreveable/mousetrap/trap_windows_1.4.go
+++ /dev/null
@@ -1,46 +0,0 @@
-// +build windows
-// +build go1.4
-
-package mousetrap
-
-import (
- "os"
- "syscall"
- "unsafe"
-)
-
-func getProcessEntry(pid int) (*syscall.ProcessEntry32, error) {
- snapshot, err := syscall.CreateToolhelp32Snapshot(syscall.TH32CS_SNAPPROCESS, 0)
- if err != nil {
- return nil, err
- }
- defer syscall.CloseHandle(snapshot)
- var procEntry syscall.ProcessEntry32
- procEntry.Size = uint32(unsafe.Sizeof(procEntry))
- if err = syscall.Process32First(snapshot, &procEntry); err != nil {
- return nil, err
- }
- for {
- if procEntry.ProcessID == uint32(pid) {
- return &procEntry, nil
- }
- err = syscall.Process32Next(snapshot, &procEntry)
- if err != nil {
- return nil, err
- }
- }
-}
-
-// StartedByExplorer returns true if the program was invoked by the user double-clicking
-// on the executable from explorer.exe
-//
-// It is conservative and returns false if any of the internal calls fail.
-// It does not guarantee that the program was run from a terminal. It only can tell you
-// whether it was launched from explorer.exe
-func StartedByExplorer() bool {
- pe, err := getProcessEntry(os.Getppid())
- if err != nil {
- return false
- }
- return "explorer.exe" == syscall.UTF16ToString(pe.ExeFile[:])
-}
diff --git a/vendor/github.com/jmoiron/sqlx/.gitignore b/vendor/github.com/jmoiron/sqlx/.gitignore
deleted file mode 100644
index 529841cf1..000000000
--- a/vendor/github.com/jmoiron/sqlx/.gitignore
+++ /dev/null
@@ -1,24 +0,0 @@
-# Compiled Object files, Static and Dynamic libs (Shared Objects)
-*.o
-*.a
-*.so
-
-# Folders
-_obj
-_test
-
-# Architecture specific extensions/prefixes
-*.[568vq]
-[568vq].out
-
-*.cgo1.go
-*.cgo2.c
-_cgo_defun.c
-_cgo_gotypes.go
-_cgo_export.*
-
-_testmain.go
-
-*.exe
-tags
-environ
diff --git a/vendor/github.com/jmoiron/sqlx/.travis.yml b/vendor/github.com/jmoiron/sqlx/.travis.yml
deleted file mode 100644
index 6bc68d67f..000000000
--- a/vendor/github.com/jmoiron/sqlx/.travis.yml
+++ /dev/null
@@ -1,27 +0,0 @@
-# vim: ft=yaml sw=2 ts=2
-
-language: go
-
-# enable database services
-services:
- - mysql
- - postgresql
-
-# create test database
-before_install:
- - mysql -e 'CREATE DATABASE IF NOT EXISTS sqlxtest;'
- - psql -c 'create database sqlxtest;' -U postgres
- - go get github.com/mattn/goveralls
- - export SQLX_MYSQL_DSN="travis:@/sqlxtest?parseTime=true"
- - export SQLX_POSTGRES_DSN="postgres://postgres:@localhost/sqlxtest?sslmode=disable"
- - export SQLX_SQLITE_DSN="$HOME/sqlxtest.db"
-
-# go versions to test
-go:
- - "1.8"
- - "1.9"
- - "1.10.x"
-
-# run tests w/ coverage
-script:
- - travis_retry $GOPATH/bin/goveralls -service=travis-ci
diff --git a/vendor/github.com/jmoiron/sqlx/LICENSE b/vendor/github.com/jmoiron/sqlx/LICENSE
deleted file mode 100644
index 0d31edfa7..000000000
--- a/vendor/github.com/jmoiron/sqlx/LICENSE
+++ /dev/null
@@ -1,23 +0,0 @@
- Copyright (c) 2013, Jason Moiron
-
- Permission is hereby granted, free of charge, to any person
- obtaining a copy of this software and associated documentation
- files (the "Software"), to deal in the Software without
- restriction, including without limitation the rights to use,
- copy, modify, merge, publish, distribute, sublicense, and/or sell
- copies of the Software, and to permit persons to whom the
- Software is furnished to do so, subject to the following
- conditions:
-
- The above copyright notice and this permission notice shall be
- included in all copies or substantial portions of the Software.
-
- THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
- EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES
- OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
- NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT
- HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
- WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
- FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- OTHER DEALINGS IN THE SOFTWARE.
-
diff --git a/vendor/github.com/jmoiron/sqlx/README.md b/vendor/github.com/jmoiron/sqlx/README.md
deleted file mode 100644
index 839034365..000000000
--- a/vendor/github.com/jmoiron/sqlx/README.md
+++ /dev/null
@@ -1,187 +0,0 @@
-# sqlx
-
-[](https://travis-ci.org/jmoiron/sqlx) [](https://coveralls.io/github/jmoiron/sqlx?branch=master) [](https://godoc.org/github.com/jmoiron/sqlx) [](https://raw.githubusercontent.com/jmoiron/sqlx/master/LICENSE)
-
-sqlx is a library which provides a set of extensions on go's standard
-`database/sql` library. The sqlx versions of `sql.DB`, `sql.TX`, `sql.Stmt`,
-et al. all leave the underlying interfaces untouched, so that their interfaces
-are a superset on the standard ones. This makes it relatively painless to
-integrate existing codebases using database/sql with sqlx.
-
-Major additional concepts are:
-
-* Marshal rows into structs (with embedded struct support), maps, and slices
-* Named parameter support including prepared statements
-* `Get` and `Select` to go quickly from query to struct/slice
-
-In addition to the [godoc API documentation](http://godoc.org/github.com/jmoiron/sqlx),
-there is also some [standard documentation](http://jmoiron.github.io/sqlx/) that
-explains how to use `database/sql` along with sqlx.
-
-## Recent Changes
-
-* The [introduction](https://github.com/jmoiron/sqlx/pull/387) of `sql.ColumnType` sets the required minimum Go version to 1.8.
-
-* sqlx/types.JsonText has been renamed to JSONText to follow Go naming conventions.
-
-This breaks backwards compatibility, but it's in a way that is trivially fixable
-(`s/JsonText/JSONText/g`). The `types` package is both experimental and not in
-active development currently.
-
-* Using Go 1.6 and below with `types.JSONText` and `types.GzippedText` can be _potentially unsafe_, **especially** when used with common auto-scan sqlx idioms like `Select` and `Get`. See [golang bug #13905](https://github.com/golang/go/issues/13905).
-
-### Backwards Compatibility
-
-There is no Go1-like promise of absolute stability, but I take the issue seriously
-and will maintain the library in a compatible state unless vital bugs prevent me
-from doing so. Since [#59](https://github.com/jmoiron/sqlx/issues/59) and
-[#60](https://github.com/jmoiron/sqlx/issues/60) necessitated breaking behavior,
-a wider API cleanup was done at the time of fixing. It's possible this will happen
-in future; if it does, a git tag will be provided for users requiring the old
-behavior to continue to use it until such a time as they can migrate.
-
-## install
-
- go get github.com/jmoiron/sqlx
-
-## issues
-
-Row headers can be ambiguous (`SELECT 1 AS a, 2 AS a`), and the result of
-`Columns()` does not fully qualify column names in queries like:
-
-```sql
-SELECT a.id, a.name, b.id, b.name FROM foos AS a JOIN foos AS b ON a.parent = b.id;
-```
-
-making a struct or map destination ambiguous. Use `AS` in your queries
-to give columns distinct names, `rows.Scan` to scan them manually, or
-`SliceScan` to get a slice of results.
-
-## usage
-
-Below is an example which shows some common use cases for sqlx. Check
-[sqlx_test.go](https://github.com/jmoiron/sqlx/blob/master/sqlx_test.go) for more
-usage.
-
-
-```go
-package main
-
-import (
- "database/sql"
- "fmt"
- "log"
-
- _ "github.com/lib/pq"
- "github.com/jmoiron/sqlx"
-)
-
-var schema = `
-CREATE TABLE person (
- first_name text,
- last_name text,
- email text
-);
-
-CREATE TABLE place (
- country text,
- city text NULL,
- telcode integer
-)`
-
-type Person struct {
- FirstName string `db:"first_name"`
- LastName string `db:"last_name"`
- Email string
-}
-
-type Place struct {
- Country string
- City sql.NullString
- TelCode int
-}
-
-func main() {
- // this Pings the database trying to connect, panics on error
- // use sqlx.Open() for sql.Open() semantics
- db, err := sqlx.Connect("postgres", "user=foo dbname=bar sslmode=disable")
- if err != nil {
- log.Fatalln(err)
- }
-
- // exec the schema or fail; multi-statement Exec behavior varies between
- // database drivers; pq will exec them all, sqlite3 won't, ymmv
- db.MustExec(schema)
-
- tx := db.MustBegin()
- tx.MustExec("INSERT INTO person (first_name, last_name, email) VALUES ($1, $2, $3)", "Jason", "Moiron", "jmoiron@jmoiron.net")
- tx.MustExec("INSERT INTO person (first_name, last_name, email) VALUES ($1, $2, $3)", "John", "Doe", "johndoeDNE@gmail.net")
- tx.MustExec("INSERT INTO place (country, city, telcode) VALUES ($1, $2, $3)", "United States", "New York", "1")
- tx.MustExec("INSERT INTO place (country, telcode) VALUES ($1, $2)", "Hong Kong", "852")
- tx.MustExec("INSERT INTO place (country, telcode) VALUES ($1, $2)", "Singapore", "65")
- // Named queries can use structs, so if you have an existing struct (i.e. person := &Person{}) that you have populated, you can pass it in as &person
- tx.NamedExec("INSERT INTO person (first_name, last_name, email) VALUES (:first_name, :last_name, :email)", &Person{"Jane", "Citizen", "jane.citzen@example.com"})
- tx.Commit()
-
- // Query the database, storing results in a []Person (wrapped in []interface{})
- people := []Person{}
- db.Select(&people, "SELECT * FROM person ORDER BY first_name ASC")
- jason, john := people[0], people[1]
-
- fmt.Printf("%#v\n%#v", jason, john)
- // Person{FirstName:"Jason", LastName:"Moiron", Email:"jmoiron@jmoiron.net"}
- // Person{FirstName:"John", LastName:"Doe", Email:"johndoeDNE@gmail.net"}
-
- // You can also get a single result, a la QueryRow
- jason = Person{}
- err = db.Get(&jason, "SELECT * FROM person WHERE first_name=$1", "Jason")
- fmt.Printf("%#v\n", jason)
- // Person{FirstName:"Jason", LastName:"Moiron", Email:"jmoiron@jmoiron.net"}
-
- // if you have null fields and use SELECT *, you must use sql.Null* in your struct
- places := []Place{}
- err = db.Select(&places, "SELECT * FROM place ORDER BY telcode ASC")
- if err != nil {
- fmt.Println(err)
- return
- }
- usa, singsing, honkers := places[0], places[1], places[2]
-
- fmt.Printf("%#v\n%#v\n%#v\n", usa, singsing, honkers)
- // Place{Country:"United States", City:sql.NullString{String:"New York", Valid:true}, TelCode:1}
- // Place{Country:"Singapore", City:sql.NullString{String:"", Valid:false}, TelCode:65}
- // Place{Country:"Hong Kong", City:sql.NullString{String:"", Valid:false}, TelCode:852}
-
- // Loop through rows using only one struct
- place := Place{}
- rows, err := db.Queryx("SELECT * FROM place")
- for rows.Next() {
- err := rows.StructScan(&place)
- if err != nil {
- log.Fatalln(err)
- }
- fmt.Printf("%#v\n", place)
- }
- // Place{Country:"United States", City:sql.NullString{String:"New York", Valid:true}, TelCode:1}
- // Place{Country:"Hong Kong", City:sql.NullString{String:"", Valid:false}, TelCode:852}
- // Place{Country:"Singapore", City:sql.NullString{String:"", Valid:false}, TelCode:65}
-
- // Named queries, using `:name` as the bindvar. Automatic bindvar support
- // which takes into account the dbtype based on the driverName on sqlx.Open/Connect
- _, err = db.NamedExec(`INSERT INTO person (first_name,last_name,email) VALUES (:first,:last,:email)`,
- map[string]interface{}{
- "first": "Bin",
- "last": "Smuth",
- "email": "bensmith@allblacks.nz",
- })
-
- // Selects Mr. Smith from the database
- rows, err = db.NamedQuery(`SELECT * FROM person WHERE first_name=:fn`, map[string]interface{}{"fn": "Bin"})
-
- // Named queries can also use structs. Their bind names follow the same rules
- // as the name -> db mapping, so struct fields are lowercased and the `db` tag
- // is taken into consideration.
- rows, err = db.NamedQuery(`SELECT * FROM person WHERE first_name=:first_name`, jason)
-}
-```
-
diff --git a/vendor/github.com/jmoiron/sqlx/bind.go b/vendor/github.com/jmoiron/sqlx/bind.go
deleted file mode 100644
index 0a48252a0..000000000
--- a/vendor/github.com/jmoiron/sqlx/bind.go
+++ /dev/null
@@ -1,217 +0,0 @@
-package sqlx
-
-import (
- "bytes"
- "database/sql/driver"
- "errors"
- "reflect"
- "strconv"
- "strings"
-
- "github.com/jmoiron/sqlx/reflectx"
-)
-
-// Bindvar types supported by Rebind, BindMap and BindStruct.
-const (
- UNKNOWN = iota
- QUESTION
- DOLLAR
- NAMED
- AT
-)
-
-// BindType returns the bindtype for a given database given a drivername.
-func BindType(driverName string) int {
- switch driverName {
- case "postgres", "pgx", "pq-timeouts", "cloudsqlpostgres":
- return DOLLAR
- case "mysql":
- return QUESTION
- case "sqlite3":
- return QUESTION
- case "oci8", "ora", "goracle":
- return NAMED
- case "sqlserver":
- return AT
- }
- return UNKNOWN
-}
-
-// FIXME: this should be able to be tolerant of escaped ?'s in queries without
-// losing much speed, and should be to avoid confusion.
-
-// Rebind a query from the default bindtype (QUESTION) to the target bindtype.
-func Rebind(bindType int, query string) string {
- switch bindType {
- case QUESTION, UNKNOWN:
- return query
- }
-
- // Add space enough for 10 params before we have to allocate
- rqb := make([]byte, 0, len(query)+10)
-
- var i, j int
-
- for i = strings.Index(query, "?"); i != -1; i = strings.Index(query, "?") {
- rqb = append(rqb, query[:i]...)
-
- switch bindType {
- case DOLLAR:
- rqb = append(rqb, '$')
- case NAMED:
- rqb = append(rqb, ':', 'a', 'r', 'g')
- case AT:
- rqb = append(rqb, '@', 'p')
- }
-
- j++
- rqb = strconv.AppendInt(rqb, int64(j), 10)
-
- query = query[i+1:]
- }
-
- return string(append(rqb, query...))
-}
-
-// Experimental implementation of Rebind which uses a bytes.Buffer. The code is
-// much simpler and should be more resistant to odd unicode, but it is twice as
-// slow. Kept here for benchmarking purposes and to possibly replace Rebind if
-// problems arise with its somewhat naive handling of unicode.
-func rebindBuff(bindType int, query string) string {
- if bindType != DOLLAR {
- return query
- }
-
- b := make([]byte, 0, len(query))
- rqb := bytes.NewBuffer(b)
- j := 1
- for _, r := range query {
- if r == '?' {
- rqb.WriteRune('$')
- rqb.WriteString(strconv.Itoa(j))
- j++
- } else {
- rqb.WriteRune(r)
- }
- }
-
- return rqb.String()
-}
-
-// In expands slice values in args, returning the modified query string
-// and a new arg list that can be executed by a database. The `query` should
-// use the `?` bindVar. The return value uses the `?` bindVar.
-func In(query string, args ...interface{}) (string, []interface{}, error) {
- // argMeta stores reflect.Value and length for slices and
- // the value itself for non-slice arguments
- type argMeta struct {
- v reflect.Value
- i interface{}
- length int
- }
-
- var flatArgsCount int
- var anySlices bool
-
- meta := make([]argMeta, len(args))
-
- for i, arg := range args {
- if a, ok := arg.(driver.Valuer); ok {
- arg, _ = a.Value()
- }
- v := reflect.ValueOf(arg)
- t := reflectx.Deref(v.Type())
-
- // []byte is a driver.Value type so it should not be expanded
- if t.Kind() == reflect.Slice && t != reflect.TypeOf([]byte{}) {
- meta[i].length = v.Len()
- meta[i].v = v
-
- anySlices = true
- flatArgsCount += meta[i].length
-
- if meta[i].length == 0 {
- return "", nil, errors.New("empty slice passed to 'in' query")
- }
- } else {
- meta[i].i = arg
- flatArgsCount++
- }
- }
-
- // don't do any parsing if there aren't any slices; note that this means
- // some errors that we might have caught below will not be returned.
- if !anySlices {
- return query, args, nil
- }
-
- newArgs := make([]interface{}, 0, flatArgsCount)
- buf := make([]byte, 0, len(query)+len(", ?")*flatArgsCount)
-
- var arg, offset int
-
- for i := strings.IndexByte(query[offset:], '?'); i != -1; i = strings.IndexByte(query[offset:], '?') {
- if arg >= len(meta) {
- // if an argument wasn't passed, lets return an error; this is
- // not actually how database/sql Exec/Query works, but since we are
- // creating an argument list programmatically, we want to be able
- // to catch these programmer errors earlier.
- return "", nil, errors.New("number of bindVars exceeds arguments")
- }
-
- argMeta := meta[arg]
- arg++
-
- // not a slice, continue.
- // our questionmark will either be written before the next expansion
- // of a slice or after the loop when writing the rest of the query
- if argMeta.length == 0 {
- offset = offset + i + 1
- newArgs = append(newArgs, argMeta.i)
- continue
- }
-
- // write everything up to and including our ? character
- buf = append(buf, query[:offset+i+1]...)
-
- for si := 1; si < argMeta.length; si++ {
- buf = append(buf, ", ?"...)
- }
-
- newArgs = appendReflectSlice(newArgs, argMeta.v, argMeta.length)
-
- // slice the query and reset the offset. this avoids some bookkeeping for
- // the write after the loop
- query = query[offset+i+1:]
- offset = 0
- }
-
- buf = append(buf, query...)
-
- if arg < len(meta) {
- return "", nil, errors.New("number of bindVars less than number arguments")
- }
-
- return string(buf), newArgs, nil
-}
-
-func appendReflectSlice(args []interface{}, v reflect.Value, vlen int) []interface{} {
- switch val := v.Interface().(type) {
- case []interface{}:
- args = append(args, val...)
- case []int:
- for i := range val {
- args = append(args, val[i])
- }
- case []string:
- for i := range val {
- args = append(args, val[i])
- }
- default:
- for si := 0; si < vlen; si++ {
- args = append(args, v.Index(si).Interface())
- }
- }
-
- return args
-}
diff --git a/vendor/github.com/jmoiron/sqlx/doc.go b/vendor/github.com/jmoiron/sqlx/doc.go
deleted file mode 100644
index e2b4e60b2..000000000
--- a/vendor/github.com/jmoiron/sqlx/doc.go
+++ /dev/null
@@ -1,12 +0,0 @@
-// Package sqlx provides general purpose extensions to database/sql.
-//
-// It is intended to seamlessly wrap database/sql and provide convenience
-// methods which are useful in the development of database driven applications.
-// None of the underlying database/sql methods are changed. Instead all extended
-// behavior is implemented through new methods defined on wrapper types.
-//
-// Additions include scanning into structs, named query support, rebinding
-// queries for different drivers, convenient shorthands for common error handling
-// and more.
-//
-package sqlx
diff --git a/vendor/github.com/jmoiron/sqlx/go.mod b/vendor/github.com/jmoiron/sqlx/go.mod
deleted file mode 100644
index 66c67561c..000000000
--- a/vendor/github.com/jmoiron/sqlx/go.mod
+++ /dev/null
@@ -1,7 +0,0 @@
-module github.com/jmoiron/sqlx
-
-require (
- github.com/go-sql-driver/mysql v1.4.0
- github.com/lib/pq v1.0.0
- github.com/mattn/go-sqlite3 v1.9.0
-)
diff --git a/vendor/github.com/jmoiron/sqlx/go.sum b/vendor/github.com/jmoiron/sqlx/go.sum
deleted file mode 100644
index a3239ada7..000000000
--- a/vendor/github.com/jmoiron/sqlx/go.sum
+++ /dev/null
@@ -1,6 +0,0 @@
-github.com/go-sql-driver/mysql v1.4.0 h1:7LxgVwFb2hIQtMm87NdgAVfXjnt4OePseqT1tKx+opk=
-github.com/go-sql-driver/mysql v1.4.0/go.mod h1:zAC/RDZ24gD3HViQzih4MyKcchzm+sOG5ZlKdlhCg5w=
-github.com/lib/pq v1.0.0 h1:X5PMW56eZitiTeO7tKzZxFCSpbFZJtkMMooicw2us9A=
-github.com/lib/pq v1.0.0/go.mod h1:5WUZQaWbwv1U+lTReE5YruASi9Al49XbQIvNi/34Woo=
-github.com/mattn/go-sqlite3 v1.9.0 h1:pDRiWfl+++eC2FEFRy6jXmQlvp4Yh3z1MJKg4UeYM/4=
-github.com/mattn/go-sqlite3 v1.9.0/go.mod h1:FPy6KqzDD04eiIsT53CuJW3U88zkxoIYsOqkbpncsNc=
diff --git a/vendor/github.com/jmoiron/sqlx/named.go b/vendor/github.com/jmoiron/sqlx/named.go
deleted file mode 100644
index fa82b5609..000000000
--- a/vendor/github.com/jmoiron/sqlx/named.go
+++ /dev/null
@@ -1,356 +0,0 @@
-package sqlx
-
-// Named Query Support
-//
-// * BindMap - bind query bindvars to map/struct args
-// * NamedExec, NamedQuery - named query w/ struct or map
-// * NamedStmt - a pre-compiled named query which is a prepared statement
-//
-// Internal Interfaces:
-//
-// * compileNamedQuery - rebind a named query, returning a query and list of names
-// * bindArgs, bindMapArgs, bindAnyArgs - given a list of names, return an arglist
-//
-import (
- "database/sql"
- "errors"
- "fmt"
- "reflect"
- "strconv"
- "unicode"
-
- "github.com/jmoiron/sqlx/reflectx"
-)
-
-// NamedStmt is a prepared statement that executes named queries. Prepare it
-// how you would execute a NamedQuery, but pass in a struct or map when executing.
-type NamedStmt struct {
- Params []string
- QueryString string
- Stmt *Stmt
-}
-
-// Close closes the named statement.
-func (n *NamedStmt) Close() error {
- return n.Stmt.Close()
-}
-
-// Exec executes a named statement using the struct passed.
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) Exec(arg interface{}) (sql.Result, error) {
- args, err := bindAnyArgs(n.Params, arg, n.Stmt.Mapper)
- if err != nil {
- return *new(sql.Result), err
- }
- return n.Stmt.Exec(args...)
-}
-
-// Query executes a named statement using the struct argument, returning rows.
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) Query(arg interface{}) (*sql.Rows, error) {
- args, err := bindAnyArgs(n.Params, arg, n.Stmt.Mapper)
- if err != nil {
- return nil, err
- }
- return n.Stmt.Query(args...)
-}
-
-// QueryRow executes a named statement against the database. Because sqlx cannot
-// create a *sql.Row with an error condition pre-set for binding errors, sqlx
-// returns a *sqlx.Row instead.
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) QueryRow(arg interface{}) *Row {
- args, err := bindAnyArgs(n.Params, arg, n.Stmt.Mapper)
- if err != nil {
- return &Row{err: err}
- }
- return n.Stmt.QueryRowx(args...)
-}
-
-// MustExec execs a NamedStmt, panicing on error
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) MustExec(arg interface{}) sql.Result {
- res, err := n.Exec(arg)
- if err != nil {
- panic(err)
- }
- return res
-}
-
-// Queryx using this NamedStmt
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) Queryx(arg interface{}) (*Rows, error) {
- r, err := n.Query(arg)
- if err != nil {
- return nil, err
- }
- return &Rows{Rows: r, Mapper: n.Stmt.Mapper, unsafe: isUnsafe(n)}, err
-}
-
-// QueryRowx this NamedStmt. Because of limitations with QueryRow, this is
-// an alias for QueryRow.
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) QueryRowx(arg interface{}) *Row {
- return n.QueryRow(arg)
-}
-
-// Select using this NamedStmt
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) Select(dest interface{}, arg interface{}) error {
- rows, err := n.Queryx(arg)
- if err != nil {
- return err
- }
- // if something happens here, we want to make sure the rows are Closed
- defer rows.Close()
- return scanAll(rows, dest, false)
-}
-
-// Get using this NamedStmt
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) Get(dest interface{}, arg interface{}) error {
- r := n.QueryRowx(arg)
- return r.scanAny(dest, false)
-}
-
-// Unsafe creates an unsafe version of the NamedStmt
-func (n *NamedStmt) Unsafe() *NamedStmt {
- r := &NamedStmt{Params: n.Params, Stmt: n.Stmt, QueryString: n.QueryString}
- r.Stmt.unsafe = true
- return r
-}
-
-// A union interface of preparer and binder, required to be able to prepare
-// named statements (as the bindtype must be determined).
-type namedPreparer interface {
- Preparer
- binder
-}
-
-func prepareNamed(p namedPreparer, query string) (*NamedStmt, error) {
- bindType := BindType(p.DriverName())
- q, args, err := compileNamedQuery([]byte(query), bindType)
- if err != nil {
- return nil, err
- }
- stmt, err := Preparex(p, q)
- if err != nil {
- return nil, err
- }
- return &NamedStmt{
- QueryString: q,
- Params: args,
- Stmt: stmt,
- }, nil
-}
-
-func bindAnyArgs(names []string, arg interface{}, m *reflectx.Mapper) ([]interface{}, error) {
- if maparg, ok := arg.(map[string]interface{}); ok {
- return bindMapArgs(names, maparg)
- }
- return bindArgs(names, arg, m)
-}
-
-// private interface to generate a list of interfaces from a given struct
-// type, given a list of names to pull out of the struct. Used by public
-// BindStruct interface.
-func bindArgs(names []string, arg interface{}, m *reflectx.Mapper) ([]interface{}, error) {
- arglist := make([]interface{}, 0, len(names))
-
- // grab the indirected value of arg
- v := reflect.ValueOf(arg)
- for v = reflect.ValueOf(arg); v.Kind() == reflect.Ptr; {
- v = v.Elem()
- }
-
- err := m.TraversalsByNameFunc(v.Type(), names, func(i int, t []int) error {
- if len(t) == 0 {
- return fmt.Errorf("could not find name %s in %#v", names[i], arg)
- }
-
- val := reflectx.FieldByIndexesReadOnly(v, t)
- arglist = append(arglist, val.Interface())
-
- return nil
- })
-
- return arglist, err
-}
-
-// like bindArgs, but for maps.
-func bindMapArgs(names []string, arg map[string]interface{}) ([]interface{}, error) {
- arglist := make([]interface{}, 0, len(names))
-
- for _, name := range names {
- val, ok := arg[name]
- if !ok {
- return arglist, fmt.Errorf("could not find name %s in %#v", name, arg)
- }
- arglist = append(arglist, val)
- }
- return arglist, nil
-}
-
-// bindStruct binds a named parameter query with fields from a struct argument.
-// The rules for binding field names to parameter names follow the same
-// conventions as for StructScan, including obeying the `db` struct tags.
-func bindStruct(bindType int, query string, arg interface{}, m *reflectx.Mapper) (string, []interface{}, error) {
- bound, names, err := compileNamedQuery([]byte(query), bindType)
- if err != nil {
- return "", []interface{}{}, err
- }
-
- arglist, err := bindArgs(names, arg, m)
- if err != nil {
- return "", []interface{}{}, err
- }
-
- return bound, arglist, nil
-}
-
-// bindMap binds a named parameter query with a map of arguments.
-func bindMap(bindType int, query string, args map[string]interface{}) (string, []interface{}, error) {
- bound, names, err := compileNamedQuery([]byte(query), bindType)
- if err != nil {
- return "", []interface{}{}, err
- }
-
- arglist, err := bindMapArgs(names, args)
- return bound, arglist, err
-}
-
-// -- Compilation of Named Queries
-
-// Allow digits and letters in bind params; additionally runes are
-// checked against underscores, meaning that bind params can have be
-// alphanumeric with underscores. Mind the difference between unicode
-// digits and numbers, where '5' is a digit but '五' is not.
-var allowedBindRunes = []*unicode.RangeTable{unicode.Letter, unicode.Digit}
-
-// FIXME: this function isn't safe for unicode named params, as a failing test
-// can testify. This is not a regression but a failure of the original code
-// as well. It should be modified to range over runes in a string rather than
-// bytes, even though this is less convenient and slower. Hopefully the
-// addition of the prepared NamedStmt (which will only do this once) will make
-// up for the slightly slower ad-hoc NamedExec/NamedQuery.
-
-// compile a NamedQuery into an unbound query (using the '?' bindvar) and
-// a list of names.
-func compileNamedQuery(qs []byte, bindType int) (query string, names []string, err error) {
- names = make([]string, 0, 10)
- rebound := make([]byte, 0, len(qs))
-
- inName := false
- last := len(qs) - 1
- currentVar := 1
- name := make([]byte, 0, 10)
-
- for i, b := range qs {
- // a ':' while we're in a name is an error
- if b == ':' {
- // if this is the second ':' in a '::' escape sequence, append a ':'
- if inName && i > 0 && qs[i-1] == ':' {
- rebound = append(rebound, ':')
- inName = false
- continue
- } else if inName {
- err = errors.New("unexpected `:` while reading named param at " + strconv.Itoa(i))
- return query, names, err
- }
- inName = true
- name = []byte{}
- } else if inName && i > 0 && b == '=' {
- rebound = append(rebound, ':', '=')
- inName = false
- continue
- // if we're in a name, and this is an allowed character, continue
- } else if inName && (unicode.IsOneOf(allowedBindRunes, rune(b)) || b == '_' || b == '.') && i != last {
- // append the byte to the name if we are in a name and not on the last byte
- name = append(name, b)
- // if we're in a name and it's not an allowed character, the name is done
- } else if inName {
- inName = false
- // if this is the final byte of the string and it is part of the name, then
- // make sure to add it to the name
- if i == last && unicode.IsOneOf(allowedBindRunes, rune(b)) {
- name = append(name, b)
- }
- // add the string representation to the names list
- names = append(names, string(name))
- // add a proper bindvar for the bindType
- switch bindType {
- // oracle only supports named type bind vars even for positional
- case NAMED:
- rebound = append(rebound, ':')
- rebound = append(rebound, name...)
- case QUESTION, UNKNOWN:
- rebound = append(rebound, '?')
- case DOLLAR:
- rebound = append(rebound, '$')
- for _, b := range strconv.Itoa(currentVar) {
- rebound = append(rebound, byte(b))
- }
- currentVar++
- case AT:
- rebound = append(rebound, '@', 'p')
- for _, b := range strconv.Itoa(currentVar) {
- rebound = append(rebound, byte(b))
- }
- currentVar++
- }
- // add this byte to string unless it was not part of the name
- if i != last {
- rebound = append(rebound, b)
- } else if !unicode.IsOneOf(allowedBindRunes, rune(b)) {
- rebound = append(rebound, b)
- }
- } else {
- // this is a normal byte and should just go onto the rebound query
- rebound = append(rebound, b)
- }
- }
-
- return string(rebound), names, err
-}
-
-// BindNamed binds a struct or a map to a query with named parameters.
-// DEPRECATED: use sqlx.Named` instead of this, it may be removed in future.
-func BindNamed(bindType int, query string, arg interface{}) (string, []interface{}, error) {
- return bindNamedMapper(bindType, query, arg, mapper())
-}
-
-// Named takes a query using named parameters and an argument and
-// returns a new query with a list of args that can be executed by
-// a database. The return value uses the `?` bindvar.
-func Named(query string, arg interface{}) (string, []interface{}, error) {
- return bindNamedMapper(QUESTION, query, arg, mapper())
-}
-
-func bindNamedMapper(bindType int, query string, arg interface{}, m *reflectx.Mapper) (string, []interface{}, error) {
- if maparg, ok := arg.(map[string]interface{}); ok {
- return bindMap(bindType, query, maparg)
- }
- return bindStruct(bindType, query, arg, m)
-}
-
-// NamedQuery binds a named query and then runs Query on the result using the
-// provided Ext (sqlx.Tx, sqlx.Db). It works with both structs and with
-// map[string]interface{} types.
-func NamedQuery(e Ext, query string, arg interface{}) (*Rows, error) {
- q, args, err := bindNamedMapper(BindType(e.DriverName()), query, arg, mapperFor(e))
- if err != nil {
- return nil, err
- }
- return e.Queryx(q, args...)
-}
-
-// NamedExec uses BindStruct to get a query executable by the driver and
-// then runs Exec on the result. Returns an error from the binding
-// or the query excution itself.
-func NamedExec(e Ext, query string, arg interface{}) (sql.Result, error) {
- q, args, err := bindNamedMapper(BindType(e.DriverName()), query, arg, mapperFor(e))
- if err != nil {
- return nil, err
- }
- return e.Exec(q, args...)
-}
diff --git a/vendor/github.com/jmoiron/sqlx/named_context.go b/vendor/github.com/jmoiron/sqlx/named_context.go
deleted file mode 100644
index 9405007e2..000000000
--- a/vendor/github.com/jmoiron/sqlx/named_context.go
+++ /dev/null
@@ -1,132 +0,0 @@
-// +build go1.8
-
-package sqlx
-
-import (
- "context"
- "database/sql"
-)
-
-// A union interface of contextPreparer and binder, required to be able to
-// prepare named statements with context (as the bindtype must be determined).
-type namedPreparerContext interface {
- PreparerContext
- binder
-}
-
-func prepareNamedContext(ctx context.Context, p namedPreparerContext, query string) (*NamedStmt, error) {
- bindType := BindType(p.DriverName())
- q, args, err := compileNamedQuery([]byte(query), bindType)
- if err != nil {
- return nil, err
- }
- stmt, err := PreparexContext(ctx, p, q)
- if err != nil {
- return nil, err
- }
- return &NamedStmt{
- QueryString: q,
- Params: args,
- Stmt: stmt,
- }, nil
-}
-
-// ExecContext executes a named statement using the struct passed.
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) ExecContext(ctx context.Context, arg interface{}) (sql.Result, error) {
- args, err := bindAnyArgs(n.Params, arg, n.Stmt.Mapper)
- if err != nil {
- return *new(sql.Result), err
- }
- return n.Stmt.ExecContext(ctx, args...)
-}
-
-// QueryContext executes a named statement using the struct argument, returning rows.
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) QueryContext(ctx context.Context, arg interface{}) (*sql.Rows, error) {
- args, err := bindAnyArgs(n.Params, arg, n.Stmt.Mapper)
- if err != nil {
- return nil, err
- }
- return n.Stmt.QueryContext(ctx, args...)
-}
-
-// QueryRowContext executes a named statement against the database. Because sqlx cannot
-// create a *sql.Row with an error condition pre-set for binding errors, sqlx
-// returns a *sqlx.Row instead.
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) QueryRowContext(ctx context.Context, arg interface{}) *Row {
- args, err := bindAnyArgs(n.Params, arg, n.Stmt.Mapper)
- if err != nil {
- return &Row{err: err}
- }
- return n.Stmt.QueryRowxContext(ctx, args...)
-}
-
-// MustExecContext execs a NamedStmt, panicing on error
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) MustExecContext(ctx context.Context, arg interface{}) sql.Result {
- res, err := n.ExecContext(ctx, arg)
- if err != nil {
- panic(err)
- }
- return res
-}
-
-// QueryxContext using this NamedStmt
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) QueryxContext(ctx context.Context, arg interface{}) (*Rows, error) {
- r, err := n.QueryContext(ctx, arg)
- if err != nil {
- return nil, err
- }
- return &Rows{Rows: r, Mapper: n.Stmt.Mapper, unsafe: isUnsafe(n)}, err
-}
-
-// QueryRowxContext this NamedStmt. Because of limitations with QueryRow, this is
-// an alias for QueryRow.
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) QueryRowxContext(ctx context.Context, arg interface{}) *Row {
- return n.QueryRowContext(ctx, arg)
-}
-
-// SelectContext using this NamedStmt
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) SelectContext(ctx context.Context, dest interface{}, arg interface{}) error {
- rows, err := n.QueryxContext(ctx, arg)
- if err != nil {
- return err
- }
- // if something happens here, we want to make sure the rows are Closed
- defer rows.Close()
- return scanAll(rows, dest, false)
-}
-
-// GetContext using this NamedStmt
-// Any named placeholder parameters are replaced with fields from arg.
-func (n *NamedStmt) GetContext(ctx context.Context, dest interface{}, arg interface{}) error {
- r := n.QueryRowxContext(ctx, arg)
- return r.scanAny(dest, false)
-}
-
-// NamedQueryContext binds a named query and then runs Query on the result using the
-// provided Ext (sqlx.Tx, sqlx.Db). It works with both structs and with
-// map[string]interface{} types.
-func NamedQueryContext(ctx context.Context, e ExtContext, query string, arg interface{}) (*Rows, error) {
- q, args, err := bindNamedMapper(BindType(e.DriverName()), query, arg, mapperFor(e))
- if err != nil {
- return nil, err
- }
- return e.QueryxContext(ctx, q, args...)
-}
-
-// NamedExecContext uses BindStruct to get a query executable by the driver and
-// then runs Exec on the result. Returns an error from the binding
-// or the query excution itself.
-func NamedExecContext(ctx context.Context, e ExtContext, query string, arg interface{}) (sql.Result, error) {
- q, args, err := bindNamedMapper(BindType(e.DriverName()), query, arg, mapperFor(e))
- if err != nil {
- return nil, err
- }
- return e.ExecContext(ctx, q, args...)
-}
diff --git a/vendor/github.com/jmoiron/sqlx/reflectx/README.md b/vendor/github.com/jmoiron/sqlx/reflectx/README.md
deleted file mode 100644
index f01d3d1f0..000000000
--- a/vendor/github.com/jmoiron/sqlx/reflectx/README.md
+++ /dev/null
@@ -1,17 +0,0 @@
-# reflectx
-
-The sqlx package has special reflect needs. In particular, it needs to:
-
-* be able to map a name to a field
-* understand embedded structs
-* understand mapping names to fields by a particular tag
-* user specified name -> field mapping functions
-
-These behaviors mimic the behaviors by the standard library marshallers and also the
-behavior of standard Go accessors.
-
-The first two are amply taken care of by `Reflect.Value.FieldByName`, and the third is
-addressed by `Reflect.Value.FieldByNameFunc`, but these don't quite understand struct
-tags in the ways that are vital to most marshallers, and they are slow.
-
-This reflectx package extends reflect to achieve these goals.
diff --git a/vendor/github.com/jmoiron/sqlx/reflectx/reflect.go b/vendor/github.com/jmoiron/sqlx/reflectx/reflect.go
deleted file mode 100644
index 73c21eb39..000000000
--- a/vendor/github.com/jmoiron/sqlx/reflectx/reflect.go
+++ /dev/null
@@ -1,441 +0,0 @@
-// Package reflectx implements extensions to the standard reflect lib suitable
-// for implementing marshalling and unmarshalling packages. The main Mapper type
-// allows for Go-compatible named attribute access, including accessing embedded
-// struct attributes and the ability to use functions and struct tags to
-// customize field names.
-//
-package reflectx
-
-import (
- "reflect"
- "runtime"
- "strings"
- "sync"
-)
-
-// A FieldInfo is metadata for a struct field.
-type FieldInfo struct {
- Index []int
- Path string
- Field reflect.StructField
- Zero reflect.Value
- Name string
- Options map[string]string
- Embedded bool
- Children []*FieldInfo
- Parent *FieldInfo
-}
-
-// A StructMap is an index of field metadata for a struct.
-type StructMap struct {
- Tree *FieldInfo
- Index []*FieldInfo
- Paths map[string]*FieldInfo
- Names map[string]*FieldInfo
-}
-
-// GetByPath returns a *FieldInfo for a given string path.
-func (f StructMap) GetByPath(path string) *FieldInfo {
- return f.Paths[path]
-}
-
-// GetByTraversal returns a *FieldInfo for a given integer path. It is
-// analogous to reflect.FieldByIndex, but using the cached traversal
-// rather than re-executing the reflect machinery each time.
-func (f StructMap) GetByTraversal(index []int) *FieldInfo {
- if len(index) == 0 {
- return nil
- }
-
- tree := f.Tree
- for _, i := range index {
- if i >= len(tree.Children) || tree.Children[i] == nil {
- return nil
- }
- tree = tree.Children[i]
- }
- return tree
-}
-
-// Mapper is a general purpose mapper of names to struct fields. A Mapper
-// behaves like most marshallers in the standard library, obeying a field tag
-// for name mapping but also providing a basic transform function.
-type Mapper struct {
- cache map[reflect.Type]*StructMap
- tagName string
- tagMapFunc func(string) string
- mapFunc func(string) string
- mutex sync.Mutex
-}
-
-// NewMapper returns a new mapper using the tagName as its struct field tag.
-// If tagName is the empty string, it is ignored.
-func NewMapper(tagName string) *Mapper {
- return &Mapper{
- cache: make(map[reflect.Type]*StructMap),
- tagName: tagName,
- }
-}
-
-// NewMapperTagFunc returns a new mapper which contains a mapper for field names
-// AND a mapper for tag values. This is useful for tags like json which can
-// have values like "name,omitempty".
-func NewMapperTagFunc(tagName string, mapFunc, tagMapFunc func(string) string) *Mapper {
- return &Mapper{
- cache: make(map[reflect.Type]*StructMap),
- tagName: tagName,
- mapFunc: mapFunc,
- tagMapFunc: tagMapFunc,
- }
-}
-
-// NewMapperFunc returns a new mapper which optionally obeys a field tag and
-// a struct field name mapper func given by f. Tags will take precedence, but
-// for any other field, the mapped name will be f(field.Name)
-func NewMapperFunc(tagName string, f func(string) string) *Mapper {
- return &Mapper{
- cache: make(map[reflect.Type]*StructMap),
- tagName: tagName,
- mapFunc: f,
- }
-}
-
-// TypeMap returns a mapping of field strings to int slices representing
-// the traversal down the struct to reach the field.
-func (m *Mapper) TypeMap(t reflect.Type) *StructMap {
- m.mutex.Lock()
- mapping, ok := m.cache[t]
- if !ok {
- mapping = getMapping(t, m.tagName, m.mapFunc, m.tagMapFunc)
- m.cache[t] = mapping
- }
- m.mutex.Unlock()
- return mapping
-}
-
-// FieldMap returns the mapper's mapping of field names to reflect values. Panics
-// if v's Kind is not Struct, or v is not Indirectable to a struct kind.
-func (m *Mapper) FieldMap(v reflect.Value) map[string]reflect.Value {
- v = reflect.Indirect(v)
- mustBe(v, reflect.Struct)
-
- r := map[string]reflect.Value{}
- tm := m.TypeMap(v.Type())
- for tagName, fi := range tm.Names {
- r[tagName] = FieldByIndexes(v, fi.Index)
- }
- return r
-}
-
-// FieldByName returns a field by its mapped name as a reflect.Value.
-// Panics if v's Kind is not Struct or v is not Indirectable to a struct Kind.
-// Returns zero Value if the name is not found.
-func (m *Mapper) FieldByName(v reflect.Value, name string) reflect.Value {
- v = reflect.Indirect(v)
- mustBe(v, reflect.Struct)
-
- tm := m.TypeMap(v.Type())
- fi, ok := tm.Names[name]
- if !ok {
- return v
- }
- return FieldByIndexes(v, fi.Index)
-}
-
-// FieldsByName returns a slice of values corresponding to the slice of names
-// for the value. Panics if v's Kind is not Struct or v is not Indirectable
-// to a struct Kind. Returns zero Value for each name not found.
-func (m *Mapper) FieldsByName(v reflect.Value, names []string) []reflect.Value {
- v = reflect.Indirect(v)
- mustBe(v, reflect.Struct)
-
- tm := m.TypeMap(v.Type())
- vals := make([]reflect.Value, 0, len(names))
- for _, name := range names {
- fi, ok := tm.Names[name]
- if !ok {
- vals = append(vals, *new(reflect.Value))
- } else {
- vals = append(vals, FieldByIndexes(v, fi.Index))
- }
- }
- return vals
-}
-
-// TraversalsByName returns a slice of int slices which represent the struct
-// traversals for each mapped name. Panics if t is not a struct or Indirectable
-// to a struct. Returns empty int slice for each name not found.
-func (m *Mapper) TraversalsByName(t reflect.Type, names []string) [][]int {
- r := make([][]int, 0, len(names))
- m.TraversalsByNameFunc(t, names, func(_ int, i []int) error {
- if i == nil {
- r = append(r, []int{})
- } else {
- r = append(r, i)
- }
-
- return nil
- })
- return r
-}
-
-// TraversalsByNameFunc traverses the mapped names and calls fn with the index of
-// each name and the struct traversal represented by that name. Panics if t is not
-// a struct or Indirectable to a struct. Returns the first error returned by fn or nil.
-func (m *Mapper) TraversalsByNameFunc(t reflect.Type, names []string, fn func(int, []int) error) error {
- t = Deref(t)
- mustBe(t, reflect.Struct)
- tm := m.TypeMap(t)
- for i, name := range names {
- fi, ok := tm.Names[name]
- if !ok {
- if err := fn(i, nil); err != nil {
- return err
- }
- } else {
- if err := fn(i, fi.Index); err != nil {
- return err
- }
- }
- }
- return nil
-}
-
-// FieldByIndexes returns a value for the field given by the struct traversal
-// for the given value.
-func FieldByIndexes(v reflect.Value, indexes []int) reflect.Value {
- for _, i := range indexes {
- v = reflect.Indirect(v).Field(i)
- // if this is a pointer and it's nil, allocate a new value and set it
- if v.Kind() == reflect.Ptr && v.IsNil() {
- alloc := reflect.New(Deref(v.Type()))
- v.Set(alloc)
- }
- if v.Kind() == reflect.Map && v.IsNil() {
- v.Set(reflect.MakeMap(v.Type()))
- }
- }
- return v
-}
-
-// FieldByIndexesReadOnly returns a value for a particular struct traversal,
-// but is not concerned with allocating nil pointers because the value is
-// going to be used for reading and not setting.
-func FieldByIndexesReadOnly(v reflect.Value, indexes []int) reflect.Value {
- for _, i := range indexes {
- v = reflect.Indirect(v).Field(i)
- }
- return v
-}
-
-// Deref is Indirect for reflect.Types
-func Deref(t reflect.Type) reflect.Type {
- if t.Kind() == reflect.Ptr {
- t = t.Elem()
- }
- return t
-}
-
-// -- helpers & utilities --
-
-type kinder interface {
- Kind() reflect.Kind
-}
-
-// mustBe checks a value against a kind, panicing with a reflect.ValueError
-// if the kind isn't that which is required.
-func mustBe(v kinder, expected reflect.Kind) {
- if k := v.Kind(); k != expected {
- panic(&reflect.ValueError{Method: methodName(), Kind: k})
- }
-}
-
-// methodName returns the caller of the function calling methodName
-func methodName() string {
- pc, _, _, _ := runtime.Caller(2)
- f := runtime.FuncForPC(pc)
- if f == nil {
- return "unknown method"
- }
- return f.Name()
-}
-
-type typeQueue struct {
- t reflect.Type
- fi *FieldInfo
- pp string // Parent path
-}
-
-// A copying append that creates a new slice each time.
-func apnd(is []int, i int) []int {
- x := make([]int, len(is)+1)
- for p, n := range is {
- x[p] = n
- }
- x[len(x)-1] = i
- return x
-}
-
-type mapf func(string) string
-
-// parseName parses the tag and the target name for the given field using
-// the tagName (eg 'json' for `json:"foo"` tags), mapFunc for mapping the
-// field's name to a target name, and tagMapFunc for mapping the tag to
-// a target name.
-func parseName(field reflect.StructField, tagName string, mapFunc, tagMapFunc mapf) (tag, fieldName string) {
- // first, set the fieldName to the field's name
- fieldName = field.Name
- // if a mapFunc is set, use that to override the fieldName
- if mapFunc != nil {
- fieldName = mapFunc(fieldName)
- }
-
- // if there's no tag to look for, return the field name
- if tagName == "" {
- return "", fieldName
- }
-
- // if this tag is not set using the normal convention in the tag,
- // then return the fieldname.. this check is done because according
- // to the reflect documentation:
- // If the tag does not have the conventional format,
- // the value returned by Get is unspecified.
- // which doesn't sound great.
- if !strings.Contains(string(field.Tag), tagName+":") {
- return "", fieldName
- }
-
- // at this point we're fairly sure that we have a tag, so lets pull it out
- tag = field.Tag.Get(tagName)
-
- // if we have a mapper function, call it on the whole tag
- // XXX: this is a change from the old version, which pulled out the name
- // before the tagMapFunc could be run, but I think this is the right way
- if tagMapFunc != nil {
- tag = tagMapFunc(tag)
- }
-
- // finally, split the options from the name
- parts := strings.Split(tag, ",")
- fieldName = parts[0]
-
- return tag, fieldName
-}
-
-// parseOptions parses options out of a tag string, skipping the name
-func parseOptions(tag string) map[string]string {
- parts := strings.Split(tag, ",")
- options := make(map[string]string, len(parts))
- if len(parts) > 1 {
- for _, opt := range parts[1:] {
- // short circuit potentially expensive split op
- if strings.Contains(opt, "=") {
- kv := strings.Split(opt, "=")
- options[kv[0]] = kv[1]
- continue
- }
- options[opt] = ""
- }
- }
- return options
-}
-
-// getMapping returns a mapping for the t type, using the tagName, mapFunc and
-// tagMapFunc to determine the canonical names of fields.
-func getMapping(t reflect.Type, tagName string, mapFunc, tagMapFunc mapf) *StructMap {
- m := []*FieldInfo{}
-
- root := &FieldInfo{}
- queue := []typeQueue{}
- queue = append(queue, typeQueue{Deref(t), root, ""})
-
-QueueLoop:
- for len(queue) != 0 {
- // pop the first item off of the queue
- tq := queue[0]
- queue = queue[1:]
-
- // ignore recursive field
- for p := tq.fi.Parent; p != nil; p = p.Parent {
- if tq.fi.Field.Type == p.Field.Type {
- continue QueueLoop
- }
- }
-
- nChildren := 0
- if tq.t.Kind() == reflect.Struct {
- nChildren = tq.t.NumField()
- }
- tq.fi.Children = make([]*FieldInfo, nChildren)
-
- // iterate through all of its fields
- for fieldPos := 0; fieldPos < nChildren; fieldPos++ {
-
- f := tq.t.Field(fieldPos)
-
- // parse the tag and the target name using the mapping options for this field
- tag, name := parseName(f, tagName, mapFunc, tagMapFunc)
-
- // if the name is "-", disabled via a tag, skip it
- if name == "-" {
- continue
- }
-
- fi := FieldInfo{
- Field: f,
- Name: name,
- Zero: reflect.New(f.Type).Elem(),
- Options: parseOptions(tag),
- }
-
- // if the path is empty this path is just the name
- if tq.pp == "" {
- fi.Path = fi.Name
- } else {
- fi.Path = tq.pp + "." + fi.Name
- }
-
- // skip unexported fields
- if len(f.PkgPath) != 0 && !f.Anonymous {
- continue
- }
-
- // bfs search of anonymous embedded structs
- if f.Anonymous {
- pp := tq.pp
- if tag != "" {
- pp = fi.Path
- }
-
- fi.Embedded = true
- fi.Index = apnd(tq.fi.Index, fieldPos)
- nChildren := 0
- ft := Deref(f.Type)
- if ft.Kind() == reflect.Struct {
- nChildren = ft.NumField()
- }
- fi.Children = make([]*FieldInfo, nChildren)
- queue = append(queue, typeQueue{Deref(f.Type), &fi, pp})
- } else if fi.Zero.Kind() == reflect.Struct || (fi.Zero.Kind() == reflect.Ptr && fi.Zero.Type().Elem().Kind() == reflect.Struct) {
- fi.Index = apnd(tq.fi.Index, fieldPos)
- fi.Children = make([]*FieldInfo, Deref(f.Type).NumField())
- queue = append(queue, typeQueue{Deref(f.Type), &fi, fi.Path})
- }
-
- fi.Index = apnd(tq.fi.Index, fieldPos)
- fi.Parent = tq.fi
- tq.fi.Children[fieldPos] = &fi
- m = append(m, &fi)
- }
- }
-
- flds := &StructMap{Index: m, Tree: root, Paths: map[string]*FieldInfo{}, Names: map[string]*FieldInfo{}}
- for _, fi := range flds.Index {
- flds.Paths[fi.Path] = fi
- if fi.Name != "" && !fi.Embedded {
- flds.Names[fi.Path] = fi
- }
- }
-
- return flds
-}
diff --git a/vendor/github.com/jmoiron/sqlx/sqlx.go b/vendor/github.com/jmoiron/sqlx/sqlx.go
deleted file mode 100644
index 3f000f47c..000000000
--- a/vendor/github.com/jmoiron/sqlx/sqlx.go
+++ /dev/null
@@ -1,1045 +0,0 @@
-package sqlx
-
-import (
- "database/sql"
- "database/sql/driver"
- "errors"
- "fmt"
-
- "io/ioutil"
- "path/filepath"
- "reflect"
- "strings"
- "sync"
-
- "github.com/jmoiron/sqlx/reflectx"
-)
-
-// Although the NameMapper is convenient, in practice it should not
-// be relied on except for application code. If you are writing a library
-// that uses sqlx, you should be aware that the name mappings you expect
-// can be overridden by your user's application.
-
-// NameMapper is used to map column names to struct field names. By default,
-// it uses strings.ToLower to lowercase struct field names. It can be set
-// to whatever you want, but it is encouraged to be set before sqlx is used
-// as name-to-field mappings are cached after first use on a type.
-var NameMapper = strings.ToLower
-var origMapper = reflect.ValueOf(NameMapper)
-
-// Rather than creating on init, this is created when necessary so that
-// importers have time to customize the NameMapper.
-var mpr *reflectx.Mapper
-
-// mprMu protects mpr.
-var mprMu sync.Mutex
-
-// mapper returns a valid mapper using the configured NameMapper func.
-func mapper() *reflectx.Mapper {
- mprMu.Lock()
- defer mprMu.Unlock()
-
- if mpr == nil {
- mpr = reflectx.NewMapperFunc("db", NameMapper)
- } else if origMapper != reflect.ValueOf(NameMapper) {
- // if NameMapper has changed, create a new mapper
- mpr = reflectx.NewMapperFunc("db", NameMapper)
- origMapper = reflect.ValueOf(NameMapper)
- }
- return mpr
-}
-
-// isScannable takes the reflect.Type and the actual dest value and returns
-// whether or not it's Scannable. Something is scannable if:
-// * it is not a struct
-// * it implements sql.Scanner
-// * it has no exported fields
-func isScannable(t reflect.Type) bool {
- if reflect.PtrTo(t).Implements(_scannerInterface) {
- return true
- }
- if t.Kind() != reflect.Struct {
- return true
- }
-
- // it's not important that we use the right mapper for this particular object,
- // we're only concerned on how many exported fields this struct has
- m := mapper()
- if len(m.TypeMap(t).Index) == 0 {
- return true
- }
- return false
-}
-
-// ColScanner is an interface used by MapScan and SliceScan
-type ColScanner interface {
- Columns() ([]string, error)
- Scan(dest ...interface{}) error
- Err() error
-}
-
-// Queryer is an interface used by Get and Select
-type Queryer interface {
- Query(query string, args ...interface{}) (*sql.Rows, error)
- Queryx(query string, args ...interface{}) (*Rows, error)
- QueryRowx(query string, args ...interface{}) *Row
-}
-
-// Execer is an interface used by MustExec and LoadFile
-type Execer interface {
- Exec(query string, args ...interface{}) (sql.Result, error)
-}
-
-// Binder is an interface for something which can bind queries (Tx, DB)
-type binder interface {
- DriverName() string
- Rebind(string) string
- BindNamed(string, interface{}) (string, []interface{}, error)
-}
-
-// Ext is a union interface which can bind, query, and exec, used by
-// NamedQuery and NamedExec.
-type Ext interface {
- binder
- Queryer
- Execer
-}
-
-// Preparer is an interface used by Preparex.
-type Preparer interface {
- Prepare(query string) (*sql.Stmt, error)
-}
-
-// determine if any of our extensions are unsafe
-func isUnsafe(i interface{}) bool {
- switch v := i.(type) {
- case Row:
- return v.unsafe
- case *Row:
- return v.unsafe
- case Rows:
- return v.unsafe
- case *Rows:
- return v.unsafe
- case NamedStmt:
- return v.Stmt.unsafe
- case *NamedStmt:
- return v.Stmt.unsafe
- case Stmt:
- return v.unsafe
- case *Stmt:
- return v.unsafe
- case qStmt:
- return v.unsafe
- case *qStmt:
- return v.unsafe
- case DB:
- return v.unsafe
- case *DB:
- return v.unsafe
- case Tx:
- return v.unsafe
- case *Tx:
- return v.unsafe
- case sql.Rows, *sql.Rows:
- return false
- default:
- return false
- }
-}
-
-func mapperFor(i interface{}) *reflectx.Mapper {
- switch i.(type) {
- case DB:
- return i.(DB).Mapper
- case *DB:
- return i.(*DB).Mapper
- case Tx:
- return i.(Tx).Mapper
- case *Tx:
- return i.(*Tx).Mapper
- default:
- return mapper()
- }
-}
-
-var _scannerInterface = reflect.TypeOf((*sql.Scanner)(nil)).Elem()
-var _valuerInterface = reflect.TypeOf((*driver.Valuer)(nil)).Elem()
-
-// Row is a reimplementation of sql.Row in order to gain access to the underlying
-// sql.Rows.Columns() data, necessary for StructScan.
-type Row struct {
- err error
- unsafe bool
- rows *sql.Rows
- Mapper *reflectx.Mapper
-}
-
-// Scan is a fixed implementation of sql.Row.Scan, which does not discard the
-// underlying error from the internal rows object if it exists.
-func (r *Row) Scan(dest ...interface{}) error {
- if r.err != nil {
- return r.err
- }
-
- // TODO(bradfitz): for now we need to defensively clone all
- // []byte that the driver returned (not permitting
- // *RawBytes in Rows.Scan), since we're about to close
- // the Rows in our defer, when we return from this function.
- // the contract with the driver.Next(...) interface is that it
- // can return slices into read-only temporary memory that's
- // only valid until the next Scan/Close. But the TODO is that
- // for a lot of drivers, this copy will be unnecessary. We
- // should provide an optional interface for drivers to
- // implement to say, "don't worry, the []bytes that I return
- // from Next will not be modified again." (for instance, if
- // they were obtained from the network anyway) But for now we
- // don't care.
- defer r.rows.Close()
- for _, dp := range dest {
- if _, ok := dp.(*sql.RawBytes); ok {
- return errors.New("sql: RawBytes isn't allowed on Row.Scan")
- }
- }
-
- if !r.rows.Next() {
- if err := r.rows.Err(); err != nil {
- return err
- }
- return sql.ErrNoRows
- }
- err := r.rows.Scan(dest...)
- if err != nil {
- return err
- }
- // Make sure the query can be processed to completion with no errors.
- if err := r.rows.Close(); err != nil {
- return err
- }
- return nil
-}
-
-// Columns returns the underlying sql.Rows.Columns(), or the deferred error usually
-// returned by Row.Scan()
-func (r *Row) Columns() ([]string, error) {
- if r.err != nil {
- return []string{}, r.err
- }
- return r.rows.Columns()
-}
-
-// ColumnTypes returns the underlying sql.Rows.ColumnTypes(), or the deferred error
-func (r *Row) ColumnTypes() ([]*sql.ColumnType, error) {
- if r.err != nil {
- return []*sql.ColumnType{}, r.err
- }
- return r.rows.ColumnTypes()
-}
-
-// Err returns the error encountered while scanning.
-func (r *Row) Err() error {
- return r.err
-}
-
-// DB is a wrapper around sql.DB which keeps track of the driverName upon Open,
-// used mostly to automatically bind named queries using the right bindvars.
-type DB struct {
- *sql.DB
- driverName string
- unsafe bool
- Mapper *reflectx.Mapper
-}
-
-// NewDb returns a new sqlx DB wrapper for a pre-existing *sql.DB. The
-// driverName of the original database is required for named query support.
-func NewDb(db *sql.DB, driverName string) *DB {
- return &DB{DB: db, driverName: driverName, Mapper: mapper()}
-}
-
-// DriverName returns the driverName passed to the Open function for this DB.
-func (db *DB) DriverName() string {
- return db.driverName
-}
-
-// Open is the same as sql.Open, but returns an *sqlx.DB instead.
-func Open(driverName, dataSourceName string) (*DB, error) {
- db, err := sql.Open(driverName, dataSourceName)
- if err != nil {
- return nil, err
- }
- return &DB{DB: db, driverName: driverName, Mapper: mapper()}, err
-}
-
-// MustOpen is the same as sql.Open, but returns an *sqlx.DB instead and panics on error.
-func MustOpen(driverName, dataSourceName string) *DB {
- db, err := Open(driverName, dataSourceName)
- if err != nil {
- panic(err)
- }
- return db
-}
-
-// MapperFunc sets a new mapper for this db using the default sqlx struct tag
-// and the provided mapper function.
-func (db *DB) MapperFunc(mf func(string) string) {
- db.Mapper = reflectx.NewMapperFunc("db", mf)
-}
-
-// Rebind transforms a query from QUESTION to the DB driver's bindvar type.
-func (db *DB) Rebind(query string) string {
- return Rebind(BindType(db.driverName), query)
-}
-
-// Unsafe returns a version of DB which will silently succeed to scan when
-// columns in the SQL result have no fields in the destination struct.
-// sqlx.Stmt and sqlx.Tx which are created from this DB will inherit its
-// safety behavior.
-func (db *DB) Unsafe() *DB {
- return &DB{DB: db.DB, driverName: db.driverName, unsafe: true, Mapper: db.Mapper}
-}
-
-// BindNamed binds a query using the DB driver's bindvar type.
-func (db *DB) BindNamed(query string, arg interface{}) (string, []interface{}, error) {
- return bindNamedMapper(BindType(db.driverName), query, arg, db.Mapper)
-}
-
-// NamedQuery using this DB.
-// Any named placeholder parameters are replaced with fields from arg.
-func (db *DB) NamedQuery(query string, arg interface{}) (*Rows, error) {
- return NamedQuery(db, query, arg)
-}
-
-// NamedExec using this DB.
-// Any named placeholder parameters are replaced with fields from arg.
-func (db *DB) NamedExec(query string, arg interface{}) (sql.Result, error) {
- return NamedExec(db, query, arg)
-}
-
-// Select using this DB.
-// Any placeholder parameters are replaced with supplied args.
-func (db *DB) Select(dest interface{}, query string, args ...interface{}) error {
- return Select(db, dest, query, args...)
-}
-
-// Get using this DB.
-// Any placeholder parameters are replaced with supplied args.
-// An error is returned if the result set is empty.
-func (db *DB) Get(dest interface{}, query string, args ...interface{}) error {
- return Get(db, dest, query, args...)
-}
-
-// MustBegin starts a transaction, and panics on error. Returns an *sqlx.Tx instead
-// of an *sql.Tx.
-func (db *DB) MustBegin() *Tx {
- tx, err := db.Beginx()
- if err != nil {
- panic(err)
- }
- return tx
-}
-
-// Beginx begins a transaction and returns an *sqlx.Tx instead of an *sql.Tx.
-func (db *DB) Beginx() (*Tx, error) {
- tx, err := db.DB.Begin()
- if err != nil {
- return nil, err
- }
- return &Tx{Tx: tx, driverName: db.driverName, unsafe: db.unsafe, Mapper: db.Mapper}, err
-}
-
-// Queryx queries the database and returns an *sqlx.Rows.
-// Any placeholder parameters are replaced with supplied args.
-func (db *DB) Queryx(query string, args ...interface{}) (*Rows, error) {
- r, err := db.DB.Query(query, args...)
- if err != nil {
- return nil, err
- }
- return &Rows{Rows: r, unsafe: db.unsafe, Mapper: db.Mapper}, err
-}
-
-// QueryRowx queries the database and returns an *sqlx.Row.
-// Any placeholder parameters are replaced with supplied args.
-func (db *DB) QueryRowx(query string, args ...interface{}) *Row {
- rows, err := db.DB.Query(query, args...)
- return &Row{rows: rows, err: err, unsafe: db.unsafe, Mapper: db.Mapper}
-}
-
-// MustExec (panic) runs MustExec using this database.
-// Any placeholder parameters are replaced with supplied args.
-func (db *DB) MustExec(query string, args ...interface{}) sql.Result {
- return MustExec(db, query, args...)
-}
-
-// Preparex returns an sqlx.Stmt instead of a sql.Stmt
-func (db *DB) Preparex(query string) (*Stmt, error) {
- return Preparex(db, query)
-}
-
-// PrepareNamed returns an sqlx.NamedStmt
-func (db *DB) PrepareNamed(query string) (*NamedStmt, error) {
- return prepareNamed(db, query)
-}
-
-// Tx is an sqlx wrapper around sql.Tx with extra functionality
-type Tx struct {
- *sql.Tx
- driverName string
- unsafe bool
- Mapper *reflectx.Mapper
-}
-
-// DriverName returns the driverName used by the DB which began this transaction.
-func (tx *Tx) DriverName() string {
- return tx.driverName
-}
-
-// Rebind a query within a transaction's bindvar type.
-func (tx *Tx) Rebind(query string) string {
- return Rebind(BindType(tx.driverName), query)
-}
-
-// Unsafe returns a version of Tx which will silently succeed to scan when
-// columns in the SQL result have no fields in the destination struct.
-func (tx *Tx) Unsafe() *Tx {
- return &Tx{Tx: tx.Tx, driverName: tx.driverName, unsafe: true, Mapper: tx.Mapper}
-}
-
-// BindNamed binds a query within a transaction's bindvar type.
-func (tx *Tx) BindNamed(query string, arg interface{}) (string, []interface{}, error) {
- return bindNamedMapper(BindType(tx.driverName), query, arg, tx.Mapper)
-}
-
-// NamedQuery within a transaction.
-// Any named placeholder parameters are replaced with fields from arg.
-func (tx *Tx) NamedQuery(query string, arg interface{}) (*Rows, error) {
- return NamedQuery(tx, query, arg)
-}
-
-// NamedExec a named query within a transaction.
-// Any named placeholder parameters are replaced with fields from arg.
-func (tx *Tx) NamedExec(query string, arg interface{}) (sql.Result, error) {
- return NamedExec(tx, query, arg)
-}
-
-// Select within a transaction.
-// Any placeholder parameters are replaced with supplied args.
-func (tx *Tx) Select(dest interface{}, query string, args ...interface{}) error {
- return Select(tx, dest, query, args...)
-}
-
-// Queryx within a transaction.
-// Any placeholder parameters are replaced with supplied args.
-func (tx *Tx) Queryx(query string, args ...interface{}) (*Rows, error) {
- r, err := tx.Tx.Query(query, args...)
- if err != nil {
- return nil, err
- }
- return &Rows{Rows: r, unsafe: tx.unsafe, Mapper: tx.Mapper}, err
-}
-
-// QueryRowx within a transaction.
-// Any placeholder parameters are replaced with supplied args.
-func (tx *Tx) QueryRowx(query string, args ...interface{}) *Row {
- rows, err := tx.Tx.Query(query, args...)
- return &Row{rows: rows, err: err, unsafe: tx.unsafe, Mapper: tx.Mapper}
-}
-
-// Get within a transaction.
-// Any placeholder parameters are replaced with supplied args.
-// An error is returned if the result set is empty.
-func (tx *Tx) Get(dest interface{}, query string, args ...interface{}) error {
- return Get(tx, dest, query, args...)
-}
-
-// MustExec runs MustExec within a transaction.
-// Any placeholder parameters are replaced with supplied args.
-func (tx *Tx) MustExec(query string, args ...interface{}) sql.Result {
- return MustExec(tx, query, args...)
-}
-
-// Preparex a statement within a transaction.
-func (tx *Tx) Preparex(query string) (*Stmt, error) {
- return Preparex(tx, query)
-}
-
-// Stmtx returns a version of the prepared statement which runs within a transaction. Provided
-// stmt can be either *sql.Stmt or *sqlx.Stmt.
-func (tx *Tx) Stmtx(stmt interface{}) *Stmt {
- var s *sql.Stmt
- switch v := stmt.(type) {
- case Stmt:
- s = v.Stmt
- case *Stmt:
- s = v.Stmt
- case *sql.Stmt:
- s = v
- default:
- panic(fmt.Sprintf("non-statement type %v passed to Stmtx", reflect.ValueOf(stmt).Type()))
- }
- return &Stmt{Stmt: tx.Stmt(s), Mapper: tx.Mapper}
-}
-
-// NamedStmt returns a version of the prepared statement which runs within a transaction.
-func (tx *Tx) NamedStmt(stmt *NamedStmt) *NamedStmt {
- return &NamedStmt{
- QueryString: stmt.QueryString,
- Params: stmt.Params,
- Stmt: tx.Stmtx(stmt.Stmt),
- }
-}
-
-// PrepareNamed returns an sqlx.NamedStmt
-func (tx *Tx) PrepareNamed(query string) (*NamedStmt, error) {
- return prepareNamed(tx, query)
-}
-
-// Stmt is an sqlx wrapper around sql.Stmt with extra functionality
-type Stmt struct {
- *sql.Stmt
- unsafe bool
- Mapper *reflectx.Mapper
-}
-
-// Unsafe returns a version of Stmt which will silently succeed to scan when
-// columns in the SQL result have no fields in the destination struct.
-func (s *Stmt) Unsafe() *Stmt {
- return &Stmt{Stmt: s.Stmt, unsafe: true, Mapper: s.Mapper}
-}
-
-// Select using the prepared statement.
-// Any placeholder parameters are replaced with supplied args.
-func (s *Stmt) Select(dest interface{}, args ...interface{}) error {
- return Select(&qStmt{s}, dest, "", args...)
-}
-
-// Get using the prepared statement.
-// Any placeholder parameters are replaced with supplied args.
-// An error is returned if the result set is empty.
-func (s *Stmt) Get(dest interface{}, args ...interface{}) error {
- return Get(&qStmt{s}, dest, "", args...)
-}
-
-// MustExec (panic) using this statement. Note that the query portion of the error
-// output will be blank, as Stmt does not expose its query.
-// Any placeholder parameters are replaced with supplied args.
-func (s *Stmt) MustExec(args ...interface{}) sql.Result {
- return MustExec(&qStmt{s}, "", args...)
-}
-
-// QueryRowx using this statement.
-// Any placeholder parameters are replaced with supplied args.
-func (s *Stmt) QueryRowx(args ...interface{}) *Row {
- qs := &qStmt{s}
- return qs.QueryRowx("", args...)
-}
-
-// Queryx using this statement.
-// Any placeholder parameters are replaced with supplied args.
-func (s *Stmt) Queryx(args ...interface{}) (*Rows, error) {
- qs := &qStmt{s}
- return qs.Queryx("", args...)
-}
-
-// qStmt is an unexposed wrapper which lets you use a Stmt as a Queryer & Execer by
-// implementing those interfaces and ignoring the `query` argument.
-type qStmt struct{ *Stmt }
-
-func (q *qStmt) Query(query string, args ...interface{}) (*sql.Rows, error) {
- return q.Stmt.Query(args...)
-}
-
-func (q *qStmt) Queryx(query string, args ...interface{}) (*Rows, error) {
- r, err := q.Stmt.Query(args...)
- if err != nil {
- return nil, err
- }
- return &Rows{Rows: r, unsafe: q.Stmt.unsafe, Mapper: q.Stmt.Mapper}, err
-}
-
-func (q *qStmt) QueryRowx(query string, args ...interface{}) *Row {
- rows, err := q.Stmt.Query(args...)
- return &Row{rows: rows, err: err, unsafe: q.Stmt.unsafe, Mapper: q.Stmt.Mapper}
-}
-
-func (q *qStmt) Exec(query string, args ...interface{}) (sql.Result, error) {
- return q.Stmt.Exec(args...)
-}
-
-// Rows is a wrapper around sql.Rows which caches costly reflect operations
-// during a looped StructScan
-type Rows struct {
- *sql.Rows
- unsafe bool
- Mapper *reflectx.Mapper
- // these fields cache memory use for a rows during iteration w/ structScan
- started bool
- fields [][]int
- values []interface{}
-}
-
-// SliceScan using this Rows.
-func (r *Rows) SliceScan() ([]interface{}, error) {
- return SliceScan(r)
-}
-
-// MapScan using this Rows.
-func (r *Rows) MapScan(dest map[string]interface{}) error {
- return MapScan(r, dest)
-}
-
-// StructScan is like sql.Rows.Scan, but scans a single Row into a single Struct.
-// Use this and iterate over Rows manually when the memory load of Select() might be
-// prohibitive. *Rows.StructScan caches the reflect work of matching up column
-// positions to fields to avoid that overhead per scan, which means it is not safe
-// to run StructScan on the same Rows instance with different struct types.
-func (r *Rows) StructScan(dest interface{}) error {
- v := reflect.ValueOf(dest)
-
- if v.Kind() != reflect.Ptr {
- return errors.New("must pass a pointer, not a value, to StructScan destination")
- }
-
- v = v.Elem()
-
- if !r.started {
- columns, err := r.Columns()
- if err != nil {
- return err
- }
- m := r.Mapper
-
- r.fields = m.TraversalsByName(v.Type(), columns)
- // if we are not unsafe and are missing fields, return an error
- if f, err := missingFields(r.fields); err != nil && !r.unsafe {
- return fmt.Errorf("missing destination name %s in %T", columns[f], dest)
- }
- r.values = make([]interface{}, len(columns))
- r.started = true
- }
-
- err := fieldsByTraversal(v, r.fields, r.values, true)
- if err != nil {
- return err
- }
- // scan into the struct field pointers and append to our results
- err = r.Scan(r.values...)
- if err != nil {
- return err
- }
- return r.Err()
-}
-
-// Connect to a database and verify with a ping.
-func Connect(driverName, dataSourceName string) (*DB, error) {
- db, err := Open(driverName, dataSourceName)
- if err != nil {
- return nil, err
- }
- err = db.Ping()
- if err != nil {
- db.Close()
- return nil, err
- }
- return db, nil
-}
-
-// MustConnect connects to a database and panics on error.
-func MustConnect(driverName, dataSourceName string) *DB {
- db, err := Connect(driverName, dataSourceName)
- if err != nil {
- panic(err)
- }
- return db
-}
-
-// Preparex prepares a statement.
-func Preparex(p Preparer, query string) (*Stmt, error) {
- s, err := p.Prepare(query)
- if err != nil {
- return nil, err
- }
- return &Stmt{Stmt: s, unsafe: isUnsafe(p), Mapper: mapperFor(p)}, err
-}
-
-// Select executes a query using the provided Queryer, and StructScans each row
-// into dest, which must be a slice. If the slice elements are scannable, then
-// the result set must have only one column. Otherwise, StructScan is used.
-// The *sql.Rows are closed automatically.
-// Any placeholder parameters are replaced with supplied args.
-func Select(q Queryer, dest interface{}, query string, args ...interface{}) error {
- rows, err := q.Queryx(query, args...)
- if err != nil {
- return err
- }
- // if something happens here, we want to make sure the rows are Closed
- defer rows.Close()
- return scanAll(rows, dest, false)
-}
-
-// Get does a QueryRow using the provided Queryer, and scans the resulting row
-// to dest. If dest is scannable, the result must only have one column. Otherwise,
-// StructScan is used. Get will return sql.ErrNoRows like row.Scan would.
-// Any placeholder parameters are replaced with supplied args.
-// An error is returned if the result set is empty.
-func Get(q Queryer, dest interface{}, query string, args ...interface{}) error {
- r := q.QueryRowx(query, args...)
- return r.scanAny(dest, false)
-}
-
-// LoadFile exec's every statement in a file (as a single call to Exec).
-// LoadFile may return a nil *sql.Result if errors are encountered locating or
-// reading the file at path. LoadFile reads the entire file into memory, so it
-// is not suitable for loading large data dumps, but can be useful for initializing
-// schemas or loading indexes.
-//
-// FIXME: this does not really work with multi-statement files for mattn/go-sqlite3
-// or the go-mysql-driver/mysql drivers; pq seems to be an exception here. Detecting
-// this by requiring something with DriverName() and then attempting to split the
-// queries will be difficult to get right, and its current driver-specific behavior
-// is deemed at least not complex in its incorrectness.
-func LoadFile(e Execer, path string) (*sql.Result, error) {
- realpath, err := filepath.Abs(path)
- if err != nil {
- return nil, err
- }
- contents, err := ioutil.ReadFile(realpath)
- if err != nil {
- return nil, err
- }
- res, err := e.Exec(string(contents))
- return &res, err
-}
-
-// MustExec execs the query using e and panics if there was an error.
-// Any placeholder parameters are replaced with supplied args.
-func MustExec(e Execer, query string, args ...interface{}) sql.Result {
- res, err := e.Exec(query, args...)
- if err != nil {
- panic(err)
- }
- return res
-}
-
-// SliceScan using this Rows.
-func (r *Row) SliceScan() ([]interface{}, error) {
- return SliceScan(r)
-}
-
-// MapScan using this Rows.
-func (r *Row) MapScan(dest map[string]interface{}) error {
- return MapScan(r, dest)
-}
-
-func (r *Row) scanAny(dest interface{}, structOnly bool) error {
- if r.err != nil {
- return r.err
- }
- if r.rows == nil {
- r.err = sql.ErrNoRows
- return r.err
- }
- defer r.rows.Close()
-
- v := reflect.ValueOf(dest)
- if v.Kind() != reflect.Ptr {
- return errors.New("must pass a pointer, not a value, to StructScan destination")
- }
- if v.IsNil() {
- return errors.New("nil pointer passed to StructScan destination")
- }
-
- base := reflectx.Deref(v.Type())
- scannable := isScannable(base)
-
- if structOnly && scannable {
- return structOnlyError(base)
- }
-
- columns, err := r.Columns()
- if err != nil {
- return err
- }
-
- if scannable && len(columns) > 1 {
- return fmt.Errorf("scannable dest type %s with >1 columns (%d) in result", base.Kind(), len(columns))
- }
-
- if scannable {
- return r.Scan(dest)
- }
-
- m := r.Mapper
-
- fields := m.TraversalsByName(v.Type(), columns)
- // if we are not unsafe and are missing fields, return an error
- if f, err := missingFields(fields); err != nil && !r.unsafe {
- return fmt.Errorf("missing destination name %s in %T", columns[f], dest)
- }
- values := make([]interface{}, len(columns))
-
- err = fieldsByTraversal(v, fields, values, true)
- if err != nil {
- return err
- }
- // scan into the struct field pointers and append to our results
- return r.Scan(values...)
-}
-
-// StructScan a single Row into dest.
-func (r *Row) StructScan(dest interface{}) error {
- return r.scanAny(dest, true)
-}
-
-// SliceScan a row, returning a []interface{} with values similar to MapScan.
-// This function is primarily intended for use where the number of columns
-// is not known. Because you can pass an []interface{} directly to Scan,
-// it's recommended that you do that as it will not have to allocate new
-// slices per row.
-func SliceScan(r ColScanner) ([]interface{}, error) {
- // ignore r.started, since we needn't use reflect for anything.
- columns, err := r.Columns()
- if err != nil {
- return []interface{}{}, err
- }
-
- values := make([]interface{}, len(columns))
- for i := range values {
- values[i] = new(interface{})
- }
-
- err = r.Scan(values...)
-
- if err != nil {
- return values, err
- }
-
- for i := range columns {
- values[i] = *(values[i].(*interface{}))
- }
-
- return values, r.Err()
-}
-
-// MapScan scans a single Row into the dest map[string]interface{}.
-// Use this to get results for SQL that might not be under your control
-// (for instance, if you're building an interface for an SQL server that
-// executes SQL from input). Please do not use this as a primary interface!
-// This will modify the map sent to it in place, so reuse the same map with
-// care. Columns which occur more than once in the result will overwrite
-// each other!
-func MapScan(r ColScanner, dest map[string]interface{}) error {
- // ignore r.started, since we needn't use reflect for anything.
- columns, err := r.Columns()
- if err != nil {
- return err
- }
-
- values := make([]interface{}, len(columns))
- for i := range values {
- values[i] = new(interface{})
- }
-
- err = r.Scan(values...)
- if err != nil {
- return err
- }
-
- for i, column := range columns {
- dest[column] = *(values[i].(*interface{}))
- }
-
- return r.Err()
-}
-
-type rowsi interface {
- Close() error
- Columns() ([]string, error)
- Err() error
- Next() bool
- Scan(...interface{}) error
-}
-
-// structOnlyError returns an error appropriate for type when a non-scannable
-// struct is expected but something else is given
-func structOnlyError(t reflect.Type) error {
- isStruct := t.Kind() == reflect.Struct
- isScanner := reflect.PtrTo(t).Implements(_scannerInterface)
- if !isStruct {
- return fmt.Errorf("expected %s but got %s", reflect.Struct, t.Kind())
- }
- if isScanner {
- return fmt.Errorf("structscan expects a struct dest but the provided struct type %s implements scanner", t.Name())
- }
- return fmt.Errorf("expected a struct, but struct %s has no exported fields", t.Name())
-}
-
-// scanAll scans all rows into a destination, which must be a slice of any
-// type. If the destination slice type is a Struct, then StructScan will be
-// used on each row. If the destination is some other kind of base type, then
-// each row must only have one column which can scan into that type. This
-// allows you to do something like:
-//
-// rows, _ := db.Query("select id from people;")
-// var ids []int
-// scanAll(rows, &ids, false)
-//
-// and ids will be a list of the id results. I realize that this is a desirable
-// interface to expose to users, but for now it will only be exposed via changes
-// to `Get` and `Select`. The reason that this has been implemented like this is
-// this is the only way to not duplicate reflect work in the new API while
-// maintaining backwards compatibility.
-func scanAll(rows rowsi, dest interface{}, structOnly bool) error {
- var v, vp reflect.Value
-
- value := reflect.ValueOf(dest)
-
- // json.Unmarshal returns errors for these
- if value.Kind() != reflect.Ptr {
- return errors.New("must pass a pointer, not a value, to StructScan destination")
- }
- if value.IsNil() {
- return errors.New("nil pointer passed to StructScan destination")
- }
- direct := reflect.Indirect(value)
-
- slice, err := baseType(value.Type(), reflect.Slice)
- if err != nil {
- return err
- }
-
- isPtr := slice.Elem().Kind() == reflect.Ptr
- base := reflectx.Deref(slice.Elem())
- scannable := isScannable(base)
-
- if structOnly && scannable {
- return structOnlyError(base)
- }
-
- columns, err := rows.Columns()
- if err != nil {
- return err
- }
-
- // if it's a base type make sure it only has 1 column; if not return an error
- if scannable && len(columns) > 1 {
- return fmt.Errorf("non-struct dest type %s with >1 columns (%d)", base.Kind(), len(columns))
- }
-
- if !scannable {
- var values []interface{}
- var m *reflectx.Mapper
-
- switch rows.(type) {
- case *Rows:
- m = rows.(*Rows).Mapper
- default:
- m = mapper()
- }
-
- fields := m.TraversalsByName(base, columns)
- // if we are not unsafe and are missing fields, return an error
- if f, err := missingFields(fields); err != nil && !isUnsafe(rows) {
- return fmt.Errorf("missing destination name %s in %T", columns[f], dest)
- }
- values = make([]interface{}, len(columns))
-
- for rows.Next() {
- // create a new struct type (which returns PtrTo) and indirect it
- vp = reflect.New(base)
- v = reflect.Indirect(vp)
-
- err = fieldsByTraversal(v, fields, values, true)
- if err != nil {
- return err
- }
-
- // scan into the struct field pointers and append to our results
- err = rows.Scan(values...)
- if err != nil {
- return err
- }
-
- if isPtr {
- direct.Set(reflect.Append(direct, vp))
- } else {
- direct.Set(reflect.Append(direct, v))
- }
- }
- } else {
- for rows.Next() {
- vp = reflect.New(base)
- err = rows.Scan(vp.Interface())
- if err != nil {
- return err
- }
- // append
- if isPtr {
- direct.Set(reflect.Append(direct, vp))
- } else {
- direct.Set(reflect.Append(direct, reflect.Indirect(vp)))
- }
- }
- }
-
- return rows.Err()
-}
-
-// FIXME: StructScan was the very first bit of API in sqlx, and now unfortunately
-// it doesn't really feel like it's named properly. There is an incongruency
-// between this and the way that StructScan (which might better be ScanStruct
-// anyway) works on a rows object.
-
-// StructScan all rows from an sql.Rows or an sqlx.Rows into the dest slice.
-// StructScan will scan in the entire rows result, so if you do not want to
-// allocate structs for the entire result, use Queryx and see sqlx.Rows.StructScan.
-// If rows is sqlx.Rows, it will use its mapper, otherwise it will use the default.
-func StructScan(rows rowsi, dest interface{}) error {
- return scanAll(rows, dest, true)
-
-}
-
-// reflect helpers
-
-func baseType(t reflect.Type, expected reflect.Kind) (reflect.Type, error) {
- t = reflectx.Deref(t)
- if t.Kind() != expected {
- return nil, fmt.Errorf("expected %s but got %s", expected, t.Kind())
- }
- return t, nil
-}
-
-// fieldsByName fills a values interface with fields from the passed value based
-// on the traversals in int. If ptrs is true, return addresses instead of values.
-// We write this instead of using FieldsByName to save allocations and map lookups
-// when iterating over many rows. Empty traversals will get an interface pointer.
-// Because of the necessity of requesting ptrs or values, it's considered a bit too
-// specialized for inclusion in reflectx itself.
-func fieldsByTraversal(v reflect.Value, traversals [][]int, values []interface{}, ptrs bool) error {
- v = reflect.Indirect(v)
- if v.Kind() != reflect.Struct {
- return errors.New("argument not a struct")
- }
-
- for i, traversal := range traversals {
- if len(traversal) == 0 {
- values[i] = new(interface{})
- continue
- }
- f := reflectx.FieldByIndexes(v, traversal)
- if ptrs {
- values[i] = f.Addr().Interface()
- } else {
- values[i] = f.Interface()
- }
- }
- return nil
-}
-
-func missingFields(transversals [][]int) (field int, err error) {
- for i, t := range transversals {
- if len(t) == 0 {
- return i, errors.New("missing field")
- }
- }
- return 0, nil
-}
diff --git a/vendor/github.com/jmoiron/sqlx/sqlx_context.go b/vendor/github.com/jmoiron/sqlx/sqlx_context.go
deleted file mode 100644
index 06033111a..000000000
--- a/vendor/github.com/jmoiron/sqlx/sqlx_context.go
+++ /dev/null
@@ -1,346 +0,0 @@
-// +build go1.8
-
-package sqlx
-
-import (
- "context"
- "database/sql"
- "fmt"
- "io/ioutil"
- "path/filepath"
- "reflect"
-)
-
-// ConnectContext to a database and verify with a ping.
-func ConnectContext(ctx context.Context, driverName, dataSourceName string) (*DB, error) {
- db, err := Open(driverName, dataSourceName)
- if err != nil {
- return db, err
- }
- err = db.PingContext(ctx)
- return db, err
-}
-
-// QueryerContext is an interface used by GetContext and SelectContext
-type QueryerContext interface {
- QueryContext(ctx context.Context, query string, args ...interface{}) (*sql.Rows, error)
- QueryxContext(ctx context.Context, query string, args ...interface{}) (*Rows, error)
- QueryRowxContext(ctx context.Context, query string, args ...interface{}) *Row
-}
-
-// PreparerContext is an interface used by PreparexContext.
-type PreparerContext interface {
- PrepareContext(ctx context.Context, query string) (*sql.Stmt, error)
-}
-
-// ExecerContext is an interface used by MustExecContext and LoadFileContext
-type ExecerContext interface {
- ExecContext(ctx context.Context, query string, args ...interface{}) (sql.Result, error)
-}
-
-// ExtContext is a union interface which can bind, query, and exec, with Context
-// used by NamedQueryContext and NamedExecContext.
-type ExtContext interface {
- binder
- QueryerContext
- ExecerContext
-}
-
-// SelectContext executes a query using the provided Queryer, and StructScans
-// each row into dest, which must be a slice. If the slice elements are
-// scannable, then the result set must have only one column. Otherwise,
-// StructScan is used. The *sql.Rows are closed automatically.
-// Any placeholder parameters are replaced with supplied args.
-func SelectContext(ctx context.Context, q QueryerContext, dest interface{}, query string, args ...interface{}) error {
- rows, err := q.QueryxContext(ctx, query, args...)
- if err != nil {
- return err
- }
- // if something happens here, we want to make sure the rows are Closed
- defer rows.Close()
- return scanAll(rows, dest, false)
-}
-
-// PreparexContext prepares a statement.
-//
-// The provided context is used for the preparation of the statement, not for
-// the execution of the statement.
-func PreparexContext(ctx context.Context, p PreparerContext, query string) (*Stmt, error) {
- s, err := p.PrepareContext(ctx, query)
- if err != nil {
- return nil, err
- }
- return &Stmt{Stmt: s, unsafe: isUnsafe(p), Mapper: mapperFor(p)}, err
-}
-
-// GetContext does a QueryRow using the provided Queryer, and scans the
-// resulting row to dest. If dest is scannable, the result must only have one
-// column. Otherwise, StructScan is used. Get will return sql.ErrNoRows like
-// row.Scan would. Any placeholder parameters are replaced with supplied args.
-// An error is returned if the result set is empty.
-func GetContext(ctx context.Context, q QueryerContext, dest interface{}, query string, args ...interface{}) error {
- r := q.QueryRowxContext(ctx, query, args...)
- return r.scanAny(dest, false)
-}
-
-// LoadFileContext exec's every statement in a file (as a single call to Exec).
-// LoadFileContext may return a nil *sql.Result if errors are encountered
-// locating or reading the file at path. LoadFile reads the entire file into
-// memory, so it is not suitable for loading large data dumps, but can be useful
-// for initializing schemas or loading indexes.
-//
-// FIXME: this does not really work with multi-statement files for mattn/go-sqlite3
-// or the go-mysql-driver/mysql drivers; pq seems to be an exception here. Detecting
-// this by requiring something with DriverName() and then attempting to split the
-// queries will be difficult to get right, and its current driver-specific behavior
-// is deemed at least not complex in its incorrectness.
-func LoadFileContext(ctx context.Context, e ExecerContext, path string) (*sql.Result, error) {
- realpath, err := filepath.Abs(path)
- if err != nil {
- return nil, err
- }
- contents, err := ioutil.ReadFile(realpath)
- if err != nil {
- return nil, err
- }
- res, err := e.ExecContext(ctx, string(contents))
- return &res, err
-}
-
-// MustExecContext execs the query using e and panics if there was an error.
-// Any placeholder parameters are replaced with supplied args.
-func MustExecContext(ctx context.Context, e ExecerContext, query string, args ...interface{}) sql.Result {
- res, err := e.ExecContext(ctx, query, args...)
- if err != nil {
- panic(err)
- }
- return res
-}
-
-// PrepareNamedContext returns an sqlx.NamedStmt
-func (db *DB) PrepareNamedContext(ctx context.Context, query string) (*NamedStmt, error) {
- return prepareNamedContext(ctx, db, query)
-}
-
-// NamedQueryContext using this DB.
-// Any named placeholder parameters are replaced with fields from arg.
-func (db *DB) NamedQueryContext(ctx context.Context, query string, arg interface{}) (*Rows, error) {
- return NamedQueryContext(ctx, db, query, arg)
-}
-
-// NamedExecContext using this DB.
-// Any named placeholder parameters are replaced with fields from arg.
-func (db *DB) NamedExecContext(ctx context.Context, query string, arg interface{}) (sql.Result, error) {
- return NamedExecContext(ctx, db, query, arg)
-}
-
-// SelectContext using this DB.
-// Any placeholder parameters are replaced with supplied args.
-func (db *DB) SelectContext(ctx context.Context, dest interface{}, query string, args ...interface{}) error {
- return SelectContext(ctx, db, dest, query, args...)
-}
-
-// GetContext using this DB.
-// Any placeholder parameters are replaced with supplied args.
-// An error is returned if the result set is empty.
-func (db *DB) GetContext(ctx context.Context, dest interface{}, query string, args ...interface{}) error {
- return GetContext(ctx, db, dest, query, args...)
-}
-
-// PreparexContext returns an sqlx.Stmt instead of a sql.Stmt.
-//
-// The provided context is used for the preparation of the statement, not for
-// the execution of the statement.
-func (db *DB) PreparexContext(ctx context.Context, query string) (*Stmt, error) {
- return PreparexContext(ctx, db, query)
-}
-
-// QueryxContext queries the database and returns an *sqlx.Rows.
-// Any placeholder parameters are replaced with supplied args.
-func (db *DB) QueryxContext(ctx context.Context, query string, args ...interface{}) (*Rows, error) {
- r, err := db.DB.QueryContext(ctx, query, args...)
- if err != nil {
- return nil, err
- }
- return &Rows{Rows: r, unsafe: db.unsafe, Mapper: db.Mapper}, err
-}
-
-// QueryRowxContext queries the database and returns an *sqlx.Row.
-// Any placeholder parameters are replaced with supplied args.
-func (db *DB) QueryRowxContext(ctx context.Context, query string, args ...interface{}) *Row {
- rows, err := db.DB.QueryContext(ctx, query, args...)
- return &Row{rows: rows, err: err, unsafe: db.unsafe, Mapper: db.Mapper}
-}
-
-// MustBeginTx starts a transaction, and panics on error. Returns an *sqlx.Tx instead
-// of an *sql.Tx.
-//
-// The provided context is used until the transaction is committed or rolled
-// back. If the context is canceled, the sql package will roll back the
-// transaction. Tx.Commit will return an error if the context provided to
-// MustBeginContext is canceled.
-func (db *DB) MustBeginTx(ctx context.Context, opts *sql.TxOptions) *Tx {
- tx, err := db.BeginTxx(ctx, opts)
- if err != nil {
- panic(err)
- }
- return tx
-}
-
-// MustExecContext (panic) runs MustExec using this database.
-// Any placeholder parameters are replaced with supplied args.
-func (db *DB) MustExecContext(ctx context.Context, query string, args ...interface{}) sql.Result {
- return MustExecContext(ctx, db, query, args...)
-}
-
-// BeginTxx begins a transaction and returns an *sqlx.Tx instead of an
-// *sql.Tx.
-//
-// The provided context is used until the transaction is committed or rolled
-// back. If the context is canceled, the sql package will roll back the
-// transaction. Tx.Commit will return an error if the context provided to
-// BeginxContext is canceled.
-func (db *DB) BeginTxx(ctx context.Context, opts *sql.TxOptions) (*Tx, error) {
- tx, err := db.DB.BeginTx(ctx, opts)
- if err != nil {
- return nil, err
- }
- return &Tx{Tx: tx, driverName: db.driverName, unsafe: db.unsafe, Mapper: db.Mapper}, err
-}
-
-// StmtxContext returns a version of the prepared statement which runs within a
-// transaction. Provided stmt can be either *sql.Stmt or *sqlx.Stmt.
-func (tx *Tx) StmtxContext(ctx context.Context, stmt interface{}) *Stmt {
- var s *sql.Stmt
- switch v := stmt.(type) {
- case Stmt:
- s = v.Stmt
- case *Stmt:
- s = v.Stmt
- case *sql.Stmt:
- s = v
- default:
- panic(fmt.Sprintf("non-statement type %v passed to Stmtx", reflect.ValueOf(stmt).Type()))
- }
- return &Stmt{Stmt: tx.StmtContext(ctx, s), Mapper: tx.Mapper}
-}
-
-// NamedStmtContext returns a version of the prepared statement which runs
-// within a transaction.
-func (tx *Tx) NamedStmtContext(ctx context.Context, stmt *NamedStmt) *NamedStmt {
- return &NamedStmt{
- QueryString: stmt.QueryString,
- Params: stmt.Params,
- Stmt: tx.StmtxContext(ctx, stmt.Stmt),
- }
-}
-
-// PreparexContext returns an sqlx.Stmt instead of a sql.Stmt.
-//
-// The provided context is used for the preparation of the statement, not for
-// the execution of the statement.
-func (tx *Tx) PreparexContext(ctx context.Context, query string) (*Stmt, error) {
- return PreparexContext(ctx, tx, query)
-}
-
-// PrepareNamedContext returns an sqlx.NamedStmt
-func (tx *Tx) PrepareNamedContext(ctx context.Context, query string) (*NamedStmt, error) {
- return prepareNamedContext(ctx, tx, query)
-}
-
-// MustExecContext runs MustExecContext within a transaction.
-// Any placeholder parameters are replaced with supplied args.
-func (tx *Tx) MustExecContext(ctx context.Context, query string, args ...interface{}) sql.Result {
- return MustExecContext(ctx, tx, query, args...)
-}
-
-// QueryxContext within a transaction and context.
-// Any placeholder parameters are replaced with supplied args.
-func (tx *Tx) QueryxContext(ctx context.Context, query string, args ...interface{}) (*Rows, error) {
- r, err := tx.Tx.QueryContext(ctx, query, args...)
- if err != nil {
- return nil, err
- }
- return &Rows{Rows: r, unsafe: tx.unsafe, Mapper: tx.Mapper}, err
-}
-
-// SelectContext within a transaction and context.
-// Any placeholder parameters are replaced with supplied args.
-func (tx *Tx) SelectContext(ctx context.Context, dest interface{}, query string, args ...interface{}) error {
- return SelectContext(ctx, tx, dest, query, args...)
-}
-
-// GetContext within a transaction and context.
-// Any placeholder parameters are replaced with supplied args.
-// An error is returned if the result set is empty.
-func (tx *Tx) GetContext(ctx context.Context, dest interface{}, query string, args ...interface{}) error {
- return GetContext(ctx, tx, dest, query, args...)
-}
-
-// QueryRowxContext within a transaction and context.
-// Any placeholder parameters are replaced with supplied args.
-func (tx *Tx) QueryRowxContext(ctx context.Context, query string, args ...interface{}) *Row {
- rows, err := tx.Tx.QueryContext(ctx, query, args...)
- return &Row{rows: rows, err: err, unsafe: tx.unsafe, Mapper: tx.Mapper}
-}
-
-// NamedExecContext using this Tx.
-// Any named placeholder parameters are replaced with fields from arg.
-func (tx *Tx) NamedExecContext(ctx context.Context, query string, arg interface{}) (sql.Result, error) {
- return NamedExecContext(ctx, tx, query, arg)
-}
-
-// SelectContext using the prepared statement.
-// Any placeholder parameters are replaced with supplied args.
-func (s *Stmt) SelectContext(ctx context.Context, dest interface{}, args ...interface{}) error {
- return SelectContext(ctx, &qStmt{s}, dest, "", args...)
-}
-
-// GetContext using the prepared statement.
-// Any placeholder parameters are replaced with supplied args.
-// An error is returned if the result set is empty.
-func (s *Stmt) GetContext(ctx context.Context, dest interface{}, args ...interface{}) error {
- return GetContext(ctx, &qStmt{s}, dest, "", args...)
-}
-
-// MustExecContext (panic) using this statement. Note that the query portion of
-// the error output will be blank, as Stmt does not expose its query.
-// Any placeholder parameters are replaced with supplied args.
-func (s *Stmt) MustExecContext(ctx context.Context, args ...interface{}) sql.Result {
- return MustExecContext(ctx, &qStmt{s}, "", args...)
-}
-
-// QueryRowxContext using this statement.
-// Any placeholder parameters are replaced with supplied args.
-func (s *Stmt) QueryRowxContext(ctx context.Context, args ...interface{}) *Row {
- qs := &qStmt{s}
- return qs.QueryRowxContext(ctx, "", args...)
-}
-
-// QueryxContext using this statement.
-// Any placeholder parameters are replaced with supplied args.
-func (s *Stmt) QueryxContext(ctx context.Context, args ...interface{}) (*Rows, error) {
- qs := &qStmt{s}
- return qs.QueryxContext(ctx, "", args...)
-}
-
-func (q *qStmt) QueryContext(ctx context.Context, query string, args ...interface{}) (*sql.Rows, error) {
- return q.Stmt.QueryContext(ctx, args...)
-}
-
-func (q *qStmt) QueryxContext(ctx context.Context, query string, args ...interface{}) (*Rows, error) {
- r, err := q.Stmt.QueryContext(ctx, args...)
- if err != nil {
- return nil, err
- }
- return &Rows{Rows: r, unsafe: q.Stmt.unsafe, Mapper: q.Stmt.Mapper}, err
-}
-
-func (q *qStmt) QueryRowxContext(ctx context.Context, query string, args ...interface{}) *Row {
- rows, err := q.Stmt.QueryContext(ctx, args...)
- return &Row{rows: rows, err: err, unsafe: q.Stmt.unsafe, Mapper: q.Stmt.Mapper}
-}
-
-func (q *qStmt) ExecContext(ctx context.Context, query string, args ...interface{}) (sql.Result, error) {
- return q.Stmt.ExecContext(ctx, args...)
-}
diff --git a/vendor/github.com/joho/godotenv/.gitignore b/vendor/github.com/joho/godotenv/.gitignore
deleted file mode 100644
index e43b0f988..000000000
--- a/vendor/github.com/joho/godotenv/.gitignore
+++ /dev/null
@@ -1 +0,0 @@
-.DS_Store
diff --git a/vendor/github.com/joho/godotenv/.travis.yml b/vendor/github.com/joho/godotenv/.travis.yml
deleted file mode 100644
index f0db1adcd..000000000
--- a/vendor/github.com/joho/godotenv/.travis.yml
+++ /dev/null
@@ -1,8 +0,0 @@
-language: go
-
-go:
- - 1.x
-
-os:
- - linux
- - osx
diff --git a/vendor/github.com/joho/godotenv/LICENCE b/vendor/github.com/joho/godotenv/LICENCE
deleted file mode 100644
index e7ddd51be..000000000
--- a/vendor/github.com/joho/godotenv/LICENCE
+++ /dev/null
@@ -1,23 +0,0 @@
-Copyright (c) 2013 John Barton
-
-MIT License
-
-Permission is hereby granted, free of charge, to any person obtaining
-a copy of this software and associated documentation files (the
-"Software"), to deal in the Software without restriction, including
-without limitation the rights to use, copy, modify, merge, publish,
-distribute, sublicense, and/or sell copies of the Software, and to
-permit persons to whom the Software is furnished to do so, subject to
-the following conditions:
-
-The above copyright notice and this permission notice shall be
-included in all copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
-EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
-MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
-NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
-LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
-OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
-WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
-
diff --git a/vendor/github.com/joho/godotenv/README.md b/vendor/github.com/joho/godotenv/README.md
deleted file mode 100644
index 4e8fcf2e9..000000000
--- a/vendor/github.com/joho/godotenv/README.md
+++ /dev/null
@@ -1,163 +0,0 @@
-# GoDotEnv [](https://travis-ci.org/joho/godotenv) [](https://ci.appveyor.com/project/joho/godotenv) [](https://goreportcard.com/report/github.com/joho/godotenv)
-
-A Go (golang) port of the Ruby dotenv project (which loads env vars from a .env file)
-
-From the original Library:
-
-> Storing configuration in the environment is one of the tenets of a twelve-factor app. Anything that is likely to change between deployment environments–such as resource handles for databases or credentials for external services–should be extracted from the code into environment variables.
->
-> But it is not always practical to set environment variables on development machines or continuous integration servers where multiple projects are run. Dotenv load variables from a .env file into ENV when the environment is bootstrapped.
-
-It can be used as a library (for loading in env for your own daemons etc) or as a bin command.
-
-There is test coverage and CI for both linuxish and windows environments, but I make no guarantees about the bin version working on windows.
-
-## Installation
-
-As a library
-
-```shell
-go get github.com/joho/godotenv
-```
-
-or if you want to use it as a bin command
-```shell
-go get github.com/joho/godotenv/cmd/godotenv
-```
-
-## Usage
-
-Add your application configuration to your `.env` file in the root of your project:
-
-```shell
-S3_BUCKET=YOURS3BUCKET
-SECRET_KEY=YOURSECRETKEYGOESHERE
-```
-
-Then in your Go app you can do something like
-
-```go
-package main
-
-import (
- "github.com/joho/godotenv"
- "log"
- "os"
-)
-
-func main() {
- err := godotenv.Load()
- if err != nil {
- log.Fatal("Error loading .env file")
- }
-
- s3Bucket := os.Getenv("S3_BUCKET")
- secretKey := os.Getenv("SECRET_KEY")
-
- // now do something with s3 or whatever
-}
-```
-
-If you're even lazier than that, you can just take advantage of the autoload package which will read in `.env` on import
-
-```go
-import _ "github.com/joho/godotenv/autoload"
-```
-
-While `.env` in the project root is the default, you don't have to be constrained, both examples below are 100% legit
-
-```go
-_ = godotenv.Load("somerandomfile")
-_ = godotenv.Load("filenumberone.env", "filenumbertwo.env")
-```
-
-If you want to be really fancy with your env file you can do comments and exports (below is a valid env file)
-
-```shell
-# I am a comment and that is OK
-SOME_VAR=someval
-FOO=BAR # comments at line end are OK too
-export BAR=BAZ
-```
-
-Or finally you can do YAML(ish) style
-
-```yaml
-FOO: bar
-BAR: baz
-```
-
-as a final aside, if you don't want godotenv munging your env you can just get a map back instead
-
-```go
-var myEnv map[string]string
-myEnv, err := godotenv.Read()
-
-s3Bucket := myEnv["S3_BUCKET"]
-```
-
-... or from an `io.Reader` instead of a local file
-
-```go
-reader := getRemoteFile()
-myEnv, err := godotenv.Parse(reader)
-```
-
-... or from a `string` if you so desire
-
-```go
-content := getRemoteFileContent()
-myEnv, err := godotenv.Unmarshal(content)
-```
-
-### Command Mode
-
-Assuming you've installed the command as above and you've got `$GOPATH/bin` in your `$PATH`
-
-```
-godotenv -f /some/path/to/.env some_command with some args
-```
-
-If you don't specify `-f` it will fall back on the default of loading `.env` in `PWD`
-
-### Writing Env Files
-
-Godotenv can also write a map representing the environment to a correctly-formatted and escaped file
-
-```go
-env, err := godotenv.Unmarshal("KEY=value")
-err := godotenv.Write(env, "./.env")
-```
-
-... or to a string
-
-```go
-env, err := godotenv.Unmarshal("KEY=value")
-content, err := godotenv.Marshal(env)
-```
-
-## Contributing
-
-Contributions are most welcome! The parser itself is pretty stupidly naive and I wouldn't be surprised if it breaks with edge cases.
-
-*code changes without tests will not be accepted*
-
-1. Fork it
-2. Create your feature branch (`git checkout -b my-new-feature`)
-3. Commit your changes (`git commit -am 'Added some feature'`)
-4. Push to the branch (`git push origin my-new-feature`)
-5. Create new Pull Request
-
-## Releases
-
-Releases should follow [Semver](http://semver.org/) though the first couple of releases are `v1` and `v1.1`.
-
-Use [annotated tags for all releases](https://github.com/joho/godotenv/issues/30). Example `git tag -a v1.2.1`
-
-## CI
-
-Linux: [](https://travis-ci.org/joho/godotenv) Windows: [](https://ci.appveyor.com/project/joho/godotenv)
-
-## Who?
-
-The original library [dotenv](https://github.com/bkeepers/dotenv) was written by [Brandon Keepers](http://opensoul.org/), and this port was done by [John Barton](https://johnbarton.co/) based off the tests/fixtures in the original library.
diff --git a/vendor/github.com/joho/godotenv/godotenv.go b/vendor/github.com/joho/godotenv/godotenv.go
deleted file mode 100644
index 29b436c77..000000000
--- a/vendor/github.com/joho/godotenv/godotenv.go
+++ /dev/null
@@ -1,346 +0,0 @@
-// Package godotenv is a go port of the ruby dotenv library (https://github.com/bkeepers/dotenv)
-//
-// Examples/readme can be found on the github page at https://github.com/joho/godotenv
-//
-// The TL;DR is that you make a .env file that looks something like
-//
-// SOME_ENV_VAR=somevalue
-//
-// and then in your go code you can call
-//
-// godotenv.Load()
-//
-// and all the env vars declared in .env will be available through os.Getenv("SOME_ENV_VAR")
-package godotenv
-
-import (
- "bufio"
- "errors"
- "fmt"
- "io"
- "os"
- "os/exec"
- "regexp"
- "sort"
- "strings"
-)
-
-const doubleQuoteSpecialChars = "\\\n\r\"!$`"
-
-// Load will read your env file(s) and load them into ENV for this process.
-//
-// Call this function as close as possible to the start of your program (ideally in main)
-//
-// If you call Load without any args it will default to loading .env in the current path
-//
-// You can otherwise tell it which files to load (there can be more than one) like
-//
-// godotenv.Load("fileone", "filetwo")
-//
-// It's important to note that it WILL NOT OVERRIDE an env variable that already exists - consider the .env file to set dev vars or sensible defaults
-func Load(filenames ...string) (err error) {
- filenames = filenamesOrDefault(filenames)
-
- for _, filename := range filenames {
- err = loadFile(filename, false)
- if err != nil {
- return // return early on a spazout
- }
- }
- return
-}
-
-// Overload will read your env file(s) and load them into ENV for this process.
-//
-// Call this function as close as possible to the start of your program (ideally in main)
-//
-// If you call Overload without any args it will default to loading .env in the current path
-//
-// You can otherwise tell it which files to load (there can be more than one) like
-//
-// godotenv.Overload("fileone", "filetwo")
-//
-// It's important to note this WILL OVERRIDE an env variable that already exists - consider the .env file to forcefilly set all vars.
-func Overload(filenames ...string) (err error) {
- filenames = filenamesOrDefault(filenames)
-
- for _, filename := range filenames {
- err = loadFile(filename, true)
- if err != nil {
- return // return early on a spazout
- }
- }
- return
-}
-
-// Read all env (with same file loading semantics as Load) but return values as
-// a map rather than automatically writing values into env
-func Read(filenames ...string) (envMap map[string]string, err error) {
- filenames = filenamesOrDefault(filenames)
- envMap = make(map[string]string)
-
- for _, filename := range filenames {
- individualEnvMap, individualErr := readFile(filename)
-
- if individualErr != nil {
- err = individualErr
- return // return early on a spazout
- }
-
- for key, value := range individualEnvMap {
- envMap[key] = value
- }
- }
-
- return
-}
-
-// Parse reads an env file from io.Reader, returning a map of keys and values.
-func Parse(r io.Reader) (envMap map[string]string, err error) {
- envMap = make(map[string]string)
-
- var lines []string
- scanner := bufio.NewScanner(r)
- for scanner.Scan() {
- lines = append(lines, scanner.Text())
- }
-
- if err = scanner.Err(); err != nil {
- return
- }
-
- for _, fullLine := range lines {
- if !isIgnoredLine(fullLine) {
- var key, value string
- key, value, err = parseLine(fullLine, envMap)
-
- if err != nil {
- return
- }
- envMap[key] = value
- }
- }
- return
-}
-
-//Unmarshal reads an env file from a string, returning a map of keys and values.
-func Unmarshal(str string) (envMap map[string]string, err error) {
- return Parse(strings.NewReader(str))
-}
-
-// Exec loads env vars from the specified filenames (empty map falls back to default)
-// then executes the cmd specified.
-//
-// Simply hooks up os.Stdin/err/out to the command and calls Run()
-//
-// If you want more fine grained control over your command it's recommended
-// that you use `Load()` or `Read()` and the `os/exec` package yourself.
-func Exec(filenames []string, cmd string, cmdArgs []string) error {
- Load(filenames...)
-
- command := exec.Command(cmd, cmdArgs...)
- command.Stdin = os.Stdin
- command.Stdout = os.Stdout
- command.Stderr = os.Stderr
- return command.Run()
-}
-
-// Write serializes the given environment and writes it to a file
-func Write(envMap map[string]string, filename string) error {
- content, error := Marshal(envMap)
- if error != nil {
- return error
- }
- file, error := os.Create(filename)
- if error != nil {
- return error
- }
- _, err := file.WriteString(content)
- return err
-}
-
-// Marshal outputs the given environment as a dotenv-formatted environment file.
-// Each line is in the format: KEY="VALUE" where VALUE is backslash-escaped.
-func Marshal(envMap map[string]string) (string, error) {
- lines := make([]string, 0, len(envMap))
- for k, v := range envMap {
- lines = append(lines, fmt.Sprintf(`%s="%s"`, k, doubleQuoteEscape(v)))
- }
- sort.Strings(lines)
- return strings.Join(lines, "\n"), nil
-}
-
-func filenamesOrDefault(filenames []string) []string {
- if len(filenames) == 0 {
- return []string{".env"}
- }
- return filenames
-}
-
-func loadFile(filename string, overload bool) error {
- envMap, err := readFile(filename)
- if err != nil {
- return err
- }
-
- currentEnv := map[string]bool{}
- rawEnv := os.Environ()
- for _, rawEnvLine := range rawEnv {
- key := strings.Split(rawEnvLine, "=")[0]
- currentEnv[key] = true
- }
-
- for key, value := range envMap {
- if !currentEnv[key] || overload {
- os.Setenv(key, value)
- }
- }
-
- return nil
-}
-
-func readFile(filename string) (envMap map[string]string, err error) {
- file, err := os.Open(filename)
- if err != nil {
- return
- }
- defer file.Close()
-
- return Parse(file)
-}
-
-func parseLine(line string, envMap map[string]string) (key string, value string, err error) {
- if len(line) == 0 {
- err = errors.New("zero length string")
- return
- }
-
- // ditch the comments (but keep quoted hashes)
- if strings.Contains(line, "#") {
- segmentsBetweenHashes := strings.Split(line, "#")
- quotesAreOpen := false
- var segmentsToKeep []string
- for _, segment := range segmentsBetweenHashes {
- if strings.Count(segment, "\"") == 1 || strings.Count(segment, "'") == 1 {
- if quotesAreOpen {
- quotesAreOpen = false
- segmentsToKeep = append(segmentsToKeep, segment)
- } else {
- quotesAreOpen = true
- }
- }
-
- if len(segmentsToKeep) == 0 || quotesAreOpen {
- segmentsToKeep = append(segmentsToKeep, segment)
- }
- }
-
- line = strings.Join(segmentsToKeep, "#")
- }
-
- firstEquals := strings.Index(line, "=")
- firstColon := strings.Index(line, ":")
- splitString := strings.SplitN(line, "=", 2)
- if firstColon != -1 && (firstColon < firstEquals || firstEquals == -1) {
- //this is a yaml-style line
- splitString = strings.SplitN(line, ":", 2)
- }
-
- if len(splitString) != 2 {
- err = errors.New("Can't separate key from value")
- return
- }
-
- // Parse the key
- key = splitString[0]
- if strings.HasPrefix(key, "export") {
- key = strings.TrimPrefix(key, "export")
- }
- key = strings.Trim(key, " ")
-
- // Parse the value
- value = parseValue(splitString[1], envMap)
- return
-}
-
-func parseValue(value string, envMap map[string]string) string {
-
- // trim
- value = strings.Trim(value, " ")
-
- // check if we've got quoted values or possible escapes
- if len(value) > 1 {
- rs := regexp.MustCompile(`\A'(.*)'\z`)
- singleQuotes := rs.FindStringSubmatch(value)
-
- rd := regexp.MustCompile(`\A"(.*)"\z`)
- doubleQuotes := rd.FindStringSubmatch(value)
-
- if singleQuotes != nil || doubleQuotes != nil {
- // pull the quotes off the edges
- value = value[1 : len(value)-1]
- }
-
- if doubleQuotes != nil {
- // expand newlines
- escapeRegex := regexp.MustCompile(`\\.`)
- value = escapeRegex.ReplaceAllStringFunc(value, func(match string) string {
- c := strings.TrimPrefix(match, `\`)
- switch c {
- case "n":
- return "\n"
- case "r":
- return "\r"
- default:
- return match
- }
- })
- // unescape characters
- e := regexp.MustCompile(`\\([^$])`)
- value = e.ReplaceAllString(value, "$1")
- }
-
- if singleQuotes == nil {
- value = expandVariables(value, envMap)
- }
- }
-
- return value
-}
-
-func expandVariables(v string, m map[string]string) string {
- r := regexp.MustCompile(`(\\)?(\$)(\()?\{?([A-Z0-9_]+)?\}?`)
-
- return r.ReplaceAllStringFunc(v, func(s string) string {
- submatch := r.FindStringSubmatch(s)
-
- if submatch == nil {
- return s
- }
- if submatch[1] == "\\" || submatch[2] == "(" {
- return submatch[0][1:]
- } else if submatch[4] != "" {
- return m[submatch[4]]
- }
- return s
- })
-}
-
-func isIgnoredLine(line string) bool {
- trimmedLine := strings.Trim(line, " \n\t")
- return len(trimmedLine) == 0 || strings.HasPrefix(trimmedLine, "#")
-}
-
-func doubleQuoteEscape(line string) string {
- for _, c := range doubleQuoteSpecialChars {
- toReplace := "\\" + string(c)
- if c == '\n' {
- toReplace = `\n`
- }
- if c == '\r' {
- toReplace = `\r`
- }
- line = strings.Replace(line, string(c), toReplace, -1)
- }
- return line
-}
diff --git a/vendor/github.com/karrick/godirwalk/.gitignore b/vendor/github.com/karrick/godirwalk/.gitignore
deleted file mode 100644
index a1338d685..000000000
--- a/vendor/github.com/karrick/godirwalk/.gitignore
+++ /dev/null
@@ -1,14 +0,0 @@
-# Binaries for programs and plugins
-*.exe
-*.dll
-*.so
-*.dylib
-
-# Test binary, build with `go test -c`
-*.test
-
-# Output of the go coverage tool, specifically when used with LiteIDE
-*.out
-
-# Project-local glide cache, RE: https://github.com/Masterminds/glide/issues/736
-.glide/
diff --git a/vendor/github.com/karrick/godirwalk/LICENSE b/vendor/github.com/karrick/godirwalk/LICENSE
deleted file mode 100644
index 01ce194c8..000000000
--- a/vendor/github.com/karrick/godirwalk/LICENSE
+++ /dev/null
@@ -1,25 +0,0 @@
-BSD 2-Clause License
-
-Copyright (c) 2017, Karrick McDermott
-All rights reserved.
-
-Redistribution and use in source and binary forms, with or without
-modification, are permitted provided that the following conditions are met:
-
-* Redistributions of source code must retain the above copyright notice, this
- list of conditions and the following disclaimer.
-
-* Redistributions in binary form must reproduce the above copyright notice,
- this list of conditions and the following disclaimer in the documentation
- and/or other materials provided with the distribution.
-
-THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
-AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
-IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
-DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
-FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
-DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
-SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
-CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
-OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
-OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
diff --git a/vendor/github.com/karrick/godirwalk/README.md b/vendor/github.com/karrick/godirwalk/README.md
deleted file mode 100644
index 4f9922fef..000000000
--- a/vendor/github.com/karrick/godirwalk/README.md
+++ /dev/null
@@ -1,208 +0,0 @@
-# godirwalk
-
-`godirwalk` is a library for traversing a directory tree on a file
-system.
-
-In short, why do I use this library?
-
-1. It's faster than `filepath.Walk`.
-1. It's more correct on Windows than `filepath.Walk`.
-1. It's more easy to use than `filepath.Walk`.
-1. It's more flexible than `filepath.Walk`.
-
-## Usage Example
-
-Additional examples are provided in the `examples/` subdirectory.
-
-This library will normalize the provided top level directory name
-based on the os-specific path separator by calling `filepath.Clean` on
-its first argument. However it always provides the pathname created by
-using the correct os-specific path separator when invoking the
-provided callback function.
-
-```Go
- dirname := "some/directory/root"
- err := godirwalk.Walk(dirname, &godirwalk.Options{
- Callback: func(osPathname string, de *godirwalk.Dirent) error {
- fmt.Printf("%s %s\n", de.ModeType(), osPathname)
- return nil
- },
- Unsorted: true, // (optional) set true for faster yet non-deterministic enumeration (see godoc)
- })
-```
-
-This library not only provides functions for traversing a file system
-directory tree, but also for obtaining a list of immediate descendants
-of a particular directory, typically much more quickly than using
-`os.ReadDir` or `os.ReadDirnames`.
-
-Documentation is available via
-[](https://godoc.org/github.com/karrick/godirwalk).
-
-## Description
-
-Here's why I use `godirwalk` in preference to `filepath.Walk`,
-`os.ReadDir`, and `os.ReadDirnames`.
-
-### It's faster than `filepath.Walk`
-
-When compared against `filepath.Walk` in benchmarks, it has been
-observed to run between five and ten times the speed on darwin, at
-speeds comparable to the that of the unix `find` utility; about twice
-the speed on linux; and about four times the speed on Windows.
-
-How does it obtain this performance boost? It does less work to give
-you nearly the same output. This library calls the same `syscall`
-functions to do the work, but it makes fewer calls, does not throw
-away information that it might need, and creates less memory churn
-along the way by reusing the same scratch buffer rather than
-reallocating a new buffer every time it reads data from the operating
-system.
-
-While traversing a file system directory tree, `filepath.Walk` obtains
-the list of immediate descendants of a directory, and throws away the
-file system node type information provided by the operating system
-that comes with the node's name. Then, immediately prior to invoking
-the callback function, `filepath.Walk` invokes `os.Stat` for each
-node, and passes the returned `os.FileInfo` information to the
-callback.
-
-While the `os.FileInfo` information provided by `os.Stat` is extremely
-helpful--and even includes the `os.FileMode` data--providing it
-requires an additional system call for each node.
-
-Because most callbacks only care about what the node type is, this
-library does not throw the type information away, but rather provides
-that information to the callback function in the form of a
-`os.FileMode` value. Note that the provided `os.FileMode` value that
-this library provides only has the node type information, and does not
-have the permission bits, sticky bits, or other information from the
-file's mode. If the callback does care about a particular node's
-entire `os.FileInfo` data structure, the callback can easiy invoke
-`os.Stat` when needed, and only when needed.
-
-#### Benchmarks
-
-##### macOS
-
-```Bash
-go test -bench=.
-goos: darwin
-goarch: amd64
-pkg: github.com/karrick/godirwalk
-BenchmarkFilepathWalk-8 1 3001274570 ns/op
-BenchmarkGoDirWalk-8 3 465573172 ns/op
-BenchmarkFlameGraphFilepathWalk-8 1 6957916936 ns/op
-BenchmarkFlameGraphGoDirWalk-8 1 4210582571 ns/op
-PASS
-ok github.com/karrick/godirwalk 16.822s
-```
-
-##### Linux
-
-```Bash
-go test -bench=.
-goos: linux
-goarch: amd64
-pkg: github.com/karrick/godirwalk
-BenchmarkFilepathWalk-12 1 1609189170 ns/op
-BenchmarkGoDirWalk-12 5 211336628 ns/op
-BenchmarkFlameGraphFilepathWalk-12 1 3968119932 ns/op
-BenchmarkFlameGraphGoDirWalk-12 1 2139598998 ns/op
-PASS
-ok github.com/karrick/godirwalk 9.007s
-```
-
-### It's more correct on Windows than `filepath.Walk`
-
-I did not previously care about this either, but humor me. We all love
-how we can write once and run everywhere. It is essential for the
-language's adoption, growth, and success, that the software we create
-can run unmodified on all architectures and operating systems
-supported by Go.
-
-When the traversed file system has a logical loop caused by symbolic
-links to directories, on unix `filepath.Walk` ignores symbolic links
-and traverses the entire directory tree without error. On Windows
-however, `filepath.Walk` will continue following directory symbolic
-links, even though it is not supposed to, eventually causing
-`filepath.Walk` to terminate early and return an error when the
-pathname gets too long from concatenating endless loops of symbolic
-links onto the pathname. This error comes from Windows, passes through
-`filepath.Walk`, and to the upstream client running `filepath.Walk`.
-
-The takeaway is that behavior is different based on which platform
-`filepath.Walk` is running. While this is clearly not intentional,
-until it is fixed in the standard library, it presents a compatibility
-problem.
-
-This library correctly identifies symbolic links that point to
-directories and will only follow them when `FollowSymbolicLinks` is
-set to true. Behavior on Windows and other operating systems is
-identical.
-
-### It's more easy to use than `filepath.Walk`
-
-Since this library does not invoke `os.Stat` on every file system node
-it encounters, there is no possible error event for the callback
-function to filter on. The third argument in the `filepath.WalkFunc`
-function signature to pass the error from `os.Stat` to the callback
-function is no longer necessary, and thus eliminated from signature of
-the callback function from this library.
-
-Also, `filepath.Walk` invokes the callback function with a solidus
-delimited pathname regardless of the os-specific path separator. This
-library invokes the callback function with the os-specific pathname
-separator, obviating a call to `filepath.Clean` in the callback
-function for each node prior to actually using the provided pathname.
-
-In other words, even on Windows, `filepath.Walk` will invoke the
-callback with `some/path/to/foo.txt`, requiring well written clients
-to perform pathname normalization for every file prior to working with
-the specified file. In truth, many clients developed on unix and not
-tested on Windows neglect this subtlety, and will result in software
-bugs when running on Windows. This library would invoke the callback
-function with `some\path\to\foo.txt` for the same file when running on
-Windows, eliminating the need to normalize the pathname by the client,
-and lessen the likelyhood that a client will work on unix but not on
-Windows.
-
-### It's more flexible than `filepath.Walk`
-
-#### Configurable Handling of Symbolic Links
-
-The default behavior of this library is to ignore symbolic links to
-directories when walking a directory tree, just like `filepath.Walk`
-does. However, it does invoke the callback function with each node it
-finds, including symbolic links. If a particular use case exists to
-follow symbolic links when traversing a directory tree, this library
-can be invoked in manner to do so, by setting the
-`FollowSymbolicLinks` parameter to true.
-
-#### Configurable Sorting of Directory Children
-
-The default behavior of this library is to always sort the immediate
-descendants of a directory prior to visiting each node, just like
-`filepath.Walk` does. This is usually the desired behavior. However,
-this does come at a performance penalty to sort the names when a
-directory node has many entries. If a particular use case exists that
-does not require sorting the directory's immediate descendants prior
-to visiting its nodes, this library will skip the sorting step when
-the `Unsorted` parameter is set to true.
-
-#### Configurable Post Children Callback
-
-This library provides upstream code with the ability to specify a
-callback to be invoked for each directory after its children are
-processed. This has been used to recursively delete empty directories
-after traversing the file system in a more efficient manner. See the
-`examples/clean-empties` directory for an example of this usage.
-
-#### Configurable Error Callback
-
-This library provides upstream code with the ability to specify a
-callback to be invoked for errors that the operating system returns,
-allowing the upstream code to determine the next course of action to
-take, whether to halt walking the hierarchy, as it would do were no
-error callback provided, or skip the node that caused the error. See
-the `examples/walk-fast` directory for an example of this usage.
diff --git a/vendor/github.com/karrick/godirwalk/dirent.go b/vendor/github.com/karrick/godirwalk/dirent.go
deleted file mode 100644
index 5a2772248..000000000
--- a/vendor/github.com/karrick/godirwalk/dirent.go
+++ /dev/null
@@ -1,74 +0,0 @@
-package godirwalk
-
-import (
- "os"
- "path/filepath"
-
- "github.com/pkg/errors"
-)
-
-// Dirent stores the name and file system mode type of discovered file system
-// entries.
-type Dirent struct {
- name string
- modeType os.FileMode
-}
-
-// NewDirent returns a newly initialized Dirent structure, or an error. This
-// function does not follow symbolic links.
-//
-// This function is rarely used, as Dirent structures are provided by other
-// functions in this library that read and walk directories.
-func NewDirent(osPathname string) (*Dirent, error) {
- fi, err := os.Lstat(osPathname)
- if err != nil {
- return nil, errors.Wrap(err, "cannot lstat")
- }
- return &Dirent{
- name: filepath.Base(osPathname),
- modeType: fi.Mode() & os.ModeType,
- }, nil
-}
-
-// Name returns the basename of the file system entry.
-func (de Dirent) Name() string { return de.name }
-
-// ModeType returns the mode bits that specify the file system node type. We
-// could make our own enum-like data type for encoding the file type, but Go's
-// runtime already gives us architecture independent file modes, as discussed in
-// `os/types.go`:
-//
-// Go's runtime FileMode type has same definition on all systems, so that
-// information about files can be moved from one system to another portably.
-func (de Dirent) ModeType() os.FileMode { return de.modeType }
-
-// IsDir returns true if and only if the Dirent represents a file system
-// directory. Note that on some operating systems, more than one file mode bit
-// may be set for a node. For instance, on Windows, a symbolic link that points
-// to a directory will have both the directory and the symbolic link bits set.
-func (de Dirent) IsDir() bool { return de.modeType&os.ModeDir != 0 }
-
-// IsRegular returns true if and only if the Dirent represents a regular
-// file. That is, it ensures that no mode type bits are set.
-func (de Dirent) IsRegular() bool { return de.modeType&os.ModeType == 0 }
-
-// IsSymlink returns true if and only if the Dirent represents a file system
-// symbolic link. Note that on some operating systems, more than one file mode
-// bit may be set for a node. For instance, on Windows, a symbolic link that
-// points to a directory will have both the directory and the symbolic link bits
-// set.
-func (de Dirent) IsSymlink() bool { return de.modeType&os.ModeSymlink != 0 }
-
-// Dirents represents a slice of Dirent pointers, which are sortable by
-// name. This type satisfies the `sort.Interface` interface.
-type Dirents []*Dirent
-
-// Len returns the count of Dirent structures in the slice.
-func (l Dirents) Len() int { return len(l) }
-
-// Less returns true if and only if the Name of the element specified by the
-// first index is lexicographically less than that of the second index.
-func (l Dirents) Less(i, j int) bool { return l[i].name < l[j].name }
-
-// Swap exchanges the two Dirent entries specified by the two provided indexes.
-func (l Dirents) Swap(i, j int) { l[i], l[j] = l[j], l[i] }
diff --git a/vendor/github.com/karrick/godirwalk/doc.go b/vendor/github.com/karrick/godirwalk/doc.go
deleted file mode 100644
index 0dfdabd48..000000000
--- a/vendor/github.com/karrick/godirwalk/doc.go
+++ /dev/null
@@ -1,34 +0,0 @@
-/*
-Package godirwalk provides functions to read and traverse directory trees.
-
-In short, why do I use this library?
-
-* It's faster than `filepath.Walk`.
-
-* It's more correct on Windows than `filepath.Walk`.
-
-* It's more easy to use than `filepath.Walk`.
-
-* It's more flexible than `filepath.Walk`.
-
-USAGE
-
-This library will normalize the provided top level directory name based on the
-os-specific path separator by calling `filepath.Clean` on its first
-argument. However it always provides the pathname created by using the correct
-os-specific path separator when invoking the provided callback function.
-
- dirname := "some/directory/root"
- err := godirwalk.Walk(dirname, &godirwalk.Options{
- Callback: func(osPathname string, de *godirwalk.Dirent) error {
- fmt.Printf("%s %s\n", de.ModeType(), osPathname)
- return nil
- },
- })
-
-This library not only provides functions for traversing a file system directory
-tree, but also for obtaining a list of immediate descendants of a particular
-directory, typically much more quickly than using `os.ReadDir` or
-`os.ReadDirnames`.
-*/
-package godirwalk
diff --git a/vendor/github.com/karrick/godirwalk/go.mod b/vendor/github.com/karrick/godirwalk/go.mod
deleted file mode 100644
index 6b467a9e1..000000000
--- a/vendor/github.com/karrick/godirwalk/go.mod
+++ /dev/null
@@ -1,3 +0,0 @@
-module github.com/karrick/godirwalk
-
-require github.com/pkg/errors v0.8.0
diff --git a/vendor/github.com/karrick/godirwalk/go.sum b/vendor/github.com/karrick/godirwalk/go.sum
deleted file mode 100644
index 3dfe462f0..000000000
--- a/vendor/github.com/karrick/godirwalk/go.sum
+++ /dev/null
@@ -1,2 +0,0 @@
-github.com/pkg/errors v0.8.0 h1:WdK/asTD0HN+q6hsWO3/vpuAkAr+tw6aNJNDFFf0+qw=
-github.com/pkg/errors v0.8.0/go.mod h1:bwawxfHBFNV+L2hUp1rHADufV3IMtnDRdf1r5NINEl0=
diff --git a/vendor/github.com/karrick/godirwalk/readdir.go b/vendor/github.com/karrick/godirwalk/readdir.go
deleted file mode 100644
index 2bba68975..000000000
--- a/vendor/github.com/karrick/godirwalk/readdir.go
+++ /dev/null
@@ -1,47 +0,0 @@
-package godirwalk
-
-// ReadDirents returns a sortable slice of pointers to Dirent structures, each
-// representing the file system name and mode type for one of the immediate
-// descendant of the specified directory. If the specified directory is a
-// symbolic link, it will be resolved.
-//
-// If an optional scratch buffer is provided that is at least one page of
-// memory, it will be used when reading directory entries from the file system.
-//
-// children, err := godirwalk.ReadDirents(osDirname, nil)
-// if err != nil {
-// return nil, errors.Wrap(err, "cannot get list of directory children")
-// }
-// sort.Sort(children)
-// for _, child := range children {
-// fmt.Printf("%s %s\n", child.ModeType, child.Name)
-// }
-func ReadDirents(osDirname string, scratchBuffer []byte) (Dirents, error) {
- return readdirents(osDirname, scratchBuffer)
-}
-
-// ReadDirnames returns a slice of strings, representing the immediate
-// descendants of the specified directory. If the specified directory is a
-// symbolic link, it will be resolved.
-//
-// If an optional scratch buffer is provided that is at least one page of
-// memory, it will be used when reading directory entries from the file system.
-//
-// Note that this function, depending on operating system, may or may not invoke
-// the ReadDirents function, in order to prepare the list of immediate
-// descendants. Therefore, if your program needs both the names and the file
-// system mode types of descendants, it will always be faster to invoke
-// ReadDirents directly, rather than calling this function, then looping over
-// the results and calling os.Stat for each child.
-//
-// children, err := godirwalk.ReadDirnames(osDirname, nil)
-// if err != nil {
-// return nil, errors.Wrap(err, "cannot get list of directory children")
-// }
-// sort.Strings(children)
-// for _, child := range children {
-// fmt.Printf("%s\n", child)
-// }
-func ReadDirnames(osDirname string, scratchBuffer []byte) ([]string, error) {
- return readdirnames(osDirname, scratchBuffer)
-}
diff --git a/vendor/github.com/karrick/godirwalk/readdir_unix.go b/vendor/github.com/karrick/godirwalk/readdir_unix.go
deleted file mode 100644
index 04a628f7f..000000000
--- a/vendor/github.com/karrick/godirwalk/readdir_unix.go
+++ /dev/null
@@ -1,109 +0,0 @@
-// +build darwin freebsd linux netbsd openbsd
-
-package godirwalk
-
-import (
- "os"
- "path/filepath"
- "syscall"
- "unsafe"
-
- "github.com/pkg/errors"
-)
-
-func readdirents(osDirname string, scratchBuffer []byte) (Dirents, error) {
- dh, err := os.Open(osDirname)
- if err != nil {
- return nil, errors.Wrap(err, "cannot Open")
- }
-
- var entries Dirents
-
- fd := int(dh.Fd())
-
- if len(scratchBuffer) < MinimumScratchBufferSize {
- scratchBuffer = make([]byte, DefaultScratchBufferSize)
- }
-
- var de *syscall.Dirent
-
- for {
- n, err := syscall.ReadDirent(fd, scratchBuffer)
- if err != nil {
- _ = dh.Close() // ignore potential error returned by Close
- return nil, errors.Wrap(err, "cannot ReadDirent")
- }
- if n <= 0 {
- break // end of directory reached
- }
- // Loop over the bytes returned by reading the directory entries.
- buf := scratchBuffer[:n]
- for len(buf) > 0 {
- de = (*syscall.Dirent)(unsafe.Pointer(&buf[0])) // point entry to first syscall.Dirent in buffer
- buf = buf[de.Reclen:] // advance buffer
-
- if inoFromDirent(de) == 0 {
- continue // this item has been deleted, but not yet removed from directory
- }
-
- nameSlice := nameFromDirent(de)
- namlen := len(nameSlice)
- if (namlen == 0) || (namlen == 1 && nameSlice[0] == '.') || (namlen == 2 && nameSlice[0] == '.' && nameSlice[1] == '.') {
- continue // skip unimportant entries
- }
- osChildname := string(nameSlice)
-
- // Convert syscall constant, which is in purview of OS, to a
- // constant defined by Go, assumed by this project to be stable.
- var mode os.FileMode
- switch de.Type {
- case syscall.DT_REG:
- // regular file
- case syscall.DT_DIR:
- mode = os.ModeDir
- case syscall.DT_LNK:
- mode = os.ModeSymlink
- case syscall.DT_CHR:
- mode = os.ModeDevice | os.ModeCharDevice
- case syscall.DT_BLK:
- mode = os.ModeDevice
- case syscall.DT_FIFO:
- mode = os.ModeNamedPipe
- case syscall.DT_SOCK:
- mode = os.ModeSocket
- default:
- // If syscall returned unknown type (e.g., DT_UNKNOWN, DT_WHT),
- // then resolve actual mode by getting stat.
- fi, err := os.Lstat(filepath.Join(osDirname, osChildname))
- if err != nil {
- _ = dh.Close() // ignore potential error returned by Close
- return nil, errors.Wrap(err, "cannot Stat")
- }
- // We only care about the bits that identify the type of a file
- // system node, and can ignore append, exclusive, temporary,
- // setuid, setgid, permission bits, and sticky bits, which are
- // coincident to the bits that declare type of the file system
- // node.
- mode = fi.Mode() & os.ModeType
- }
-
- entries = append(entries, &Dirent{name: osChildname, modeType: mode})
- }
- }
- if err = dh.Close(); err != nil {
- return nil, err
- }
- return entries, nil
-}
-
-func readdirnames(osDirname string, scratchBuffer []byte) ([]string, error) {
- des, err := readdirents(osDirname, scratchBuffer)
- if err != nil {
- return nil, err
- }
- names := make([]string, len(des))
- for i, v := range des {
- names[i] = v.name
- }
- return names, nil
-}
diff --git a/vendor/github.com/karrick/godirwalk/readdir_windows.go b/vendor/github.com/karrick/godirwalk/readdir_windows.go
deleted file mode 100644
index 885a067a4..000000000
--- a/vendor/github.com/karrick/godirwalk/readdir_windows.go
+++ /dev/null
@@ -1,54 +0,0 @@
-package godirwalk
-
-import (
- "os"
-
- "github.com/pkg/errors"
-)
-
-// The functions in this file are mere wrappers of what is already provided by
-// standard library, in order to provide the same API as this library provides.
-//
-// The scratch buffer argument is ignored by this architecture.
-//
-// Please send PR or link to article if you know of a more performant way of
-// enumerating directory contents and mode types on Windows.
-
-func readdirents(osDirname string, _ []byte) (Dirents, error) {
- dh, err := os.Open(osDirname)
- if err != nil {
- return nil, errors.Wrap(err, "cannot Open")
- }
-
- fileinfos, err := dh.Readdir(0)
- if er := dh.Close(); err == nil {
- err = er
- }
- if err != nil {
- return nil, errors.Wrap(err, "cannot Readdir")
- }
-
- entries := make(Dirents, len(fileinfos))
- for i, info := range fileinfos {
- entries[i] = &Dirent{name: info.Name(), modeType: info.Mode() & os.ModeType}
- }
-
- return entries, nil
-}
-
-func readdirnames(osDirname string, _ []byte) ([]string, error) {
- dh, err := os.Open(osDirname)
- if err != nil {
- return nil, errors.Wrap(err, "cannot Open")
- }
-
- entries, err := dh.Readdirnames(0)
- if er := dh.Close(); err == nil {
- err = er
- }
- if err != nil {
- return nil, errors.Wrap(err, "cannot Readdirnames")
- }
-
- return entries, nil
-}
diff --git a/vendor/github.com/karrick/godirwalk/walk.go b/vendor/github.com/karrick/godirwalk/walk.go
deleted file mode 100644
index 4c184ab87..000000000
--- a/vendor/github.com/karrick/godirwalk/walk.go
+++ /dev/null
@@ -1,367 +0,0 @@
-package godirwalk
-
-import (
- "os"
- "path/filepath"
- "sort"
-
- "github.com/pkg/errors"
-)
-
-// DefaultScratchBufferSize specifies the size of the scratch buffer that will
-// be allocated by Walk, ReadDirents, or ReadDirnames when a scratch buffer is
-// not provided or the scratch buffer that is provided is smaller than
-// MinimumScratchBufferSize bytes. This may seem like a large value; however,
-// when a program intends to enumerate large directories, having a larger
-// scratch buffer results in fewer operating system calls.
-const DefaultScratchBufferSize = 64 * 1024
-
-// MinimumScratchBufferSize specifies the minimum size of the scratch buffer
-// that Walk, ReadDirents, and ReadDirnames will use when reading file entries
-// from the operating system. It is initialized to the result from calling
-// `os.Getpagesize()` during program startup.
-var MinimumScratchBufferSize int
-
-func init() {
- MinimumScratchBufferSize = os.Getpagesize()
-}
-
-// Options provide parameters for how the Walk function operates.
-type Options struct {
- // ErrorCallback specifies a function to be invoked in the case of an error
- // that could potentially be ignored while walking a file system
- // hierarchy. When set to nil or left as its zero-value, any error condition
- // causes Walk to immediately return the error describing what took
- // place. When non-nil, this user supplied function is invoked with the OS
- // pathname of the file system object that caused the error along with the
- // error that took place. The return value of the supplied ErrorCallback
- // function determines whether the error will cause Walk to halt immediately
- // as it would were no ErrorCallback value provided, or skip this file
- // system node yet continue on with the remaining nodes in the file system
- // hierarchy.
- //
- // ErrorCallback is invoked both for errors that are returned by the
- // runtime, and for errors returned by other user supplied callback
- // functions.
- ErrorCallback func(string, error) ErrorAction
-
- // FollowSymbolicLinks specifies whether Walk will follow symbolic links
- // that refer to directories. When set to false or left as its zero-value,
- // Walk will still invoke the callback function with symbolic link nodes,
- // but if the symbolic link refers to a directory, it will not recurse on
- // that directory. When set to true, Walk will recurse on symbolic links
- // that refer to a directory.
- FollowSymbolicLinks bool
-
- // Unsorted controls whether or not Walk will sort the immediate descendants
- // of a directory by their relative names prior to visiting each of those
- // entries.
- //
- // When set to false or left at its zero-value, Walk will get the list of
- // immediate descendants of a particular directory, sort that list by
- // lexical order of their names, and then visit each node in the list in
- // sorted order. This will cause Walk to always traverse the same directory
- // tree in the same order, however may be inefficient for directories with
- // many immediate descendants.
- //
- // When set to true, Walk skips sorting the list of immediate descendants
- // for a directory, and simply visits each node in the order the operating
- // system enumerated them. This will be more fast, but with the side effect
- // that the traversal order may be different from one invocation to the
- // next.
- Unsorted bool
-
- // Callback is a required function that Walk will invoke for every file
- // system node it encounters.
- Callback WalkFunc
-
- // PostChildrenCallback is an option function that Walk will invoke for
- // every file system directory it encounters after its children have been
- // processed.
- PostChildrenCallback WalkFunc
-
- // ScratchBuffer is an optional byte slice to use as a scratch buffer for
- // Walk to use when reading directory entries, to reduce amount of garbage
- // generation. Not all architectures take advantage of the scratch
- // buffer. If omitted or the provided buffer has fewer bytes than
- // MinimumScratchBufferSize, then a buffer with DefaultScratchBufferSize
- // bytes will be created and used once per Walk invocation.
- ScratchBuffer []byte
-}
-
-// ErrorAction defines a set of actions the Walk function could take based on
-// the occurrence of an error while walking the file system. See the
-// documentation for the ErrorCallback field of the Options structure for more
-// information.
-type ErrorAction int
-
-const (
- // Halt is the ErrorAction return value when the upstream code wants to halt
- // the walk process when a runtime error takes place. It matches the default
- // action the Walk function would take were no ErrorCallback provided.
- Halt ErrorAction = iota
-
- // SkipNode is the ErrorAction return value when the upstream code wants to
- // ignore the runtime error for the current file system node, skip
- // processing of the node that caused the error, and continue walking the
- // file system hierarchy with the remaining nodes.
- SkipNode
-)
-
-// WalkFunc is the type of the function called for each file system node visited
-// by Walk. The pathname argument will contain the argument to Walk as a prefix;
-// that is, if Walk is called with "dir", which is a directory containing the
-// file "a", the provided WalkFunc will be invoked with the argument "dir/a",
-// using the correct os.PathSeparator for the Go Operating System architecture,
-// GOOS. The directory entry argument is a pointer to a Dirent for the node,
-// providing access to both the basename and the mode type of the file system
-// node.
-//
-// If an error is returned by the Callback or PostChildrenCallback functions,
-// and no ErrorCallback function is provided, processing stops. If an
-// ErrorCallback function is provided, then it is invoked with the OS pathname
-// of the node that caused the error along along with the error. The return
-// value of the ErrorCallback function determines whether to halt processing, or
-// skip this node and continue processing remaining file system nodes.
-//
-// The exception is when the function returns the special value
-// filepath.SkipDir. If the function returns filepath.SkipDir when invoked on a
-// directory, Walk skips the directory's contents entirely. If the function
-// returns filepath.SkipDir when invoked on a non-directory file system node,
-// Walk skips the remaining files in the containing directory. Note that any
-// supplied ErrorCallback function is not invoked with filepath.SkipDir when the
-// Callback or PostChildrenCallback functions return that special value.
-type WalkFunc func(osPathname string, directoryEntry *Dirent) error
-
-// Walk walks the file tree rooted at the specified directory, calling the
-// specified callback function for each file system node in the tree, including
-// root, symbolic links, and other node types. The nodes are walked in lexical
-// order, which makes the output deterministic but means that for very large
-// directories this function can be inefficient.
-//
-// This function is often much faster than filepath.Walk because it does not
-// invoke os.Stat for every node it encounters, but rather obtains the file
-// system node type when it reads the parent directory.
-//
-// If a runtime error occurs, either from the operating system or from the
-// upstream Callback or PostChildrenCallback functions, processing typically
-// halts. However, when an ErrorCallback function is provided in the provided
-// Options structure, that function is invoked with the error along with the OS
-// pathname of the file system node that caused the error. The ErrorCallback
-// function's return value determines the action that Walk will then take.
-//
-// func main() {
-// dirname := "."
-// if len(os.Args) > 1 {
-// dirname = os.Args[1]
-// }
-// err := godirwalk.Walk(dirname, &godirwalk.Options{
-// Callback: func(osPathname string, de *godirwalk.Dirent) error {
-// fmt.Printf("%s %s\n", de.ModeType(), osPathname)
-// return nil
-// },
-// ErrorCallback: func(osPathname string, err error) godirwalk.ErrorAction {
-// // Your program may want to log the error somehow.
-// fmt.Fprintf(os.Stderr, "ERROR: %s\n", err)
-//
-// // For the purposes of this example, a simple SkipNode will suffice,
-// // although in reality perhaps additional logic might be called for.
-// return godirwalk.SkipNode
-// },
-// })
-// if err != nil {
-// fmt.Fprintf(os.Stderr, "%s\n", err)
-// os.Exit(1)
-// }
-// }
-func Walk(pathname string, options *Options) error {
- pathname = filepath.Clean(pathname)
-
- var fi os.FileInfo
- var err error
-
- if options.FollowSymbolicLinks {
- fi, err = os.Stat(pathname)
- if err != nil {
- return errors.Wrap(err, "cannot Stat")
- }
- } else {
- fi, err = os.Lstat(pathname)
- if err != nil {
- return errors.Wrap(err, "cannot Lstat")
- }
- }
-
- mode := fi.Mode()
- if mode&os.ModeDir == 0 {
- return errors.Errorf("cannot Walk non-directory: %s", pathname)
- }
-
- dirent := &Dirent{
- name: filepath.Base(pathname),
- modeType: mode & os.ModeType,
- }
-
- // If ErrorCallback is nil, set to a default value that halts the walk
- // process on all operating system errors. This is done to allow error
- // handling to be more succinct in the walk code.
- if options.ErrorCallback == nil {
- options.ErrorCallback = defaultErrorCallback
- }
-
- if len(options.ScratchBuffer) < MinimumScratchBufferSize {
- options.ScratchBuffer = make([]byte, DefaultScratchBufferSize)
- }
-
- err = walk(pathname, dirent, options)
- if err == filepath.SkipDir {
- return nil // silence SkipDir for top level
- }
- return err
-}
-
-// defaultErrorCallback always returns Halt because if the upstream code did not
-// provide an ErrorCallback function, walking the file system hierarchy ought to
-// halt upon any operating system error.
-func defaultErrorCallback(_ string, _ error) ErrorAction { return Halt }
-
-// walk recursively traverses the file system node specified by pathname and the
-// Dirent.
-func walk(osPathname string, dirent *Dirent, options *Options) error {
- err := options.Callback(osPathname, dirent)
- if err != nil {
- if err == filepath.SkipDir {
- return err
- }
- err = errors.Wrap(err, "Callback") // wrap potential errors returned by callback
- if action := options.ErrorCallback(osPathname, err); action == SkipNode {
- return nil
- }
- return err
- }
-
- // On some platforms, an entry can have more than one mode type bit set.
- // For instance, it could have both the symlink bit and the directory bit
- // set indicating it's a symlink to a directory.
- if dirent.IsSymlink() {
- if !options.FollowSymbolicLinks {
- return nil
- }
- // Only need to Stat entry if platform did not already have os.ModeDir
- // set, such as would be the case for unix like operating systems. (This
- // guard eliminates extra os.Stat check on Windows.)
- if !dirent.IsDir() {
- referent, err := os.Readlink(osPathname)
- if err != nil {
- err = errors.Wrap(err, "cannot Readlink")
- if action := options.ErrorCallback(osPathname, err); action == SkipNode {
- return nil
- }
- return err
- }
-
- var osp string
- if filepath.IsAbs(referent) {
- osp = referent
- } else {
- osp = filepath.Join(filepath.Dir(osPathname), referent)
- }
-
- fi, err := os.Stat(osp)
- if err != nil {
- err = errors.Wrap(err, "cannot Stat")
- if action := options.ErrorCallback(osp, err); action == SkipNode {
- return nil
- }
- return err
- }
- dirent.modeType = fi.Mode() & os.ModeType
- }
- }
-
- if !dirent.IsDir() {
- return nil
- }
-
- // If get here, then specified pathname refers to a directory.
- deChildren, err := ReadDirents(osPathname, options.ScratchBuffer)
- if err != nil {
- err = errors.Wrap(err, "cannot ReadDirents")
- if action := options.ErrorCallback(osPathname, err); action == SkipNode {
- return nil
- }
- return err
- }
-
- if !options.Unsorted {
- sort.Sort(deChildren) // sort children entries unless upstream says to leave unsorted
- }
-
- for _, deChild := range deChildren {
- osChildname := filepath.Join(osPathname, deChild.name)
- err = walk(osChildname, deChild, options)
- if err != nil {
- if err != filepath.SkipDir {
- return err
- }
- // If received skipdir on a directory, stop processing that
- // directory, but continue to its siblings. If received skipdir on a
- // non-directory, stop processing remaining siblings.
- if deChild.IsSymlink() {
- // Only need to Stat entry if platform did not already have
- // os.ModeDir set, such as would be the case for unix like
- // operating systems. (This guard eliminates extra os.Stat check
- // on Windows.)
- if !deChild.IsDir() {
- // Resolve symbolic link referent to determine whether node
- // is directory or not.
- referent, err := os.Readlink(osChildname)
- if err != nil {
- err = errors.Wrap(err, "cannot Readlink")
- if action := options.ErrorCallback(osChildname, err); action == SkipNode {
- continue // with next child
- }
- return err
- }
-
- var osp string
- if filepath.IsAbs(referent) {
- osp = referent
- } else {
- osp = filepath.Join(osPathname, referent)
- }
-
- fi, err := os.Stat(osp)
- if err != nil {
- err = errors.Wrap(err, "cannot Stat")
- if action := options.ErrorCallback(osp, err); action == SkipNode {
- continue // with next child
- }
- return err
- }
- deChild.modeType = fi.Mode() & os.ModeType
- }
- }
- if !deChild.IsDir() {
- // If not directory, return immediately, thus skipping remainder
- // of siblings.
- return nil
- }
- }
- }
-
- if options.PostChildrenCallback == nil {
- return nil
- }
-
- err = options.PostChildrenCallback(osPathname, dirent)
- if err == nil || err == filepath.SkipDir {
- return err
- }
-
- err = errors.Wrap(err, "PostChildrenCallback") // wrap potential errors returned by callback
- if action := options.ErrorCallback(osPathname, err); action == SkipNode {
- return nil
- }
- return err
-}
diff --git a/vendor/github.com/karrick/godirwalk/withFileno.go b/vendor/github.com/karrick/godirwalk/withFileno.go
deleted file mode 100644
index 1dc04a717..000000000
--- a/vendor/github.com/karrick/godirwalk/withFileno.go
+++ /dev/null
@@ -1,9 +0,0 @@
-// +build dragonfly freebsd openbsd netbsd
-
-package godirwalk
-
-import "syscall"
-
-func inoFromDirent(de *syscall.Dirent) uint64 {
- return uint64(de.Fileno)
-}
diff --git a/vendor/github.com/karrick/godirwalk/withIno.go b/vendor/github.com/karrick/godirwalk/withIno.go
deleted file mode 100644
index 47fc12540..000000000
--- a/vendor/github.com/karrick/godirwalk/withIno.go
+++ /dev/null
@@ -1,9 +0,0 @@
-// +build darwin linux
-
-package godirwalk
-
-import "syscall"
-
-func inoFromDirent(de *syscall.Dirent) uint64 {
- return de.Ino
-}
diff --git a/vendor/github.com/karrick/godirwalk/withNamlen.go b/vendor/github.com/karrick/godirwalk/withNamlen.go
deleted file mode 100644
index 46a4af500..000000000
--- a/vendor/github.com/karrick/godirwalk/withNamlen.go
+++ /dev/null
@@ -1,29 +0,0 @@
-// +build darwin dragonfly freebsd netbsd openbsd
-
-package godirwalk
-
-import (
- "reflect"
- "syscall"
- "unsafe"
-)
-
-func nameFromDirent(de *syscall.Dirent) []byte {
- // Because this GOOS' syscall.Dirent provides a Namlen field that says how
- // long the name is, this function does not need to search for the NULL
- // byte.
- ml := int(de.Namlen)
-
- // Convert syscall.Dirent.Name, which is array of int8, to []byte, by
- // overwriting Cap, Len, and Data slice header fields to values from
- // syscall.Dirent fields. Setting the Cap, Len, and Data field values for
- // the slice header modifies what the slice header points to, and in this
- // case, the name buffer.
- var name []byte
- sh := (*reflect.SliceHeader)(unsafe.Pointer(&name))
- sh.Cap = ml
- sh.Len = ml
- sh.Data = uintptr(unsafe.Pointer(&de.Name[0]))
-
- return name
-}
diff --git a/vendor/github.com/karrick/godirwalk/withoutNamlen.go b/vendor/github.com/karrick/godirwalk/withoutNamlen.go
deleted file mode 100644
index dcf9f3a97..000000000
--- a/vendor/github.com/karrick/godirwalk/withoutNamlen.go
+++ /dev/null
@@ -1,36 +0,0 @@
-// +build nacl linux solaris
-
-package godirwalk
-
-import (
- "bytes"
- "reflect"
- "syscall"
- "unsafe"
-)
-
-func nameFromDirent(de *syscall.Dirent) []byte {
- // Because this GOOS' syscall.Dirent does not provide a field that specifies
- // the name length, this function must first calculate the max possible name
- // length, and then search for the NULL byte.
- ml := int(uint64(de.Reclen) - uint64(unsafe.Offsetof(syscall.Dirent{}.Name)))
-
- // Convert syscall.Dirent.Name, which is array of int8, to []byte, by
- // overwriting Cap, Len, and Data slice header fields to values from
- // syscall.Dirent fields. Setting the Cap, Len, and Data field values for
- // the slice header modifies what the slice header points to, and in this
- // case, the name buffer.
- var name []byte
- sh := (*reflect.SliceHeader)(unsafe.Pointer(&name))
- sh.Cap = ml
- sh.Len = ml
- sh.Data = uintptr(unsafe.Pointer(&de.Name[0]))
-
- if index := bytes.IndexByte(name, 0); index >= 0 {
- // Found NULL byte; set slice's cap and len accordingly.
- sh.Cap = index
- sh.Len = index
- }
-
- return name
-}
diff --git a/vendor/github.com/konsorten/go-windows-terminal-sequences/LICENSE b/vendor/github.com/konsorten/go-windows-terminal-sequences/LICENSE
deleted file mode 100644
index 14127cd83..000000000
--- a/vendor/github.com/konsorten/go-windows-terminal-sequences/LICENSE
+++ /dev/null
@@ -1,9 +0,0 @@
-(The MIT License)
-
-Copyright (c) 2017 marvin + konsorten GmbH (open-source@konsorten.de)
-
-Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the 'Software'), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED 'AS IS', WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
diff --git a/vendor/github.com/konsorten/go-windows-terminal-sequences/README.md b/vendor/github.com/konsorten/go-windows-terminal-sequences/README.md
deleted file mode 100644
index 195333e51..000000000
--- a/vendor/github.com/konsorten/go-windows-terminal-sequences/README.md
+++ /dev/null
@@ -1,41 +0,0 @@
-# Windows Terminal Sequences
-
-This library allow for enabling Windows terminal color support for Go.
-
-See [Console Virtual Terminal Sequences](https://docs.microsoft.com/en-us/windows/console/console-virtual-terminal-sequences) for details.
-
-## Usage
-
-```go
-import (
- "syscall"
-
- sequences "github.com/konsorten/go-windows-terminal-sequences"
-)
-
-func main() {
- sequences.EnableVirtualTerminalProcessing(syscall.Stdout, true)
-}
-
-```
-
-## Authors
-
-The tool is sponsored by the [marvin + konsorten GmbH](http://www.konsorten.de).
-
-We thank all the authors who provided code to this library:
-
-* Felix Kollmann
-* Nicolas Perraut
-
-## License
-
-(The MIT License)
-
-Copyright (c) 2018 marvin + konsorten GmbH (open-source@konsorten.de)
-
-Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the 'Software'), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED 'AS IS', WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
diff --git a/vendor/github.com/konsorten/go-windows-terminal-sequences/go.mod b/vendor/github.com/konsorten/go-windows-terminal-sequences/go.mod
deleted file mode 100644
index 716c61312..000000000
--- a/vendor/github.com/konsorten/go-windows-terminal-sequences/go.mod
+++ /dev/null
@@ -1 +0,0 @@
-module github.com/konsorten/go-windows-terminal-sequences
diff --git a/vendor/github.com/konsorten/go-windows-terminal-sequences/sequences.go b/vendor/github.com/konsorten/go-windows-terminal-sequences/sequences.go
deleted file mode 100644
index ef18d8f97..000000000
--- a/vendor/github.com/konsorten/go-windows-terminal-sequences/sequences.go
+++ /dev/null
@@ -1,36 +0,0 @@
-// +build windows
-
-package sequences
-
-import (
- "syscall"
- "unsafe"
-)
-
-var (
- kernel32Dll *syscall.LazyDLL = syscall.NewLazyDLL("Kernel32.dll")
- setConsoleMode *syscall.LazyProc = kernel32Dll.NewProc("SetConsoleMode")
-)
-
-func EnableVirtualTerminalProcessing(stream syscall.Handle, enable bool) error {
- const ENABLE_VIRTUAL_TERMINAL_PROCESSING uint32 = 0x4
-
- var mode uint32
- err := syscall.GetConsoleMode(syscall.Stdout, &mode)
- if err != nil {
- return err
- }
-
- if enable {
- mode |= ENABLE_VIRTUAL_TERMINAL_PROCESSING
- } else {
- mode &^= ENABLE_VIRTUAL_TERMINAL_PROCESSING
- }
-
- ret, _, err := setConsoleMode.Call(uintptr(unsafe.Pointer(stream)), uintptr(mode))
- if ret == 0 {
- return err
- }
-
- return nil
-}
diff --git a/vendor/github.com/konsorten/go-windows-terminal-sequences/sequences_dummy.go b/vendor/github.com/konsorten/go-windows-terminal-sequences/sequences_dummy.go
deleted file mode 100644
index df61a6f2f..000000000
--- a/vendor/github.com/konsorten/go-windows-terminal-sequences/sequences_dummy.go
+++ /dev/null
@@ -1,11 +0,0 @@
-// +build linux darwin
-
-package sequences
-
-import (
- "fmt"
-)
-
-func EnableVirtualTerminalProcessing(stream uintptr, enable bool) error {
- return fmt.Errorf("windows only package")
-}
diff --git a/vendor/github.com/magiconair/properties/.gitignore b/vendor/github.com/magiconair/properties/.gitignore
deleted file mode 100644
index e7081ff52..000000000
--- a/vendor/github.com/magiconair/properties/.gitignore
+++ /dev/null
@@ -1,6 +0,0 @@
-*.sublime-project
-*.sublime-workspace
-*.un~
-*.swp
-.idea/
-*.iml
diff --git a/vendor/github.com/magiconair/properties/.travis.yml b/vendor/github.com/magiconair/properties/.travis.yml
deleted file mode 100644
index 3e7c3d2c8..000000000
--- a/vendor/github.com/magiconair/properties/.travis.yml
+++ /dev/null
@@ -1,10 +0,0 @@
-language: go
-go:
- - 1.4.x
- - 1.5.x
- - 1.6.x
- - 1.7.x
- - 1.8.x
- - 1.9.x
- - "1.10.x"
- - tip
diff --git a/vendor/github.com/magiconair/properties/CHANGELOG.md b/vendor/github.com/magiconair/properties/CHANGELOG.md
deleted file mode 100644
index f83adc205..000000000
--- a/vendor/github.com/magiconair/properties/CHANGELOG.md
+++ /dev/null
@@ -1,131 +0,0 @@
-## Changelog
-
-### [1.8](https://github.com/magiconair/properties/tree/v1.8) - 15 May 2018
-
- * [PR #26](https://github.com/magiconair/properties/pull/26): Disable expansion during loading
-
- This adds the option to disable property expansion during loading.
-
- Thanks to [@kmala](https://github.com/kmala) for the patch.
-
-### [1.7.6](https://github.com/magiconair/properties/tree/v1.7.6) - 14 Feb 2018
-
- * [PR #29](https://github.com/magiconair/properties/pull/29): Reworked expansion logic to handle more complex cases.
-
- See PR for an example.
-
- Thanks to [@yobert](https://github.com/yobert) for the fix.
-
-### [1.7.5](https://github.com/magiconair/properties/tree/v1.7.5) - 13 Feb 2018
-
- * [PR #28](https://github.com/magiconair/properties/pull/28): Support duplicate expansions in the same value
-
- Values which expand the same key multiple times (e.g. `key=${a} ${a}`) will no longer fail
- with a `circular reference error`.
-
- Thanks to [@yobert](https://github.com/yobert) for the fix.
-
-### [1.7.4](https://github.com/magiconair/properties/tree/v1.7.4) - 31 Oct 2017
-
- * [Issue #23](https://github.com/magiconair/properties/issues/23): Ignore blank lines with whitespaces
-
- * [PR #24](https://github.com/magiconair/properties/pull/24): Update keys when DisableExpansion is enabled
-
- Thanks to [@mgurov](https://github.com/mgurov) for the fix.
-
-### [1.7.3](https://github.com/magiconair/properties/tree/v1.7.3) - 10 Jul 2017
-
- * [Issue #17](https://github.com/magiconair/properties/issues/17): Add [SetValue()](http://godoc.org/github.com/magiconair/properties#Properties.SetValue) method to set values generically
- * [Issue #22](https://github.com/magiconair/properties/issues/22): Add [LoadMap()](http://godoc.org/github.com/magiconair/properties#LoadMap) function to load properties from a string map
-
-### [1.7.2](https://github.com/magiconair/properties/tree/v1.7.2) - 20 Mar 2017
-
- * [Issue #15](https://github.com/magiconair/properties/issues/15): Drop gocheck dependency
- * [PR #21](https://github.com/magiconair/properties/pull/21): Add [Map()](http://godoc.org/github.com/magiconair/properties#Properties.Map) and [FilterFunc()](http://godoc.org/github.com/magiconair/properties#Properties.FilterFunc)
-
-### [1.7.1](https://github.com/magiconair/properties/tree/v1.7.1) - 13 Jan 2017
-
- * [Issue #14](https://github.com/magiconair/properties/issues/14): Decouple TestLoadExpandedFile from `$USER`
- * [PR #12](https://github.com/magiconair/properties/pull/12): Load from files and URLs
- * [PR #16](https://github.com/magiconair/properties/pull/16): Keep gofmt happy
- * [PR #18](https://github.com/magiconair/properties/pull/18): Fix Delete() function
-
-### [1.7.0](https://github.com/magiconair/properties/tree/v1.7.0) - 20 Mar 2016
-
- * [Issue #10](https://github.com/magiconair/properties/issues/10): Add [LoadURL,LoadURLs,MustLoadURL,MustLoadURLs](http://godoc.org/github.com/magiconair/properties#LoadURL) method to load properties from a URL.
- * [Issue #11](https://github.com/magiconair/properties/issues/11): Add [LoadString,MustLoadString](http://godoc.org/github.com/magiconair/properties#LoadString) method to load properties from an UTF8 string.
- * [PR #8](https://github.com/magiconair/properties/pull/8): Add [MustFlag](http://godoc.org/github.com/magiconair/properties#Properties.MustFlag) method to provide overrides via command line flags. (@pascaldekloe)
-
-### [1.6.0](https://github.com/magiconair/properties/tree/v1.6.0) - 11 Dec 2015
-
- * Add [Decode](http://godoc.org/github.com/magiconair/properties#Properties.Decode) method to populate struct from properties via tags.
-
-### [1.5.6](https://github.com/magiconair/properties/tree/v1.5.6) - 18 Oct 2015
-
- * Vendored in gopkg.in/check.v1
-
-### [1.5.5](https://github.com/magiconair/properties/tree/v1.5.5) - 31 Jul 2015
-
- * [PR #6](https://github.com/magiconair/properties/pull/6): Add [Delete](http://godoc.org/github.com/magiconair/properties#Properties.Delete) method to remove keys including comments. (@gerbenjacobs)
-
-### [1.5.4](https://github.com/magiconair/properties/tree/v1.5.4) - 23 Jun 2015
-
- * [Issue #5](https://github.com/magiconair/properties/issues/5): Allow disabling of property expansion [DisableExpansion](http://godoc.org/github.com/magiconair/properties#Properties.DisableExpansion). When property expansion is disabled Properties become a simple key/value store and don't check for circular references.
-
-### [1.5.3](https://github.com/magiconair/properties/tree/v1.5.3) - 02 Jun 2015
-
- * [Issue #4](https://github.com/magiconair/properties/issues/4): Maintain key order in [Filter()](http://godoc.org/github.com/magiconair/properties#Properties.Filter), [FilterPrefix()](http://godoc.org/github.com/magiconair/properties#Properties.FilterPrefix) and [FilterRegexp()](http://godoc.org/github.com/magiconair/properties#Properties.FilterRegexp)
-
-### [1.5.2](https://github.com/magiconair/properties/tree/v1.5.2) - 10 Apr 2015
-
- * [Issue #3](https://github.com/magiconair/properties/issues/3): Don't print comments in [WriteComment()](http://godoc.org/github.com/magiconair/properties#Properties.WriteComment) if they are all empty
- * Add clickable links to README
-
-### [1.5.1](https://github.com/magiconair/properties/tree/v1.5.1) - 08 Dec 2014
-
- * Added [GetParsedDuration()](http://godoc.org/github.com/magiconair/properties#Properties.GetParsedDuration) and [MustGetParsedDuration()](http://godoc.org/github.com/magiconair/properties#Properties.MustGetParsedDuration) for values specified compatible with
- [time.ParseDuration()](http://golang.org/pkg/time/#ParseDuration).
-
-### [1.5.0](https://github.com/magiconair/properties/tree/v1.5.0) - 18 Nov 2014
-
- * Added support for single and multi-line comments (reading, writing and updating)
- * The order of keys is now preserved
- * Calling [Set()](http://godoc.org/github.com/magiconair/properties#Properties.Set) with an empty key now silently ignores the call and does not create a new entry
- * Added a [MustSet()](http://godoc.org/github.com/magiconair/properties#Properties.MustSet) method
- * Migrated test library from launchpad.net/gocheck to [gopkg.in/check.v1](http://gopkg.in/check.v1)
-
-### [1.4.2](https://github.com/magiconair/properties/tree/v1.4.2) - 15 Nov 2014
-
- * [Issue #2](https://github.com/magiconair/properties/issues/2): Fixed goroutine leak in parser which created two lexers but cleaned up only one
-
-### [1.4.1](https://github.com/magiconair/properties/tree/v1.4.1) - 13 Nov 2014
-
- * [Issue #1](https://github.com/magiconair/properties/issues/1): Fixed bug in Keys() method which returned an empty string
-
-### [1.4.0](https://github.com/magiconair/properties/tree/v1.4.0) - 23 Sep 2014
-
- * Added [Keys()](http://godoc.org/github.com/magiconair/properties#Properties.Keys) to get the keys
- * Added [Filter()](http://godoc.org/github.com/magiconair/properties#Properties.Filter), [FilterRegexp()](http://godoc.org/github.com/magiconair/properties#Properties.FilterRegexp) and [FilterPrefix()](http://godoc.org/github.com/magiconair/properties#Properties.FilterPrefix) to get a subset of the properties
-
-### [1.3.0](https://github.com/magiconair/properties/tree/v1.3.0) - 18 Mar 2014
-
-* Added support for time.Duration
-* Made MustXXX() failure beha[ior configurable (log.Fatal, panic](https://github.com/magiconair/properties/tree/vior configurable (log.Fatal, panic) - custom)
-* Changed default of MustXXX() failure from panic to log.Fatal
-
-### [1.2.0](https://github.com/magiconair/properties/tree/v1.2.0) - 05 Mar 2014
-
-* Added MustGet... functions
-* Added support for int and uint with range checks on 32 bit platforms
-
-### [1.1.0](https://github.com/magiconair/properties/tree/v1.1.0) - 20 Jan 2014
-
-* Renamed from goproperties to properties
-* Added support for expansion of environment vars in
- filenames and value expressions
-* Fixed bug where value expressions were not at the
- start of the string
-
-### [1.0.0](https://github.com/magiconair/properties/tree/v1.0.0) - 7 Jan 2014
-
-* Initial release
diff --git a/vendor/github.com/magiconair/properties/LICENSE b/vendor/github.com/magiconair/properties/LICENSE
deleted file mode 100644
index b387087c5..000000000
--- a/vendor/github.com/magiconair/properties/LICENSE
+++ /dev/null
@@ -1,25 +0,0 @@
-goproperties - properties file decoder for Go
-
-Copyright (c) 2013-2018 - Frank Schroeder
-
-All rights reserved.
-
-Redistribution and use in source and binary forms, with or without
-modification, are permitted provided that the following conditions are met:
-
-1. Redistributions of source code must retain the above copyright notice, this
- list of conditions and the following disclaimer.
-2. Redistributions in binary form must reproduce the above copyright notice,
- this list of conditions and the following disclaimer in the documentation
- and/or other materials provided with the distribution.
-
-THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
-ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
-WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
-DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
-ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
-(INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
-LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
-ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
-(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
diff --git a/vendor/github.com/magiconair/properties/README.md b/vendor/github.com/magiconair/properties/README.md
deleted file mode 100644
index 2c05f290f..000000000
--- a/vendor/github.com/magiconair/properties/README.md
+++ /dev/null
@@ -1,129 +0,0 @@
-[](https://github.com/magiconair/properties/releases)
-[](https://travis-ci.org/magiconair/properties)
-[](https://app.codeship.com/projects/274177")
-[](https://raw.githubusercontent.com/magiconair/properties/master/LICENSE)
-[](http://godoc.org/github.com/magiconair/properties)
-
-# Overview
-
-#### Please run `git pull --tags` to update the tags. See [below](#updated-git-tags) why.
-
-properties is a Go library for reading and writing properties files.
-
-It supports reading from multiple files or URLs and Spring style recursive
-property expansion of expressions like `${key}` to their corresponding value.
-Value expressions can refer to other keys like in `${key}` or to environment
-variables like in `${USER}`. Filenames can also contain environment variables
-like in `/home/${USER}/myapp.properties`.
-
-Properties can be decoded into structs, maps, arrays and values through
-struct tags.
-
-Comments and the order of keys are preserved. Comments can be modified
-and can be written to the output.
-
-The properties library supports both ISO-8859-1 and UTF-8 encoded data.
-
-Starting from version 1.3.0 the behavior of the MustXXX() functions is
-configurable by providing a custom `ErrorHandler` function. The default has
-changed from `panic` to `log.Fatal` but this is configurable and custom
-error handling functions can be provided. See the package documentation for
-details.
-
-Read the full documentation on [GoDoc](https://godoc.org/github.com/magiconair/properties) [](https://godoc.org/github.com/magiconair/properties)
-
-## Getting Started
-
-```go
-import (
- "flag"
- "github.com/magiconair/properties"
-)
-
-func main() {
- // init from a file
- p := properties.MustLoadFile("${HOME}/config.properties", properties.UTF8)
-
- // or multiple files
- p = properties.MustLoadFiles([]string{
- "${HOME}/config.properties",
- "${HOME}/config-${USER}.properties",
- }, properties.UTF8, true)
-
- // or from a map
- p = properties.LoadMap(map[string]string{"key": "value", "abc": "def"})
-
- // or from a string
- p = properties.MustLoadString("key=value\nabc=def")
-
- // or from a URL
- p = properties.MustLoadURL("http://host/path")
-
- // or from multiple URLs
- p = properties.MustLoadURL([]string{
- "http://host/config",
- "http://host/config-${USER}",
- }, true)
-
- // or from flags
- p.MustFlag(flag.CommandLine)
-
- // get values through getters
- host := p.MustGetString("host")
- port := p.GetInt("port", 8080)
-
- // or through Decode
- type Config struct {
- Host string `properties:"host"`
- Port int `properties:"port,default=9000"`
- Accept []string `properties:"accept,default=image/png;image;gif"`
- Timeout time.Duration `properties:"timeout,default=5s"`
- }
- var cfg Config
- if err := p.Decode(&cfg); err != nil {
- log.Fatal(err)
- }
-}
-
-```
-
-## Installation and Upgrade
-
-```
-$ go get -u github.com/magiconair/properties
-```
-
-## License
-
-2 clause BSD license. See [LICENSE](https://github.com/magiconair/properties/blob/master/LICENSE) file for details.
-
-## ToDo
-
-* Dump contents with passwords and secrets obscured
-
-## Updated Git tags
-
-#### 13 Feb 2018
-
-I realized that all of the git tags I had pushed before v1.7.5 were lightweight tags
-and I've only recently learned that this doesn't play well with `git describe` 😞
-
-I have replaced all lightweight tags with signed tags using this script which should
-retain the commit date, name and email address. Please run `git pull --tags` to update them.
-
-Worst case you have to reclone the repo.
-
-```shell
-#!/bin/bash
-tag=$1
-echo "Updating $tag"
-date=$(git show ${tag}^0 --format=%aD | head -1)
-email=$(git show ${tag}^0 --format=%aE | head -1)
-name=$(git show ${tag}^0 --format=%aN | head -1)
-GIT_COMMITTER_DATE="$date" GIT_COMMITTER_NAME="$name" GIT_COMMITTER_EMAIL="$email" git tag -s -f ${tag} ${tag}^0 -m ${tag}
-```
-
-I apologize for the inconvenience.
-
-Frank
-
diff --git a/vendor/github.com/magiconair/properties/decode.go b/vendor/github.com/magiconair/properties/decode.go
deleted file mode 100644
index 3ebf8049c..000000000
--- a/vendor/github.com/magiconair/properties/decode.go
+++ /dev/null
@@ -1,289 +0,0 @@
-// Copyright 2018 Frank Schroeder. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package properties
-
-import (
- "fmt"
- "reflect"
- "strconv"
- "strings"
- "time"
-)
-
-// Decode assigns property values to exported fields of a struct.
-//
-// Decode traverses v recursively and returns an error if a value cannot be
-// converted to the field type or a required value is missing for a field.
-//
-// The following type dependent decodings are used:
-//
-// String, boolean, numeric fields have the value of the property key assigned.
-// The property key name is the name of the field. A different key and a default
-// value can be set in the field's tag. Fields without default value are
-// required. If the value cannot be converted to the field type an error is
-// returned.
-//
-// time.Duration fields have the result of time.ParseDuration() assigned.
-//
-// time.Time fields have the vaule of time.Parse() assigned. The default layout
-// is time.RFC3339 but can be set in the field's tag.
-//
-// Arrays and slices of string, boolean, numeric, time.Duration and time.Time
-// fields have the value interpreted as a comma separated list of values. The
-// individual values are trimmed of whitespace and empty values are ignored. A
-// default value can be provided as a semicolon separated list in the field's
-// tag.
-//
-// Struct fields are decoded recursively using the field name plus "." as
-// prefix. The prefix (without dot) can be overridden in the field's tag.
-// Default values are not supported in the field's tag. Specify them on the
-// fields of the inner struct instead.
-//
-// Map fields must have a key of type string and are decoded recursively by
-// using the field's name plus ".' as prefix and the next element of the key
-// name as map key. The prefix (without dot) can be overridden in the field's
-// tag. Default values are not supported.
-//
-// Examples:
-//
-// // Field is ignored.
-// Field int `properties:"-"`
-//
-// // Field is assigned value of 'Field'.
-// Field int
-//
-// // Field is assigned value of 'myName'.
-// Field int `properties:"myName"`
-//
-// // Field is assigned value of key 'myName' and has a default
-// // value 15 if the key does not exist.
-// Field int `properties:"myName,default=15"`
-//
-// // Field is assigned value of key 'Field' and has a default
-// // value 15 if the key does not exist.
-// Field int `properties:",default=15"`
-//
-// // Field is assigned value of key 'date' and the date
-// // is in format 2006-01-02
-// Field time.Time `properties:"date,layout=2006-01-02"`
-//
-// // Field is assigned the non-empty and whitespace trimmed
-// // values of key 'Field' split by commas.
-// Field []string
-//
-// // Field is assigned the non-empty and whitespace trimmed
-// // values of key 'Field' split by commas and has a default
-// // value ["a", "b", "c"] if the key does not exist.
-// Field []string `properties:",default=a;b;c"`
-//
-// // Field is decoded recursively with "Field." as key prefix.
-// Field SomeStruct
-//
-// // Field is decoded recursively with "myName." as key prefix.
-// Field SomeStruct `properties:"myName"`
-//
-// // Field is decoded recursively with "Field." as key prefix
-// // and the next dotted element of the key as map key.
-// Field map[string]string
-//
-// // Field is decoded recursively with "myName." as key prefix
-// // and the next dotted element of the key as map key.
-// Field map[string]string `properties:"myName"`
-func (p *Properties) Decode(x interface{}) error {
- t, v := reflect.TypeOf(x), reflect.ValueOf(x)
- if t.Kind() != reflect.Ptr || v.Elem().Type().Kind() != reflect.Struct {
- return fmt.Errorf("not a pointer to struct: %s", t)
- }
- if err := dec(p, "", nil, nil, v); err != nil {
- return err
- }
- return nil
-}
-
-func dec(p *Properties, key string, def *string, opts map[string]string, v reflect.Value) error {
- t := v.Type()
-
- // value returns the property value for key or the default if provided.
- value := func() (string, error) {
- if val, ok := p.Get(key); ok {
- return val, nil
- }
- if def != nil {
- return *def, nil
- }
- return "", fmt.Errorf("missing required key %s", key)
- }
-
- // conv converts a string to a value of the given type.
- conv := func(s string, t reflect.Type) (val reflect.Value, err error) {
- var v interface{}
-
- switch {
- case isDuration(t):
- v, err = time.ParseDuration(s)
-
- case isTime(t):
- layout := opts["layout"]
- if layout == "" {
- layout = time.RFC3339
- }
- v, err = time.Parse(layout, s)
-
- case isBool(t):
- v, err = boolVal(s), nil
-
- case isString(t):
- v, err = s, nil
-
- case isFloat(t):
- v, err = strconv.ParseFloat(s, 64)
-
- case isInt(t):
- v, err = strconv.ParseInt(s, 10, 64)
-
- case isUint(t):
- v, err = strconv.ParseUint(s, 10, 64)
-
- default:
- return reflect.Zero(t), fmt.Errorf("unsupported type %s", t)
- }
- if err != nil {
- return reflect.Zero(t), err
- }
- return reflect.ValueOf(v).Convert(t), nil
- }
-
- // keydef returns the property key and the default value based on the
- // name of the struct field and the options in the tag.
- keydef := func(f reflect.StructField) (string, *string, map[string]string) {
- _key, _opts := parseTag(f.Tag.Get("properties"))
-
- var _def *string
- if d, ok := _opts["default"]; ok {
- _def = &d
- }
- if _key != "" {
- return _key, _def, _opts
- }
- return f.Name, _def, _opts
- }
-
- switch {
- case isDuration(t) || isTime(t) || isBool(t) || isString(t) || isFloat(t) || isInt(t) || isUint(t):
- s, err := value()
- if err != nil {
- return err
- }
- val, err := conv(s, t)
- if err != nil {
- return err
- }
- v.Set(val)
-
- case isPtr(t):
- return dec(p, key, def, opts, v.Elem())
-
- case isStruct(t):
- for i := 0; i < v.NumField(); i++ {
- fv := v.Field(i)
- fk, def, opts := keydef(t.Field(i))
- if !fv.CanSet() {
- return fmt.Errorf("cannot set %s", t.Field(i).Name)
- }
- if fk == "-" {
- continue
- }
- if key != "" {
- fk = key + "." + fk
- }
- if err := dec(p, fk, def, opts, fv); err != nil {
- return err
- }
- }
- return nil
-
- case isArray(t):
- val, err := value()
- if err != nil {
- return err
- }
- vals := split(val, ";")
- a := reflect.MakeSlice(t, 0, len(vals))
- for _, s := range vals {
- val, err := conv(s, t.Elem())
- if err != nil {
- return err
- }
- a = reflect.Append(a, val)
- }
- v.Set(a)
-
- case isMap(t):
- valT := t.Elem()
- m := reflect.MakeMap(t)
- for postfix := range p.FilterStripPrefix(key + ".").m {
- pp := strings.SplitN(postfix, ".", 2)
- mk, mv := pp[0], reflect.New(valT)
- if err := dec(p, key+"."+mk, nil, nil, mv); err != nil {
- return err
- }
- m.SetMapIndex(reflect.ValueOf(mk), mv.Elem())
- }
- v.Set(m)
-
- default:
- return fmt.Errorf("unsupported type %s", t)
- }
- return nil
-}
-
-// split splits a string on sep, trims whitespace of elements
-// and omits empty elements
-func split(s string, sep string) []string {
- var a []string
- for _, v := range strings.Split(s, sep) {
- if v = strings.TrimSpace(v); v != "" {
- a = append(a, v)
- }
- }
- return a
-}
-
-// parseTag parses a "key,k=v,k=v,..."
-func parseTag(tag string) (key string, opts map[string]string) {
- opts = map[string]string{}
- for i, s := range strings.Split(tag, ",") {
- if i == 0 {
- key = s
- continue
- }
-
- pp := strings.SplitN(s, "=", 2)
- if len(pp) == 1 {
- opts[pp[0]] = ""
- } else {
- opts[pp[0]] = pp[1]
- }
- }
- return key, opts
-}
-
-func isArray(t reflect.Type) bool { return t.Kind() == reflect.Array || t.Kind() == reflect.Slice }
-func isBool(t reflect.Type) bool { return t.Kind() == reflect.Bool }
-func isDuration(t reflect.Type) bool { return t == reflect.TypeOf(time.Second) }
-func isMap(t reflect.Type) bool { return t.Kind() == reflect.Map }
-func isPtr(t reflect.Type) bool { return t.Kind() == reflect.Ptr }
-func isString(t reflect.Type) bool { return t.Kind() == reflect.String }
-func isStruct(t reflect.Type) bool { return t.Kind() == reflect.Struct }
-func isTime(t reflect.Type) bool { return t == reflect.TypeOf(time.Time{}) }
-func isFloat(t reflect.Type) bool {
- return t.Kind() == reflect.Float32 || t.Kind() == reflect.Float64
-}
-func isInt(t reflect.Type) bool {
- return t.Kind() == reflect.Int || t.Kind() == reflect.Int8 || t.Kind() == reflect.Int16 || t.Kind() == reflect.Int32 || t.Kind() == reflect.Int64
-}
-func isUint(t reflect.Type) bool {
- return t.Kind() == reflect.Uint || t.Kind() == reflect.Uint8 || t.Kind() == reflect.Uint16 || t.Kind() == reflect.Uint32 || t.Kind() == reflect.Uint64
-}
diff --git a/vendor/github.com/magiconair/properties/doc.go b/vendor/github.com/magiconair/properties/doc.go
deleted file mode 100644
index f8822da2b..000000000
--- a/vendor/github.com/magiconair/properties/doc.go
+++ /dev/null
@@ -1,156 +0,0 @@
-// Copyright 2018 Frank Schroeder. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-// Package properties provides functions for reading and writing
-// ISO-8859-1 and UTF-8 encoded .properties files and has
-// support for recursive property expansion.
-//
-// Java properties files are ISO-8859-1 encoded and use Unicode
-// literals for characters outside the ISO character set. Unicode
-// literals can be used in UTF-8 encoded properties files but
-// aren't necessary.
-//
-// To load a single properties file use MustLoadFile():
-//
-// p := properties.MustLoadFile(filename, properties.UTF8)
-//
-// To load multiple properties files use MustLoadFiles()
-// which loads the files in the given order and merges the
-// result. Missing properties files can be ignored if the
-// 'ignoreMissing' flag is set to true.
-//
-// Filenames can contain environment variables which are expanded
-// before loading.
-//
-// f1 := "/etc/myapp/myapp.conf"
-// f2 := "/home/${USER}/myapp.conf"
-// p := MustLoadFiles([]string{f1, f2}, properties.UTF8, true)
-//
-// All of the different key/value delimiters ' ', ':' and '=' are
-// supported as well as the comment characters '!' and '#' and
-// multi-line values.
-//
-// ! this is a comment
-// # and so is this
-//
-// # the following expressions are equal
-// key value
-// key=value
-// key:value
-// key = value
-// key : value
-// key = val\
-// ue
-//
-// Properties stores all comments preceding a key and provides
-// GetComments() and SetComments() methods to retrieve and
-// update them. The convenience functions GetComment() and
-// SetComment() allow access to the last comment. The
-// WriteComment() method writes properties files including
-// the comments and with the keys in the original order.
-// This can be used for sanitizing properties files.
-//
-// Property expansion is recursive and circular references
-// and malformed expressions are not allowed and cause an
-// error. Expansion of environment variables is supported.
-//
-// # standard property
-// key = value
-//
-// # property expansion: key2 = value
-// key2 = ${key}
-//
-// # recursive expansion: key3 = value
-// key3 = ${key2}
-//
-// # circular reference (error)
-// key = ${key}
-//
-// # malformed expression (error)
-// key = ${ke
-//
-// # refers to the users' home dir
-// home = ${HOME}
-//
-// # local key takes precedence over env var: u = foo
-// USER = foo
-// u = ${USER}
-//
-// The default property expansion format is ${key} but can be
-// changed by setting different pre- and postfix values on the
-// Properties object.
-//
-// p := properties.NewProperties()
-// p.Prefix = "#["
-// p.Postfix = "]#"
-//
-// Properties provides convenience functions for getting typed
-// values with default values if the key does not exist or the
-// type conversion failed.
-//
-// # Returns true if the value is either "1", "on", "yes" or "true"
-// # Returns false for every other value and the default value if
-// # the key does not exist.
-// v = p.GetBool("key", false)
-//
-// # Returns the value if the key exists and the format conversion
-// # was successful. Otherwise, the default value is returned.
-// v = p.GetInt64("key", 999)
-// v = p.GetUint64("key", 999)
-// v = p.GetFloat64("key", 123.0)
-// v = p.GetString("key", "def")
-// v = p.GetDuration("key", 999)
-//
-// As an alternative properties may be applied with the standard
-// library's flag implementation at any time.
-//
-// # Standard configuration
-// v = flag.Int("key", 999, "help message")
-// flag.Parse()
-//
-// # Merge p into the flag set
-// p.MustFlag(flag.CommandLine)
-//
-// Properties provides several MustXXX() convenience functions
-// which will terminate the app if an error occurs. The behavior
-// of the failure is configurable and the default is to call
-// log.Fatal(err). To have the MustXXX() functions panic instead
-// of logging the error set a different ErrorHandler before
-// you use the Properties package.
-//
-// properties.ErrorHandler = properties.PanicHandler
-//
-// # Will panic instead of logging an error
-// p := properties.MustLoadFile("config.properties")
-//
-// You can also provide your own ErrorHandler function. The only requirement
-// is that the error handler function must exit after handling the error.
-//
-// properties.ErrorHandler = func(err error) {
-// fmt.Println(err)
-// os.Exit(1)
-// }
-//
-// # Will write to stdout and then exit
-// p := properties.MustLoadFile("config.properties")
-//
-// Properties can also be loaded into a struct via the `Decode`
-// method, e.g.
-//
-// type S struct {
-// A string `properties:"a,default=foo"`
-// D time.Duration `properties:"timeout,default=5s"`
-// E time.Time `properties:"expires,layout=2006-01-02,default=2015-01-01"`
-// }
-//
-// See `Decode()` method for the full documentation.
-//
-// The following documents provide a description of the properties
-// file format.
-//
-// http://en.wikipedia.org/wiki/.properties
-//
-// http://docs.oracle.com/javase/7/docs/api/java/util/Properties.html#load%28java.io.Reader%29
-//
-package properties
diff --git a/vendor/github.com/magiconair/properties/integrate.go b/vendor/github.com/magiconair/properties/integrate.go
deleted file mode 100644
index 74d38dc67..000000000
--- a/vendor/github.com/magiconair/properties/integrate.go
+++ /dev/null
@@ -1,34 +0,0 @@
-// Copyright 2018 Frank Schroeder. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package properties
-
-import "flag"
-
-// MustFlag sets flags that are skipped by dst.Parse when p contains
-// the respective key for flag.Flag.Name.
-//
-// It's use is recommended with command line arguments as in:
-// flag.Parse()
-// p.MustFlag(flag.CommandLine)
-func (p *Properties) MustFlag(dst *flag.FlagSet) {
- m := make(map[string]*flag.Flag)
- dst.VisitAll(func(f *flag.Flag) {
- m[f.Name] = f
- })
- dst.Visit(func(f *flag.Flag) {
- delete(m, f.Name) // overridden
- })
-
- for name, f := range m {
- v, ok := p.Get(name)
- if !ok {
- continue
- }
-
- if err := f.Value.Set(v); err != nil {
- ErrorHandler(err)
- }
- }
-}
diff --git a/vendor/github.com/magiconair/properties/lex.go b/vendor/github.com/magiconair/properties/lex.go
deleted file mode 100644
index 367166d58..000000000
--- a/vendor/github.com/magiconair/properties/lex.go
+++ /dev/null
@@ -1,407 +0,0 @@
-// Copyright 2018 Frank Schroeder. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-//
-// Parts of the lexer are from the template/text/parser package
-// For these parts the following applies:
-//
-// Copyright 2011 The Go Authors. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file of the go 1.2
-// distribution.
-
-package properties
-
-import (
- "fmt"
- "strconv"
- "strings"
- "unicode/utf8"
-)
-
-// item represents a token or text string returned from the scanner.
-type item struct {
- typ itemType // The type of this item.
- pos int // The starting position, in bytes, of this item in the input string.
- val string // The value of this item.
-}
-
-func (i item) String() string {
- switch {
- case i.typ == itemEOF:
- return "EOF"
- case i.typ == itemError:
- return i.val
- case len(i.val) > 10:
- return fmt.Sprintf("%.10q...", i.val)
- }
- return fmt.Sprintf("%q", i.val)
-}
-
-// itemType identifies the type of lex items.
-type itemType int
-
-const (
- itemError itemType = iota // error occurred; value is text of error
- itemEOF
- itemKey // a key
- itemValue // a value
- itemComment // a comment
-)
-
-// defines a constant for EOF
-const eof = -1
-
-// permitted whitespace characters space, FF and TAB
-const whitespace = " \f\t"
-
-// stateFn represents the state of the scanner as a function that returns the next state.
-type stateFn func(*lexer) stateFn
-
-// lexer holds the state of the scanner.
-type lexer struct {
- input string // the string being scanned
- state stateFn // the next lexing function to enter
- pos int // current position in the input
- start int // start position of this item
- width int // width of last rune read from input
- lastPos int // position of most recent item returned by nextItem
- runes []rune // scanned runes for this item
- items chan item // channel of scanned items
-}
-
-// next returns the next rune in the input.
-func (l *lexer) next() rune {
- if l.pos >= len(l.input) {
- l.width = 0
- return eof
- }
- r, w := utf8.DecodeRuneInString(l.input[l.pos:])
- l.width = w
- l.pos += l.width
- return r
-}
-
-// peek returns but does not consume the next rune in the input.
-func (l *lexer) peek() rune {
- r := l.next()
- l.backup()
- return r
-}
-
-// backup steps back one rune. Can only be called once per call of next.
-func (l *lexer) backup() {
- l.pos -= l.width
-}
-
-// emit passes an item back to the client.
-func (l *lexer) emit(t itemType) {
- i := item{t, l.start, string(l.runes)}
- l.items <- i
- l.start = l.pos
- l.runes = l.runes[:0]
-}
-
-// ignore skips over the pending input before this point.
-func (l *lexer) ignore() {
- l.start = l.pos
-}
-
-// appends the rune to the current value
-func (l *lexer) appendRune(r rune) {
- l.runes = append(l.runes, r)
-}
-
-// accept consumes the next rune if it's from the valid set.
-func (l *lexer) accept(valid string) bool {
- if strings.ContainsRune(valid, l.next()) {
- return true
- }
- l.backup()
- return false
-}
-
-// acceptRun consumes a run of runes from the valid set.
-func (l *lexer) acceptRun(valid string) {
- for strings.ContainsRune(valid, l.next()) {
- }
- l.backup()
-}
-
-// acceptRunUntil consumes a run of runes up to a terminator.
-func (l *lexer) acceptRunUntil(term rune) {
- for term != l.next() {
- }
- l.backup()
-}
-
-// hasText returns true if the current parsed text is not empty.
-func (l *lexer) isNotEmpty() bool {
- return l.pos > l.start
-}
-
-// lineNumber reports which line we're on, based on the position of
-// the previous item returned by nextItem. Doing it this way
-// means we don't have to worry about peek double counting.
-func (l *lexer) lineNumber() int {
- return 1 + strings.Count(l.input[:l.lastPos], "\n")
-}
-
-// errorf returns an error token and terminates the scan by passing
-// back a nil pointer that will be the next state, terminating l.nextItem.
-func (l *lexer) errorf(format string, args ...interface{}) stateFn {
- l.items <- item{itemError, l.start, fmt.Sprintf(format, args...)}
- return nil
-}
-
-// nextItem returns the next item from the input.
-func (l *lexer) nextItem() item {
- i := <-l.items
- l.lastPos = i.pos
- return i
-}
-
-// lex creates a new scanner for the input string.
-func lex(input string) *lexer {
- l := &lexer{
- input: input,
- items: make(chan item),
- runes: make([]rune, 0, 32),
- }
- go l.run()
- return l
-}
-
-// run runs the state machine for the lexer.
-func (l *lexer) run() {
- for l.state = lexBeforeKey(l); l.state != nil; {
- l.state = l.state(l)
- }
-}
-
-// state functions
-
-// lexBeforeKey scans until a key begins.
-func lexBeforeKey(l *lexer) stateFn {
- switch r := l.next(); {
- case isEOF(r):
- l.emit(itemEOF)
- return nil
-
- case isEOL(r):
- l.ignore()
- return lexBeforeKey
-
- case isComment(r):
- return lexComment
-
- case isWhitespace(r):
- l.ignore()
- return lexBeforeKey
-
- default:
- l.backup()
- return lexKey
- }
-}
-
-// lexComment scans a comment line. The comment character has already been scanned.
-func lexComment(l *lexer) stateFn {
- l.acceptRun(whitespace)
- l.ignore()
- for {
- switch r := l.next(); {
- case isEOF(r):
- l.ignore()
- l.emit(itemEOF)
- return nil
- case isEOL(r):
- l.emit(itemComment)
- return lexBeforeKey
- default:
- l.appendRune(r)
- }
- }
-}
-
-// lexKey scans the key up to a delimiter
-func lexKey(l *lexer) stateFn {
- var r rune
-
-Loop:
- for {
- switch r = l.next(); {
-
- case isEscape(r):
- err := l.scanEscapeSequence()
- if err != nil {
- return l.errorf(err.Error())
- }
-
- case isEndOfKey(r):
- l.backup()
- break Loop
-
- case isEOF(r):
- break Loop
-
- default:
- l.appendRune(r)
- }
- }
-
- if len(l.runes) > 0 {
- l.emit(itemKey)
- }
-
- if isEOF(r) {
- l.emit(itemEOF)
- return nil
- }
-
- return lexBeforeValue
-}
-
-// lexBeforeValue scans the delimiter between key and value.
-// Leading and trailing whitespace is ignored.
-// We expect to be just after the key.
-func lexBeforeValue(l *lexer) stateFn {
- l.acceptRun(whitespace)
- l.accept(":=")
- l.acceptRun(whitespace)
- l.ignore()
- return lexValue
-}
-
-// lexValue scans text until the end of the line. We expect to be just after the delimiter.
-func lexValue(l *lexer) stateFn {
- for {
- switch r := l.next(); {
- case isEscape(r):
- if isEOL(l.peek()) {
- l.next()
- l.acceptRun(whitespace)
- } else {
- err := l.scanEscapeSequence()
- if err != nil {
- return l.errorf(err.Error())
- }
- }
-
- case isEOL(r):
- l.emit(itemValue)
- l.ignore()
- return lexBeforeKey
-
- case isEOF(r):
- l.emit(itemValue)
- l.emit(itemEOF)
- return nil
-
- default:
- l.appendRune(r)
- }
- }
-}
-
-// scanEscapeSequence scans either one of the escaped characters
-// or a unicode literal. We expect to be after the escape character.
-func (l *lexer) scanEscapeSequence() error {
- switch r := l.next(); {
-
- case isEscapedCharacter(r):
- l.appendRune(decodeEscapedCharacter(r))
- return nil
-
- case atUnicodeLiteral(r):
- return l.scanUnicodeLiteral()
-
- case isEOF(r):
- return fmt.Errorf("premature EOF")
-
- // silently drop the escape character and append the rune as is
- default:
- l.appendRune(r)
- return nil
- }
-}
-
-// scans a unicode literal in the form \uXXXX. We expect to be after the \u.
-func (l *lexer) scanUnicodeLiteral() error {
- // scan the digits
- d := make([]rune, 4)
- for i := 0; i < 4; i++ {
- d[i] = l.next()
- if d[i] == eof || !strings.ContainsRune("0123456789abcdefABCDEF", d[i]) {
- return fmt.Errorf("invalid unicode literal")
- }
- }
-
- // decode the digits into a rune
- r, err := strconv.ParseInt(string(d), 16, 0)
- if err != nil {
- return err
- }
-
- l.appendRune(rune(r))
- return nil
-}
-
-// decodeEscapedCharacter returns the unescaped rune. We expect to be after the escape character.
-func decodeEscapedCharacter(r rune) rune {
- switch r {
- case 'f':
- return '\f'
- case 'n':
- return '\n'
- case 'r':
- return '\r'
- case 't':
- return '\t'
- default:
- return r
- }
-}
-
-// atUnicodeLiteral reports whether we are at a unicode literal.
-// The escape character has already been consumed.
-func atUnicodeLiteral(r rune) bool {
- return r == 'u'
-}
-
-// isComment reports whether we are at the start of a comment.
-func isComment(r rune) bool {
- return r == '#' || r == '!'
-}
-
-// isEndOfKey reports whether the rune terminates the current key.
-func isEndOfKey(r rune) bool {
- return strings.ContainsRune(" \f\t\r\n:=", r)
-}
-
-// isEOF reports whether we are at EOF.
-func isEOF(r rune) bool {
- return r == eof
-}
-
-// isEOL reports whether we are at a new line character.
-func isEOL(r rune) bool {
- return r == '\n' || r == '\r'
-}
-
-// isEscape reports whether the rune is the escape character which
-// prefixes unicode literals and other escaped characters.
-func isEscape(r rune) bool {
- return r == '\\'
-}
-
-// isEscapedCharacter reports whether we are at one of the characters that need escaping.
-// The escape character has already been consumed.
-func isEscapedCharacter(r rune) bool {
- return strings.ContainsRune(" :=fnrt", r)
-}
-
-// isWhitespace reports whether the rune is a whitespace character.
-func isWhitespace(r rune) bool {
- return strings.ContainsRune(whitespace, r)
-}
diff --git a/vendor/github.com/magiconair/properties/load.go b/vendor/github.com/magiconair/properties/load.go
deleted file mode 100644
index c8e1b5804..000000000
--- a/vendor/github.com/magiconair/properties/load.go
+++ /dev/null
@@ -1,292 +0,0 @@
-// Copyright 2018 Frank Schroeder. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package properties
-
-import (
- "fmt"
- "io/ioutil"
- "net/http"
- "os"
- "strings"
-)
-
-// Encoding specifies encoding of the input data.
-type Encoding uint
-
-const (
- // utf8Default is a private placeholder for the zero value of Encoding to
- // ensure that it has the correct meaning. UTF8 is the default encoding but
- // was assigned a non-zero value which cannot be changed without breaking
- // existing code. Clients should continue to use the public constants.
- utf8Default Encoding = iota
-
- // UTF8 interprets the input data as UTF-8.
- UTF8
-
- // ISO_8859_1 interprets the input data as ISO-8859-1.
- ISO_8859_1
-)
-
-type Loader struct {
- // Encoding determines how the data from files and byte buffers
- // is interpreted. For URLs the Content-Type header is used
- // to determine the encoding of the data.
- Encoding Encoding
-
- // DisableExpansion configures the property expansion of the
- // returned property object. When set to true, the property values
- // will not be expanded and the Property object will not be checked
- // for invalid expansion expressions.
- DisableExpansion bool
-
- // IgnoreMissing configures whether missing files or URLs which return
- // 404 are reported as errors. When set to true, missing files and 404
- // status codes are not reported as errors.
- IgnoreMissing bool
-}
-
-// Load reads a buffer into a Properties struct.
-func (l *Loader) LoadBytes(buf []byte) (*Properties, error) {
- return l.loadBytes(buf, l.Encoding)
-}
-
-// LoadAll reads the content of multiple URLs or files in the given order into
-// a Properties struct. If IgnoreMissing is true then a 404 status code or
-// missing file will not be reported as error. Encoding sets the encoding for
-// files. For the URLs see LoadURL for the Content-Type header and the
-// encoding.
-func (l *Loader) LoadAll(names []string) (*Properties, error) {
- all := NewProperties()
- for _, name := range names {
- n, err := expandName(name)
- if err != nil {
- return nil, err
- }
-
- var p *Properties
- switch {
- case strings.HasPrefix(n, "http://"):
- p, err = l.LoadURL(n)
- case strings.HasPrefix(n, "https://"):
- p, err = l.LoadURL(n)
- default:
- p, err = l.LoadFile(n)
- }
- if err != nil {
- return nil, err
- }
- all.Merge(p)
- }
-
- all.DisableExpansion = l.DisableExpansion
- if all.DisableExpansion {
- return all, nil
- }
- return all, all.check()
-}
-
-// LoadFile reads a file into a Properties struct.
-// If IgnoreMissing is true then a missing file will not be
-// reported as error.
-func (l *Loader) LoadFile(filename string) (*Properties, error) {
- data, err := ioutil.ReadFile(filename)
- if err != nil {
- if l.IgnoreMissing && os.IsNotExist(err) {
- LogPrintf("properties: %s not found. skipping", filename)
- return NewProperties(), nil
- }
- return nil, err
- }
- return l.loadBytes(data, l.Encoding)
-}
-
-// LoadURL reads the content of the URL into a Properties struct.
-//
-// The encoding is determined via the Content-Type header which
-// should be set to 'text/plain'. If the 'charset' parameter is
-// missing, 'iso-8859-1' or 'latin1' the encoding is set to
-// ISO-8859-1. If the 'charset' parameter is set to 'utf-8' the
-// encoding is set to UTF-8. A missing content type header is
-// interpreted as 'text/plain; charset=utf-8'.
-func (l *Loader) LoadURL(url string) (*Properties, error) {
- resp, err := http.Get(url)
- if err != nil {
- return nil, fmt.Errorf("properties: error fetching %q. %s", url, err)
- }
-
- if resp.StatusCode == 404 && l.IgnoreMissing {
- LogPrintf("properties: %s returned %d. skipping", url, resp.StatusCode)
- return NewProperties(), nil
- }
-
- if resp.StatusCode != 200 {
- return nil, fmt.Errorf("properties: %s returned %d", url, resp.StatusCode)
- }
-
- body, err := ioutil.ReadAll(resp.Body)
- if err != nil {
- return nil, fmt.Errorf("properties: %s error reading response. %s", url, err)
- }
- defer resp.Body.Close()
-
- ct := resp.Header.Get("Content-Type")
- var enc Encoding
- switch strings.ToLower(ct) {
- case "text/plain", "text/plain; charset=iso-8859-1", "text/plain; charset=latin1":
- enc = ISO_8859_1
- case "", "text/plain; charset=utf-8":
- enc = UTF8
- default:
- return nil, fmt.Errorf("properties: invalid content type %s", ct)
- }
-
- return l.loadBytes(body, enc)
-}
-
-func (l *Loader) loadBytes(buf []byte, enc Encoding) (*Properties, error) {
- p, err := parse(convert(buf, enc))
- if err != nil {
- return nil, err
- }
- p.DisableExpansion = l.DisableExpansion
- if p.DisableExpansion {
- return p, nil
- }
- return p, p.check()
-}
-
-// Load reads a buffer into a Properties struct.
-func Load(buf []byte, enc Encoding) (*Properties, error) {
- l := &Loader{Encoding: enc}
- return l.LoadBytes(buf)
-}
-
-// LoadString reads an UTF8 string into a properties struct.
-func LoadString(s string) (*Properties, error) {
- l := &Loader{Encoding: UTF8}
- return l.LoadBytes([]byte(s))
-}
-
-// LoadMap creates a new Properties struct from a string map.
-func LoadMap(m map[string]string) *Properties {
- p := NewProperties()
- for k, v := range m {
- p.Set(k, v)
- }
- return p
-}
-
-// LoadFile reads a file into a Properties struct.
-func LoadFile(filename string, enc Encoding) (*Properties, error) {
- l := &Loader{Encoding: enc}
- return l.LoadAll([]string{filename})
-}
-
-// LoadFiles reads multiple files in the given order into
-// a Properties struct. If 'ignoreMissing' is true then
-// non-existent files will not be reported as error.
-func LoadFiles(filenames []string, enc Encoding, ignoreMissing bool) (*Properties, error) {
- l := &Loader{Encoding: enc, IgnoreMissing: ignoreMissing}
- return l.LoadAll(filenames)
-}
-
-// LoadURL reads the content of the URL into a Properties struct.
-// See Loader#LoadURL for details.
-func LoadURL(url string) (*Properties, error) {
- l := &Loader{Encoding: UTF8}
- return l.LoadAll([]string{url})
-}
-
-// LoadURLs reads the content of multiple URLs in the given order into a
-// Properties struct. If IgnoreMissing is true then a 404 status code will
-// not be reported as error. See Loader#LoadURL for the Content-Type header
-// and the encoding.
-func LoadURLs(urls []string, ignoreMissing bool) (*Properties, error) {
- l := &Loader{Encoding: UTF8, IgnoreMissing: ignoreMissing}
- return l.LoadAll(urls)
-}
-
-// LoadAll reads the content of multiple URLs or files in the given order into a
-// Properties struct. If 'ignoreMissing' is true then a 404 status code or missing file will
-// not be reported as error. Encoding sets the encoding for files. For the URLs please see
-// LoadURL for the Content-Type header and the encoding.
-func LoadAll(names []string, enc Encoding, ignoreMissing bool) (*Properties, error) {
- l := &Loader{Encoding: enc, IgnoreMissing: ignoreMissing}
- return l.LoadAll(names)
-}
-
-// MustLoadString reads an UTF8 string into a Properties struct and
-// panics on error.
-func MustLoadString(s string) *Properties {
- return must(LoadString(s))
-}
-
-// MustLoadFile reads a file into a Properties struct and
-// panics on error.
-func MustLoadFile(filename string, enc Encoding) *Properties {
- return must(LoadFile(filename, enc))
-}
-
-// MustLoadFiles reads multiple files in the given order into
-// a Properties struct and panics on error. If 'ignoreMissing'
-// is true then non-existent files will not be reported as error.
-func MustLoadFiles(filenames []string, enc Encoding, ignoreMissing bool) *Properties {
- return must(LoadFiles(filenames, enc, ignoreMissing))
-}
-
-// MustLoadURL reads the content of a URL into a Properties struct and
-// panics on error.
-func MustLoadURL(url string) *Properties {
- return must(LoadURL(url))
-}
-
-// MustLoadURLs reads the content of multiple URLs in the given order into a
-// Properties struct and panics on error. If 'ignoreMissing' is true then a 404
-// status code will not be reported as error.
-func MustLoadURLs(urls []string, ignoreMissing bool) *Properties {
- return must(LoadURLs(urls, ignoreMissing))
-}
-
-// MustLoadAll reads the content of multiple URLs or files in the given order into a
-// Properties struct. If 'ignoreMissing' is true then a 404 status code or missing file will
-// not be reported as error. Encoding sets the encoding for files. For the URLs please see
-// LoadURL for the Content-Type header and the encoding. It panics on error.
-func MustLoadAll(names []string, enc Encoding, ignoreMissing bool) *Properties {
- return must(LoadAll(names, enc, ignoreMissing))
-}
-
-func must(p *Properties, err error) *Properties {
- if err != nil {
- ErrorHandler(err)
- }
- return p
-}
-
-// expandName expands ${ENV_VAR} expressions in a name.
-// If the environment variable does not exist then it will be replaced
-// with an empty string. Malformed expressions like "${ENV_VAR" will
-// be reported as error.
-func expandName(name string) (string, error) {
- return expand(name, []string{}, "${", "}", make(map[string]string))
-}
-
-// Interprets a byte buffer either as an ISO-8859-1 or UTF-8 encoded string.
-// For ISO-8859-1 we can convert each byte straight into a rune since the
-// first 256 unicode code points cover ISO-8859-1.
-func convert(buf []byte, enc Encoding) string {
- switch enc {
- case utf8Default, UTF8:
- return string(buf)
- case ISO_8859_1:
- runes := make([]rune, len(buf))
- for i, b := range buf {
- runes[i] = rune(b)
- }
- return string(runes)
- default:
- ErrorHandler(fmt.Errorf("unsupported encoding %v", enc))
- }
- panic("ErrorHandler should exit")
-}
diff --git a/vendor/github.com/magiconair/properties/parser.go b/vendor/github.com/magiconair/properties/parser.go
deleted file mode 100644
index cdc4a8034..000000000
--- a/vendor/github.com/magiconair/properties/parser.go
+++ /dev/null
@@ -1,95 +0,0 @@
-// Copyright 2018 Frank Schroeder. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package properties
-
-import (
- "fmt"
- "runtime"
-)
-
-type parser struct {
- lex *lexer
-}
-
-func parse(input string) (properties *Properties, err error) {
- p := &parser{lex: lex(input)}
- defer p.recover(&err)
-
- properties = NewProperties()
- key := ""
- comments := []string{}
-
- for {
- token := p.expectOneOf(itemComment, itemKey, itemEOF)
- switch token.typ {
- case itemEOF:
- goto done
- case itemComment:
- comments = append(comments, token.val)
- continue
- case itemKey:
- key = token.val
- if _, ok := properties.m[key]; !ok {
- properties.k = append(properties.k, key)
- }
- }
-
- token = p.expectOneOf(itemValue, itemEOF)
- if len(comments) > 0 {
- properties.c[key] = comments
- comments = []string{}
- }
- switch token.typ {
- case itemEOF:
- properties.m[key] = ""
- goto done
- case itemValue:
- properties.m[key] = token.val
- }
- }
-
-done:
- return properties, nil
-}
-
-func (p *parser) errorf(format string, args ...interface{}) {
- format = fmt.Sprintf("properties: Line %d: %s", p.lex.lineNumber(), format)
- panic(fmt.Errorf(format, args...))
-}
-
-func (p *parser) expect(expected itemType) (token item) {
- token = p.lex.nextItem()
- if token.typ != expected {
- p.unexpected(token)
- }
- return token
-}
-
-func (p *parser) expectOneOf(expected ...itemType) (token item) {
- token = p.lex.nextItem()
- for _, v := range expected {
- if token.typ == v {
- return token
- }
- }
- p.unexpected(token)
- panic("unexpected token")
-}
-
-func (p *parser) unexpected(token item) {
- p.errorf(token.String())
-}
-
-// recover is the handler that turns panics into returns from the top level of Parse.
-func (p *parser) recover(errp *error) {
- e := recover()
- if e != nil {
- if _, ok := e.(runtime.Error); ok {
- panic(e)
- }
- *errp = e.(error)
- }
- return
-}
diff --git a/vendor/github.com/magiconair/properties/properties.go b/vendor/github.com/magiconair/properties/properties.go
deleted file mode 100644
index cb3d1a332..000000000
--- a/vendor/github.com/magiconair/properties/properties.go
+++ /dev/null
@@ -1,833 +0,0 @@
-// Copyright 2018 Frank Schroeder. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package properties
-
-// BUG(frank): Set() does not check for invalid unicode literals since this is currently handled by the lexer.
-// BUG(frank): Write() does not allow to configure the newline character. Therefore, on Windows LF is used.
-
-import (
- "fmt"
- "io"
- "log"
- "os"
- "regexp"
- "strconv"
- "strings"
- "time"
- "unicode/utf8"
-)
-
-const maxExpansionDepth = 64
-
-// ErrorHandlerFunc defines the type of function which handles failures
-// of the MustXXX() functions. An error handler function must exit
-// the application after handling the error.
-type ErrorHandlerFunc func(error)
-
-// ErrorHandler is the function which handles failures of the MustXXX()
-// functions. The default is LogFatalHandler.
-var ErrorHandler ErrorHandlerFunc = LogFatalHandler
-
-// LogHandlerFunc defines the function prototype for logging errors.
-type LogHandlerFunc func(fmt string, args ...interface{})
-
-// LogPrintf defines a log handler which uses log.Printf.
-var LogPrintf LogHandlerFunc = log.Printf
-
-// LogFatalHandler handles the error by logging a fatal error and exiting.
-func LogFatalHandler(err error) {
- log.Fatal(err)
-}
-
-// PanicHandler handles the error by panicking.
-func PanicHandler(err error) {
- panic(err)
-}
-
-// -----------------------------------------------------------------------------
-
-// A Properties contains the key/value pairs from the properties input.
-// All values are stored in unexpanded form and are expanded at runtime
-type Properties struct {
- // Pre-/Postfix for property expansion.
- Prefix string
- Postfix string
-
- // DisableExpansion controls the expansion of properties on Get()
- // and the check for circular references on Set(). When set to
- // true Properties behaves like a simple key/value store and does
- // not check for circular references on Get() or on Set().
- DisableExpansion bool
-
- // Stores the key/value pairs
- m map[string]string
-
- // Stores the comments per key.
- c map[string][]string
-
- // Stores the keys in order of appearance.
- k []string
-}
-
-// NewProperties creates a new Properties struct with the default
-// configuration for "${key}" expressions.
-func NewProperties() *Properties {
- return &Properties{
- Prefix: "${",
- Postfix: "}",
- m: map[string]string{},
- c: map[string][]string{},
- k: []string{},
- }
-}
-
-// Load reads a buffer into the given Properties struct.
-func (p *Properties) Load(buf []byte, enc Encoding) error {
- l := &Loader{Encoding: enc, DisableExpansion: p.DisableExpansion}
- newProperties, err := l.LoadBytes(buf)
- if err != nil {
- return err
- }
- p.Merge(newProperties)
- return nil
-}
-
-// Get returns the expanded value for the given key if exists.
-// Otherwise, ok is false.
-func (p *Properties) Get(key string) (value string, ok bool) {
- v, ok := p.m[key]
- if p.DisableExpansion {
- return v, ok
- }
- if !ok {
- return "", false
- }
-
- expanded, err := p.expand(key, v)
-
- // we guarantee that the expanded value is free of
- // circular references and malformed expressions
- // so we panic if we still get an error here.
- if err != nil {
- ErrorHandler(fmt.Errorf("%s in %q", err, key+" = "+v))
- }
-
- return expanded, true
-}
-
-// MustGet returns the expanded value for the given key if exists.
-// Otherwise, it panics.
-func (p *Properties) MustGet(key string) string {
- if v, ok := p.Get(key); ok {
- return v
- }
- ErrorHandler(invalidKeyError(key))
- panic("ErrorHandler should exit")
-}
-
-// ----------------------------------------------------------------------------
-
-// ClearComments removes the comments for all keys.
-func (p *Properties) ClearComments() {
- p.c = map[string][]string{}
-}
-
-// ----------------------------------------------------------------------------
-
-// GetComment returns the last comment before the given key or an empty string.
-func (p *Properties) GetComment(key string) string {
- comments, ok := p.c[key]
- if !ok || len(comments) == 0 {
- return ""
- }
- return comments[len(comments)-1]
-}
-
-// ----------------------------------------------------------------------------
-
-// GetComments returns all comments that appeared before the given key or nil.
-func (p *Properties) GetComments(key string) []string {
- if comments, ok := p.c[key]; ok {
- return comments
- }
- return nil
-}
-
-// ----------------------------------------------------------------------------
-
-// SetComment sets the comment for the key.
-func (p *Properties) SetComment(key, comment string) {
- p.c[key] = []string{comment}
-}
-
-// ----------------------------------------------------------------------------
-
-// SetComments sets the comments for the key. If the comments are nil then
-// all comments for this key are deleted.
-func (p *Properties) SetComments(key string, comments []string) {
- if comments == nil {
- delete(p.c, key)
- return
- }
- p.c[key] = comments
-}
-
-// ----------------------------------------------------------------------------
-
-// GetBool checks if the expanded value is one of '1', 'yes',
-// 'true' or 'on' if the key exists. The comparison is case-insensitive.
-// If the key does not exist the default value is returned.
-func (p *Properties) GetBool(key string, def bool) bool {
- v, err := p.getBool(key)
- if err != nil {
- return def
- }
- return v
-}
-
-// MustGetBool checks if the expanded value is one of '1', 'yes',
-// 'true' or 'on' if the key exists. The comparison is case-insensitive.
-// If the key does not exist the function panics.
-func (p *Properties) MustGetBool(key string) bool {
- v, err := p.getBool(key)
- if err != nil {
- ErrorHandler(err)
- }
- return v
-}
-
-func (p *Properties) getBool(key string) (value bool, err error) {
- if v, ok := p.Get(key); ok {
- return boolVal(v), nil
- }
- return false, invalidKeyError(key)
-}
-
-func boolVal(v string) bool {
- v = strings.ToLower(v)
- return v == "1" || v == "true" || v == "yes" || v == "on"
-}
-
-// ----------------------------------------------------------------------------
-
-// GetDuration parses the expanded value as an time.Duration (in ns) if the
-// key exists. If key does not exist or the value cannot be parsed the default
-// value is returned. In almost all cases you want to use GetParsedDuration().
-func (p *Properties) GetDuration(key string, def time.Duration) time.Duration {
- v, err := p.getInt64(key)
- if err != nil {
- return def
- }
- return time.Duration(v)
-}
-
-// MustGetDuration parses the expanded value as an time.Duration (in ns) if
-// the key exists. If key does not exist or the value cannot be parsed the
-// function panics. In almost all cases you want to use MustGetParsedDuration().
-func (p *Properties) MustGetDuration(key string) time.Duration {
- v, err := p.getInt64(key)
- if err != nil {
- ErrorHandler(err)
- }
- return time.Duration(v)
-}
-
-// ----------------------------------------------------------------------------
-
-// GetParsedDuration parses the expanded value with time.ParseDuration() if the key exists.
-// If key does not exist or the value cannot be parsed the default
-// value is returned.
-func (p *Properties) GetParsedDuration(key string, def time.Duration) time.Duration {
- s, ok := p.Get(key)
- if !ok {
- return def
- }
- v, err := time.ParseDuration(s)
- if err != nil {
- return def
- }
- return v
-}
-
-// MustGetParsedDuration parses the expanded value with time.ParseDuration() if the key exists.
-// If key does not exist or the value cannot be parsed the function panics.
-func (p *Properties) MustGetParsedDuration(key string) time.Duration {
- s, ok := p.Get(key)
- if !ok {
- ErrorHandler(invalidKeyError(key))
- }
- v, err := time.ParseDuration(s)
- if err != nil {
- ErrorHandler(err)
- }
- return v
-}
-
-// ----------------------------------------------------------------------------
-
-// GetFloat64 parses the expanded value as a float64 if the key exists.
-// If key does not exist or the value cannot be parsed the default
-// value is returned.
-func (p *Properties) GetFloat64(key string, def float64) float64 {
- v, err := p.getFloat64(key)
- if err != nil {
- return def
- }
- return v
-}
-
-// MustGetFloat64 parses the expanded value as a float64 if the key exists.
-// If key does not exist or the value cannot be parsed the function panics.
-func (p *Properties) MustGetFloat64(key string) float64 {
- v, err := p.getFloat64(key)
- if err != nil {
- ErrorHandler(err)
- }
- return v
-}
-
-func (p *Properties) getFloat64(key string) (value float64, err error) {
- if v, ok := p.Get(key); ok {
- value, err = strconv.ParseFloat(v, 64)
- if err != nil {
- return 0, err
- }
- return value, nil
- }
- return 0, invalidKeyError(key)
-}
-
-// ----------------------------------------------------------------------------
-
-// GetInt parses the expanded value as an int if the key exists.
-// If key does not exist or the value cannot be parsed the default
-// value is returned. If the value does not fit into an int the
-// function panics with an out of range error.
-func (p *Properties) GetInt(key string, def int) int {
- v, err := p.getInt64(key)
- if err != nil {
- return def
- }
- return intRangeCheck(key, v)
-}
-
-// MustGetInt parses the expanded value as an int if the key exists.
-// If key does not exist or the value cannot be parsed the function panics.
-// If the value does not fit into an int the function panics with
-// an out of range error.
-func (p *Properties) MustGetInt(key string) int {
- v, err := p.getInt64(key)
- if err != nil {
- ErrorHandler(err)
- }
- return intRangeCheck(key, v)
-}
-
-// ----------------------------------------------------------------------------
-
-// GetInt64 parses the expanded value as an int64 if the key exists.
-// If key does not exist or the value cannot be parsed the default
-// value is returned.
-func (p *Properties) GetInt64(key string, def int64) int64 {
- v, err := p.getInt64(key)
- if err != nil {
- return def
- }
- return v
-}
-
-// MustGetInt64 parses the expanded value as an int if the key exists.
-// If key does not exist or the value cannot be parsed the function panics.
-func (p *Properties) MustGetInt64(key string) int64 {
- v, err := p.getInt64(key)
- if err != nil {
- ErrorHandler(err)
- }
- return v
-}
-
-func (p *Properties) getInt64(key string) (value int64, err error) {
- if v, ok := p.Get(key); ok {
- value, err = strconv.ParseInt(v, 10, 64)
- if err != nil {
- return 0, err
- }
- return value, nil
- }
- return 0, invalidKeyError(key)
-}
-
-// ----------------------------------------------------------------------------
-
-// GetUint parses the expanded value as an uint if the key exists.
-// If key does not exist or the value cannot be parsed the default
-// value is returned. If the value does not fit into an int the
-// function panics with an out of range error.
-func (p *Properties) GetUint(key string, def uint) uint {
- v, err := p.getUint64(key)
- if err != nil {
- return def
- }
- return uintRangeCheck(key, v)
-}
-
-// MustGetUint parses the expanded value as an int if the key exists.
-// If key does not exist or the value cannot be parsed the function panics.
-// If the value does not fit into an int the function panics with
-// an out of range error.
-func (p *Properties) MustGetUint(key string) uint {
- v, err := p.getUint64(key)
- if err != nil {
- ErrorHandler(err)
- }
- return uintRangeCheck(key, v)
-}
-
-// ----------------------------------------------------------------------------
-
-// GetUint64 parses the expanded value as an uint64 if the key exists.
-// If key does not exist or the value cannot be parsed the default
-// value is returned.
-func (p *Properties) GetUint64(key string, def uint64) uint64 {
- v, err := p.getUint64(key)
- if err != nil {
- return def
- }
- return v
-}
-
-// MustGetUint64 parses the expanded value as an int if the key exists.
-// If key does not exist or the value cannot be parsed the function panics.
-func (p *Properties) MustGetUint64(key string) uint64 {
- v, err := p.getUint64(key)
- if err != nil {
- ErrorHandler(err)
- }
- return v
-}
-
-func (p *Properties) getUint64(key string) (value uint64, err error) {
- if v, ok := p.Get(key); ok {
- value, err = strconv.ParseUint(v, 10, 64)
- if err != nil {
- return 0, err
- }
- return value, nil
- }
- return 0, invalidKeyError(key)
-}
-
-// ----------------------------------------------------------------------------
-
-// GetString returns the expanded value for the given key if exists or
-// the default value otherwise.
-func (p *Properties) GetString(key, def string) string {
- if v, ok := p.Get(key); ok {
- return v
- }
- return def
-}
-
-// MustGetString returns the expanded value for the given key if exists or
-// panics otherwise.
-func (p *Properties) MustGetString(key string) string {
- if v, ok := p.Get(key); ok {
- return v
- }
- ErrorHandler(invalidKeyError(key))
- panic("ErrorHandler should exit")
-}
-
-// ----------------------------------------------------------------------------
-
-// Filter returns a new properties object which contains all properties
-// for which the key matches the pattern.
-func (p *Properties) Filter(pattern string) (*Properties, error) {
- re, err := regexp.Compile(pattern)
- if err != nil {
- return nil, err
- }
-
- return p.FilterRegexp(re), nil
-}
-
-// FilterRegexp returns a new properties object which contains all properties
-// for which the key matches the regular expression.
-func (p *Properties) FilterRegexp(re *regexp.Regexp) *Properties {
- pp := NewProperties()
- for _, k := range p.k {
- if re.MatchString(k) {
- // TODO(fs): we are ignoring the error which flags a circular reference.
- // TODO(fs): since we are just copying a subset of keys this cannot happen (fingers crossed)
- pp.Set(k, p.m[k])
- }
- }
- return pp
-}
-
-// FilterPrefix returns a new properties object with a subset of all keys
-// with the given prefix.
-func (p *Properties) FilterPrefix(prefix string) *Properties {
- pp := NewProperties()
- for _, k := range p.k {
- if strings.HasPrefix(k, prefix) {
- // TODO(fs): we are ignoring the error which flags a circular reference.
- // TODO(fs): since we are just copying a subset of keys this cannot happen (fingers crossed)
- pp.Set(k, p.m[k])
- }
- }
- return pp
-}
-
-// FilterStripPrefix returns a new properties object with a subset of all keys
-// with the given prefix and the prefix removed from the keys.
-func (p *Properties) FilterStripPrefix(prefix string) *Properties {
- pp := NewProperties()
- n := len(prefix)
- for _, k := range p.k {
- if len(k) > len(prefix) && strings.HasPrefix(k, prefix) {
- // TODO(fs): we are ignoring the error which flags a circular reference.
- // TODO(fs): since we are modifying keys I am not entirely sure whether we can create a circular reference
- // TODO(fs): this function should probably return an error but the signature is fixed
- pp.Set(k[n:], p.m[k])
- }
- }
- return pp
-}
-
-// Len returns the number of keys.
-func (p *Properties) Len() int {
- return len(p.m)
-}
-
-// Keys returns all keys in the same order as in the input.
-func (p *Properties) Keys() []string {
- keys := make([]string, len(p.k))
- copy(keys, p.k)
- return keys
-}
-
-// Set sets the property key to the corresponding value.
-// If a value for key existed before then ok is true and prev
-// contains the previous value. If the value contains a
-// circular reference or a malformed expression then
-// an error is returned.
-// An empty key is silently ignored.
-func (p *Properties) Set(key, value string) (prev string, ok bool, err error) {
- if key == "" {
- return "", false, nil
- }
-
- // if expansion is disabled we allow circular references
- if p.DisableExpansion {
- prev, ok = p.Get(key)
- p.m[key] = value
- if !ok {
- p.k = append(p.k, key)
- }
- return prev, ok, nil
- }
-
- // to check for a circular reference we temporarily need
- // to set the new value. If there is an error then revert
- // to the previous state. Only if all tests are successful
- // then we add the key to the p.k list.
- prev, ok = p.Get(key)
- p.m[key] = value
-
- // now check for a circular reference
- _, err = p.expand(key, value)
- if err != nil {
-
- // revert to the previous state
- if ok {
- p.m[key] = prev
- } else {
- delete(p.m, key)
- }
-
- return "", false, err
- }
-
- if !ok {
- p.k = append(p.k, key)
- }
-
- return prev, ok, nil
-}
-
-// SetValue sets property key to the default string value
-// as defined by fmt.Sprintf("%v").
-func (p *Properties) SetValue(key string, value interface{}) error {
- _, _, err := p.Set(key, fmt.Sprintf("%v", value))
- return err
-}
-
-// MustSet sets the property key to the corresponding value.
-// If a value for key existed before then ok is true and prev
-// contains the previous value. An empty key is silently ignored.
-func (p *Properties) MustSet(key, value string) (prev string, ok bool) {
- prev, ok, err := p.Set(key, value)
- if err != nil {
- ErrorHandler(err)
- }
- return prev, ok
-}
-
-// String returns a string of all expanded 'key = value' pairs.
-func (p *Properties) String() string {
- var s string
- for _, key := range p.k {
- value, _ := p.Get(key)
- s = fmt.Sprintf("%s%s = %s\n", s, key, value)
- }
- return s
-}
-
-// Write writes all unexpanded 'key = value' pairs to the given writer.
-// Write returns the number of bytes written and any write error encountered.
-func (p *Properties) Write(w io.Writer, enc Encoding) (n int, err error) {
- return p.WriteComment(w, "", enc)
-}
-
-// WriteComment writes all unexpanced 'key = value' pairs to the given writer.
-// If prefix is not empty then comments are written with a blank line and the
-// given prefix. The prefix should be either "# " or "! " to be compatible with
-// the properties file format. Otherwise, the properties parser will not be
-// able to read the file back in. It returns the number of bytes written and
-// any write error encountered.
-func (p *Properties) WriteComment(w io.Writer, prefix string, enc Encoding) (n int, err error) {
- var x int
-
- for _, key := range p.k {
- value := p.m[key]
-
- if prefix != "" {
- if comments, ok := p.c[key]; ok {
- // don't print comments if they are all empty
- allEmpty := true
- for _, c := range comments {
- if c != "" {
- allEmpty = false
- break
- }
- }
-
- if !allEmpty {
- // add a blank line between entries but not at the top
- if len(comments) > 0 && n > 0 {
- x, err = fmt.Fprintln(w)
- if err != nil {
- return
- }
- n += x
- }
-
- for _, c := range comments {
- x, err = fmt.Fprintf(w, "%s%s\n", prefix, encode(c, "", enc))
- if err != nil {
- return
- }
- n += x
- }
- }
- }
- }
-
- x, err = fmt.Fprintf(w, "%s = %s\n", encode(key, " :", enc), encode(value, "", enc))
- if err != nil {
- return
- }
- n += x
- }
- return
-}
-
-// Map returns a copy of the properties as a map.
-func (p *Properties) Map() map[string]string {
- m := make(map[string]string)
- for k, v := range p.m {
- m[k] = v
- }
- return m
-}
-
-// FilterFunc returns a copy of the properties which includes the values which passed all filters.
-func (p *Properties) FilterFunc(filters ...func(k, v string) bool) *Properties {
- pp := NewProperties()
-outer:
- for k, v := range p.m {
- for _, f := range filters {
- if !f(k, v) {
- continue outer
- }
- pp.Set(k, v)
- }
- }
- return pp
-}
-
-// ----------------------------------------------------------------------------
-
-// Delete removes the key and its comments.
-func (p *Properties) Delete(key string) {
- delete(p.m, key)
- delete(p.c, key)
- newKeys := []string{}
- for _, k := range p.k {
- if k != key {
- newKeys = append(newKeys, k)
- }
- }
- p.k = newKeys
-}
-
-// Merge merges properties, comments and keys from other *Properties into p
-func (p *Properties) Merge(other *Properties) {
- for k, v := range other.m {
- p.m[k] = v
- }
- for k, v := range other.c {
- p.c[k] = v
- }
-
-outer:
- for _, otherKey := range other.k {
- for _, key := range p.k {
- if otherKey == key {
- continue outer
- }
- }
- p.k = append(p.k, otherKey)
- }
-}
-
-// ----------------------------------------------------------------------------
-
-// check expands all values and returns an error if a circular reference or
-// a malformed expression was found.
-func (p *Properties) check() error {
- for key, value := range p.m {
- if _, err := p.expand(key, value); err != nil {
- return err
- }
- }
- return nil
-}
-
-func (p *Properties) expand(key, input string) (string, error) {
- // no pre/postfix -> nothing to expand
- if p.Prefix == "" && p.Postfix == "" {
- return input, nil
- }
-
- return expand(input, []string{key}, p.Prefix, p.Postfix, p.m)
-}
-
-// expand recursively expands expressions of '(prefix)key(postfix)' to their corresponding values.
-// The function keeps track of the keys that were already expanded and stops if it
-// detects a circular reference or a malformed expression of the form '(prefix)key'.
-func expand(s string, keys []string, prefix, postfix string, values map[string]string) (string, error) {
- if len(keys) > maxExpansionDepth {
- return "", fmt.Errorf("expansion too deep")
- }
-
- for {
- start := strings.Index(s, prefix)
- if start == -1 {
- return s, nil
- }
-
- keyStart := start + len(prefix)
- keyLen := strings.Index(s[keyStart:], postfix)
- if keyLen == -1 {
- return "", fmt.Errorf("malformed expression")
- }
-
- end := keyStart + keyLen + len(postfix) - 1
- key := s[keyStart : keyStart+keyLen]
-
- // fmt.Printf("s:%q pp:%q start:%d end:%d keyStart:%d keyLen:%d key:%q\n", s, prefix + "..." + postfix, start, end, keyStart, keyLen, key)
-
- for _, k := range keys {
- if key == k {
- return "", fmt.Errorf("circular reference")
- }
- }
-
- val, ok := values[key]
- if !ok {
- val = os.Getenv(key)
- }
- new_val, err := expand(val, append(keys, key), prefix, postfix, values)
- if err != nil {
- return "", err
- }
- s = s[:start] + new_val + s[end+1:]
- }
- return s, nil
-}
-
-// encode encodes a UTF-8 string to ISO-8859-1 and escapes some characters.
-func encode(s string, special string, enc Encoding) string {
- switch enc {
- case UTF8:
- return encodeUtf8(s, special)
- case ISO_8859_1:
- return encodeIso(s, special)
- default:
- panic(fmt.Sprintf("unsupported encoding %v", enc))
- }
-}
-
-func encodeUtf8(s string, special string) string {
- v := ""
- for pos := 0; pos < len(s); {
- r, w := utf8.DecodeRuneInString(s[pos:])
- pos += w
- v += escape(r, special)
- }
- return v
-}
-
-func encodeIso(s string, special string) string {
- var r rune
- var w int
- var v string
- for pos := 0; pos < len(s); {
- switch r, w = utf8.DecodeRuneInString(s[pos:]); {
- case r < 1<<8: // single byte rune -> escape special chars only
- v += escape(r, special)
- case r < 1<<16: // two byte rune -> unicode literal
- v += fmt.Sprintf("\\u%04x", r)
- default: // more than two bytes per rune -> can't encode
- v += "?"
- }
- pos += w
- }
- return v
-}
-
-func escape(r rune, special string) string {
- switch r {
- case '\f':
- return "\\f"
- case '\n':
- return "\\n"
- case '\r':
- return "\\r"
- case '\t':
- return "\\t"
- default:
- if strings.ContainsRune(special, r) {
- return "\\" + string(r)
- }
- return string(r)
- }
-}
-
-func invalidKeyError(key string) error {
- return fmt.Errorf("unknown property: %s", key)
-}
diff --git a/vendor/github.com/magiconair/properties/rangecheck.go b/vendor/github.com/magiconair/properties/rangecheck.go
deleted file mode 100644
index b013a2e5e..000000000
--- a/vendor/github.com/magiconair/properties/rangecheck.go
+++ /dev/null
@@ -1,31 +0,0 @@
-// Copyright 2018 Frank Schroeder. All rights reserved.
-// Use of this source code is governed by a BSD-style
-// license that can be found in the LICENSE file.
-
-package properties
-
-import (
- "fmt"
- "math"
-)
-
-// make this a var to overwrite it in a test
-var is32Bit = ^uint(0) == math.MaxUint32
-
-// intRangeCheck checks if the value fits into the int type and
-// panics if it does not.
-func intRangeCheck(key string, v int64) int {
- if is32Bit && (v < math.MinInt32 || v > math.MaxInt32) {
- panic(fmt.Sprintf("Value %d for key %s out of range", v, key))
- }
- return int(v)
-}
-
-// uintRangeCheck checks if the value fits into the uint type and
-// panics if it does not.
-func uintRangeCheck(key string, v uint64) uint {
- if is32Bit && v > math.MaxUint32 {
- panic(fmt.Sprintf("Value %d for key %s out of range", v, key))
- }
- return uint(v)
-}
diff --git a/vendor/github.com/markbates/oncer/.gitignore b/vendor/github.com/markbates/oncer/.gitignore
deleted file mode 100644
index 368971859..000000000
--- a/vendor/github.com/markbates/oncer/.gitignore
+++ /dev/null
@@ -1,29 +0,0 @@
-*.log
-.DS_Store
-doc
-tmp
-pkg
-*.gem
-*.pid
-coverage
-coverage.data
-build/*
-*.pbxuser
-*.mode1v3
-.svn
-profile
-.console_history
-.sass-cache/*
-.rake_tasks~
-*.log.lck
-solr/
-.jhw-cache/
-jhw.*
-*.sublime*
-node_modules/
-dist/
-generated/
-.vendor/
-bin/*
-gin-bin
-.idea/
diff --git a/vendor/github.com/markbates/oncer/LICENSE b/vendor/github.com/markbates/oncer/LICENSE
deleted file mode 100644
index a538bcbf2..000000000
--- a/vendor/github.com/markbates/oncer/LICENSE
+++ /dev/null
@@ -1,21 +0,0 @@
-The MIT License (MIT)
-
-Copyright (c) 2018 Mark Bates
-
-Permission is hereby granted, free of charge, to any person obtaining a copy
-of this software and associated documentation files (the "Software"), to deal
-in the Software without restriction, including without limitation the rights
-to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
-copies of the Software, and to permit persons to whom the Software is
-furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in all
-copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
-IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
-FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
-AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
-LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
-OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
-SOFTWARE.
diff --git a/vendor/github.com/markbates/oncer/Makefile b/vendor/github.com/markbates/oncer/Makefile
deleted file mode 100644
index 187cb8a3f..000000000
--- a/vendor/github.com/markbates/oncer/Makefile
+++ /dev/null
@@ -1,40 +0,0 @@
-TAGS ?= "sqlite"
-GO_BIN ?= go
-
-install:
- packr
- $(GO_BIN) install -v .
-
-deps:
- $(GO_BIN) get github.com/gobuffalo/release
- $(GO_BIN) get github.com/gobuffalo/packr/packr
- $(GO_BIN) get -tags ${TAGS} -t ./...
- $(GO_BIN) mod tidy
-
-build:
- packr
- $(GO_BIN) build -v .
-
-test:
- packr
- $(GO_BIN) test -tags ${TAGS} ./...
-
-ci-test: deps
- $(GO_BIN) test -tags ${TAGS} -race ./...
-
-lint:
- gometalinter --vendor ./... --deadline=1m --skip=internal
-
-update:
- $(GO_BIN) get -u -tags ${TAGS}
- $(GO_BIN) mod tidy
- packr
- make test
- make install
- $(GO_BIN) mod tidy
-
-release-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
-
-release:
- release -y -f version.go
diff --git a/vendor/github.com/markbates/oncer/deprecate.go b/vendor/github.com/markbates/oncer/deprecate.go
deleted file mode 100644
index 4eb3a443e..000000000
--- a/vendor/github.com/markbates/oncer/deprecate.go
+++ /dev/null
@@ -1,20 +0,0 @@
-package oncer
-
-import (
- "fmt"
- "io"
- "os"
-)
-
-const deprecated = "DEPRECATED"
-
-var deprecationWriter io.Writer = os.Stdout
-
-func Deprecate(depth int, name string, msg string) {
- Do(deprecated+name, func() {
- fmt.Fprintf(deprecationWriter, "[%s] %s has been deprecated.\n", deprecated, name)
- if len(msg) > 0 {
- fmt.Fprintf(deprecationWriter, "\t%s\n", msg)
- }
- })
-}
diff --git a/vendor/github.com/markbates/oncer/go.mod b/vendor/github.com/markbates/oncer/go.mod
deleted file mode 100644
index 950e99b23..000000000
--- a/vendor/github.com/markbates/oncer/go.mod
+++ /dev/null
@@ -1,7 +0,0 @@
-module github.com/markbates/oncer
-
-require (
- github.com/davecgh/go-spew v1.1.1 // indirect
- github.com/pmezard/go-difflib v1.0.0 // indirect
- github.com/stretchr/testify v1.2.2
-)
diff --git a/vendor/github.com/markbates/oncer/go.sum b/vendor/github.com/markbates/oncer/go.sum
deleted file mode 100644
index e03ee77d9..000000000
--- a/vendor/github.com/markbates/oncer/go.sum
+++ /dev/null
@@ -1,6 +0,0 @@
-github.com/davecgh/go-spew v1.1.1 h1:vj9j/u1bqnvCEfJOwUhtlOARqs3+rkHYY13jYWTU97c=
-github.com/davecgh/go-spew v1.1.1/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38=
-github.com/pmezard/go-difflib v1.0.0 h1:4DBwDE0NGyQoBHbLQYPwSUPoCMWR5BEzIk/f1lZbAQM=
-github.com/pmezard/go-difflib v1.0.0/go.mod h1:iKH77koFhYxTK1pcRnkKkqfTogsbg7gZNVY4sRDYZ/4=
-github.com/stretchr/testify v1.2.2 h1:bSDNvY7ZPG5RlJ8otE/7V6gMiyenm9RtJ7IUVIAoJ1w=
-github.com/stretchr/testify v1.2.2/go.mod h1:a8OnRcib4nhh0OaRAV+Yts87kKdq0PP7pXfy6kDkUVs=
diff --git a/vendor/github.com/markbates/oncer/log.go b/vendor/github.com/markbates/oncer/log.go
deleted file mode 100644
index ed4346396..000000000
--- a/vendor/github.com/markbates/oncer/log.go
+++ /dev/null
@@ -1,7 +0,0 @@
-//+build !debug
-
-package oncer
-
-func log(name string, fn func()) func() {
- return fn
-}
diff --git a/vendor/github.com/markbates/oncer/log_debug.go b/vendor/github.com/markbates/oncer/log_debug.go
deleted file mode 100644
index 76d0e1149..000000000
--- a/vendor/github.com/markbates/oncer/log_debug.go
+++ /dev/null
@@ -1,19 +0,0 @@
-//+build debug
-
-package oncer
-
-import (
- "fmt"
- "time"
-)
-
-func log(name string, fn func()) func() {
- return func() {
- start := time.Now()
- if len(name) > 80 {
- name = name[(len(name) - 80):]
- }
- defer fmt.Println(name, time.Now().Sub(start))
- fn()
- }
-}
diff --git a/vendor/github.com/markbates/oncer/oncer.go b/vendor/github.com/markbates/oncer/oncer.go
deleted file mode 100644
index 5b3ab8df0..000000000
--- a/vendor/github.com/markbates/oncer/oncer.go
+++ /dev/null
@@ -1,26 +0,0 @@
-package oncer
-
-import (
- "sync"
-)
-
-var onces = &sync.Map{}
-
-func Do(name string, fn func()) {
- o, _ := onces.LoadOrStore(name, &sync.Once{})
- if once, ok := o.(*sync.Once); ok {
- once.Do(log(name, fn))
- }
-}
-
-func Reset(names ...string) {
- if len(names) == 0 {
- onces = &sync.Map{}
- return
- }
-
- for _, n := range names {
- onces.Delete(n)
- onces.Delete(deprecated + n)
- }
-}
diff --git a/vendor/github.com/markbates/safe/.gitignore b/vendor/github.com/markbates/safe/.gitignore
deleted file mode 100644
index 368971859..000000000
--- a/vendor/github.com/markbates/safe/.gitignore
+++ /dev/null
@@ -1,29 +0,0 @@
-*.log
-.DS_Store
-doc
-tmp
-pkg
-*.gem
-*.pid
-coverage
-coverage.data
-build/*
-*.pbxuser
-*.mode1v3
-.svn
-profile
-.console_history
-.sass-cache/*
-.rake_tasks~
-*.log.lck
-solr/
-.jhw-cache/
-jhw.*
-*.sublime*
-node_modules/
-dist/
-generated/
-.vendor/
-bin/*
-gin-bin
-.idea/
diff --git a/vendor/github.com/markbates/safe/.gometalinter.json b/vendor/github.com/markbates/safe/.gometalinter.json
deleted file mode 100644
index e4f65a36e..000000000
--- a/vendor/github.com/markbates/safe/.gometalinter.json
+++ /dev/null
@@ -1,3 +0,0 @@
-{
- "Enable": ["vet", "golint", "goimports", "deadcode", "gotype", "ineffassign", "misspell", "nakedret", "unconvert", "megacheck", "varcheck"]
-}
diff --git a/vendor/github.com/markbates/safe/.travis.yml b/vendor/github.com/markbates/safe/.travis.yml
deleted file mode 100644
index cf1d2c7d4..000000000
--- a/vendor/github.com/markbates/safe/.travis.yml
+++ /dev/null
@@ -1,26 +0,0 @@
-language: go
-
-sudo: false
-
-matrix:
- include:
- - go: "1.9.x"
- - go: "1.10.x"
- - go: "1.11.x"
- env:
- - GO111MODULE=off
- - go: "1.11.x"
- env:
- - GO111MODULE=on
- - go: "tip"
- env:
- - GO111MODULE=off
- - go: "tip"
- env:
- - GO111MODULE=on
- allow_failures:
- - go: "tip"
-
-install: make deps
-
-script: make ci-test
diff --git a/vendor/github.com/markbates/safe/LICENSE b/vendor/github.com/markbates/safe/LICENSE
deleted file mode 100644
index a538bcbf2..000000000
--- a/vendor/github.com/markbates/safe/LICENSE
+++ /dev/null
@@ -1,21 +0,0 @@
-The MIT License (MIT)
-
-Copyright (c) 2018 Mark Bates
-
-Permission is hereby granted, free of charge, to any person obtaining a copy
-of this software and associated documentation files (the "Software"), to deal
-in the Software without restriction, including without limitation the rights
-to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
-copies of the Software, and to permit persons to whom the Software is
-furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in all
-copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
-IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
-FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
-AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
-LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
-OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
-SOFTWARE.
diff --git a/vendor/github.com/markbates/safe/Makefile b/vendor/github.com/markbates/safe/Makefile
deleted file mode 100644
index e0e2f3baa..000000000
--- a/vendor/github.com/markbates/safe/Makefile
+++ /dev/null
@@ -1,55 +0,0 @@
-TAGS ?= "sqlite"
-GO_BIN ?= go
-
-install:
- packr
- $(GO_BIN) install -tags ${TAGS} -v .
- make tidy
-
-tidy:
-ifeq ($(GO111MODULE),on)
- $(GO_BIN) mod tidy
-else
- echo skipping go mod tidy
-endif
-
-deps:
- $(GO_BIN) get github.com/gobuffalo/release
- $(GO_BIN) get github.com/gobuffalo/packr/packr
- $(GO_BIN) get -tags ${TAGS} -t ./...
- make tidy
-
-build:
- packr
- $(GO_BIN) build -v .
- make tidy
-
-test:
- packr
- $(GO_BIN) test -tags ${TAGS} ./...
- make tidy
-
-ci-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
- make tidy
-
-lint:
- gometalinter --vendor ./... --deadline=1m --skip=internal
- make tidy
-
-update:
- $(GO_BIN) get -u -tags ${TAGS}
- make tidy
- packr
- make test
- make install
- make tidy
-
-release-test:
- $(GO_BIN) test -tags ${TAGS} -race ./...
- make tidy
-
-release:
- make tidy
- release -y -f version.go
- make tidy
diff --git a/vendor/github.com/markbates/safe/go.mod b/vendor/github.com/markbates/safe/go.mod
deleted file mode 100644
index d02a7b4b3..000000000
--- a/vendor/github.com/markbates/safe/go.mod
+++ /dev/null
@@ -1,7 +0,0 @@
-module github.com/markbates/safe
-
-require (
- github.com/davecgh/go-spew v1.1.1 // indirect
- github.com/pmezard/go-difflib v1.0.0 // indirect
- github.com/stretchr/testify v1.2.2
-)
diff --git a/vendor/github.com/markbates/safe/go.sum b/vendor/github.com/markbates/safe/go.sum
deleted file mode 100644
index e03ee77d9..000000000
--- a/vendor/github.com/markbates/safe/go.sum
+++ /dev/null
@@ -1,6 +0,0 @@
-github.com/davecgh/go-spew v1.1.1 h1:vj9j/u1bqnvCEfJOwUhtlOARqs3+rkHYY13jYWTU97c=
-github.com/davecgh/go-spew v1.1.1/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38=
-github.com/pmezard/go-difflib v1.0.0 h1:4DBwDE0NGyQoBHbLQYPwSUPoCMWR5BEzIk/f1lZbAQM=
-github.com/pmezard/go-difflib v1.0.0/go.mod h1:iKH77koFhYxTK1pcRnkKkqfTogsbg7gZNVY4sRDYZ/4=
-github.com/stretchr/testify v1.2.2 h1:bSDNvY7ZPG5RlJ8otE/7V6gMiyenm9RtJ7IUVIAoJ1w=
-github.com/stretchr/testify v1.2.2/go.mod h1:a8OnRcib4nhh0OaRAV+Yts87kKdq0PP7pXfy6kDkUVs=
diff --git a/vendor/github.com/markbates/safe/safe.go b/vendor/github.com/markbates/safe/safe.go
deleted file mode 100644
index a40d2083e..000000000
--- a/vendor/github.com/markbates/safe/safe.go
+++ /dev/null
@@ -1,33 +0,0 @@
-package safe
-
-import (
- "errors"
- "fmt"
-)
-
-// Run the function safely knowing that if it panics
-// the panic will be caught and returned as an error
-func Run(fn func()) (err error) {
- return RunE(func() error {
- fn()
- return nil
- })
-}
-
-// Run the function safely knowing that if it panics
-// the panic will be caught and returned as an error
-func RunE(fn func() error) (err error) {
- defer func() {
- if err != nil {
- return
- }
- if ex := recover(); ex != nil {
- if e, ok := ex.(error); ok {
- err = e
- return
- }
- err = errors.New(fmt.Sprint(ex))
- }
- }()
- return fn()
-}
diff --git a/vendor/github.com/markbates/safe/shoulders.md b/vendor/github.com/markbates/safe/shoulders.md
deleted file mode 100644
index a3821f2ad..000000000
--- a/vendor/github.com/markbates/safe/shoulders.md
+++ /dev/null
@@ -1,8 +0,0 @@
-# github.com/markbates/safe Stands on the Shoulders of Giants
-
-github.com/markbates/safe does not try to reinvent the wheel! Instead, it uses the already great wheels developed by the Go community and puts them all together in the best way possible. Without these giants this project would not be possible. Please make sure to check them out and thank them for all of their hard work.
-
-Thank you to the following **GIANTS**:
-
-
-* [github.com/markbates/safe](https://godoc.org/github.com/markbates/safe)
diff --git a/vendor/github.com/markbates/safe/version.go b/vendor/github.com/markbates/safe/version.go
deleted file mode 100644
index e655dc5e3..000000000
--- a/vendor/github.com/markbates/safe/version.go
+++ /dev/null
@@ -1,3 +0,0 @@
-package safe
-
-const Version = "v1.0.1"
diff --git a/vendor/github.com/mattn/go-sqlite3/.gitignore b/vendor/github.com/mattn/go-sqlite3/.gitignore
deleted file mode 100644
index fa0e6b581..000000000
--- a/vendor/github.com/mattn/go-sqlite3/.gitignore
+++ /dev/null
@@ -1,14 +0,0 @@
-*.db
-*.exe
-*.dll
-*.o
-
-# VSCode
-.vscode
-
-# Exclude from upgrade
-upgrade/*.c
-upgrade/*.h
-
-# Exclude upgrade binary
-upgrade/upgrade
diff --git a/vendor/github.com/mattn/go-sqlite3/.travis.yml b/vendor/github.com/mattn/go-sqlite3/.travis.yml
deleted file mode 100644
index 2ae08beb4..000000000
--- a/vendor/github.com/mattn/go-sqlite3/.travis.yml
+++ /dev/null
@@ -1,41 +0,0 @@
-language: go
-
-os:
- - linux
- - osx
-
-addons:
- apt:
- update: true
-
-env:
- matrix:
- - GOTAGS=
- - GOTAGS=libsqlite3
- - GOTAGS="sqlite_allow_uri_authority sqlite_app_armor sqlite_foreign_keys sqlite_fts5 sqlite_icu sqlite_introspect sqlite_json sqlite_secure_delete sqlite_see sqlite_stat4 sqlite_trace sqlite_userauth sqlite_vacuum_incr sqlite_vtable sqlite_unlock_notify"
- - GOTAGS=sqlite_vacuum_full
-
-go:
- - 1.9.x
- - 1.10.x
- - 1.11.x
-
-before_install:
- - |
- if [[ "$TRAVIS_OS_NAME" == "osx" ]]; then
- brew update
- fi
- - |
- go get github.com/smartystreets/goconvey
- if [[ "${GOOS}" != "windows" ]]; then
- go get github.com/mattn/goveralls
- go get golang.org/x/tools/cmd/cover
- fi
-
-script:
- - GOOS=$(go env GOOS) GOARCH=$(go env GOARCH) go build -v -tags "${GOTAGS}" .
- - |
- if [[ "${GOOS}" != "windows" ]]; then
- $HOME/gopath/bin/goveralls -repotoken 3qJVUE0iQwqnCbmNcDsjYu1nh4J4KIFXx
- go test -race -v . -tags "${GOTAGS}"
- fi
diff --git a/vendor/github.com/mattn/go-sqlite3/LICENSE b/vendor/github.com/mattn/go-sqlite3/LICENSE
deleted file mode 100644
index ca458bb39..000000000
--- a/vendor/github.com/mattn/go-sqlite3/LICENSE
+++ /dev/null
@@ -1,21 +0,0 @@
-The MIT License (MIT)
-
-Copyright (c) 2014 Yasuhiro Matsumoto
-
-Permission is hereby granted, free of charge, to any person obtaining a copy
-of this software and associated documentation files (the "Software"), to deal
-in the Software without restriction, including without limitation the rights
-to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
-copies of the Software, and to permit persons to whom the Software is
-furnished to do so, subject to the following conditions:
-
-The above copyright notice and this permission notice shall be included in all
-copies or substantial portions of the Software.
-
-THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
-IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
-FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
-AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
-LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
-OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
-SOFTWARE.
diff --git a/vendor/github.com/mattn/go-sqlite3/README.md b/vendor/github.com/mattn/go-sqlite3/README.md
deleted file mode 100644
index 207f1cd1e..000000000
--- a/vendor/github.com/mattn/go-sqlite3/README.md
+++ /dev/null
@@ -1,519 +0,0 @@
-go-sqlite3
-==========
-
-[](http://godoc.org/github.com/mattn/go-sqlite3)
-[](https://travis-ci.org/mattn/go-sqlite3)
-[](https://coveralls.io/r/mattn/go-sqlite3?branch=master)
-[](https://goreportcard.com/report/github.com/mattn/go-sqlite3)
-
-# Description
-
-sqlite3 driver conforming to the built-in database/sql interface
-
-Supported Golang version:
-- 1.9.x
-- 1.10.x
-
-[This package follows the official Golang Release Policy.](https://golang.org/doc/devel/release.html#policy)
-
-### Overview
-
-- [Installation](#installation)
-- [API Reference](#api-reference)
-- [Connection String](#connection-string)
-- [Features](#features)
-- [Compilation](#compilation)
- - [Android](#android)
- - [ARM](#arm)
- - [Cross Compile](#cross-compile)
- - [Google Cloud Platform](#google-cloud-platform)
- - [Linux](#linux)
- - [Alpine](#alpine)
- - [Fedora](#fedora)
- - [Ubuntu](#ubuntu)
- - [Mac OSX](#mac-osx)
- - [Windows](#windows)
- - [Errors](#errors)
-- [User Authentication](#user-authentication)
- - [Compile](#compile)
- - [Usage](#usage)
-- [Extensions](#extensions)
- - [Spatialite](#spatialite)
-- [FAQ](#faq)
-- [License](#license)
-
-# Installation
-
-This package can be installed with the go get command:
-
- go get github.com/mattn/go-sqlite3
-
-_go-sqlite3_ is *cgo* package.
-If you want to build your app using go-sqlite3, you need gcc.
-However, after you have built and installed _go-sqlite3_ with `go install github.com/mattn/go-sqlite3` (which requires gcc), you can build your app without relying on gcc in future.
-
-***Important: because this is a `CGO` enabled package you are required to set the environment variable `CGO_ENABLED=1` and have a `gcc` compile present within your path.***
-
-# API Reference
-
-API documentation can be found here: http://godoc.org/github.com/mattn/go-sqlite3
-
-Examples can be found under the [examples](./_example) directory
-
-# Connection String
-
-When creating a new SQLite database or connection to an existing one, with the file name additional options can be given.
-This is also known as a DSN string. (Data Source Name).
-
-Options are append after the filename of the SQLite database.
-The database filename and options are seperated by an `?` (Question Mark).
-Options should be URL-encoded (see [url.QueryEscape](https://golang.org/pkg/net/url/#QueryEscape)).
-
-This also applies when using an in-memory database instead of a file.
-
-Options can be given using the following format: `KEYWORD=VALUE` and multiple options can be combined with the `&` ampersand.
-
-This library supports dsn options of SQLite itself and provides additional options.
-
-Boolean values can be one of:
-* `0` `no` `false` `off`
-* `1` `yes` `true` `on`
-
-| Name | Key | Value(s) | Description |
-|------|-----|----------|-------------|
-| UA - Create | `_auth` | - | Create User Authentication, for more information see [User Authentication](#user-authentication) |
-| UA - Username | `_auth_user` | `string` | Username for User Authentication, for more information see [User Authentication](#user-authentication) |
-| UA - Password | `_auth_pass` | `string` | Password for User Authentication, for more information see [User Authentication](#user-authentication) |
-| UA - Crypt | `_auth_crypt` |
SHA1
SSHA1
SHA256
SSHA256
SHA384
SSHA384
SHA512
SSHA512
| Password encoder to use for User Authentication, for more information see [User Authentication](#user-authentication) |
-| UA - Salt | `_auth_salt` | `string` | Salt to use if the configure password encoder requires a salt, for User Authentication, for more information see [User Authentication](#user-authentication) |
-| Auto Vacuum | `_auto_vacuum` \| `_vacuum` |
`0` \| `none`
`1` \| `full`
`2` \| `incremental`
| For more information see [PRAGMA auto_vacuum](https://www.sqlite.org/pragma.html#pragma_auto_vacuum) |
-| Busy Timeout | `_busy_timeout` \| `_timeout` | `int` | Specify value for sqlite3_busy_timeout. For more information see [PRAGMA busy_timeout](https://www.sqlite.org/pragma.html#pragma_busy_timeout) |
-| Case Sensitive LIKE | `_case_sensitive_like` \| `_cslike` | `boolean` | For more information see [PRAGMA case_sensitive_like](https://www.sqlite.org/pragma.html#pragma_case_sensitive_like) |
-| Defer Foreign Keys | `_defer_foreign_keys` \| `_defer_fk` | `boolean` | For more information see [PRAGMA defer_foreign_keys](https://www.sqlite.org/pragma.html#pragma_defer_foreign_keys) |
-| Foreign Keys | `_foreign_keys` \| `_fk` | `boolean` | For more information see [PRAGMA foreign_keys](https://www.sqlite.org/pragma.html#pragma_foreign_keys) |
-| Ignore CHECK Constraints | `_ignore_check_constraints` | `boolean` | For more information see [PRAGMA ignore_check_constraints](https://www.sqlite.org/pragma.html#pragma_ignore_check_constraints) |
-| Immutable | `immutable` | `boolean` | For more information see [Immutable](https://www.sqlite.org/c3ref/open.html) |
-| Journal Mode | `_journal_mode` \| `_journal` |
DELETE
TRUNCATE
PERSIST
MEMORY
WAL
OFF
| For more information see [PRAGMA journal_mode](https://www.sqlite.org/pragma.html#pragma_journal_mode) |
-| Locking Mode | `_locking_mode` \| `_locking` |
NORMAL
EXCLUSIVE
| For more information see [PRAGMA locking_mode](https://www.sqlite.org/pragma.html#pragma_locking_mode) |
-| Mode | `mode` |
ro
rw
rwc
memory
| Access Mode of the database. For more information see [SQLite Open](https://www.sqlite.org/c3ref/open.html) |
-| Mutex Locking | `_mutex` |
no
full
| Specify mutex mode. |
-| Query Only | `_query_only` | `boolean` | For more information see [PRAGMA query_only](https://www.sqlite.org/pragma.html#pragma_query_only) |
-| Recursive Triggers | `_recursive_triggers` \| `_rt` | `boolean` | For more information see [PRAGMA recursive_triggers](https://www.sqlite.org/pragma.html#pragma_recursive_triggers) |
-| Secure Delete | `_secure_delete` | `boolean` \| `FAST` | For more information see [PRAGMA secure_delete](https://www.sqlite.org/pragma.html#pragma_secure_delete) |
-| Shared-Cache Mode | `cache` |
shared
private
| Set cache mode for more information see [sqlite.org](https://www.sqlite.org/sharedcache.html) |
-| Synchronous | `_synchronous` \| `_sync` |
0 \| OFF
1 \| NORMAL
2 \| FULL
3 \| EXTRA
| For more information see [PRAGMA synchronous](https://www.sqlite.org/pragma.html#pragma_synchronous) |
-| Time Zone Location | `_loc` | auto | Specify location of time format. |
-| Transaction Lock | `_txlock` |
immediate
deferred
exclusive
| Specify locking behavior for transactions. |
-| Writable Schema | `_writable_schema` | `Boolean` | When this pragma is on, the SQLITE_MASTER tables in which database can be changed using ordinary UPDATE, INSERT, and DELETE statements. Warning: misuse of this pragma can easily result in a corrupt database file. |
-
-## DSN Examples
-
-```
-file:test.db?cache=shared&mode=memory
-```
-
-# Features
-
-This package allows additional configuration of features available within SQLite3 to be enabled or disabled by golang build constraints also known as build `tags`.
-
-[Click here for more information about build tags / constraints.](https://golang.org/pkg/go/build/#hdr-Build_Constraints)
-
-### Usage
-
-If you wish to build this library with additional extensions / features.
-Use the following command.
-
-```bash
-go build --tags ""
-```
-
-For available features see the extension list.
-When using multiple build tags, all the different tags should be space delimted.
-
-Example:
-
-```bash
-go build --tags "icu json1 fts5 secure_delete"
-```
-
-### Feature / Extension List
-
-| Extension | Build Tag | Description |
-|-----------|-----------|-------------|
-| Additional Statistics | sqlite_stat4 | This option adds additional logic to the ANALYZE command and to the query planner that can help SQLite to chose a better query plan under certain situations. The ANALYZE command is enhanced to collect histogram data from all columns of every index and store that data in the sqlite_stat4 table.
The query planner will then use the histogram data to help it make better index choices. The downside of this compile-time option is that it violates the query planner stability guarantee making it more difficult to ensure consistent performance in mass-produced applications.
SQLITE_ENABLE_STAT4 is an enhancement of SQLITE_ENABLE_STAT3. STAT3 only recorded histogram data for the left-most column of each index whereas the STAT4 enhancement records histogram data from all columns of each index.
The SQLITE_ENABLE_STAT3 compile-time option is a no-op and is ignored if the SQLITE_ENABLE_STAT4 compile-time option is used |
-| Allow URI Authority | sqlite_allow_uri_authority | URI filenames normally throws an error if the authority section is not either empty or "localhost".
However, if SQLite is compiled with the SQLITE_ALLOW_URI_AUTHORITY compile-time option, then the URI is converted into a Uniform Naming Convention (UNC) filename and passed down to the underlying operating system that way |
-| App Armor | sqlite_app_armor | When defined, this C-preprocessor macro activates extra code that attempts to detect misuse of the SQLite API, such as passing in NULL pointers to required parameters or using objects after they have been destroyed.
App Armor is not available under `Windows`. |
-| Disable Load Extensions | sqlite_omit_load_extension | Loading of external extensions is enabled by default.
To disable extension loading add the build tag `sqlite_omit_load_extension`. |
-| Foreign Keys | sqlite_foreign_keys | This macro determines whether enforcement of foreign key constraints is enabled or disabled by default for new database connections.
Each database connection can always turn enforcement of foreign key constraints on and off and run-time using the foreign_keys pragma.
Enforcement of foreign key constraints is normally off by default, but if this compile-time parameter is set to 1, enforcement of foreign key constraints will be on by default |
-| Full Auto Vacuum | sqlite_vacuum_full | Set the default auto vacuum to full |
-| Incremental Auto Vacuum | sqlite_vacuum_incr | Set the default auto vacuum to incremental |
-| Full Text Search Engine | sqlite_fts5 | When this option is defined in the amalgamation, versions 5 of the full-text search engine (fts5) is added to the build automatically |
-| International Components for Unicode | sqlite_icu | This option causes the International Components for Unicode or "ICU" extension to SQLite to be added to the build |
-| Introspect PRAGMAS | sqlite_introspect | This option adds some extra PRAGMA statements.
PRAGMA function_list
PRAGMA module_list
PRAGMA pragma_list
|
-| JSON SQL Functions | sqlite_json | When this option is defined in the amalgamation, the JSON SQL functions are added to the build automatically |
-| Secure Delete | sqlite_secure_delete | This compile-time option changes the default setting of the secure_delete pragma.
When this option is not used, secure_delete defaults to off. When this option is present, secure_delete defaults to on.
The secure_delete setting causes deleted content to be overwritten with zeros. There is a small performance penalty since additional I/O must occur.
On the other hand, secure_delete can prevent fragments of sensitive information from lingering in unused parts of the database file after it has been deleted. See the documentation on the secure_delete pragma for additional information |
-| Secure Delete (FAST) | sqlite_secure_delete_fast | For more information see [PRAGMA secure_delete](https://www.sqlite.org/pragma.html#pragma_secure_delete) |
-| Tracing / Debug | sqlite_trace | Activate trace functions |
-| User Authentication | sqlite_userauth | SQLite User Authentication see [User Authentication](#user-authentication) for more information. |
-
-# Compilation
-
-This package requires `CGO_ENABLED=1` ennvironment variable if not set by default, and the presence of the `gcc` compiler.
-
-If you need to add additional CFLAGS or LDFLAGS to the build command, and do not want to modify this package. Then this can be achieved by using the `CGO_CFLAGS` and `CGO_LDFLAGS` environment variables.
-
-## Android
-
-This package can be compiled for android.
-Compile with:
-
-```bash
-go build --tags "android"
-```
-
-For more information see [#201](https://github.com/mattn/go-sqlite3/issues/201)
-
-# ARM
-
-To compile for `ARM` use the following environment.
-
-```bash
-env CC=arm-linux-gnueabihf-gcc CXX=arm-linux-gnueabihf-g++ \
- CGO_ENABLED=1 GOOS=linux GOARCH=arm GOARM=7 \
- go build -v
-```
-
-Additional information:
-- [#242](https://github.com/mattn/go-sqlite3/issues/242)
-- [#504](https://github.com/mattn/go-sqlite3/issues/504)
-
-# Cross Compile
-
-This library can be cross-compiled.
-
-In some cases you are required to the `CC` environment variable with the cross compiler.
-
-Additional information:
-- [#491](https://github.com/mattn/go-sqlite3/issues/491)
-- [#560](https://github.com/mattn/go-sqlite3/issues/560)
-
-# Google Cloud Platform
-
-Building on GCP is not possible because Google Cloud Platform does not allow `gcc` to be executed.
-
-Please work only with compiled final binaries.
-
-## Linux
-
-To compile this package on Linux you must install the development tools for your linux distribution.
-
-To compile under linux use the build tag `linux`.
-
-```bash
-go build --tags "linux"
-```
-
-If you wish to link directly to libsqlite3 then you can use the `libsqlite3` build tag.
-
-```
-go build --tags "libsqlite3 linux"
-```
-
-### Alpine
-
-When building in an `alpine` container run the following command before building.
-
-```
-apk add --update gcc musl-dev
-```
-
-### Fedora
-
-```bash
-sudo yum groupinstall "Development Tools" "Development Libraries"
-```
-
-### Ubuntu
-
-```bash
-sudo apt-get install build-essential
-```
-
-## Mac OSX
-
-OSX should have all the tools present to compile this package, if not install XCode this will add all the developers tools.
-
-Required dependency
-
-```bash
-brew install sqlite3
-```
-
-For OSX there is an additional package install which is required if you whish to build the `icu` extension.
-
-This additional package can be installed with `homebrew`.
-
-```bash
-brew upgrade icu4c
-```
-
-To compile for Mac OSX.
-
-```bash
-go build --tags "darwin"
-```
-
-If you wish to link directly to libsqlite3 then you can use the `libsqlite3` build tag.
-
-```
-go build --tags "libsqlite3 darwin"
-```
-
-Additional information:
-- [#206](https://github.com/mattn/go-sqlite3/issues/206)
-- [#404](https://github.com/mattn/go-sqlite3/issues/404)
-
-## Windows
-
-To compile this package on Windows OS you must have the `gcc` compiler installed.
-
-1) Install a Windows `gcc` toolchain.
-2) Add the `bin` folders to the Windows path if the installer did not do this by default.
-3) Open a terminal for the TDM-GCC toolchain, can be found in the Windows Start menu.
-4) Navigate to your project folder and run the `go build ...` command for this package.
-
-For example the TDM-GCC Toolchain can be found [here](ttps://sourceforge.net/projects/tdm-gcc/).
-
-## Errors
-
-- Compile error: `can not be used when making a shared object; recompile with -fPIC`
-
- When receiving a compile time error referencing recompile with `-FPIC` then you
- are probably using a hardend system.
-
- You can compile the library on a hardend system with the following command.
-
- ```bash
- go build -ldflags '-extldflags=-fno-PIC'
- ```
-
- More details see [#120](https://github.com/mattn/go-sqlite3/issues/120)
-
-- Can't build go-sqlite3 on windows 64bit.
-
- > Probably, you are using go 1.0, go1.0 has a problem when it comes to compiling/linking on windows 64bit.
- > See: [#27](https://github.com/mattn/go-sqlite3/issues/27)
-
-- `go get github.com/mattn/go-sqlite3` throws compilation error.
-
- `gcc` throws: `internal compiler error`
-
- Remove the download repository from your disk and try re-install with:
-
- ```bash
- go install github.com/mattn/go-sqlite3
- ```
-
-# User Authentication
-
-This package supports the SQLite User Authentication module.
-
-## Compile
-
-To use the User authentication module the package has to be compiled with the tag `sqlite_userauth`. See [Features](#features).
-
-## Usage
-
-### Create protected database
-
-To create a database protected by user authentication provide the following argument to the connection string `_auth`.
-This will enable user authentication within the database. This option however requires two additional arguments:
-
-- `_auth_user`
-- `_auth_pass`
-
-When `_auth` is present on the connection string user authentication will be enabled and the provided user will be created
-as an `admin` user. After initial creation, the parameter `_auth` has no effect anymore and can be omitted from the connection string.
-
-Example connection string:
-
-Create an user authentication database with user `admin` and password `admin`.
-
-`file:test.s3db?_auth&_auth_user=admin&_auth_pass=admin`
-
-Create an user authentication database with user `admin` and password `admin` and use `SHA1` for the password encoding.
-
-`file:test.s3db?_auth&_auth_user=admin&_auth_pass=admin&_auth_crypt=sha1`
-
-### Password Encoding
-
-The passwords within the user authentication module of SQLite are encoded with the SQLite function `sqlite_cryp`.
-This function uses a ceasar-cypher which is quite insecure.
-This library provides several additional password encoders which can be configured through the connection string.
-
-The password cypher can be configured with the key `_auth_crypt`. And if the configured password encoder also requires an
-salt this can be configured with `_auth_salt`.
-
-#### Available Encoders
-
-- SHA1
-- SSHA1 (Salted SHA1)
-- SHA256
-- SSHA256 (salted SHA256)
-- SHA384
-- SSHA384 (salted SHA384)
-- SHA512
-- SSHA512 (salted SHA512)
-
-### Restrictions
-
-Operations on the database regarding to user management can only be preformed by an administrator user.
-
-### Support
-
-The user authentication supports two kinds of users
-
-- administrators
-- regular users
-
-### User Management
-
-User management can be done by directly using the `*SQLiteConn` or by SQL.
-
-#### SQL
-
-The following sql functions are available for user management.
-
-| Function | Arguments | Description |
-|----------|-----------|-------------|
-| `authenticate` | username `string`, password `string` | Will authenticate an user, this is done by the connection; and should not be used manually. |
-| `auth_user_add` | username `string`, password `string`, admin `int` | This function will add an user to the database. if the database is not protected by user authentication it will enable it. Argument `admin` is an integer identifying if the added user should be an administrator. Only Administrators can add administrators. |
-| `auth_user_change` | username `string`, password `string`, admin `int` | Function to modify an user. Users can change their own password, but only an administrator can change the administrator flag. |
-| `authUserDelete` | username `string` | Delete an user from the database. Can only be used by an administrator. The current logged in administrator cannot be deleted. This is to make sure their is always an administrator remaining. |
-
-These functions will return an integer.
-
-- 0 (SQLITE_OK)
-- 23 (SQLITE_AUTH) Failed to perform due to authentication or insufficient privileges
-
-##### Examples
-
-```sql
-// Autheticate user
-// Create Admin User
-SELECT auth_user_add('admin2', 'admin2', 1);
-
-// Change password for user
-SELECT auth_user_change('user', 'userpassword', 0);
-
-// Delete user
-SELECT user_delete('user');
-```
-
-#### *SQLiteConn
-
-The following functions are available for User authentication from the `*SQLiteConn`.
-
-| Function | Description |
-|----------|-------------|
-| `Authenticate(username, password string) error` | Authenticate user |
-| `AuthUserAdd(username, password string, admin bool) error` | Add user |
-| `AuthUserChange(username, password string, admin bool) error` | Modify user |
-| `AuthUserDelete(username string) error` | Delete user |
-
-### Attached database
-
-When using attached databases. SQLite will use the authentication from the `main` database for the attached database(s).
-
-# Extensions
-
-If you want your own extension to be listed here or you want to add a reference to an extension; please submit an Issue for this.
-
-## Spatialite
-
-Spatialite is available as an extension to SQLite, and can be used in combination with this repository.
-For an example see [shaxbee/go-spatialite](https://github.com/shaxbee/go-spatialite).
-
-# FAQ
-
-- Getting insert error while query is opened.
-
- > You can pass some arguments into the connection string, for example, a URI.
- > See: [#39](https://github.com/mattn/go-sqlite3/issues/39)
-
-- Do you want to cross compile? mingw on Linux or Mac?
-
- > See: [#106](https://github.com/mattn/go-sqlite3/issues/106)
- > See also: http://www.limitlessfx.com/cross-compile-golang-app-for-windows-from-linux.html
-
-- Want to get time.Time with current locale
-
- Use `_loc=auto` in SQLite3 filename schema like `file:foo.db?_loc=auto`.
-
-- Can I use this in multiple routines concurrently?
-
- Yes for readonly. But, No for writable. See [#50](https://github.com/mattn/go-sqlite3/issues/50), [#51](https://github.com/mattn/go-sqlite3/issues/51), [#209](https://github.com/mattn/go-sqlite3/issues/209), [#274](https://github.com/mattn/go-sqlite3/issues/274).
-
-- Why I'm getting `no such table` error?
-
- Why is it racy if I use a `sql.Open("sqlite3", ":memory:")` database?
-
- Each connection to :memory: opens a brand new in-memory sql database, so if
- the stdlib's sql engine happens to open another connection and you've only
- specified ":memory:", that connection will see a brand new database. A
- workaround is to use "file::memory:?mode=memory&cache=shared". Every
- connection to this string will point to the same in-memory database.
-
- For more information see
- * [#204](https://github.com/mattn/go-sqlite3/issues/204)
- * [#511](https://github.com/mattn/go-sqlite3/issues/511)
-
-- Reading from database with large amount of goroutines fails on OSX.
-
- OS X limits OS-wide to not have more than 1000 files open simultaneously by default.
-
- For more information see [#289](https://github.com/mattn/go-sqlite3/issues/289)
-
-- Trying to execute a `.` (dot) command throws an error.
-
- Error: `Error: near ".": syntax error`
- Dot command are part of SQLite3 CLI not of this library.
-
- You need to implement the feature or call the sqlite3 cli.
-
- More infomation see [#305](https://github.com/mattn/go-sqlite3/issues/305)
-
-- Error: `database is locked`
-
- When you get an database is locked. Please use the following options.
-
- Add to DSN: `cache=shared`
-
- Example:
- ```go
- db, err := sql.Open("sqlite3", "file:locked.sqlite?cache=shared")
- ```
-
- Second please set the database connections of the SQL package to 1.
-
- ```go
- db.SetMaxOpenConn(1)
- ```
-
- More information see [#209](https://github.com/mattn/go-sqlite3/issues/209)
-
-# License
-
-MIT: http://mattn.mit-license.org/2018
-
-sqlite3-binding.c, sqlite3-binding.h, sqlite3ext.h
-
-The -binding suffix was added to avoid build failures under gccgo.
-
-In this repository, those files are an amalgamation of code that was copied from SQLite3. The license of that code is the same as the license of SQLite3.
-
-# Author
-
-Yasuhiro Matsumoto (a.k.a mattn)
-
-G.J.R. Timmer
diff --git a/vendor/github.com/mattn/go-sqlite3/backup.go b/vendor/github.com/mattn/go-sqlite3/backup.go
deleted file mode 100644
index 5ab3a54de..000000000
--- a/vendor/github.com/mattn/go-sqlite3/backup.go
+++ /dev/null
@@ -1,85 +0,0 @@
-// Copyright (C) 2014 Yasuhiro Matsumoto .
-//
-// Use of this source code is governed by an MIT-style
-// license that can be found in the LICENSE file.
-
-package sqlite3
-
-/*
-#ifndef USE_LIBSQLITE3
-#include
-#else
-#include
-#endif
-#include
-*/
-import "C"
-import (
- "runtime"
- "unsafe"
-)
-
-// SQLiteBackup implement interface of Backup.
-type SQLiteBackup struct {
- b *C.sqlite3_backup
-}
-
-// Backup make backup from src to dest.
-func (c *SQLiteConn) Backup(dest string, conn *SQLiteConn, src string) (*SQLiteBackup, error) {
- destptr := C.CString(dest)
- defer C.free(unsafe.Pointer(destptr))
- srcptr := C.CString(src)
- defer C.free(unsafe.Pointer(srcptr))
-
- if b := C.sqlite3_backup_init(c.db, destptr, conn.db, srcptr); b != nil {
- bb := &SQLiteBackup{b: b}
- runtime.SetFinalizer(bb, (*SQLiteBackup).Finish)
- return bb, nil
- }
- return nil, c.lastError()
-}
-
-// Step to backs up for one step. Calls the underlying `sqlite3_backup_step`
-// function. This function returns a boolean indicating if the backup is done
-// and an error signalling any other error. Done is returned if the underlying
-// C function returns SQLITE_DONE (Code 101)
-func (b *SQLiteBackup) Step(p int) (bool, error) {
- ret := C.sqlite3_backup_step(b.b, C.int(p))
- if ret == C.SQLITE_DONE {
- return true, nil
- } else if ret != 0 && ret != C.SQLITE_LOCKED && ret != C.SQLITE_BUSY {
- return false, Error{Code: ErrNo(ret)}
- }
- return false, nil
-}
-
-// Remaining return whether have the rest for backup.
-func (b *SQLiteBackup) Remaining() int {
- return int(C.sqlite3_backup_remaining(b.b))
-}
-
-// PageCount return count of pages.
-func (b *SQLiteBackup) PageCount() int {
- return int(C.sqlite3_backup_pagecount(b.b))
-}
-
-// Finish close backup.
-func (b *SQLiteBackup) Finish() error {
- return b.Close()
-}
-
-// Close close backup.
-func (b *SQLiteBackup) Close() error {
- ret := C.sqlite3_backup_finish(b.b)
-
- // sqlite3_backup_finish() never fails, it just returns the
- // error code from previous operations, so clean up before
- // checking and returning an error
- b.b = nil
- runtime.SetFinalizer(b, nil)
-
- if ret != 0 {
- return Error{Code: ErrNo(ret)}
- }
- return nil
-}
diff --git a/vendor/github.com/mattn/go-sqlite3/callback.go b/vendor/github.com/mattn/go-sqlite3/callback.go
deleted file mode 100644
index 2c68973b8..000000000
--- a/vendor/github.com/mattn/go-sqlite3/callback.go
+++ /dev/null
@@ -1,380 +0,0 @@
-// Copyright (C) 2014 Yasuhiro Matsumoto .
-//
-// Use of this source code is governed by an MIT-style
-// license that can be found in the LICENSE file.
-
-package sqlite3
-
-// You can't export a Go function to C and have definitions in the C
-// preamble in the same file, so we have to have callbackTrampoline in
-// its own file. Because we need a separate file anyway, the support
-// code for SQLite custom functions is in here.
-
-/*
-#ifndef USE_LIBSQLITE3
-#include
-#else
-#include
-#endif
-#include
-
-void _sqlite3_result_text(sqlite3_context* ctx, const char* s);
-void _sqlite3_result_blob(sqlite3_context* ctx, const void* b, int l);
-*/
-import "C"
-
-import (
- "errors"
- "fmt"
- "math"
- "reflect"
- "sync"
- "unsafe"
-)
-
-//export callbackTrampoline
-func callbackTrampoline(ctx *C.sqlite3_context, argc int, argv **C.sqlite3_value) {
- args := (*[(math.MaxInt32 - 1) / unsafe.Sizeof((*C.sqlite3_value)(nil))]*C.sqlite3_value)(unsafe.Pointer(argv))[:argc:argc]
- fi := lookupHandle(uintptr(C.sqlite3_user_data(ctx))).(*functionInfo)
- fi.Call(ctx, args)
-}
-
-//export stepTrampoline
-func stepTrampoline(ctx *C.sqlite3_context, argc C.int, argv **C.sqlite3_value) {
- args := (*[(math.MaxInt32 - 1) / unsafe.Sizeof((*C.sqlite3_value)(nil))]*C.sqlite3_value)(unsafe.Pointer(argv))[:int(argc):int(argc)]
- ai := lookupHandle(uintptr(C.sqlite3_user_data(ctx))).(*aggInfo)
- ai.Step(ctx, args)
-}
-
-//export doneTrampoline
-func doneTrampoline(ctx *C.sqlite3_context) {
- handle := uintptr(C.sqlite3_user_data(ctx))
- ai := lookupHandle(handle).(*aggInfo)
- ai.Done(ctx)
-}
-
-//export compareTrampoline
-func compareTrampoline(handlePtr uintptr, la C.int, a *C.char, lb C.int, b *C.char) C.int {
- cmp := lookupHandle(handlePtr).(func(string, string) int)
- return C.int(cmp(C.GoStringN(a, la), C.GoStringN(b, lb)))
-}
-
-//export commitHookTrampoline
-func commitHookTrampoline(handle uintptr) int {
- callback := lookupHandle(handle).(func() int)
- return callback()
-}
-
-//export rollbackHookTrampoline
-func rollbackHookTrampoline(handle uintptr) {
- callback := lookupHandle(handle).(func())
- callback()
-}
-
-//export updateHookTrampoline
-func updateHookTrampoline(handle uintptr, op int, db *C.char, table *C.char, rowid int64) {
- callback := lookupHandle(handle).(func(int, string, string, int64))
- callback(op, C.GoString(db), C.GoString(table), rowid)
-}
-
-//export authorizerTrampoline
-func authorizerTrampoline(handle uintptr, op int, arg1 *C.char, arg2 *C.char, arg3 *C.char) int {
- callback := lookupHandle(handle).(func(int, string, string, string) int)
- return callback(op, C.GoString(arg1), C.GoString(arg2), C.GoString(arg3))
-}
-
-// Use handles to avoid passing Go pointers to C.
-
-type handleVal struct {
- db *SQLiteConn
- val interface{}
-}
-
-var handleLock sync.Mutex
-var handleVals = make(map[uintptr]handleVal)
-var handleIndex uintptr = 100
-
-func newHandle(db *SQLiteConn, v interface{}) uintptr {
- handleLock.Lock()
- defer handleLock.Unlock()
- i := handleIndex
- handleIndex++
- handleVals[i] = handleVal{db, v}
- return i
-}
-
-func lookupHandle(handle uintptr) interface{} {
- handleLock.Lock()
- defer handleLock.Unlock()
- r, ok := handleVals[handle]
- if !ok {
- if handle >= 100 && handle < handleIndex {
- panic("deleted handle")
- } else {
- panic("invalid handle")
- }
- }
- return r.val
-}
-
-func deleteHandles(db *SQLiteConn) {
- handleLock.Lock()
- defer handleLock.Unlock()
- for handle, val := range handleVals {
- if val.db == db {
- delete(handleVals, handle)
- }
- }
-}
-
-// This is only here so that tests can refer to it.
-type callbackArgRaw C.sqlite3_value
-
-type callbackArgConverter func(*C.sqlite3_value) (reflect.Value, error)
-
-type callbackArgCast struct {
- f callbackArgConverter
- typ reflect.Type
-}
-
-func (c callbackArgCast) Run(v *C.sqlite3_value) (reflect.Value, error) {
- val, err := c.f(v)
- if err != nil {
- return reflect.Value{}, err
- }
- if !val.Type().ConvertibleTo(c.typ) {
- return reflect.Value{}, fmt.Errorf("cannot convert %s to %s", val.Type(), c.typ)
- }
- return val.Convert(c.typ), nil
-}
-
-func callbackArgInt64(v *C.sqlite3_value) (reflect.Value, error) {
- if C.sqlite3_value_type(v) != C.SQLITE_INTEGER {
- return reflect.Value{}, fmt.Errorf("argument must be an INTEGER")
- }
- return reflect.ValueOf(int64(C.sqlite3_value_int64(v))), nil
-}
-
-func callbackArgBool(v *C.sqlite3_value) (reflect.Value, error) {
- if C.sqlite3_value_type(v) != C.SQLITE_INTEGER {
- return reflect.Value{}, fmt.Errorf("argument must be an INTEGER")
- }
- i := int64(C.sqlite3_value_int64(v))
- val := false
- if i != 0 {
- val = true
- }
- return reflect.ValueOf(val), nil
-}
-
-func callbackArgFloat64(v *C.sqlite3_value) (reflect.Value, error) {
- if C.sqlite3_value_type(v) != C.SQLITE_FLOAT {
- return reflect.Value{}, fmt.Errorf("argument must be a FLOAT")
- }
- return reflect.ValueOf(float64(C.sqlite3_value_double(v))), nil
-}
-
-func callbackArgBytes(v *C.sqlite3_value) (reflect.Value, error) {
- switch C.sqlite3_value_type(v) {
- case C.SQLITE_BLOB:
- l := C.sqlite3_value_bytes(v)
- p := C.sqlite3_value_blob(v)
- return reflect.ValueOf(C.GoBytes(p, l)), nil
- case C.SQLITE_TEXT:
- l := C.sqlite3_value_bytes(v)
- c := unsafe.Pointer(C.sqlite3_value_text(v))
- return reflect.ValueOf(C.GoBytes(c, l)), nil
- default:
- return reflect.Value{}, fmt.Errorf("argument must be BLOB or TEXT")
- }
-}
-
-func callbackArgString(v *C.sqlite3_value) (reflect.Value, error) {
- switch C.sqlite3_value_type(v) {
- case C.SQLITE_BLOB:
- l := C.sqlite3_value_bytes(v)
- p := (*C.char)(C.sqlite3_value_blob(v))
- return reflect.ValueOf(C.GoStringN(p, l)), nil
- case C.SQLITE_TEXT:
- c := (*C.char)(unsafe.Pointer(C.sqlite3_value_text(v)))
- return reflect.ValueOf(C.GoString(c)), nil
- default:
- return reflect.Value{}, fmt.Errorf("argument must be BLOB or TEXT")
- }
-}
-
-func callbackArgGeneric(v *C.sqlite3_value) (reflect.Value, error) {
- switch C.sqlite3_value_type(v) {
- case C.SQLITE_INTEGER:
- return callbackArgInt64(v)
- case C.SQLITE_FLOAT:
- return callbackArgFloat64(v)
- case C.SQLITE_TEXT:
- return callbackArgString(v)
- case C.SQLITE_BLOB:
- return callbackArgBytes(v)
- case C.SQLITE_NULL:
- // Interpret NULL as a nil byte slice.
- var ret []byte
- return reflect.ValueOf(ret), nil
- default:
- panic("unreachable")
- }
-}
-
-func callbackArg(typ reflect.Type) (callbackArgConverter, error) {
- switch typ.Kind() {
- case reflect.Interface:
- if typ.NumMethod() != 0 {
- return nil, errors.New("the only supported interface type is interface{}")
- }
- return callbackArgGeneric, nil
- case reflect.Slice:
- if typ.Elem().Kind() != reflect.Uint8 {
- return nil, errors.New("the only supported slice type is []byte")
- }
- return callbackArgBytes, nil
- case reflect.String:
- return callbackArgString, nil
- case reflect.Bool:
- return callbackArgBool, nil
- case reflect.Int64:
- return callbackArgInt64, nil
- case reflect.Int8, reflect.Int16, reflect.Int32, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Int, reflect.Uint:
- c := callbackArgCast{callbackArgInt64, typ}
- return c.Run, nil
- case reflect.Float64:
- return callbackArgFloat64, nil
- case reflect.Float32:
- c := callbackArgCast{callbackArgFloat64, typ}
- return c.Run, nil
- default:
- return nil, fmt.Errorf("don't know how to convert to %s", typ)
- }
-}
-
-func callbackConvertArgs(argv []*C.sqlite3_value, converters []callbackArgConverter, variadic callbackArgConverter) ([]reflect.Value, error) {
- var args []reflect.Value
-
- if len(argv) < len(converters) {
- return nil, fmt.Errorf("function requires at least %d arguments", len(converters))
- }
-
- for i, arg := range argv[:len(converters)] {
- v, err := converters[i](arg)
- if err != nil {
- return nil, err
- }
- args = append(args, v)
- }
-
- if variadic != nil {
- for _, arg := range argv[len(converters):] {
- v, err := variadic(arg)
- if err != nil {
- return nil, err
- }
- args = append(args, v)
- }
- }
- return args, nil
-}
-
-type callbackRetConverter func(*C.sqlite3_context, reflect.Value) error
-
-func callbackRetInteger(ctx *C.sqlite3_context, v reflect.Value) error {
- switch v.Type().Kind() {
- case reflect.Int64:
- case reflect.Int8, reflect.Int16, reflect.Int32, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Int, reflect.Uint:
- v = v.Convert(reflect.TypeOf(int64(0)))
- case reflect.Bool:
- b := v.Interface().(bool)
- if b {
- v = reflect.ValueOf(int64(1))
- } else {
- v = reflect.ValueOf(int64(0))
- }
- default:
- return fmt.Errorf("cannot convert %s to INTEGER", v.Type())
- }
-
- C.sqlite3_result_int64(ctx, C.sqlite3_int64(v.Interface().(int64)))
- return nil
-}
-
-func callbackRetFloat(ctx *C.sqlite3_context, v reflect.Value) error {
- switch v.Type().Kind() {
- case reflect.Float64:
- case reflect.Float32:
- v = v.Convert(reflect.TypeOf(float64(0)))
- default:
- return fmt.Errorf("cannot convert %s to FLOAT", v.Type())
- }
-
- C.sqlite3_result_double(ctx, C.double(v.Interface().(float64)))
- return nil
-}
-
-func callbackRetBlob(ctx *C.sqlite3_context, v reflect.Value) error {
- if v.Type().Kind() != reflect.Slice || v.Type().Elem().Kind() != reflect.Uint8 {
- return fmt.Errorf("cannot convert %s to BLOB", v.Type())
- }
- i := v.Interface()
- if i == nil || len(i.([]byte)) == 0 {
- C.sqlite3_result_null(ctx)
- } else {
- bs := i.([]byte)
- C._sqlite3_result_blob(ctx, unsafe.Pointer(&bs[0]), C.int(len(bs)))
- }
- return nil
-}
-
-func callbackRetText(ctx *C.sqlite3_context, v reflect.Value) error {
- if v.Type().Kind() != reflect.String {
- return fmt.Errorf("cannot convert %s to TEXT", v.Type())
- }
- C._sqlite3_result_text(ctx, C.CString(v.Interface().(string)))
- return nil
-}
-
-func callbackRetNil(ctx *C.sqlite3_context, v reflect.Value) error {
- return nil
-}
-
-func callbackRet(typ reflect.Type) (callbackRetConverter, error) {
- switch typ.Kind() {
- case reflect.Interface:
- errorInterface := reflect.TypeOf((*error)(nil)).Elem()
- if typ.Implements(errorInterface) {
- return callbackRetNil, nil
- }
- fallthrough
- case reflect.Slice:
- if typ.Elem().Kind() != reflect.Uint8 {
- return nil, errors.New("the only supported slice type is []byte")
- }
- return callbackRetBlob, nil
- case reflect.String:
- return callbackRetText, nil
- case reflect.Bool, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Int, reflect.Uint:
- return callbackRetInteger, nil
- case reflect.Float32, reflect.Float64:
- return callbackRetFloat, nil
- default:
- return nil, fmt.Errorf("don't know how to convert to %s", typ)
- }
-}
-
-func callbackError(ctx *C.sqlite3_context, err error) {
- cstr := C.CString(err.Error())
- defer C.free(unsafe.Pointer(cstr))
- C.sqlite3_result_error(ctx, cstr, -1)
-}
-
-// Test support code. Tests are not allowed to import "C", so we can't
-// declare any functions that use C.sqlite3_value.
-func callbackSyntheticForTests(v reflect.Value, err error) callbackArgConverter {
- return func(*C.sqlite3_value) (reflect.Value, error) {
- return v, err
- }
-}
diff --git a/vendor/github.com/mattn/go-sqlite3/doc.go b/vendor/github.com/mattn/go-sqlite3/doc.go
deleted file mode 100644
index c721f7708..000000000
--- a/vendor/github.com/mattn/go-sqlite3/doc.go
+++ /dev/null
@@ -1,112 +0,0 @@
-/*
-Package sqlite3 provides interface to SQLite3 databases.
-
-This works as a driver for database/sql.
-
-Installation
-
- go get github.com/mattn/go-sqlite3
-
-Supported Types
-
-Currently, go-sqlite3 supports the following data types.
-
- +------------------------------+
- |go | sqlite3 |
- |----------|-------------------|
- |nil | null |
- |int | integer |
- |int64 | integer |
- |float64 | float |
- |bool | integer |
- |[]byte | blob |
- |string | text |
- |time.Time | timestamp/datetime|
- +------------------------------+
-
-SQLite3 Extension
-
-You can write your own extension module for sqlite3. For example, below is an
-extension for a Regexp matcher operation.
-
- #include
- #include
- #include
- #include
-
- SQLITE_EXTENSION_INIT1
- static void regexp_func(sqlite3_context *context, int argc, sqlite3_value **argv) {
- if (argc >= 2) {
- const char *target = (const char *)sqlite3_value_text(argv[1]);
- const char *pattern = (const char *)sqlite3_value_text(argv[0]);
- const char* errstr = NULL;
- int erroff = 0;
- int vec[500];
- int n, rc;
- pcre* re = pcre_compile(pattern, 0, &errstr, &erroff, NULL);
- rc = pcre_exec(re, NULL, target, strlen(target), 0, 0, vec, 500);
- if (rc <= 0) {
- sqlite3_result_error(context, errstr, 0);
- return;
- }
- sqlite3_result_int(context, 1);
- }
- }
-
- #ifdef _WIN32
- __declspec(dllexport)
- #endif
- int sqlite3_extension_init(sqlite3 *db, char **errmsg,
- const sqlite3_api_routines *api) {
- SQLITE_EXTENSION_INIT2(api);
- return sqlite3_create_function(db, "regexp", 2, SQLITE_UTF8,
- (void*)db, regexp_func, NULL, NULL);
- }
-
-It needs to be built as a so/dll shared library. And you need to register
-the extension module like below.
-
- sql.Register("sqlite3_with_extensions",
- &sqlite3.SQLiteDriver{
- Extensions: []string{
- "sqlite3_mod_regexp",
- },
- })
-
-Then, you can use this extension.
-
- rows, err := db.Query("select text from mytable where name regexp '^golang'")
-
-Connection Hook
-
-You can hook and inject your code when the connection is established. database/sql
-doesn't provide a way to get native go-sqlite3 interfaces. So if you want,
-you need to set ConnectHook and get the SQLiteConn.
-
- sql.Register("sqlite3_with_hook_example",
- &sqlite3.SQLiteDriver{
- ConnectHook: func(conn *sqlite3.SQLiteConn) error {
- sqlite3conn = append(sqlite3conn, conn)
- return nil
- },
- })
-
-Go SQlite3 Extensions
-
-If you want to register Go functions as SQLite extension functions,
-call RegisterFunction from ConnectHook.
-
- regex = func(re, s string) (bool, error) {
- return regexp.MatchString(re, s)
- }
- sql.Register("sqlite3_with_go_func",
- &sqlite3.SQLiteDriver{
- ConnectHook: func(conn *sqlite3.SQLiteConn) error {
- return conn.RegisterFunc("regexp", regex, true)
- },
- })
-
-See the documentation of RegisterFunc for more details.
-
-*/
-package sqlite3
diff --git a/vendor/github.com/mattn/go-sqlite3/error.go b/vendor/github.com/mattn/go-sqlite3/error.go
deleted file mode 100644
index 49ab89036..000000000
--- a/vendor/github.com/mattn/go-sqlite3/error.go
+++ /dev/null
@@ -1,135 +0,0 @@
-// Copyright (C) 2014 Yasuhiro Matsumoto .
-//
-// Use of this source code is governed by an MIT-style
-// license that can be found in the LICENSE file.
-
-package sqlite3
-
-import "C"
-
-// ErrNo inherit errno.
-type ErrNo int
-
-// ErrNoMask is mask code.
-const ErrNoMask C.int = 0xff
-
-// ErrNoExtended is extended errno.
-type ErrNoExtended int
-
-// Error implement sqlite error code.
-type Error struct {
- Code ErrNo /* The error code returned by SQLite */
- ExtendedCode ErrNoExtended /* The extended error code returned by SQLite */
- err string /* The error string returned by sqlite3_errmsg(),
- this usually contains more specific details. */
-}
-
-// result codes from http://www.sqlite.org/c3ref/c_abort.html
-var (
- ErrError = ErrNo(1) /* SQL error or missing database */
- ErrInternal = ErrNo(2) /* Internal logic error in SQLite */
- ErrPerm = ErrNo(3) /* Access permission denied */
- ErrAbort = ErrNo(4) /* Callback routine requested an abort */
- ErrBusy = ErrNo(5) /* The database file is locked */
- ErrLocked = ErrNo(6) /* A table in the database is locked */
- ErrNomem = ErrNo(7) /* A malloc() failed */
- ErrReadonly = ErrNo(8) /* Attempt to write a readonly database */
- ErrInterrupt = ErrNo(9) /* Operation terminated by sqlite3_interrupt() */
- ErrIoErr = ErrNo(10) /* Some kind of disk I/O error occurred */
- ErrCorrupt = ErrNo(11) /* The database disk image is malformed */
- ErrNotFound = ErrNo(12) /* Unknown opcode in sqlite3_file_control() */
- ErrFull = ErrNo(13) /* Insertion failed because database is full */
- ErrCantOpen = ErrNo(14) /* Unable to open the database file */
- ErrProtocol = ErrNo(15) /* Database lock protocol error */
- ErrEmpty = ErrNo(16) /* Database is empty */
- ErrSchema = ErrNo(17) /* The database schema changed */
- ErrTooBig = ErrNo(18) /* String or BLOB exceeds size limit */
- ErrConstraint = ErrNo(19) /* Abort due to constraint violation */
- ErrMismatch = ErrNo(20) /* Data type mismatch */
- ErrMisuse = ErrNo(21) /* Library used incorrectly */
- ErrNoLFS = ErrNo(22) /* Uses OS features not supported on host */
- ErrAuth = ErrNo(23) /* Authorization denied */
- ErrFormat = ErrNo(24) /* Auxiliary database format error */
- ErrRange = ErrNo(25) /* 2nd parameter to sqlite3_bind out of range */
- ErrNotADB = ErrNo(26) /* File opened that is not a database file */
- ErrNotice = ErrNo(27) /* Notifications from sqlite3_log() */
- ErrWarning = ErrNo(28) /* Warnings from sqlite3_log() */
-)
-
-// Error return error message from errno.
-func (err ErrNo) Error() string {
- return Error{Code: err}.Error()
-}
-
-// Extend return extended errno.
-func (err ErrNo) Extend(by int) ErrNoExtended {
- return ErrNoExtended(int(err) | (by << 8))
-}
-
-// Error return error message that is extended code.
-func (err ErrNoExtended) Error() string {
- return Error{Code: ErrNo(C.int(err) & ErrNoMask), ExtendedCode: err}.Error()
-}
-
-func (err Error) Error() string {
- if err.err != "" {
- return err.err
- }
- return errorString(err)
-}
-
-// result codes from http://www.sqlite.org/c3ref/c_abort_rollback.html
-var (
- ErrIoErrRead = ErrIoErr.Extend(1)
- ErrIoErrShortRead = ErrIoErr.Extend(2)
- ErrIoErrWrite = ErrIoErr.Extend(3)
- ErrIoErrFsync = ErrIoErr.Extend(4)
- ErrIoErrDirFsync = ErrIoErr.Extend(5)
- ErrIoErrTruncate = ErrIoErr.Extend(6)
- ErrIoErrFstat = ErrIoErr.Extend(7)
- ErrIoErrUnlock = ErrIoErr.Extend(8)
- ErrIoErrRDlock = ErrIoErr.Extend(9)
- ErrIoErrDelete = ErrIoErr.Extend(10)
- ErrIoErrBlocked = ErrIoErr.Extend(11)
- ErrIoErrNoMem = ErrIoErr.Extend(12)
- ErrIoErrAccess = ErrIoErr.Extend(13)
- ErrIoErrCheckReservedLock = ErrIoErr.Extend(14)
- ErrIoErrLock = ErrIoErr.Extend(15)
- ErrIoErrClose = ErrIoErr.Extend(16)
- ErrIoErrDirClose = ErrIoErr.Extend(17)
- ErrIoErrSHMOpen = ErrIoErr.Extend(18)
- ErrIoErrSHMSize = ErrIoErr.Extend(19)
- ErrIoErrSHMLock = ErrIoErr.Extend(20)
- ErrIoErrSHMMap = ErrIoErr.Extend(21)
- ErrIoErrSeek = ErrIoErr.Extend(22)
- ErrIoErrDeleteNoent = ErrIoErr.Extend(23)
- ErrIoErrMMap = ErrIoErr.Extend(24)
- ErrIoErrGetTempPath = ErrIoErr.Extend(25)
- ErrIoErrConvPath = ErrIoErr.Extend(26)
- ErrLockedSharedCache = ErrLocked.Extend(1)
- ErrBusyRecovery = ErrBusy.Extend(1)
- ErrBusySnapshot = ErrBusy.Extend(2)
- ErrCantOpenNoTempDir = ErrCantOpen.Extend(1)
- ErrCantOpenIsDir = ErrCantOpen.Extend(2)
- ErrCantOpenFullPath = ErrCantOpen.Extend(3)
- ErrCantOpenConvPath = ErrCantOpen.Extend(4)
- ErrCorruptVTab = ErrCorrupt.Extend(1)
- ErrReadonlyRecovery = ErrReadonly.Extend(1)
- ErrReadonlyCantLock = ErrReadonly.Extend(2)
- ErrReadonlyRollback = ErrReadonly.Extend(3)
- ErrReadonlyDbMoved = ErrReadonly.Extend(4)
- ErrAbortRollback = ErrAbort.Extend(2)
- ErrConstraintCheck = ErrConstraint.Extend(1)
- ErrConstraintCommitHook = ErrConstraint.Extend(2)
- ErrConstraintForeignKey = ErrConstraint.Extend(3)
- ErrConstraintFunction = ErrConstraint.Extend(4)
- ErrConstraintNotNull = ErrConstraint.Extend(5)
- ErrConstraintPrimaryKey = ErrConstraint.Extend(6)
- ErrConstraintTrigger = ErrConstraint.Extend(7)
- ErrConstraintUnique = ErrConstraint.Extend(8)
- ErrConstraintVTab = ErrConstraint.Extend(9)
- ErrConstraintRowID = ErrConstraint.Extend(10)
- ErrNoticeRecoverWAL = ErrNotice.Extend(1)
- ErrNoticeRecoverRollback = ErrNotice.Extend(2)
- ErrWarningAutoIndex = ErrWarning.Extend(1)
-)
diff --git a/vendor/github.com/mattn/go-sqlite3/sqlite3-binding.c b/vendor/github.com/mattn/go-sqlite3/sqlite3-binding.c
deleted file mode 100644
index 776319750..000000000
--- a/vendor/github.com/mattn/go-sqlite3/sqlite3-binding.c
+++ /dev/null
@@ -1,219523 +0,0 @@
-#ifndef USE_LIBSQLITE3
-/******************************************************************************
-** This file is an amalgamation of many separate C source files from SQLite
-** version 3.25.2. By combining all the individual C code files into this
-** single large file, the entire code can be compiled as a single translation
-** unit. This allows many compilers to do optimizations that would not be
-** possible if the files were compiled separately. Performance improvements
-** of 5% or more are commonly seen when SQLite is compiled as a single
-** translation unit.
-**
-** This file is all you need to compile SQLite. To use SQLite in other
-** programs, you need this file and the "sqlite3.h" header file that defines
-** the programming interface to the SQLite library. (If you do not have
-** the "sqlite3.h" header file at hand, you will find a copy embedded within
-** the text of this file. Search for "Begin file sqlite3.h" to find the start
-** of the embedded sqlite3.h header file.) Additional code files may be needed
-** if you want a wrapper to interface SQLite with your choice of programming
-** language. The code for the "sqlite3" command-line shell is also in a
-** separate file. This file contains only code for the core SQLite library.
-*/
-#define SQLITE_CORE 1
-#define SQLITE_AMALGAMATION 1
-#ifndef SQLITE_PRIVATE
-# define SQLITE_PRIVATE static
-#endif
-/************** Begin file ctime.c *******************************************/
-/*
-** 2010 February 23
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-**
-** This file implements routines used to report what compile-time options
-** SQLite was built with.
-*/
-
-#ifndef SQLITE_OMIT_COMPILEOPTION_DIAGS
-
-/*
-** Include the configuration header output by 'configure' if we're using the
-** autoconf-based build
-*/
-#if defined(_HAVE_SQLITE_CONFIG_H) && !defined(SQLITECONFIG_H)
-#include "config.h"
-#define SQLITECONFIG_H 1
-#endif
-
-/* These macros are provided to "stringify" the value of the define
-** for those options in which the value is meaningful. */
-#define CTIMEOPT_VAL_(opt) #opt
-#define CTIMEOPT_VAL(opt) CTIMEOPT_VAL_(opt)
-
-/* Like CTIMEOPT_VAL, but especially for SQLITE_DEFAULT_LOOKASIDE. This
-** option requires a separate macro because legal values contain a single
-** comma. e.g. (-DSQLITE_DEFAULT_LOOKASIDE="100,100") */
-#define CTIMEOPT_VAL2_(opt1,opt2) #opt1 "," #opt2
-#define CTIMEOPT_VAL2(opt) CTIMEOPT_VAL2_(opt)
-
-/*
-** An array of names of all compile-time options. This array should
-** be sorted A-Z.
-**
-** This array looks large, but in a typical installation actually uses
-** only a handful of compile-time options, so most times this array is usually
-** rather short and uses little memory space.
-*/
-static const char * const sqlite3azCompileOpt[] = {
-
-/*
-** BEGIN CODE GENERATED BY tool/mkctime.tcl
-*/
-#if SQLITE_32BIT_ROWID
- "32BIT_ROWID",
-#endif
-#if SQLITE_4_BYTE_ALIGNED_MALLOC
- "4_BYTE_ALIGNED_MALLOC",
-#endif
-#if SQLITE_64BIT_STATS
- "64BIT_STATS",
-#endif
-#if SQLITE_ALLOW_COVERING_INDEX_SCAN
- "ALLOW_COVERING_INDEX_SCAN",
-#endif
-#if SQLITE_ALLOW_URI_AUTHORITY
- "ALLOW_URI_AUTHORITY",
-#endif
-#ifdef SQLITE_BITMASK_TYPE
- "BITMASK_TYPE=" CTIMEOPT_VAL(SQLITE_BITMASK_TYPE),
-#endif
-#if SQLITE_BUG_COMPATIBLE_20160819
- "BUG_COMPATIBLE_20160819",
-#endif
-#if SQLITE_CASE_SENSITIVE_LIKE
- "CASE_SENSITIVE_LIKE",
-#endif
-#if SQLITE_CHECK_PAGES
- "CHECK_PAGES",
-#endif
-#if defined(__clang__) && defined(__clang_major__)
- "COMPILER=clang-" CTIMEOPT_VAL(__clang_major__) "."
- CTIMEOPT_VAL(__clang_minor__) "."
- CTIMEOPT_VAL(__clang_patchlevel__),
-#elif defined(_MSC_VER)
- "COMPILER=msvc-" CTIMEOPT_VAL(_MSC_VER),
-#elif defined(__GNUC__) && defined(__VERSION__)
- "COMPILER=gcc-" __VERSION__,
-#endif
-#if SQLITE_COVERAGE_TEST
- "COVERAGE_TEST",
-#endif
-#if SQLITE_DEBUG
- "DEBUG",
-#endif
-#if SQLITE_DEFAULT_AUTOMATIC_INDEX
- "DEFAULT_AUTOMATIC_INDEX",
-#endif
-#if SQLITE_DEFAULT_AUTOVACUUM
- "DEFAULT_AUTOVACUUM",
-#endif
-#ifdef SQLITE_DEFAULT_CACHE_SIZE
- "DEFAULT_CACHE_SIZE=" CTIMEOPT_VAL(SQLITE_DEFAULT_CACHE_SIZE),
-#endif
-#if SQLITE_DEFAULT_CKPTFULLFSYNC
- "DEFAULT_CKPTFULLFSYNC",
-#endif
-#ifdef SQLITE_DEFAULT_FILE_FORMAT
- "DEFAULT_FILE_FORMAT=" CTIMEOPT_VAL(SQLITE_DEFAULT_FILE_FORMAT),
-#endif
-#ifdef SQLITE_DEFAULT_FILE_PERMISSIONS
- "DEFAULT_FILE_PERMISSIONS=" CTIMEOPT_VAL(SQLITE_DEFAULT_FILE_PERMISSIONS),
-#endif
-#if SQLITE_DEFAULT_FOREIGN_KEYS
- "DEFAULT_FOREIGN_KEYS",
-#endif
-#ifdef SQLITE_DEFAULT_JOURNAL_SIZE_LIMIT
- "DEFAULT_JOURNAL_SIZE_LIMIT=" CTIMEOPT_VAL(SQLITE_DEFAULT_JOURNAL_SIZE_LIMIT),
-#endif
-#ifdef SQLITE_DEFAULT_LOCKING_MODE
- "DEFAULT_LOCKING_MODE=" CTIMEOPT_VAL(SQLITE_DEFAULT_LOCKING_MODE),
-#endif
-#ifdef SQLITE_DEFAULT_LOOKASIDE
- "DEFAULT_LOOKASIDE=" CTIMEOPT_VAL2(SQLITE_DEFAULT_LOOKASIDE),
-#endif
-#if SQLITE_DEFAULT_MEMSTATUS
- "DEFAULT_MEMSTATUS",
-#endif
-#ifdef SQLITE_DEFAULT_MMAP_SIZE
- "DEFAULT_MMAP_SIZE=" CTIMEOPT_VAL(SQLITE_DEFAULT_MMAP_SIZE),
-#endif
-#ifdef SQLITE_DEFAULT_PAGE_SIZE
- "DEFAULT_PAGE_SIZE=" CTIMEOPT_VAL(SQLITE_DEFAULT_PAGE_SIZE),
-#endif
-#ifdef SQLITE_DEFAULT_PCACHE_INITSZ
- "DEFAULT_PCACHE_INITSZ=" CTIMEOPT_VAL(SQLITE_DEFAULT_PCACHE_INITSZ),
-#endif
-#ifdef SQLITE_DEFAULT_PROXYDIR_PERMISSIONS
- "DEFAULT_PROXYDIR_PERMISSIONS=" CTIMEOPT_VAL(SQLITE_DEFAULT_PROXYDIR_PERMISSIONS),
-#endif
-#if SQLITE_DEFAULT_RECURSIVE_TRIGGERS
- "DEFAULT_RECURSIVE_TRIGGERS",
-#endif
-#ifdef SQLITE_DEFAULT_ROWEST
- "DEFAULT_ROWEST=" CTIMEOPT_VAL(SQLITE_DEFAULT_ROWEST),
-#endif
-#ifdef SQLITE_DEFAULT_SECTOR_SIZE
- "DEFAULT_SECTOR_SIZE=" CTIMEOPT_VAL(SQLITE_DEFAULT_SECTOR_SIZE),
-#endif
-#ifdef SQLITE_DEFAULT_SYNCHRONOUS
- "DEFAULT_SYNCHRONOUS=" CTIMEOPT_VAL(SQLITE_DEFAULT_SYNCHRONOUS),
-#endif
-#ifdef SQLITE_DEFAULT_WAL_AUTOCHECKPOINT
- "DEFAULT_WAL_AUTOCHECKPOINT=" CTIMEOPT_VAL(SQLITE_DEFAULT_WAL_AUTOCHECKPOINT),
-#endif
-#ifdef SQLITE_DEFAULT_WAL_SYNCHRONOUS
- "DEFAULT_WAL_SYNCHRONOUS=" CTIMEOPT_VAL(SQLITE_DEFAULT_WAL_SYNCHRONOUS),
-#endif
-#ifdef SQLITE_DEFAULT_WORKER_THREADS
- "DEFAULT_WORKER_THREADS=" CTIMEOPT_VAL(SQLITE_DEFAULT_WORKER_THREADS),
-#endif
-#if SQLITE_DIRECT_OVERFLOW_READ
- "DIRECT_OVERFLOW_READ",
-#endif
-#if SQLITE_DISABLE_DIRSYNC
- "DISABLE_DIRSYNC",
-#endif
-#if SQLITE_DISABLE_FTS3_UNICODE
- "DISABLE_FTS3_UNICODE",
-#endif
-#if SQLITE_DISABLE_FTS4_DEFERRED
- "DISABLE_FTS4_DEFERRED",
-#endif
-#if SQLITE_DISABLE_INTRINSIC
- "DISABLE_INTRINSIC",
-#endif
-#if SQLITE_DISABLE_LFS
- "DISABLE_LFS",
-#endif
-#if SQLITE_DISABLE_PAGECACHE_OVERFLOW_STATS
- "DISABLE_PAGECACHE_OVERFLOW_STATS",
-#endif
-#if SQLITE_DISABLE_SKIPAHEAD_DISTINCT
- "DISABLE_SKIPAHEAD_DISTINCT",
-#endif
-#ifdef SQLITE_ENABLE_8_3_NAMES
- "ENABLE_8_3_NAMES=" CTIMEOPT_VAL(SQLITE_ENABLE_8_3_NAMES),
-#endif
-#if SQLITE_ENABLE_API_ARMOR
- "ENABLE_API_ARMOR",
-#endif
-#if SQLITE_ENABLE_ATOMIC_WRITE
- "ENABLE_ATOMIC_WRITE",
-#endif
-#if SQLITE_ENABLE_BATCH_ATOMIC_WRITE
- "ENABLE_BATCH_ATOMIC_WRITE",
-#endif
-#if SQLITE_ENABLE_CEROD
- "ENABLE_CEROD=" CTIMEOPT_VAL(SQLITE_ENABLE_CEROD),
-#endif
-#if SQLITE_ENABLE_COLUMN_METADATA
- "ENABLE_COLUMN_METADATA",
-#endif
-#if SQLITE_ENABLE_COLUMN_USED_MASK
- "ENABLE_COLUMN_USED_MASK",
-#endif
-#if SQLITE_ENABLE_COSTMULT
- "ENABLE_COSTMULT",
-#endif
-#if SQLITE_ENABLE_CURSOR_HINTS
- "ENABLE_CURSOR_HINTS",
-#endif
-#if SQLITE_ENABLE_DBSTAT_VTAB
- "ENABLE_DBSTAT_VTAB",
-#endif
-#if SQLITE_ENABLE_EXPENSIVE_ASSERT
- "ENABLE_EXPENSIVE_ASSERT",
-#endif
-#if SQLITE_ENABLE_FTS1
- "ENABLE_FTS1",
-#endif
-#if SQLITE_ENABLE_FTS2
- "ENABLE_FTS2",
-#endif
-#if SQLITE_ENABLE_FTS3
- "ENABLE_FTS3",
-#endif
-#if SQLITE_ENABLE_FTS3_PARENTHESIS
- "ENABLE_FTS3_PARENTHESIS",
-#endif
-#if SQLITE_ENABLE_FTS3_TOKENIZER
- "ENABLE_FTS3_TOKENIZER",
-#endif
-#if SQLITE_ENABLE_FTS4
- "ENABLE_FTS4",
-#endif
-#if SQLITE_ENABLE_FTS5
- "ENABLE_FTS5",
-#endif
-#if SQLITE_ENABLE_HIDDEN_COLUMNS
- "ENABLE_HIDDEN_COLUMNS",
-#endif
-#if SQLITE_ENABLE_ICU
- "ENABLE_ICU",
-#endif
-#if SQLITE_ENABLE_IOTRACE
- "ENABLE_IOTRACE",
-#endif
-#if SQLITE_ENABLE_JSON1
- "ENABLE_JSON1",
-#endif
-#if SQLITE_ENABLE_LOAD_EXTENSION
- "ENABLE_LOAD_EXTENSION",
-#endif
-#ifdef SQLITE_ENABLE_LOCKING_STYLE
- "ENABLE_LOCKING_STYLE=" CTIMEOPT_VAL(SQLITE_ENABLE_LOCKING_STYLE),
-#endif
-#if SQLITE_ENABLE_MEMORY_MANAGEMENT
- "ENABLE_MEMORY_MANAGEMENT",
-#endif
-#if SQLITE_ENABLE_MEMSYS3
- "ENABLE_MEMSYS3",
-#endif
-#if SQLITE_ENABLE_MEMSYS5
- "ENABLE_MEMSYS5",
-#endif
-#if SQLITE_ENABLE_MULTIPLEX
- "ENABLE_MULTIPLEX",
-#endif
-#if SQLITE_ENABLE_NULL_TRIM
- "ENABLE_NULL_TRIM",
-#endif
-#if SQLITE_ENABLE_OVERSIZE_CELL_CHECK
- "ENABLE_OVERSIZE_CELL_CHECK",
-#endif
-#if SQLITE_ENABLE_PREUPDATE_HOOK
- "ENABLE_PREUPDATE_HOOK",
-#endif
-#if SQLITE_ENABLE_QPSG
- "ENABLE_QPSG",
-#endif
-#if SQLITE_ENABLE_RBU
- "ENABLE_RBU",
-#endif
-#if SQLITE_ENABLE_RTREE
- "ENABLE_RTREE",
-#endif
-#if SQLITE_ENABLE_SELECTTRACE
- "ENABLE_SELECTTRACE",
-#endif
-#if SQLITE_ENABLE_SESSION
- "ENABLE_SESSION",
-#endif
-#if SQLITE_ENABLE_SNAPSHOT
- "ENABLE_SNAPSHOT",
-#endif
-#if SQLITE_ENABLE_SORTER_REFERENCES
- "ENABLE_SORTER_REFERENCES",
-#endif
-#if SQLITE_ENABLE_SQLLOG
- "ENABLE_SQLLOG",
-#endif
-#if defined(SQLITE_ENABLE_STAT4)
- "ENABLE_STAT4",
-#elif defined(SQLITE_ENABLE_STAT3)
- "ENABLE_STAT3",
-#endif
-#if SQLITE_ENABLE_STMTVTAB
- "ENABLE_STMTVTAB",
-#endif
-#if SQLITE_ENABLE_STMT_SCANSTATUS
- "ENABLE_STMT_SCANSTATUS",
-#endif
-#if SQLITE_ENABLE_UNKNOWN_SQL_FUNCTION
- "ENABLE_UNKNOWN_SQL_FUNCTION",
-#endif
-#if SQLITE_ENABLE_UNLOCK_NOTIFY
- "ENABLE_UNLOCK_NOTIFY",
-#endif
-#if SQLITE_ENABLE_UPDATE_DELETE_LIMIT
- "ENABLE_UPDATE_DELETE_LIMIT",
-#endif
-#if SQLITE_ENABLE_URI_00_ERROR
- "ENABLE_URI_00_ERROR",
-#endif
-#if SQLITE_ENABLE_VFSTRACE
- "ENABLE_VFSTRACE",
-#endif
-#if SQLITE_ENABLE_WHERETRACE
- "ENABLE_WHERETRACE",
-#endif
-#if SQLITE_ENABLE_ZIPVFS
- "ENABLE_ZIPVFS",
-#endif
-#if SQLITE_EXPLAIN_ESTIMATED_ROWS
- "EXPLAIN_ESTIMATED_ROWS",
-#endif
-#if SQLITE_EXTRA_IFNULLROW
- "EXTRA_IFNULLROW",
-#endif
-#ifdef SQLITE_EXTRA_INIT
- "EXTRA_INIT=" CTIMEOPT_VAL(SQLITE_EXTRA_INIT),
-#endif
-#ifdef SQLITE_EXTRA_SHUTDOWN
- "EXTRA_SHUTDOWN=" CTIMEOPT_VAL(SQLITE_EXTRA_SHUTDOWN),
-#endif
-#ifdef SQLITE_FTS3_MAX_EXPR_DEPTH
- "FTS3_MAX_EXPR_DEPTH=" CTIMEOPT_VAL(SQLITE_FTS3_MAX_EXPR_DEPTH),
-#endif
-#if SQLITE_FTS5_ENABLE_TEST_MI
- "FTS5_ENABLE_TEST_MI",
-#endif
-#if SQLITE_FTS5_NO_WITHOUT_ROWID
- "FTS5_NO_WITHOUT_ROWID",
-#endif
-#if SQLITE_HAS_CODEC
- "HAS_CODEC",
-#endif
-#if HAVE_ISNAN || SQLITE_HAVE_ISNAN
- "HAVE_ISNAN",
-#endif
-#if SQLITE_HOMEGROWN_RECURSIVE_MUTEX
- "HOMEGROWN_RECURSIVE_MUTEX",
-#endif
-#if SQLITE_IGNORE_AFP_LOCK_ERRORS
- "IGNORE_AFP_LOCK_ERRORS",
-#endif
-#if SQLITE_IGNORE_FLOCK_LOCK_ERRORS
- "IGNORE_FLOCK_LOCK_ERRORS",
-#endif
-#if SQLITE_INLINE_MEMCPY
- "INLINE_MEMCPY",
-#endif
-#if SQLITE_INT64_TYPE
- "INT64_TYPE",
-#endif
-#ifdef SQLITE_INTEGRITY_CHECK_ERROR_MAX
- "INTEGRITY_CHECK_ERROR_MAX=" CTIMEOPT_VAL(SQLITE_INTEGRITY_CHECK_ERROR_MAX),
-#endif
-#if SQLITE_LIKE_DOESNT_MATCH_BLOBS
- "LIKE_DOESNT_MATCH_BLOBS",
-#endif
-#if SQLITE_LOCK_TRACE
- "LOCK_TRACE",
-#endif
-#if SQLITE_LOG_CACHE_SPILL
- "LOG_CACHE_SPILL",
-#endif
-#ifdef SQLITE_MALLOC_SOFT_LIMIT
- "MALLOC_SOFT_LIMIT=" CTIMEOPT_VAL(SQLITE_MALLOC_SOFT_LIMIT),
-#endif
-#ifdef SQLITE_MAX_ATTACHED
- "MAX_ATTACHED=" CTIMEOPT_VAL(SQLITE_MAX_ATTACHED),
-#endif
-#ifdef SQLITE_MAX_COLUMN
- "MAX_COLUMN=" CTIMEOPT_VAL(SQLITE_MAX_COLUMN),
-#endif
-#ifdef SQLITE_MAX_COMPOUND_SELECT
- "MAX_COMPOUND_SELECT=" CTIMEOPT_VAL(SQLITE_MAX_COMPOUND_SELECT),
-#endif
-#ifdef SQLITE_MAX_DEFAULT_PAGE_SIZE
- "MAX_DEFAULT_PAGE_SIZE=" CTIMEOPT_VAL(SQLITE_MAX_DEFAULT_PAGE_SIZE),
-#endif
-#ifdef SQLITE_MAX_EXPR_DEPTH
- "MAX_EXPR_DEPTH=" CTIMEOPT_VAL(SQLITE_MAX_EXPR_DEPTH),
-#endif
-#ifdef SQLITE_MAX_FUNCTION_ARG
- "MAX_FUNCTION_ARG=" CTIMEOPT_VAL(SQLITE_MAX_FUNCTION_ARG),
-#endif
-#ifdef SQLITE_MAX_LENGTH
- "MAX_LENGTH=" CTIMEOPT_VAL(SQLITE_MAX_LENGTH),
-#endif
-#ifdef SQLITE_MAX_LIKE_PATTERN_LENGTH
- "MAX_LIKE_PATTERN_LENGTH=" CTIMEOPT_VAL(SQLITE_MAX_LIKE_PATTERN_LENGTH),
-#endif
-#ifdef SQLITE_MAX_MEMORY
- "MAX_MEMORY=" CTIMEOPT_VAL(SQLITE_MAX_MEMORY),
-#endif
-#ifdef SQLITE_MAX_MMAP_SIZE
- "MAX_MMAP_SIZE=" CTIMEOPT_VAL(SQLITE_MAX_MMAP_SIZE),
-#endif
-#ifdef SQLITE_MAX_MMAP_SIZE_
- "MAX_MMAP_SIZE_=" CTIMEOPT_VAL(SQLITE_MAX_MMAP_SIZE_),
-#endif
-#ifdef SQLITE_MAX_PAGE_COUNT
- "MAX_PAGE_COUNT=" CTIMEOPT_VAL(SQLITE_MAX_PAGE_COUNT),
-#endif
-#ifdef SQLITE_MAX_PAGE_SIZE
- "MAX_PAGE_SIZE=" CTIMEOPT_VAL(SQLITE_MAX_PAGE_SIZE),
-#endif
-#ifdef SQLITE_MAX_SCHEMA_RETRY
- "MAX_SCHEMA_RETRY=" CTIMEOPT_VAL(SQLITE_MAX_SCHEMA_RETRY),
-#endif
-#ifdef SQLITE_MAX_SQL_LENGTH
- "MAX_SQL_LENGTH=" CTIMEOPT_VAL(SQLITE_MAX_SQL_LENGTH),
-#endif
-#ifdef SQLITE_MAX_TRIGGER_DEPTH
- "MAX_TRIGGER_DEPTH=" CTIMEOPT_VAL(SQLITE_MAX_TRIGGER_DEPTH),
-#endif
-#ifdef SQLITE_MAX_VARIABLE_NUMBER
- "MAX_VARIABLE_NUMBER=" CTIMEOPT_VAL(SQLITE_MAX_VARIABLE_NUMBER),
-#endif
-#ifdef SQLITE_MAX_VDBE_OP
- "MAX_VDBE_OP=" CTIMEOPT_VAL(SQLITE_MAX_VDBE_OP),
-#endif
-#ifdef SQLITE_MAX_WORKER_THREADS
- "MAX_WORKER_THREADS=" CTIMEOPT_VAL(SQLITE_MAX_WORKER_THREADS),
-#endif
-#if SQLITE_MEMDEBUG
- "MEMDEBUG",
-#endif
-#if SQLITE_MIXED_ENDIAN_64BIT_FLOAT
- "MIXED_ENDIAN_64BIT_FLOAT",
-#endif
-#if SQLITE_MMAP_READWRITE
- "MMAP_READWRITE",
-#endif
-#if SQLITE_MUTEX_NOOP
- "MUTEX_NOOP",
-#endif
-#if SQLITE_MUTEX_NREF
- "MUTEX_NREF",
-#endif
-#if SQLITE_MUTEX_OMIT
- "MUTEX_OMIT",
-#endif
-#if SQLITE_MUTEX_PTHREADS
- "MUTEX_PTHREADS",
-#endif
-#if SQLITE_MUTEX_W32
- "MUTEX_W32",
-#endif
-#if SQLITE_NEED_ERR_NAME
- "NEED_ERR_NAME",
-#endif
-#if SQLITE_NOINLINE
- "NOINLINE",
-#endif
-#if SQLITE_NO_SYNC
- "NO_SYNC",
-#endif
-#if SQLITE_OMIT_ALTERTABLE
- "OMIT_ALTERTABLE",
-#endif
-#if SQLITE_OMIT_ANALYZE
- "OMIT_ANALYZE",
-#endif
-#if SQLITE_OMIT_ATTACH
- "OMIT_ATTACH",
-#endif
-#if SQLITE_OMIT_AUTHORIZATION
- "OMIT_AUTHORIZATION",
-#endif
-#if SQLITE_OMIT_AUTOINCREMENT
- "OMIT_AUTOINCREMENT",
-#endif
-#if SQLITE_OMIT_AUTOINIT
- "OMIT_AUTOINIT",
-#endif
-#if SQLITE_OMIT_AUTOMATIC_INDEX
- "OMIT_AUTOMATIC_INDEX",
-#endif
-#if SQLITE_OMIT_AUTORESET
- "OMIT_AUTORESET",
-#endif
-#if SQLITE_OMIT_AUTOVACUUM
- "OMIT_AUTOVACUUM",
-#endif
-#if SQLITE_OMIT_BETWEEN_OPTIMIZATION
- "OMIT_BETWEEN_OPTIMIZATION",
-#endif
-#if SQLITE_OMIT_BLOB_LITERAL
- "OMIT_BLOB_LITERAL",
-#endif
-#if SQLITE_OMIT_BTREECOUNT
- "OMIT_BTREECOUNT",
-#endif
-#if SQLITE_OMIT_CAST
- "OMIT_CAST",
-#endif
-#if SQLITE_OMIT_CHECK
- "OMIT_CHECK",
-#endif
-#if SQLITE_OMIT_COMPLETE
- "OMIT_COMPLETE",
-#endif
-#if SQLITE_OMIT_COMPOUND_SELECT
- "OMIT_COMPOUND_SELECT",
-#endif
-#if SQLITE_OMIT_CONFLICT_CLAUSE
- "OMIT_CONFLICT_CLAUSE",
-#endif
-#if SQLITE_OMIT_CTE
- "OMIT_CTE",
-#endif
-#if SQLITE_OMIT_DATETIME_FUNCS
- "OMIT_DATETIME_FUNCS",
-#endif
-#if SQLITE_OMIT_DECLTYPE
- "OMIT_DECLTYPE",
-#endif
-#if SQLITE_OMIT_DEPRECATED
- "OMIT_DEPRECATED",
-#endif
-#if SQLITE_OMIT_DISKIO
- "OMIT_DISKIO",
-#endif
-#if SQLITE_OMIT_EXPLAIN
- "OMIT_EXPLAIN",
-#endif
-#if SQLITE_OMIT_FLAG_PRAGMAS
- "OMIT_FLAG_PRAGMAS",
-#endif
-#if SQLITE_OMIT_FLOATING_POINT
- "OMIT_FLOATING_POINT",
-#endif
-#if SQLITE_OMIT_FOREIGN_KEY
- "OMIT_FOREIGN_KEY",
-#endif
-#if SQLITE_OMIT_GET_TABLE
- "OMIT_GET_TABLE",
-#endif
-#if SQLITE_OMIT_HEX_INTEGER
- "OMIT_HEX_INTEGER",
-#endif
-#if SQLITE_OMIT_INCRBLOB
- "OMIT_INCRBLOB",
-#endif
-#if SQLITE_OMIT_INTEGRITY_CHECK
- "OMIT_INTEGRITY_CHECK",
-#endif
-#if SQLITE_OMIT_LIKE_OPTIMIZATION
- "OMIT_LIKE_OPTIMIZATION",
-#endif
-#if SQLITE_OMIT_LOAD_EXTENSION
- "OMIT_LOAD_EXTENSION",
-#endif
-#if SQLITE_OMIT_LOCALTIME
- "OMIT_LOCALTIME",
-#endif
-#if SQLITE_OMIT_LOOKASIDE
- "OMIT_LOOKASIDE",
-#endif
-#if SQLITE_OMIT_MEMORYDB
- "OMIT_MEMORYDB",
-#endif
-#if SQLITE_OMIT_OR_OPTIMIZATION
- "OMIT_OR_OPTIMIZATION",
-#endif
-#if SQLITE_OMIT_PAGER_PRAGMAS
- "OMIT_PAGER_PRAGMAS",
-#endif
-#if SQLITE_OMIT_PARSER_TRACE
- "OMIT_PARSER_TRACE",
-#endif
-#if SQLITE_OMIT_POPEN
- "OMIT_POPEN",
-#endif
-#if SQLITE_OMIT_PRAGMA
- "OMIT_PRAGMA",
-#endif
-#if SQLITE_OMIT_PROGRESS_CALLBACK
- "OMIT_PROGRESS_CALLBACK",
-#endif
-#if SQLITE_OMIT_QUICKBALANCE
- "OMIT_QUICKBALANCE",
-#endif
-#if SQLITE_OMIT_REINDEX
- "OMIT_REINDEX",
-#endif
-#if SQLITE_OMIT_SCHEMA_PRAGMAS
- "OMIT_SCHEMA_PRAGMAS",
-#endif
-#if SQLITE_OMIT_SCHEMA_VERSION_PRAGMAS
- "OMIT_SCHEMA_VERSION_PRAGMAS",
-#endif
-#if SQLITE_OMIT_SHARED_CACHE
- "OMIT_SHARED_CACHE",
-#endif
-#if SQLITE_OMIT_SHUTDOWN_DIRECTORIES
- "OMIT_SHUTDOWN_DIRECTORIES",
-#endif
-#if SQLITE_OMIT_SUBQUERY
- "OMIT_SUBQUERY",
-#endif
-#if SQLITE_OMIT_TCL_VARIABLE
- "OMIT_TCL_VARIABLE",
-#endif
-#if SQLITE_OMIT_TEMPDB
- "OMIT_TEMPDB",
-#endif
-#if SQLITE_OMIT_TEST_CONTROL
- "OMIT_TEST_CONTROL",
-#endif
-#if SQLITE_OMIT_TRACE
- "OMIT_TRACE",
-#endif
-#if SQLITE_OMIT_TRIGGER
- "OMIT_TRIGGER",
-#endif
-#if SQLITE_OMIT_TRUNCATE_OPTIMIZATION
- "OMIT_TRUNCATE_OPTIMIZATION",
-#endif
-#if SQLITE_OMIT_UTF16
- "OMIT_UTF16",
-#endif
-#if SQLITE_OMIT_VACUUM
- "OMIT_VACUUM",
-#endif
-#if SQLITE_OMIT_VIEW
- "OMIT_VIEW",
-#endif
-#if SQLITE_OMIT_VIRTUALTABLE
- "OMIT_VIRTUALTABLE",
-#endif
-#if SQLITE_OMIT_WAL
- "OMIT_WAL",
-#endif
-#if SQLITE_OMIT_WSD
- "OMIT_WSD",
-#endif
-#if SQLITE_OMIT_XFER_OPT
- "OMIT_XFER_OPT",
-#endif
-#if SQLITE_PCACHE_SEPARATE_HEADER
- "PCACHE_SEPARATE_HEADER",
-#endif
-#if SQLITE_PERFORMANCE_TRACE
- "PERFORMANCE_TRACE",
-#endif
-#if SQLITE_POWERSAFE_OVERWRITE
- "POWERSAFE_OVERWRITE",
-#endif
-#if SQLITE_PREFER_PROXY_LOCKING
- "PREFER_PROXY_LOCKING",
-#endif
-#if SQLITE_PROXY_DEBUG
- "PROXY_DEBUG",
-#endif
-#if SQLITE_REVERSE_UNORDERED_SELECTS
- "REVERSE_UNORDERED_SELECTS",
-#endif
-#if SQLITE_RTREE_INT_ONLY
- "RTREE_INT_ONLY",
-#endif
-#if SQLITE_SECURE_DELETE
- "SECURE_DELETE",
-#endif
-#if SQLITE_SMALL_STACK
- "SMALL_STACK",
-#endif
-#ifdef SQLITE_SORTER_PMASZ
- "SORTER_PMASZ=" CTIMEOPT_VAL(SQLITE_SORTER_PMASZ),
-#endif
-#if SQLITE_SOUNDEX
- "SOUNDEX",
-#endif
-#ifdef SQLITE_STAT4_SAMPLES
- "STAT4_SAMPLES=" CTIMEOPT_VAL(SQLITE_STAT4_SAMPLES),
-#endif
-#ifdef SQLITE_STMTJRNL_SPILL
- "STMTJRNL_SPILL=" CTIMEOPT_VAL(SQLITE_STMTJRNL_SPILL),
-#endif
-#if SQLITE_SUBSTR_COMPATIBILITY
- "SUBSTR_COMPATIBILITY",
-#endif
-#if SQLITE_SYSTEM_MALLOC
- "SYSTEM_MALLOC",
-#endif
-#if SQLITE_TCL
- "TCL",
-#endif
-#ifdef SQLITE_TEMP_STORE
- "TEMP_STORE=" CTIMEOPT_VAL(SQLITE_TEMP_STORE),
-#endif
-#if SQLITE_TEST
- "TEST",
-#endif
-#if defined(SQLITE_THREADSAFE)
- "THREADSAFE=" CTIMEOPT_VAL(SQLITE_THREADSAFE),
-#elif defined(THREADSAFE)
- "THREADSAFE=" CTIMEOPT_VAL(THREADSAFE),
-#else
- "THREADSAFE=1",
-#endif
-#if SQLITE_UNLINK_AFTER_CLOSE
- "UNLINK_AFTER_CLOSE",
-#endif
-#if SQLITE_UNTESTABLE
- "UNTESTABLE",
-#endif
-#if SQLITE_USER_AUTHENTICATION
- "USER_AUTHENTICATION",
-#endif
-#if SQLITE_USE_ALLOCA
- "USE_ALLOCA",
-#endif
-#if SQLITE_USE_FCNTL_TRACE
- "USE_FCNTL_TRACE",
-#endif
-#if SQLITE_USE_URI
- "USE_URI",
-#endif
-#if SQLITE_VDBE_COVERAGE
- "VDBE_COVERAGE",
-#endif
-#if SQLITE_WIN32_MALLOC
- "WIN32_MALLOC",
-#endif
-#if SQLITE_ZERO_MALLOC
- "ZERO_MALLOC",
-#endif
-/*
-** END CODE GENERATED BY tool/mkctime.tcl
-*/
-};
-
-SQLITE_PRIVATE const char **sqlite3CompileOptions(int *pnOpt){
- *pnOpt = sizeof(sqlite3azCompileOpt) / sizeof(sqlite3azCompileOpt[0]);
- return (const char**)sqlite3azCompileOpt;
-}
-
-#endif /* SQLITE_OMIT_COMPILEOPTION_DIAGS */
-
-/************** End of ctime.c ***********************************************/
-/************** Begin file sqliteInt.h ***************************************/
-/*
-** 2001 September 15
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** Internal interface definitions for SQLite.
-**
-*/
-#ifndef SQLITEINT_H
-#define SQLITEINT_H
-
-/* Special Comments:
-**
-** Some comments have special meaning to the tools that measure test
-** coverage:
-**
-** NO_TEST - The branches on this line are not
-** measured by branch coverage. This is
-** used on lines of code that actually
-** implement parts of coverage testing.
-**
-** OPTIMIZATION-IF-TRUE - This branch is allowed to alway be false
-** and the correct answer is still obtained,
-** though perhaps more slowly.
-**
-** OPTIMIZATION-IF-FALSE - This branch is allowed to alway be true
-** and the correct answer is still obtained,
-** though perhaps more slowly.
-**
-** PREVENTS-HARMLESS-OVERREAD - This branch prevents a buffer overread
-** that would be harmless and undetectable
-** if it did occur.
-**
-** In all cases, the special comment must be enclosed in the usual
-** slash-asterisk...asterisk-slash comment marks, with no spaces between the
-** asterisks and the comment text.
-*/
-
-/*
-** Make sure the Tcl calling convention macro is defined. This macro is
-** only used by test code and Tcl integration code.
-*/
-#ifndef SQLITE_TCLAPI
-# define SQLITE_TCLAPI
-#endif
-
-/*
-** Include the header file used to customize the compiler options for MSVC.
-** This should be done first so that it can successfully prevent spurious
-** compiler warnings due to subsequent content in this file and other files
-** that are included by this file.
-*/
-/************** Include msvc.h in the middle of sqliteInt.h ******************/
-/************** Begin file msvc.h ********************************************/
-/*
-** 2015 January 12
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This file contains code that is specific to MSVC.
-*/
-#ifndef SQLITE_MSVC_H
-#define SQLITE_MSVC_H
-
-#if defined(_MSC_VER)
-#pragma warning(disable : 4054)
-#pragma warning(disable : 4055)
-#pragma warning(disable : 4100)
-#pragma warning(disable : 4127)
-#pragma warning(disable : 4130)
-#pragma warning(disable : 4152)
-#pragma warning(disable : 4189)
-#pragma warning(disable : 4206)
-#pragma warning(disable : 4210)
-#pragma warning(disable : 4232)
-#pragma warning(disable : 4244)
-#pragma warning(disable : 4305)
-#pragma warning(disable : 4306)
-#pragma warning(disable : 4702)
-#pragma warning(disable : 4706)
-#endif /* defined(_MSC_VER) */
-
-#endif /* SQLITE_MSVC_H */
-
-/************** End of msvc.h ************************************************/
-/************** Continuing where we left off in sqliteInt.h ******************/
-
-/*
-** Special setup for VxWorks
-*/
-/************** Include vxworks.h in the middle of sqliteInt.h ***************/
-/************** Begin file vxworks.h *****************************************/
-/*
-** 2015-03-02
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This file contains code that is specific to Wind River's VxWorks
-*/
-#if defined(__RTP__) || defined(_WRS_KERNEL)
-/* This is VxWorks. Set up things specially for that OS
-*/
-#include
-#include /* amalgamator: dontcache */
-#define OS_VXWORKS 1
-#define SQLITE_OS_OTHER 0
-#define SQLITE_HOMEGROWN_RECURSIVE_MUTEX 1
-#define SQLITE_OMIT_LOAD_EXTENSION 1
-#define SQLITE_ENABLE_LOCKING_STYLE 0
-#define HAVE_UTIME 1
-#else
-/* This is not VxWorks. */
-#define OS_VXWORKS 0
-#define HAVE_FCHOWN 1
-#define HAVE_READLINK 1
-#define HAVE_LSTAT 1
-#endif /* defined(_WRS_KERNEL) */
-
-/************** End of vxworks.h *********************************************/
-/************** Continuing where we left off in sqliteInt.h ******************/
-
-/*
-** These #defines should enable >2GB file support on POSIX if the
-** underlying operating system supports it. If the OS lacks
-** large file support, or if the OS is windows, these should be no-ops.
-**
-** Ticket #2739: The _LARGEFILE_SOURCE macro must appear before any
-** system #includes. Hence, this block of code must be the very first
-** code in all source files.
-**
-** Large file support can be disabled using the -DSQLITE_DISABLE_LFS switch
-** on the compiler command line. This is necessary if you are compiling
-** on a recent machine (ex: Red Hat 7.2) but you want your code to work
-** on an older machine (ex: Red Hat 6.0). If you compile on Red Hat 7.2
-** without this option, LFS is enable. But LFS does not exist in the kernel
-** in Red Hat 6.0, so the code won't work. Hence, for maximum binary
-** portability you should omit LFS.
-**
-** The previous paragraph was written in 2005. (This paragraph is written
-** on 2008-11-28.) These days, all Linux kernels support large files, so
-** you should probably leave LFS enabled. But some embedded platforms might
-** lack LFS in which case the SQLITE_DISABLE_LFS macro might still be useful.
-**
-** Similar is true for Mac OS X. LFS is only supported on Mac OS X 9 and later.
-*/
-#ifndef SQLITE_DISABLE_LFS
-# define _LARGE_FILE 1
-# ifndef _FILE_OFFSET_BITS
-# define _FILE_OFFSET_BITS 64
-# endif
-# define _LARGEFILE_SOURCE 1
-#endif
-
-/* The GCC_VERSION and MSVC_VERSION macros are used to
-** conditionally include optimizations for each of these compilers. A
-** value of 0 means that compiler is not being used. The
-** SQLITE_DISABLE_INTRINSIC macro means do not use any compiler-specific
-** optimizations, and hence set all compiler macros to 0
-**
-** There was once also a CLANG_VERSION macro. However, we learn that the
-** version numbers in clang are for "marketing" only and are inconsistent
-** and unreliable. Fortunately, all versions of clang also recognize the
-** gcc version numbers and have reasonable settings for gcc version numbers,
-** so the GCC_VERSION macro will be set to a correct non-zero value even
-** when compiling with clang.
-*/
-#if defined(__GNUC__) && !defined(SQLITE_DISABLE_INTRINSIC)
-# define GCC_VERSION (__GNUC__*1000000+__GNUC_MINOR__*1000+__GNUC_PATCHLEVEL__)
-#else
-# define GCC_VERSION 0
-#endif
-#if defined(_MSC_VER) && !defined(SQLITE_DISABLE_INTRINSIC)
-# define MSVC_VERSION _MSC_VER
-#else
-# define MSVC_VERSION 0
-#endif
-
-/* Needed for various definitions... */
-#if defined(__GNUC__) && !defined(_GNU_SOURCE)
-# define _GNU_SOURCE
-#endif
-
-#if defined(__OpenBSD__) && !defined(_BSD_SOURCE)
-# define _BSD_SOURCE
-#endif
-
-/*
-** For MinGW, check to see if we can include the header file containing its
-** version information, among other things. Normally, this internal MinGW
-** header file would [only] be included automatically by other MinGW header
-** files; however, the contained version information is now required by this
-** header file to work around binary compatibility issues (see below) and
-** this is the only known way to reliably obtain it. This entire #if block
-** would be completely unnecessary if there was any other way of detecting
-** MinGW via their preprocessor (e.g. if they customized their GCC to define
-** some MinGW-specific macros). When compiling for MinGW, either the
-** _HAVE_MINGW_H or _HAVE__MINGW_H (note the extra underscore) macro must be
-** defined; otherwise, detection of conditions specific to MinGW will be
-** disabled.
-*/
-#if defined(_HAVE_MINGW_H)
-# include "mingw.h"
-#elif defined(_HAVE__MINGW_H)
-# include "_mingw.h"
-#endif
-
-/*
-** For MinGW version 4.x (and higher), check to see if the _USE_32BIT_TIME_T
-** define is required to maintain binary compatibility with the MSVC runtime
-** library in use (e.g. for Windows XP).
-*/
-#if !defined(_USE_32BIT_TIME_T) && !defined(_USE_64BIT_TIME_T) && \
- defined(_WIN32) && !defined(_WIN64) && \
- defined(__MINGW_MAJOR_VERSION) && __MINGW_MAJOR_VERSION >= 4 && \
- defined(__MSVCRT__)
-# define _USE_32BIT_TIME_T
-#endif
-
-/* The public SQLite interface. The _FILE_OFFSET_BITS macro must appear
-** first in QNX. Also, the _USE_32BIT_TIME_T macro must appear first for
-** MinGW.
-*/
-/************** Include sqlite3.h in the middle of sqliteInt.h ***************/
-/************** Begin file sqlite3.h *****************************************/
-/*
-** 2001-09-15
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** This header file defines the interface that the SQLite library
-** presents to client programs. If a C-function, structure, datatype,
-** or constant definition does not appear in this file, then it is
-** not a published API of SQLite, is subject to change without
-** notice, and should not be referenced by programs that use SQLite.
-**
-** Some of the definitions that are in this file are marked as
-** "experimental". Experimental interfaces are normally new
-** features recently added to SQLite. We do not anticipate changes
-** to experimental interfaces but reserve the right to make minor changes
-** if experience from use "in the wild" suggest such changes are prudent.
-**
-** The official C-language API documentation for SQLite is derived
-** from comments in this file. This file is the authoritative source
-** on how SQLite interfaces are supposed to operate.
-**
-** The name of this file under configuration management is "sqlite.h.in".
-** The makefile makes some minor changes to this file (such as inserting
-** the version number) and changes its name to "sqlite3.h" as
-** part of the build process.
-*/
-#ifndef SQLITE3_H
-#define SQLITE3_H
-#include /* Needed for the definition of va_list */
-
-/*
-** Make sure we can call this stuff from C++.
-*/
-#if 0
-extern "C" {
-#endif
-
-
-/*
-** Provide the ability to override linkage features of the interface.
-*/
-#ifndef SQLITE_EXTERN
-# define SQLITE_EXTERN extern
-#endif
-#ifndef SQLITE_API
-# define SQLITE_API
-#endif
-#ifndef SQLITE_CDECL
-# define SQLITE_CDECL
-#endif
-#ifndef SQLITE_APICALL
-# define SQLITE_APICALL
-#endif
-#ifndef SQLITE_STDCALL
-# define SQLITE_STDCALL SQLITE_APICALL
-#endif
-#ifndef SQLITE_CALLBACK
-# define SQLITE_CALLBACK
-#endif
-#ifndef SQLITE_SYSAPI
-# define SQLITE_SYSAPI
-#endif
-
-/*
-** These no-op macros are used in front of interfaces to mark those
-** interfaces as either deprecated or experimental. New applications
-** should not use deprecated interfaces - they are supported for backwards
-** compatibility only. Application writers should be aware that
-** experimental interfaces are subject to change in point releases.
-**
-** These macros used to resolve to various kinds of compiler magic that
-** would generate warning messages when they were used. But that
-** compiler magic ended up generating such a flurry of bug reports
-** that we have taken it all out and gone back to using simple
-** noop macros.
-*/
-#define SQLITE_DEPRECATED
-#define SQLITE_EXPERIMENTAL
-
-/*
-** Ensure these symbols were not defined by some previous header file.
-*/
-#ifdef SQLITE_VERSION
-# undef SQLITE_VERSION
-#endif
-#ifdef SQLITE_VERSION_NUMBER
-# undef SQLITE_VERSION_NUMBER
-#endif
-
-/*
-** CAPI3REF: Compile-Time Library Version Numbers
-**
-** ^(The [SQLITE_VERSION] C preprocessor macro in the sqlite3.h header
-** evaluates to a string literal that is the SQLite version in the
-** format "X.Y.Z" where X is the major version number (always 3 for
-** SQLite3) and Y is the minor version number and Z is the release number.)^
-** ^(The [SQLITE_VERSION_NUMBER] C preprocessor macro resolves to an integer
-** with the value (X*1000000 + Y*1000 + Z) where X, Y, and Z are the same
-** numbers used in [SQLITE_VERSION].)^
-** The SQLITE_VERSION_NUMBER for any given release of SQLite will also
-** be larger than the release from which it is derived. Either Y will
-** be held constant and Z will be incremented or else Y will be incremented
-** and Z will be reset to zero.
-**
-** Since [version 3.6.18] ([dateof:3.6.18]),
-** SQLite source code has been stored in the
-** Fossil configuration management
-** system. ^The SQLITE_SOURCE_ID macro evaluates to
-** a string which identifies a particular check-in of SQLite
-** within its configuration management system. ^The SQLITE_SOURCE_ID
-** string contains the date and time of the check-in (UTC) and a SHA1
-** or SHA3-256 hash of the entire source tree. If the source code has
-** been edited in any way since it was last checked in, then the last
-** four hexadecimal digits of the hash may be modified.
-**
-** See also: [sqlite3_libversion()],
-** [sqlite3_libversion_number()], [sqlite3_sourceid()],
-** [sqlite_version()] and [sqlite_source_id()].
-*/
-#define SQLITE_VERSION "3.25.2"
-#define SQLITE_VERSION_NUMBER 3025002
-#define SQLITE_SOURCE_ID "2018-09-25 19:08:10 fb90e7189ae6d62e77ba3a308ca5d683f90bbe633cf681865365b8e92792d1c7"
-
-/*
-** CAPI3REF: Run-Time Library Version Numbers
-** KEYWORDS: sqlite3_version sqlite3_sourceid
-**
-** These interfaces provide the same information as the [SQLITE_VERSION],
-** [SQLITE_VERSION_NUMBER], and [SQLITE_SOURCE_ID] C preprocessor macros
-** but are associated with the library instead of the header file. ^(Cautious
-** programmers might include assert() statements in their application to
-** verify that values returned by these interfaces match the macros in
-** the header, and thus ensure that the application is
-** compiled with matching library and header files.
-**
-**
)^
-**
-** ^The sqlite3_version[] string constant contains the text of [SQLITE_VERSION]
-** macro. ^The sqlite3_libversion() function returns a pointer to the
-** to the sqlite3_version[] string constant. The sqlite3_libversion()
-** function is provided for use in DLLs since DLL users usually do not have
-** direct access to string constants within the DLL. ^The
-** sqlite3_libversion_number() function returns an integer equal to
-** [SQLITE_VERSION_NUMBER]. ^(The sqlite3_sourceid() function returns
-** a pointer to a string constant whose value is the same as the
-** [SQLITE_SOURCE_ID] C preprocessor macro. Except if SQLite is built
-** using an edited copy of [the amalgamation], then the last four characters
-** of the hash might be different from [SQLITE_SOURCE_ID].)^
-**
-** See also: [sqlite_version()] and [sqlite_source_id()].
-*/
-SQLITE_API const char sqlite3_version[] = SQLITE_VERSION;
-SQLITE_API const char *sqlite3_libversion(void);
-SQLITE_API const char *sqlite3_sourceid(void);
-SQLITE_API int sqlite3_libversion_number(void);
-
-/*
-** CAPI3REF: Run-Time Library Compilation Options Diagnostics
-**
-** ^The sqlite3_compileoption_used() function returns 0 or 1
-** indicating whether the specified option was defined at
-** compile time. ^The SQLITE_ prefix may be omitted from the
-** option name passed to sqlite3_compileoption_used().
-**
-** ^The sqlite3_compileoption_get() function allows iterating
-** over the list of options that were defined at compile time by
-** returning the N-th compile time option string. ^If N is out of range,
-** sqlite3_compileoption_get() returns a NULL pointer. ^The SQLITE_
-** prefix is omitted from any strings returned by
-** sqlite3_compileoption_get().
-**
-** ^Support for the diagnostic functions sqlite3_compileoption_used()
-** and sqlite3_compileoption_get() may be omitted by specifying the
-** [SQLITE_OMIT_COMPILEOPTION_DIAGS] option at compile time.
-**
-** See also: SQL functions [sqlite_compileoption_used()] and
-** [sqlite_compileoption_get()] and the [compile_options pragma].
-*/
-#ifndef SQLITE_OMIT_COMPILEOPTION_DIAGS
-SQLITE_API int sqlite3_compileoption_used(const char *zOptName);
-SQLITE_API const char *sqlite3_compileoption_get(int N);
-#endif
-
-/*
-** CAPI3REF: Test To See If The Library Is Threadsafe
-**
-** ^The sqlite3_threadsafe() function returns zero if and only if
-** SQLite was compiled with mutexing code omitted due to the
-** [SQLITE_THREADSAFE] compile-time option being set to 0.
-**
-** SQLite can be compiled with or without mutexes. When
-** the [SQLITE_THREADSAFE] C preprocessor macro is 1 or 2, mutexes
-** are enabled and SQLite is threadsafe. When the
-** [SQLITE_THREADSAFE] macro is 0,
-** the mutexes are omitted. Without the mutexes, it is not safe
-** to use SQLite concurrently from more than one thread.
-**
-** Enabling mutexes incurs a measurable performance penalty.
-** So if speed is of utmost importance, it makes sense to disable
-** the mutexes. But for maximum safety, mutexes should be enabled.
-** ^The default behavior is for mutexes to be enabled.
-**
-** This interface can be used by an application to make sure that the
-** version of SQLite that it is linking against was compiled with
-** the desired setting of the [SQLITE_THREADSAFE] macro.
-**
-** This interface only reports on the compile-time mutex setting
-** of the [SQLITE_THREADSAFE] flag. If SQLite is compiled with
-** SQLITE_THREADSAFE=1 or =2 then mutexes are enabled by default but
-** can be fully or partially disabled using a call to [sqlite3_config()]
-** with the verbs [SQLITE_CONFIG_SINGLETHREAD], [SQLITE_CONFIG_MULTITHREAD],
-** or [SQLITE_CONFIG_SERIALIZED]. ^(The return value of the
-** sqlite3_threadsafe() function shows only the compile-time setting of
-** thread safety, not any run-time changes to that setting made by
-** sqlite3_config(). In other words, the return value from sqlite3_threadsafe()
-** is unchanged by calls to sqlite3_config().)^
-**
-** See the [threading mode] documentation for additional information.
-*/
-SQLITE_API int sqlite3_threadsafe(void);
-
-/*
-** CAPI3REF: Database Connection Handle
-** KEYWORDS: {database connection} {database connections}
-**
-** Each open SQLite database is represented by a pointer to an instance of
-** the opaque structure named "sqlite3". It is useful to think of an sqlite3
-** pointer as an object. The [sqlite3_open()], [sqlite3_open16()], and
-** [sqlite3_open_v2()] interfaces are its constructors, and [sqlite3_close()]
-** and [sqlite3_close_v2()] are its destructors. There are many other
-** interfaces (such as
-** [sqlite3_prepare_v2()], [sqlite3_create_function()], and
-** [sqlite3_busy_timeout()] to name but three) that are methods on an
-** sqlite3 object.
-*/
-typedef struct sqlite3 sqlite3;
-
-/*
-** CAPI3REF: 64-Bit Integer Types
-** KEYWORDS: sqlite_int64 sqlite_uint64
-**
-** Because there is no cross-platform way to specify 64-bit integer types
-** SQLite includes typedefs for 64-bit signed and unsigned integers.
-**
-** The sqlite3_int64 and sqlite3_uint64 are the preferred type definitions.
-** The sqlite_int64 and sqlite_uint64 types are supported for backwards
-** compatibility only.
-**
-** ^The sqlite3_int64 and sqlite_int64 types can store integer values
-** between -9223372036854775808 and +9223372036854775807 inclusive. ^The
-** sqlite3_uint64 and sqlite_uint64 types can store integer values
-** between 0 and +18446744073709551615 inclusive.
-*/
-#ifdef SQLITE_INT64_TYPE
- typedef SQLITE_INT64_TYPE sqlite_int64;
-# ifdef SQLITE_UINT64_TYPE
- typedef SQLITE_UINT64_TYPE sqlite_uint64;
-# else
- typedef unsigned SQLITE_INT64_TYPE sqlite_uint64;
-# endif
-#elif defined(_MSC_VER) || defined(__BORLANDC__)
- typedef __int64 sqlite_int64;
- typedef unsigned __int64 sqlite_uint64;
-#else
- typedef long long int sqlite_int64;
- typedef unsigned long long int sqlite_uint64;
-#endif
-typedef sqlite_int64 sqlite3_int64;
-typedef sqlite_uint64 sqlite3_uint64;
-
-/*
-** If compiling for a processor that lacks floating point support,
-** substitute integer for floating-point.
-*/
-#ifdef SQLITE_OMIT_FLOATING_POINT
-# define double sqlite3_int64
-#endif
-
-/*
-** CAPI3REF: Closing A Database Connection
-** DESTRUCTOR: sqlite3
-**
-** ^The sqlite3_close() and sqlite3_close_v2() routines are destructors
-** for the [sqlite3] object.
-** ^Calls to sqlite3_close() and sqlite3_close_v2() return [SQLITE_OK] if
-** the [sqlite3] object is successfully destroyed and all associated
-** resources are deallocated.
-**
-** ^If the database connection is associated with unfinalized prepared
-** statements or unfinished sqlite3_backup objects then sqlite3_close()
-** will leave the database connection open and return [SQLITE_BUSY].
-** ^If sqlite3_close_v2() is called with unfinalized prepared statements
-** and/or unfinished sqlite3_backups, then the database connection becomes
-** an unusable "zombie" which will automatically be deallocated when the
-** last prepared statement is finalized or the last sqlite3_backup is
-** finished. The sqlite3_close_v2() interface is intended for use with
-** host languages that are garbage collected, and where the order in which
-** destructors are called is arbitrary.
-**
-** Applications should [sqlite3_finalize | finalize] all [prepared statements],
-** [sqlite3_blob_close | close] all [BLOB handles], and
-** [sqlite3_backup_finish | finish] all [sqlite3_backup] objects associated
-** with the [sqlite3] object prior to attempting to close the object. ^If
-** sqlite3_close_v2() is called on a [database connection] that still has
-** outstanding [prepared statements], [BLOB handles], and/or
-** [sqlite3_backup] objects then it returns [SQLITE_OK] and the deallocation
-** of resources is deferred until all [prepared statements], [BLOB handles],
-** and [sqlite3_backup] objects are also destroyed.
-**
-** ^If an [sqlite3] object is destroyed while a transaction is open,
-** the transaction is automatically rolled back.
-**
-** The C parameter to [sqlite3_close(C)] and [sqlite3_close_v2(C)]
-** must be either a NULL
-** pointer or an [sqlite3] object pointer obtained
-** from [sqlite3_open()], [sqlite3_open16()], or
-** [sqlite3_open_v2()], and not previously closed.
-** ^Calling sqlite3_close() or sqlite3_close_v2() with a NULL pointer
-** argument is a harmless no-op.
-*/
-SQLITE_API int sqlite3_close(sqlite3*);
-SQLITE_API int sqlite3_close_v2(sqlite3*);
-
-/*
-** The type for a callback function.
-** This is legacy and deprecated. It is included for historical
-** compatibility and is not documented.
-*/
-typedef int (*sqlite3_callback)(void*,int,char**, char**);
-
-/*
-** CAPI3REF: One-Step Query Execution Interface
-** METHOD: sqlite3
-**
-** The sqlite3_exec() interface is a convenience wrapper around
-** [sqlite3_prepare_v2()], [sqlite3_step()], and [sqlite3_finalize()],
-** that allows an application to run multiple statements of SQL
-** without having to use a lot of C code.
-**
-** ^The sqlite3_exec() interface runs zero or more UTF-8 encoded,
-** semicolon-separate SQL statements passed into its 2nd argument,
-** in the context of the [database connection] passed in as its 1st
-** argument. ^If the callback function of the 3rd argument to
-** sqlite3_exec() is not NULL, then it is invoked for each result row
-** coming out of the evaluated SQL statements. ^The 4th argument to
-** sqlite3_exec() is relayed through to the 1st argument of each
-** callback invocation. ^If the callback pointer to sqlite3_exec()
-** is NULL, then no callback is ever invoked and result rows are
-** ignored.
-**
-** ^If an error occurs while evaluating the SQL statements passed into
-** sqlite3_exec(), then execution of the current statement stops and
-** subsequent statements are skipped. ^If the 5th parameter to sqlite3_exec()
-** is not NULL then any error message is written into memory obtained
-** from [sqlite3_malloc()] and passed back through the 5th parameter.
-** To avoid memory leaks, the application should invoke [sqlite3_free()]
-** on error message strings returned through the 5th parameter of
-** sqlite3_exec() after the error message string is no longer needed.
-** ^If the 5th parameter to sqlite3_exec() is not NULL and no errors
-** occur, then sqlite3_exec() sets the pointer in its 5th parameter to
-** NULL before returning.
-**
-** ^If an sqlite3_exec() callback returns non-zero, the sqlite3_exec()
-** routine returns SQLITE_ABORT without invoking the callback again and
-** without running any subsequent SQL statements.
-**
-** ^The 2nd argument to the sqlite3_exec() callback function is the
-** number of columns in the result. ^The 3rd argument to the sqlite3_exec()
-** callback is an array of pointers to strings obtained as if from
-** [sqlite3_column_text()], one for each column. ^If an element of a
-** result row is NULL then the corresponding string pointer for the
-** sqlite3_exec() callback is a NULL pointer. ^The 4th argument to the
-** sqlite3_exec() callback is an array of pointers to strings where each
-** entry represents the name of corresponding result column as obtained
-** from [sqlite3_column_name()].
-**
-** ^If the 2nd parameter to sqlite3_exec() is a NULL pointer, a pointer
-** to an empty string, or a pointer that contains only whitespace and/or
-** SQL comments, then no SQL statements are evaluated and the database
-** is not changed.
-**
-** Restrictions:
-**
-**
-**
The application must ensure that the 1st parameter to sqlite3_exec()
-** is a valid and open [database connection].
-**
The application must not close the [database connection] specified by
-** the 1st parameter to sqlite3_exec() while sqlite3_exec() is running.
-**
The application must not modify the SQL statement text passed into
-** the 2nd parameter of sqlite3_exec() while sqlite3_exec() is running.
-**
-*/
-SQLITE_API int sqlite3_exec(
- sqlite3*, /* An open database */
- const char *sql, /* SQL to be evaluated */
- int (*callback)(void*,int,char**,char**), /* Callback function */
- void *, /* 1st argument to callback */
- char **errmsg /* Error msg written here */
-);
-
-/*
-** CAPI3REF: Result Codes
-** KEYWORDS: {result code definitions}
-**
-** Many SQLite functions return an integer result code from the set shown
-** here in order to indicate success or failure.
-**
-** New error codes may be added in future versions of SQLite.
-**
-** See also: [extended result code definitions]
-*/
-#define SQLITE_OK 0 /* Successful result */
-/* beginning-of-error-codes */
-#define SQLITE_ERROR 1 /* Generic error */
-#define SQLITE_INTERNAL 2 /* Internal logic error in SQLite */
-#define SQLITE_PERM 3 /* Access permission denied */
-#define SQLITE_ABORT 4 /* Callback routine requested an abort */
-#define SQLITE_BUSY 5 /* The database file is locked */
-#define SQLITE_LOCKED 6 /* A table in the database is locked */
-#define SQLITE_NOMEM 7 /* A malloc() failed */
-#define SQLITE_READONLY 8 /* Attempt to write a readonly database */
-#define SQLITE_INTERRUPT 9 /* Operation terminated by sqlite3_interrupt()*/
-#define SQLITE_IOERR 10 /* Some kind of disk I/O error occurred */
-#define SQLITE_CORRUPT 11 /* The database disk image is malformed */
-#define SQLITE_NOTFOUND 12 /* Unknown opcode in sqlite3_file_control() */
-#define SQLITE_FULL 13 /* Insertion failed because database is full */
-#define SQLITE_CANTOPEN 14 /* Unable to open the database file */
-#define SQLITE_PROTOCOL 15 /* Database lock protocol error */
-#define SQLITE_EMPTY 16 /* Internal use only */
-#define SQLITE_SCHEMA 17 /* The database schema changed */
-#define SQLITE_TOOBIG 18 /* String or BLOB exceeds size limit */
-#define SQLITE_CONSTRAINT 19 /* Abort due to constraint violation */
-#define SQLITE_MISMATCH 20 /* Data type mismatch */
-#define SQLITE_MISUSE 21 /* Library used incorrectly */
-#define SQLITE_NOLFS 22 /* Uses OS features not supported on host */
-#define SQLITE_AUTH 23 /* Authorization denied */
-#define SQLITE_FORMAT 24 /* Not used */
-#define SQLITE_RANGE 25 /* 2nd parameter to sqlite3_bind out of range */
-#define SQLITE_NOTADB 26 /* File opened that is not a database file */
-#define SQLITE_NOTICE 27 /* Notifications from sqlite3_log() */
-#define SQLITE_WARNING 28 /* Warnings from sqlite3_log() */
-#define SQLITE_ROW 100 /* sqlite3_step() has another row ready */
-#define SQLITE_DONE 101 /* sqlite3_step() has finished executing */
-/* end-of-error-codes */
-
-/*
-** CAPI3REF: Extended Result Codes
-** KEYWORDS: {extended result code definitions}
-**
-** In its default configuration, SQLite API routines return one of 30 integer
-** [result codes]. However, experience has shown that many of
-** these result codes are too coarse-grained. They do not provide as
-** much information about problems as programmers might like. In an effort to
-** address this, newer versions of SQLite (version 3.3.8 [dateof:3.3.8]
-** and later) include
-** support for additional result codes that provide more detailed information
-** about errors. These [extended result codes] are enabled or disabled
-** on a per database connection basis using the
-** [sqlite3_extended_result_codes()] API. Or, the extended code for
-** the most recent error can be obtained using
-** [sqlite3_extended_errcode()].
-*/
-#define SQLITE_ERROR_MISSING_COLLSEQ (SQLITE_ERROR | (1<<8))
-#define SQLITE_ERROR_RETRY (SQLITE_ERROR | (2<<8))
-#define SQLITE_ERROR_SNAPSHOT (SQLITE_ERROR | (3<<8))
-#define SQLITE_IOERR_READ (SQLITE_IOERR | (1<<8))
-#define SQLITE_IOERR_SHORT_READ (SQLITE_IOERR | (2<<8))
-#define SQLITE_IOERR_WRITE (SQLITE_IOERR | (3<<8))
-#define SQLITE_IOERR_FSYNC (SQLITE_IOERR | (4<<8))
-#define SQLITE_IOERR_DIR_FSYNC (SQLITE_IOERR | (5<<8))
-#define SQLITE_IOERR_TRUNCATE (SQLITE_IOERR | (6<<8))
-#define SQLITE_IOERR_FSTAT (SQLITE_IOERR | (7<<8))
-#define SQLITE_IOERR_UNLOCK (SQLITE_IOERR | (8<<8))
-#define SQLITE_IOERR_RDLOCK (SQLITE_IOERR | (9<<8))
-#define SQLITE_IOERR_DELETE (SQLITE_IOERR | (10<<8))
-#define SQLITE_IOERR_BLOCKED (SQLITE_IOERR | (11<<8))
-#define SQLITE_IOERR_NOMEM (SQLITE_IOERR | (12<<8))
-#define SQLITE_IOERR_ACCESS (SQLITE_IOERR | (13<<8))
-#define SQLITE_IOERR_CHECKRESERVEDLOCK (SQLITE_IOERR | (14<<8))
-#define SQLITE_IOERR_LOCK (SQLITE_IOERR | (15<<8))
-#define SQLITE_IOERR_CLOSE (SQLITE_IOERR | (16<<8))
-#define SQLITE_IOERR_DIR_CLOSE (SQLITE_IOERR | (17<<8))
-#define SQLITE_IOERR_SHMOPEN (SQLITE_IOERR | (18<<8))
-#define SQLITE_IOERR_SHMSIZE (SQLITE_IOERR | (19<<8))
-#define SQLITE_IOERR_SHMLOCK (SQLITE_IOERR | (20<<8))
-#define SQLITE_IOERR_SHMMAP (SQLITE_IOERR | (21<<8))
-#define SQLITE_IOERR_SEEK (SQLITE_IOERR | (22<<8))
-#define SQLITE_IOERR_DELETE_NOENT (SQLITE_IOERR | (23<<8))
-#define SQLITE_IOERR_MMAP (SQLITE_IOERR | (24<<8))
-#define SQLITE_IOERR_GETTEMPPATH (SQLITE_IOERR | (25<<8))
-#define SQLITE_IOERR_CONVPATH (SQLITE_IOERR | (26<<8))
-#define SQLITE_IOERR_VNODE (SQLITE_IOERR | (27<<8))
-#define SQLITE_IOERR_AUTH (SQLITE_IOERR | (28<<8))
-#define SQLITE_IOERR_BEGIN_ATOMIC (SQLITE_IOERR | (29<<8))
-#define SQLITE_IOERR_COMMIT_ATOMIC (SQLITE_IOERR | (30<<8))
-#define SQLITE_IOERR_ROLLBACK_ATOMIC (SQLITE_IOERR | (31<<8))
-#define SQLITE_LOCKED_SHAREDCACHE (SQLITE_LOCKED | (1<<8))
-#define SQLITE_LOCKED_VTAB (SQLITE_LOCKED | (2<<8))
-#define SQLITE_BUSY_RECOVERY (SQLITE_BUSY | (1<<8))
-#define SQLITE_BUSY_SNAPSHOT (SQLITE_BUSY | (2<<8))
-#define SQLITE_CANTOPEN_NOTEMPDIR (SQLITE_CANTOPEN | (1<<8))
-#define SQLITE_CANTOPEN_ISDIR (SQLITE_CANTOPEN | (2<<8))
-#define SQLITE_CANTOPEN_FULLPATH (SQLITE_CANTOPEN | (3<<8))
-#define SQLITE_CANTOPEN_CONVPATH (SQLITE_CANTOPEN | (4<<8))
-#define SQLITE_CANTOPEN_DIRTYWAL (SQLITE_CANTOPEN | (5<<8)) /* Not Used */
-#define SQLITE_CORRUPT_VTAB (SQLITE_CORRUPT | (1<<8))
-#define SQLITE_CORRUPT_SEQUENCE (SQLITE_CORRUPT | (2<<8))
-#define SQLITE_READONLY_RECOVERY (SQLITE_READONLY | (1<<8))
-#define SQLITE_READONLY_CANTLOCK (SQLITE_READONLY | (2<<8))
-#define SQLITE_READONLY_ROLLBACK (SQLITE_READONLY | (3<<8))
-#define SQLITE_READONLY_DBMOVED (SQLITE_READONLY | (4<<8))
-#define SQLITE_READONLY_CANTINIT (SQLITE_READONLY | (5<<8))
-#define SQLITE_READONLY_DIRECTORY (SQLITE_READONLY | (6<<8))
-#define SQLITE_ABORT_ROLLBACK (SQLITE_ABORT | (2<<8))
-#define SQLITE_CONSTRAINT_CHECK (SQLITE_CONSTRAINT | (1<<8))
-#define SQLITE_CONSTRAINT_COMMITHOOK (SQLITE_CONSTRAINT | (2<<8))
-#define SQLITE_CONSTRAINT_FOREIGNKEY (SQLITE_CONSTRAINT | (3<<8))
-#define SQLITE_CONSTRAINT_FUNCTION (SQLITE_CONSTRAINT | (4<<8))
-#define SQLITE_CONSTRAINT_NOTNULL (SQLITE_CONSTRAINT | (5<<8))
-#define SQLITE_CONSTRAINT_PRIMARYKEY (SQLITE_CONSTRAINT | (6<<8))
-#define SQLITE_CONSTRAINT_TRIGGER (SQLITE_CONSTRAINT | (7<<8))
-#define SQLITE_CONSTRAINT_UNIQUE (SQLITE_CONSTRAINT | (8<<8))
-#define SQLITE_CONSTRAINT_VTAB (SQLITE_CONSTRAINT | (9<<8))
-#define SQLITE_CONSTRAINT_ROWID (SQLITE_CONSTRAINT |(10<<8))
-#define SQLITE_NOTICE_RECOVER_WAL (SQLITE_NOTICE | (1<<8))
-#define SQLITE_NOTICE_RECOVER_ROLLBACK (SQLITE_NOTICE | (2<<8))
-#define SQLITE_WARNING_AUTOINDEX (SQLITE_WARNING | (1<<8))
-#define SQLITE_AUTH_USER (SQLITE_AUTH | (1<<8))
-#define SQLITE_OK_LOAD_PERMANENTLY (SQLITE_OK | (1<<8))
-
-/*
-** CAPI3REF: Flags For File Open Operations
-**
-** These bit values are intended for use in the
-** 3rd parameter to the [sqlite3_open_v2()] interface and
-** in the 4th parameter to the [sqlite3_vfs.xOpen] method.
-*/
-#define SQLITE_OPEN_READONLY 0x00000001 /* Ok for sqlite3_open_v2() */
-#define SQLITE_OPEN_READWRITE 0x00000002 /* Ok for sqlite3_open_v2() */
-#define SQLITE_OPEN_CREATE 0x00000004 /* Ok for sqlite3_open_v2() */
-#define SQLITE_OPEN_DELETEONCLOSE 0x00000008 /* VFS only */
-#define SQLITE_OPEN_EXCLUSIVE 0x00000010 /* VFS only */
-#define SQLITE_OPEN_AUTOPROXY 0x00000020 /* VFS only */
-#define SQLITE_OPEN_URI 0x00000040 /* Ok for sqlite3_open_v2() */
-#define SQLITE_OPEN_MEMORY 0x00000080 /* Ok for sqlite3_open_v2() */
-#define SQLITE_OPEN_MAIN_DB 0x00000100 /* VFS only */
-#define SQLITE_OPEN_TEMP_DB 0x00000200 /* VFS only */
-#define SQLITE_OPEN_TRANSIENT_DB 0x00000400 /* VFS only */
-#define SQLITE_OPEN_MAIN_JOURNAL 0x00000800 /* VFS only */
-#define SQLITE_OPEN_TEMP_JOURNAL 0x00001000 /* VFS only */
-#define SQLITE_OPEN_SUBJOURNAL 0x00002000 /* VFS only */
-#define SQLITE_OPEN_MASTER_JOURNAL 0x00004000 /* VFS only */
-#define SQLITE_OPEN_NOMUTEX 0x00008000 /* Ok for sqlite3_open_v2() */
-#define SQLITE_OPEN_FULLMUTEX 0x00010000 /* Ok for sqlite3_open_v2() */
-#define SQLITE_OPEN_SHAREDCACHE 0x00020000 /* Ok for sqlite3_open_v2() */
-#define SQLITE_OPEN_PRIVATECACHE 0x00040000 /* Ok for sqlite3_open_v2() */
-#define SQLITE_OPEN_WAL 0x00080000 /* VFS only */
-
-/* Reserved: 0x00F00000 */
-
-/*
-** CAPI3REF: Device Characteristics
-**
-** The xDeviceCharacteristics method of the [sqlite3_io_methods]
-** object returns an integer which is a vector of these
-** bit values expressing I/O characteristics of the mass storage
-** device that holds the file that the [sqlite3_io_methods]
-** refers to.
-**
-** The SQLITE_IOCAP_ATOMIC property means that all writes of
-** any size are atomic. The SQLITE_IOCAP_ATOMICnnn values
-** mean that writes of blocks that are nnn bytes in size and
-** are aligned to an address which is an integer multiple of
-** nnn are atomic. The SQLITE_IOCAP_SAFE_APPEND value means
-** that when data is appended to a file, the data is appended
-** first then the size of the file is extended, never the other
-** way around. The SQLITE_IOCAP_SEQUENTIAL property means that
-** information is written to disk in the same order as calls
-** to xWrite(). The SQLITE_IOCAP_POWERSAFE_OVERWRITE property means that
-** after reboot following a crash or power loss, the only bytes in a
-** file that were written at the application level might have changed
-** and that adjacent bytes, even bytes within the same sector are
-** guaranteed to be unchanged. The SQLITE_IOCAP_UNDELETABLE_WHEN_OPEN
-** flag indicates that a file cannot be deleted when open. The
-** SQLITE_IOCAP_IMMUTABLE flag indicates that the file is on
-** read-only media and cannot be changed even by processes with
-** elevated privileges.
-**
-** The SQLITE_IOCAP_BATCH_ATOMIC property means that the underlying
-** filesystem supports doing multiple write operations atomically when those
-** write operations are bracketed by [SQLITE_FCNTL_BEGIN_ATOMIC_WRITE] and
-** [SQLITE_FCNTL_COMMIT_ATOMIC_WRITE].
-*/
-#define SQLITE_IOCAP_ATOMIC 0x00000001
-#define SQLITE_IOCAP_ATOMIC512 0x00000002
-#define SQLITE_IOCAP_ATOMIC1K 0x00000004
-#define SQLITE_IOCAP_ATOMIC2K 0x00000008
-#define SQLITE_IOCAP_ATOMIC4K 0x00000010
-#define SQLITE_IOCAP_ATOMIC8K 0x00000020
-#define SQLITE_IOCAP_ATOMIC16K 0x00000040
-#define SQLITE_IOCAP_ATOMIC32K 0x00000080
-#define SQLITE_IOCAP_ATOMIC64K 0x00000100
-#define SQLITE_IOCAP_SAFE_APPEND 0x00000200
-#define SQLITE_IOCAP_SEQUENTIAL 0x00000400
-#define SQLITE_IOCAP_UNDELETABLE_WHEN_OPEN 0x00000800
-#define SQLITE_IOCAP_POWERSAFE_OVERWRITE 0x00001000
-#define SQLITE_IOCAP_IMMUTABLE 0x00002000
-#define SQLITE_IOCAP_BATCH_ATOMIC 0x00004000
-
-/*
-** CAPI3REF: File Locking Levels
-**
-** SQLite uses one of these integer values as the second
-** argument to calls it makes to the xLock() and xUnlock() methods
-** of an [sqlite3_io_methods] object.
-*/
-#define SQLITE_LOCK_NONE 0
-#define SQLITE_LOCK_SHARED 1
-#define SQLITE_LOCK_RESERVED 2
-#define SQLITE_LOCK_PENDING 3
-#define SQLITE_LOCK_EXCLUSIVE 4
-
-/*
-** CAPI3REF: Synchronization Type Flags
-**
-** When SQLite invokes the xSync() method of an
-** [sqlite3_io_methods] object it uses a combination of
-** these integer values as the second argument.
-**
-** When the SQLITE_SYNC_DATAONLY flag is used, it means that the
-** sync operation only needs to flush data to mass storage. Inode
-** information need not be flushed. If the lower four bits of the flag
-** equal SQLITE_SYNC_NORMAL, that means to use normal fsync() semantics.
-** If the lower four bits equal SQLITE_SYNC_FULL, that means
-** to use Mac OS X style fullsync instead of fsync().
-**
-** Do not confuse the SQLITE_SYNC_NORMAL and SQLITE_SYNC_FULL flags
-** with the [PRAGMA synchronous]=NORMAL and [PRAGMA synchronous]=FULL
-** settings. The [synchronous pragma] determines when calls to the
-** xSync VFS method occur and applies uniformly across all platforms.
-** The SQLITE_SYNC_NORMAL and SQLITE_SYNC_FULL flags determine how
-** energetic or rigorous or forceful the sync operations are and
-** only make a difference on Mac OSX for the default SQLite code.
-** (Third-party VFS implementations might also make the distinction
-** between SQLITE_SYNC_NORMAL and SQLITE_SYNC_FULL, but among the
-** operating systems natively supported by SQLite, only Mac OSX
-** cares about the difference.)
-*/
-#define SQLITE_SYNC_NORMAL 0x00002
-#define SQLITE_SYNC_FULL 0x00003
-#define SQLITE_SYNC_DATAONLY 0x00010
-
-/*
-** CAPI3REF: OS Interface Open File Handle
-**
-** An [sqlite3_file] object represents an open file in the
-** [sqlite3_vfs | OS interface layer]. Individual OS interface
-** implementations will
-** want to subclass this object by appending additional fields
-** for their own use. The pMethods entry is a pointer to an
-** [sqlite3_io_methods] object that defines methods for performing
-** I/O operations on the open file.
-*/
-typedef struct sqlite3_file sqlite3_file;
-struct sqlite3_file {
- const struct sqlite3_io_methods *pMethods; /* Methods for an open file */
-};
-
-/*
-** CAPI3REF: OS Interface File Virtual Methods Object
-**
-** Every file opened by the [sqlite3_vfs.xOpen] method populates an
-** [sqlite3_file] object (or, more commonly, a subclass of the
-** [sqlite3_file] object) with a pointer to an instance of this object.
-** This object defines the methods used to perform various operations
-** against the open file represented by the [sqlite3_file] object.
-**
-** If the [sqlite3_vfs.xOpen] method sets the sqlite3_file.pMethods element
-** to a non-NULL pointer, then the sqlite3_io_methods.xClose method
-** may be invoked even if the [sqlite3_vfs.xOpen] reported that it failed. The
-** only way to prevent a call to xClose following a failed [sqlite3_vfs.xOpen]
-** is for the [sqlite3_vfs.xOpen] to set the sqlite3_file.pMethods element
-** to NULL.
-**
-** The flags argument to xSync may be one of [SQLITE_SYNC_NORMAL] or
-** [SQLITE_SYNC_FULL]. The first choice is the normal fsync().
-** The second choice is a Mac OS X style fullsync. The [SQLITE_SYNC_DATAONLY]
-** flag may be ORed in to indicate that only the data of the file
-** and not its inode needs to be synced.
-**
-** The integer values to xLock() and xUnlock() are one of
-**
-**
[SQLITE_LOCK_NONE],
-**
[SQLITE_LOCK_SHARED],
-**
[SQLITE_LOCK_RESERVED],
-**
[SQLITE_LOCK_PENDING], or
-**
[SQLITE_LOCK_EXCLUSIVE].
-**
-** xLock() increases the lock. xUnlock() decreases the lock.
-** The xCheckReservedLock() method checks whether any database connection,
-** either in this process or in some other process, is holding a RESERVED,
-** PENDING, or EXCLUSIVE lock on the file. It returns true
-** if such a lock exists and false otherwise.
-**
-** The xFileControl() method is a generic interface that allows custom
-** VFS implementations to directly control an open file using the
-** [sqlite3_file_control()] interface. The second "op" argument is an
-** integer opcode. The third argument is a generic pointer intended to
-** point to a structure that may contain arguments or space in which to
-** write return values. Potential uses for xFileControl() might be
-** functions to enable blocking locks with timeouts, to change the
-** locking strategy (for example to use dot-file locks), to inquire
-** about the status of a lock, or to break stale locks. The SQLite
-** core reserves all opcodes less than 100 for its own use.
-** A [file control opcodes | list of opcodes] less than 100 is available.
-** Applications that define a custom xFileControl method should use opcodes
-** greater than 100 to avoid conflicts. VFS implementations should
-** return [SQLITE_NOTFOUND] for file control opcodes that they do not
-** recognize.
-**
-** The xSectorSize() method returns the sector size of the
-** device that underlies the file. The sector size is the
-** minimum write that can be performed without disturbing
-** other bytes in the file. The xDeviceCharacteristics()
-** method returns a bit vector describing behaviors of the
-** underlying device:
-**
-**
-**
[SQLITE_IOCAP_ATOMIC]
-**
[SQLITE_IOCAP_ATOMIC512]
-**
[SQLITE_IOCAP_ATOMIC1K]
-**
[SQLITE_IOCAP_ATOMIC2K]
-**
[SQLITE_IOCAP_ATOMIC4K]
-**
[SQLITE_IOCAP_ATOMIC8K]
-**
[SQLITE_IOCAP_ATOMIC16K]
-**
[SQLITE_IOCAP_ATOMIC32K]
-**
[SQLITE_IOCAP_ATOMIC64K]
-**
[SQLITE_IOCAP_SAFE_APPEND]
-**
[SQLITE_IOCAP_SEQUENTIAL]
-**
[SQLITE_IOCAP_UNDELETABLE_WHEN_OPEN]
-**
[SQLITE_IOCAP_POWERSAFE_OVERWRITE]
-**
[SQLITE_IOCAP_IMMUTABLE]
-**
[SQLITE_IOCAP_BATCH_ATOMIC]
-**
-**
-** The SQLITE_IOCAP_ATOMIC property means that all writes of
-** any size are atomic. The SQLITE_IOCAP_ATOMICnnn values
-** mean that writes of blocks that are nnn bytes in size and
-** are aligned to an address which is an integer multiple of
-** nnn are atomic. The SQLITE_IOCAP_SAFE_APPEND value means
-** that when data is appended to a file, the data is appended
-** first then the size of the file is extended, never the other
-** way around. The SQLITE_IOCAP_SEQUENTIAL property means that
-** information is written to disk in the same order as calls
-** to xWrite().
-**
-** If xRead() returns SQLITE_IOERR_SHORT_READ it must also fill
-** in the unread portions of the buffer with zeros. A VFS that
-** fails to zero-fill short reads might seem to work. However,
-** failure to zero-fill short reads will eventually lead to
-** database corruption.
-*/
-typedef struct sqlite3_io_methods sqlite3_io_methods;
-struct sqlite3_io_methods {
- int iVersion;
- int (*xClose)(sqlite3_file*);
- int (*xRead)(sqlite3_file*, void*, int iAmt, sqlite3_int64 iOfst);
- int (*xWrite)(sqlite3_file*, const void*, int iAmt, sqlite3_int64 iOfst);
- int (*xTruncate)(sqlite3_file*, sqlite3_int64 size);
- int (*xSync)(sqlite3_file*, int flags);
- int (*xFileSize)(sqlite3_file*, sqlite3_int64 *pSize);
- int (*xLock)(sqlite3_file*, int);
- int (*xUnlock)(sqlite3_file*, int);
- int (*xCheckReservedLock)(sqlite3_file*, int *pResOut);
- int (*xFileControl)(sqlite3_file*, int op, void *pArg);
- int (*xSectorSize)(sqlite3_file*);
- int (*xDeviceCharacteristics)(sqlite3_file*);
- /* Methods above are valid for version 1 */
- int (*xShmMap)(sqlite3_file*, int iPg, int pgsz, int, void volatile**);
- int (*xShmLock)(sqlite3_file*, int offset, int n, int flags);
- void (*xShmBarrier)(sqlite3_file*);
- int (*xShmUnmap)(sqlite3_file*, int deleteFlag);
- /* Methods above are valid for version 2 */
- int (*xFetch)(sqlite3_file*, sqlite3_int64 iOfst, int iAmt, void **pp);
- int (*xUnfetch)(sqlite3_file*, sqlite3_int64 iOfst, void *p);
- /* Methods above are valid for version 3 */
- /* Additional methods may be added in future releases */
-};
-
-/*
-** CAPI3REF: Standard File Control Opcodes
-** KEYWORDS: {file control opcodes} {file control opcode}
-**
-** These integer constants are opcodes for the xFileControl method
-** of the [sqlite3_io_methods] object and for the [sqlite3_file_control()]
-** interface.
-**
-**
-**
[[SQLITE_FCNTL_LOCKSTATE]]
-** The [SQLITE_FCNTL_LOCKSTATE] opcode is used for debugging. This
-** opcode causes the xFileControl method to write the current state of
-** the lock (one of [SQLITE_LOCK_NONE], [SQLITE_LOCK_SHARED],
-** [SQLITE_LOCK_RESERVED], [SQLITE_LOCK_PENDING], or [SQLITE_LOCK_EXCLUSIVE])
-** into an integer that the pArg argument points to. This capability
-** is used during testing and is only available when the SQLITE_TEST
-** compile-time option is used.
-**
-**
[[SQLITE_FCNTL_SIZE_HINT]]
-** The [SQLITE_FCNTL_SIZE_HINT] opcode is used by SQLite to give the VFS
-** layer a hint of how large the database file will grow to be during the
-** current transaction. This hint is not guaranteed to be accurate but it
-** is often close. The underlying VFS might choose to preallocate database
-** file space based on this hint in order to help writes to the database
-** file run faster.
-**
-**
[[SQLITE_FCNTL_CHUNK_SIZE]]
-** The [SQLITE_FCNTL_CHUNK_SIZE] opcode is used to request that the VFS
-** extends and truncates the database file in chunks of a size specified
-** by the user. The fourth argument to [sqlite3_file_control()] should
-** point to an integer (type int) containing the new chunk-size to use
-** for the nominated database. Allocating database file space in large
-** chunks (say 1MB at a time), may reduce file-system fragmentation and
-** improve performance on some systems.
-**
-**
[[SQLITE_FCNTL_FILE_POINTER]]
-** The [SQLITE_FCNTL_FILE_POINTER] opcode is used to obtain a pointer
-** to the [sqlite3_file] object associated with a particular database
-** connection. See also [SQLITE_FCNTL_JOURNAL_POINTER].
-**
-**
[[SQLITE_FCNTL_JOURNAL_POINTER]]
-** The [SQLITE_FCNTL_JOURNAL_POINTER] opcode is used to obtain a pointer
-** to the [sqlite3_file] object associated with the journal file (either
-** the [rollback journal] or the [write-ahead log]) for a particular database
-** connection. See also [SQLITE_FCNTL_FILE_POINTER].
-**
-**
[[SQLITE_FCNTL_SYNC_OMITTED]]
-** No longer in use.
-**
-**
[[SQLITE_FCNTL_SYNC]]
-** The [SQLITE_FCNTL_SYNC] opcode is generated internally by SQLite and
-** sent to the VFS immediately before the xSync method is invoked on a
-** database file descriptor. Or, if the xSync method is not invoked
-** because the user has configured SQLite with
-** [PRAGMA synchronous | PRAGMA synchronous=OFF] it is invoked in place
-** of the xSync method. In most cases, the pointer argument passed with
-** this file-control is NULL. However, if the database file is being synced
-** as part of a multi-database commit, the argument points to a nul-terminated
-** string containing the transactions master-journal file name. VFSes that
-** do not need this signal should silently ignore this opcode. Applications
-** should not call [sqlite3_file_control()] with this opcode as doing so may
-** disrupt the operation of the specialized VFSes that do require it.
-**
-**
[[SQLITE_FCNTL_COMMIT_PHASETWO]]
-** The [SQLITE_FCNTL_COMMIT_PHASETWO] opcode is generated internally by SQLite
-** and sent to the VFS after a transaction has been committed immediately
-** but before the database is unlocked. VFSes that do not need this signal
-** should silently ignore this opcode. Applications should not call
-** [sqlite3_file_control()] with this opcode as doing so may disrupt the
-** operation of the specialized VFSes that do require it.
-**
-**
[[SQLITE_FCNTL_WIN32_AV_RETRY]]
-** ^The [SQLITE_FCNTL_WIN32_AV_RETRY] opcode is used to configure automatic
-** retry counts and intervals for certain disk I/O operations for the
-** windows [VFS] in order to provide robustness in the presence of
-** anti-virus programs. By default, the windows VFS will retry file read,
-** file write, and file delete operations up to 10 times, with a delay
-** of 25 milliseconds before the first retry and with the delay increasing
-** by an additional 25 milliseconds with each subsequent retry. This
-** opcode allows these two values (10 retries and 25 milliseconds of delay)
-** to be adjusted. The values are changed for all database connections
-** within the same process. The argument is a pointer to an array of two
-** integers where the first integer is the new retry count and the second
-** integer is the delay. If either integer is negative, then the setting
-** is not changed but instead the prior value of that setting is written
-** into the array entry, allowing the current retry settings to be
-** interrogated. The zDbName parameter is ignored.
-**
-**
[[SQLITE_FCNTL_PERSIST_WAL]]
-** ^The [SQLITE_FCNTL_PERSIST_WAL] opcode is used to set or query the
-** persistent [WAL | Write Ahead Log] setting. By default, the auxiliary
-** write ahead log ([WAL file]) and shared memory
-** files used for transaction control
-** are automatically deleted when the latest connection to the database
-** closes. Setting persistent WAL mode causes those files to persist after
-** close. Persisting the files is useful when other processes that do not
-** have write permission on the directory containing the database file want
-** to read the database file, as the WAL and shared memory files must exist
-** in order for the database to be readable. The fourth parameter to
-** [sqlite3_file_control()] for this opcode should be a pointer to an integer.
-** That integer is 0 to disable persistent WAL mode or 1 to enable persistent
-** WAL mode. If the integer is -1, then it is overwritten with the current
-** WAL persistence setting.
-**
-**
[[SQLITE_FCNTL_POWERSAFE_OVERWRITE]]
-** ^The [SQLITE_FCNTL_POWERSAFE_OVERWRITE] opcode is used to set or query the
-** persistent "powersafe-overwrite" or "PSOW" setting. The PSOW setting
-** determines the [SQLITE_IOCAP_POWERSAFE_OVERWRITE] bit of the
-** xDeviceCharacteristics methods. The fourth parameter to
-** [sqlite3_file_control()] for this opcode should be a pointer to an integer.
-** That integer is 0 to disable zero-damage mode or 1 to enable zero-damage
-** mode. If the integer is -1, then it is overwritten with the current
-** zero-damage mode setting.
-**
-**
[[SQLITE_FCNTL_OVERWRITE]]
-** ^The [SQLITE_FCNTL_OVERWRITE] opcode is invoked by SQLite after opening
-** a write transaction to indicate that, unless it is rolled back for some
-** reason, the entire database file will be overwritten by the current
-** transaction. This is used by VACUUM operations.
-**
-**
[[SQLITE_FCNTL_VFSNAME]]
-** ^The [SQLITE_FCNTL_VFSNAME] opcode can be used to obtain the names of
-** all [VFSes] in the VFS stack. The names are of all VFS shims and the
-** final bottom-level VFS are written into memory obtained from
-** [sqlite3_malloc()] and the result is stored in the char* variable
-** that the fourth parameter of [sqlite3_file_control()] points to.
-** The caller is responsible for freeing the memory when done. As with
-** all file-control actions, there is no guarantee that this will actually
-** do anything. Callers should initialize the char* variable to a NULL
-** pointer in case this file-control is not implemented. This file-control
-** is intended for diagnostic use only.
-**
-**
[[SQLITE_FCNTL_VFS_POINTER]]
-** ^The [SQLITE_FCNTL_VFS_POINTER] opcode finds a pointer to the top-level
-** [VFSes] currently in use. ^(The argument X in
-** sqlite3_file_control(db,SQLITE_FCNTL_VFS_POINTER,X) must be
-** of type "[sqlite3_vfs] **". This opcodes will set *X
-** to a pointer to the top-level VFS.)^
-** ^When there are multiple VFS shims in the stack, this opcode finds the
-** upper-most shim only.
-**
-**
[[SQLITE_FCNTL_PRAGMA]]
-** ^Whenever a [PRAGMA] statement is parsed, an [SQLITE_FCNTL_PRAGMA]
-** file control is sent to the open [sqlite3_file] object corresponding
-** to the database file to which the pragma statement refers. ^The argument
-** to the [SQLITE_FCNTL_PRAGMA] file control is an array of
-** pointers to strings (char**) in which the second element of the array
-** is the name of the pragma and the third element is the argument to the
-** pragma or NULL if the pragma has no argument. ^The handler for an
-** [SQLITE_FCNTL_PRAGMA] file control can optionally make the first element
-** of the char** argument point to a string obtained from [sqlite3_mprintf()]
-** or the equivalent and that string will become the result of the pragma or
-** the error message if the pragma fails. ^If the
-** [SQLITE_FCNTL_PRAGMA] file control returns [SQLITE_NOTFOUND], then normal
-** [PRAGMA] processing continues. ^If the [SQLITE_FCNTL_PRAGMA]
-** file control returns [SQLITE_OK], then the parser assumes that the
-** VFS has handled the PRAGMA itself and the parser generates a no-op
-** prepared statement if result string is NULL, or that returns a copy
-** of the result string if the string is non-NULL.
-** ^If the [SQLITE_FCNTL_PRAGMA] file control returns
-** any result code other than [SQLITE_OK] or [SQLITE_NOTFOUND], that means
-** that the VFS encountered an error while handling the [PRAGMA] and the
-** compilation of the PRAGMA fails with an error. ^The [SQLITE_FCNTL_PRAGMA]
-** file control occurs at the beginning of pragma statement analysis and so
-** it is able to override built-in [PRAGMA] statements.
-**
-**
[[SQLITE_FCNTL_BUSYHANDLER]]
-** ^The [SQLITE_FCNTL_BUSYHANDLER]
-** file-control may be invoked by SQLite on the database file handle
-** shortly after it is opened in order to provide a custom VFS with access
-** to the connections busy-handler callback. The argument is of type (void **)
-** - an array of two (void *) values. The first (void *) actually points
-** to a function of type (int (*)(void *)). In order to invoke the connections
-** busy-handler, this function should be invoked with the second (void *) in
-** the array as the only argument. If it returns non-zero, then the operation
-** should be retried. If it returns zero, the custom VFS should abandon the
-** current operation.
-**
-**
[[SQLITE_FCNTL_TEMPFILENAME]]
-** ^Application can invoke the [SQLITE_FCNTL_TEMPFILENAME] file-control
-** to have SQLite generate a
-** temporary filename using the same algorithm that is followed to generate
-** temporary filenames for TEMP tables and other internal uses. The
-** argument should be a char** which will be filled with the filename
-** written into memory obtained from [sqlite3_malloc()]. The caller should
-** invoke [sqlite3_free()] on the result to avoid a memory leak.
-**
-**
[[SQLITE_FCNTL_MMAP_SIZE]]
-** The [SQLITE_FCNTL_MMAP_SIZE] file control is used to query or set the
-** maximum number of bytes that will be used for memory-mapped I/O.
-** The argument is a pointer to a value of type sqlite3_int64 that
-** is an advisory maximum number of bytes in the file to memory map. The
-** pointer is overwritten with the old value. The limit is not changed if
-** the value originally pointed to is negative, and so the current limit
-** can be queried by passing in a pointer to a negative number. This
-** file-control is used internally to implement [PRAGMA mmap_size].
-**
-**
[[SQLITE_FCNTL_TRACE]]
-** The [SQLITE_FCNTL_TRACE] file control provides advisory information
-** to the VFS about what the higher layers of the SQLite stack are doing.
-** This file control is used by some VFS activity tracing [shims].
-** The argument is a zero-terminated string. Higher layers in the
-** SQLite stack may generate instances of this file control if
-** the [SQLITE_USE_FCNTL_TRACE] compile-time option is enabled.
-**
-**
[[SQLITE_FCNTL_HAS_MOVED]]
-** The [SQLITE_FCNTL_HAS_MOVED] file control interprets its argument as a
-** pointer to an integer and it writes a boolean into that integer depending
-** on whether or not the file has been renamed, moved, or deleted since it
-** was first opened.
-**
-**
[[SQLITE_FCNTL_WIN32_GET_HANDLE]]
-** The [SQLITE_FCNTL_WIN32_GET_HANDLE] opcode can be used to obtain the
-** underlying native file handle associated with a file handle. This file
-** control interprets its argument as a pointer to a native file handle and
-** writes the resulting value there.
-**
-**
[[SQLITE_FCNTL_WIN32_SET_HANDLE]]
-** The [SQLITE_FCNTL_WIN32_SET_HANDLE] opcode is used for debugging. This
-** opcode causes the xFileControl method to swap the file handle with the one
-** pointed to by the pArg argument. This capability is used during testing
-** and only needs to be supported when SQLITE_TEST is defined.
-**
-**
[[SQLITE_FCNTL_WAL_BLOCK]]
-** The [SQLITE_FCNTL_WAL_BLOCK] is a signal to the VFS layer that it might
-** be advantageous to block on the next WAL lock if the lock is not immediately
-** available. The WAL subsystem issues this signal during rare
-** circumstances in order to fix a problem with priority inversion.
-** Applications should not use this file-control.
-**
-**
[[SQLITE_FCNTL_ZIPVFS]]
-** The [SQLITE_FCNTL_ZIPVFS] opcode is implemented by zipvfs only. All other
-** VFS should return SQLITE_NOTFOUND for this opcode.
-**
-**
[[SQLITE_FCNTL_RBU]]
-** The [SQLITE_FCNTL_RBU] opcode is implemented by the special VFS used by
-** the RBU extension only. All other VFS should return SQLITE_NOTFOUND for
-** this opcode.
-**
-**
[[SQLITE_FCNTL_BEGIN_ATOMIC_WRITE]]
-** If the [SQLITE_FCNTL_BEGIN_ATOMIC_WRITE] opcode returns SQLITE_OK, then
-** the file descriptor is placed in "batch write mode", which
-** means all subsequent write operations will be deferred and done
-** atomically at the next [SQLITE_FCNTL_COMMIT_ATOMIC_WRITE]. Systems
-** that do not support batch atomic writes will return SQLITE_NOTFOUND.
-** ^Following a successful SQLITE_FCNTL_BEGIN_ATOMIC_WRITE and prior to
-** the closing [SQLITE_FCNTL_COMMIT_ATOMIC_WRITE] or
-** [SQLITE_FCNTL_ROLLBACK_ATOMIC_WRITE], SQLite will make
-** no VFS interface calls on the same [sqlite3_file] file descriptor
-** except for calls to the xWrite method and the xFileControl method
-** with [SQLITE_FCNTL_SIZE_HINT].
-**
-**
[[SQLITE_FCNTL_COMMIT_ATOMIC_WRITE]]
-** The [SQLITE_FCNTL_COMMIT_ATOMIC_WRITE] opcode causes all write
-** operations since the previous successful call to
-** [SQLITE_FCNTL_BEGIN_ATOMIC_WRITE] to be performed atomically.
-** This file control returns [SQLITE_OK] if and only if the writes were
-** all performed successfully and have been committed to persistent storage.
-** ^Regardless of whether or not it is successful, this file control takes
-** the file descriptor out of batch write mode so that all subsequent
-** write operations are independent.
-** ^SQLite will never invoke SQLITE_FCNTL_COMMIT_ATOMIC_WRITE without
-** a prior successful call to [SQLITE_FCNTL_BEGIN_ATOMIC_WRITE].
-**
-**
[[SQLITE_FCNTL_ROLLBACK_ATOMIC_WRITE]]
-** The [SQLITE_FCNTL_ROLLBACK_ATOMIC_WRITE] opcode causes all write
-** operations since the previous successful call to
-** [SQLITE_FCNTL_BEGIN_ATOMIC_WRITE] to be rolled back.
-** ^This file control takes the file descriptor out of batch write mode
-** so that all subsequent write operations are independent.
-** ^SQLite will never invoke SQLITE_FCNTL_ROLLBACK_ATOMIC_WRITE without
-** a prior successful call to [SQLITE_FCNTL_BEGIN_ATOMIC_WRITE].
-**
-**
[[SQLITE_FCNTL_LOCK_TIMEOUT]]
-** The [SQLITE_FCNTL_LOCK_TIMEOUT] opcode causes attempts to obtain
-** a file lock using the xLock or xShmLock methods of the VFS to wait
-** for up to M milliseconds before failing, where M is the single
-** unsigned integer parameter.
-**
-**
[[SQLITE_FCNTL_DATA_VERSION]]
-** The [SQLITE_FCNTL_DATA_VERSION] opcode is used to detect changes to
-** a database file. The argument is a pointer to a 32-bit unsigned integer.
-** The "data version" for the pager is written into the pointer. The
-** "data version" changes whenever any change occurs to the corresponding
-** database file, either through SQL statements on the same database
-** connection or through transactions committed by separate database
-** connections possibly in other processes. The [sqlite3_total_changes()]
-** interface can be used to find if any database on the connection has changed,
-** but that interface responds to changes on TEMP as well as MAIN and does
-** not provide a mechanism to detect changes to MAIN only. Also, the
-** [sqlite3_total_changes()] interface responds to internal changes only and
-** omits changes made by other database connections. The
-** [PRAGMA data_version] command provide a mechanism to detect changes to
-** a single attached database that occur due to other database connections,
-** but omits changes implemented by the database connection on which it is
-** called. This file control is the only mechanism to detect changes that
-** happen either internally or externally and that are associated with
-** a particular attached database.
-**
-*/
-#define SQLITE_FCNTL_LOCKSTATE 1
-#define SQLITE_FCNTL_GET_LOCKPROXYFILE 2
-#define SQLITE_FCNTL_SET_LOCKPROXYFILE 3
-#define SQLITE_FCNTL_LAST_ERRNO 4
-#define SQLITE_FCNTL_SIZE_HINT 5
-#define SQLITE_FCNTL_CHUNK_SIZE 6
-#define SQLITE_FCNTL_FILE_POINTER 7
-#define SQLITE_FCNTL_SYNC_OMITTED 8
-#define SQLITE_FCNTL_WIN32_AV_RETRY 9
-#define SQLITE_FCNTL_PERSIST_WAL 10
-#define SQLITE_FCNTL_OVERWRITE 11
-#define SQLITE_FCNTL_VFSNAME 12
-#define SQLITE_FCNTL_POWERSAFE_OVERWRITE 13
-#define SQLITE_FCNTL_PRAGMA 14
-#define SQLITE_FCNTL_BUSYHANDLER 15
-#define SQLITE_FCNTL_TEMPFILENAME 16
-#define SQLITE_FCNTL_MMAP_SIZE 18
-#define SQLITE_FCNTL_TRACE 19
-#define SQLITE_FCNTL_HAS_MOVED 20
-#define SQLITE_FCNTL_SYNC 21
-#define SQLITE_FCNTL_COMMIT_PHASETWO 22
-#define SQLITE_FCNTL_WIN32_SET_HANDLE 23
-#define SQLITE_FCNTL_WAL_BLOCK 24
-#define SQLITE_FCNTL_ZIPVFS 25
-#define SQLITE_FCNTL_RBU 26
-#define SQLITE_FCNTL_VFS_POINTER 27
-#define SQLITE_FCNTL_JOURNAL_POINTER 28
-#define SQLITE_FCNTL_WIN32_GET_HANDLE 29
-#define SQLITE_FCNTL_PDB 30
-#define SQLITE_FCNTL_BEGIN_ATOMIC_WRITE 31
-#define SQLITE_FCNTL_COMMIT_ATOMIC_WRITE 32
-#define SQLITE_FCNTL_ROLLBACK_ATOMIC_WRITE 33
-#define SQLITE_FCNTL_LOCK_TIMEOUT 34
-#define SQLITE_FCNTL_DATA_VERSION 35
-
-/* deprecated names */
-#define SQLITE_GET_LOCKPROXYFILE SQLITE_FCNTL_GET_LOCKPROXYFILE
-#define SQLITE_SET_LOCKPROXYFILE SQLITE_FCNTL_SET_LOCKPROXYFILE
-#define SQLITE_LAST_ERRNO SQLITE_FCNTL_LAST_ERRNO
-
-
-/*
-** CAPI3REF: Mutex Handle
-**
-** The mutex module within SQLite defines [sqlite3_mutex] to be an
-** abstract type for a mutex object. The SQLite core never looks
-** at the internal representation of an [sqlite3_mutex]. It only
-** deals with pointers to the [sqlite3_mutex] object.
-**
-** Mutexes are created using [sqlite3_mutex_alloc()].
-*/
-typedef struct sqlite3_mutex sqlite3_mutex;
-
-/*
-** CAPI3REF: Loadable Extension Thunk
-**
-** A pointer to the opaque sqlite3_api_routines structure is passed as
-** the third parameter to entry points of [loadable extensions]. This
-** structure must be typedefed in order to work around compiler warnings
-** on some platforms.
-*/
-typedef struct sqlite3_api_routines sqlite3_api_routines;
-
-/*
-** CAPI3REF: OS Interface Object
-**
-** An instance of the sqlite3_vfs object defines the interface between
-** the SQLite core and the underlying operating system. The "vfs"
-** in the name of the object stands for "virtual file system". See
-** the [VFS | VFS documentation] for further information.
-**
-** The VFS interface is sometimes extended by adding new methods onto
-** the end. Each time such an extension occurs, the iVersion field
-** is incremented. The iVersion value started out as 1 in
-** SQLite [version 3.5.0] on [dateof:3.5.0], then increased to 2
-** with SQLite [version 3.7.0] on [dateof:3.7.0], and then increased
-** to 3 with SQLite [version 3.7.6] on [dateof:3.7.6]. Additional fields
-** may be appended to the sqlite3_vfs object and the iVersion value
-** may increase again in future versions of SQLite.
-** Note that the structure
-** of the sqlite3_vfs object changes in the transition from
-** SQLite [version 3.5.9] to [version 3.6.0] on [dateof:3.6.0]
-** and yet the iVersion field was not modified.
-**
-** The szOsFile field is the size of the subclassed [sqlite3_file]
-** structure used by this VFS. mxPathname is the maximum length of
-** a pathname in this VFS.
-**
-** Registered sqlite3_vfs objects are kept on a linked list formed by
-** the pNext pointer. The [sqlite3_vfs_register()]
-** and [sqlite3_vfs_unregister()] interfaces manage this list
-** in a thread-safe way. The [sqlite3_vfs_find()] interface
-** searches the list. Neither the application code nor the VFS
-** implementation should use the pNext pointer.
-**
-** The pNext field is the only field in the sqlite3_vfs
-** structure that SQLite will ever modify. SQLite will only access
-** or modify this field while holding a particular static mutex.
-** The application should never modify anything within the sqlite3_vfs
-** object once the object has been registered.
-**
-** The zName field holds the name of the VFS module. The name must
-** be unique across all VFS modules.
-**
-** [[sqlite3_vfs.xOpen]]
-** ^SQLite guarantees that the zFilename parameter to xOpen
-** is either a NULL pointer or string obtained
-** from xFullPathname() with an optional suffix added.
-** ^If a suffix is added to the zFilename parameter, it will
-** consist of a single "-" character followed by no more than
-** 11 alphanumeric and/or "-" characters.
-** ^SQLite further guarantees that
-** the string will be valid and unchanged until xClose() is
-** called. Because of the previous sentence,
-** the [sqlite3_file] can safely store a pointer to the
-** filename if it needs to remember the filename for some reason.
-** If the zFilename parameter to xOpen is a NULL pointer then xOpen
-** must invent its own temporary name for the file. ^Whenever the
-** xFilename parameter is NULL it will also be the case that the
-** flags parameter will include [SQLITE_OPEN_DELETEONCLOSE].
-**
-** The flags argument to xOpen() includes all bits set in
-** the flags argument to [sqlite3_open_v2()]. Or if [sqlite3_open()]
-** or [sqlite3_open16()] is used, then flags includes at least
-** [SQLITE_OPEN_READWRITE] | [SQLITE_OPEN_CREATE].
-** If xOpen() opens a file read-only then it sets *pOutFlags to
-** include [SQLITE_OPEN_READONLY]. Other bits in *pOutFlags may be set.
-**
-** ^(SQLite will also add one of the following flags to the xOpen()
-** call, depending on the object being opened:
-**
-**
-**
[SQLITE_OPEN_MAIN_DB]
-**
[SQLITE_OPEN_MAIN_JOURNAL]
-**
[SQLITE_OPEN_TEMP_DB]
-**
[SQLITE_OPEN_TEMP_JOURNAL]
-**
[SQLITE_OPEN_TRANSIENT_DB]
-**
[SQLITE_OPEN_SUBJOURNAL]
-**
[SQLITE_OPEN_MASTER_JOURNAL]
-**
[SQLITE_OPEN_WAL]
-**
)^
-**
-** The file I/O implementation can use the object type flags to
-** change the way it deals with files. For example, an application
-** that does not care about crash recovery or rollback might make
-** the open of a journal file a no-op. Writes to this journal would
-** also be no-ops, and any attempt to read the journal would return
-** SQLITE_IOERR. Or the implementation might recognize that a database
-** file will be doing page-aligned sector reads and writes in a random
-** order and set up its I/O subsystem accordingly.
-**
-** SQLite might also add one of the following flags to the xOpen method:
-**
-**
-**
[SQLITE_OPEN_DELETEONCLOSE]
-**
[SQLITE_OPEN_EXCLUSIVE]
-**
-**
-** The [SQLITE_OPEN_DELETEONCLOSE] flag means the file should be
-** deleted when it is closed. ^The [SQLITE_OPEN_DELETEONCLOSE]
-** will be set for TEMP databases and their journals, transient
-** databases, and subjournals.
-**
-** ^The [SQLITE_OPEN_EXCLUSIVE] flag is always used in conjunction
-** with the [SQLITE_OPEN_CREATE] flag, which are both directly
-** analogous to the O_EXCL and O_CREAT flags of the POSIX open()
-** API. The SQLITE_OPEN_EXCLUSIVE flag, when paired with the
-** SQLITE_OPEN_CREATE, is used to indicate that file should always
-** be created, and that it is an error if it already exists.
-** It is not used to indicate the file should be opened
-** for exclusive access.
-**
-** ^At least szOsFile bytes of memory are allocated by SQLite
-** to hold the [sqlite3_file] structure passed as the third
-** argument to xOpen. The xOpen method does not have to
-** allocate the structure; it should just fill it in. Note that
-** the xOpen method must set the sqlite3_file.pMethods to either
-** a valid [sqlite3_io_methods] object or to NULL. xOpen must do
-** this even if the open fails. SQLite expects that the sqlite3_file.pMethods
-** element will be valid after xOpen returns regardless of the success
-** or failure of the xOpen call.
-**
-** [[sqlite3_vfs.xAccess]]
-** ^The flags argument to xAccess() may be [SQLITE_ACCESS_EXISTS]
-** to test for the existence of a file, or [SQLITE_ACCESS_READWRITE] to
-** test whether a file is readable and writable, or [SQLITE_ACCESS_READ]
-** to test whether a file is at least readable. The file can be a
-** directory.
-**
-** ^SQLite will always allocate at least mxPathname+1 bytes for the
-** output buffer xFullPathname. The exact size of the output buffer
-** is also passed as a parameter to both methods. If the output buffer
-** is not large enough, [SQLITE_CANTOPEN] should be returned. Since this is
-** handled as a fatal error by SQLite, vfs implementations should endeavor
-** to prevent this by setting mxPathname to a sufficiently large value.
-**
-** The xRandomness(), xSleep(), xCurrentTime(), and xCurrentTimeInt64()
-** interfaces are not strictly a part of the filesystem, but they are
-** included in the VFS structure for completeness.
-** The xRandomness() function attempts to return nBytes bytes
-** of good-quality randomness into zOut. The return value is
-** the actual number of bytes of randomness obtained.
-** The xSleep() method causes the calling thread to sleep for at
-** least the number of microseconds given. ^The xCurrentTime()
-** method returns a Julian Day Number for the current date and time as
-** a floating point value.
-** ^The xCurrentTimeInt64() method returns, as an integer, the Julian
-** Day Number multiplied by 86400000 (the number of milliseconds in
-** a 24-hour day).
-** ^SQLite will use the xCurrentTimeInt64() method to get the current
-** date and time if that method is available (if iVersion is 2 or
-** greater and the function pointer is not NULL) and will fall back
-** to xCurrentTime() if xCurrentTimeInt64() is unavailable.
-**
-** ^The xSetSystemCall(), xGetSystemCall(), and xNestSystemCall() interfaces
-** are not used by the SQLite core. These optional interfaces are provided
-** by some VFSes to facilitate testing of the VFS code. By overriding
-** system calls with functions under its control, a test program can
-** simulate faults and error conditions that would otherwise be difficult
-** or impossible to induce. The set of system calls that can be overridden
-** varies from one VFS to another, and from one version of the same VFS to the
-** next. Applications that use these interfaces must be prepared for any
-** or all of these interfaces to be NULL or for their behavior to change
-** from one release to the next. Applications must not attempt to access
-** any of these methods if the iVersion of the VFS is less than 3.
-*/
-typedef struct sqlite3_vfs sqlite3_vfs;
-typedef void (*sqlite3_syscall_ptr)(void);
-struct sqlite3_vfs {
- int iVersion; /* Structure version number (currently 3) */
- int szOsFile; /* Size of subclassed sqlite3_file */
- int mxPathname; /* Maximum file pathname length */
- sqlite3_vfs *pNext; /* Next registered VFS */
- const char *zName; /* Name of this virtual file system */
- void *pAppData; /* Pointer to application-specific data */
- int (*xOpen)(sqlite3_vfs*, const char *zName, sqlite3_file*,
- int flags, int *pOutFlags);
- int (*xDelete)(sqlite3_vfs*, const char *zName, int syncDir);
- int (*xAccess)(sqlite3_vfs*, const char *zName, int flags, int *pResOut);
- int (*xFullPathname)(sqlite3_vfs*, const char *zName, int nOut, char *zOut);
- void *(*xDlOpen)(sqlite3_vfs*, const char *zFilename);
- void (*xDlError)(sqlite3_vfs*, int nByte, char *zErrMsg);
- void (*(*xDlSym)(sqlite3_vfs*,void*, const char *zSymbol))(void);
- void (*xDlClose)(sqlite3_vfs*, void*);
- int (*xRandomness)(sqlite3_vfs*, int nByte, char *zOut);
- int (*xSleep)(sqlite3_vfs*, int microseconds);
- int (*xCurrentTime)(sqlite3_vfs*, double*);
- int (*xGetLastError)(sqlite3_vfs*, int, char *);
- /*
- ** The methods above are in version 1 of the sqlite_vfs object
- ** definition. Those that follow are added in version 2 or later
- */
- int (*xCurrentTimeInt64)(sqlite3_vfs*, sqlite3_int64*);
- /*
- ** The methods above are in versions 1 and 2 of the sqlite_vfs object.
- ** Those below are for version 3 and greater.
- */
- int (*xSetSystemCall)(sqlite3_vfs*, const char *zName, sqlite3_syscall_ptr);
- sqlite3_syscall_ptr (*xGetSystemCall)(sqlite3_vfs*, const char *zName);
- const char *(*xNextSystemCall)(sqlite3_vfs*, const char *zName);
- /*
- ** The methods above are in versions 1 through 3 of the sqlite_vfs object.
- ** New fields may be appended in future versions. The iVersion
- ** value will increment whenever this happens.
- */
-};
-
-/*
-** CAPI3REF: Flags for the xAccess VFS method
-**
-** These integer constants can be used as the third parameter to
-** the xAccess method of an [sqlite3_vfs] object. They determine
-** what kind of permissions the xAccess method is looking for.
-** With SQLITE_ACCESS_EXISTS, the xAccess method
-** simply checks whether the file exists.
-** With SQLITE_ACCESS_READWRITE, the xAccess method
-** checks whether the named directory is both readable and writable
-** (in other words, if files can be added, removed, and renamed within
-** the directory).
-** The SQLITE_ACCESS_READWRITE constant is currently used only by the
-** [temp_store_directory pragma], though this could change in a future
-** release of SQLite.
-** With SQLITE_ACCESS_READ, the xAccess method
-** checks whether the file is readable. The SQLITE_ACCESS_READ constant is
-** currently unused, though it might be used in a future release of
-** SQLite.
-*/
-#define SQLITE_ACCESS_EXISTS 0
-#define SQLITE_ACCESS_READWRITE 1 /* Used by PRAGMA temp_store_directory */
-#define SQLITE_ACCESS_READ 2 /* Unused */
-
-/*
-** CAPI3REF: Flags for the xShmLock VFS method
-**
-** These integer constants define the various locking operations
-** allowed by the xShmLock method of [sqlite3_io_methods]. The
-** following are the only legal combinations of flags to the
-** xShmLock method:
-**
-**
-**
SQLITE_SHM_LOCK | SQLITE_SHM_SHARED
-**
SQLITE_SHM_LOCK | SQLITE_SHM_EXCLUSIVE
-**
SQLITE_SHM_UNLOCK | SQLITE_SHM_SHARED
-**
SQLITE_SHM_UNLOCK | SQLITE_SHM_EXCLUSIVE
-**
-**
-** When unlocking, the same SHARED or EXCLUSIVE flag must be supplied as
-** was given on the corresponding lock.
-**
-** The xShmLock method can transition between unlocked and SHARED or
-** between unlocked and EXCLUSIVE. It cannot transition between SHARED
-** and EXCLUSIVE.
-*/
-#define SQLITE_SHM_UNLOCK 1
-#define SQLITE_SHM_LOCK 2
-#define SQLITE_SHM_SHARED 4
-#define SQLITE_SHM_EXCLUSIVE 8
-
-/*
-** CAPI3REF: Maximum xShmLock index
-**
-** The xShmLock method on [sqlite3_io_methods] may use values
-** between 0 and this upper bound as its "offset" argument.
-** The SQLite core will never attempt to acquire or release a
-** lock outside of this range
-*/
-#define SQLITE_SHM_NLOCK 8
-
-
-/*
-** CAPI3REF: Initialize The SQLite Library
-**
-** ^The sqlite3_initialize() routine initializes the
-** SQLite library. ^The sqlite3_shutdown() routine
-** deallocates any resources that were allocated by sqlite3_initialize().
-** These routines are designed to aid in process initialization and
-** shutdown on embedded systems. Workstation applications using
-** SQLite normally do not need to invoke either of these routines.
-**
-** A call to sqlite3_initialize() is an "effective" call if it is
-** the first time sqlite3_initialize() is invoked during the lifetime of
-** the process, or if it is the first time sqlite3_initialize() is invoked
-** following a call to sqlite3_shutdown(). ^(Only an effective call
-** of sqlite3_initialize() does any initialization. All other calls
-** are harmless no-ops.)^
-**
-** A call to sqlite3_shutdown() is an "effective" call if it is the first
-** call to sqlite3_shutdown() since the last sqlite3_initialize(). ^(Only
-** an effective call to sqlite3_shutdown() does any deinitialization.
-** All other valid calls to sqlite3_shutdown() are harmless no-ops.)^
-**
-** The sqlite3_initialize() interface is threadsafe, but sqlite3_shutdown()
-** is not. The sqlite3_shutdown() interface must only be called from a
-** single thread. All open [database connections] must be closed and all
-** other SQLite resources must be deallocated prior to invoking
-** sqlite3_shutdown().
-**
-** Among other things, ^sqlite3_initialize() will invoke
-** sqlite3_os_init(). Similarly, ^sqlite3_shutdown()
-** will invoke sqlite3_os_end().
-**
-** ^The sqlite3_initialize() routine returns [SQLITE_OK] on success.
-** ^If for some reason, sqlite3_initialize() is unable to initialize
-** the library (perhaps it is unable to allocate a needed resource such
-** as a mutex) it returns an [error code] other than [SQLITE_OK].
-**
-** ^The sqlite3_initialize() routine is called internally by many other
-** SQLite interfaces so that an application usually does not need to
-** invoke sqlite3_initialize() directly. For example, [sqlite3_open()]
-** calls sqlite3_initialize() so the SQLite library will be automatically
-** initialized when [sqlite3_open()] is called if it has not be initialized
-** already. ^However, if SQLite is compiled with the [SQLITE_OMIT_AUTOINIT]
-** compile-time option, then the automatic calls to sqlite3_initialize()
-** are omitted and the application must call sqlite3_initialize() directly
-** prior to using any other SQLite interface. For maximum portability,
-** it is recommended that applications always invoke sqlite3_initialize()
-** directly prior to using any other SQLite interface. Future releases
-** of SQLite may require this. In other words, the behavior exhibited
-** when SQLite is compiled with [SQLITE_OMIT_AUTOINIT] might become the
-** default behavior in some future release of SQLite.
-**
-** The sqlite3_os_init() routine does operating-system specific
-** initialization of the SQLite library. The sqlite3_os_end()
-** routine undoes the effect of sqlite3_os_init(). Typical tasks
-** performed by these routines include allocation or deallocation
-** of static resources, initialization of global variables,
-** setting up a default [sqlite3_vfs] module, or setting up
-** a default configuration using [sqlite3_config()].
-**
-** The application should never invoke either sqlite3_os_init()
-** or sqlite3_os_end() directly. The application should only invoke
-** sqlite3_initialize() and sqlite3_shutdown(). The sqlite3_os_init()
-** interface is called automatically by sqlite3_initialize() and
-** sqlite3_os_end() is called by sqlite3_shutdown(). Appropriate
-** implementations for sqlite3_os_init() and sqlite3_os_end()
-** are built into SQLite when it is compiled for Unix, Windows, or OS/2.
-** When [custom builds | built for other platforms]
-** (using the [SQLITE_OS_OTHER=1] compile-time
-** option) the application must supply a suitable implementation for
-** sqlite3_os_init() and sqlite3_os_end(). An application-supplied
-** implementation of sqlite3_os_init() or sqlite3_os_end()
-** must return [SQLITE_OK] on success and some other [error code] upon
-** failure.
-*/
-SQLITE_API int sqlite3_initialize(void);
-SQLITE_API int sqlite3_shutdown(void);
-SQLITE_API int sqlite3_os_init(void);
-SQLITE_API int sqlite3_os_end(void);
-
-/*
-** CAPI3REF: Configuring The SQLite Library
-**
-** The sqlite3_config() interface is used to make global configuration
-** changes to SQLite in order to tune SQLite to the specific needs of
-** the application. The default configuration is recommended for most
-** applications and so this routine is usually not necessary. It is
-** provided to support rare applications with unusual needs.
-**
-** The sqlite3_config() interface is not threadsafe. The application
-** must ensure that no other SQLite interfaces are invoked by other
-** threads while sqlite3_config() is running.
-**
-** The sqlite3_config() interface
-** may only be invoked prior to library initialization using
-** [sqlite3_initialize()] or after shutdown by [sqlite3_shutdown()].
-** ^If sqlite3_config() is called after [sqlite3_initialize()] and before
-** [sqlite3_shutdown()] then it will return SQLITE_MISUSE.
-** Note, however, that ^sqlite3_config() can be called as part of the
-** implementation of an application-defined [sqlite3_os_init()].
-**
-** The first argument to sqlite3_config() is an integer
-** [configuration option] that determines
-** what property of SQLite is to be configured. Subsequent arguments
-** vary depending on the [configuration option]
-** in the first argument.
-**
-** ^When a configuration option is set, sqlite3_config() returns [SQLITE_OK].
-** ^If the option is unknown or SQLite is unable to set the option
-** then this routine returns a non-zero [error code].
-*/
-SQLITE_API int sqlite3_config(int, ...);
-
-/*
-** CAPI3REF: Configure database connections
-** METHOD: sqlite3
-**
-** The sqlite3_db_config() interface is used to make configuration
-** changes to a [database connection]. The interface is similar to
-** [sqlite3_config()] except that the changes apply to a single
-** [database connection] (specified in the first argument).
-**
-** The second argument to sqlite3_db_config(D,V,...) is the
-** [SQLITE_DBCONFIG_LOOKASIDE | configuration verb] - an integer code
-** that indicates what aspect of the [database connection] is being configured.
-** Subsequent arguments vary depending on the configuration verb.
-**
-** ^Calls to sqlite3_db_config() return SQLITE_OK if and only if
-** the call is considered successful.
-*/
-SQLITE_API int sqlite3_db_config(sqlite3*, int op, ...);
-
-/*
-** CAPI3REF: Memory Allocation Routines
-**
-** An instance of this object defines the interface between SQLite
-** and low-level memory allocation routines.
-**
-** This object is used in only one place in the SQLite interface.
-** A pointer to an instance of this object is the argument to
-** [sqlite3_config()] when the configuration option is
-** [SQLITE_CONFIG_MALLOC] or [SQLITE_CONFIG_GETMALLOC].
-** By creating an instance of this object
-** and passing it to [sqlite3_config]([SQLITE_CONFIG_MALLOC])
-** during configuration, an application can specify an alternative
-** memory allocation subsystem for SQLite to use for all of its
-** dynamic memory needs.
-**
-** Note that SQLite comes with several [built-in memory allocators]
-** that are perfectly adequate for the overwhelming majority of applications
-** and that this object is only useful to a tiny minority of applications
-** with specialized memory allocation requirements. This object is
-** also used during testing of SQLite in order to specify an alternative
-** memory allocator that simulates memory out-of-memory conditions in
-** order to verify that SQLite recovers gracefully from such
-** conditions.
-**
-** The xMalloc, xRealloc, and xFree methods must work like the
-** malloc(), realloc() and free() functions from the standard C library.
-** ^SQLite guarantees that the second argument to
-** xRealloc is always a value returned by a prior call to xRoundup.
-**
-** xSize should return the allocated size of a memory allocation
-** previously obtained from xMalloc or xRealloc. The allocated size
-** is always at least as big as the requested size but may be larger.
-**
-** The xRoundup method returns what would be the allocated size of
-** a memory allocation given a particular requested size. Most memory
-** allocators round up memory allocations at least to the next multiple
-** of 8. Some allocators round up to a larger multiple or to a power of 2.
-** Every memory allocation request coming in through [sqlite3_malloc()]
-** or [sqlite3_realloc()] first calls xRoundup. If xRoundup returns 0,
-** that causes the corresponding memory allocation to fail.
-**
-** The xInit method initializes the memory allocator. For example,
-** it might allocate any require mutexes or initialize internal data
-** structures. The xShutdown method is invoked (indirectly) by
-** [sqlite3_shutdown()] and should deallocate any resources acquired
-** by xInit. The pAppData pointer is used as the only parameter to
-** xInit and xShutdown.
-**
-** SQLite holds the [SQLITE_MUTEX_STATIC_MASTER] mutex when it invokes
-** the xInit method, so the xInit method need not be threadsafe. The
-** xShutdown method is only called from [sqlite3_shutdown()] so it does
-** not need to be threadsafe either. For all other methods, SQLite
-** holds the [SQLITE_MUTEX_STATIC_MEM] mutex as long as the
-** [SQLITE_CONFIG_MEMSTATUS] configuration option is turned on (which
-** it is by default) and so the methods are automatically serialized.
-** However, if [SQLITE_CONFIG_MEMSTATUS] is disabled, then the other
-** methods must be threadsafe or else make their own arrangements for
-** serialization.
-**
-** SQLite will never invoke xInit() more than once without an intervening
-** call to xShutdown().
-*/
-typedef struct sqlite3_mem_methods sqlite3_mem_methods;
-struct sqlite3_mem_methods {
- void *(*xMalloc)(int); /* Memory allocation function */
- void (*xFree)(void*); /* Free a prior allocation */
- void *(*xRealloc)(void*,int); /* Resize an allocation */
- int (*xSize)(void*); /* Return the size of an allocation */
- int (*xRoundup)(int); /* Round up request size to allocation size */
- int (*xInit)(void*); /* Initialize the memory allocator */
- void (*xShutdown)(void*); /* Deinitialize the memory allocator */
- void *pAppData; /* Argument to xInit() and xShutdown() */
-};
-
-/*
-** CAPI3REF: Configuration Options
-** KEYWORDS: {configuration option}
-**
-** These constants are the available integer configuration options that
-** can be passed as the first argument to the [sqlite3_config()] interface.
-**
-** New configuration options may be added in future releases of SQLite.
-** Existing configuration options might be discontinued. Applications
-** should check the return code from [sqlite3_config()] to make sure that
-** the call worked. The [sqlite3_config()] interface will return a
-** non-zero [error code] if a discontinued or unsupported configuration option
-** is invoked.
-**
-**
-** [[SQLITE_CONFIG_SINGLETHREAD]]
SQLITE_CONFIG_SINGLETHREAD
-**
There are no arguments to this option. ^This option sets the
-** [threading mode] to Single-thread. In other words, it disables
-** all mutexing and puts SQLite into a mode where it can only be used
-** by a single thread. ^If SQLite is compiled with
-** the [SQLITE_THREADSAFE | SQLITE_THREADSAFE=0] compile-time option then
-** it is not possible to change the [threading mode] from its default
-** value of Single-thread and so [sqlite3_config()] will return
-** [SQLITE_ERROR] if called with the SQLITE_CONFIG_SINGLETHREAD
-** configuration option.
-**
-** [[SQLITE_CONFIG_MULTITHREAD]]
SQLITE_CONFIG_MULTITHREAD
-**
There are no arguments to this option. ^This option sets the
-** [threading mode] to Multi-thread. In other words, it disables
-** mutexing on [database connection] and [prepared statement] objects.
-** The application is responsible for serializing access to
-** [database connections] and [prepared statements]. But other mutexes
-** are enabled so that SQLite will be safe to use in a multi-threaded
-** environment as long as no two threads attempt to use the same
-** [database connection] at the same time. ^If SQLite is compiled with
-** the [SQLITE_THREADSAFE | SQLITE_THREADSAFE=0] compile-time option then
-** it is not possible to set the Multi-thread [threading mode] and
-** [sqlite3_config()] will return [SQLITE_ERROR] if called with the
-** SQLITE_CONFIG_MULTITHREAD configuration option.
-**
-** [[SQLITE_CONFIG_SERIALIZED]]
SQLITE_CONFIG_SERIALIZED
-**
There are no arguments to this option. ^This option sets the
-** [threading mode] to Serialized. In other words, this option enables
-** all mutexes including the recursive
-** mutexes on [database connection] and [prepared statement] objects.
-** In this mode (which is the default when SQLite is compiled with
-** [SQLITE_THREADSAFE=1]) the SQLite library will itself serialize access
-** to [database connections] and [prepared statements] so that the
-** application is free to use the same [database connection] or the
-** same [prepared statement] in different threads at the same time.
-** ^If SQLite is compiled with
-** the [SQLITE_THREADSAFE | SQLITE_THREADSAFE=0] compile-time option then
-** it is not possible to set the Serialized [threading mode] and
-** [sqlite3_config()] will return [SQLITE_ERROR] if called with the
-** SQLITE_CONFIG_SERIALIZED configuration option.
-**
-** [[SQLITE_CONFIG_MALLOC]]
SQLITE_CONFIG_MALLOC
-**
^(The SQLITE_CONFIG_MALLOC option takes a single argument which is
-** a pointer to an instance of the [sqlite3_mem_methods] structure.
-** The argument specifies
-** alternative low-level memory allocation routines to be used in place of
-** the memory allocation routines built into SQLite.)^ ^SQLite makes
-** its own private copy of the content of the [sqlite3_mem_methods] structure
-** before the [sqlite3_config()] call returns.
-**
-** [[SQLITE_CONFIG_GETMALLOC]]
SQLITE_CONFIG_GETMALLOC
-**
^(The SQLITE_CONFIG_GETMALLOC option takes a single argument which
-** is a pointer to an instance of the [sqlite3_mem_methods] structure.
-** The [sqlite3_mem_methods]
-** structure is filled with the currently defined memory allocation routines.)^
-** This option can be used to overload the default memory allocation
-** routines with a wrapper that simulations memory allocation failure or
-** tracks memory usage, for example.
-**
-** [[SQLITE_CONFIG_SMALL_MALLOC]]
SQLITE_CONFIG_SMALL_MALLOC
-**
^The SQLITE_CONFIG_SMALL_MALLOC option takes single argument of
-** type int, interpreted as a boolean, which if true provides a hint to
-** SQLite that it should avoid large memory allocations if possible.
-** SQLite will run faster if it is free to make large memory allocations,
-** but some application might prefer to run slower in exchange for
-** guarantees about memory fragmentation that are possible if large
-** allocations are avoided. This hint is normally off.
-**
-**
-** [[SQLITE_CONFIG_MEMSTATUS]]
SQLITE_CONFIG_MEMSTATUS
-**
^The SQLITE_CONFIG_MEMSTATUS option takes single argument of type int,
-** interpreted as a boolean, which enables or disables the collection of
-** memory allocation statistics. ^(When memory allocation statistics are
-** disabled, the following SQLite interfaces become non-operational:
-**
-**
[sqlite3_memory_used()]
-**
[sqlite3_memory_highwater()]
-**
[sqlite3_soft_heap_limit64()]
-**
[sqlite3_status64()]
-**
)^
-** ^Memory allocation statistics are enabled by default unless SQLite is
-** compiled with [SQLITE_DEFAULT_MEMSTATUS]=0 in which case memory
-** allocation statistics are disabled by default.
-**
-**
-** [[SQLITE_CONFIG_SCRATCH]]
SQLITE_CONFIG_SCRATCH
-**
The SQLITE_CONFIG_SCRATCH option is no longer used.
-**
-**
-** [[SQLITE_CONFIG_PAGECACHE]]
SQLITE_CONFIG_PAGECACHE
-**
^The SQLITE_CONFIG_PAGECACHE option specifies a memory pool
-** that SQLite can use for the database page cache with the default page
-** cache implementation.
-** This configuration option is a no-op if an application-define page
-** cache implementation is loaded using the [SQLITE_CONFIG_PCACHE2].
-** ^There are three arguments to SQLITE_CONFIG_PAGECACHE: A pointer to
-** 8-byte aligned memory (pMem), the size of each page cache line (sz),
-** and the number of cache lines (N).
-** The sz argument should be the size of the largest database page
-** (a power of two between 512 and 65536) plus some extra bytes for each
-** page header. ^The number of extra bytes needed by the page header
-** can be determined using [SQLITE_CONFIG_PCACHE_HDRSZ].
-** ^It is harmless, apart from the wasted memory,
-** for the sz parameter to be larger than necessary. The pMem
-** argument must be either a NULL pointer or a pointer to an 8-byte
-** aligned block of memory of at least sz*N bytes, otherwise
-** subsequent behavior is undefined.
-** ^When pMem is not NULL, SQLite will strive to use the memory provided
-** to satisfy page cache needs, falling back to [sqlite3_malloc()] if
-** a page cache line is larger than sz bytes or if all of the pMem buffer
-** is exhausted.
-** ^If pMem is NULL and N is non-zero, then each database connection
-** does an initial bulk allocation for page cache memory
-** from [sqlite3_malloc()] sufficient for N cache lines if N is positive or
-** of -1024*N bytes if N is negative, . ^If additional
-** page cache memory is needed beyond what is provided by the initial
-** allocation, then SQLite goes to [sqlite3_malloc()] separately for each
-** additional cache line.
-**
-** [[SQLITE_CONFIG_HEAP]]
SQLITE_CONFIG_HEAP
-**
^The SQLITE_CONFIG_HEAP option specifies a static memory buffer
-** that SQLite will use for all of its dynamic memory allocation needs
-** beyond those provided for by [SQLITE_CONFIG_PAGECACHE].
-** ^The SQLITE_CONFIG_HEAP option is only available if SQLite is compiled
-** with either [SQLITE_ENABLE_MEMSYS3] or [SQLITE_ENABLE_MEMSYS5] and returns
-** [SQLITE_ERROR] if invoked otherwise.
-** ^There are three arguments to SQLITE_CONFIG_HEAP:
-** An 8-byte aligned pointer to the memory,
-** the number of bytes in the memory buffer, and the minimum allocation size.
-** ^If the first pointer (the memory pointer) is NULL, then SQLite reverts
-** to using its default memory allocator (the system malloc() implementation),
-** undoing any prior invocation of [SQLITE_CONFIG_MALLOC]. ^If the
-** memory pointer is not NULL then the alternative memory
-** allocator is engaged to handle all of SQLites memory allocation needs.
-** The first pointer (the memory pointer) must be aligned to an 8-byte
-** boundary or subsequent behavior of SQLite will be undefined.
-** The minimum allocation size is capped at 2**12. Reasonable values
-** for the minimum allocation size are 2**5 through 2**8.
-**
-** [[SQLITE_CONFIG_MUTEX]]
SQLITE_CONFIG_MUTEX
-**
^(The SQLITE_CONFIG_MUTEX option takes a single argument which is a
-** pointer to an instance of the [sqlite3_mutex_methods] structure.
-** The argument specifies alternative low-level mutex routines to be used
-** in place the mutex routines built into SQLite.)^ ^SQLite makes a copy of
-** the content of the [sqlite3_mutex_methods] structure before the call to
-** [sqlite3_config()] returns. ^If SQLite is compiled with
-** the [SQLITE_THREADSAFE | SQLITE_THREADSAFE=0] compile-time option then
-** the entire mutexing subsystem is omitted from the build and hence calls to
-** [sqlite3_config()] with the SQLITE_CONFIG_MUTEX configuration option will
-** return [SQLITE_ERROR].
-**
-** [[SQLITE_CONFIG_GETMUTEX]]
SQLITE_CONFIG_GETMUTEX
-**
^(The SQLITE_CONFIG_GETMUTEX option takes a single argument which
-** is a pointer to an instance of the [sqlite3_mutex_methods] structure. The
-** [sqlite3_mutex_methods]
-** structure is filled with the currently defined mutex routines.)^
-** This option can be used to overload the default mutex allocation
-** routines with a wrapper used to track mutex usage for performance
-** profiling or testing, for example. ^If SQLite is compiled with
-** the [SQLITE_THREADSAFE | SQLITE_THREADSAFE=0] compile-time option then
-** the entire mutexing subsystem is omitted from the build and hence calls to
-** [sqlite3_config()] with the SQLITE_CONFIG_GETMUTEX configuration option will
-** return [SQLITE_ERROR].
-**
-** [[SQLITE_CONFIG_LOOKASIDE]]
SQLITE_CONFIG_LOOKASIDE
-**
^(The SQLITE_CONFIG_LOOKASIDE option takes two arguments that determine
-** the default size of lookaside memory on each [database connection].
-** The first argument is the
-** size of each lookaside buffer slot and the second is the number of
-** slots allocated to each database connection.)^ ^(SQLITE_CONFIG_LOOKASIDE
-** sets the default lookaside size. The [SQLITE_DBCONFIG_LOOKASIDE]
-** option to [sqlite3_db_config()] can be used to change the lookaside
-** configuration on individual connections.)^
-**
-** [[SQLITE_CONFIG_PCACHE2]]
SQLITE_CONFIG_PCACHE2
-**
^(The SQLITE_CONFIG_PCACHE2 option takes a single argument which is
-** a pointer to an [sqlite3_pcache_methods2] object. This object specifies
-** the interface to a custom page cache implementation.)^
-** ^SQLite makes a copy of the [sqlite3_pcache_methods2] object.
-**
-** [[SQLITE_CONFIG_GETPCACHE2]]
SQLITE_CONFIG_GETPCACHE2
-**
^(The SQLITE_CONFIG_GETPCACHE2 option takes a single argument which
-** is a pointer to an [sqlite3_pcache_methods2] object. SQLite copies of
-** the current page cache implementation into that object.)^
-**
-** [[SQLITE_CONFIG_LOG]]
SQLITE_CONFIG_LOG
-**
The SQLITE_CONFIG_LOG option is used to configure the SQLite
-** global [error log].
-** (^The SQLITE_CONFIG_LOG option takes two arguments: a pointer to a
-** function with a call signature of void(*)(void*,int,const char*),
-** and a pointer to void. ^If the function pointer is not NULL, it is
-** invoked by [sqlite3_log()] to process each logging event. ^If the
-** function pointer is NULL, the [sqlite3_log()] interface becomes a no-op.
-** ^The void pointer that is the second argument to SQLITE_CONFIG_LOG is
-** passed through as the first parameter to the application-defined logger
-** function whenever that function is invoked. ^The second parameter to
-** the logger function is a copy of the first parameter to the corresponding
-** [sqlite3_log()] call and is intended to be a [result code] or an
-** [extended result code]. ^The third parameter passed to the logger is
-** log message after formatting via [sqlite3_snprintf()].
-** The SQLite logging interface is not reentrant; the logger function
-** supplied by the application must not invoke any SQLite interface.
-** In a multi-threaded application, the application-defined logger
-** function must be threadsafe.
-**
-** [[SQLITE_CONFIG_URI]]
SQLITE_CONFIG_URI
-**
^(The SQLITE_CONFIG_URI option takes a single argument of type int.
-** If non-zero, then URI handling is globally enabled. If the parameter is zero,
-** then URI handling is globally disabled.)^ ^If URI handling is globally
-** enabled, all filenames passed to [sqlite3_open()], [sqlite3_open_v2()],
-** [sqlite3_open16()] or
-** specified as part of [ATTACH] commands are interpreted as URIs, regardless
-** of whether or not the [SQLITE_OPEN_URI] flag is set when the database
-** connection is opened. ^If it is globally disabled, filenames are
-** only interpreted as URIs if the SQLITE_OPEN_URI flag is set when the
-** database connection is opened. ^(By default, URI handling is globally
-** disabled. The default value may be changed by compiling with the
-** [SQLITE_USE_URI] symbol defined.)^
-**
-** [[SQLITE_CONFIG_COVERING_INDEX_SCAN]]
SQLITE_CONFIG_COVERING_INDEX_SCAN
-**
^The SQLITE_CONFIG_COVERING_INDEX_SCAN option takes a single integer
-** argument which is interpreted as a boolean in order to enable or disable
-** the use of covering indices for full table scans in the query optimizer.
-** ^The default setting is determined
-** by the [SQLITE_ALLOW_COVERING_INDEX_SCAN] compile-time option, or is "on"
-** if that compile-time option is omitted.
-** The ability to disable the use of covering indices for full table scans
-** is because some incorrectly coded legacy applications might malfunction
-** when the optimization is enabled. Providing the ability to
-** disable the optimization allows the older, buggy application code to work
-** without change even with newer versions of SQLite.
-**
-** [[SQLITE_CONFIG_PCACHE]] [[SQLITE_CONFIG_GETPCACHE]]
-**
SQLITE_CONFIG_PCACHE and SQLITE_CONFIG_GETPCACHE
-**
These options are obsolete and should not be used by new code.
-** They are retained for backwards compatibility but are now no-ops.
-**
-**
-** [[SQLITE_CONFIG_SQLLOG]]
-**
SQLITE_CONFIG_SQLLOG
-**
This option is only available if sqlite is compiled with the
-** [SQLITE_ENABLE_SQLLOG] pre-processor macro defined. The first argument should
-** be a pointer to a function of type void(*)(void*,sqlite3*,const char*, int).
-** The second should be of type (void*). The callback is invoked by the library
-** in three separate circumstances, identified by the value passed as the
-** fourth parameter. If the fourth parameter is 0, then the database connection
-** passed as the second argument has just been opened. The third argument
-** points to a buffer containing the name of the main database file. If the
-** fourth parameter is 1, then the SQL statement that the third parameter
-** points to has just been executed. Or, if the fourth parameter is 2, then
-** the connection being passed as the second parameter is being closed. The
-** third parameter is passed NULL In this case. An example of using this
-** configuration option can be seen in the "test_sqllog.c" source file in
-** the canonical SQLite source tree.
-**
-** [[SQLITE_CONFIG_MMAP_SIZE]]
-**
SQLITE_CONFIG_MMAP_SIZE
-**
^SQLITE_CONFIG_MMAP_SIZE takes two 64-bit integer (sqlite3_int64) values
-** that are the default mmap size limit (the default setting for
-** [PRAGMA mmap_size]) and the maximum allowed mmap size limit.
-** ^The default setting can be overridden by each database connection using
-** either the [PRAGMA mmap_size] command, or by using the
-** [SQLITE_FCNTL_MMAP_SIZE] file control. ^(The maximum allowed mmap size
-** will be silently truncated if necessary so that it does not exceed the
-** compile-time maximum mmap size set by the
-** [SQLITE_MAX_MMAP_SIZE] compile-time option.)^
-** ^If either argument to this option is negative, then that argument is
-** changed to its compile-time default.
-**
-** [[SQLITE_CONFIG_WIN32_HEAPSIZE]]
-**
SQLITE_CONFIG_WIN32_HEAPSIZE
-**
^The SQLITE_CONFIG_WIN32_HEAPSIZE option is only available if SQLite is
-** compiled for Windows with the [SQLITE_WIN32_MALLOC] pre-processor macro
-** defined. ^SQLITE_CONFIG_WIN32_HEAPSIZE takes a 32-bit unsigned integer value
-** that specifies the maximum size of the created heap.
-**
-** [[SQLITE_CONFIG_PCACHE_HDRSZ]]
-**
SQLITE_CONFIG_PCACHE_HDRSZ
-**
^The SQLITE_CONFIG_PCACHE_HDRSZ option takes a single parameter which
-** is a pointer to an integer and writes into that integer the number of extra
-** bytes per page required for each page in [SQLITE_CONFIG_PAGECACHE].
-** The amount of extra space required can change depending on the compiler,
-** target platform, and SQLite version.
-**
-** [[SQLITE_CONFIG_PMASZ]]
-**
SQLITE_CONFIG_PMASZ
-**
^The SQLITE_CONFIG_PMASZ option takes a single parameter which
-** is an unsigned integer and sets the "Minimum PMA Size" for the multithreaded
-** sorter to that integer. The default minimum PMA Size is set by the
-** [SQLITE_SORTER_PMASZ] compile-time option. New threads are launched
-** to help with sort operations when multithreaded sorting
-** is enabled (using the [PRAGMA threads] command) and the amount of content
-** to be sorted exceeds the page size times the minimum of the
-** [PRAGMA cache_size] setting and this value.
-**
-** [[SQLITE_CONFIG_STMTJRNL_SPILL]]
-**
SQLITE_CONFIG_STMTJRNL_SPILL
-**
^The SQLITE_CONFIG_STMTJRNL_SPILL option takes a single parameter which
-** becomes the [statement journal] spill-to-disk threshold.
-** [Statement journals] are held in memory until their size (in bytes)
-** exceeds this threshold, at which point they are written to disk.
-** Or if the threshold is -1, statement journals are always held
-** exclusively in memory.
-** Since many statement journals never become large, setting the spill
-** threshold to a value such as 64KiB can greatly reduce the amount of
-** I/O required to support statement rollback.
-** The default value for this setting is controlled by the
-** [SQLITE_STMTJRNL_SPILL] compile-time option.
-**
-** [[SQLITE_CONFIG_SORTERREF_SIZE]]
-**
SQLITE_CONFIG_SORTERREF_SIZE
-**
The SQLITE_CONFIG_SORTERREF_SIZE option accepts a single parameter
-** of type (int) - the new value of the sorter-reference size threshold.
-** Usually, when SQLite uses an external sort to order records according
-** to an ORDER BY clause, all fields required by the caller are present in the
-** sorted records. However, if SQLite determines based on the declared type
-** of a table column that its values are likely to be very large - larger
-** than the configured sorter-reference size threshold - then a reference
-** is stored in each sorted record and the required column values loaded
-** from the database as records are returned in sorted order. The default
-** value for this option is to never use this optimization. Specifying a
-** negative value for this option restores the default behaviour.
-** This option is only available if SQLite is compiled with the
-** [SQLITE_ENABLE_SORTER_REFERENCES] compile-time option.
-**
-*/
-#define SQLITE_CONFIG_SINGLETHREAD 1 /* nil */
-#define SQLITE_CONFIG_MULTITHREAD 2 /* nil */
-#define SQLITE_CONFIG_SERIALIZED 3 /* nil */
-#define SQLITE_CONFIG_MALLOC 4 /* sqlite3_mem_methods* */
-#define SQLITE_CONFIG_GETMALLOC 5 /* sqlite3_mem_methods* */
-#define SQLITE_CONFIG_SCRATCH 6 /* No longer used */
-#define SQLITE_CONFIG_PAGECACHE 7 /* void*, int sz, int N */
-#define SQLITE_CONFIG_HEAP 8 /* void*, int nByte, int min */
-#define SQLITE_CONFIG_MEMSTATUS 9 /* boolean */
-#define SQLITE_CONFIG_MUTEX 10 /* sqlite3_mutex_methods* */
-#define SQLITE_CONFIG_GETMUTEX 11 /* sqlite3_mutex_methods* */
-/* previously SQLITE_CONFIG_CHUNKALLOC 12 which is now unused. */
-#define SQLITE_CONFIG_LOOKASIDE 13 /* int int */
-#define SQLITE_CONFIG_PCACHE 14 /* no-op */
-#define SQLITE_CONFIG_GETPCACHE 15 /* no-op */
-#define SQLITE_CONFIG_LOG 16 /* xFunc, void* */
-#define SQLITE_CONFIG_URI 17 /* int */
-#define SQLITE_CONFIG_PCACHE2 18 /* sqlite3_pcache_methods2* */
-#define SQLITE_CONFIG_GETPCACHE2 19 /* sqlite3_pcache_methods2* */
-#define SQLITE_CONFIG_COVERING_INDEX_SCAN 20 /* int */
-#define SQLITE_CONFIG_SQLLOG 21 /* xSqllog, void* */
-#define SQLITE_CONFIG_MMAP_SIZE 22 /* sqlite3_int64, sqlite3_int64 */
-#define SQLITE_CONFIG_WIN32_HEAPSIZE 23 /* int nByte */
-#define SQLITE_CONFIG_PCACHE_HDRSZ 24 /* int *psz */
-#define SQLITE_CONFIG_PMASZ 25 /* unsigned int szPma */
-#define SQLITE_CONFIG_STMTJRNL_SPILL 26 /* int nByte */
-#define SQLITE_CONFIG_SMALL_MALLOC 27 /* boolean */
-#define SQLITE_CONFIG_SORTERREF_SIZE 28 /* int nByte */
-
-/*
-** CAPI3REF: Database Connection Configuration Options
-**
-** These constants are the available integer configuration options that
-** can be passed as the second argument to the [sqlite3_db_config()] interface.
-**
-** New configuration options may be added in future releases of SQLite.
-** Existing configuration options might be discontinued. Applications
-** should check the return code from [sqlite3_db_config()] to make sure that
-** the call worked. ^The [sqlite3_db_config()] interface will return a
-** non-zero [error code] if a discontinued or unsupported configuration option
-** is invoked.
-**
-**
-**
SQLITE_DBCONFIG_LOOKASIDE
-**
^This option takes three additional arguments that determine the
-** [lookaside memory allocator] configuration for the [database connection].
-** ^The first argument (the third parameter to [sqlite3_db_config()] is a
-** pointer to a memory buffer to use for lookaside memory.
-** ^The first argument after the SQLITE_DBCONFIG_LOOKASIDE verb
-** may be NULL in which case SQLite will allocate the
-** lookaside buffer itself using [sqlite3_malloc()]. ^The second argument is the
-** size of each lookaside buffer slot. ^The third argument is the number of
-** slots. The size of the buffer in the first argument must be greater than
-** or equal to the product of the second and third arguments. The buffer
-** must be aligned to an 8-byte boundary. ^If the second argument to
-** SQLITE_DBCONFIG_LOOKASIDE is not a multiple of 8, it is internally
-** rounded down to the next smaller multiple of 8. ^(The lookaside memory
-** configuration for a database connection can only be changed when that
-** connection is not currently using lookaside memory, or in other words
-** when the "current value" returned by
-** [sqlite3_db_status](D,[SQLITE_CONFIG_LOOKASIDE],...) is zero.
-** Any attempt to change the lookaside memory configuration when lookaside
-** memory is in use leaves the configuration unchanged and returns
-** [SQLITE_BUSY].)^
-**
-**
SQLITE_DBCONFIG_ENABLE_FKEY
-**
^This option is used to enable or disable the enforcement of
-** [foreign key constraints]. There should be two additional arguments.
-** The first argument is an integer which is 0 to disable FK enforcement,
-** positive to enable FK enforcement or negative to leave FK enforcement
-** unchanged. The second parameter is a pointer to an integer into which
-** is written 0 or 1 to indicate whether FK enforcement is off or on
-** following this call. The second parameter may be a NULL pointer, in
-** which case the FK enforcement setting is not reported back.
-**
-**
SQLITE_DBCONFIG_ENABLE_TRIGGER
-**
^This option is used to enable or disable [CREATE TRIGGER | triggers].
-** There should be two additional arguments.
-** The first argument is an integer which is 0 to disable triggers,
-** positive to enable triggers or negative to leave the setting unchanged.
-** The second parameter is a pointer to an integer into which
-** is written 0 or 1 to indicate whether triggers are disabled or enabled
-** following this call. The second parameter may be a NULL pointer, in
-** which case the trigger setting is not reported back.
-**
-**
SQLITE_DBCONFIG_ENABLE_FTS3_TOKENIZER
-**
^This option is used to enable or disable the two-argument
-** version of the [fts3_tokenizer()] function which is part of the
-** [FTS3] full-text search engine extension.
-** There should be two additional arguments.
-** The first argument is an integer which is 0 to disable fts3_tokenizer() or
-** positive to enable fts3_tokenizer() or negative to leave the setting
-** unchanged.
-** The second parameter is a pointer to an integer into which
-** is written 0 or 1 to indicate whether fts3_tokenizer is disabled or enabled
-** following this call. The second parameter may be a NULL pointer, in
-** which case the new setting is not reported back.
-**
-**
SQLITE_DBCONFIG_ENABLE_LOAD_EXTENSION
-**
^This option is used to enable or disable the [sqlite3_load_extension()]
-** interface independently of the [load_extension()] SQL function.
-** The [sqlite3_enable_load_extension()] API enables or disables both the
-** C-API [sqlite3_load_extension()] and the SQL function [load_extension()].
-** There should be two additional arguments.
-** When the first argument to this interface is 1, then only the C-API is
-** enabled and the SQL function remains disabled. If the first argument to
-** this interface is 0, then both the C-API and the SQL function are disabled.
-** If the first argument is -1, then no changes are made to state of either the
-** C-API or the SQL function.
-** The second parameter is a pointer to an integer into which
-** is written 0 or 1 to indicate whether [sqlite3_load_extension()] interface
-** is disabled or enabled following this call. The second parameter may
-** be a NULL pointer, in which case the new setting is not reported back.
-**
-**
-**
SQLITE_DBCONFIG_MAINDBNAME
-**
^This option is used to change the name of the "main" database
-** schema. ^The sole argument is a pointer to a constant UTF8 string
-** which will become the new schema name in place of "main". ^SQLite
-** does not make a copy of the new main schema name string, so the application
-** must ensure that the argument passed into this DBCONFIG option is unchanged
-** until after the database connection closes.
-**
-**
-**
SQLITE_DBCONFIG_NO_CKPT_ON_CLOSE
-**
Usually, when a database in wal mode is closed or detached from a
-** database handle, SQLite checks if this will mean that there are now no
-** connections at all to the database. If so, it performs a checkpoint
-** operation before closing the connection. This option may be used to
-** override this behaviour. The first parameter passed to this operation
-** is an integer - positive to disable checkpoints-on-close, or zero (the
-** default) to enable them, and negative to leave the setting unchanged.
-** The second parameter is a pointer to an integer
-** into which is written 0 or 1 to indicate whether checkpoints-on-close
-** have been disabled - 0 if they are not disabled, 1 if they are.
-**
-**
-**
SQLITE_DBCONFIG_ENABLE_QPSG
-**
^(The SQLITE_DBCONFIG_ENABLE_QPSG option activates or deactivates
-** the [query planner stability guarantee] (QPSG). When the QPSG is active,
-** a single SQL query statement will always use the same algorithm regardless
-** of values of [bound parameters].)^ The QPSG disables some query optimizations
-** that look at the values of bound parameters, which can make some queries
-** slower. But the QPSG has the advantage of more predictable behavior. With
-** the QPSG active, SQLite will always use the same query plan in the field as
-** was used during testing in the lab.
-** The first argument to this setting is an integer which is 0 to disable
-** the QPSG, positive to enable QPSG, or negative to leave the setting
-** unchanged. The second parameter is a pointer to an integer into which
-** is written 0 or 1 to indicate whether the QPSG is disabled or enabled
-** following this call.
-**
-**
-**
SQLITE_DBCONFIG_TRIGGER_EQP
-**
By default, the output of EXPLAIN QUERY PLAN commands does not
-** include output for any operations performed by trigger programs. This
-** option is used to set or clear (the default) a flag that governs this
-** behavior. The first parameter passed to this operation is an integer -
-** positive to enable output for trigger programs, or zero to disable it,
-** or negative to leave the setting unchanged.
-** The second parameter is a pointer to an integer into which is written
-** 0 or 1 to indicate whether output-for-triggers has been disabled - 0 if
-** it is not disabled, 1 if it is.
-**
-**
-**
SQLITE_DBCONFIG_RESET_DATABASE
-**
Set the SQLITE_DBCONFIG_RESET_DATABASE flag and then run
-** [VACUUM] in order to reset a database back to an empty database
-** with no schema and no content. The following process works even for
-** a badly corrupted database file:
-**
-**
If the database connection is newly opened, make sure it has read the
-** database schema by preparing then discarding some query against the
-** database, or calling sqlite3_table_column_metadata(), ignoring any
-** errors. This step is only necessary if the application desires to keep
-** the database in WAL mode after the reset if it was in WAL mode before
-** the reset.
-**
-** Because resetting a database is destructive and irreversible, the
-** process requires the use of this obscure API and multiple steps to help
-** ensure that it does not happen by accident.
-**
-**
-*/
-#define SQLITE_DBCONFIG_MAINDBNAME 1000 /* const char* */
-#define SQLITE_DBCONFIG_LOOKASIDE 1001 /* void* int int */
-#define SQLITE_DBCONFIG_ENABLE_FKEY 1002 /* int int* */
-#define SQLITE_DBCONFIG_ENABLE_TRIGGER 1003 /* int int* */
-#define SQLITE_DBCONFIG_ENABLE_FTS3_TOKENIZER 1004 /* int int* */
-#define SQLITE_DBCONFIG_ENABLE_LOAD_EXTENSION 1005 /* int int* */
-#define SQLITE_DBCONFIG_NO_CKPT_ON_CLOSE 1006 /* int int* */
-#define SQLITE_DBCONFIG_ENABLE_QPSG 1007 /* int int* */
-#define SQLITE_DBCONFIG_TRIGGER_EQP 1008 /* int int* */
-#define SQLITE_DBCONFIG_RESET_DATABASE 1009 /* int int* */
-#define SQLITE_DBCONFIG_MAX 1009 /* Largest DBCONFIG */
-
-/*
-** CAPI3REF: Enable Or Disable Extended Result Codes
-** METHOD: sqlite3
-**
-** ^The sqlite3_extended_result_codes() routine enables or disables the
-** [extended result codes] feature of SQLite. ^The extended result
-** codes are disabled by default for historical compatibility.
-*/
-SQLITE_API int sqlite3_extended_result_codes(sqlite3*, int onoff);
-
-/*
-** CAPI3REF: Last Insert Rowid
-** METHOD: sqlite3
-**
-** ^Each entry in most SQLite tables (except for [WITHOUT ROWID] tables)
-** has a unique 64-bit signed
-** integer key called the [ROWID | "rowid"]. ^The rowid is always available
-** as an undeclared column named ROWID, OID, or _ROWID_ as long as those
-** names are not also used by explicitly declared columns. ^If
-** the table has a column of type [INTEGER PRIMARY KEY] then that column
-** is another alias for the rowid.
-**
-** ^The sqlite3_last_insert_rowid(D) interface usually returns the [rowid] of
-** the most recent successful [INSERT] into a rowid table or [virtual table]
-** on database connection D. ^Inserts into [WITHOUT ROWID] tables are not
-** recorded. ^If no successful [INSERT]s into rowid tables have ever occurred
-** on the database connection D, then sqlite3_last_insert_rowid(D) returns
-** zero.
-**
-** As well as being set automatically as rows are inserted into database
-** tables, the value returned by this function may be set explicitly by
-** [sqlite3_set_last_insert_rowid()]
-**
-** Some virtual table implementations may INSERT rows into rowid tables as
-** part of committing a transaction (e.g. to flush data accumulated in memory
-** to disk). In this case subsequent calls to this function return the rowid
-** associated with these internal INSERT operations, which leads to
-** unintuitive results. Virtual table implementations that do write to rowid
-** tables in this way can avoid this problem by restoring the original
-** rowid value using [sqlite3_set_last_insert_rowid()] before returning
-** control to the user.
-**
-** ^(If an [INSERT] occurs within a trigger then this routine will
-** return the [rowid] of the inserted row as long as the trigger is
-** running. Once the trigger program ends, the value returned
-** by this routine reverts to what it was before the trigger was fired.)^
-**
-** ^An [INSERT] that fails due to a constraint violation is not a
-** successful [INSERT] and does not change the value returned by this
-** routine. ^Thus INSERT OR FAIL, INSERT OR IGNORE, INSERT OR ROLLBACK,
-** and INSERT OR ABORT make no changes to the return value of this
-** routine when their insertion fails. ^(When INSERT OR REPLACE
-** encounters a constraint violation, it does not fail. The
-** INSERT continues to completion after deleting rows that caused
-** the constraint problem so INSERT OR REPLACE will always change
-** the return value of this interface.)^
-**
-** ^For the purposes of this routine, an [INSERT] is considered to
-** be successful even if it is subsequently rolled back.
-**
-** This function is accessible to SQL statements via the
-** [last_insert_rowid() SQL function].
-**
-** If a separate thread performs a new [INSERT] on the same
-** database connection while the [sqlite3_last_insert_rowid()]
-** function is running and thus changes the last insert [rowid],
-** then the value returned by [sqlite3_last_insert_rowid()] is
-** unpredictable and might not equal either the old or the new
-** last insert [rowid].
-*/
-SQLITE_API sqlite3_int64 sqlite3_last_insert_rowid(sqlite3*);
-
-/*
-** CAPI3REF: Set the Last Insert Rowid value.
-** METHOD: sqlite3
-**
-** The sqlite3_set_last_insert_rowid(D, R) method allows the application to
-** set the value returned by calling sqlite3_last_insert_rowid(D) to R
-** without inserting a row into the database.
-*/
-SQLITE_API void sqlite3_set_last_insert_rowid(sqlite3*,sqlite3_int64);
-
-/*
-** CAPI3REF: Count The Number Of Rows Modified
-** METHOD: sqlite3
-**
-** ^This function returns the number of rows modified, inserted or
-** deleted by the most recently completed INSERT, UPDATE or DELETE
-** statement on the database connection specified by the only parameter.
-** ^Executing any other type of SQL statement does not modify the value
-** returned by this function.
-**
-** ^Only changes made directly by the INSERT, UPDATE or DELETE statement are
-** considered - auxiliary changes caused by [CREATE TRIGGER | triggers],
-** [foreign key actions] or [REPLACE] constraint resolution are not counted.
-**
-** Changes to a view that are intercepted by
-** [INSTEAD OF trigger | INSTEAD OF triggers] are not counted. ^The value
-** returned by sqlite3_changes() immediately after an INSERT, UPDATE or
-** DELETE statement run on a view is always zero. Only changes made to real
-** tables are counted.
-**
-** Things are more complicated if the sqlite3_changes() function is
-** executed while a trigger program is running. This may happen if the
-** program uses the [changes() SQL function], or if some other callback
-** function invokes sqlite3_changes() directly. Essentially:
-**
-**
-**
^(Before entering a trigger program the value returned by
-** sqlite3_changes() function is saved. After the trigger program
-** has finished, the original value is restored.)^
-**
-**
^(Within a trigger program each INSERT, UPDATE and DELETE
-** statement sets the value returned by sqlite3_changes()
-** upon completion as normal. Of course, this value will not include
-** any changes performed by sub-triggers, as the sqlite3_changes()
-** value will be saved and restored after each sub-trigger has run.)^
-**
-**
-** ^This means that if the changes() SQL function (or similar) is used
-** by the first INSERT, UPDATE or DELETE statement within a trigger, it
-** returns the value as set when the calling statement began executing.
-** ^If it is used by the second or subsequent such statement within a trigger
-** program, the value returned reflects the number of rows modified by the
-** previous INSERT, UPDATE or DELETE statement within the same trigger.
-**
-** If a separate thread makes changes on the same database connection
-** while [sqlite3_changes()] is running then the value returned
-** is unpredictable and not meaningful.
-**
-** See also:
-**
-**
the [sqlite3_total_changes()] interface
-**
the [count_changes pragma]
-**
the [changes() SQL function]
-**
the [data_version pragma]
-**
-*/
-SQLITE_API int sqlite3_changes(sqlite3*);
-
-/*
-** CAPI3REF: Total Number Of Rows Modified
-** METHOD: sqlite3
-**
-** ^This function returns the total number of rows inserted, modified or
-** deleted by all [INSERT], [UPDATE] or [DELETE] statements completed
-** since the database connection was opened, including those executed as
-** part of trigger programs. ^Executing any other type of SQL statement
-** does not affect the value returned by sqlite3_total_changes().
-**
-** ^Changes made as part of [foreign key actions] are included in the
-** count, but those made as part of REPLACE constraint resolution are
-** not. ^Changes to a view that are intercepted by INSTEAD OF triggers
-** are not counted.
-**
-** This the [sqlite3_total_changes(D)] interface only reports the number
-** of rows that changed due to SQL statement run against database
-** connection D. Any changes by other database connections are ignored.
-** To detect changes against a database file from other database
-** connections use the [PRAGMA data_version] command or the
-** [SQLITE_FCNTL_DATA_VERSION] [file control].
-**
-** If a separate thread makes changes on the same database connection
-** while [sqlite3_total_changes()] is running then the value
-** returned is unpredictable and not meaningful.
-**
-** See also:
-**
-**
the [sqlite3_changes()] interface
-**
the [count_changes pragma]
-**
the [changes() SQL function]
-**
the [data_version pragma]
-**
the [SQLITE_FCNTL_DATA_VERSION] [file control]
-**
-*/
-SQLITE_API int sqlite3_total_changes(sqlite3*);
-
-/*
-** CAPI3REF: Interrupt A Long-Running Query
-** METHOD: sqlite3
-**
-** ^This function causes any pending database operation to abort and
-** return at its earliest opportunity. This routine is typically
-** called in response to a user action such as pressing "Cancel"
-** or Ctrl-C where the user wants a long query operation to halt
-** immediately.
-**
-** ^It is safe to call this routine from a thread different from the
-** thread that is currently running the database operation. But it
-** is not safe to call this routine with a [database connection] that
-** is closed or might close before sqlite3_interrupt() returns.
-**
-** ^If an SQL operation is very nearly finished at the time when
-** sqlite3_interrupt() is called, then it might not have an opportunity
-** to be interrupted and might continue to completion.
-**
-** ^An SQL operation that is interrupted will return [SQLITE_INTERRUPT].
-** ^If the interrupted SQL operation is an INSERT, UPDATE, or DELETE
-** that is inside an explicit transaction, then the entire transaction
-** will be rolled back automatically.
-**
-** ^The sqlite3_interrupt(D) call is in effect until all currently running
-** SQL statements on [database connection] D complete. ^Any new SQL statements
-** that are started after the sqlite3_interrupt() call and before the
-** running statements reaches zero are interrupted as if they had been
-** running prior to the sqlite3_interrupt() call. ^New SQL statements
-** that are started after the running statement count reaches zero are
-** not effected by the sqlite3_interrupt().
-** ^A call to sqlite3_interrupt(D) that occurs when there are no running
-** SQL statements is a no-op and has no effect on SQL statements
-** that are started after the sqlite3_interrupt() call returns.
-*/
-SQLITE_API void sqlite3_interrupt(sqlite3*);
-
-/*
-** CAPI3REF: Determine If An SQL Statement Is Complete
-**
-** These routines are useful during command-line input to determine if the
-** currently entered text seems to form a complete SQL statement or
-** if additional input is needed before sending the text into
-** SQLite for parsing. ^These routines return 1 if the input string
-** appears to be a complete SQL statement. ^A statement is judged to be
-** complete if it ends with a semicolon token and is not a prefix of a
-** well-formed CREATE TRIGGER statement. ^Semicolons that are embedded within
-** string literals or quoted identifier names or comments are not
-** independent tokens (they are part of the token in which they are
-** embedded) and thus do not count as a statement terminator. ^Whitespace
-** and comments that follow the final semicolon are ignored.
-**
-** ^These routines return 0 if the statement is incomplete. ^If a
-** memory allocation fails, then SQLITE_NOMEM is returned.
-**
-** ^These routines do not parse the SQL statements thus
-** will not detect syntactically incorrect SQL.
-**
-** ^(If SQLite has not been initialized using [sqlite3_initialize()] prior
-** to invoking sqlite3_complete16() then sqlite3_initialize() is invoked
-** automatically by sqlite3_complete16(). If that initialization fails,
-** then the return value from sqlite3_complete16() will be non-zero
-** regardless of whether or not the input SQL is complete.)^
-**
-** The input to [sqlite3_complete()] must be a zero-terminated
-** UTF-8 string.
-**
-** The input to [sqlite3_complete16()] must be a zero-terminated
-** UTF-16 string in native byte order.
-*/
-SQLITE_API int sqlite3_complete(const char *sql);
-SQLITE_API int sqlite3_complete16(const void *sql);
-
-/*
-** CAPI3REF: Register A Callback To Handle SQLITE_BUSY Errors
-** KEYWORDS: {busy-handler callback} {busy handler}
-** METHOD: sqlite3
-**
-** ^The sqlite3_busy_handler(D,X,P) routine sets a callback function X
-** that might be invoked with argument P whenever
-** an attempt is made to access a database table associated with
-** [database connection] D when another thread
-** or process has the table locked.
-** The sqlite3_busy_handler() interface is used to implement
-** [sqlite3_busy_timeout()] and [PRAGMA busy_timeout].
-**
-** ^If the busy callback is NULL, then [SQLITE_BUSY]
-** is returned immediately upon encountering the lock. ^If the busy callback
-** is not NULL, then the callback might be invoked with two arguments.
-**
-** ^The first argument to the busy handler is a copy of the void* pointer which
-** is the third argument to sqlite3_busy_handler(). ^The second argument to
-** the busy handler callback is the number of times that the busy handler has
-** been invoked previously for the same locking event. ^If the
-** busy callback returns 0, then no additional attempts are made to
-** access the database and [SQLITE_BUSY] is returned
-** to the application.
-** ^If the callback returns non-zero, then another attempt
-** is made to access the database and the cycle repeats.
-**
-** The presence of a busy handler does not guarantee that it will be invoked
-** when there is lock contention. ^If SQLite determines that invoking the busy
-** handler could result in a deadlock, it will go ahead and return [SQLITE_BUSY]
-** to the application instead of invoking the
-** busy handler.
-** Consider a scenario where one process is holding a read lock that
-** it is trying to promote to a reserved lock and
-** a second process is holding a reserved lock that it is trying
-** to promote to an exclusive lock. The first process cannot proceed
-** because it is blocked by the second and the second process cannot
-** proceed because it is blocked by the first. If both processes
-** invoke the busy handlers, neither will make any progress. Therefore,
-** SQLite returns [SQLITE_BUSY] for the first process, hoping that this
-** will induce the first process to release its read lock and allow
-** the second process to proceed.
-**
-** ^The default busy callback is NULL.
-**
-** ^(There can only be a single busy handler defined for each
-** [database connection]. Setting a new busy handler clears any
-** previously set handler.)^ ^Note that calling [sqlite3_busy_timeout()]
-** or evaluating [PRAGMA busy_timeout=N] will change the
-** busy handler and thus clear any previously set busy handler.
-**
-** The busy callback should not take any actions which modify the
-** database connection that invoked the busy handler. In other words,
-** the busy handler is not reentrant. Any such actions
-** result in undefined behavior.
-**
-** A busy handler must not close the database connection
-** or [prepared statement] that invoked the busy handler.
-*/
-SQLITE_API int sqlite3_busy_handler(sqlite3*,int(*)(void*,int),void*);
-
-/*
-** CAPI3REF: Set A Busy Timeout
-** METHOD: sqlite3
-**
-** ^This routine sets a [sqlite3_busy_handler | busy handler] that sleeps
-** for a specified amount of time when a table is locked. ^The handler
-** will sleep multiple times until at least "ms" milliseconds of sleeping
-** have accumulated. ^After at least "ms" milliseconds of sleeping,
-** the handler returns 0 which causes [sqlite3_step()] to return
-** [SQLITE_BUSY].
-**
-** ^Calling this routine with an argument less than or equal to zero
-** turns off all busy handlers.
-**
-** ^(There can only be a single busy handler for a particular
-** [database connection] at any given moment. If another busy handler
-** was defined (using [sqlite3_busy_handler()]) prior to calling
-** this routine, that other busy handler is cleared.)^
-**
-** See also: [PRAGMA busy_timeout]
-*/
-SQLITE_API int sqlite3_busy_timeout(sqlite3*, int ms);
-
-/*
-** CAPI3REF: Convenience Routines For Running Queries
-** METHOD: sqlite3
-**
-** This is a legacy interface that is preserved for backwards compatibility.
-** Use of this interface is not recommended.
-**
-** Definition: A result table is memory data structure created by the
-** [sqlite3_get_table()] interface. A result table records the
-** complete query results from one or more queries.
-**
-** The table conceptually has a number of rows and columns. But
-** these numbers are not part of the result table itself. These
-** numbers are obtained separately. Let N be the number of rows
-** and M be the number of columns.
-**
-** A result table is an array of pointers to zero-terminated UTF-8 strings.
-** There are (N+1)*M elements in the array. The first M pointers point
-** to zero-terminated strings that contain the names of the columns.
-** The remaining entries all point to query results. NULL values result
-** in NULL pointers. All other values are in their UTF-8 zero-terminated
-** string representation as returned by [sqlite3_column_text()].
-**
-** A result table might consist of one or more memory allocations.
-** It is not safe to pass a result table directly to [sqlite3_free()].
-** A result table should be deallocated using [sqlite3_free_table()].
-**
-** ^(As an example of the result table format, suppose a query result
-** is as follows:
-**
-**
-** Name | Age
-** -----------------------
-** Alice | 43
-** Bob | 28
-** Cindy | 21
-**
-**
-** There are two column (M==2) and three rows (N==3). Thus the
-** result table has 8 entries. Suppose the result table is stored
-** in an array names azResult. Then azResult holds this content:
-**
-**
)^
-**
-** ^The sqlite3_get_table() function evaluates one or more
-** semicolon-separated SQL statements in the zero-terminated UTF-8
-** string of its 2nd parameter and returns a result table to the
-** pointer given in its 3rd parameter.
-**
-** After the application has finished with the result from sqlite3_get_table(),
-** it must pass the result table pointer to sqlite3_free_table() in order to
-** release the memory that was malloced. Because of the way the
-** [sqlite3_malloc()] happens within sqlite3_get_table(), the calling
-** function must not try to call [sqlite3_free()] directly. Only
-** [sqlite3_free_table()] is able to release the memory properly and safely.
-**
-** The sqlite3_get_table() interface is implemented as a wrapper around
-** [sqlite3_exec()]. The sqlite3_get_table() routine does not have access
-** to any internal data structures of SQLite. It uses only the public
-** interface defined here. As a consequence, errors that occur in the
-** wrapper layer outside of the internal [sqlite3_exec()] call are not
-** reflected in subsequent calls to [sqlite3_errcode()] or
-** [sqlite3_errmsg()].
-*/
-SQLITE_API int sqlite3_get_table(
- sqlite3 *db, /* An open database */
- const char *zSql, /* SQL to be evaluated */
- char ***pazResult, /* Results of the query */
- int *pnRow, /* Number of result rows written here */
- int *pnColumn, /* Number of result columns written here */
- char **pzErrmsg /* Error msg written here */
-);
-SQLITE_API void sqlite3_free_table(char **result);
-
-/*
-** CAPI3REF: Formatted String Printing Functions
-**
-** These routines are work-alikes of the "printf()" family of functions
-** from the standard C library.
-** These routines understand most of the common formatting options from
-** the standard library printf()
-** plus some additional non-standard formats ([%q], [%Q], [%w], and [%z]).
-** See the [built-in printf()] documentation for details.
-**
-** ^The sqlite3_mprintf() and sqlite3_vmprintf() routines write their
-** results into memory obtained from [sqlite3_malloc64()].
-** The strings returned by these two routines should be
-** released by [sqlite3_free()]. ^Both routines return a
-** NULL pointer if [sqlite3_malloc64()] is unable to allocate enough
-** memory to hold the resulting string.
-**
-** ^(The sqlite3_snprintf() routine is similar to "snprintf()" from
-** the standard C library. The result is written into the
-** buffer supplied as the second parameter whose size is given by
-** the first parameter. Note that the order of the
-** first two parameters is reversed from snprintf().)^ This is an
-** historical accident that cannot be fixed without breaking
-** backwards compatibility. ^(Note also that sqlite3_snprintf()
-** returns a pointer to its buffer instead of the number of
-** characters actually written into the buffer.)^ We admit that
-** the number of characters written would be a more useful return
-** value but we cannot change the implementation of sqlite3_snprintf()
-** now without breaking compatibility.
-**
-** ^As long as the buffer size is greater than zero, sqlite3_snprintf()
-** guarantees that the buffer is always zero-terminated. ^The first
-** parameter "n" is the total size of the buffer, including space for
-** the zero terminator. So the longest string that can be completely
-** written will be n-1 characters.
-**
-** ^The sqlite3_vsnprintf() routine is a varargs version of sqlite3_snprintf().
-**
-** See also: [built-in printf()], [printf() SQL function]
-*/
-SQLITE_API char *sqlite3_mprintf(const char*,...);
-SQLITE_API char *sqlite3_vmprintf(const char*, va_list);
-SQLITE_API char *sqlite3_snprintf(int,char*,const char*, ...);
-SQLITE_API char *sqlite3_vsnprintf(int,char*,const char*, va_list);
-
-/*
-** CAPI3REF: Memory Allocation Subsystem
-**
-** The SQLite core uses these three routines for all of its own
-** internal memory allocation needs. "Core" in the previous sentence
-** does not include operating-system specific VFS implementation. The
-** Windows VFS uses native malloc() and free() for some operations.
-**
-** ^The sqlite3_malloc() routine returns a pointer to a block
-** of memory at least N bytes in length, where N is the parameter.
-** ^If sqlite3_malloc() is unable to obtain sufficient free
-** memory, it returns a NULL pointer. ^If the parameter N to
-** sqlite3_malloc() is zero or negative then sqlite3_malloc() returns
-** a NULL pointer.
-**
-** ^The sqlite3_malloc64(N) routine works just like
-** sqlite3_malloc(N) except that N is an unsigned 64-bit integer instead
-** of a signed 32-bit integer.
-**
-** ^Calling sqlite3_free() with a pointer previously returned
-** by sqlite3_malloc() or sqlite3_realloc() releases that memory so
-** that it might be reused. ^The sqlite3_free() routine is
-** a no-op if is called with a NULL pointer. Passing a NULL pointer
-** to sqlite3_free() is harmless. After being freed, memory
-** should neither be read nor written. Even reading previously freed
-** memory might result in a segmentation fault or other severe error.
-** Memory corruption, a segmentation fault, or other severe error
-** might result if sqlite3_free() is called with a non-NULL pointer that
-** was not obtained from sqlite3_malloc() or sqlite3_realloc().
-**
-** ^The sqlite3_realloc(X,N) interface attempts to resize a
-** prior memory allocation X to be at least N bytes.
-** ^If the X parameter to sqlite3_realloc(X,N)
-** is a NULL pointer then its behavior is identical to calling
-** sqlite3_malloc(N).
-** ^If the N parameter to sqlite3_realloc(X,N) is zero or
-** negative then the behavior is exactly the same as calling
-** sqlite3_free(X).
-** ^sqlite3_realloc(X,N) returns a pointer to a memory allocation
-** of at least N bytes in size or NULL if insufficient memory is available.
-** ^If M is the size of the prior allocation, then min(N,M) bytes
-** of the prior allocation are copied into the beginning of buffer returned
-** by sqlite3_realloc(X,N) and the prior allocation is freed.
-** ^If sqlite3_realloc(X,N) returns NULL and N is positive, then the
-** prior allocation is not freed.
-**
-** ^The sqlite3_realloc64(X,N) interfaces works the same as
-** sqlite3_realloc(X,N) except that N is a 64-bit unsigned integer instead
-** of a 32-bit signed integer.
-**
-** ^If X is a memory allocation previously obtained from sqlite3_malloc(),
-** sqlite3_malloc64(), sqlite3_realloc(), or sqlite3_realloc64(), then
-** sqlite3_msize(X) returns the size of that memory allocation in bytes.
-** ^The value returned by sqlite3_msize(X) might be larger than the number
-** of bytes requested when X was allocated. ^If X is a NULL pointer then
-** sqlite3_msize(X) returns zero. If X points to something that is not
-** the beginning of memory allocation, or if it points to a formerly
-** valid memory allocation that has now been freed, then the behavior
-** of sqlite3_msize(X) is undefined and possibly harmful.
-**
-** ^The memory returned by sqlite3_malloc(), sqlite3_realloc(),
-** sqlite3_malloc64(), and sqlite3_realloc64()
-** is always aligned to at least an 8 byte boundary, or to a
-** 4 byte boundary if the [SQLITE_4_BYTE_ALIGNED_MALLOC] compile-time
-** option is used.
-**
-** In SQLite version 3.5.0 and 3.5.1, it was possible to define
-** the SQLITE_OMIT_MEMORY_ALLOCATION which would cause the built-in
-** implementation of these routines to be omitted. That capability
-** is no longer provided. Only built-in memory allocators can be used.
-**
-** Prior to SQLite version 3.7.10, the Windows OS interface layer called
-** the system malloc() and free() directly when converting
-** filenames between the UTF-8 encoding used by SQLite
-** and whatever filename encoding is used by the particular Windows
-** installation. Memory allocation errors were detected, but
-** they were reported back as [SQLITE_CANTOPEN] or
-** [SQLITE_IOERR] rather than [SQLITE_NOMEM].
-**
-** The pointer arguments to [sqlite3_free()] and [sqlite3_realloc()]
-** must be either NULL or else pointers obtained from a prior
-** invocation of [sqlite3_malloc()] or [sqlite3_realloc()] that have
-** not yet been released.
-**
-** The application must not read or write any part of
-** a block of memory after it has been released using
-** [sqlite3_free()] or [sqlite3_realloc()].
-*/
-SQLITE_API void *sqlite3_malloc(int);
-SQLITE_API void *sqlite3_malloc64(sqlite3_uint64);
-SQLITE_API void *sqlite3_realloc(void*, int);
-SQLITE_API void *sqlite3_realloc64(void*, sqlite3_uint64);
-SQLITE_API void sqlite3_free(void*);
-SQLITE_API sqlite3_uint64 sqlite3_msize(void*);
-
-/*
-** CAPI3REF: Memory Allocator Statistics
-**
-** SQLite provides these two interfaces for reporting on the status
-** of the [sqlite3_malloc()], [sqlite3_free()], and [sqlite3_realloc()]
-** routines, which form the built-in memory allocation subsystem.
-**
-** ^The [sqlite3_memory_used()] routine returns the number of bytes
-** of memory currently outstanding (malloced but not freed).
-** ^The [sqlite3_memory_highwater()] routine returns the maximum
-** value of [sqlite3_memory_used()] since the high-water mark
-** was last reset. ^The values returned by [sqlite3_memory_used()] and
-** [sqlite3_memory_highwater()] include any overhead
-** added by SQLite in its implementation of [sqlite3_malloc()],
-** but not overhead added by the any underlying system library
-** routines that [sqlite3_malloc()] may call.
-**
-** ^The memory high-water mark is reset to the current value of
-** [sqlite3_memory_used()] if and only if the parameter to
-** [sqlite3_memory_highwater()] is true. ^The value returned
-** by [sqlite3_memory_highwater(1)] is the high-water mark
-** prior to the reset.
-*/
-SQLITE_API sqlite3_int64 sqlite3_memory_used(void);
-SQLITE_API sqlite3_int64 sqlite3_memory_highwater(int resetFlag);
-
-/*
-** CAPI3REF: Pseudo-Random Number Generator
-**
-** SQLite contains a high-quality pseudo-random number generator (PRNG) used to
-** select random [ROWID | ROWIDs] when inserting new records into a table that
-** already uses the largest possible [ROWID]. The PRNG is also used for
-** the build-in random() and randomblob() SQL functions. This interface allows
-** applications to access the same PRNG for other purposes.
-**
-** ^A call to this routine stores N bytes of randomness into buffer P.
-** ^The P parameter can be a NULL pointer.
-**
-** ^If this routine has not been previously called or if the previous
-** call had N less than one or a NULL pointer for P, then the PRNG is
-** seeded using randomness obtained from the xRandomness method of
-** the default [sqlite3_vfs] object.
-** ^If the previous call to this routine had an N of 1 or more and a
-** non-NULL P then the pseudo-randomness is generated
-** internally and without recourse to the [sqlite3_vfs] xRandomness
-** method.
-*/
-SQLITE_API void sqlite3_randomness(int N, void *P);
-
-/*
-** CAPI3REF: Compile-Time Authorization Callbacks
-** METHOD: sqlite3
-** KEYWORDS: {authorizer callback}
-**
-** ^This routine registers an authorizer callback with a particular
-** [database connection], supplied in the first argument.
-** ^The authorizer callback is invoked as SQL statements are being compiled
-** by [sqlite3_prepare()] or its variants [sqlite3_prepare_v2()],
-** [sqlite3_prepare_v3()], [sqlite3_prepare16()], [sqlite3_prepare16_v2()],
-** and [sqlite3_prepare16_v3()]. ^At various
-** points during the compilation process, as logic is being created
-** to perform various actions, the authorizer callback is invoked to
-** see if those actions are allowed. ^The authorizer callback should
-** return [SQLITE_OK] to allow the action, [SQLITE_IGNORE] to disallow the
-** specific action but allow the SQL statement to continue to be
-** compiled, or [SQLITE_DENY] to cause the entire SQL statement to be
-** rejected with an error. ^If the authorizer callback returns
-** any value other than [SQLITE_IGNORE], [SQLITE_OK], or [SQLITE_DENY]
-** then the [sqlite3_prepare_v2()] or equivalent call that triggered
-** the authorizer will fail with an error message.
-**
-** When the callback returns [SQLITE_OK], that means the operation
-** requested is ok. ^When the callback returns [SQLITE_DENY], the
-** [sqlite3_prepare_v2()] or equivalent call that triggered the
-** authorizer will fail with an error message explaining that
-** access is denied.
-**
-** ^The first parameter to the authorizer callback is a copy of the third
-** parameter to the sqlite3_set_authorizer() interface. ^The second parameter
-** to the callback is an integer [SQLITE_COPY | action code] that specifies
-** the particular action to be authorized. ^The third through sixth parameters
-** to the callback are either NULL pointers or zero-terminated strings
-** that contain additional details about the action to be authorized.
-** Applications must always be prepared to encounter a NULL pointer in any
-** of the third through the sixth parameters of the authorization callback.
-**
-** ^If the action code is [SQLITE_READ]
-** and the callback returns [SQLITE_IGNORE] then the
-** [prepared statement] statement is constructed to substitute
-** a NULL value in place of the table column that would have
-** been read if [SQLITE_OK] had been returned. The [SQLITE_IGNORE]
-** return can be used to deny an untrusted user access to individual
-** columns of a table.
-** ^When a table is referenced by a [SELECT] but no column values are
-** extracted from that table (for example in a query like
-** "SELECT count(*) FROM tab") then the [SQLITE_READ] authorizer callback
-** is invoked once for that table with a column name that is an empty string.
-** ^If the action code is [SQLITE_DELETE] and the callback returns
-** [SQLITE_IGNORE] then the [DELETE] operation proceeds but the
-** [truncate optimization] is disabled and all rows are deleted individually.
-**
-** An authorizer is used when [sqlite3_prepare | preparing]
-** SQL statements from an untrusted source, to ensure that the SQL statements
-** do not try to access data they are not allowed to see, or that they do not
-** try to execute malicious statements that damage the database. For
-** example, an application may allow a user to enter arbitrary
-** SQL queries for evaluation by a database. But the application does
-** not want the user to be able to make arbitrary changes to the
-** database. An authorizer could then be put in place while the
-** user-entered SQL is being [sqlite3_prepare | prepared] that
-** disallows everything except [SELECT] statements.
-**
-** Applications that need to process SQL from untrusted sources
-** might also consider lowering resource limits using [sqlite3_limit()]
-** and limiting database size using the [max_page_count] [PRAGMA]
-** in addition to using an authorizer.
-**
-** ^(Only a single authorizer can be in place on a database connection
-** at a time. Each call to sqlite3_set_authorizer overrides the
-** previous call.)^ ^Disable the authorizer by installing a NULL callback.
-** The authorizer is disabled by default.
-**
-** The authorizer callback must not do anything that will modify
-** the database connection that invoked the authorizer callback.
-** Note that [sqlite3_prepare_v2()] and [sqlite3_step()] both modify their
-** database connections for the meaning of "modify" in this paragraph.
-**
-** ^When [sqlite3_prepare_v2()] is used to prepare a statement, the
-** statement might be re-prepared during [sqlite3_step()] due to a
-** schema change. Hence, the application should ensure that the
-** correct authorizer callback remains in place during the [sqlite3_step()].
-**
-** ^Note that the authorizer callback is invoked only during
-** [sqlite3_prepare()] or its variants. Authorization is not
-** performed during statement evaluation in [sqlite3_step()], unless
-** as stated in the previous paragraph, sqlite3_step() invokes
-** sqlite3_prepare_v2() to reprepare a statement after a schema change.
-*/
-SQLITE_API int sqlite3_set_authorizer(
- sqlite3*,
- int (*xAuth)(void*,int,const char*,const char*,const char*,const char*),
- void *pUserData
-);
-
-/*
-** CAPI3REF: Authorizer Return Codes
-**
-** The [sqlite3_set_authorizer | authorizer callback function] must
-** return either [SQLITE_OK] or one of these two constants in order
-** to signal SQLite whether or not the action is permitted. See the
-** [sqlite3_set_authorizer | authorizer documentation] for additional
-** information.
-**
-** Note that SQLITE_IGNORE is also used as a [conflict resolution mode]
-** returned from the [sqlite3_vtab_on_conflict()] interface.
-*/
-#define SQLITE_DENY 1 /* Abort the SQL statement with an error */
-#define SQLITE_IGNORE 2 /* Don't allow access, but don't generate an error */
-
-/*
-** CAPI3REF: Authorizer Action Codes
-**
-** The [sqlite3_set_authorizer()] interface registers a callback function
-** that is invoked to authorize certain SQL statement actions. The
-** second parameter to the callback is an integer code that specifies
-** what action is being authorized. These are the integer action codes that
-** the authorizer callback may be passed.
-**
-** These action code values signify what kind of operation is to be
-** authorized. The 3rd and 4th parameters to the authorization
-** callback function will be parameters or NULL depending on which of these
-** codes is used as the second parameter. ^(The 5th parameter to the
-** authorizer callback is the name of the database ("main", "temp",
-** etc.) if applicable.)^ ^The 6th parameter to the authorizer callback
-** is the name of the inner-most trigger or view that is responsible for
-** the access attempt or NULL if this access attempt is directly from
-** top-level SQL code.
-*/
-/******************************************* 3rd ************ 4th ***********/
-#define SQLITE_CREATE_INDEX 1 /* Index Name Table Name */
-#define SQLITE_CREATE_TABLE 2 /* Table Name NULL */
-#define SQLITE_CREATE_TEMP_INDEX 3 /* Index Name Table Name */
-#define SQLITE_CREATE_TEMP_TABLE 4 /* Table Name NULL */
-#define SQLITE_CREATE_TEMP_TRIGGER 5 /* Trigger Name Table Name */
-#define SQLITE_CREATE_TEMP_VIEW 6 /* View Name NULL */
-#define SQLITE_CREATE_TRIGGER 7 /* Trigger Name Table Name */
-#define SQLITE_CREATE_VIEW 8 /* View Name NULL */
-#define SQLITE_DELETE 9 /* Table Name NULL */
-#define SQLITE_DROP_INDEX 10 /* Index Name Table Name */
-#define SQLITE_DROP_TABLE 11 /* Table Name NULL */
-#define SQLITE_DROP_TEMP_INDEX 12 /* Index Name Table Name */
-#define SQLITE_DROP_TEMP_TABLE 13 /* Table Name NULL */
-#define SQLITE_DROP_TEMP_TRIGGER 14 /* Trigger Name Table Name */
-#define SQLITE_DROP_TEMP_VIEW 15 /* View Name NULL */
-#define SQLITE_DROP_TRIGGER 16 /* Trigger Name Table Name */
-#define SQLITE_DROP_VIEW 17 /* View Name NULL */
-#define SQLITE_INSERT 18 /* Table Name NULL */
-#define SQLITE_PRAGMA 19 /* Pragma Name 1st arg or NULL */
-#define SQLITE_READ 20 /* Table Name Column Name */
-#define SQLITE_SELECT 21 /* NULL NULL */
-#define SQLITE_TRANSACTION 22 /* Operation NULL */
-#define SQLITE_UPDATE 23 /* Table Name Column Name */
-#define SQLITE_ATTACH 24 /* Filename NULL */
-#define SQLITE_DETACH 25 /* Database Name NULL */
-#define SQLITE_ALTER_TABLE 26 /* Database Name Table Name */
-#define SQLITE_REINDEX 27 /* Index Name NULL */
-#define SQLITE_ANALYZE 28 /* Table Name NULL */
-#define SQLITE_CREATE_VTABLE 29 /* Table Name Module Name */
-#define SQLITE_DROP_VTABLE 30 /* Table Name Module Name */
-#define SQLITE_FUNCTION 31 /* NULL Function Name */
-#define SQLITE_SAVEPOINT 32 /* Operation Savepoint Name */
-#define SQLITE_COPY 0 /* No longer used */
-#define SQLITE_RECURSIVE 33 /* NULL NULL */
-
-/*
-** CAPI3REF: Tracing And Profiling Functions
-** METHOD: sqlite3
-**
-** These routines are deprecated. Use the [sqlite3_trace_v2()] interface
-** instead of the routines described here.
-**
-** These routines register callback functions that can be used for
-** tracing and profiling the execution of SQL statements.
-**
-** ^The callback function registered by sqlite3_trace() is invoked at
-** various times when an SQL statement is being run by [sqlite3_step()].
-** ^The sqlite3_trace() callback is invoked with a UTF-8 rendering of the
-** SQL statement text as the statement first begins executing.
-** ^(Additional sqlite3_trace() callbacks might occur
-** as each triggered subprogram is entered. The callbacks for triggers
-** contain a UTF-8 SQL comment that identifies the trigger.)^
-**
-** The [SQLITE_TRACE_SIZE_LIMIT] compile-time option can be used to limit
-** the length of [bound parameter] expansion in the output of sqlite3_trace().
-**
-** ^The callback function registered by sqlite3_profile() is invoked
-** as each SQL statement finishes. ^The profile callback contains
-** the original statement text and an estimate of wall-clock time
-** of how long that statement took to run. ^The profile callback
-** time is in units of nanoseconds, however the current implementation
-** is only capable of millisecond resolution so the six least significant
-** digits in the time are meaningless. Future versions of SQLite
-** might provide greater resolution on the profiler callback. The
-** sqlite3_profile() function is considered experimental and is
-** subject to change in future versions of SQLite.
-*/
-SQLITE_API SQLITE_DEPRECATED void *sqlite3_trace(sqlite3*,
- void(*xTrace)(void*,const char*), void*);
-SQLITE_API SQLITE_DEPRECATED void *sqlite3_profile(sqlite3*,
- void(*xProfile)(void*,const char*,sqlite3_uint64), void*);
-
-/*
-** CAPI3REF: SQL Trace Event Codes
-** KEYWORDS: SQLITE_TRACE
-**
-** These constants identify classes of events that can be monitored
-** using the [sqlite3_trace_v2()] tracing logic. The M argument
-** to [sqlite3_trace_v2(D,M,X,P)] is an OR-ed combination of one or more of
-** the following constants. ^The first argument to the trace callback
-** is one of the following constants.
-**
-** New tracing constants may be added in future releases.
-**
-** ^A trace callback has four arguments: xCallback(T,C,P,X).
-** ^The T argument is one of the integer type codes above.
-** ^The C argument is a copy of the context pointer passed in as the
-** fourth argument to [sqlite3_trace_v2()].
-** The P and X arguments are pointers whose meanings depend on T.
-**
-**
-** [[SQLITE_TRACE_STMT]]
SQLITE_TRACE_STMT
-**
^An SQLITE_TRACE_STMT callback is invoked when a prepared statement
-** first begins running and possibly at other times during the
-** execution of the prepared statement, such as at the start of each
-** trigger subprogram. ^The P argument is a pointer to the
-** [prepared statement]. ^The X argument is a pointer to a string which
-** is the unexpanded SQL text of the prepared statement or an SQL comment
-** that indicates the invocation of a trigger. ^The callback can compute
-** the same text that would have been returned by the legacy [sqlite3_trace()]
-** interface by using the X argument when X begins with "--" and invoking
-** [sqlite3_expanded_sql(P)] otherwise.
-**
-** [[SQLITE_TRACE_PROFILE]]
SQLITE_TRACE_PROFILE
-**
^An SQLITE_TRACE_PROFILE callback provides approximately the same
-** information as is provided by the [sqlite3_profile()] callback.
-** ^The P argument is a pointer to the [prepared statement] and the
-** X argument points to a 64-bit integer which is the estimated of
-** the number of nanosecond that the prepared statement took to run.
-** ^The SQLITE_TRACE_PROFILE callback is invoked when the statement finishes.
-**
-** [[SQLITE_TRACE_ROW]]
SQLITE_TRACE_ROW
-**
^An SQLITE_TRACE_ROW callback is invoked whenever a prepared
-** statement generates a single row of result.
-** ^The P argument is a pointer to the [prepared statement] and the
-** X argument is unused.
-**
-** [[SQLITE_TRACE_CLOSE]]
SQLITE_TRACE_CLOSE
-**
^An SQLITE_TRACE_CLOSE callback is invoked when a database
-** connection closes.
-** ^The P argument is a pointer to the [database connection] object
-** and the X argument is unused.
-**
-*/
-#define SQLITE_TRACE_STMT 0x01
-#define SQLITE_TRACE_PROFILE 0x02
-#define SQLITE_TRACE_ROW 0x04
-#define SQLITE_TRACE_CLOSE 0x08
-
-/*
-** CAPI3REF: SQL Trace Hook
-** METHOD: sqlite3
-**
-** ^The sqlite3_trace_v2(D,M,X,P) interface registers a trace callback
-** function X against [database connection] D, using property mask M
-** and context pointer P. ^If the X callback is
-** NULL or if the M mask is zero, then tracing is disabled. The
-** M argument should be the bitwise OR-ed combination of
-** zero or more [SQLITE_TRACE] constants.
-**
-** ^Each call to either sqlite3_trace() or sqlite3_trace_v2() overrides
-** (cancels) any prior calls to sqlite3_trace() or sqlite3_trace_v2().
-**
-** ^The X callback is invoked whenever any of the events identified by
-** mask M occur. ^The integer return value from the callback is currently
-** ignored, though this may change in future releases. Callback
-** implementations should return zero to ensure future compatibility.
-**
-** ^A trace callback is invoked with four arguments: callback(T,C,P,X).
-** ^The T argument is one of the [SQLITE_TRACE]
-** constants to indicate why the callback was invoked.
-** ^The C argument is a copy of the context pointer.
-** The P and X arguments are pointers whose meanings depend on T.
-**
-** The sqlite3_trace_v2() interface is intended to replace the legacy
-** interfaces [sqlite3_trace()] and [sqlite3_profile()], both of which
-** are deprecated.
-*/
-SQLITE_API int sqlite3_trace_v2(
- sqlite3*,
- unsigned uMask,
- int(*xCallback)(unsigned,void*,void*,void*),
- void *pCtx
-);
-
-/*
-** CAPI3REF: Query Progress Callbacks
-** METHOD: sqlite3
-**
-** ^The sqlite3_progress_handler(D,N,X,P) interface causes the callback
-** function X to be invoked periodically during long running calls to
-** [sqlite3_exec()], [sqlite3_step()] and [sqlite3_get_table()] for
-** database connection D. An example use for this
-** interface is to keep a GUI updated during a large query.
-**
-** ^The parameter P is passed through as the only parameter to the
-** callback function X. ^The parameter N is the approximate number of
-** [virtual machine instructions] that are evaluated between successive
-** invocations of the callback X. ^If N is less than one then the progress
-** handler is disabled.
-**
-** ^Only a single progress handler may be defined at one time per
-** [database connection]; setting a new progress handler cancels the
-** old one. ^Setting parameter X to NULL disables the progress handler.
-** ^The progress handler is also disabled by setting N to a value less
-** than 1.
-**
-** ^If the progress callback returns non-zero, the operation is
-** interrupted. This feature can be used to implement a
-** "Cancel" button on a GUI progress dialog box.
-**
-** The progress handler callback must not do anything that will modify
-** the database connection that invoked the progress handler.
-** Note that [sqlite3_prepare_v2()] and [sqlite3_step()] both modify their
-** database connections for the meaning of "modify" in this paragraph.
-**
-*/
-SQLITE_API void sqlite3_progress_handler(sqlite3*, int, int(*)(void*), void*);
-
-/*
-** CAPI3REF: Opening A New Database Connection
-** CONSTRUCTOR: sqlite3
-**
-** ^These routines open an SQLite database file as specified by the
-** filename argument. ^The filename argument is interpreted as UTF-8 for
-** sqlite3_open() and sqlite3_open_v2() and as UTF-16 in the native byte
-** order for sqlite3_open16(). ^(A [database connection] handle is usually
-** returned in *ppDb, even if an error occurs. The only exception is that
-** if SQLite is unable to allocate memory to hold the [sqlite3] object,
-** a NULL will be written into *ppDb instead of a pointer to the [sqlite3]
-** object.)^ ^(If the database is opened (and/or created) successfully, then
-** [SQLITE_OK] is returned. Otherwise an [error code] is returned.)^ ^The
-** [sqlite3_errmsg()] or [sqlite3_errmsg16()] routines can be used to obtain
-** an English language description of the error following a failure of any
-** of the sqlite3_open() routines.
-**
-** ^The default encoding will be UTF-8 for databases created using
-** sqlite3_open() or sqlite3_open_v2(). ^The default encoding for databases
-** created using sqlite3_open16() will be UTF-16 in the native byte order.
-**
-** Whether or not an error occurs when it is opened, resources
-** associated with the [database connection] handle should be released by
-** passing it to [sqlite3_close()] when it is no longer required.
-**
-** The sqlite3_open_v2() interface works like sqlite3_open()
-** except that it accepts two additional parameters for additional control
-** over the new database connection. ^(The flags parameter to
-** sqlite3_open_v2() can take one of
-** the following three values, optionally combined with the
-** [SQLITE_OPEN_NOMUTEX], [SQLITE_OPEN_FULLMUTEX], [SQLITE_OPEN_SHAREDCACHE],
-** [SQLITE_OPEN_PRIVATECACHE], and/or [SQLITE_OPEN_URI] flags:)^
-**
-**
-** ^(
[SQLITE_OPEN_READONLY]
-**
The database is opened in read-only mode. If the database does not
-** already exist, an error is returned.
)^
-**
-** ^(
[SQLITE_OPEN_READWRITE]
-**
The database is opened for reading and writing if possible, or reading
-** only if the file is write protected by the operating system. In either
-** case the database must already exist, otherwise an error is returned.
)^
-**
-** ^(
[SQLITE_OPEN_READWRITE] | [SQLITE_OPEN_CREATE]
-**
The database is opened for reading and writing, and is created if
-** it does not already exist. This is the behavior that is always used for
-** sqlite3_open() and sqlite3_open16().
)^
-**
-**
-** If the 3rd parameter to sqlite3_open_v2() is not one of the
-** combinations shown above optionally combined with other
-** [SQLITE_OPEN_READONLY | SQLITE_OPEN_* bits]
-** then the behavior is undefined.
-**
-** ^If the [SQLITE_OPEN_NOMUTEX] flag is set, then the database connection
-** opens in the multi-thread [threading mode] as long as the single-thread
-** mode has not been set at compile-time or start-time. ^If the
-** [SQLITE_OPEN_FULLMUTEX] flag is set then the database connection opens
-** in the serialized [threading mode] unless single-thread was
-** previously selected at compile-time or start-time.
-** ^The [SQLITE_OPEN_SHAREDCACHE] flag causes the database connection to be
-** eligible to use [shared cache mode], regardless of whether or not shared
-** cache is enabled using [sqlite3_enable_shared_cache()]. ^The
-** [SQLITE_OPEN_PRIVATECACHE] flag causes the database connection to not
-** participate in [shared cache mode] even if it is enabled.
-**
-** ^The fourth parameter to sqlite3_open_v2() is the name of the
-** [sqlite3_vfs] object that defines the operating system interface that
-** the new database connection should use. ^If the fourth parameter is
-** a NULL pointer then the default [sqlite3_vfs] object is used.
-**
-** ^If the filename is ":memory:", then a private, temporary in-memory database
-** is created for the connection. ^This in-memory database will vanish when
-** the database connection is closed. Future versions of SQLite might
-** make use of additional special filenames that begin with the ":" character.
-** It is recommended that when a database filename actually does begin with
-** a ":" character you should prefix the filename with a pathname such as
-** "./" to avoid ambiguity.
-**
-** ^If the filename is an empty string, then a private, temporary
-** on-disk database will be created. ^This private database will be
-** automatically deleted as soon as the database connection is closed.
-**
-** [[URI filenames in sqlite3_open()]]
URI Filenames
-**
-** ^If [URI filename] interpretation is enabled, and the filename argument
-** begins with "file:", then the filename is interpreted as a URI. ^URI
-** filename interpretation is enabled if the [SQLITE_OPEN_URI] flag is
-** set in the third argument to sqlite3_open_v2(), or if it has
-** been enabled globally using the [SQLITE_CONFIG_URI] option with the
-** [sqlite3_config()] method or by the [SQLITE_USE_URI] compile-time option.
-** URI filename interpretation is turned off
-** by default, but future releases of SQLite might enable URI filename
-** interpretation by default. See "[URI filenames]" for additional
-** information.
-**
-** URI filenames are parsed according to RFC 3986. ^If the URI contains an
-** authority, then it must be either an empty string or the string
-** "localhost". ^If the authority is not an empty string or "localhost", an
-** error is returned to the caller. ^The fragment component of a URI, if
-** present, is ignored.
-**
-** ^SQLite uses the path component of the URI as the name of the disk file
-** which contains the database. ^If the path begins with a '/' character,
-** then it is interpreted as an absolute path. ^If the path does not begin
-** with a '/' (meaning that the authority section is omitted from the URI)
-** then the path is interpreted as a relative path.
-** ^(On windows, the first component of an absolute path
-** is a drive specification (e.g. "C:").)^
-**
-** [[core URI query parameters]]
-** The query component of a URI may contain parameters that are interpreted
-** either by SQLite itself, or by a [VFS | custom VFS implementation].
-** SQLite and its built-in [VFSes] interpret the
-** following query parameters:
-**
-**
-**
vfs: ^The "vfs" parameter may be used to specify the name of
-** a VFS object that provides the operating system interface that should
-** be used to access the database file on disk. ^If this option is set to
-** an empty string the default VFS object is used. ^Specifying an unknown
-** VFS is an error. ^If sqlite3_open_v2() is used and the vfs option is
-** present, then the VFS specified by the option takes precedence over
-** the value passed as the fourth parameter to sqlite3_open_v2().
-**
-**
mode: ^(The mode parameter may be set to either "ro", "rw",
-** "rwc", or "memory". Attempting to set it to any other value is
-** an error)^.
-** ^If "ro" is specified, then the database is opened for read-only
-** access, just as if the [SQLITE_OPEN_READONLY] flag had been set in the
-** third argument to sqlite3_open_v2(). ^If the mode option is set to
-** "rw", then the database is opened for read-write (but not create)
-** access, as if SQLITE_OPEN_READWRITE (but not SQLITE_OPEN_CREATE) had
-** been set. ^Value "rwc" is equivalent to setting both
-** SQLITE_OPEN_READWRITE and SQLITE_OPEN_CREATE. ^If the mode option is
-** set to "memory" then a pure [in-memory database] that never reads
-** or writes from disk is used. ^It is an error to specify a value for
-** the mode parameter that is less restrictive than that specified by
-** the flags passed in the third parameter to sqlite3_open_v2().
-**
-**
cache: ^The cache parameter may be set to either "shared" or
-** "private". ^Setting it to "shared" is equivalent to setting the
-** SQLITE_OPEN_SHAREDCACHE bit in the flags argument passed to
-** sqlite3_open_v2(). ^Setting the cache parameter to "private" is
-** equivalent to setting the SQLITE_OPEN_PRIVATECACHE bit.
-** ^If sqlite3_open_v2() is used and the "cache" parameter is present in
-** a URI filename, its value overrides any behavior requested by setting
-** SQLITE_OPEN_PRIVATECACHE or SQLITE_OPEN_SHAREDCACHE flag.
-**
-**
psow: ^The psow parameter indicates whether or not the
-** [powersafe overwrite] property does or does not apply to the
-** storage media on which the database file resides.
-**
-**
nolock: ^The nolock parameter is a boolean query parameter
-** which if set disables file locking in rollback journal modes. This
-** is useful for accessing a database on a filesystem that does not
-** support locking. Caution: Database corruption might result if two
-** or more processes write to the same database and any one of those
-** processes uses nolock=1.
-**
-**
immutable: ^The immutable parameter is a boolean query
-** parameter that indicates that the database file is stored on
-** read-only media. ^When immutable is set, SQLite assumes that the
-** database file cannot be changed, even by a process with higher
-** privilege, and so the database is opened read-only and all locking
-** and change detection is disabled. Caution: Setting the immutable
-** property on a database file that does in fact change can result
-** in incorrect query results and/or [SQLITE_CORRUPT] errors.
-** See also: [SQLITE_IOCAP_IMMUTABLE].
-**
-**
-**
-** ^Specifying an unknown parameter in the query component of a URI is not an
-** error. Future versions of SQLite might understand additional query
-** parameters. See "[query parameters with special meaning to SQLite]" for
-** additional information.
-**
-** [[URI filename examples]]
URI filename examples
-**
-**
-**
URI filenames
Results
-**
file:data.db
-** Open the file "data.db" in the current directory.
-**
Windows only: Open the file "data.db" on fred's desktop on drive
-** C:. Note that the %20 escaping in this example is not strictly
-** necessary - space characters can be used literally
-** in URI filenames.
-**
file:data.db?mode=ro&cache=private
-** Open file "data.db" in the current directory for read-only access.
-** Regardless of whether or not shared-cache mode is enabled by
-** default, use a private cache.
-**
file:/home/fred/data.db?vfs=unix-dotfile
-** Open file "/home/fred/data.db". Use the special VFS "unix-dotfile"
-** that uses dot-files in place of posix advisory locking.
-**
file:data.db?mode=readonly
-** An error. "readonly" is not a valid option for the "mode" parameter.
-**
-**
-** ^URI hexadecimal escape sequences (%HH) are supported within the path and
-** query components of a URI. A hexadecimal escape sequence consists of a
-** percent sign - "%" - followed by exactly two hexadecimal digits
-** specifying an octet value. ^Before the path or query components of a
-** URI filename are interpreted, they are encoded using UTF-8 and all
-** hexadecimal escape sequences replaced by a single byte containing the
-** corresponding octet. If this process generates an invalid UTF-8 encoding,
-** the results are undefined.
-**
-** Note to Windows users: The encoding used for the filename argument
-** of sqlite3_open() and sqlite3_open_v2() must be UTF-8, not whatever
-** codepage is currently defined. Filenames containing international
-** characters must be converted to UTF-8 prior to passing them into
-** sqlite3_open() or sqlite3_open_v2().
-**
-** Note to Windows Runtime users: The temporary directory must be set
-** prior to calling sqlite3_open() or sqlite3_open_v2(). Otherwise, various
-** features that require the use of temporary files may fail.
-**
-** See also: [sqlite3_temp_directory]
-*/
-SQLITE_API int sqlite3_open(
- const char *filename, /* Database filename (UTF-8) */
- sqlite3 **ppDb /* OUT: SQLite db handle */
-);
-SQLITE_API int sqlite3_open16(
- const void *filename, /* Database filename (UTF-16) */
- sqlite3 **ppDb /* OUT: SQLite db handle */
-);
-SQLITE_API int sqlite3_open_v2(
- const char *filename, /* Database filename (UTF-8) */
- sqlite3 **ppDb, /* OUT: SQLite db handle */
- int flags, /* Flags */
- const char *zVfs /* Name of VFS module to use */
-);
-
-/*
-** CAPI3REF: Obtain Values For URI Parameters
-**
-** These are utility routines, useful to VFS implementations, that check
-** to see if a database file was a URI that contained a specific query
-** parameter, and if so obtains the value of that query parameter.
-**
-** If F is the database filename pointer passed into the xOpen() method of
-** a VFS implementation when the flags parameter to xOpen() has one or
-** more of the [SQLITE_OPEN_URI] or [SQLITE_OPEN_MAIN_DB] bits set and
-** P is the name of the query parameter, then
-** sqlite3_uri_parameter(F,P) returns the value of the P
-** parameter if it exists or a NULL pointer if P does not appear as a
-** query parameter on F. If P is a query parameter of F
-** has no explicit value, then sqlite3_uri_parameter(F,P) returns
-** a pointer to an empty string.
-**
-** The sqlite3_uri_boolean(F,P,B) routine assumes that P is a boolean
-** parameter and returns true (1) or false (0) according to the value
-** of P. The sqlite3_uri_boolean(F,P,B) routine returns true (1) if the
-** value of query parameter P is one of "yes", "true", or "on" in any
-** case or if the value begins with a non-zero number. The
-** sqlite3_uri_boolean(F,P,B) routines returns false (0) if the value of
-** query parameter P is one of "no", "false", or "off" in any case or
-** if the value begins with a numeric zero. If P is not a query
-** parameter on F or if the value of P is does not match any of the
-** above, then sqlite3_uri_boolean(F,P,B) returns (B!=0).
-**
-** The sqlite3_uri_int64(F,P,D) routine converts the value of P into a
-** 64-bit signed integer and returns that integer, or D if P does not
-** exist. If the value of P is something other than an integer, then
-** zero is returned.
-**
-** If F is a NULL pointer, then sqlite3_uri_parameter(F,P) returns NULL and
-** sqlite3_uri_boolean(F,P,B) returns B. If F is not a NULL pointer and
-** is not a database file pathname pointer that SQLite passed into the xOpen
-** VFS method, then the behavior of this routine is undefined and probably
-** undesirable.
-*/
-SQLITE_API const char *sqlite3_uri_parameter(const char *zFilename, const char *zParam);
-SQLITE_API int sqlite3_uri_boolean(const char *zFile, const char *zParam, int bDefault);
-SQLITE_API sqlite3_int64 sqlite3_uri_int64(const char*, const char*, sqlite3_int64);
-
-
-/*
-** CAPI3REF: Error Codes And Messages
-** METHOD: sqlite3
-**
-** ^If the most recent sqlite3_* API call associated with
-** [database connection] D failed, then the sqlite3_errcode(D) interface
-** returns the numeric [result code] or [extended result code] for that
-** API call.
-** ^The sqlite3_extended_errcode()
-** interface is the same except that it always returns the
-** [extended result code] even when extended result codes are
-** disabled.
-**
-** The values returned by sqlite3_errcode() and/or
-** sqlite3_extended_errcode() might change with each API call.
-** Except, there are some interfaces that are guaranteed to never
-** change the value of the error code. The error-code preserving
-** interfaces are:
-**
-**
-**
sqlite3_errcode()
-**
sqlite3_extended_errcode()
-**
sqlite3_errmsg()
-**
sqlite3_errmsg16()
-**
-**
-** ^The sqlite3_errmsg() and sqlite3_errmsg16() return English-language
-** text that describes the error, as either UTF-8 or UTF-16 respectively.
-** ^(Memory to hold the error message string is managed internally.
-** The application does not need to worry about freeing the result.
-** However, the error string might be overwritten or deallocated by
-** subsequent calls to other SQLite interface functions.)^
-**
-** ^The sqlite3_errstr() interface returns the English-language text
-** that describes the [result code], as UTF-8.
-** ^(Memory to hold the error message string is managed internally
-** and must not be freed by the application)^.
-**
-** When the serialized [threading mode] is in use, it might be the
-** case that a second error occurs on a separate thread in between
-** the time of the first error and the call to these interfaces.
-** When that happens, the second error will be reported since these
-** interfaces always report the most recent result. To avoid
-** this, each thread can obtain exclusive use of the [database connection] D
-** by invoking [sqlite3_mutex_enter]([sqlite3_db_mutex](D)) before beginning
-** to use D and invoking [sqlite3_mutex_leave]([sqlite3_db_mutex](D)) after
-** all calls to the interfaces listed here are completed.
-**
-** If an interface fails with SQLITE_MISUSE, that means the interface
-** was invoked incorrectly by the application. In that case, the
-** error code and message may or may not be set.
-*/
-SQLITE_API int sqlite3_errcode(sqlite3 *db);
-SQLITE_API int sqlite3_extended_errcode(sqlite3 *db);
-SQLITE_API const char *sqlite3_errmsg(sqlite3*);
-SQLITE_API const void *sqlite3_errmsg16(sqlite3*);
-SQLITE_API const char *sqlite3_errstr(int);
-
-/*
-** CAPI3REF: Prepared Statement Object
-** KEYWORDS: {prepared statement} {prepared statements}
-**
-** An instance of this object represents a single SQL statement that
-** has been compiled into binary form and is ready to be evaluated.
-**
-** Think of each SQL statement as a separate computer program. The
-** original SQL text is source code. A prepared statement object
-** is the compiled object code. All SQL must be converted into a
-** prepared statement before it can be run.
-**
-** The life-cycle of a prepared statement object usually goes like this:
-**
-**
-**
Create the prepared statement object using [sqlite3_prepare_v2()].
-**
Bind values to [parameters] using the sqlite3_bind_*()
-** interfaces.
-**
Run the SQL by calling [sqlite3_step()] one or more times.
-**
Reset the prepared statement using [sqlite3_reset()] then go back
-** to step 2. Do this zero or more times.
-**
Destroy the object using [sqlite3_finalize()].
-**
-*/
-typedef struct sqlite3_stmt sqlite3_stmt;
-
-/*
-** CAPI3REF: Run-time Limits
-** METHOD: sqlite3
-**
-** ^(This interface allows the size of various constructs to be limited
-** on a connection by connection basis. The first parameter is the
-** [database connection] whose limit is to be set or queried. The
-** second parameter is one of the [limit categories] that define a
-** class of constructs to be size limited. The third parameter is the
-** new limit for that construct.)^
-**
-** ^If the new limit is a negative number, the limit is unchanged.
-** ^(For each limit category SQLITE_LIMIT_NAME there is a
-** [limits | hard upper bound]
-** set at compile-time by a C preprocessor macro called
-** [limits | SQLITE_MAX_NAME].
-** (The "_LIMIT_" in the name is changed to "_MAX_".))^
-** ^Attempts to increase a limit above its hard upper bound are
-** silently truncated to the hard upper bound.
-**
-** ^Regardless of whether or not the limit was changed, the
-** [sqlite3_limit()] interface returns the prior value of the limit.
-** ^Hence, to find the current value of a limit without changing it,
-** simply invoke this interface with the third parameter set to -1.
-**
-** Run-time limits are intended for use in applications that manage
-** both their own internal database and also databases that are controlled
-** by untrusted external sources. An example application might be a
-** web browser that has its own databases for storing history and
-** separate databases controlled by JavaScript applications downloaded
-** off the Internet. The internal databases can be given the
-** large, default limits. Databases managed by external sources can
-** be given much smaller limits designed to prevent a denial of service
-** attack. Developers might also want to use the [sqlite3_set_authorizer()]
-** interface to further control untrusted SQL. The size of the database
-** created by an untrusted script can be contained using the
-** [max_page_count] [PRAGMA].
-**
-** New run-time limit categories may be added in future releases.
-*/
-SQLITE_API int sqlite3_limit(sqlite3*, int id, int newVal);
-
-/*
-** CAPI3REF: Run-Time Limit Categories
-** KEYWORDS: {limit category} {*limit categories}
-**
-** These constants define various performance limits
-** that can be lowered at run-time using [sqlite3_limit()].
-** The synopsis of the meanings of the various limits is shown below.
-** Additional information is available at [limits | Limits in SQLite].
-**
-**
-** [[SQLITE_LIMIT_LENGTH]] ^(
SQLITE_LIMIT_LENGTH
-**
The maximum size of any string or BLOB or table row, in bytes.
)^
-**
-** [[SQLITE_LIMIT_SQL_LENGTH]] ^(
SQLITE_LIMIT_SQL_LENGTH
-**
The maximum length of an SQL statement, in bytes.
)^
-**
-** [[SQLITE_LIMIT_COLUMN]] ^(
SQLITE_LIMIT_COLUMN
-**
The maximum number of columns in a table definition or in the
-** result set of a [SELECT] or the maximum number of columns in an index
-** or in an ORDER BY or GROUP BY clause.
)^
-**
-** [[SQLITE_LIMIT_EXPR_DEPTH]] ^(
SQLITE_LIMIT_EXPR_DEPTH
-**
The maximum depth of the parse tree on any expression.
)^
-**
-** [[SQLITE_LIMIT_COMPOUND_SELECT]] ^(
SQLITE_LIMIT_COMPOUND_SELECT
-**
The maximum number of terms in a compound SELECT statement.
)^
-**
-** [[SQLITE_LIMIT_VDBE_OP]] ^(
SQLITE_LIMIT_VDBE_OP
-**
The maximum number of instructions in a virtual machine program
-** used to implement an SQL statement. If [sqlite3_prepare_v2()] or
-** the equivalent tries to allocate space for more than this many opcodes
-** in a single prepared statement, an SQLITE_NOMEM error is returned.
)^
-**
-** [[SQLITE_LIMIT_FUNCTION_ARG]] ^(
SQLITE_LIMIT_FUNCTION_ARG
-**
The maximum number of arguments on a function.
)^
-**
-** [[SQLITE_LIMIT_ATTACHED]] ^(
SQLITE_LIMIT_ATTACHED
-**
The maximum number of [ATTACH | attached databases].)^
The maximum index number of any [parameter] in an SQL statement.)^
-**
-** [[SQLITE_LIMIT_TRIGGER_DEPTH]] ^(
SQLITE_LIMIT_TRIGGER_DEPTH
-**
The maximum depth of recursion for triggers.
)^
-**
-** [[SQLITE_LIMIT_WORKER_THREADS]] ^(
SQLITE_LIMIT_WORKER_THREADS
-**
The maximum number of auxiliary worker threads that a single
-** [prepared statement] may start.
)^
-**
-*/
-#define SQLITE_LIMIT_LENGTH 0
-#define SQLITE_LIMIT_SQL_LENGTH 1
-#define SQLITE_LIMIT_COLUMN 2
-#define SQLITE_LIMIT_EXPR_DEPTH 3
-#define SQLITE_LIMIT_COMPOUND_SELECT 4
-#define SQLITE_LIMIT_VDBE_OP 5
-#define SQLITE_LIMIT_FUNCTION_ARG 6
-#define SQLITE_LIMIT_ATTACHED 7
-#define SQLITE_LIMIT_LIKE_PATTERN_LENGTH 8
-#define SQLITE_LIMIT_VARIABLE_NUMBER 9
-#define SQLITE_LIMIT_TRIGGER_DEPTH 10
-#define SQLITE_LIMIT_WORKER_THREADS 11
-
-/*
-** CAPI3REF: Prepare Flags
-**
-** These constants define various flags that can be passed into
-** "prepFlags" parameter of the [sqlite3_prepare_v3()] and
-** [sqlite3_prepare16_v3()] interfaces.
-**
-** New flags may be added in future releases of SQLite.
-**
-**
-** [[SQLITE_PREPARE_PERSISTENT]] ^(
SQLITE_PREPARE_PERSISTENT
-**
The SQLITE_PREPARE_PERSISTENT flag is a hint to the query planner
-** that the prepared statement will be retained for a long time and
-** probably reused many times.)^ ^Without this flag, [sqlite3_prepare_v3()]
-** and [sqlite3_prepare16_v3()] assume that the prepared statement will
-** be used just once or at most a few times and then destroyed using
-** [sqlite3_finalize()] relatively soon. The current implementation acts
-** on this hint by avoiding the use of [lookaside memory] so as not to
-** deplete the limited store of lookaside memory. Future versions of
-** SQLite may act on this hint differently.
-**
-*/
-#define SQLITE_PREPARE_PERSISTENT 0x01
-
-/*
-** CAPI3REF: Compiling An SQL Statement
-** KEYWORDS: {SQL statement compiler}
-** METHOD: sqlite3
-** CONSTRUCTOR: sqlite3_stmt
-**
-** To execute an SQL statement, it must first be compiled into a byte-code
-** program using one of these routines. Or, in other words, these routines
-** are constructors for the [prepared statement] object.
-**
-** The preferred routine to use is [sqlite3_prepare_v2()]. The
-** [sqlite3_prepare()] interface is legacy and should be avoided.
-** [sqlite3_prepare_v3()] has an extra "prepFlags" option that is used
-** for special purposes.
-**
-** The use of the UTF-8 interfaces is preferred, as SQLite currently
-** does all parsing using UTF-8. The UTF-16 interfaces are provided
-** as a convenience. The UTF-16 interfaces work by converting the
-** input text into UTF-8, then invoking the corresponding UTF-8 interface.
-**
-** The first argument, "db", is a [database connection] obtained from a
-** prior successful call to [sqlite3_open()], [sqlite3_open_v2()] or
-** [sqlite3_open16()]. The database connection must not have been closed.
-**
-** The second argument, "zSql", is the statement to be compiled, encoded
-** as either UTF-8 or UTF-16. The sqlite3_prepare(), sqlite3_prepare_v2(),
-** and sqlite3_prepare_v3()
-** interfaces use UTF-8, and sqlite3_prepare16(), sqlite3_prepare16_v2(),
-** and sqlite3_prepare16_v3() use UTF-16.
-**
-** ^If the nByte argument is negative, then zSql is read up to the
-** first zero terminator. ^If nByte is positive, then it is the
-** number of bytes read from zSql. ^If nByte is zero, then no prepared
-** statement is generated.
-** If the caller knows that the supplied string is nul-terminated, then
-** there is a small performance advantage to passing an nByte parameter that
-** is the number of bytes in the input string including
-** the nul-terminator.
-**
-** ^If pzTail is not NULL then *pzTail is made to point to the first byte
-** past the end of the first SQL statement in zSql. These routines only
-** compile the first statement in zSql, so *pzTail is left pointing to
-** what remains uncompiled.
-**
-** ^*ppStmt is left pointing to a compiled [prepared statement] that can be
-** executed using [sqlite3_step()]. ^If there is an error, *ppStmt is set
-** to NULL. ^If the input text contains no SQL (if the input is an empty
-** string or a comment) then *ppStmt is set to NULL.
-** The calling procedure is responsible for deleting the compiled
-** SQL statement using [sqlite3_finalize()] after it has finished with it.
-** ppStmt may not be NULL.
-**
-** ^On success, the sqlite3_prepare() family of routines return [SQLITE_OK];
-** otherwise an [error code] is returned.
-**
-** The sqlite3_prepare_v2(), sqlite3_prepare_v3(), sqlite3_prepare16_v2(),
-** and sqlite3_prepare16_v3() interfaces are recommended for all new programs.
-** The older interfaces (sqlite3_prepare() and sqlite3_prepare16())
-** are retained for backwards compatibility, but their use is discouraged.
-** ^In the "vX" interfaces, the prepared statement
-** that is returned (the [sqlite3_stmt] object) contains a copy of the
-** original SQL text. This causes the [sqlite3_step()] interface to
-** behave differently in three ways:
-**
-**
-**
-** ^If the database schema changes, instead of returning [SQLITE_SCHEMA] as it
-** always used to do, [sqlite3_step()] will automatically recompile the SQL
-** statement and try to run it again. As many as [SQLITE_MAX_SCHEMA_RETRY]
-** retries will occur before sqlite3_step() gives up and returns an error.
-**
-**
-**
-** ^When an error occurs, [sqlite3_step()] will return one of the detailed
-** [error codes] or [extended error codes]. ^The legacy behavior was that
-** [sqlite3_step()] would only return a generic [SQLITE_ERROR] result code
-** and the application would have to make a second call to [sqlite3_reset()]
-** in order to find the underlying cause of the problem. With the "v2" prepare
-** interfaces, the underlying reason for the error is returned immediately.
-**
-**
-**
-** ^If the specific value bound to [parameter | host parameter] in the
-** WHERE clause might influence the choice of query plan for a statement,
-** then the statement will be automatically recompiled, as if there had been
-** a schema change, on the first [sqlite3_step()] call following any change
-** to the [sqlite3_bind_text | bindings] of that [parameter].
-** ^The specific value of WHERE-clause [parameter] might influence the
-** choice of query plan if the parameter is the left-hand side of a [LIKE]
-** or [GLOB] operator or if the parameter is compared to an indexed column
-** and the [SQLITE_ENABLE_STAT3] compile-time option is enabled.
-**
-**
-**
-**
^sqlite3_prepare_v3() differs from sqlite3_prepare_v2() only in having
-** the extra prepFlags parameter, which is a bit array consisting of zero or
-** more of the [SQLITE_PREPARE_PERSISTENT|SQLITE_PREPARE_*] flags. ^The
-** sqlite3_prepare_v2() interface works exactly the same as
-** sqlite3_prepare_v3() with a zero prepFlags parameter.
-*/
-SQLITE_API int sqlite3_prepare(
- sqlite3 *db, /* Database handle */
- const char *zSql, /* SQL statement, UTF-8 encoded */
- int nByte, /* Maximum length of zSql in bytes. */
- sqlite3_stmt **ppStmt, /* OUT: Statement handle */
- const char **pzTail /* OUT: Pointer to unused portion of zSql */
-);
-SQLITE_API int sqlite3_prepare_v2(
- sqlite3 *db, /* Database handle */
- const char *zSql, /* SQL statement, UTF-8 encoded */
- int nByte, /* Maximum length of zSql in bytes. */
- sqlite3_stmt **ppStmt, /* OUT: Statement handle */
- const char **pzTail /* OUT: Pointer to unused portion of zSql */
-);
-SQLITE_API int sqlite3_prepare_v3(
- sqlite3 *db, /* Database handle */
- const char *zSql, /* SQL statement, UTF-8 encoded */
- int nByte, /* Maximum length of zSql in bytes. */
- unsigned int prepFlags, /* Zero or more SQLITE_PREPARE_ flags */
- sqlite3_stmt **ppStmt, /* OUT: Statement handle */
- const char **pzTail /* OUT: Pointer to unused portion of zSql */
-);
-SQLITE_API int sqlite3_prepare16(
- sqlite3 *db, /* Database handle */
- const void *zSql, /* SQL statement, UTF-16 encoded */
- int nByte, /* Maximum length of zSql in bytes. */
- sqlite3_stmt **ppStmt, /* OUT: Statement handle */
- const void **pzTail /* OUT: Pointer to unused portion of zSql */
-);
-SQLITE_API int sqlite3_prepare16_v2(
- sqlite3 *db, /* Database handle */
- const void *zSql, /* SQL statement, UTF-16 encoded */
- int nByte, /* Maximum length of zSql in bytes. */
- sqlite3_stmt **ppStmt, /* OUT: Statement handle */
- const void **pzTail /* OUT: Pointer to unused portion of zSql */
-);
-SQLITE_API int sqlite3_prepare16_v3(
- sqlite3 *db, /* Database handle */
- const void *zSql, /* SQL statement, UTF-16 encoded */
- int nByte, /* Maximum length of zSql in bytes. */
- unsigned int prepFlags, /* Zero or more SQLITE_PREPARE_ flags */
- sqlite3_stmt **ppStmt, /* OUT: Statement handle */
- const void **pzTail /* OUT: Pointer to unused portion of zSql */
-);
-
-/*
-** CAPI3REF: Retrieving Statement SQL
-** METHOD: sqlite3_stmt
-**
-** ^The sqlite3_sql(P) interface returns a pointer to a copy of the UTF-8
-** SQL text used to create [prepared statement] P if P was
-** created by [sqlite3_prepare_v2()], [sqlite3_prepare_v3()],
-** [sqlite3_prepare16_v2()], or [sqlite3_prepare16_v3()].
-** ^The sqlite3_expanded_sql(P) interface returns a pointer to a UTF-8
-** string containing the SQL text of prepared statement P with
-** [bound parameters] expanded.
-**
-** ^(For example, if a prepared statement is created using the SQL
-** text "SELECT $abc,:xyz" and if parameter $abc is bound to integer 2345
-** and parameter :xyz is unbound, then sqlite3_sql() will return
-** the original string, "SELECT $abc,:xyz" but sqlite3_expanded_sql()
-** will return "SELECT 2345,NULL".)^
-**
-** ^The sqlite3_expanded_sql() interface returns NULL if insufficient memory
-** is available to hold the result, or if the result would exceed the
-** the maximum string length determined by the [SQLITE_LIMIT_LENGTH].
-**
-** ^The [SQLITE_TRACE_SIZE_LIMIT] compile-time option limits the size of
-** bound parameter expansions. ^The [SQLITE_OMIT_TRACE] compile-time
-** option causes sqlite3_expanded_sql() to always return NULL.
-**
-** ^The string returned by sqlite3_sql(P) is managed by SQLite and is
-** automatically freed when the prepared statement is finalized.
-** ^The string returned by sqlite3_expanded_sql(P), on the other hand,
-** is obtained from [sqlite3_malloc()] and must be free by the application
-** by passing it to [sqlite3_free()].
-*/
-SQLITE_API const char *sqlite3_sql(sqlite3_stmt *pStmt);
-SQLITE_API char *sqlite3_expanded_sql(sqlite3_stmt *pStmt);
-
-/*
-** CAPI3REF: Determine If An SQL Statement Writes The Database
-** METHOD: sqlite3_stmt
-**
-** ^The sqlite3_stmt_readonly(X) interface returns true (non-zero) if
-** and only if the [prepared statement] X makes no direct changes to
-** the content of the database file.
-**
-** Note that [application-defined SQL functions] or
-** [virtual tables] might change the database indirectly as a side effect.
-** ^(For example, if an application defines a function "eval()" that
-** calls [sqlite3_exec()], then the following SQL statement would
-** change the database file through side-effects:
-**
-**
-** SELECT eval('DELETE FROM t1') FROM t2;
-**
-**
-** But because the [SELECT] statement does not change the database file
-** directly, sqlite3_stmt_readonly() would still return true.)^
-**
-** ^Transaction control statements such as [BEGIN], [COMMIT], [ROLLBACK],
-** [SAVEPOINT], and [RELEASE] cause sqlite3_stmt_readonly() to return true,
-** since the statements themselves do not actually modify the database but
-** rather they control the timing of when other statements modify the
-** database. ^The [ATTACH] and [DETACH] statements also cause
-** sqlite3_stmt_readonly() to return true since, while those statements
-** change the configuration of a database connection, they do not make
-** changes to the content of the database files on disk.
-** ^The sqlite3_stmt_readonly() interface returns true for [BEGIN] since
-** [BEGIN] merely sets internal flags, but the [BEGIN|BEGIN IMMEDIATE] and
-** [BEGIN|BEGIN EXCLUSIVE] commands do touch the database and so
-** sqlite3_stmt_readonly() returns false for those commands.
-*/
-SQLITE_API int sqlite3_stmt_readonly(sqlite3_stmt *pStmt);
-
-/*
-** CAPI3REF: Determine If A Prepared Statement Has Been Reset
-** METHOD: sqlite3_stmt
-**
-** ^The sqlite3_stmt_busy(S) interface returns true (non-zero) if the
-** [prepared statement] S has been stepped at least once using
-** [sqlite3_step(S)] but has neither run to completion (returned
-** [SQLITE_DONE] from [sqlite3_step(S)]) nor
-** been reset using [sqlite3_reset(S)]. ^The sqlite3_stmt_busy(S)
-** interface returns false if S is a NULL pointer. If S is not a
-** NULL pointer and is not a pointer to a valid [prepared statement]
-** object, then the behavior is undefined and probably undesirable.
-**
-** This interface can be used in combination [sqlite3_next_stmt()]
-** to locate all prepared statements associated with a database
-** connection that are in need of being reset. This can be used,
-** for example, in diagnostic routines to search for prepared
-** statements that are holding a transaction open.
-*/
-SQLITE_API int sqlite3_stmt_busy(sqlite3_stmt*);
-
-/*
-** CAPI3REF: Dynamically Typed Value Object
-** KEYWORDS: {protected sqlite3_value} {unprotected sqlite3_value}
-**
-** SQLite uses the sqlite3_value object to represent all values
-** that can be stored in a database table. SQLite uses dynamic typing
-** for the values it stores. ^Values stored in sqlite3_value objects
-** can be integers, floating point values, strings, BLOBs, or NULL.
-**
-** An sqlite3_value object may be either "protected" or "unprotected".
-** Some interfaces require a protected sqlite3_value. Other interfaces
-** will accept either a protected or an unprotected sqlite3_value.
-** Every interface that accepts sqlite3_value arguments specifies
-** whether or not it requires a protected sqlite3_value. The
-** [sqlite3_value_dup()] interface can be used to construct a new
-** protected sqlite3_value from an unprotected sqlite3_value.
-**
-** The terms "protected" and "unprotected" refer to whether or not
-** a mutex is held. An internal mutex is held for a protected
-** sqlite3_value object but no mutex is held for an unprotected
-** sqlite3_value object. If SQLite is compiled to be single-threaded
-** (with [SQLITE_THREADSAFE=0] and with [sqlite3_threadsafe()] returning 0)
-** or if SQLite is run in one of reduced mutex modes
-** [SQLITE_CONFIG_SINGLETHREAD] or [SQLITE_CONFIG_MULTITHREAD]
-** then there is no distinction between protected and unprotected
-** sqlite3_value objects and they can be used interchangeably. However,
-** for maximum code portability it is recommended that applications
-** still make the distinction between protected and unprotected
-** sqlite3_value objects even when not strictly required.
-**
-** ^The sqlite3_value objects that are passed as parameters into the
-** implementation of [application-defined SQL functions] are protected.
-** ^The sqlite3_value object returned by
-** [sqlite3_column_value()] is unprotected.
-** Unprotected sqlite3_value objects may only be used as arguments
-** to [sqlite3_result_value()], [sqlite3_bind_value()], and
-** [sqlite3_value_dup()].
-** The [sqlite3_value_blob | sqlite3_value_type()] family of
-** interfaces require protected sqlite3_value objects.
-*/
-typedef struct sqlite3_value sqlite3_value;
-
-/*
-** CAPI3REF: SQL Function Context Object
-**
-** The context in which an SQL function executes is stored in an
-** sqlite3_context object. ^A pointer to an sqlite3_context object
-** is always first parameter to [application-defined SQL functions].
-** The application-defined SQL function implementation will pass this
-** pointer through into calls to [sqlite3_result_int | sqlite3_result()],
-** [sqlite3_aggregate_context()], [sqlite3_user_data()],
-** [sqlite3_context_db_handle()], [sqlite3_get_auxdata()],
-** and/or [sqlite3_set_auxdata()].
-*/
-typedef struct sqlite3_context sqlite3_context;
-
-/*
-** CAPI3REF: Binding Values To Prepared Statements
-** KEYWORDS: {host parameter} {host parameters} {host parameter name}
-** KEYWORDS: {SQL parameter} {SQL parameters} {parameter binding}
-** METHOD: sqlite3_stmt
-**
-** ^(In the SQL statement text input to [sqlite3_prepare_v2()] and its variants,
-** literals may be replaced by a [parameter] that matches one of following
-** templates:
-**
-**
-**
?
-**
?NNN
-**
:VVV
-**
@VVV
-**
$VVV
-**
-**
-** In the templates above, NNN represents an integer literal,
-** and VVV represents an alphanumeric identifier.)^ ^The values of these
-** parameters (also called "host parameter names" or "SQL parameters")
-** can be set using the sqlite3_bind_*() routines defined here.
-**
-** ^The first argument to the sqlite3_bind_*() routines is always
-** a pointer to the [sqlite3_stmt] object returned from
-** [sqlite3_prepare_v2()] or its variants.
-**
-** ^The second argument is the index of the SQL parameter to be set.
-** ^The leftmost SQL parameter has an index of 1. ^When the same named
-** SQL parameter is used more than once, second and subsequent
-** occurrences have the same index as the first occurrence.
-** ^The index for named parameters can be looked up using the
-** [sqlite3_bind_parameter_index()] API if desired. ^The index
-** for "?NNN" parameters is the value of NNN.
-** ^The NNN value must be between 1 and the [sqlite3_limit()]
-** parameter [SQLITE_LIMIT_VARIABLE_NUMBER] (default value: 999).
-**
-** ^The third argument is the value to bind to the parameter.
-** ^If the third parameter to sqlite3_bind_text() or sqlite3_bind_text16()
-** or sqlite3_bind_blob() is a NULL pointer then the fourth parameter
-** is ignored and the end result is the same as sqlite3_bind_null().
-**
-** ^(In those routines that have a fourth argument, its value is the
-** number of bytes in the parameter. To be clear: the value is the
-** number of bytes in the value, not the number of characters.)^
-** ^If the fourth parameter to sqlite3_bind_text() or sqlite3_bind_text16()
-** is negative, then the length of the string is
-** the number of bytes up to the first zero terminator.
-** If the fourth parameter to sqlite3_bind_blob() is negative, then
-** the behavior is undefined.
-** If a non-negative fourth parameter is provided to sqlite3_bind_text()
-** or sqlite3_bind_text16() or sqlite3_bind_text64() then
-** that parameter must be the byte offset
-** where the NUL terminator would occur assuming the string were NUL
-** terminated. If any NUL characters occur at byte offsets less than
-** the value of the fourth parameter then the resulting string value will
-** contain embedded NULs. The result of expressions involving strings
-** with embedded NULs is undefined.
-**
-** ^The fifth argument to the BLOB and string binding interfaces
-** is a destructor used to dispose of the BLOB or
-** string after SQLite has finished with it. ^The destructor is called
-** to dispose of the BLOB or string even if the call to bind API fails.
-** ^If the fifth argument is
-** the special value [SQLITE_STATIC], then SQLite assumes that the
-** information is in static, unmanaged space and does not need to be freed.
-** ^If the fifth argument has the value [SQLITE_TRANSIENT], then
-** SQLite makes its own private copy of the data immediately, before
-** the sqlite3_bind_*() routine returns.
-**
-** ^The sixth argument to sqlite3_bind_text64() must be one of
-** [SQLITE_UTF8], [SQLITE_UTF16], [SQLITE_UTF16BE], or [SQLITE_UTF16LE]
-** to specify the encoding of the text in the third parameter. If
-** the sixth argument to sqlite3_bind_text64() is not one of the
-** allowed values shown above, or if the text encoding is different
-** from the encoding specified by the sixth parameter, then the behavior
-** is undefined.
-**
-** ^The sqlite3_bind_zeroblob() routine binds a BLOB of length N that
-** is filled with zeroes. ^A zeroblob uses a fixed amount of memory
-** (just an integer to hold its size) while it is being processed.
-** Zeroblobs are intended to serve as placeholders for BLOBs whose
-** content is later written using
-** [sqlite3_blob_open | incremental BLOB I/O] routines.
-** ^A negative value for the zeroblob results in a zero-length BLOB.
-**
-** ^The sqlite3_bind_pointer(S,I,P,T,D) routine causes the I-th parameter in
-** [prepared statement] S to have an SQL value of NULL, but to also be
-** associated with the pointer P of type T. ^D is either a NULL pointer or
-** a pointer to a destructor function for P. ^SQLite will invoke the
-** destructor D with a single argument of P when it is finished using
-** P. The T parameter should be a static string, preferably a string
-** literal. The sqlite3_bind_pointer() routine is part of the
-** [pointer passing interface] added for SQLite 3.20.0.
-**
-** ^If any of the sqlite3_bind_*() routines are called with a NULL pointer
-** for the [prepared statement] or with a prepared statement for which
-** [sqlite3_step()] has been called more recently than [sqlite3_reset()],
-** then the call will return [SQLITE_MISUSE]. If any sqlite3_bind_()
-** routine is passed a [prepared statement] that has been finalized, the
-** result is undefined and probably harmful.
-**
-** ^Bindings are not cleared by the [sqlite3_reset()] routine.
-** ^Unbound parameters are interpreted as NULL.
-**
-** ^The sqlite3_bind_* routines return [SQLITE_OK] on success or an
-** [error code] if anything goes wrong.
-** ^[SQLITE_TOOBIG] might be returned if the size of a string or BLOB
-** exceeds limits imposed by [sqlite3_limit]([SQLITE_LIMIT_LENGTH]) or
-** [SQLITE_MAX_LENGTH].
-** ^[SQLITE_RANGE] is returned if the parameter
-** index is out of range. ^[SQLITE_NOMEM] is returned if malloc() fails.
-**
-** See also: [sqlite3_bind_parameter_count()],
-** [sqlite3_bind_parameter_name()], and [sqlite3_bind_parameter_index()].
-*/
-SQLITE_API int sqlite3_bind_blob(sqlite3_stmt*, int, const void*, int n, void(*)(void*));
-SQLITE_API int sqlite3_bind_blob64(sqlite3_stmt*, int, const void*, sqlite3_uint64,
- void(*)(void*));
-SQLITE_API int sqlite3_bind_double(sqlite3_stmt*, int, double);
-SQLITE_API int sqlite3_bind_int(sqlite3_stmt*, int, int);
-SQLITE_API int sqlite3_bind_int64(sqlite3_stmt*, int, sqlite3_int64);
-SQLITE_API int sqlite3_bind_null(sqlite3_stmt*, int);
-SQLITE_API int sqlite3_bind_text(sqlite3_stmt*,int,const char*,int,void(*)(void*));
-SQLITE_API int sqlite3_bind_text16(sqlite3_stmt*, int, const void*, int, void(*)(void*));
-SQLITE_API int sqlite3_bind_text64(sqlite3_stmt*, int, const char*, sqlite3_uint64,
- void(*)(void*), unsigned char encoding);
-SQLITE_API int sqlite3_bind_value(sqlite3_stmt*, int, const sqlite3_value*);
-SQLITE_API int sqlite3_bind_pointer(sqlite3_stmt*, int, void*, const char*,void(*)(void*));
-SQLITE_API int sqlite3_bind_zeroblob(sqlite3_stmt*, int, int n);
-SQLITE_API int sqlite3_bind_zeroblob64(sqlite3_stmt*, int, sqlite3_uint64);
-
-/*
-** CAPI3REF: Number Of SQL Parameters
-** METHOD: sqlite3_stmt
-**
-** ^This routine can be used to find the number of [SQL parameters]
-** in a [prepared statement]. SQL parameters are tokens of the
-** form "?", "?NNN", ":AAA", "$AAA", or "@AAA" that serve as
-** placeholders for values that are [sqlite3_bind_blob | bound]
-** to the parameters at a later time.
-**
-** ^(This routine actually returns the index of the largest (rightmost)
-** parameter. For all forms except ?NNN, this will correspond to the
-** number of unique parameters. If parameters of the ?NNN form are used,
-** there may be gaps in the list.)^
-**
-** See also: [sqlite3_bind_blob|sqlite3_bind()],
-** [sqlite3_bind_parameter_name()], and
-** [sqlite3_bind_parameter_index()].
-*/
-SQLITE_API int sqlite3_bind_parameter_count(sqlite3_stmt*);
-
-/*
-** CAPI3REF: Name Of A Host Parameter
-** METHOD: sqlite3_stmt
-**
-** ^The sqlite3_bind_parameter_name(P,N) interface returns
-** the name of the N-th [SQL parameter] in the [prepared statement] P.
-** ^(SQL parameters of the form "?NNN" or ":AAA" or "@AAA" or "$AAA"
-** have a name which is the string "?NNN" or ":AAA" or "@AAA" or "$AAA"
-** respectively.
-** In other words, the initial ":" or "$" or "@" or "?"
-** is included as part of the name.)^
-** ^Parameters of the form "?" without a following integer have no name
-** and are referred to as "nameless" or "anonymous parameters".
-**
-** ^The first host parameter has an index of 1, not 0.
-**
-** ^If the value N is out of range or if the N-th parameter is
-** nameless, then NULL is returned. ^The returned string is
-** always in UTF-8 encoding even if the named parameter was
-** originally specified as UTF-16 in [sqlite3_prepare16()],
-** [sqlite3_prepare16_v2()], or [sqlite3_prepare16_v3()].
-**
-** See also: [sqlite3_bind_blob|sqlite3_bind()],
-** [sqlite3_bind_parameter_count()], and
-** [sqlite3_bind_parameter_index()].
-*/
-SQLITE_API const char *sqlite3_bind_parameter_name(sqlite3_stmt*, int);
-
-/*
-** CAPI3REF: Index Of A Parameter With A Given Name
-** METHOD: sqlite3_stmt
-**
-** ^Return the index of an SQL parameter given its name. ^The
-** index value returned is suitable for use as the second
-** parameter to [sqlite3_bind_blob|sqlite3_bind()]. ^A zero
-** is returned if no matching parameter is found. ^The parameter
-** name must be given in UTF-8 even if the original statement
-** was prepared from UTF-16 text using [sqlite3_prepare16_v2()] or
-** [sqlite3_prepare16_v3()].
-**
-** See also: [sqlite3_bind_blob|sqlite3_bind()],
-** [sqlite3_bind_parameter_count()], and
-** [sqlite3_bind_parameter_name()].
-*/
-SQLITE_API int sqlite3_bind_parameter_index(sqlite3_stmt*, const char *zName);
-
-/*
-** CAPI3REF: Reset All Bindings On A Prepared Statement
-** METHOD: sqlite3_stmt
-**
-** ^Contrary to the intuition of many, [sqlite3_reset()] does not reset
-** the [sqlite3_bind_blob | bindings] on a [prepared statement].
-** ^Use this routine to reset all host parameters to NULL.
-*/
-SQLITE_API int sqlite3_clear_bindings(sqlite3_stmt*);
-
-/*
-** CAPI3REF: Number Of Columns In A Result Set
-** METHOD: sqlite3_stmt
-**
-** ^Return the number of columns in the result set returned by the
-** [prepared statement]. ^If this routine returns 0, that means the
-** [prepared statement] returns no data (for example an [UPDATE]).
-** ^However, just because this routine returns a positive number does not
-** mean that one or more rows of data will be returned. ^A SELECT statement
-** will always have a positive sqlite3_column_count() but depending on the
-** WHERE clause constraints and the table content, it might return no rows.
-**
-** See also: [sqlite3_data_count()]
-*/
-SQLITE_API int sqlite3_column_count(sqlite3_stmt *pStmt);
-
-/*
-** CAPI3REF: Column Names In A Result Set
-** METHOD: sqlite3_stmt
-**
-** ^These routines return the name assigned to a particular column
-** in the result set of a [SELECT] statement. ^The sqlite3_column_name()
-** interface returns a pointer to a zero-terminated UTF-8 string
-** and sqlite3_column_name16() returns a pointer to a zero-terminated
-** UTF-16 string. ^The first parameter is the [prepared statement]
-** that implements the [SELECT] statement. ^The second parameter is the
-** column number. ^The leftmost column is number 0.
-**
-** ^The returned string pointer is valid until either the [prepared statement]
-** is destroyed by [sqlite3_finalize()] or until the statement is automatically
-** reprepared by the first call to [sqlite3_step()] for a particular run
-** or until the next call to
-** sqlite3_column_name() or sqlite3_column_name16() on the same column.
-**
-** ^If sqlite3_malloc() fails during the processing of either routine
-** (for example during a conversion from UTF-8 to UTF-16) then a
-** NULL pointer is returned.
-**
-** ^The name of a result column is the value of the "AS" clause for
-** that column, if there is an AS clause. If there is no AS clause
-** then the name of the column is unspecified and may change from
-** one release of SQLite to the next.
-*/
-SQLITE_API const char *sqlite3_column_name(sqlite3_stmt*, int N);
-SQLITE_API const void *sqlite3_column_name16(sqlite3_stmt*, int N);
-
-/*
-** CAPI3REF: Source Of Data In A Query Result
-** METHOD: sqlite3_stmt
-**
-** ^These routines provide a means to determine the database, table, and
-** table column that is the origin of a particular result column in
-** [SELECT] statement.
-** ^The name of the database or table or column can be returned as
-** either a UTF-8 or UTF-16 string. ^The _database_ routines return
-** the database name, the _table_ routines return the table name, and
-** the origin_ routines return the column name.
-** ^The returned string is valid until the [prepared statement] is destroyed
-** using [sqlite3_finalize()] or until the statement is automatically
-** reprepared by the first call to [sqlite3_step()] for a particular run
-** or until the same information is requested
-** again in a different encoding.
-**
-** ^The names returned are the original un-aliased names of the
-** database, table, and column.
-**
-** ^The first argument to these interfaces is a [prepared statement].
-** ^These functions return information about the Nth result column returned by
-** the statement, where N is the second function argument.
-** ^The left-most column is column 0 for these routines.
-**
-** ^If the Nth column returned by the statement is an expression or
-** subquery and is not a column value, then all of these functions return
-** NULL. ^These routine might also return NULL if a memory allocation error
-** occurs. ^Otherwise, they return the name of the attached database, table,
-** or column that query result column was extracted from.
-**
-** ^As with all other SQLite APIs, those whose names end with "16" return
-** UTF-16 encoded strings and the other functions return UTF-8.
-**
-** ^These APIs are only available if the library was compiled with the
-** [SQLITE_ENABLE_COLUMN_METADATA] C-preprocessor symbol.
-**
-** If two or more threads call one or more of these routines against the same
-** prepared statement and column at the same time then the results are
-** undefined.
-**
-** If two or more threads call one or more
-** [sqlite3_column_database_name | column metadata interfaces]
-** for the same [prepared statement] and result column
-** at the same time then the results are undefined.
-*/
-SQLITE_API const char *sqlite3_column_database_name(sqlite3_stmt*,int);
-SQLITE_API const void *sqlite3_column_database_name16(sqlite3_stmt*,int);
-SQLITE_API const char *sqlite3_column_table_name(sqlite3_stmt*,int);
-SQLITE_API const void *sqlite3_column_table_name16(sqlite3_stmt*,int);
-SQLITE_API const char *sqlite3_column_origin_name(sqlite3_stmt*,int);
-SQLITE_API const void *sqlite3_column_origin_name16(sqlite3_stmt*,int);
-
-/*
-** CAPI3REF: Declared Datatype Of A Query Result
-** METHOD: sqlite3_stmt
-**
-** ^(The first parameter is a [prepared statement].
-** If this statement is a [SELECT] statement and the Nth column of the
-** returned result set of that [SELECT] is a table column (not an
-** expression or subquery) then the declared type of the table
-** column is returned.)^ ^If the Nth column of the result set is an
-** expression or subquery, then a NULL pointer is returned.
-** ^The returned string is always UTF-8 encoded.
-**
-** ^(For example, given the database schema:
-**
-** CREATE TABLE t1(c1 VARIANT);
-**
-** and the following statement to be compiled:
-**
-** SELECT c1 + 1, c1 FROM t1;
-**
-** this routine would return the string "VARIANT" for the second result
-** column (i==1), and a NULL pointer for the first result column (i==0).)^
-**
-** ^SQLite uses dynamic run-time typing. ^So just because a column
-** is declared to contain a particular type does not mean that the
-** data stored in that column is of the declared type. SQLite is
-** strongly typed, but the typing is dynamic not static. ^Type
-** is associated with individual values, not with the containers
-** used to hold those values.
-*/
-SQLITE_API const char *sqlite3_column_decltype(sqlite3_stmt*,int);
-SQLITE_API const void *sqlite3_column_decltype16(sqlite3_stmt*,int);
-
-/*
-** CAPI3REF: Evaluate An SQL Statement
-** METHOD: sqlite3_stmt
-**
-** After a [prepared statement] has been prepared using any of
-** [sqlite3_prepare_v2()], [sqlite3_prepare_v3()], [sqlite3_prepare16_v2()],
-** or [sqlite3_prepare16_v3()] or one of the legacy
-** interfaces [sqlite3_prepare()] or [sqlite3_prepare16()], this function
-** must be called one or more times to evaluate the statement.
-**
-** The details of the behavior of the sqlite3_step() interface depend
-** on whether the statement was prepared using the newer "vX" interfaces
-** [sqlite3_prepare_v3()], [sqlite3_prepare_v2()], [sqlite3_prepare16_v3()],
-** [sqlite3_prepare16_v2()] or the older legacy
-** interfaces [sqlite3_prepare()] and [sqlite3_prepare16()]. The use of the
-** new "vX" interface is recommended for new applications but the legacy
-** interface will continue to be supported.
-**
-** ^In the legacy interface, the return value will be either [SQLITE_BUSY],
-** [SQLITE_DONE], [SQLITE_ROW], [SQLITE_ERROR], or [SQLITE_MISUSE].
-** ^With the "v2" interface, any of the other [result codes] or
-** [extended result codes] might be returned as well.
-**
-** ^[SQLITE_BUSY] means that the database engine was unable to acquire the
-** database locks it needs to do its job. ^If the statement is a [COMMIT]
-** or occurs outside of an explicit transaction, then you can retry the
-** statement. If the statement is not a [COMMIT] and occurs within an
-** explicit transaction then you should rollback the transaction before
-** continuing.
-**
-** ^[SQLITE_DONE] means that the statement has finished executing
-** successfully. sqlite3_step() should not be called again on this virtual
-** machine without first calling [sqlite3_reset()] to reset the virtual
-** machine back to its initial state.
-**
-** ^If the SQL statement being executed returns any data, then [SQLITE_ROW]
-** is returned each time a new row of data is ready for processing by the
-** caller. The values may be accessed using the [column access functions].
-** sqlite3_step() is called again to retrieve the next row of data.
-**
-** ^[SQLITE_ERROR] means that a run-time error (such as a constraint
-** violation) has occurred. sqlite3_step() should not be called again on
-** the VM. More information may be found by calling [sqlite3_errmsg()].
-** ^With the legacy interface, a more specific error code (for example,
-** [SQLITE_INTERRUPT], [SQLITE_SCHEMA], [SQLITE_CORRUPT], and so forth)
-** can be obtained by calling [sqlite3_reset()] on the
-** [prepared statement]. ^In the "v2" interface,
-** the more specific error code is returned directly by sqlite3_step().
-**
-** [SQLITE_MISUSE] means that the this routine was called inappropriately.
-** Perhaps it was called on a [prepared statement] that has
-** already been [sqlite3_finalize | finalized] or on one that had
-** previously returned [SQLITE_ERROR] or [SQLITE_DONE]. Or it could
-** be the case that the same database connection is being used by two or
-** more threads at the same moment in time.
-**
-** For all versions of SQLite up to and including 3.6.23.1, a call to
-** [sqlite3_reset()] was required after sqlite3_step() returned anything
-** other than [SQLITE_ROW] before any subsequent invocation of
-** sqlite3_step(). Failure to reset the prepared statement using
-** [sqlite3_reset()] would result in an [SQLITE_MISUSE] return from
-** sqlite3_step(). But after [version 3.6.23.1] ([dateof:3.6.23.1],
-** sqlite3_step() began
-** calling [sqlite3_reset()] automatically in this circumstance rather
-** than returning [SQLITE_MISUSE]. This is not considered a compatibility
-** break because any application that ever receives an SQLITE_MISUSE error
-** is broken by definition. The [SQLITE_OMIT_AUTORESET] compile-time option
-** can be used to restore the legacy behavior.
-**
-** Goofy Interface Alert: In the legacy interface, the sqlite3_step()
-** API always returns a generic error code, [SQLITE_ERROR], following any
-** error other than [SQLITE_BUSY] and [SQLITE_MISUSE]. You must call
-** [sqlite3_reset()] or [sqlite3_finalize()] in order to find one of the
-** specific [error codes] that better describes the error.
-** We admit that this is a goofy design. The problem has been fixed
-** with the "v2" interface. If you prepare all of your SQL statements
-** using [sqlite3_prepare_v3()] or [sqlite3_prepare_v2()]
-** or [sqlite3_prepare16_v2()] or [sqlite3_prepare16_v3()] instead
-** of the legacy [sqlite3_prepare()] and [sqlite3_prepare16()] interfaces,
-** then the more specific [error codes] are returned directly
-** by sqlite3_step(). The use of the "vX" interfaces is recommended.
-*/
-SQLITE_API int sqlite3_step(sqlite3_stmt*);
-
-/*
-** CAPI3REF: Number of columns in a result set
-** METHOD: sqlite3_stmt
-**
-** ^The sqlite3_data_count(P) interface returns the number of columns in the
-** current row of the result set of [prepared statement] P.
-** ^If prepared statement P does not have results ready to return
-** (via calls to the [sqlite3_column_int | sqlite3_column_*()] of
-** interfaces) then sqlite3_data_count(P) returns 0.
-** ^The sqlite3_data_count(P) routine also returns 0 if P is a NULL pointer.
-** ^The sqlite3_data_count(P) routine returns 0 if the previous call to
-** [sqlite3_step](P) returned [SQLITE_DONE]. ^The sqlite3_data_count(P)
-** will return non-zero if previous call to [sqlite3_step](P) returned
-** [SQLITE_ROW], except in the case of the [PRAGMA incremental_vacuum]
-** where it always returns zero since each step of that multi-step
-** pragma returns 0 columns of data.
-**
-** See also: [sqlite3_column_count()]
-*/
-SQLITE_API int sqlite3_data_count(sqlite3_stmt *pStmt);
-
-/*
-** CAPI3REF: Fundamental Datatypes
-** KEYWORDS: SQLITE_TEXT
-**
-** ^(Every value in SQLite has one of five fundamental datatypes:
-**
-**
-**
64-bit signed integer
-**
64-bit IEEE floating point number
-**
string
-**
BLOB
-**
NULL
-**
)^
-**
-** These constants are codes for each of those types.
-**
-** Note that the SQLITE_TEXT constant was also used in SQLite version 2
-** for a completely different meaning. Software that links against both
-** SQLite version 2 and SQLite version 3 should use SQLITE3_TEXT, not
-** SQLITE_TEXT.
-*/
-#define SQLITE_INTEGER 1
-#define SQLITE_FLOAT 2
-#define SQLITE_BLOB 4
-#define SQLITE_NULL 5
-#ifdef SQLITE_TEXT
-# undef SQLITE_TEXT
-#else
-# define SQLITE_TEXT 3
-#endif
-#define SQLITE3_TEXT 3
-
-/*
-** CAPI3REF: Result Values From A Query
-** KEYWORDS: {column access functions}
-** METHOD: sqlite3_stmt
-**
-** Summary:
-**
-**
sqlite3_column_blob
→
BLOB result
-**
sqlite3_column_double
→
REAL result
-**
sqlite3_column_int
→
32-bit INTEGER result
-**
sqlite3_column_int64
→
64-bit INTEGER result
-**
sqlite3_column_text
→
UTF-8 TEXT result
-**
sqlite3_column_text16
→
UTF-16 TEXT result
-**
sqlite3_column_value
→
The result as an
-** [sqlite3_value|unprotected sqlite3_value] object.
-**
-**
sqlite3_column_bytes
→
Size of a BLOB
-** or a UTF-8 TEXT result in bytes
-**
sqlite3_column_bytes16
-**
→
Size of UTF-16
-** TEXT in bytes
-**
sqlite3_column_type
→
Default
-** datatype of the result
-**
-**
-** Details:
-**
-** ^These routines return information about a single column of the current
-** result row of a query. ^In every case the first argument is a pointer
-** to the [prepared statement] that is being evaluated (the [sqlite3_stmt*]
-** that was returned from [sqlite3_prepare_v2()] or one of its variants)
-** and the second argument is the index of the column for which information
-** should be returned. ^The leftmost column of the result set has the index 0.
-** ^The number of columns in the result can be determined using
-** [sqlite3_column_count()].
-**
-** If the SQL statement does not currently point to a valid row, or if the
-** column index is out of range, the result is undefined.
-** These routines may only be called when the most recent call to
-** [sqlite3_step()] has returned [SQLITE_ROW] and neither
-** [sqlite3_reset()] nor [sqlite3_finalize()] have been called subsequently.
-** If any of these routines are called after [sqlite3_reset()] or
-** [sqlite3_finalize()] or after [sqlite3_step()] has returned
-** something other than [SQLITE_ROW], the results are undefined.
-** If [sqlite3_step()] or [sqlite3_reset()] or [sqlite3_finalize()]
-** are called from a different thread while any of these routines
-** are pending, then the results are undefined.
-**
-** The first six interfaces (_blob, _double, _int, _int64, _text, and _text16)
-** each return the value of a result column in a specific data format. If
-** the result column is not initially in the requested format (for example,
-** if the query returns an integer but the sqlite3_column_text() interface
-** is used to extract the value) then an automatic type conversion is performed.
-**
-** ^The sqlite3_column_type() routine returns the
-** [SQLITE_INTEGER | datatype code] for the initial data type
-** of the result column. ^The returned value is one of [SQLITE_INTEGER],
-** [SQLITE_FLOAT], [SQLITE_TEXT], [SQLITE_BLOB], or [SQLITE_NULL].
-** The return value of sqlite3_column_type() can be used to decide which
-** of the first six interface should be used to extract the column value.
-** The value returned by sqlite3_column_type() is only meaningful if no
-** automatic type conversions have occurred for the value in question.
-** After a type conversion, the result of calling sqlite3_column_type()
-** is undefined, though harmless. Future
-** versions of SQLite may change the behavior of sqlite3_column_type()
-** following a type conversion.
-**
-** If the result is a BLOB or a TEXT string, then the sqlite3_column_bytes()
-** or sqlite3_column_bytes16() interfaces can be used to determine the size
-** of that BLOB or string.
-**
-** ^If the result is a BLOB or UTF-8 string then the sqlite3_column_bytes()
-** routine returns the number of bytes in that BLOB or string.
-** ^If the result is a UTF-16 string, then sqlite3_column_bytes() converts
-** the string to UTF-8 and then returns the number of bytes.
-** ^If the result is a numeric value then sqlite3_column_bytes() uses
-** [sqlite3_snprintf()] to convert that value to a UTF-8 string and returns
-** the number of bytes in that string.
-** ^If the result is NULL, then sqlite3_column_bytes() returns zero.
-**
-** ^If the result is a BLOB or UTF-16 string then the sqlite3_column_bytes16()
-** routine returns the number of bytes in that BLOB or string.
-** ^If the result is a UTF-8 string, then sqlite3_column_bytes16() converts
-** the string to UTF-16 and then returns the number of bytes.
-** ^If the result is a numeric value then sqlite3_column_bytes16() uses
-** [sqlite3_snprintf()] to convert that value to a UTF-16 string and returns
-** the number of bytes in that string.
-** ^If the result is NULL, then sqlite3_column_bytes16() returns zero.
-**
-** ^The values returned by [sqlite3_column_bytes()] and
-** [sqlite3_column_bytes16()] do not include the zero terminators at the end
-** of the string. ^For clarity: the values returned by
-** [sqlite3_column_bytes()] and [sqlite3_column_bytes16()] are the number of
-** bytes in the string, not the number of characters.
-**
-** ^Strings returned by sqlite3_column_text() and sqlite3_column_text16(),
-** even empty strings, are always zero-terminated. ^The return
-** value from sqlite3_column_blob() for a zero-length BLOB is a NULL pointer.
-**
-** Warning: ^The object returned by [sqlite3_column_value()] is an
-** [unprotected sqlite3_value] object. In a multithreaded environment,
-** an unprotected sqlite3_value object may only be used safely with
-** [sqlite3_bind_value()] and [sqlite3_result_value()].
-** If the [unprotected sqlite3_value] object returned by
-** [sqlite3_column_value()] is used in any other way, including calls
-** to routines like [sqlite3_value_int()], [sqlite3_value_text()],
-** or [sqlite3_value_bytes()], the behavior is not threadsafe.
-** Hence, the sqlite3_column_value() interface
-** is normally only useful within the implementation of
-** [application-defined SQL functions] or [virtual tables], not within
-** top-level application code.
-**
-** The these routines may attempt to convert the datatype of the result.
-** ^For example, if the internal representation is FLOAT and a text result
-** is requested, [sqlite3_snprintf()] is used internally to perform the
-** conversion automatically. ^(The following table details the conversions
-** that are applied:
-**
-**
-**
-**
Internal Type
Requested Type
Conversion
-**
-**
NULL
INTEGER
Result is 0
-**
NULL
FLOAT
Result is 0.0
-**
NULL
TEXT
Result is a NULL pointer
-**
NULL
BLOB
Result is a NULL pointer
-**
INTEGER
FLOAT
Convert from integer to float
-**
INTEGER
TEXT
ASCII rendering of the integer
-**
INTEGER
BLOB
Same as INTEGER->TEXT
-**
FLOAT
INTEGER
[CAST] to INTEGER
-**
FLOAT
TEXT
ASCII rendering of the float
-**
FLOAT
BLOB
[CAST] to BLOB
-**
TEXT
INTEGER
[CAST] to INTEGER
-**
TEXT
FLOAT
[CAST] to REAL
-**
TEXT
BLOB
No change
-**
BLOB
INTEGER
[CAST] to INTEGER
-**
BLOB
FLOAT
[CAST] to REAL
-**
BLOB
TEXT
Add a zero terminator if needed
-**
-**
)^
-**
-** Note that when type conversions occur, pointers returned by prior
-** calls to sqlite3_column_blob(), sqlite3_column_text(), and/or
-** sqlite3_column_text16() may be invalidated.
-** Type conversions and pointer invalidations might occur
-** in the following cases:
-**
-**
-**
The initial content is a BLOB and sqlite3_column_text() or
-** sqlite3_column_text16() is called. A zero-terminator might
-** need to be added to the string.
-**
The initial content is UTF-8 text and sqlite3_column_bytes16() or
-** sqlite3_column_text16() is called. The content must be converted
-** to UTF-16.
-**
The initial content is UTF-16 text and sqlite3_column_bytes() or
-** sqlite3_column_text() is called. The content must be converted
-** to UTF-8.
-**
-**
-** ^Conversions between UTF-16be and UTF-16le are always done in place and do
-** not invalidate a prior pointer, though of course the content of the buffer
-** that the prior pointer references will have been modified. Other kinds
-** of conversion are done in place when it is possible, but sometimes they
-** are not possible and in those cases prior pointers are invalidated.
-**
-** The safest policy is to invoke these routines
-** in one of the following ways:
-**
-**
-**
sqlite3_column_text() followed by sqlite3_column_bytes()
-**
sqlite3_column_blob() followed by sqlite3_column_bytes()
-**
sqlite3_column_text16() followed by sqlite3_column_bytes16()
-**
-**
-** In other words, you should call sqlite3_column_text(),
-** sqlite3_column_blob(), or sqlite3_column_text16() first to force the result
-** into the desired format, then invoke sqlite3_column_bytes() or
-** sqlite3_column_bytes16() to find the size of the result. Do not mix calls
-** to sqlite3_column_text() or sqlite3_column_blob() with calls to
-** sqlite3_column_bytes16(), and do not mix calls to sqlite3_column_text16()
-** with calls to sqlite3_column_bytes().
-**
-** ^The pointers returned are valid until a type conversion occurs as
-** described above, or until [sqlite3_step()] or [sqlite3_reset()] or
-** [sqlite3_finalize()] is called. ^The memory space used to hold strings
-** and BLOBs is freed automatically. Do not pass the pointers returned
-** from [sqlite3_column_blob()], [sqlite3_column_text()], etc. into
-** [sqlite3_free()].
-**
-** As long as the input parameters are correct, these routines will only
-** fail if an out-of-memory error occurs during a format conversion.
-** Only the following subset of interfaces are subject to out-of-memory
-** errors:
-**
-**
-**
sqlite3_column_blob()
-**
sqlite3_column_text()
-**
sqlite3_column_text16()
-**
sqlite3_column_bytes()
-**
sqlite3_column_bytes16()
-**
-**
-** If an out-of-memory error occurs, then the return value from these
-** routines is the same as if the column had contained an SQL NULL value.
-** Valid SQL NULL returns can be distinguished from out-of-memory errors
-** by invoking the [sqlite3_errcode()] immediately after the suspect
-** return value is obtained and before any
-** other SQLite interface is called on the same [database connection].
-*/
-SQLITE_API const void *sqlite3_column_blob(sqlite3_stmt*, int iCol);
-SQLITE_API double sqlite3_column_double(sqlite3_stmt*, int iCol);
-SQLITE_API int sqlite3_column_int(sqlite3_stmt*, int iCol);
-SQLITE_API sqlite3_int64 sqlite3_column_int64(sqlite3_stmt*, int iCol);
-SQLITE_API const unsigned char *sqlite3_column_text(sqlite3_stmt*, int iCol);
-SQLITE_API const void *sqlite3_column_text16(sqlite3_stmt*, int iCol);
-SQLITE_API sqlite3_value *sqlite3_column_value(sqlite3_stmt*, int iCol);
-SQLITE_API int sqlite3_column_bytes(sqlite3_stmt*, int iCol);
-SQLITE_API int sqlite3_column_bytes16(sqlite3_stmt*, int iCol);
-SQLITE_API int sqlite3_column_type(sqlite3_stmt*, int iCol);
-
-/*
-** CAPI3REF: Destroy A Prepared Statement Object
-** DESTRUCTOR: sqlite3_stmt
-**
-** ^The sqlite3_finalize() function is called to delete a [prepared statement].
-** ^If the most recent evaluation of the statement encountered no errors
-** or if the statement is never been evaluated, then sqlite3_finalize() returns
-** SQLITE_OK. ^If the most recent evaluation of statement S failed, then
-** sqlite3_finalize(S) returns the appropriate [error code] or
-** [extended error code].
-**
-** ^The sqlite3_finalize(S) routine can be called at any point during
-** the life cycle of [prepared statement] S:
-** before statement S is ever evaluated, after
-** one or more calls to [sqlite3_reset()], or after any call
-** to [sqlite3_step()] regardless of whether or not the statement has
-** completed execution.
-**
-** ^Invoking sqlite3_finalize() on a NULL pointer is a harmless no-op.
-**
-** The application must finalize every [prepared statement] in order to avoid
-** resource leaks. It is a grievous error for the application to try to use
-** a prepared statement after it has been finalized. Any use of a prepared
-** statement after it has been finalized can result in undefined and
-** undesirable behavior such as segfaults and heap corruption.
-*/
-SQLITE_API int sqlite3_finalize(sqlite3_stmt *pStmt);
-
-/*
-** CAPI3REF: Reset A Prepared Statement Object
-** METHOD: sqlite3_stmt
-**
-** The sqlite3_reset() function is called to reset a [prepared statement]
-** object back to its initial state, ready to be re-executed.
-** ^Any SQL statement variables that had values bound to them using
-** the [sqlite3_bind_blob | sqlite3_bind_*() API] retain their values.
-** Use [sqlite3_clear_bindings()] to reset the bindings.
-**
-** ^The [sqlite3_reset(S)] interface resets the [prepared statement] S
-** back to the beginning of its program.
-**
-** ^If the most recent call to [sqlite3_step(S)] for the
-** [prepared statement] S returned [SQLITE_ROW] or [SQLITE_DONE],
-** or if [sqlite3_step(S)] has never before been called on S,
-** then [sqlite3_reset(S)] returns [SQLITE_OK].
-**
-** ^If the most recent call to [sqlite3_step(S)] for the
-** [prepared statement] S indicated an error, then
-** [sqlite3_reset(S)] returns an appropriate [error code].
-**
-** ^The [sqlite3_reset(S)] interface does not change the values
-** of any [sqlite3_bind_blob|bindings] on the [prepared statement] S.
-*/
-SQLITE_API int sqlite3_reset(sqlite3_stmt *pStmt);
-
-/*
-** CAPI3REF: Create Or Redefine SQL Functions
-** KEYWORDS: {function creation routines}
-** KEYWORDS: {application-defined SQL function}
-** KEYWORDS: {application-defined SQL functions}
-** METHOD: sqlite3
-**
-** ^These functions (collectively known as "function creation routines")
-** are used to add SQL functions or aggregates or to redefine the behavior
-** of existing SQL functions or aggregates. The only differences between
-** the three "sqlite3_create_function*" routines are the text encoding
-** expected for the second parameter (the name of the function being
-** created) and the presence or absence of a destructor callback for
-** the application data pointer. Function sqlite3_create_window_function()
-** is similar, but allows the user to supply the extra callback functions
-** needed by [aggregate window functions].
-**
-** ^The first parameter is the [database connection] to which the SQL
-** function is to be added. ^If an application uses more than one database
-** connection then application-defined SQL functions must be added
-** to each database connection separately.
-**
-** ^The second parameter is the name of the SQL function to be created or
-** redefined. ^The length of the name is limited to 255 bytes in a UTF-8
-** representation, exclusive of the zero-terminator. ^Note that the name
-** length limit is in UTF-8 bytes, not characters nor UTF-16 bytes.
-** ^Any attempt to create a function with a longer name
-** will result in [SQLITE_MISUSE] being returned.
-**
-** ^The third parameter (nArg)
-** is the number of arguments that the SQL function or
-** aggregate takes. ^If this parameter is -1, then the SQL function or
-** aggregate may take any number of arguments between 0 and the limit
-** set by [sqlite3_limit]([SQLITE_LIMIT_FUNCTION_ARG]). If the third
-** parameter is less than -1 or greater than 127 then the behavior is
-** undefined.
-**
-** ^The fourth parameter, eTextRep, specifies what
-** [SQLITE_UTF8 | text encoding] this SQL function prefers for
-** its parameters. The application should set this parameter to
-** [SQLITE_UTF16LE] if the function implementation invokes
-** [sqlite3_value_text16le()] on an input, or [SQLITE_UTF16BE] if the
-** implementation invokes [sqlite3_value_text16be()] on an input, or
-** [SQLITE_UTF16] if [sqlite3_value_text16()] is used, or [SQLITE_UTF8]
-** otherwise. ^The same SQL function may be registered multiple times using
-** different preferred text encodings, with different implementations for
-** each encoding.
-** ^When multiple implementations of the same function are available, SQLite
-** will pick the one that involves the least amount of data conversion.
-**
-** ^The fourth parameter may optionally be ORed with [SQLITE_DETERMINISTIC]
-** to signal that the function will always return the same result given
-** the same inputs within a single SQL statement. Most SQL functions are
-** deterministic. The built-in [random()] SQL function is an example of a
-** function that is not deterministic. The SQLite query planner is able to
-** perform additional optimizations on deterministic functions, so use
-** of the [SQLITE_DETERMINISTIC] flag is recommended where possible.
-**
-** ^(The fifth parameter is an arbitrary pointer. The implementation of the
-** function can gain access to this pointer using [sqlite3_user_data()].)^
-**
-** ^The sixth, seventh and eighth parameters passed to the three
-** "sqlite3_create_function*" functions, xFunc, xStep and xFinal, are
-** pointers to C-language functions that implement the SQL function or
-** aggregate. ^A scalar SQL function requires an implementation of the xFunc
-** callback only; NULL pointers must be passed as the xStep and xFinal
-** parameters. ^An aggregate SQL function requires an implementation of xStep
-** and xFinal and NULL pointer must be passed for xFunc. ^To delete an existing
-** SQL function or aggregate, pass NULL pointers for all three function
-** callbacks.
-**
-** ^The sixth, seventh, eighth and ninth parameters (xStep, xFinal, xValue
-** and xInverse) passed to sqlite3_create_window_function are pointers to
-** C-language callbacks that implement the new function. xStep and xFinal
-** must both be non-NULL. xValue and xInverse may either both be NULL, in
-** which case a regular aggregate function is created, or must both be
-** non-NULL, in which case the new function may be used as either an aggregate
-** or aggregate window function. More details regarding the implementation
-** of aggregate window functions are
-** [user-defined window functions|available here].
-**
-** ^(If the final parameter to sqlite3_create_function_v2() or
-** sqlite3_create_window_function() is not NULL, then it is destructor for
-** the application data pointer. The destructor is invoked when the function
-** is deleted, either by being overloaded or when the database connection
-** closes.)^ ^The destructor is also invoked if the call to
-** sqlite3_create_function_v2() fails. ^When the destructor callback is
-** invoked, it is passed a single argument which is a copy of the application
-** data pointer which was the fifth parameter to sqlite3_create_function_v2().
-**
-** ^It is permitted to register multiple implementations of the same
-** functions with the same name but with either differing numbers of
-** arguments or differing preferred text encodings. ^SQLite will use
-** the implementation that most closely matches the way in which the
-** SQL function is used. ^A function implementation with a non-negative
-** nArg parameter is a better match than a function implementation with
-** a negative nArg. ^A function where the preferred text encoding
-** matches the database encoding is a better
-** match than a function where the encoding is different.
-** ^A function where the encoding difference is between UTF16le and UTF16be
-** is a closer match than a function where the encoding difference is
-** between UTF8 and UTF16.
-**
-** ^Built-in functions may be overloaded by new application-defined functions.
-**
-** ^An application-defined function is permitted to call other
-** SQLite interfaces. However, such calls must not
-** close the database connection nor finalize or reset the prepared
-** statement in which the function is running.
-*/
-SQLITE_API int sqlite3_create_function(
- sqlite3 *db,
- const char *zFunctionName,
- int nArg,
- int eTextRep,
- void *pApp,
- void (*xFunc)(sqlite3_context*,int,sqlite3_value**),
- void (*xStep)(sqlite3_context*,int,sqlite3_value**),
- void (*xFinal)(sqlite3_context*)
-);
-SQLITE_API int sqlite3_create_function16(
- sqlite3 *db,
- const void *zFunctionName,
- int nArg,
- int eTextRep,
- void *pApp,
- void (*xFunc)(sqlite3_context*,int,sqlite3_value**),
- void (*xStep)(sqlite3_context*,int,sqlite3_value**),
- void (*xFinal)(sqlite3_context*)
-);
-SQLITE_API int sqlite3_create_function_v2(
- sqlite3 *db,
- const char *zFunctionName,
- int nArg,
- int eTextRep,
- void *pApp,
- void (*xFunc)(sqlite3_context*,int,sqlite3_value**),
- void (*xStep)(sqlite3_context*,int,sqlite3_value**),
- void (*xFinal)(sqlite3_context*),
- void(*xDestroy)(void*)
-);
-SQLITE_API int sqlite3_create_window_function(
- sqlite3 *db,
- const char *zFunctionName,
- int nArg,
- int eTextRep,
- void *pApp,
- void (*xStep)(sqlite3_context*,int,sqlite3_value**),
- void (*xFinal)(sqlite3_context*),
- void (*xValue)(sqlite3_context*),
- void (*xInverse)(sqlite3_context*,int,sqlite3_value**),
- void(*xDestroy)(void*)
-);
-
-/*
-** CAPI3REF: Text Encodings
-**
-** These constant define integer codes that represent the various
-** text encodings supported by SQLite.
-*/
-#define SQLITE_UTF8 1 /* IMP: R-37514-35566 */
-#define SQLITE_UTF16LE 2 /* IMP: R-03371-37637 */
-#define SQLITE_UTF16BE 3 /* IMP: R-51971-34154 */
-#define SQLITE_UTF16 4 /* Use native byte order */
-#define SQLITE_ANY 5 /* Deprecated */
-#define SQLITE_UTF16_ALIGNED 8 /* sqlite3_create_collation only */
-
-/*
-** CAPI3REF: Function Flags
-**
-** These constants may be ORed together with the
-** [SQLITE_UTF8 | preferred text encoding] as the fourth argument
-** to [sqlite3_create_function()], [sqlite3_create_function16()], or
-** [sqlite3_create_function_v2()].
-*/
-#define SQLITE_DETERMINISTIC 0x800
-
-/*
-** CAPI3REF: Deprecated Functions
-** DEPRECATED
-**
-** These functions are [deprecated]. In order to maintain
-** backwards compatibility with older code, these functions continue
-** to be supported. However, new applications should avoid
-** the use of these functions. To encourage programmers to avoid
-** these functions, we will not explain what they do.
-*/
-#ifndef SQLITE_OMIT_DEPRECATED
-SQLITE_API SQLITE_DEPRECATED int sqlite3_aggregate_count(sqlite3_context*);
-SQLITE_API SQLITE_DEPRECATED int sqlite3_expired(sqlite3_stmt*);
-SQLITE_API SQLITE_DEPRECATED int sqlite3_transfer_bindings(sqlite3_stmt*, sqlite3_stmt*);
-SQLITE_API SQLITE_DEPRECATED int sqlite3_global_recover(void);
-SQLITE_API SQLITE_DEPRECATED void sqlite3_thread_cleanup(void);
-SQLITE_API SQLITE_DEPRECATED int sqlite3_memory_alarm(void(*)(void*,sqlite3_int64,int),
- void*,sqlite3_int64);
-#endif
-
-/*
-** CAPI3REF: Obtaining SQL Values
-** METHOD: sqlite3_value
-**
-** Summary:
-**
-**
sqlite3_value_blob
→
BLOB value
-**
sqlite3_value_double
→
REAL value
-**
sqlite3_value_int
→
32-bit INTEGER value
-**
sqlite3_value_int64
→
64-bit INTEGER value
-**
sqlite3_value_pointer
→
Pointer value
-**
sqlite3_value_text
→
UTF-8 TEXT value
-**
sqlite3_value_text16
→
UTF-16 TEXT value in
-** the native byteorder
-**
sqlite3_value_text16be
→
UTF-16be TEXT value
-**
sqlite3_value_text16le
→
UTF-16le TEXT value
-**
-**
sqlite3_value_bytes
→
Size of a BLOB
-** or a UTF-8 TEXT in bytes
-**
sqlite3_value_bytes16
-**
→
Size of UTF-16
-** TEXT in bytes
-**
sqlite3_value_type
→
Default
-** datatype of the value
-**
sqlite3_value_numeric_type
-**
→
Best numeric datatype of the value
-**
sqlite3_value_nochange
-**
→
True if the column is unchanged in an UPDATE
-** against a virtual table.
-**
-**
-** Details:
-**
-** These routines extract type, size, and content information from
-** [protected sqlite3_value] objects. Protected sqlite3_value objects
-** are used to pass parameter information into implementation of
-** [application-defined SQL functions] and [virtual tables].
-**
-** These routines work only with [protected sqlite3_value] objects.
-** Any attempt to use these routines on an [unprotected sqlite3_value]
-** is not threadsafe.
-**
-** ^These routines work just like the corresponding [column access functions]
-** except that these routines take a single [protected sqlite3_value] object
-** pointer instead of a [sqlite3_stmt*] pointer and an integer column number.
-**
-** ^The sqlite3_value_text16() interface extracts a UTF-16 string
-** in the native byte-order of the host machine. ^The
-** sqlite3_value_text16be() and sqlite3_value_text16le() interfaces
-** extract UTF-16 strings as big-endian and little-endian respectively.
-**
-** ^If [sqlite3_value] object V was initialized
-** using [sqlite3_bind_pointer(S,I,P,X,D)] or [sqlite3_result_pointer(C,P,X,D)]
-** and if X and Y are strings that compare equal according to strcmp(X,Y),
-** then sqlite3_value_pointer(V,Y) will return the pointer P. ^Otherwise,
-** sqlite3_value_pointer(V,Y) returns a NULL. The sqlite3_bind_pointer()
-** routine is part of the [pointer passing interface] added for SQLite 3.20.0.
-**
-** ^(The sqlite3_value_type(V) interface returns the
-** [SQLITE_INTEGER | datatype code] for the initial datatype of the
-** [sqlite3_value] object V. The returned value is one of [SQLITE_INTEGER],
-** [SQLITE_FLOAT], [SQLITE_TEXT], [SQLITE_BLOB], or [SQLITE_NULL].)^
-** Other interfaces might change the datatype for an sqlite3_value object.
-** For example, if the datatype is initially SQLITE_INTEGER and
-** sqlite3_value_text(V) is called to extract a text value for that
-** integer, then subsequent calls to sqlite3_value_type(V) might return
-** SQLITE_TEXT. Whether or not a persistent internal datatype conversion
-** occurs is undefined and may change from one release of SQLite to the next.
-**
-** ^(The sqlite3_value_numeric_type() interface attempts to apply
-** numeric affinity to the value. This means that an attempt is
-** made to convert the value to an integer or floating point. If
-** such a conversion is possible without loss of information (in other
-** words, if the value is a string that looks like a number)
-** then the conversion is performed. Otherwise no conversion occurs.
-** The [SQLITE_INTEGER | datatype] after conversion is returned.)^
-**
-** ^Within the [xUpdate] method of a [virtual table], the
-** sqlite3_value_nochange(X) interface returns true if and only if
-** the column corresponding to X is unchanged by the UPDATE operation
-** that the xUpdate method call was invoked to implement and if
-** and the prior [xColumn] method call that was invoked to extracted
-** the value for that column returned without setting a result (probably
-** because it queried [sqlite3_vtab_nochange()] and found that the column
-** was unchanging). ^Within an [xUpdate] method, any value for which
-** sqlite3_value_nochange(X) is true will in all other respects appear
-** to be a NULL value. If sqlite3_value_nochange(X) is invoked anywhere other
-** than within an [xUpdate] method call for an UPDATE statement, then
-** the return value is arbitrary and meaningless.
-**
-** Please pay particular attention to the fact that the pointer returned
-** from [sqlite3_value_blob()], [sqlite3_value_text()], or
-** [sqlite3_value_text16()] can be invalidated by a subsequent call to
-** [sqlite3_value_bytes()], [sqlite3_value_bytes16()], [sqlite3_value_text()],
-** or [sqlite3_value_text16()].
-**
-** These routines must be called from the same thread as
-** the SQL function that supplied the [sqlite3_value*] parameters.
-**
-** As long as the input parameter is correct, these routines can only
-** fail if an out-of-memory error occurs during a format conversion.
-** Only the following subset of interfaces are subject to out-of-memory
-** errors:
-**
-**
-**
sqlite3_value_blob()
-**
sqlite3_value_text()
-**
sqlite3_value_text16()
-**
sqlite3_value_text16le()
-**
sqlite3_value_text16be()
-**
sqlite3_value_bytes()
-**
sqlite3_value_bytes16()
-**
-**
-** If an out-of-memory error occurs, then the return value from these
-** routines is the same as if the column had contained an SQL NULL value.
-** Valid SQL NULL returns can be distinguished from out-of-memory errors
-** by invoking the [sqlite3_errcode()] immediately after the suspect
-** return value is obtained and before any
-** other SQLite interface is called on the same [database connection].
-*/
-SQLITE_API const void *sqlite3_value_blob(sqlite3_value*);
-SQLITE_API double sqlite3_value_double(sqlite3_value*);
-SQLITE_API int sqlite3_value_int(sqlite3_value*);
-SQLITE_API sqlite3_int64 sqlite3_value_int64(sqlite3_value*);
-SQLITE_API void *sqlite3_value_pointer(sqlite3_value*, const char*);
-SQLITE_API const unsigned char *sqlite3_value_text(sqlite3_value*);
-SQLITE_API const void *sqlite3_value_text16(sqlite3_value*);
-SQLITE_API const void *sqlite3_value_text16le(sqlite3_value*);
-SQLITE_API const void *sqlite3_value_text16be(sqlite3_value*);
-SQLITE_API int sqlite3_value_bytes(sqlite3_value*);
-SQLITE_API int sqlite3_value_bytes16(sqlite3_value*);
-SQLITE_API int sqlite3_value_type(sqlite3_value*);
-SQLITE_API int sqlite3_value_numeric_type(sqlite3_value*);
-SQLITE_API int sqlite3_value_nochange(sqlite3_value*);
-
-/*
-** CAPI3REF: Finding The Subtype Of SQL Values
-** METHOD: sqlite3_value
-**
-** The sqlite3_value_subtype(V) function returns the subtype for
-** an [application-defined SQL function] argument V. The subtype
-** information can be used to pass a limited amount of context from
-** one SQL function to another. Use the [sqlite3_result_subtype()]
-** routine to set the subtype for the return value of an SQL function.
-*/
-SQLITE_API unsigned int sqlite3_value_subtype(sqlite3_value*);
-
-/*
-** CAPI3REF: Copy And Free SQL Values
-** METHOD: sqlite3_value
-**
-** ^The sqlite3_value_dup(V) interface makes a copy of the [sqlite3_value]
-** object D and returns a pointer to that copy. ^The [sqlite3_value] returned
-** is a [protected sqlite3_value] object even if the input is not.
-** ^The sqlite3_value_dup(V) interface returns NULL if V is NULL or if a
-** memory allocation fails.
-**
-** ^The sqlite3_value_free(V) interface frees an [sqlite3_value] object
-** previously obtained from [sqlite3_value_dup()]. ^If V is a NULL pointer
-** then sqlite3_value_free(V) is a harmless no-op.
-*/
-SQLITE_API sqlite3_value *sqlite3_value_dup(const sqlite3_value*);
-SQLITE_API void sqlite3_value_free(sqlite3_value*);
-
-/*
-** CAPI3REF: Obtain Aggregate Function Context
-** METHOD: sqlite3_context
-**
-** Implementations of aggregate SQL functions use this
-** routine to allocate memory for storing their state.
-**
-** ^The first time the sqlite3_aggregate_context(C,N) routine is called
-** for a particular aggregate function, SQLite
-** allocates N of memory, zeroes out that memory, and returns a pointer
-** to the new memory. ^On second and subsequent calls to
-** sqlite3_aggregate_context() for the same aggregate function instance,
-** the same buffer is returned. Sqlite3_aggregate_context() is normally
-** called once for each invocation of the xStep callback and then one
-** last time when the xFinal callback is invoked. ^(When no rows match
-** an aggregate query, the xStep() callback of the aggregate function
-** implementation is never called and xFinal() is called exactly once.
-** In those cases, sqlite3_aggregate_context() might be called for the
-** first time from within xFinal().)^
-**
-** ^The sqlite3_aggregate_context(C,N) routine returns a NULL pointer
-** when first called if N is less than or equal to zero or if a memory
-** allocate error occurs.
-**
-** ^(The amount of space allocated by sqlite3_aggregate_context(C,N) is
-** determined by the N parameter on first successful call. Changing the
-** value of N in subsequent call to sqlite3_aggregate_context() within
-** the same aggregate function instance will not resize the memory
-** allocation.)^ Within the xFinal callback, it is customary to set
-** N=0 in calls to sqlite3_aggregate_context(C,N) so that no
-** pointless memory allocations occur.
-**
-** ^SQLite automatically frees the memory allocated by
-** sqlite3_aggregate_context() when the aggregate query concludes.
-**
-** The first parameter must be a copy of the
-** [sqlite3_context | SQL function context] that is the first parameter
-** to the xStep or xFinal callback routine that implements the aggregate
-** function.
-**
-** This routine must be called from the same thread in which
-** the aggregate SQL function is running.
-*/
-SQLITE_API void *sqlite3_aggregate_context(sqlite3_context*, int nBytes);
-
-/*
-** CAPI3REF: User Data For Functions
-** METHOD: sqlite3_context
-**
-** ^The sqlite3_user_data() interface returns a copy of
-** the pointer that was the pUserData parameter (the 5th parameter)
-** of the [sqlite3_create_function()]
-** and [sqlite3_create_function16()] routines that originally
-** registered the application defined function.
-**
-** This routine must be called from the same thread in which
-** the application-defined function is running.
-*/
-SQLITE_API void *sqlite3_user_data(sqlite3_context*);
-
-/*
-** CAPI3REF: Database Connection For Functions
-** METHOD: sqlite3_context
-**
-** ^The sqlite3_context_db_handle() interface returns a copy of
-** the pointer to the [database connection] (the 1st parameter)
-** of the [sqlite3_create_function()]
-** and [sqlite3_create_function16()] routines that originally
-** registered the application defined function.
-*/
-SQLITE_API sqlite3 *sqlite3_context_db_handle(sqlite3_context*);
-
-/*
-** CAPI3REF: Function Auxiliary Data
-** METHOD: sqlite3_context
-**
-** These functions may be used by (non-aggregate) SQL functions to
-** associate metadata with argument values. If the same value is passed to
-** multiple invocations of the same SQL function during query execution, under
-** some circumstances the associated metadata may be preserved. An example
-** of where this might be useful is in a regular-expression matching
-** function. The compiled version of the regular expression can be stored as
-** metadata associated with the pattern string.
-** Then as long as the pattern string remains the same,
-** the compiled regular expression can be reused on multiple
-** invocations of the same function.
-**
-** ^The sqlite3_get_auxdata(C,N) interface returns a pointer to the metadata
-** associated by the sqlite3_set_auxdata(C,N,P,X) function with the Nth argument
-** value to the application-defined function. ^N is zero for the left-most
-** function argument. ^If there is no metadata
-** associated with the function argument, the sqlite3_get_auxdata(C,N) interface
-** returns a NULL pointer.
-**
-** ^The sqlite3_set_auxdata(C,N,P,X) interface saves P as metadata for the N-th
-** argument of the application-defined function. ^Subsequent
-** calls to sqlite3_get_auxdata(C,N) return P from the most recent
-** sqlite3_set_auxdata(C,N,P,X) call if the metadata is still valid or
-** NULL if the metadata has been discarded.
-** ^After each call to sqlite3_set_auxdata(C,N,P,X) where X is not NULL,
-** SQLite will invoke the destructor function X with parameter P exactly
-** once, when the metadata is discarded.
-** SQLite is free to discard the metadata at any time, including:
-**
^(when the corresponding function parameter changes)^, or
-**
^(when [sqlite3_reset()] or [sqlite3_finalize()] is called for the
-** SQL statement)^, or
-**
^(when sqlite3_set_auxdata() is invoked again on the same
-** parameter)^, or
-**
^(during the original sqlite3_set_auxdata() call when a memory
-** allocation error occurs.)^
-**
-** Note the last bullet in particular. The destructor X in
-** sqlite3_set_auxdata(C,N,P,X) might be called immediately, before the
-** sqlite3_set_auxdata() interface even returns. Hence sqlite3_set_auxdata()
-** should be called near the end of the function implementation and the
-** function implementation should not make any use of P after
-** sqlite3_set_auxdata() has been called.
-**
-** ^(In practice, metadata is preserved between function calls for
-** function parameters that are compile-time constants, including literal
-** values and [parameters] and expressions composed from the same.)^
-**
-** The value of the N parameter to these interfaces should be non-negative.
-** Future enhancements may make use of negative N values to define new
-** kinds of function caching behavior.
-**
-** These routines must be called from the same thread in which
-** the SQL function is running.
-*/
-SQLITE_API void *sqlite3_get_auxdata(sqlite3_context*, int N);
-SQLITE_API void sqlite3_set_auxdata(sqlite3_context*, int N, void*, void (*)(void*));
-
-
-/*
-** CAPI3REF: Constants Defining Special Destructor Behavior
-**
-** These are special values for the destructor that is passed in as the
-** final argument to routines like [sqlite3_result_blob()]. ^If the destructor
-** argument is SQLITE_STATIC, it means that the content pointer is constant
-** and will never change. It does not need to be destroyed. ^The
-** SQLITE_TRANSIENT value means that the content will likely change in
-** the near future and that SQLite should make its own private copy of
-** the content before returning.
-**
-** The typedef is necessary to work around problems in certain
-** C++ compilers.
-*/
-typedef void (*sqlite3_destructor_type)(void*);
-#define SQLITE_STATIC ((sqlite3_destructor_type)0)
-#define SQLITE_TRANSIENT ((sqlite3_destructor_type)-1)
-
-/*
-** CAPI3REF: Setting The Result Of An SQL Function
-** METHOD: sqlite3_context
-**
-** These routines are used by the xFunc or xFinal callbacks that
-** implement SQL functions and aggregates. See
-** [sqlite3_create_function()] and [sqlite3_create_function16()]
-** for additional information.
-**
-** These functions work very much like the [parameter binding] family of
-** functions used to bind values to host parameters in prepared statements.
-** Refer to the [SQL parameter] documentation for additional information.
-**
-** ^The sqlite3_result_blob() interface sets the result from
-** an application-defined function to be the BLOB whose content is pointed
-** to by the second parameter and which is N bytes long where N is the
-** third parameter.
-**
-** ^The sqlite3_result_zeroblob(C,N) and sqlite3_result_zeroblob64(C,N)
-** interfaces set the result of the application-defined function to be
-** a BLOB containing all zero bytes and N bytes in size.
-**
-** ^The sqlite3_result_double() interface sets the result from
-** an application-defined function to be a floating point value specified
-** by its 2nd argument.
-**
-** ^The sqlite3_result_error() and sqlite3_result_error16() functions
-** cause the implemented SQL function to throw an exception.
-** ^SQLite uses the string pointed to by the
-** 2nd parameter of sqlite3_result_error() or sqlite3_result_error16()
-** as the text of an error message. ^SQLite interprets the error
-** message string from sqlite3_result_error() as UTF-8. ^SQLite
-** interprets the string from sqlite3_result_error16() as UTF-16 in native
-** byte order. ^If the third parameter to sqlite3_result_error()
-** or sqlite3_result_error16() is negative then SQLite takes as the error
-** message all text up through the first zero character.
-** ^If the third parameter to sqlite3_result_error() or
-** sqlite3_result_error16() is non-negative then SQLite takes that many
-** bytes (not characters) from the 2nd parameter as the error message.
-** ^The sqlite3_result_error() and sqlite3_result_error16()
-** routines make a private copy of the error message text before
-** they return. Hence, the calling function can deallocate or
-** modify the text after they return without harm.
-** ^The sqlite3_result_error_code() function changes the error code
-** returned by SQLite as a result of an error in a function. ^By default,
-** the error code is SQLITE_ERROR. ^A subsequent call to sqlite3_result_error()
-** or sqlite3_result_error16() resets the error code to SQLITE_ERROR.
-**
-** ^The sqlite3_result_error_toobig() interface causes SQLite to throw an
-** error indicating that a string or BLOB is too long to represent.
-**
-** ^The sqlite3_result_error_nomem() interface causes SQLite to throw an
-** error indicating that a memory allocation failed.
-**
-** ^The sqlite3_result_int() interface sets the return value
-** of the application-defined function to be the 32-bit signed integer
-** value given in the 2nd argument.
-** ^The sqlite3_result_int64() interface sets the return value
-** of the application-defined function to be the 64-bit signed integer
-** value given in the 2nd argument.
-**
-** ^The sqlite3_result_null() interface sets the return value
-** of the application-defined function to be NULL.
-**
-** ^The sqlite3_result_text(), sqlite3_result_text16(),
-** sqlite3_result_text16le(), and sqlite3_result_text16be() interfaces
-** set the return value of the application-defined function to be
-** a text string which is represented as UTF-8, UTF-16 native byte order,
-** UTF-16 little endian, or UTF-16 big endian, respectively.
-** ^The sqlite3_result_text64() interface sets the return value of an
-** application-defined function to be a text string in an encoding
-** specified by the fifth (and last) parameter, which must be one
-** of [SQLITE_UTF8], [SQLITE_UTF16], [SQLITE_UTF16BE], or [SQLITE_UTF16LE].
-** ^SQLite takes the text result from the application from
-** the 2nd parameter of the sqlite3_result_text* interfaces.
-** ^If the 3rd parameter to the sqlite3_result_text* interfaces
-** is negative, then SQLite takes result text from the 2nd parameter
-** through the first zero character.
-** ^If the 3rd parameter to the sqlite3_result_text* interfaces
-** is non-negative, then as many bytes (not characters) of the text
-** pointed to by the 2nd parameter are taken as the application-defined
-** function result. If the 3rd parameter is non-negative, then it
-** must be the byte offset into the string where the NUL terminator would
-** appear if the string where NUL terminated. If any NUL characters occur
-** in the string at a byte offset that is less than the value of the 3rd
-** parameter, then the resulting string will contain embedded NULs and the
-** result of expressions operating on strings with embedded NULs is undefined.
-** ^If the 4th parameter to the sqlite3_result_text* interfaces
-** or sqlite3_result_blob is a non-NULL pointer, then SQLite calls that
-** function as the destructor on the text or BLOB result when it has
-** finished using that result.
-** ^If the 4th parameter to the sqlite3_result_text* interfaces or to
-** sqlite3_result_blob is the special constant SQLITE_STATIC, then SQLite
-** assumes that the text or BLOB result is in constant space and does not
-** copy the content of the parameter nor call a destructor on the content
-** when it has finished using that result.
-** ^If the 4th parameter to the sqlite3_result_text* interfaces
-** or sqlite3_result_blob is the special constant SQLITE_TRANSIENT
-** then SQLite makes a copy of the result into space obtained
-** from [sqlite3_malloc()] before it returns.
-**
-** ^The sqlite3_result_value() interface sets the result of
-** the application-defined function to be a copy of the
-** [unprotected sqlite3_value] object specified by the 2nd parameter. ^The
-** sqlite3_result_value() interface makes a copy of the [sqlite3_value]
-** so that the [sqlite3_value] specified in the parameter may change or
-** be deallocated after sqlite3_result_value() returns without harm.
-** ^A [protected sqlite3_value] object may always be used where an
-** [unprotected sqlite3_value] object is required, so either
-** kind of [sqlite3_value] object can be used with this interface.
-**
-** ^The sqlite3_result_pointer(C,P,T,D) interface sets the result to an
-** SQL NULL value, just like [sqlite3_result_null(C)], except that it
-** also associates the host-language pointer P or type T with that
-** NULL value such that the pointer can be retrieved within an
-** [application-defined SQL function] using [sqlite3_value_pointer()].
-** ^If the D parameter is not NULL, then it is a pointer to a destructor
-** for the P parameter. ^SQLite invokes D with P as its only argument
-** when SQLite is finished with P. The T parameter should be a static
-** string and preferably a string literal. The sqlite3_result_pointer()
-** routine is part of the [pointer passing interface] added for SQLite 3.20.0.
-**
-** If these routines are called from within the different thread
-** than the one containing the application-defined function that received
-** the [sqlite3_context] pointer, the results are undefined.
-*/
-SQLITE_API void sqlite3_result_blob(sqlite3_context*, const void*, int, void(*)(void*));
-SQLITE_API void sqlite3_result_blob64(sqlite3_context*,const void*,
- sqlite3_uint64,void(*)(void*));
-SQLITE_API void sqlite3_result_double(sqlite3_context*, double);
-SQLITE_API void sqlite3_result_error(sqlite3_context*, const char*, int);
-SQLITE_API void sqlite3_result_error16(sqlite3_context*, const void*, int);
-SQLITE_API void sqlite3_result_error_toobig(sqlite3_context*);
-SQLITE_API void sqlite3_result_error_nomem(sqlite3_context*);
-SQLITE_API void sqlite3_result_error_code(sqlite3_context*, int);
-SQLITE_API void sqlite3_result_int(sqlite3_context*, int);
-SQLITE_API void sqlite3_result_int64(sqlite3_context*, sqlite3_int64);
-SQLITE_API void sqlite3_result_null(sqlite3_context*);
-SQLITE_API void sqlite3_result_text(sqlite3_context*, const char*, int, void(*)(void*));
-SQLITE_API void sqlite3_result_text64(sqlite3_context*, const char*,sqlite3_uint64,
- void(*)(void*), unsigned char encoding);
-SQLITE_API void sqlite3_result_text16(sqlite3_context*, const void*, int, void(*)(void*));
-SQLITE_API void sqlite3_result_text16le(sqlite3_context*, const void*, int,void(*)(void*));
-SQLITE_API void sqlite3_result_text16be(sqlite3_context*, const void*, int,void(*)(void*));
-SQLITE_API void sqlite3_result_value(sqlite3_context*, sqlite3_value*);
-SQLITE_API void sqlite3_result_pointer(sqlite3_context*, void*,const char*,void(*)(void*));
-SQLITE_API void sqlite3_result_zeroblob(sqlite3_context*, int n);
-SQLITE_API int sqlite3_result_zeroblob64(sqlite3_context*, sqlite3_uint64 n);
-
-
-/*
-** CAPI3REF: Setting The Subtype Of An SQL Function
-** METHOD: sqlite3_context
-**
-** The sqlite3_result_subtype(C,T) function causes the subtype of
-** the result from the [application-defined SQL function] with
-** [sqlite3_context] C to be the value T. Only the lower 8 bits
-** of the subtype T are preserved in current versions of SQLite;
-** higher order bits are discarded.
-** The number of subtype bytes preserved by SQLite might increase
-** in future releases of SQLite.
-*/
-SQLITE_API void sqlite3_result_subtype(sqlite3_context*,unsigned int);
-
-/*
-** CAPI3REF: Define New Collating Sequences
-** METHOD: sqlite3
-**
-** ^These functions add, remove, or modify a [collation] associated
-** with the [database connection] specified as the first argument.
-**
-** ^The name of the collation is a UTF-8 string
-** for sqlite3_create_collation() and sqlite3_create_collation_v2()
-** and a UTF-16 string in native byte order for sqlite3_create_collation16().
-** ^Collation names that compare equal according to [sqlite3_strnicmp()] are
-** considered to be the same name.
-**
-** ^(The third argument (eTextRep) must be one of the constants:
-**
-**
[SQLITE_UTF8],
-**
[SQLITE_UTF16LE],
-**
[SQLITE_UTF16BE],
-**
[SQLITE_UTF16], or
-**
[SQLITE_UTF16_ALIGNED].
-**
)^
-** ^The eTextRep argument determines the encoding of strings passed
-** to the collating function callback, xCallback.
-** ^The [SQLITE_UTF16] and [SQLITE_UTF16_ALIGNED] values for eTextRep
-** force strings to be UTF16 with native byte order.
-** ^The [SQLITE_UTF16_ALIGNED] value for eTextRep forces strings to begin
-** on an even byte address.
-**
-** ^The fourth argument, pArg, is an application data pointer that is passed
-** through as the first argument to the collating function callback.
-**
-** ^The fifth argument, xCallback, is a pointer to the collating function.
-** ^Multiple collating functions can be registered using the same name but
-** with different eTextRep parameters and SQLite will use whichever
-** function requires the least amount of data transformation.
-** ^If the xCallback argument is NULL then the collating function is
-** deleted. ^When all collating functions having the same name are deleted,
-** that collation is no longer usable.
-**
-** ^The collating function callback is invoked with a copy of the pArg
-** application data pointer and with two strings in the encoding specified
-** by the eTextRep argument. The collating function must return an
-** integer that is negative, zero, or positive
-** if the first string is less than, equal to, or greater than the second,
-** respectively. A collating function must always return the same answer
-** given the same inputs. If two or more collating functions are registered
-** to the same collation name (using different eTextRep values) then all
-** must give an equivalent answer when invoked with equivalent strings.
-** The collating function must obey the following properties for all
-** strings A, B, and C:
-**
-**
-**
If A==B then B==A.
-**
If A==B and B==C then A==C.
-**
If A<B THEN B>A.
-**
If A<B and B<C then A<C.
-**
-**
-** If a collating function fails any of the above constraints and that
-** collating function is registered and used, then the behavior of SQLite
-** is undefined.
-**
-** ^The sqlite3_create_collation_v2() works like sqlite3_create_collation()
-** with the addition that the xDestroy callback is invoked on pArg when
-** the collating function is deleted.
-** ^Collating functions are deleted when they are overridden by later
-** calls to the collation creation functions or when the
-** [database connection] is closed using [sqlite3_close()].
-**
-** ^The xDestroy callback is not called if the
-** sqlite3_create_collation_v2() function fails. Applications that invoke
-** sqlite3_create_collation_v2() with a non-NULL xDestroy argument should
-** check the return code and dispose of the application data pointer
-** themselves rather than expecting SQLite to deal with it for them.
-** This is different from every other SQLite interface. The inconsistency
-** is unfortunate but cannot be changed without breaking backwards
-** compatibility.
-**
-** See also: [sqlite3_collation_needed()] and [sqlite3_collation_needed16()].
-*/
-SQLITE_API int sqlite3_create_collation(
- sqlite3*,
- const char *zName,
- int eTextRep,
- void *pArg,
- int(*xCompare)(void*,int,const void*,int,const void*)
-);
-SQLITE_API int sqlite3_create_collation_v2(
- sqlite3*,
- const char *zName,
- int eTextRep,
- void *pArg,
- int(*xCompare)(void*,int,const void*,int,const void*),
- void(*xDestroy)(void*)
-);
-SQLITE_API int sqlite3_create_collation16(
- sqlite3*,
- const void *zName,
- int eTextRep,
- void *pArg,
- int(*xCompare)(void*,int,const void*,int,const void*)
-);
-
-/*
-** CAPI3REF: Collation Needed Callbacks
-** METHOD: sqlite3
-**
-** ^To avoid having to register all collation sequences before a database
-** can be used, a single callback function may be registered with the
-** [database connection] to be invoked whenever an undefined collation
-** sequence is required.
-**
-** ^If the function is registered using the sqlite3_collation_needed() API,
-** then it is passed the names of undefined collation sequences as strings
-** encoded in UTF-8. ^If sqlite3_collation_needed16() is used,
-** the names are passed as UTF-16 in machine native byte order.
-** ^A call to either function replaces the existing collation-needed callback.
-**
-** ^(When the callback is invoked, the first argument passed is a copy
-** of the second argument to sqlite3_collation_needed() or
-** sqlite3_collation_needed16(). The second argument is the database
-** connection. The third argument is one of [SQLITE_UTF8], [SQLITE_UTF16BE],
-** or [SQLITE_UTF16LE], indicating the most desirable form of the collation
-** sequence function required. The fourth parameter is the name of the
-** required collation sequence.)^
-**
-** The callback function should register the desired collation using
-** [sqlite3_create_collation()], [sqlite3_create_collation16()], or
-** [sqlite3_create_collation_v2()].
-*/
-SQLITE_API int sqlite3_collation_needed(
- sqlite3*,
- void*,
- void(*)(void*,sqlite3*,int eTextRep,const char*)
-);
-SQLITE_API int sqlite3_collation_needed16(
- sqlite3*,
- void*,
- void(*)(void*,sqlite3*,int eTextRep,const void*)
-);
-
-#ifdef SQLITE_HAS_CODEC
-/*
-** Specify the key for an encrypted database. This routine should be
-** called right after sqlite3_open().
-**
-** The code to implement this API is not available in the public release
-** of SQLite.
-*/
-SQLITE_API int sqlite3_key(
- sqlite3 *db, /* Database to be rekeyed */
- const void *pKey, int nKey /* The key */
-);
-SQLITE_API int sqlite3_key_v2(
- sqlite3 *db, /* Database to be rekeyed */
- const char *zDbName, /* Name of the database */
- const void *pKey, int nKey /* The key */
-);
-
-/*
-** Change the key on an open database. If the current database is not
-** encrypted, this routine will encrypt it. If pNew==0 or nNew==0, the
-** database is decrypted.
-**
-** The code to implement this API is not available in the public release
-** of SQLite.
-*/
-SQLITE_API int sqlite3_rekey(
- sqlite3 *db, /* Database to be rekeyed */
- const void *pKey, int nKey /* The new key */
-);
-SQLITE_API int sqlite3_rekey_v2(
- sqlite3 *db, /* Database to be rekeyed */
- const char *zDbName, /* Name of the database */
- const void *pKey, int nKey /* The new key */
-);
-
-/*
-** Specify the activation key for a SEE database. Unless
-** activated, none of the SEE routines will work.
-*/
-SQLITE_API void sqlite3_activate_see(
- const char *zPassPhrase /* Activation phrase */
-);
-#endif
-
-#ifdef SQLITE_ENABLE_CEROD
-/*
-** Specify the activation key for a CEROD database. Unless
-** activated, none of the CEROD routines will work.
-*/
-SQLITE_API void sqlite3_activate_cerod(
- const char *zPassPhrase /* Activation phrase */
-);
-#endif
-
-/*
-** CAPI3REF: Suspend Execution For A Short Time
-**
-** The sqlite3_sleep() function causes the current thread to suspend execution
-** for at least a number of milliseconds specified in its parameter.
-**
-** If the operating system does not support sleep requests with
-** millisecond time resolution, then the time will be rounded up to
-** the nearest second. The number of milliseconds of sleep actually
-** requested from the operating system is returned.
-**
-** ^SQLite implements this interface by calling the xSleep()
-** method of the default [sqlite3_vfs] object. If the xSleep() method
-** of the default VFS is not implemented correctly, or not implemented at
-** all, then the behavior of sqlite3_sleep() may deviate from the description
-** in the previous paragraphs.
-*/
-SQLITE_API int sqlite3_sleep(int);
-
-/*
-** CAPI3REF: Name Of The Folder Holding Temporary Files
-**
-** ^(If this global variable is made to point to a string which is
-** the name of a folder (a.k.a. directory), then all temporary files
-** created by SQLite when using a built-in [sqlite3_vfs | VFS]
-** will be placed in that directory.)^ ^If this variable
-** is a NULL pointer, then SQLite performs a search for an appropriate
-** temporary file directory.
-**
-** Applications are strongly discouraged from using this global variable.
-** It is required to set a temporary folder on Windows Runtime (WinRT).
-** But for all other platforms, it is highly recommended that applications
-** neither read nor write this variable. This global variable is a relic
-** that exists for backwards compatibility of legacy applications and should
-** be avoided in new projects.
-**
-** It is not safe to read or modify this variable in more than one
-** thread at a time. It is not safe to read or modify this variable
-** if a [database connection] is being used at the same time in a separate
-** thread.
-** It is intended that this variable be set once
-** as part of process initialization and before any SQLite interface
-** routines have been called and that this variable remain unchanged
-** thereafter.
-**
-** ^The [temp_store_directory pragma] may modify this variable and cause
-** it to point to memory obtained from [sqlite3_malloc]. ^Furthermore,
-** the [temp_store_directory pragma] always assumes that any string
-** that this variable points to is held in memory obtained from
-** [sqlite3_malloc] and the pragma may attempt to free that memory
-** using [sqlite3_free].
-** Hence, if this variable is modified directly, either it should be
-** made NULL or made to point to memory obtained from [sqlite3_malloc]
-** or else the use of the [temp_store_directory pragma] should be avoided.
-** Except when requested by the [temp_store_directory pragma], SQLite
-** does not free the memory that sqlite3_temp_directory points to. If
-** the application wants that memory to be freed, it must do
-** so itself, taking care to only do so after all [database connection]
-** objects have been destroyed.
-**
-** Note to Windows Runtime users: The temporary directory must be set
-** prior to calling [sqlite3_open] or [sqlite3_open_v2]. Otherwise, various
-** features that require the use of temporary files may fail. Here is an
-** example of how to do this using C++ with the Windows Runtime:
-**
-**
-*/
-SQLITE_API char *sqlite3_temp_directory;
-
-/*
-** CAPI3REF: Name Of The Folder Holding Database Files
-**
-** ^(If this global variable is made to point to a string which is
-** the name of a folder (a.k.a. directory), then all database files
-** specified with a relative pathname and created or accessed by
-** SQLite when using a built-in windows [sqlite3_vfs | VFS] will be assumed
-** to be relative to that directory.)^ ^If this variable is a NULL
-** pointer, then SQLite assumes that all database files specified
-** with a relative pathname are relative to the current directory
-** for the process. Only the windows VFS makes use of this global
-** variable; it is ignored by the unix VFS.
-**
-** Changing the value of this variable while a database connection is
-** open can result in a corrupt database.
-**
-** It is not safe to read or modify this variable in more than one
-** thread at a time. It is not safe to read or modify this variable
-** if a [database connection] is being used at the same time in a separate
-** thread.
-** It is intended that this variable be set once
-** as part of process initialization and before any SQLite interface
-** routines have been called and that this variable remain unchanged
-** thereafter.
-**
-** ^The [data_store_directory pragma] may modify this variable and cause
-** it to point to memory obtained from [sqlite3_malloc]. ^Furthermore,
-** the [data_store_directory pragma] always assumes that any string
-** that this variable points to is held in memory obtained from
-** [sqlite3_malloc] and the pragma may attempt to free that memory
-** using [sqlite3_free].
-** Hence, if this variable is modified directly, either it should be
-** made NULL or made to point to memory obtained from [sqlite3_malloc]
-** or else the use of the [data_store_directory pragma] should be avoided.
-*/
-SQLITE_API char *sqlite3_data_directory;
-
-/*
-** CAPI3REF: Win32 Specific Interface
-**
-** These interfaces are available only on Windows. The
-** [sqlite3_win32_set_directory] interface is used to set the value associated
-** with the [sqlite3_temp_directory] or [sqlite3_data_directory] variable, to
-** zValue, depending on the value of the type parameter. The zValue parameter
-** should be NULL to cause the previous value to be freed via [sqlite3_free];
-** a non-NULL value will be copied into memory obtained from [sqlite3_malloc]
-** prior to being used. The [sqlite3_win32_set_directory] interface returns
-** [SQLITE_OK] to indicate success, [SQLITE_ERROR] if the type is unsupported,
-** or [SQLITE_NOMEM] if memory could not be allocated. The value of the
-** [sqlite3_data_directory] variable is intended to act as a replacement for
-** the current directory on the sub-platforms of Win32 where that concept is
-** not present, e.g. WinRT and UWP. The [sqlite3_win32_set_directory8] and
-** [sqlite3_win32_set_directory16] interfaces behave exactly the same as the
-** sqlite3_win32_set_directory interface except the string parameter must be
-** UTF-8 or UTF-16, respectively.
-*/
-SQLITE_API int sqlite3_win32_set_directory(
- unsigned long type, /* Identifier for directory being set or reset */
- void *zValue /* New value for directory being set or reset */
-);
-SQLITE_API int sqlite3_win32_set_directory8(unsigned long type, const char *zValue);
-SQLITE_API int sqlite3_win32_set_directory16(unsigned long type, const void *zValue);
-
-/*
-** CAPI3REF: Win32 Directory Types
-**
-** These macros are only available on Windows. They define the allowed values
-** for the type argument to the [sqlite3_win32_set_directory] interface.
-*/
-#define SQLITE_WIN32_DATA_DIRECTORY_TYPE 1
-#define SQLITE_WIN32_TEMP_DIRECTORY_TYPE 2
-
-/*
-** CAPI3REF: Test For Auto-Commit Mode
-** KEYWORDS: {autocommit mode}
-** METHOD: sqlite3
-**
-** ^The sqlite3_get_autocommit() interface returns non-zero or
-** zero if the given database connection is or is not in autocommit mode,
-** respectively. ^Autocommit mode is on by default.
-** ^Autocommit mode is disabled by a [BEGIN] statement.
-** ^Autocommit mode is re-enabled by a [COMMIT] or [ROLLBACK].
-**
-** If certain kinds of errors occur on a statement within a multi-statement
-** transaction (errors including [SQLITE_FULL], [SQLITE_IOERR],
-** [SQLITE_NOMEM], [SQLITE_BUSY], and [SQLITE_INTERRUPT]) then the
-** transaction might be rolled back automatically. The only way to
-** find out whether SQLite automatically rolled back the transaction after
-** an error is to use this function.
-**
-** If another thread changes the autocommit status of the database
-** connection while this routine is running, then the return value
-** is undefined.
-*/
-SQLITE_API int sqlite3_get_autocommit(sqlite3*);
-
-/*
-** CAPI3REF: Find The Database Handle Of A Prepared Statement
-** METHOD: sqlite3_stmt
-**
-** ^The sqlite3_db_handle interface returns the [database connection] handle
-** to which a [prepared statement] belongs. ^The [database connection]
-** returned by sqlite3_db_handle is the same [database connection]
-** that was the first argument
-** to the [sqlite3_prepare_v2()] call (or its variants) that was used to
-** create the statement in the first place.
-*/
-SQLITE_API sqlite3 *sqlite3_db_handle(sqlite3_stmt*);
-
-/*
-** CAPI3REF: Return The Filename For A Database Connection
-** METHOD: sqlite3
-**
-** ^The sqlite3_db_filename(D,N) interface returns a pointer to a filename
-** associated with database N of connection D. ^The main database file
-** has the name "main". If there is no attached database N on the database
-** connection D, or if database N is a temporary or in-memory database, then
-** a NULL pointer is returned.
-**
-** ^The filename returned by this function is the output of the
-** xFullPathname method of the [VFS]. ^In other words, the filename
-** will be an absolute pathname, even if the filename used
-** to open the database originally was a URI or relative pathname.
-*/
-SQLITE_API const char *sqlite3_db_filename(sqlite3 *db, const char *zDbName);
-
-/*
-** CAPI3REF: Determine if a database is read-only
-** METHOD: sqlite3
-**
-** ^The sqlite3_db_readonly(D,N) interface returns 1 if the database N
-** of connection D is read-only, 0 if it is read/write, or -1 if N is not
-** the name of a database on connection D.
-*/
-SQLITE_API int sqlite3_db_readonly(sqlite3 *db, const char *zDbName);
-
-/*
-** CAPI3REF: Find the next prepared statement
-** METHOD: sqlite3
-**
-** ^This interface returns a pointer to the next [prepared statement] after
-** pStmt associated with the [database connection] pDb. ^If pStmt is NULL
-** then this interface returns a pointer to the first prepared statement
-** associated with the database connection pDb. ^If no prepared statement
-** satisfies the conditions of this routine, it returns NULL.
-**
-** The [database connection] pointer D in a call to
-** [sqlite3_next_stmt(D,S)] must refer to an open database
-** connection and in particular must not be a NULL pointer.
-*/
-SQLITE_API sqlite3_stmt *sqlite3_next_stmt(sqlite3 *pDb, sqlite3_stmt *pStmt);
-
-/*
-** CAPI3REF: Commit And Rollback Notification Callbacks
-** METHOD: sqlite3
-**
-** ^The sqlite3_commit_hook() interface registers a callback
-** function to be invoked whenever a transaction is [COMMIT | committed].
-** ^Any callback set by a previous call to sqlite3_commit_hook()
-** for the same database connection is overridden.
-** ^The sqlite3_rollback_hook() interface registers a callback
-** function to be invoked whenever a transaction is [ROLLBACK | rolled back].
-** ^Any callback set by a previous call to sqlite3_rollback_hook()
-** for the same database connection is overridden.
-** ^The pArg argument is passed through to the callback.
-** ^If the callback on a commit hook function returns non-zero,
-** then the commit is converted into a rollback.
-**
-** ^The sqlite3_commit_hook(D,C,P) and sqlite3_rollback_hook(D,C,P) functions
-** return the P argument from the previous call of the same function
-** on the same [database connection] D, or NULL for
-** the first call for each function on D.
-**
-** The commit and rollback hook callbacks are not reentrant.
-** The callback implementation must not do anything that will modify
-** the database connection that invoked the callback. Any actions
-** to modify the database connection must be deferred until after the
-** completion of the [sqlite3_step()] call that triggered the commit
-** or rollback hook in the first place.
-** Note that running any other SQL statements, including SELECT statements,
-** or merely calling [sqlite3_prepare_v2()] and [sqlite3_step()] will modify
-** the database connections for the meaning of "modify" in this paragraph.
-**
-** ^Registering a NULL function disables the callback.
-**
-** ^When the commit hook callback routine returns zero, the [COMMIT]
-** operation is allowed to continue normally. ^If the commit hook
-** returns non-zero, then the [COMMIT] is converted into a [ROLLBACK].
-** ^The rollback hook is invoked on a rollback that results from a commit
-** hook returning non-zero, just as it would be with any other rollback.
-**
-** ^For the purposes of this API, a transaction is said to have been
-** rolled back if an explicit "ROLLBACK" statement is executed, or
-** an error or constraint causes an implicit rollback to occur.
-** ^The rollback callback is not invoked if a transaction is
-** automatically rolled back because the database connection is closed.
-**
-** See also the [sqlite3_update_hook()] interface.
-*/
-SQLITE_API void *sqlite3_commit_hook(sqlite3*, int(*)(void*), void*);
-SQLITE_API void *sqlite3_rollback_hook(sqlite3*, void(*)(void *), void*);
-
-/*
-** CAPI3REF: Data Change Notification Callbacks
-** METHOD: sqlite3
-**
-** ^The sqlite3_update_hook() interface registers a callback function
-** with the [database connection] identified by the first argument
-** to be invoked whenever a row is updated, inserted or deleted in
-** a [rowid table].
-** ^Any callback set by a previous call to this function
-** for the same database connection is overridden.
-**
-** ^The second argument is a pointer to the function to invoke when a
-** row is updated, inserted or deleted in a rowid table.
-** ^The first argument to the callback is a copy of the third argument
-** to sqlite3_update_hook().
-** ^The second callback argument is one of [SQLITE_INSERT], [SQLITE_DELETE],
-** or [SQLITE_UPDATE], depending on the operation that caused the callback
-** to be invoked.
-** ^The third and fourth arguments to the callback contain pointers to the
-** database and table name containing the affected row.
-** ^The final callback parameter is the [rowid] of the row.
-** ^In the case of an update, this is the [rowid] after the update takes place.
-**
-** ^(The update hook is not invoked when internal system tables are
-** modified (i.e. sqlite_master and sqlite_sequence).)^
-** ^The update hook is not invoked when [WITHOUT ROWID] tables are modified.
-**
-** ^In the current implementation, the update hook
-** is not invoked when conflicting rows are deleted because of an
-** [ON CONFLICT | ON CONFLICT REPLACE] clause. ^Nor is the update hook
-** invoked when rows are deleted using the [truncate optimization].
-** The exceptions defined in this paragraph might change in a future
-** release of SQLite.
-**
-** The update hook implementation must not do anything that will modify
-** the database connection that invoked the update hook. Any actions
-** to modify the database connection must be deferred until after the
-** completion of the [sqlite3_step()] call that triggered the update hook.
-** Note that [sqlite3_prepare_v2()] and [sqlite3_step()] both modify their
-** database connections for the meaning of "modify" in this paragraph.
-**
-** ^The sqlite3_update_hook(D,C,P) function
-** returns the P argument from the previous call
-** on the same [database connection] D, or NULL for
-** the first call on D.
-**
-** See also the [sqlite3_commit_hook()], [sqlite3_rollback_hook()],
-** and [sqlite3_preupdate_hook()] interfaces.
-*/
-SQLITE_API void *sqlite3_update_hook(
- sqlite3*,
- void(*)(void *,int ,char const *,char const *,sqlite3_int64),
- void*
-);
-
-/*
-** CAPI3REF: Enable Or Disable Shared Pager Cache
-**
-** ^(This routine enables or disables the sharing of the database cache
-** and schema data structures between [database connection | connections]
-** to the same database. Sharing is enabled if the argument is true
-** and disabled if the argument is false.)^
-**
-** ^Cache sharing is enabled and disabled for an entire process.
-** This is a change as of SQLite [version 3.5.0] ([dateof:3.5.0]).
-** In prior versions of SQLite,
-** sharing was enabled or disabled for each thread separately.
-**
-** ^(The cache sharing mode set by this interface effects all subsequent
-** calls to [sqlite3_open()], [sqlite3_open_v2()], and [sqlite3_open16()].
-** Existing database connections continue use the sharing mode
-** that was in effect at the time they were opened.)^
-**
-** ^(This routine returns [SQLITE_OK] if shared cache was enabled or disabled
-** successfully. An [error code] is returned otherwise.)^
-**
-** ^Shared cache is disabled by default. But this might change in
-** future releases of SQLite. Applications that care about shared
-** cache setting should set it explicitly.
-**
-** Note: This method is disabled on MacOS X 10.7 and iOS version 5.0
-** and will always return SQLITE_MISUSE. On those systems,
-** shared cache mode should be enabled per-database connection via
-** [sqlite3_open_v2()] with [SQLITE_OPEN_SHAREDCACHE].
-**
-** This interface is threadsafe on processors where writing a
-** 32-bit integer is atomic.
-**
-** See Also: [SQLite Shared-Cache Mode]
-*/
-SQLITE_API int sqlite3_enable_shared_cache(int);
-
-/*
-** CAPI3REF: Attempt To Free Heap Memory
-**
-** ^The sqlite3_release_memory() interface attempts to free N bytes
-** of heap memory by deallocating non-essential memory allocations
-** held by the database library. Memory used to cache database
-** pages to improve performance is an example of non-essential memory.
-** ^sqlite3_release_memory() returns the number of bytes actually freed,
-** which might be more or less than the amount requested.
-** ^The sqlite3_release_memory() routine is a no-op returning zero
-** if SQLite is not compiled with [SQLITE_ENABLE_MEMORY_MANAGEMENT].
-**
-** See also: [sqlite3_db_release_memory()]
-*/
-SQLITE_API int sqlite3_release_memory(int);
-
-/*
-** CAPI3REF: Free Memory Used By A Database Connection
-** METHOD: sqlite3
-**
-** ^The sqlite3_db_release_memory(D) interface attempts to free as much heap
-** memory as possible from database connection D. Unlike the
-** [sqlite3_release_memory()] interface, this interface is in effect even
-** when the [SQLITE_ENABLE_MEMORY_MANAGEMENT] compile-time option is
-** omitted.
-**
-** See also: [sqlite3_release_memory()]
-*/
-SQLITE_API int sqlite3_db_release_memory(sqlite3*);
-
-/*
-** CAPI3REF: Impose A Limit On Heap Size
-**
-** ^The sqlite3_soft_heap_limit64() interface sets and/or queries the
-** soft limit on the amount of heap memory that may be allocated by SQLite.
-** ^SQLite strives to keep heap memory utilization below the soft heap
-** limit by reducing the number of pages held in the page cache
-** as heap memory usages approaches the limit.
-** ^The soft heap limit is "soft" because even though SQLite strives to stay
-** below the limit, it will exceed the limit rather than generate
-** an [SQLITE_NOMEM] error. In other words, the soft heap limit
-** is advisory only.
-**
-** ^The return value from sqlite3_soft_heap_limit64() is the size of
-** the soft heap limit prior to the call, or negative in the case of an
-** error. ^If the argument N is negative
-** then no change is made to the soft heap limit. Hence, the current
-** size of the soft heap limit can be determined by invoking
-** sqlite3_soft_heap_limit64() with a negative argument.
-**
-** ^If the argument N is zero then the soft heap limit is disabled.
-**
-** ^(The soft heap limit is not enforced in the current implementation
-** if one or more of following conditions are true:
-**
-**
-**
The soft heap limit is set to zero.
-**
Memory accounting is disabled using a combination of the
-** [sqlite3_config]([SQLITE_CONFIG_MEMSTATUS],...) start-time option and
-** the [SQLITE_DEFAULT_MEMSTATUS] compile-time option.
-**
An alternative page cache implementation is specified using
-** [sqlite3_config]([SQLITE_CONFIG_PCACHE2],...).
-**
The page cache allocates from its own memory pool supplied
-** by [sqlite3_config]([SQLITE_CONFIG_PAGECACHE],...) rather than
-** from the heap.
-**
)^
-**
-** Beginning with SQLite [version 3.7.3] ([dateof:3.7.3]),
-** the soft heap limit is enforced
-** regardless of whether or not the [SQLITE_ENABLE_MEMORY_MANAGEMENT]
-** compile-time option is invoked. With [SQLITE_ENABLE_MEMORY_MANAGEMENT],
-** the soft heap limit is enforced on every memory allocation. Without
-** [SQLITE_ENABLE_MEMORY_MANAGEMENT], the soft heap limit is only enforced
-** when memory is allocated by the page cache. Testing suggests that because
-** the page cache is the predominate memory user in SQLite, most
-** applications will achieve adequate soft heap limit enforcement without
-** the use of [SQLITE_ENABLE_MEMORY_MANAGEMENT].
-**
-** The circumstances under which SQLite will enforce the soft heap limit may
-** changes in future releases of SQLite.
-*/
-SQLITE_API sqlite3_int64 sqlite3_soft_heap_limit64(sqlite3_int64 N);
-
-/*
-** CAPI3REF: Deprecated Soft Heap Limit Interface
-** DEPRECATED
-**
-** This is a deprecated version of the [sqlite3_soft_heap_limit64()]
-** interface. This routine is provided for historical compatibility
-** only. All new applications should use the
-** [sqlite3_soft_heap_limit64()] interface rather than this one.
-*/
-SQLITE_API SQLITE_DEPRECATED void sqlite3_soft_heap_limit(int N);
-
-
-/*
-** CAPI3REF: Extract Metadata About A Column Of A Table
-** METHOD: sqlite3
-**
-** ^(The sqlite3_table_column_metadata(X,D,T,C,....) routine returns
-** information about column C of table T in database D
-** on [database connection] X.)^ ^The sqlite3_table_column_metadata()
-** interface returns SQLITE_OK and fills in the non-NULL pointers in
-** the final five arguments with appropriate values if the specified
-** column exists. ^The sqlite3_table_column_metadata() interface returns
-** SQLITE_ERROR and if the specified column does not exist.
-** ^If the column-name parameter to sqlite3_table_column_metadata() is a
-** NULL pointer, then this routine simply checks for the existence of the
-** table and returns SQLITE_OK if the table exists and SQLITE_ERROR if it
-** does not. If the table name parameter T in a call to
-** sqlite3_table_column_metadata(X,D,T,C,...) is NULL then the result is
-** undefined behavior.
-**
-** ^The column is identified by the second, third and fourth parameters to
-** this function. ^(The second parameter is either the name of the database
-** (i.e. "main", "temp", or an attached database) containing the specified
-** table or NULL.)^ ^If it is NULL, then all attached databases are searched
-** for the table using the same algorithm used by the database engine to
-** resolve unqualified table references.
-**
-** ^The third and fourth parameters to this function are the table and column
-** name of the desired column, respectively.
-**
-** ^Metadata is returned by writing to the memory locations passed as the 5th
-** and subsequent parameters to this function. ^Any of these arguments may be
-** NULL, in which case the corresponding element of metadata is omitted.
-**
-** ^(
-**
-**
Parameter
Output Type
Description
-**
-**
5th
const char*
Data type
-**
6th
const char*
Name of default collation sequence
-**
7th
int
True if column has a NOT NULL constraint
-**
8th
int
True if column is part of the PRIMARY KEY
-**
9th
int
True if column is [AUTOINCREMENT]
-**
-**
)^
-**
-** ^The memory pointed to by the character pointers returned for the
-** declaration type and collation sequence is valid until the next
-** call to any SQLite API function.
-**
-** ^If the specified table is actually a view, an [error code] is returned.
-**
-** ^If the specified column is "rowid", "oid" or "_rowid_" and the table
-** is not a [WITHOUT ROWID] table and an
-** [INTEGER PRIMARY KEY] column has been explicitly declared, then the output
-** parameters are set for the explicitly declared column. ^(If there is no
-** [INTEGER PRIMARY KEY] column, then the outputs
-** for the [rowid] are set as follows:
-**
-**
-** data type: "INTEGER"
-** collation sequence: "BINARY"
-** not null: 0
-** primary key: 1
-** auto increment: 0
-**
)^
-**
-** ^This function causes all database schemas to be read from disk and
-** parsed, if that has not already been done, and returns an error if
-** any errors are encountered while loading the schema.
-*/
-SQLITE_API int sqlite3_table_column_metadata(
- sqlite3 *db, /* Connection handle */
- const char *zDbName, /* Database name or NULL */
- const char *zTableName, /* Table name */
- const char *zColumnName, /* Column name */
- char const **pzDataType, /* OUTPUT: Declared data type */
- char const **pzCollSeq, /* OUTPUT: Collation sequence name */
- int *pNotNull, /* OUTPUT: True if NOT NULL constraint exists */
- int *pPrimaryKey, /* OUTPUT: True if column part of PK */
- int *pAutoinc /* OUTPUT: True if column is auto-increment */
-);
-
-/*
-** CAPI3REF: Load An Extension
-** METHOD: sqlite3
-**
-** ^This interface loads an SQLite extension library from the named file.
-**
-** ^The sqlite3_load_extension() interface attempts to load an
-** [SQLite extension] library contained in the file zFile. If
-** the file cannot be loaded directly, attempts are made to load
-** with various operating-system specific extensions added.
-** So for example, if "samplelib" cannot be loaded, then names like
-** "samplelib.so" or "samplelib.dylib" or "samplelib.dll" might
-** be tried also.
-**
-** ^The entry point is zProc.
-** ^(zProc may be 0, in which case SQLite will try to come up with an
-** entry point name on its own. It first tries "sqlite3_extension_init".
-** If that does not work, it constructs a name "sqlite3_X_init" where the
-** X is consists of the lower-case equivalent of all ASCII alphabetic
-** characters in the filename from the last "/" to the first following
-** "." and omitting any initial "lib".)^
-** ^The sqlite3_load_extension() interface returns
-** [SQLITE_OK] on success and [SQLITE_ERROR] if something goes wrong.
-** ^If an error occurs and pzErrMsg is not 0, then the
-** [sqlite3_load_extension()] interface shall attempt to
-** fill *pzErrMsg with error message text stored in memory
-** obtained from [sqlite3_malloc()]. The calling function
-** should free this memory by calling [sqlite3_free()].
-**
-** ^Extension loading must be enabled using
-** [sqlite3_enable_load_extension()] or
-** [sqlite3_db_config](db,[SQLITE_DBCONFIG_ENABLE_LOAD_EXTENSION],1,NULL)
-** prior to calling this API,
-** otherwise an error will be returned.
-**
-** Security warning: It is recommended that the
-** [SQLITE_DBCONFIG_ENABLE_LOAD_EXTENSION] method be used to enable only this
-** interface. The use of the [sqlite3_enable_load_extension()] interface
-** should be avoided. This will keep the SQL function [load_extension()]
-** disabled and prevent SQL injections from giving attackers
-** access to extension loading capabilities.
-**
-** See also the [load_extension() SQL function].
-*/
-SQLITE_API int sqlite3_load_extension(
- sqlite3 *db, /* Load the extension into this database connection */
- const char *zFile, /* Name of the shared library containing extension */
- const char *zProc, /* Entry point. Derived from zFile if 0 */
- char **pzErrMsg /* Put error message here if not 0 */
-);
-
-/*
-** CAPI3REF: Enable Or Disable Extension Loading
-** METHOD: sqlite3
-**
-** ^So as not to open security holes in older applications that are
-** unprepared to deal with [extension loading], and as a means of disabling
-** [extension loading] while evaluating user-entered SQL, the following API
-** is provided to turn the [sqlite3_load_extension()] mechanism on and off.
-**
-** ^Extension loading is off by default.
-** ^Call the sqlite3_enable_load_extension() routine with onoff==1
-** to turn extension loading on and call it with onoff==0 to turn
-** it back off again.
-**
-** ^This interface enables or disables both the C-API
-** [sqlite3_load_extension()] and the SQL function [load_extension()].
-** ^(Use [sqlite3_db_config](db,[SQLITE_DBCONFIG_ENABLE_LOAD_EXTENSION],..)
-** to enable or disable only the C-API.)^
-**
-** Security warning: It is recommended that extension loading
-** be disabled using the [SQLITE_DBCONFIG_ENABLE_LOAD_EXTENSION] method
-** rather than this interface, so the [load_extension()] SQL function
-** remains disabled. This will prevent SQL injections from giving attackers
-** access to extension loading capabilities.
-*/
-SQLITE_API int sqlite3_enable_load_extension(sqlite3 *db, int onoff);
-
-/*
-** CAPI3REF: Automatically Load Statically Linked Extensions
-**
-** ^This interface causes the xEntryPoint() function to be invoked for
-** each new [database connection] that is created. The idea here is that
-** xEntryPoint() is the entry point for a statically linked [SQLite extension]
-** that is to be automatically loaded into all new database connections.
-**
-** ^(Even though the function prototype shows that xEntryPoint() takes
-** no arguments and returns void, SQLite invokes xEntryPoint() with three
-** arguments and expects an integer result as if the signature of the
-** entry point where as follows:
-**
-**
)^
-**
-** If the xEntryPoint routine encounters an error, it should make *pzErrMsg
-** point to an appropriate error message (obtained from [sqlite3_mprintf()])
-** and return an appropriate [error code]. ^SQLite ensures that *pzErrMsg
-** is NULL before calling the xEntryPoint(). ^SQLite will invoke
-** [sqlite3_free()] on *pzErrMsg after xEntryPoint() returns. ^If any
-** xEntryPoint() returns an error, the [sqlite3_open()], [sqlite3_open16()],
-** or [sqlite3_open_v2()] call that provoked the xEntryPoint() will fail.
-**
-** ^Calling sqlite3_auto_extension(X) with an entry point X that is already
-** on the list of automatic extensions is a harmless no-op. ^No entry point
-** will be called more than once for each database connection that is opened.
-**
-** See also: [sqlite3_reset_auto_extension()]
-** and [sqlite3_cancel_auto_extension()]
-*/
-SQLITE_API int sqlite3_auto_extension(void(*xEntryPoint)(void));
-
-/*
-** CAPI3REF: Cancel Automatic Extension Loading
-**
-** ^The [sqlite3_cancel_auto_extension(X)] interface unregisters the
-** initialization routine X that was registered using a prior call to
-** [sqlite3_auto_extension(X)]. ^The [sqlite3_cancel_auto_extension(X)]
-** routine returns 1 if initialization routine X was successfully
-** unregistered and it returns 0 if X was not on the list of initialization
-** routines.
-*/
-SQLITE_API int sqlite3_cancel_auto_extension(void(*xEntryPoint)(void));
-
-/*
-** CAPI3REF: Reset Automatic Extension Loading
-**
-** ^This interface disables all automatic extensions previously
-** registered using [sqlite3_auto_extension()].
-*/
-SQLITE_API void sqlite3_reset_auto_extension(void);
-
-/*
-** The interface to the virtual-table mechanism is currently considered
-** to be experimental. The interface might change in incompatible ways.
-** If this is a problem for you, do not use the interface at this time.
-**
-** When the virtual-table mechanism stabilizes, we will declare the
-** interface fixed, support it indefinitely, and remove this comment.
-*/
-
-/*
-** Structures used by the virtual table interface
-*/
-typedef struct sqlite3_vtab sqlite3_vtab;
-typedef struct sqlite3_index_info sqlite3_index_info;
-typedef struct sqlite3_vtab_cursor sqlite3_vtab_cursor;
-typedef struct sqlite3_module sqlite3_module;
-
-/*
-** CAPI3REF: Virtual Table Object
-** KEYWORDS: sqlite3_module {virtual table module}
-**
-** This structure, sometimes called a "virtual table module",
-** defines the implementation of a [virtual tables].
-** This structure consists mostly of methods for the module.
-**
-** ^A virtual table module is created by filling in a persistent
-** instance of this structure and passing a pointer to that instance
-** to [sqlite3_create_module()] or [sqlite3_create_module_v2()].
-** ^The registration remains valid until it is replaced by a different
-** module or until the [database connection] closes. The content
-** of this structure must not change while it is registered with
-** any database connection.
-*/
-struct sqlite3_module {
- int iVersion;
- int (*xCreate)(sqlite3*, void *pAux,
- int argc, const char *const*argv,
- sqlite3_vtab **ppVTab, char**);
- int (*xConnect)(sqlite3*, void *pAux,
- int argc, const char *const*argv,
- sqlite3_vtab **ppVTab, char**);
- int (*xBestIndex)(sqlite3_vtab *pVTab, sqlite3_index_info*);
- int (*xDisconnect)(sqlite3_vtab *pVTab);
- int (*xDestroy)(sqlite3_vtab *pVTab);
- int (*xOpen)(sqlite3_vtab *pVTab, sqlite3_vtab_cursor **ppCursor);
- int (*xClose)(sqlite3_vtab_cursor*);
- int (*xFilter)(sqlite3_vtab_cursor*, int idxNum, const char *idxStr,
- int argc, sqlite3_value **argv);
- int (*xNext)(sqlite3_vtab_cursor*);
- int (*xEof)(sqlite3_vtab_cursor*);
- int (*xColumn)(sqlite3_vtab_cursor*, sqlite3_context*, int);
- int (*xRowid)(sqlite3_vtab_cursor*, sqlite3_int64 *pRowid);
- int (*xUpdate)(sqlite3_vtab *, int, sqlite3_value **, sqlite3_int64 *);
- int (*xBegin)(sqlite3_vtab *pVTab);
- int (*xSync)(sqlite3_vtab *pVTab);
- int (*xCommit)(sqlite3_vtab *pVTab);
- int (*xRollback)(sqlite3_vtab *pVTab);
- int (*xFindFunction)(sqlite3_vtab *pVtab, int nArg, const char *zName,
- void (**pxFunc)(sqlite3_context*,int,sqlite3_value**),
- void **ppArg);
- int (*xRename)(sqlite3_vtab *pVtab, const char *zNew);
- /* The methods above are in version 1 of the sqlite_module object. Those
- ** below are for version 2 and greater. */
- int (*xSavepoint)(sqlite3_vtab *pVTab, int);
- int (*xRelease)(sqlite3_vtab *pVTab, int);
- int (*xRollbackTo)(sqlite3_vtab *pVTab, int);
-};
-
-/*
-** CAPI3REF: Virtual Table Indexing Information
-** KEYWORDS: sqlite3_index_info
-**
-** The sqlite3_index_info structure and its substructures is used as part
-** of the [virtual table] interface to
-** pass information into and receive the reply from the [xBestIndex]
-** method of a [virtual table module]. The fields under **Inputs** are the
-** inputs to xBestIndex and are read-only. xBestIndex inserts its
-** results into the **Outputs** fields.
-**
-** ^(The aConstraint[] array records WHERE clause constraints of the form:
-**
-**
column OP expr
-**
-** where OP is =, <, <=, >, or >=.)^ ^(The particular operator is
-** stored in aConstraint[].op using one of the
-** [SQLITE_INDEX_CONSTRAINT_EQ | SQLITE_INDEX_CONSTRAINT_ values].)^
-** ^(The index of the column is stored in
-** aConstraint[].iColumn.)^ ^(aConstraint[].usable is TRUE if the
-** expr on the right-hand side can be evaluated (and thus the constraint
-** is usable) and false if it cannot.)^
-**
-** ^The optimizer automatically inverts terms of the form "expr OP column"
-** and makes other simplifications to the WHERE clause in an attempt to
-** get as many WHERE clause terms into the form shown above as possible.
-** ^The aConstraint[] array only reports WHERE clause terms that are
-** relevant to the particular virtual table being queried.
-**
-** ^Information about the ORDER BY clause is stored in aOrderBy[].
-** ^Each term of aOrderBy records a column of the ORDER BY clause.
-**
-** The colUsed field indicates which columns of the virtual table may be
-** required by the current scan. Virtual table columns are numbered from
-** zero in the order in which they appear within the CREATE TABLE statement
-** passed to sqlite3_declare_vtab(). For the first 63 columns (columns 0-62),
-** the corresponding bit is set within the colUsed mask if the column may be
-** required by SQLite. If the table has at least 64 columns and any column
-** to the right of the first 63 is required, then bit 63 of colUsed is also
-** set. In other words, column iCol may be required if the expression
-** (colUsed & ((sqlite3_uint64)1 << (iCol>=63 ? 63 : iCol))) evaluates to
-** non-zero.
-**
-** The [xBestIndex] method must fill aConstraintUsage[] with information
-** about what parameters to pass to xFilter. ^If argvIndex>0 then
-** the right-hand side of the corresponding aConstraint[] is evaluated
-** and becomes the argvIndex-th entry in argv. ^(If aConstraintUsage[].omit
-** is true, then the constraint is assumed to be fully handled by the
-** virtual table and is not checked again by SQLite.)^
-**
-** ^The idxNum and idxPtr values are recorded and passed into the
-** [xFilter] method.
-** ^[sqlite3_free()] is used to free idxPtr if and only if
-** needToFreeIdxPtr is true.
-**
-** ^The orderByConsumed means that output from [xFilter]/[xNext] will occur in
-** the correct order to satisfy the ORDER BY clause so that no separate
-** sorting step is required.
-**
-** ^The estimatedCost value is an estimate of the cost of a particular
-** strategy. A cost of N indicates that the cost of the strategy is similar
-** to a linear scan of an SQLite table with N rows. A cost of log(N)
-** indicates that the expense of the operation is similar to that of a
-** binary search on a unique indexed field of an SQLite table with N rows.
-**
-** ^The estimatedRows value is an estimate of the number of rows that
-** will be returned by the strategy.
-**
-** The xBestIndex method may optionally populate the idxFlags field with a
-** mask of SQLITE_INDEX_SCAN_* flags. Currently there is only one such flag -
-** SQLITE_INDEX_SCAN_UNIQUE. If the xBestIndex method sets this flag, SQLite
-** assumes that the strategy may visit at most one row.
-**
-** Additionally, if xBestIndex sets the SQLITE_INDEX_SCAN_UNIQUE flag, then
-** SQLite also assumes that if a call to the xUpdate() method is made as
-** part of the same statement to delete or update a virtual table row and the
-** implementation returns SQLITE_CONSTRAINT, then there is no need to rollback
-** any database changes. In other words, if the xUpdate() returns
-** SQLITE_CONSTRAINT, the database contents must be exactly as they were
-** before xUpdate was called. By contrast, if SQLITE_INDEX_SCAN_UNIQUE is not
-** set and xUpdate returns SQLITE_CONSTRAINT, any database changes made by
-** the xUpdate method are automatically rolled back by SQLite.
-**
-** IMPORTANT: The estimatedRows field was added to the sqlite3_index_info
-** structure for SQLite [version 3.8.2] ([dateof:3.8.2]).
-** If a virtual table extension is
-** used with an SQLite version earlier than 3.8.2, the results of attempting
-** to read or write the estimatedRows field are undefined (but are likely
-** to included crashing the application). The estimatedRows field should
-** therefore only be used if [sqlite3_libversion_number()] returns a
-** value greater than or equal to 3008002. Similarly, the idxFlags field
-** was added for [version 3.9.0] ([dateof:3.9.0]).
-** It may therefore only be used if
-** sqlite3_libversion_number() returns a value greater than or equal to
-** 3009000.
-*/
-struct sqlite3_index_info {
- /* Inputs */
- int nConstraint; /* Number of entries in aConstraint */
- struct sqlite3_index_constraint {
- int iColumn; /* Column constrained. -1 for ROWID */
- unsigned char op; /* Constraint operator */
- unsigned char usable; /* True if this constraint is usable */
- int iTermOffset; /* Used internally - xBestIndex should ignore */
- } *aConstraint; /* Table of WHERE clause constraints */
- int nOrderBy; /* Number of terms in the ORDER BY clause */
- struct sqlite3_index_orderby {
- int iColumn; /* Column number */
- unsigned char desc; /* True for DESC. False for ASC. */
- } *aOrderBy; /* The ORDER BY clause */
- /* Outputs */
- struct sqlite3_index_constraint_usage {
- int argvIndex; /* if >0, constraint is part of argv to xFilter */
- unsigned char omit; /* Do not code a test for this constraint */
- } *aConstraintUsage;
- int idxNum; /* Number used to identify the index */
- char *idxStr; /* String, possibly obtained from sqlite3_malloc */
- int needToFreeIdxStr; /* Free idxStr using sqlite3_free() if true */
- int orderByConsumed; /* True if output is already ordered */
- double estimatedCost; /* Estimated cost of using this index */
- /* Fields below are only available in SQLite 3.8.2 and later */
- sqlite3_int64 estimatedRows; /* Estimated number of rows returned */
- /* Fields below are only available in SQLite 3.9.0 and later */
- int idxFlags; /* Mask of SQLITE_INDEX_SCAN_* flags */
- /* Fields below are only available in SQLite 3.10.0 and later */
- sqlite3_uint64 colUsed; /* Input: Mask of columns used by statement */
-};
-
-/*
-** CAPI3REF: Virtual Table Scan Flags
-**
-** Virtual table implementations are allowed to set the
-** [sqlite3_index_info].idxFlags field to some combination of
-** these bits.
-*/
-#define SQLITE_INDEX_SCAN_UNIQUE 1 /* Scan visits at most 1 row */
-
-/*
-** CAPI3REF: Virtual Table Constraint Operator Codes
-**
-** These macros defined the allowed values for the
-** [sqlite3_index_info].aConstraint[].op field. Each value represents
-** an operator that is part of a constraint term in the wHERE clause of
-** a query that uses a [virtual table].
-*/
-#define SQLITE_INDEX_CONSTRAINT_EQ 2
-#define SQLITE_INDEX_CONSTRAINT_GT 4
-#define SQLITE_INDEX_CONSTRAINT_LE 8
-#define SQLITE_INDEX_CONSTRAINT_LT 16
-#define SQLITE_INDEX_CONSTRAINT_GE 32
-#define SQLITE_INDEX_CONSTRAINT_MATCH 64
-#define SQLITE_INDEX_CONSTRAINT_LIKE 65
-#define SQLITE_INDEX_CONSTRAINT_GLOB 66
-#define SQLITE_INDEX_CONSTRAINT_REGEXP 67
-#define SQLITE_INDEX_CONSTRAINT_NE 68
-#define SQLITE_INDEX_CONSTRAINT_ISNOT 69
-#define SQLITE_INDEX_CONSTRAINT_ISNOTNULL 70
-#define SQLITE_INDEX_CONSTRAINT_ISNULL 71
-#define SQLITE_INDEX_CONSTRAINT_IS 72
-#define SQLITE_INDEX_CONSTRAINT_FUNCTION 150
-
-/*
-** CAPI3REF: Register A Virtual Table Implementation
-** METHOD: sqlite3
-**
-** ^These routines are used to register a new [virtual table module] name.
-** ^Module names must be registered before
-** creating a new [virtual table] using the module and before using a
-** preexisting [virtual table] for the module.
-**
-** ^The module name is registered on the [database connection] specified
-** by the first parameter. ^The name of the module is given by the
-** second parameter. ^The third parameter is a pointer to
-** the implementation of the [virtual table module]. ^The fourth
-** parameter is an arbitrary client data pointer that is passed through
-** into the [xCreate] and [xConnect] methods of the virtual table module
-** when a new virtual table is be being created or reinitialized.
-**
-** ^The sqlite3_create_module_v2() interface has a fifth parameter which
-** is a pointer to a destructor for the pClientData. ^SQLite will
-** invoke the destructor function (if it is not NULL) when SQLite
-** no longer needs the pClientData pointer. ^The destructor will also
-** be invoked if the call to sqlite3_create_module_v2() fails.
-** ^The sqlite3_create_module()
-** interface is equivalent to sqlite3_create_module_v2() with a NULL
-** destructor.
-*/
-SQLITE_API int sqlite3_create_module(
- sqlite3 *db, /* SQLite connection to register module with */
- const char *zName, /* Name of the module */
- const sqlite3_module *p, /* Methods for the module */
- void *pClientData /* Client data for xCreate/xConnect */
-);
-SQLITE_API int sqlite3_create_module_v2(
- sqlite3 *db, /* SQLite connection to register module with */
- const char *zName, /* Name of the module */
- const sqlite3_module *p, /* Methods for the module */
- void *pClientData, /* Client data for xCreate/xConnect */
- void(*xDestroy)(void*) /* Module destructor function */
-);
-
-/*
-** CAPI3REF: Virtual Table Instance Object
-** KEYWORDS: sqlite3_vtab
-**
-** Every [virtual table module] implementation uses a subclass
-** of this object to describe a particular instance
-** of the [virtual table]. Each subclass will
-** be tailored to the specific needs of the module implementation.
-** The purpose of this superclass is to define certain fields that are
-** common to all module implementations.
-**
-** ^Virtual tables methods can set an error message by assigning a
-** string obtained from [sqlite3_mprintf()] to zErrMsg. The method should
-** take care that any prior string is freed by a call to [sqlite3_free()]
-** prior to assigning a new string to zErrMsg. ^After the error message
-** is delivered up to the client application, the string will be automatically
-** freed by sqlite3_free() and the zErrMsg field will be zeroed.
-*/
-struct sqlite3_vtab {
- const sqlite3_module *pModule; /* The module for this virtual table */
- int nRef; /* Number of open cursors */
- char *zErrMsg; /* Error message from sqlite3_mprintf() */
- /* Virtual table implementations will typically add additional fields */
-};
-
-/*
-** CAPI3REF: Virtual Table Cursor Object
-** KEYWORDS: sqlite3_vtab_cursor {virtual table cursor}
-**
-** Every [virtual table module] implementation uses a subclass of the
-** following structure to describe cursors that point into the
-** [virtual table] and are used
-** to loop through the virtual table. Cursors are created using the
-** [sqlite3_module.xOpen | xOpen] method of the module and are destroyed
-** by the [sqlite3_module.xClose | xClose] method. Cursors are used
-** by the [xFilter], [xNext], [xEof], [xColumn], and [xRowid] methods
-** of the module. Each module implementation will define
-** the content of a cursor structure to suit its own needs.
-**
-** This superclass exists in order to define fields of the cursor that
-** are common to all implementations.
-*/
-struct sqlite3_vtab_cursor {
- sqlite3_vtab *pVtab; /* Virtual table of this cursor */
- /* Virtual table implementations will typically add additional fields */
-};
-
-/*
-** CAPI3REF: Declare The Schema Of A Virtual Table
-**
-** ^The [xCreate] and [xConnect] methods of a
-** [virtual table module] call this interface
-** to declare the format (the names and datatypes of the columns) of
-** the virtual tables they implement.
-*/
-SQLITE_API int sqlite3_declare_vtab(sqlite3*, const char *zSQL);
-
-/*
-** CAPI3REF: Overload A Function For A Virtual Table
-** METHOD: sqlite3
-**
-** ^(Virtual tables can provide alternative implementations of functions
-** using the [xFindFunction] method of the [virtual table module].
-** But global versions of those functions
-** must exist in order to be overloaded.)^
-**
-** ^(This API makes sure a global version of a function with a particular
-** name and number of parameters exists. If no such function exists
-** before this API is called, a new function is created.)^ ^The implementation
-** of the new function always causes an exception to be thrown. So
-** the new function is not good for anything by itself. Its only
-** purpose is to be a placeholder function that can be overloaded
-** by a [virtual table].
-*/
-SQLITE_API int sqlite3_overload_function(sqlite3*, const char *zFuncName, int nArg);
-
-/*
-** The interface to the virtual-table mechanism defined above (back up
-** to a comment remarkably similar to this one) is currently considered
-** to be experimental. The interface might change in incompatible ways.
-** If this is a problem for you, do not use the interface at this time.
-**
-** When the virtual-table mechanism stabilizes, we will declare the
-** interface fixed, support it indefinitely, and remove this comment.
-*/
-
-/*
-** CAPI3REF: A Handle To An Open BLOB
-** KEYWORDS: {BLOB handle} {BLOB handles}
-**
-** An instance of this object represents an open BLOB on which
-** [sqlite3_blob_open | incremental BLOB I/O] can be performed.
-** ^Objects of this type are created by [sqlite3_blob_open()]
-** and destroyed by [sqlite3_blob_close()].
-** ^The [sqlite3_blob_read()] and [sqlite3_blob_write()] interfaces
-** can be used to read or write small subsections of the BLOB.
-** ^The [sqlite3_blob_bytes()] interface returns the size of the BLOB in bytes.
-*/
-typedef struct sqlite3_blob sqlite3_blob;
-
-/*
-** CAPI3REF: Open A BLOB For Incremental I/O
-** METHOD: sqlite3
-** CONSTRUCTOR: sqlite3_blob
-**
-** ^(This interfaces opens a [BLOB handle | handle] to the BLOB located
-** in row iRow, column zColumn, table zTable in database zDb;
-** in other words, the same BLOB that would be selected by:
-**
-**
-** SELECT zColumn FROM zDb.zTable WHERE [rowid] = iRow;
-**
)^
-**
-** ^(Parameter zDb is not the filename that contains the database, but
-** rather the symbolic name of the database. For attached databases, this is
-** the name that appears after the AS keyword in the [ATTACH] statement.
-** For the main database file, the database name is "main". For TEMP
-** tables, the database name is "temp".)^
-**
-** ^If the flags parameter is non-zero, then the BLOB is opened for read
-** and write access. ^If the flags parameter is zero, the BLOB is opened for
-** read-only access.
-**
-** ^(On success, [SQLITE_OK] is returned and the new [BLOB handle] is stored
-** in *ppBlob. Otherwise an [error code] is returned and, unless the error
-** code is SQLITE_MISUSE, *ppBlob is set to NULL.)^ ^This means that, provided
-** the API is not misused, it is always safe to call [sqlite3_blob_close()]
-** on *ppBlob after this function it returns.
-**
-** This function fails with SQLITE_ERROR if any of the following are true:
-**
-**
^(Database zDb does not exist)^,
-**
^(Table zTable does not exist within database zDb)^,
-**
^(Table zTable is a WITHOUT ROWID table)^,
-**
^(Column zColumn does not exist)^,
-**
^(Row iRow is not present in the table)^,
-**
^(The specified column of row iRow contains a value that is not
-** a TEXT or BLOB value)^,
-**
^(Column zColumn is part of an index, PRIMARY KEY or UNIQUE
-** constraint and the blob is being opened for read/write access)^,
-**
^([foreign key constraints | Foreign key constraints] are enabled,
-** column zColumn is part of a [child key] definition and the blob is
-** being opened for read/write access)^.
-**
-**
-** ^Unless it returns SQLITE_MISUSE, this function sets the
-** [database connection] error code and message accessible via
-** [sqlite3_errcode()] and [sqlite3_errmsg()] and related functions.
-**
-** A BLOB referenced by sqlite3_blob_open() may be read using the
-** [sqlite3_blob_read()] interface and modified by using
-** [sqlite3_blob_write()]. The [BLOB handle] can be moved to a
-** different row of the same table using the [sqlite3_blob_reopen()]
-** interface. However, the column, table, or database of a [BLOB handle]
-** cannot be changed after the [BLOB handle] is opened.
-**
-** ^(If the row that a BLOB handle points to is modified by an
-** [UPDATE], [DELETE], or by [ON CONFLICT] side-effects
-** then the BLOB handle is marked as "expired".
-** This is true if any column of the row is changed, even a column
-** other than the one the BLOB handle is open on.)^
-** ^Calls to [sqlite3_blob_read()] and [sqlite3_blob_write()] for
-** an expired BLOB handle fail with a return code of [SQLITE_ABORT].
-** ^(Changes written into a BLOB prior to the BLOB expiring are not
-** rolled back by the expiration of the BLOB. Such changes will eventually
-** commit if the transaction continues to completion.)^
-**
-** ^Use the [sqlite3_blob_bytes()] interface to determine the size of
-** the opened blob. ^The size of a blob may not be changed by this
-** interface. Use the [UPDATE] SQL command to change the size of a
-** blob.
-**
-** ^The [sqlite3_bind_zeroblob()] and [sqlite3_result_zeroblob()] interfaces
-** and the built-in [zeroblob] SQL function may be used to create a
-** zero-filled blob to read or write using the incremental-blob interface.
-**
-** To avoid a resource leak, every open [BLOB handle] should eventually
-** be released by a call to [sqlite3_blob_close()].
-**
-** See also: [sqlite3_blob_close()],
-** [sqlite3_blob_reopen()], [sqlite3_blob_read()],
-** [sqlite3_blob_bytes()], [sqlite3_blob_write()].
-*/
-SQLITE_API int sqlite3_blob_open(
- sqlite3*,
- const char *zDb,
- const char *zTable,
- const char *zColumn,
- sqlite3_int64 iRow,
- int flags,
- sqlite3_blob **ppBlob
-);
-
-/*
-** CAPI3REF: Move a BLOB Handle to a New Row
-** METHOD: sqlite3_blob
-**
-** ^This function is used to move an existing [BLOB handle] so that it points
-** to a different row of the same database table. ^The new row is identified
-** by the rowid value passed as the second argument. Only the row can be
-** changed. ^The database, table and column on which the blob handle is open
-** remain the same. Moving an existing [BLOB handle] to a new row is
-** faster than closing the existing handle and opening a new one.
-**
-** ^(The new row must meet the same criteria as for [sqlite3_blob_open()] -
-** it must exist and there must be either a blob or text value stored in
-** the nominated column.)^ ^If the new row is not present in the table, or if
-** it does not contain a blob or text value, or if another error occurs, an
-** SQLite error code is returned and the blob handle is considered aborted.
-** ^All subsequent calls to [sqlite3_blob_read()], [sqlite3_blob_write()] or
-** [sqlite3_blob_reopen()] on an aborted blob handle immediately return
-** SQLITE_ABORT. ^Calling [sqlite3_blob_bytes()] on an aborted blob handle
-** always returns zero.
-**
-** ^This function sets the database handle error code and message.
-*/
-SQLITE_API int sqlite3_blob_reopen(sqlite3_blob *, sqlite3_int64);
-
-/*
-** CAPI3REF: Close A BLOB Handle
-** DESTRUCTOR: sqlite3_blob
-**
-** ^This function closes an open [BLOB handle]. ^(The BLOB handle is closed
-** unconditionally. Even if this routine returns an error code, the
-** handle is still closed.)^
-**
-** ^If the blob handle being closed was opened for read-write access, and if
-** the database is in auto-commit mode and there are no other open read-write
-** blob handles or active write statements, the current transaction is
-** committed. ^If an error occurs while committing the transaction, an error
-** code is returned and the transaction rolled back.
-**
-** Calling this function with an argument that is not a NULL pointer or an
-** open blob handle results in undefined behaviour. ^Calling this routine
-** with a null pointer (such as would be returned by a failed call to
-** [sqlite3_blob_open()]) is a harmless no-op. ^Otherwise, if this function
-** is passed a valid open blob handle, the values returned by the
-** sqlite3_errcode() and sqlite3_errmsg() functions are set before returning.
-*/
-SQLITE_API int sqlite3_blob_close(sqlite3_blob *);
-
-/*
-** CAPI3REF: Return The Size Of An Open BLOB
-** METHOD: sqlite3_blob
-**
-** ^Returns the size in bytes of the BLOB accessible via the
-** successfully opened [BLOB handle] in its only argument. ^The
-** incremental blob I/O routines can only read or overwriting existing
-** blob content; they cannot change the size of a blob.
-**
-** This routine only works on a [BLOB handle] which has been created
-** by a prior successful call to [sqlite3_blob_open()] and which has not
-** been closed by [sqlite3_blob_close()]. Passing any other pointer in
-** to this routine results in undefined and probably undesirable behavior.
-*/
-SQLITE_API int sqlite3_blob_bytes(sqlite3_blob *);
-
-/*
-** CAPI3REF: Read Data From A BLOB Incrementally
-** METHOD: sqlite3_blob
-**
-** ^(This function is used to read data from an open [BLOB handle] into a
-** caller-supplied buffer. N bytes of data are copied into buffer Z
-** from the open BLOB, starting at offset iOffset.)^
-**
-** ^If offset iOffset is less than N bytes from the end of the BLOB,
-** [SQLITE_ERROR] is returned and no data is read. ^If N or iOffset is
-** less than zero, [SQLITE_ERROR] is returned and no data is read.
-** ^The size of the blob (and hence the maximum value of N+iOffset)
-** can be determined using the [sqlite3_blob_bytes()] interface.
-**
-** ^An attempt to read from an expired [BLOB handle] fails with an
-** error code of [SQLITE_ABORT].
-**
-** ^(On success, sqlite3_blob_read() returns SQLITE_OK.
-** Otherwise, an [error code] or an [extended error code] is returned.)^
-**
-** This routine only works on a [BLOB handle] which has been created
-** by a prior successful call to [sqlite3_blob_open()] and which has not
-** been closed by [sqlite3_blob_close()]. Passing any other pointer in
-** to this routine results in undefined and probably undesirable behavior.
-**
-** See also: [sqlite3_blob_write()].
-*/
-SQLITE_API int sqlite3_blob_read(sqlite3_blob *, void *Z, int N, int iOffset);
-
-/*
-** CAPI3REF: Write Data Into A BLOB Incrementally
-** METHOD: sqlite3_blob
-**
-** ^(This function is used to write data into an open [BLOB handle] from a
-** caller-supplied buffer. N bytes of data are copied from the buffer Z
-** into the open BLOB, starting at offset iOffset.)^
-**
-** ^(On success, sqlite3_blob_write() returns SQLITE_OK.
-** Otherwise, an [error code] or an [extended error code] is returned.)^
-** ^Unless SQLITE_MISUSE is returned, this function sets the
-** [database connection] error code and message accessible via
-** [sqlite3_errcode()] and [sqlite3_errmsg()] and related functions.
-**
-** ^If the [BLOB handle] passed as the first argument was not opened for
-** writing (the flags parameter to [sqlite3_blob_open()] was zero),
-** this function returns [SQLITE_READONLY].
-**
-** This function may only modify the contents of the BLOB; it is
-** not possible to increase the size of a BLOB using this API.
-** ^If offset iOffset is less than N bytes from the end of the BLOB,
-** [SQLITE_ERROR] is returned and no data is written. The size of the
-** BLOB (and hence the maximum value of N+iOffset) can be determined
-** using the [sqlite3_blob_bytes()] interface. ^If N or iOffset are less
-** than zero [SQLITE_ERROR] is returned and no data is written.
-**
-** ^An attempt to write to an expired [BLOB handle] fails with an
-** error code of [SQLITE_ABORT]. ^Writes to the BLOB that occurred
-** before the [BLOB handle] expired are not rolled back by the
-** expiration of the handle, though of course those changes might
-** have been overwritten by the statement that expired the BLOB handle
-** or by other independent statements.
-**
-** This routine only works on a [BLOB handle] which has been created
-** by a prior successful call to [sqlite3_blob_open()] and which has not
-** been closed by [sqlite3_blob_close()]. Passing any other pointer in
-** to this routine results in undefined and probably undesirable behavior.
-**
-** See also: [sqlite3_blob_read()].
-*/
-SQLITE_API int sqlite3_blob_write(sqlite3_blob *, const void *z, int n, int iOffset);
-
-/*
-** CAPI3REF: Virtual File System Objects
-**
-** A virtual filesystem (VFS) is an [sqlite3_vfs] object
-** that SQLite uses to interact
-** with the underlying operating system. Most SQLite builds come with a
-** single default VFS that is appropriate for the host computer.
-** New VFSes can be registered and existing VFSes can be unregistered.
-** The following interfaces are provided.
-**
-** ^The sqlite3_vfs_find() interface returns a pointer to a VFS given its name.
-** ^Names are case sensitive.
-** ^Names are zero-terminated UTF-8 strings.
-** ^If there is no match, a NULL pointer is returned.
-** ^If zVfsName is NULL then the default VFS is returned.
-**
-** ^New VFSes are registered with sqlite3_vfs_register().
-** ^Each new VFS becomes the default VFS if the makeDflt flag is set.
-** ^The same VFS can be registered multiple times without injury.
-** ^To make an existing VFS into the default VFS, register it again
-** with the makeDflt flag set. If two different VFSes with the
-** same name are registered, the behavior is undefined. If a
-** VFS is registered with a name that is NULL or an empty string,
-** then the behavior is undefined.
-**
-** ^Unregister a VFS with the sqlite3_vfs_unregister() interface.
-** ^(If the default VFS is unregistered, another VFS is chosen as
-** the default. The choice for the new VFS is arbitrary.)^
-*/
-SQLITE_API sqlite3_vfs *sqlite3_vfs_find(const char *zVfsName);
-SQLITE_API int sqlite3_vfs_register(sqlite3_vfs*, int makeDflt);
-SQLITE_API int sqlite3_vfs_unregister(sqlite3_vfs*);
-
-/*
-** CAPI3REF: Mutexes
-**
-** The SQLite core uses these routines for thread
-** synchronization. Though they are intended for internal
-** use by SQLite, code that links against SQLite is
-** permitted to use any of these routines.
-**
-** The SQLite source code contains multiple implementations
-** of these mutex routines. An appropriate implementation
-** is selected automatically at compile-time. The following
-** implementations are available in the SQLite core:
-**
-**
-**
SQLITE_MUTEX_PTHREADS
-**
SQLITE_MUTEX_W32
-**
SQLITE_MUTEX_NOOP
-**
-**
-** The SQLITE_MUTEX_NOOP implementation is a set of routines
-** that does no real locking and is appropriate for use in
-** a single-threaded application. The SQLITE_MUTEX_PTHREADS and
-** SQLITE_MUTEX_W32 implementations are appropriate for use on Unix
-** and Windows.
-**
-** If SQLite is compiled with the SQLITE_MUTEX_APPDEF preprocessor
-** macro defined (with "-DSQLITE_MUTEX_APPDEF=1"), then no mutex
-** implementation is included with the library. In this case the
-** application must supply a custom mutex implementation using the
-** [SQLITE_CONFIG_MUTEX] option of the sqlite3_config() function
-** before calling sqlite3_initialize() or any other public sqlite3_
-** function that calls sqlite3_initialize().
-**
-** ^The sqlite3_mutex_alloc() routine allocates a new
-** mutex and returns a pointer to it. ^The sqlite3_mutex_alloc()
-** routine returns NULL if it is unable to allocate the requested
-** mutex. The argument to sqlite3_mutex_alloc() must one of these
-** integer constants:
-**
-**
-**
SQLITE_MUTEX_FAST
-**
SQLITE_MUTEX_RECURSIVE
-**
SQLITE_MUTEX_STATIC_MASTER
-**
SQLITE_MUTEX_STATIC_MEM
-**
SQLITE_MUTEX_STATIC_OPEN
-**
SQLITE_MUTEX_STATIC_PRNG
-**
SQLITE_MUTEX_STATIC_LRU
-**
SQLITE_MUTEX_STATIC_PMEM
-**
SQLITE_MUTEX_STATIC_APP1
-**
SQLITE_MUTEX_STATIC_APP2
-**
SQLITE_MUTEX_STATIC_APP3
-**
SQLITE_MUTEX_STATIC_VFS1
-**
SQLITE_MUTEX_STATIC_VFS2
-**
SQLITE_MUTEX_STATIC_VFS3
-**
-**
-** ^The first two constants (SQLITE_MUTEX_FAST and SQLITE_MUTEX_RECURSIVE)
-** cause sqlite3_mutex_alloc() to create
-** a new mutex. ^The new mutex is recursive when SQLITE_MUTEX_RECURSIVE
-** is used but not necessarily so when SQLITE_MUTEX_FAST is used.
-** The mutex implementation does not need to make a distinction
-** between SQLITE_MUTEX_RECURSIVE and SQLITE_MUTEX_FAST if it does
-** not want to. SQLite will only request a recursive mutex in
-** cases where it really needs one. If a faster non-recursive mutex
-** implementation is available on the host platform, the mutex subsystem
-** might return such a mutex in response to SQLITE_MUTEX_FAST.
-**
-** ^The other allowed parameters to sqlite3_mutex_alloc() (anything other
-** than SQLITE_MUTEX_FAST and SQLITE_MUTEX_RECURSIVE) each return
-** a pointer to a static preexisting mutex. ^Nine static mutexes are
-** used by the current version of SQLite. Future versions of SQLite
-** may add additional static mutexes. Static mutexes are for internal
-** use by SQLite only. Applications that use SQLite mutexes should
-** use only the dynamic mutexes returned by SQLITE_MUTEX_FAST or
-** SQLITE_MUTEX_RECURSIVE.
-**
-** ^Note that if one of the dynamic mutex parameters (SQLITE_MUTEX_FAST
-** or SQLITE_MUTEX_RECURSIVE) is used then sqlite3_mutex_alloc()
-** returns a different mutex on every call. ^For the static
-** mutex types, the same mutex is returned on every call that has
-** the same type number.
-**
-** ^The sqlite3_mutex_free() routine deallocates a previously
-** allocated dynamic mutex. Attempting to deallocate a static
-** mutex results in undefined behavior.
-**
-** ^The sqlite3_mutex_enter() and sqlite3_mutex_try() routines attempt
-** to enter a mutex. ^If another thread is already within the mutex,
-** sqlite3_mutex_enter() will block and sqlite3_mutex_try() will return
-** SQLITE_BUSY. ^The sqlite3_mutex_try() interface returns [SQLITE_OK]
-** upon successful entry. ^(Mutexes created using
-** SQLITE_MUTEX_RECURSIVE can be entered multiple times by the same thread.
-** In such cases, the
-** mutex must be exited an equal number of times before another thread
-** can enter.)^ If the same thread tries to enter any mutex other
-** than an SQLITE_MUTEX_RECURSIVE more than once, the behavior is undefined.
-**
-** ^(Some systems (for example, Windows 95) do not support the operation
-** implemented by sqlite3_mutex_try(). On those systems, sqlite3_mutex_try()
-** will always return SQLITE_BUSY. The SQLite core only ever uses
-** sqlite3_mutex_try() as an optimization so this is acceptable
-** behavior.)^
-**
-** ^The sqlite3_mutex_leave() routine exits a mutex that was
-** previously entered by the same thread. The behavior
-** is undefined if the mutex is not currently entered by the
-** calling thread or is not currently allocated.
-**
-** ^If the argument to sqlite3_mutex_enter(), sqlite3_mutex_try(), or
-** sqlite3_mutex_leave() is a NULL pointer, then all three routines
-** behave as no-ops.
-**
-** See also: [sqlite3_mutex_held()] and [sqlite3_mutex_notheld()].
-*/
-SQLITE_API sqlite3_mutex *sqlite3_mutex_alloc(int);
-SQLITE_API void sqlite3_mutex_free(sqlite3_mutex*);
-SQLITE_API void sqlite3_mutex_enter(sqlite3_mutex*);
-SQLITE_API int sqlite3_mutex_try(sqlite3_mutex*);
-SQLITE_API void sqlite3_mutex_leave(sqlite3_mutex*);
-
-/*
-** CAPI3REF: Mutex Methods Object
-**
-** An instance of this structure defines the low-level routines
-** used to allocate and use mutexes.
-**
-** Usually, the default mutex implementations provided by SQLite are
-** sufficient, however the application has the option of substituting a custom
-** implementation for specialized deployments or systems for which SQLite
-** does not provide a suitable implementation. In this case, the application
-** creates and populates an instance of this structure to pass
-** to sqlite3_config() along with the [SQLITE_CONFIG_MUTEX] option.
-** Additionally, an instance of this structure can be used as an
-** output variable when querying the system for the current mutex
-** implementation, using the [SQLITE_CONFIG_GETMUTEX] option.
-**
-** ^The xMutexInit method defined by this structure is invoked as
-** part of system initialization by the sqlite3_initialize() function.
-** ^The xMutexInit routine is called by SQLite exactly once for each
-** effective call to [sqlite3_initialize()].
-**
-** ^The xMutexEnd method defined by this structure is invoked as
-** part of system shutdown by the sqlite3_shutdown() function. The
-** implementation of this method is expected to release all outstanding
-** resources obtained by the mutex methods implementation, especially
-** those obtained by the xMutexInit method. ^The xMutexEnd()
-** interface is invoked exactly once for each call to [sqlite3_shutdown()].
-**
-** ^(The remaining seven methods defined by this structure (xMutexAlloc,
-** xMutexFree, xMutexEnter, xMutexTry, xMutexLeave, xMutexHeld and
-** xMutexNotheld) implement the following interfaces (respectively):
-**
-**
-**
[sqlite3_mutex_alloc()]
-**
[sqlite3_mutex_free()]
-**
[sqlite3_mutex_enter()]
-**
[sqlite3_mutex_try()]
-**
[sqlite3_mutex_leave()]
-**
[sqlite3_mutex_held()]
-**
[sqlite3_mutex_notheld()]
-**
)^
-**
-** The only difference is that the public sqlite3_XXX functions enumerated
-** above silently ignore any invocations that pass a NULL pointer instead
-** of a valid mutex handle. The implementations of the methods defined
-** by this structure are not required to handle this case, the results
-** of passing a NULL pointer instead of a valid mutex handle are undefined
-** (i.e. it is acceptable to provide an implementation that segfaults if
-** it is passed a NULL pointer).
-**
-** The xMutexInit() method must be threadsafe. It must be harmless to
-** invoke xMutexInit() multiple times within the same process and without
-** intervening calls to xMutexEnd(). Second and subsequent calls to
-** xMutexInit() must be no-ops.
-**
-** xMutexInit() must not use SQLite memory allocation ([sqlite3_malloc()]
-** and its associates). Similarly, xMutexAlloc() must not use SQLite memory
-** allocation for a static mutex. ^However xMutexAlloc() may use SQLite
-** memory allocation for a fast or recursive mutex.
-**
-** ^SQLite will invoke the xMutexEnd() method when [sqlite3_shutdown()] is
-** called, but only if the prior call to xMutexInit returned SQLITE_OK.
-** If xMutexInit fails in any way, it is expected to clean up after itself
-** prior to returning.
-*/
-typedef struct sqlite3_mutex_methods sqlite3_mutex_methods;
-struct sqlite3_mutex_methods {
- int (*xMutexInit)(void);
- int (*xMutexEnd)(void);
- sqlite3_mutex *(*xMutexAlloc)(int);
- void (*xMutexFree)(sqlite3_mutex *);
- void (*xMutexEnter)(sqlite3_mutex *);
- int (*xMutexTry)(sqlite3_mutex *);
- void (*xMutexLeave)(sqlite3_mutex *);
- int (*xMutexHeld)(sqlite3_mutex *);
- int (*xMutexNotheld)(sqlite3_mutex *);
-};
-
-/*
-** CAPI3REF: Mutex Verification Routines
-**
-** The sqlite3_mutex_held() and sqlite3_mutex_notheld() routines
-** are intended for use inside assert() statements. The SQLite core
-** never uses these routines except inside an assert() and applications
-** are advised to follow the lead of the core. The SQLite core only
-** provides implementations for these routines when it is compiled
-** with the SQLITE_DEBUG flag. External mutex implementations
-** are only required to provide these routines if SQLITE_DEBUG is
-** defined and if NDEBUG is not defined.
-**
-** These routines should return true if the mutex in their argument
-** is held or not held, respectively, by the calling thread.
-**
-** The implementation is not required to provide versions of these
-** routines that actually work. If the implementation does not provide working
-** versions of these routines, it should at least provide stubs that always
-** return true so that one does not get spurious assertion failures.
-**
-** If the argument to sqlite3_mutex_held() is a NULL pointer then
-** the routine should return 1. This seems counter-intuitive since
-** clearly the mutex cannot be held if it does not exist. But
-** the reason the mutex does not exist is because the build is not
-** using mutexes. And we do not want the assert() containing the
-** call to sqlite3_mutex_held() to fail, so a non-zero return is
-** the appropriate thing to do. The sqlite3_mutex_notheld()
-** interface should also return 1 when given a NULL pointer.
-*/
-#ifndef NDEBUG
-SQLITE_API int sqlite3_mutex_held(sqlite3_mutex*);
-SQLITE_API int sqlite3_mutex_notheld(sqlite3_mutex*);
-#endif
-
-/*
-** CAPI3REF: Mutex Types
-**
-** The [sqlite3_mutex_alloc()] interface takes a single argument
-** which is one of these integer constants.
-**
-** The set of static mutexes may change from one SQLite release to the
-** next. Applications that override the built-in mutex logic must be
-** prepared to accommodate additional static mutexes.
-*/
-#define SQLITE_MUTEX_FAST 0
-#define SQLITE_MUTEX_RECURSIVE 1
-#define SQLITE_MUTEX_STATIC_MASTER 2
-#define SQLITE_MUTEX_STATIC_MEM 3 /* sqlite3_malloc() */
-#define SQLITE_MUTEX_STATIC_MEM2 4 /* NOT USED */
-#define SQLITE_MUTEX_STATIC_OPEN 4 /* sqlite3BtreeOpen() */
-#define SQLITE_MUTEX_STATIC_PRNG 5 /* sqlite3_randomness() */
-#define SQLITE_MUTEX_STATIC_LRU 6 /* lru page list */
-#define SQLITE_MUTEX_STATIC_LRU2 7 /* NOT USED */
-#define SQLITE_MUTEX_STATIC_PMEM 7 /* sqlite3PageMalloc() */
-#define SQLITE_MUTEX_STATIC_APP1 8 /* For use by application */
-#define SQLITE_MUTEX_STATIC_APP2 9 /* For use by application */
-#define SQLITE_MUTEX_STATIC_APP3 10 /* For use by application */
-#define SQLITE_MUTEX_STATIC_VFS1 11 /* For use by built-in VFS */
-#define SQLITE_MUTEX_STATIC_VFS2 12 /* For use by extension VFS */
-#define SQLITE_MUTEX_STATIC_VFS3 13 /* For use by application VFS */
-
-/*
-** CAPI3REF: Retrieve the mutex for a database connection
-** METHOD: sqlite3
-**
-** ^This interface returns a pointer the [sqlite3_mutex] object that
-** serializes access to the [database connection] given in the argument
-** when the [threading mode] is Serialized.
-** ^If the [threading mode] is Single-thread or Multi-thread then this
-** routine returns a NULL pointer.
-*/
-SQLITE_API sqlite3_mutex *sqlite3_db_mutex(sqlite3*);
-
-/*
-** CAPI3REF: Low-Level Control Of Database Files
-** METHOD: sqlite3
-** KEYWORDS: {file control}
-**
-** ^The [sqlite3_file_control()] interface makes a direct call to the
-** xFileControl method for the [sqlite3_io_methods] object associated
-** with a particular database identified by the second argument. ^The
-** name of the database is "main" for the main database or "temp" for the
-** TEMP database, or the name that appears after the AS keyword for
-** databases that are added using the [ATTACH] SQL command.
-** ^A NULL pointer can be used in place of "main" to refer to the
-** main database file.
-** ^The third and fourth parameters to this routine
-** are passed directly through to the second and third parameters of
-** the xFileControl method. ^The return value of the xFileControl
-** method becomes the return value of this routine.
-**
-** A few opcodes for [sqlite3_file_control()] are handled directly
-** by the SQLite core and never invoke the
-** sqlite3_io_methods.xFileControl method.
-** ^The [SQLITE_FCNTL_FILE_POINTER] value for the op parameter causes
-** a pointer to the underlying [sqlite3_file] object to be written into
-** the space pointed to by the 4th parameter. The
-** [SQLITE_FCNTL_JOURNAL_POINTER] works similarly except that it returns
-** the [sqlite3_file] object associated with the journal file instead of
-** the main database. The [SQLITE_FCNTL_VFS_POINTER] opcode returns
-** a pointer to the underlying [sqlite3_vfs] object for the file.
-** The [SQLITE_FCNTL_DATA_VERSION] returns the data version counter
-** from the pager.
-**
-** ^If the second parameter (zDbName) does not match the name of any
-** open database file, then SQLITE_ERROR is returned. ^This error
-** code is not remembered and will not be recalled by [sqlite3_errcode()]
-** or [sqlite3_errmsg()]. The underlying xFileControl method might
-** also return SQLITE_ERROR. There is no way to distinguish between
-** an incorrect zDbName and an SQLITE_ERROR return from the underlying
-** xFileControl method.
-**
-** See also: [file control opcodes]
-*/
-SQLITE_API int sqlite3_file_control(sqlite3*, const char *zDbName, int op, void*);
-
-/*
-** CAPI3REF: Testing Interface
-**
-** ^The sqlite3_test_control() interface is used to read out internal
-** state of SQLite and to inject faults into SQLite for testing
-** purposes. ^The first parameter is an operation code that determines
-** the number, meaning, and operation of all subsequent parameters.
-**
-** This interface is not for use by applications. It exists solely
-** for verifying the correct operation of the SQLite library. Depending
-** on how the SQLite library is compiled, this interface might not exist.
-**
-** The details of the operation codes, their meanings, the parameters
-** they take, and what they do are all subject to change without notice.
-** Unlike most of the SQLite API, this function is not guaranteed to
-** operate consistently from one release to the next.
-*/
-SQLITE_API int sqlite3_test_control(int op, ...);
-
-/*
-** CAPI3REF: Testing Interface Operation Codes
-**
-** These constants are the valid operation code parameters used
-** as the first argument to [sqlite3_test_control()].
-**
-** These parameters and their meanings are subject to change
-** without notice. These values are for testing purposes only.
-** Applications should not use any of these parameters or the
-** [sqlite3_test_control()] interface.
-*/
-#define SQLITE_TESTCTRL_FIRST 5
-#define SQLITE_TESTCTRL_PRNG_SAVE 5
-#define SQLITE_TESTCTRL_PRNG_RESTORE 6
-#define SQLITE_TESTCTRL_PRNG_RESET 7
-#define SQLITE_TESTCTRL_BITVEC_TEST 8
-#define SQLITE_TESTCTRL_FAULT_INSTALL 9
-#define SQLITE_TESTCTRL_BENIGN_MALLOC_HOOKS 10
-#define SQLITE_TESTCTRL_PENDING_BYTE 11
-#define SQLITE_TESTCTRL_ASSERT 12
-#define SQLITE_TESTCTRL_ALWAYS 13
-#define SQLITE_TESTCTRL_RESERVE 14
-#define SQLITE_TESTCTRL_OPTIMIZATIONS 15
-#define SQLITE_TESTCTRL_ISKEYWORD 16 /* NOT USED */
-#define SQLITE_TESTCTRL_SCRATCHMALLOC 17 /* NOT USED */
-#define SQLITE_TESTCTRL_LOCALTIME_FAULT 18
-#define SQLITE_TESTCTRL_EXPLAIN_STMT 19 /* NOT USED */
-#define SQLITE_TESTCTRL_ONCE_RESET_THRESHOLD 19
-#define SQLITE_TESTCTRL_NEVER_CORRUPT 20
-#define SQLITE_TESTCTRL_VDBE_COVERAGE 21
-#define SQLITE_TESTCTRL_BYTEORDER 22
-#define SQLITE_TESTCTRL_ISINIT 23
-#define SQLITE_TESTCTRL_SORTER_MMAP 24
-#define SQLITE_TESTCTRL_IMPOSTER 25
-#define SQLITE_TESTCTRL_PARSER_COVERAGE 26
-#define SQLITE_TESTCTRL_LAST 26 /* Largest TESTCTRL */
-
-/*
-** CAPI3REF: SQL Keyword Checking
-**
-** These routines provide access to the set of SQL language keywords
-** recognized by SQLite. Applications can uses these routines to determine
-** whether or not a specific identifier needs to be escaped (for example,
-** by enclosing in double-quotes) so as not to confuse the parser.
-**
-** The sqlite3_keyword_count() interface returns the number of distinct
-** keywords understood by SQLite.
-**
-** The sqlite3_keyword_name(N,Z,L) interface finds the N-th keyword and
-** makes *Z point to that keyword expressed as UTF8 and writes the number
-** of bytes in the keyword into *L. The string that *Z points to is not
-** zero-terminated. The sqlite3_keyword_name(N,Z,L) routine returns
-** SQLITE_OK if N is within bounds and SQLITE_ERROR if not. If either Z
-** or L are NULL or invalid pointers then calls to
-** sqlite3_keyword_name(N,Z,L) result in undefined behavior.
-**
-** The sqlite3_keyword_check(Z,L) interface checks to see whether or not
-** the L-byte UTF8 identifier that Z points to is a keyword, returning non-zero
-** if it is and zero if not.
-**
-** The parser used by SQLite is forgiving. It is often possible to use
-** a keyword as an identifier as long as such use does not result in a
-** parsing ambiguity. For example, the statement
-** "CREATE TABLE BEGIN(REPLACE,PRAGMA,END);" is accepted by SQLite, and
-** creates a new table named "BEGIN" with three columns named
-** "REPLACE", "PRAGMA", and "END". Nevertheless, best practice is to avoid
-** using keywords as identifiers. Common techniques used to avoid keyword
-** name collisions include:
-**
-**
Put all identifier names inside double-quotes. This is the official
-** SQL way to escape identifier names.
-**
Put identifier names inside [...]. This is not standard SQL,
-** but it is what SQL Server does and so lots of programmers use this
-** technique.
-**
Begin every identifier with the letter "Z" as no SQL keywords start
-** with "Z".
-**
Include a digit somewhere in every identifier name.
-**
-**
-** Note that the number of keywords understood by SQLite can depend on
-** compile-time options. For example, "VACUUM" is not a keyword if
-** SQLite is compiled with the [-DSQLITE_OMIT_VACUUM] option. Also,
-** new keywords may be added to future releases of SQLite.
-*/
-SQLITE_API int sqlite3_keyword_count(void);
-SQLITE_API int sqlite3_keyword_name(int,const char**,int*);
-SQLITE_API int sqlite3_keyword_check(const char*,int);
-
-/*
-** CAPI3REF: Dynamic String Object
-** KEYWORDS: {dynamic string}
-**
-** An instance of the sqlite3_str object contains a dynamically-sized
-** string under construction.
-**
-** The lifecycle of an sqlite3_str object is as follows:
-**
-**
^The sqlite3_str object is created using [sqlite3_str_new()].
-**
^Text is appended to the sqlite3_str object using various
-** methods, such as [sqlite3_str_appendf()].
-**
^The sqlite3_str object is destroyed and the string it created
-** is returned using the [sqlite3_str_finish()] interface.
-**
-*/
-typedef struct sqlite3_str sqlite3_str;
-
-/*
-** CAPI3REF: Create A New Dynamic String Object
-** CONSTRUCTOR: sqlite3_str
-**
-** ^The [sqlite3_str_new(D)] interface allocates and initializes
-** a new [sqlite3_str] object. To avoid memory leaks, the object returned by
-** [sqlite3_str_new()] must be freed by a subsequent call to
-** [sqlite3_str_finish(X)].
-**
-** ^The [sqlite3_str_new(D)] interface always returns a pointer to a
-** valid [sqlite3_str] object, though in the event of an out-of-memory
-** error the returned object might be a special singleton that will
-** silently reject new text, always return SQLITE_NOMEM from
-** [sqlite3_str_errcode()], always return 0 for
-** [sqlite3_str_length()], and always return NULL from
-** [sqlite3_str_finish(X)]. It is always safe to use the value
-** returned by [sqlite3_str_new(D)] as the sqlite3_str parameter
-** to any of the other [sqlite3_str] methods.
-**
-** The D parameter to [sqlite3_str_new(D)] may be NULL. If the
-** D parameter in [sqlite3_str_new(D)] is not NULL, then the maximum
-** length of the string contained in the [sqlite3_str] object will be
-** the value set for [sqlite3_limit](D,[SQLITE_LIMIT_LENGTH]) instead
-** of [SQLITE_MAX_LENGTH].
-*/
-SQLITE_API sqlite3_str *sqlite3_str_new(sqlite3*);
-
-/*
-** CAPI3REF: Finalize A Dynamic String
-** DESTRUCTOR: sqlite3_str
-**
-** ^The [sqlite3_str_finish(X)] interface destroys the sqlite3_str object X
-** and returns a pointer to a memory buffer obtained from [sqlite3_malloc64()]
-** that contains the constructed string. The calling application should
-** pass the returned value to [sqlite3_free()] to avoid a memory leak.
-** ^The [sqlite3_str_finish(X)] interface may return a NULL pointer if any
-** errors were encountered during construction of the string. ^The
-** [sqlite3_str_finish(X)] interface will also return a NULL pointer if the
-** string in [sqlite3_str] object X is zero bytes long.
-*/
-SQLITE_API char *sqlite3_str_finish(sqlite3_str*);
-
-/*
-** CAPI3REF: Add Content To A Dynamic String
-** METHOD: sqlite3_str
-**
-** These interfaces add content to an sqlite3_str object previously obtained
-** from [sqlite3_str_new()].
-**
-** ^The [sqlite3_str_appendf(X,F,...)] and
-** [sqlite3_str_vappendf(X,F,V)] interfaces uses the [built-in printf]
-** functionality of SQLite to append formatted text onto the end of
-** [sqlite3_str] object X.
-**
-** ^The [sqlite3_str_append(X,S,N)] method appends exactly N bytes from string S
-** onto the end of the [sqlite3_str] object X. N must be non-negative.
-** S must contain at least N non-zero bytes of content. To append a
-** zero-terminated string in its entirety, use the [sqlite3_str_appendall()]
-** method instead.
-**
-** ^The [sqlite3_str_appendall(X,S)] method appends the complete content of
-** zero-terminated string S onto the end of [sqlite3_str] object X.
-**
-** ^The [sqlite3_str_appendchar(X,N,C)] method appends N copies of the
-** single-byte character C onto the end of [sqlite3_str] object X.
-** ^This method can be used, for example, to add whitespace indentation.
-**
-** ^The [sqlite3_str_reset(X)] method resets the string under construction
-** inside [sqlite3_str] object X back to zero bytes in length.
-**
-** These methods do not return a result code. ^If an error occurs, that fact
-** is recorded in the [sqlite3_str] object and can be recovered by a
-** subsequent call to [sqlite3_str_errcode(X)].
-*/
-SQLITE_API void sqlite3_str_appendf(sqlite3_str*, const char *zFormat, ...);
-SQLITE_API void sqlite3_str_vappendf(sqlite3_str*, const char *zFormat, va_list);
-SQLITE_API void sqlite3_str_append(sqlite3_str*, const char *zIn, int N);
-SQLITE_API void sqlite3_str_appendall(sqlite3_str*, const char *zIn);
-SQLITE_API void sqlite3_str_appendchar(sqlite3_str*, int N, char C);
-SQLITE_API void sqlite3_str_reset(sqlite3_str*);
-
-/*
-** CAPI3REF: Status Of A Dynamic String
-** METHOD: sqlite3_str
-**
-** These interfaces return the current status of an [sqlite3_str] object.
-**
-** ^If any prior errors have occurred while constructing the dynamic string
-** in sqlite3_str X, then the [sqlite3_str_errcode(X)] method will return
-** an appropriate error code. ^The [sqlite3_str_errcode(X)] method returns
-** [SQLITE_NOMEM] following any out-of-memory error, or
-** [SQLITE_TOOBIG] if the size of the dynamic string exceeds
-** [SQLITE_MAX_LENGTH], or [SQLITE_OK] if there have been no errors.
-**
-** ^The [sqlite3_str_length(X)] method returns the current length, in bytes,
-** of the dynamic string under construction in [sqlite3_str] object X.
-** ^The length returned by [sqlite3_str_length(X)] does not include the
-** zero-termination byte.
-**
-** ^The [sqlite3_str_value(X)] method returns a pointer to the current
-** content of the dynamic string under construction in X. The value
-** returned by [sqlite3_str_value(X)] is managed by the sqlite3_str object X
-** and might be freed or altered by any subsequent method on the same
-** [sqlite3_str] object. Applications must not used the pointer returned
-** [sqlite3_str_value(X)] after any subsequent method call on the same
-** object. ^Applications may change the content of the string returned
-** by [sqlite3_str_value(X)] as long as they do not write into any bytes
-** outside the range of 0 to [sqlite3_str_length(X)] and do not read or
-** write any byte after any subsequent sqlite3_str method call.
-*/
-SQLITE_API int sqlite3_str_errcode(sqlite3_str*);
-SQLITE_API int sqlite3_str_length(sqlite3_str*);
-SQLITE_API char *sqlite3_str_value(sqlite3_str*);
-
-/*
-** CAPI3REF: SQLite Runtime Status
-**
-** ^These interfaces are used to retrieve runtime status information
-** about the performance of SQLite, and optionally to reset various
-** highwater marks. ^The first argument is an integer code for
-** the specific parameter to measure. ^(Recognized integer codes
-** are of the form [status parameters | SQLITE_STATUS_...].)^
-** ^The current value of the parameter is returned into *pCurrent.
-** ^The highest recorded value is returned in *pHighwater. ^If the
-** resetFlag is true, then the highest record value is reset after
-** *pHighwater is written. ^(Some parameters do not record the highest
-** value. For those parameters
-** nothing is written into *pHighwater and the resetFlag is ignored.)^
-** ^(Other parameters record only the highwater mark and not the current
-** value. For these latter parameters nothing is written into *pCurrent.)^
-**
-** ^The sqlite3_status() and sqlite3_status64() routines return
-** SQLITE_OK on success and a non-zero [error code] on failure.
-**
-** If either the current value or the highwater mark is too large to
-** be represented by a 32-bit integer, then the values returned by
-** sqlite3_status() are undefined.
-**
-** See also: [sqlite3_db_status()]
-*/
-SQLITE_API int sqlite3_status(int op, int *pCurrent, int *pHighwater, int resetFlag);
-SQLITE_API int sqlite3_status64(
- int op,
- sqlite3_int64 *pCurrent,
- sqlite3_int64 *pHighwater,
- int resetFlag
-);
-
-
-/*
-** CAPI3REF: Status Parameters
-** KEYWORDS: {status parameters}
-**
-** These integer constants designate various run-time status parameters
-** that can be returned by [sqlite3_status()].
-**
-**
-** [[SQLITE_STATUS_MEMORY_USED]] ^(
SQLITE_STATUS_MEMORY_USED
-**
This parameter is the current amount of memory checked out
-** using [sqlite3_malloc()], either directly or indirectly. The
-** figure includes calls made to [sqlite3_malloc()] by the application
-** and internal memory usage by the SQLite library. Auxiliary page-cache
-** memory controlled by [SQLITE_CONFIG_PAGECACHE] is not included in
-** this parameter. The amount returned is the sum of the allocation
-** sizes as reported by the xSize method in [sqlite3_mem_methods].
)^
-**
-** [[SQLITE_STATUS_MALLOC_SIZE]] ^(
SQLITE_STATUS_MALLOC_SIZE
-**
This parameter records the largest memory allocation request
-** handed to [sqlite3_malloc()] or [sqlite3_realloc()] (or their
-** internal equivalents). Only the value returned in the
-** *pHighwater parameter to [sqlite3_status()] is of interest.
-** The value written into the *pCurrent parameter is undefined.
)^
-**
-** [[SQLITE_STATUS_MALLOC_COUNT]] ^(
SQLITE_STATUS_MALLOC_COUNT
-**
This parameter records the number of separate memory allocations
-** currently checked out.
)^
-**
-** [[SQLITE_STATUS_PAGECACHE_USED]] ^(
SQLITE_STATUS_PAGECACHE_USED
-**
This parameter returns the number of pages used out of the
-** [pagecache memory allocator] that was configured using
-** [SQLITE_CONFIG_PAGECACHE]. The
-** value returned is in pages, not in bytes.
This parameter returns the number of bytes of page cache
-** allocation which could not be satisfied by the [SQLITE_CONFIG_PAGECACHE]
-** buffer and where forced to overflow to [sqlite3_malloc()]. The
-** returned value includes allocations that overflowed because they
-** where too large (they were larger than the "sz" parameter to
-** [SQLITE_CONFIG_PAGECACHE]) and allocations that overflowed because
-** no space was left in the page cache.
)^
-**
-** [[SQLITE_STATUS_PAGECACHE_SIZE]] ^(
SQLITE_STATUS_PAGECACHE_SIZE
-**
This parameter records the largest memory allocation request
-** handed to [pagecache memory allocator]. Only the value returned in the
-** *pHighwater parameter to [sqlite3_status()] is of interest.
-** The value written into the *pCurrent parameter is undefined.
)^
-**
-** [[SQLITE_STATUS_SCRATCH_USED]]
SQLITE_STATUS_SCRATCH_USED
-**
No longer used.
-**
-** [[SQLITE_STATUS_SCRATCH_OVERFLOW]] ^(
SQLITE_STATUS_SCRATCH_OVERFLOW
-**
No longer used.
-**
-** [[SQLITE_STATUS_SCRATCH_SIZE]]
SQLITE_STATUS_SCRATCH_SIZE
-**
No longer used.
-**
-** [[SQLITE_STATUS_PARSER_STACK]] ^(
SQLITE_STATUS_PARSER_STACK
-**
The *pHighwater parameter records the deepest parser stack.
-** The *pCurrent value is undefined. The *pHighwater value is only
-** meaningful if SQLite is compiled with [YYTRACKMAXSTACKDEPTH].
)^
-**
-**
-** New status parameters may be added from time to time.
-*/
-#define SQLITE_STATUS_MEMORY_USED 0
-#define SQLITE_STATUS_PAGECACHE_USED 1
-#define SQLITE_STATUS_PAGECACHE_OVERFLOW 2
-#define SQLITE_STATUS_SCRATCH_USED 3 /* NOT USED */
-#define SQLITE_STATUS_SCRATCH_OVERFLOW 4 /* NOT USED */
-#define SQLITE_STATUS_MALLOC_SIZE 5
-#define SQLITE_STATUS_PARSER_STACK 6
-#define SQLITE_STATUS_PAGECACHE_SIZE 7
-#define SQLITE_STATUS_SCRATCH_SIZE 8 /* NOT USED */
-#define SQLITE_STATUS_MALLOC_COUNT 9
-
-/*
-** CAPI3REF: Database Connection Status
-** METHOD: sqlite3
-**
-** ^This interface is used to retrieve runtime status information
-** about a single [database connection]. ^The first argument is the
-** database connection object to be interrogated. ^The second argument
-** is an integer constant, taken from the set of
-** [SQLITE_DBSTATUS options], that
-** determines the parameter to interrogate. The set of
-** [SQLITE_DBSTATUS options] is likely
-** to grow in future releases of SQLite.
-**
-** ^The current value of the requested parameter is written into *pCur
-** and the highest instantaneous value is written into *pHiwtr. ^If
-** the resetFlg is true, then the highest instantaneous value is
-** reset back down to the current value.
-**
-** ^The sqlite3_db_status() routine returns SQLITE_OK on success and a
-** non-zero [error code] on failure.
-**
-** See also: [sqlite3_status()] and [sqlite3_stmt_status()].
-*/
-SQLITE_API int sqlite3_db_status(sqlite3*, int op, int *pCur, int *pHiwtr, int resetFlg);
-
-/*
-** CAPI3REF: Status Parameters for database connections
-** KEYWORDS: {SQLITE_DBSTATUS options}
-**
-** These constants are the available integer "verbs" that can be passed as
-** the second argument to the [sqlite3_db_status()] interface.
-**
-** New verbs may be added in future releases of SQLite. Existing verbs
-** might be discontinued. Applications should check the return code from
-** [sqlite3_db_status()] to make sure that the call worked.
-** The [sqlite3_db_status()] interface will return a non-zero error code
-** if a discontinued or unsupported verb is invoked.
-**
-**
-** [[SQLITE_DBSTATUS_LOOKASIDE_USED]] ^(
SQLITE_DBSTATUS_LOOKASIDE_USED
-**
This parameter returns the number of lookaside memory slots currently
-** checked out.
)^
-**
-** [[SQLITE_DBSTATUS_LOOKASIDE_HIT]] ^(
SQLITE_DBSTATUS_LOOKASIDE_HIT
-**
This parameter returns the number malloc attempts that were
-** satisfied using lookaside memory. Only the high-water value is meaningful;
-** the current value is always zero.)^
-**
-** [[SQLITE_DBSTATUS_LOOKASIDE_MISS_SIZE]]
-** ^(
SQLITE_DBSTATUS_LOOKASIDE_MISS_SIZE
-**
This parameter returns the number malloc attempts that might have
-** been satisfied using lookaside memory but failed due to the amount of
-** memory requested being larger than the lookaside slot size.
-** Only the high-water value is meaningful;
-** the current value is always zero.)^
-**
-** [[SQLITE_DBSTATUS_LOOKASIDE_MISS_FULL]]
-** ^(
SQLITE_DBSTATUS_LOOKASIDE_MISS_FULL
-**
This parameter returns the number malloc attempts that might have
-** been satisfied using lookaside memory but failed due to all lookaside
-** memory already being in use.
-** Only the high-water value is meaningful;
-** the current value is always zero.)^
-**
-** [[SQLITE_DBSTATUS_CACHE_USED]] ^(
SQLITE_DBSTATUS_CACHE_USED
-**
This parameter returns the approximate number of bytes of heap
-** memory used by all pager caches associated with the database connection.)^
-** ^The highwater mark associated with SQLITE_DBSTATUS_CACHE_USED is always 0.
-**
-** [[SQLITE_DBSTATUS_CACHE_USED_SHARED]]
-** ^(
SQLITE_DBSTATUS_CACHE_USED_SHARED
-**
This parameter is similar to DBSTATUS_CACHE_USED, except that if a
-** pager cache is shared between two or more connections the bytes of heap
-** memory used by that pager cache is divided evenly between the attached
-** connections.)^ In other words, if none of the pager caches associated
-** with the database connection are shared, this request returns the same
-** value as DBSTATUS_CACHE_USED. Or, if one or more or the pager caches are
-** shared, the value returned by this call will be smaller than that returned
-** by DBSTATUS_CACHE_USED. ^The highwater mark associated with
-** SQLITE_DBSTATUS_CACHE_USED_SHARED is always 0.
-**
-** [[SQLITE_DBSTATUS_SCHEMA_USED]] ^(
SQLITE_DBSTATUS_SCHEMA_USED
-**
This parameter returns the approximate number of bytes of heap
-** memory used to store the schema for all databases associated
-** with the connection - main, temp, and any [ATTACH]-ed databases.)^
-** ^The full amount of memory used by the schemas is reported, even if the
-** schema memory is shared with other database connections due to
-** [shared cache mode] being enabled.
-** ^The highwater mark associated with SQLITE_DBSTATUS_SCHEMA_USED is always 0.
-**
-** [[SQLITE_DBSTATUS_STMT_USED]] ^(
SQLITE_DBSTATUS_STMT_USED
-**
This parameter returns the approximate number of bytes of heap
-** and lookaside memory used by all prepared statements associated with
-** the database connection.)^
-** ^The highwater mark associated with SQLITE_DBSTATUS_STMT_USED is always 0.
-**
-**
-** [[SQLITE_DBSTATUS_CACHE_HIT]] ^(
SQLITE_DBSTATUS_CACHE_HIT
-**
This parameter returns the number of pager cache hits that have
-** occurred.)^ ^The highwater mark associated with SQLITE_DBSTATUS_CACHE_HIT
-** is always 0.
-**
-**
-** [[SQLITE_DBSTATUS_CACHE_MISS]] ^(
SQLITE_DBSTATUS_CACHE_MISS
-**
This parameter returns the number of pager cache misses that have
-** occurred.)^ ^The highwater mark associated with SQLITE_DBSTATUS_CACHE_MISS
-** is always 0.
-**
-**
-** [[SQLITE_DBSTATUS_CACHE_WRITE]] ^(
SQLITE_DBSTATUS_CACHE_WRITE
-**
This parameter returns the number of dirty cache entries that have
-** been written to disk. Specifically, the number of pages written to the
-** wal file in wal mode databases, or the number of pages written to the
-** database file in rollback mode databases. Any pages written as part of
-** transaction rollback or database recovery operations are not included.
-** If an IO or other error occurs while writing a page to disk, the effect
-** on subsequent SQLITE_DBSTATUS_CACHE_WRITE requests is undefined.)^ ^The
-** highwater mark associated with SQLITE_DBSTATUS_CACHE_WRITE is always 0.
-**
-**
-** [[SQLITE_DBSTATUS_CACHE_SPILL]] ^(
SQLITE_DBSTATUS_CACHE_SPILL
-**
This parameter returns the number of dirty cache entries that have
-** been written to disk in the middle of a transaction due to the page
-** cache overflowing. Transactions are more efficient if they are written
-** to disk all at once. When pages spill mid-transaction, that introduces
-** additional overhead. This parameter can be used help identify
-** inefficiencies that can be resolve by increasing the cache size.
-**
-**
-** [[SQLITE_DBSTATUS_DEFERRED_FKS]] ^(
SQLITE_DBSTATUS_DEFERRED_FKS
-**
This parameter returns zero for the current value if and only if
-** all foreign key constraints (deferred or immediate) have been
-** resolved.)^ ^The highwater mark is always 0.
-**
-**
-*/
-#define SQLITE_DBSTATUS_LOOKASIDE_USED 0
-#define SQLITE_DBSTATUS_CACHE_USED 1
-#define SQLITE_DBSTATUS_SCHEMA_USED 2
-#define SQLITE_DBSTATUS_STMT_USED 3
-#define SQLITE_DBSTATUS_LOOKASIDE_HIT 4
-#define SQLITE_DBSTATUS_LOOKASIDE_MISS_SIZE 5
-#define SQLITE_DBSTATUS_LOOKASIDE_MISS_FULL 6
-#define SQLITE_DBSTATUS_CACHE_HIT 7
-#define SQLITE_DBSTATUS_CACHE_MISS 8
-#define SQLITE_DBSTATUS_CACHE_WRITE 9
-#define SQLITE_DBSTATUS_DEFERRED_FKS 10
-#define SQLITE_DBSTATUS_CACHE_USED_SHARED 11
-#define SQLITE_DBSTATUS_CACHE_SPILL 12
-#define SQLITE_DBSTATUS_MAX 12 /* Largest defined DBSTATUS */
-
-
-/*
-** CAPI3REF: Prepared Statement Status
-** METHOD: sqlite3_stmt
-**
-** ^(Each prepared statement maintains various
-** [SQLITE_STMTSTATUS counters] that measure the number
-** of times it has performed specific operations.)^ These counters can
-** be used to monitor the performance characteristics of the prepared
-** statements. For example, if the number of table steps greatly exceeds
-** the number of table searches or result rows, that would tend to indicate
-** that the prepared statement is using a full table scan rather than
-** an index.
-**
-** ^(This interface is used to retrieve and reset counter values from
-** a [prepared statement]. The first argument is the prepared statement
-** object to be interrogated. The second argument
-** is an integer code for a specific [SQLITE_STMTSTATUS counter]
-** to be interrogated.)^
-** ^The current value of the requested counter is returned.
-** ^If the resetFlg is true, then the counter is reset to zero after this
-** interface call returns.
-**
-** See also: [sqlite3_status()] and [sqlite3_db_status()].
-*/
-SQLITE_API int sqlite3_stmt_status(sqlite3_stmt*, int op,int resetFlg);
-
-/*
-** CAPI3REF: Status Parameters for prepared statements
-** KEYWORDS: {SQLITE_STMTSTATUS counter} {SQLITE_STMTSTATUS counters}
-**
-** These preprocessor macros define integer codes that name counter
-** values associated with the [sqlite3_stmt_status()] interface.
-** The meanings of the various counters are as follows:
-**
-**
-** [[SQLITE_STMTSTATUS_FULLSCAN_STEP]]
SQLITE_STMTSTATUS_FULLSCAN_STEP
-**
^This is the number of times that SQLite has stepped forward in
-** a table as part of a full table scan. Large numbers for this counter
-** may indicate opportunities for performance improvement through
-** careful use of indices.
-**
-** [[SQLITE_STMTSTATUS_SORT]]
SQLITE_STMTSTATUS_SORT
-**
^This is the number of sort operations that have occurred.
-** A non-zero value in this counter may indicate an opportunity to
-** improvement performance through careful use of indices.
-**
-** [[SQLITE_STMTSTATUS_AUTOINDEX]]
SQLITE_STMTSTATUS_AUTOINDEX
-**
^This is the number of rows inserted into transient indices that
-** were created automatically in order to help joins run faster.
-** A non-zero value in this counter may indicate an opportunity to
-** improvement performance by adding permanent indices that do not
-** need to be reinitialized each time the statement is run.
-**
-** [[SQLITE_STMTSTATUS_VM_STEP]]
SQLITE_STMTSTATUS_VM_STEP
-**
^This is the number of virtual machine operations executed
-** by the prepared statement if that number is less than or equal
-** to 2147483647. The number of virtual machine operations can be
-** used as a proxy for the total work done by the prepared statement.
-** If the number of virtual machine operations exceeds 2147483647
-** then the value returned by this statement status code is undefined.
-**
-** [[SQLITE_STMTSTATUS_REPREPARE]]
SQLITE_STMTSTATUS_REPREPARE
-**
^This is the number of times that the prepare statement has been
-** automatically regenerated due to schema changes or change to
-** [bound parameters] that might affect the query plan.
-**
-** [[SQLITE_STMTSTATUS_RUN]]
SQLITE_STMTSTATUS_RUN
-**
^This is the number of times that the prepared statement has
-** been run. A single "run" for the purposes of this counter is one
-** or more calls to [sqlite3_step()] followed by a call to [sqlite3_reset()].
-** The counter is incremented on the first [sqlite3_step()] call of each
-** cycle.
-**
-** [[SQLITE_STMTSTATUS_MEMUSED]]
SQLITE_STMTSTATUS_MEMUSED
-**
^This is the approximate number of bytes of heap memory
-** used to store the prepared statement. ^This value is not actually
-** a counter, and so the resetFlg parameter to sqlite3_stmt_status()
-** is ignored when the opcode is SQLITE_STMTSTATUS_MEMUSED.
-**
-**
-*/
-#define SQLITE_STMTSTATUS_FULLSCAN_STEP 1
-#define SQLITE_STMTSTATUS_SORT 2
-#define SQLITE_STMTSTATUS_AUTOINDEX 3
-#define SQLITE_STMTSTATUS_VM_STEP 4
-#define SQLITE_STMTSTATUS_REPREPARE 5
-#define SQLITE_STMTSTATUS_RUN 6
-#define SQLITE_STMTSTATUS_MEMUSED 99
-
-/*
-** CAPI3REF: Custom Page Cache Object
-**
-** The sqlite3_pcache type is opaque. It is implemented by
-** the pluggable module. The SQLite core has no knowledge of
-** its size or internal structure and never deals with the
-** sqlite3_pcache object except by holding and passing pointers
-** to the object.
-**
-** See [sqlite3_pcache_methods2] for additional information.
-*/
-typedef struct sqlite3_pcache sqlite3_pcache;
-
-/*
-** CAPI3REF: Custom Page Cache Object
-**
-** The sqlite3_pcache_page object represents a single page in the
-** page cache. The page cache will allocate instances of this
-** object. Various methods of the page cache use pointers to instances
-** of this object as parameters or as their return value.
-**
-** See [sqlite3_pcache_methods2] for additional information.
-*/
-typedef struct sqlite3_pcache_page sqlite3_pcache_page;
-struct sqlite3_pcache_page {
- void *pBuf; /* The content of the page */
- void *pExtra; /* Extra information associated with the page */
-};
-
-/*
-** CAPI3REF: Application Defined Page Cache.
-** KEYWORDS: {page cache}
-**
-** ^(The [sqlite3_config]([SQLITE_CONFIG_PCACHE2], ...) interface can
-** register an alternative page cache implementation by passing in an
-** instance of the sqlite3_pcache_methods2 structure.)^
-** In many applications, most of the heap memory allocated by
-** SQLite is used for the page cache.
-** By implementing a
-** custom page cache using this API, an application can better control
-** the amount of memory consumed by SQLite, the way in which
-** that memory is allocated and released, and the policies used to
-** determine exactly which parts of a database file are cached and for
-** how long.
-**
-** The alternative page cache mechanism is an
-** extreme measure that is only needed by the most demanding applications.
-** The built-in page cache is recommended for most uses.
-**
-** ^(The contents of the sqlite3_pcache_methods2 structure are copied to an
-** internal buffer by SQLite within the call to [sqlite3_config]. Hence
-** the application may discard the parameter after the call to
-** [sqlite3_config()] returns.)^
-**
-** [[the xInit() page cache method]]
-** ^(The xInit() method is called once for each effective
-** call to [sqlite3_initialize()])^
-** (usually only once during the lifetime of the process). ^(The xInit()
-** method is passed a copy of the sqlite3_pcache_methods2.pArg value.)^
-** The intent of the xInit() method is to set up global data structures
-** required by the custom page cache implementation.
-** ^(If the xInit() method is NULL, then the
-** built-in default page cache is used instead of the application defined
-** page cache.)^
-**
-** [[the xShutdown() page cache method]]
-** ^The xShutdown() method is called by [sqlite3_shutdown()].
-** It can be used to clean up
-** any outstanding resources before process shutdown, if required.
-** ^The xShutdown() method may be NULL.
-**
-** ^SQLite automatically serializes calls to the xInit method,
-** so the xInit method need not be threadsafe. ^The
-** xShutdown method is only called from [sqlite3_shutdown()] so it does
-** not need to be threadsafe either. All other methods must be threadsafe
-** in multithreaded applications.
-**
-** ^SQLite will never invoke xInit() more than once without an intervening
-** call to xShutdown().
-**
-** [[the xCreate() page cache methods]]
-** ^SQLite invokes the xCreate() method to construct a new cache instance.
-** SQLite will typically create one cache instance for each open database file,
-** though this is not guaranteed. ^The
-** first parameter, szPage, is the size in bytes of the pages that must
-** be allocated by the cache. ^szPage will always a power of two. ^The
-** second parameter szExtra is a number of bytes of extra storage
-** associated with each page cache entry. ^The szExtra parameter will
-** a number less than 250. SQLite will use the
-** extra szExtra bytes on each page to store metadata about the underlying
-** database page on disk. The value passed into szExtra depends
-** on the SQLite version, the target platform, and how SQLite was compiled.
-** ^The third argument to xCreate(), bPurgeable, is true if the cache being
-** created will be used to cache database pages of a file stored on disk, or
-** false if it is used for an in-memory database. The cache implementation
-** does not have to do anything special based with the value of bPurgeable;
-** it is purely advisory. ^On a cache where bPurgeable is false, SQLite will
-** never invoke xUnpin() except to deliberately delete a page.
-** ^In other words, calls to xUnpin() on a cache with bPurgeable set to
-** false will always have the "discard" flag set to true.
-** ^Hence, a cache created with bPurgeable false will
-** never contain any unpinned pages.
-**
-** [[the xCachesize() page cache method]]
-** ^(The xCachesize() method may be called at any time by SQLite to set the
-** suggested maximum cache-size (number of pages stored by) the cache
-** instance passed as the first argument. This is the value configured using
-** the SQLite "[PRAGMA cache_size]" command.)^ As with the bPurgeable
-** parameter, the implementation is not required to do anything with this
-** value; it is advisory only.
-**
-** [[the xPagecount() page cache methods]]
-** The xPagecount() method must return the number of pages currently
-** stored in the cache, both pinned and unpinned.
-**
-** [[the xFetch() page cache methods]]
-** The xFetch() method locates a page in the cache and returns a pointer to
-** an sqlite3_pcache_page object associated with that page, or a NULL pointer.
-** The pBuf element of the returned sqlite3_pcache_page object will be a
-** pointer to a buffer of szPage bytes used to store the content of a
-** single database page. The pExtra element of sqlite3_pcache_page will be
-** a pointer to the szExtra bytes of extra storage that SQLite has requested
-** for each entry in the page cache.
-**
-** The page to be fetched is determined by the key. ^The minimum key value
-** is 1. After it has been retrieved using xFetch, the page is considered
-** to be "pinned".
-**
-** If the requested page is already in the page cache, then the page cache
-** implementation must return a pointer to the page buffer with its content
-** intact. If the requested page is not already in the cache, then the
-** cache implementation should use the value of the createFlag
-** parameter to help it determined what action to take:
-**
-**
-**
createFlag
Behavior when page is not already in cache
-**
0
Do not allocate a new page. Return NULL.
-**
1
Allocate a new page if it easy and convenient to do so.
-** Otherwise return NULL.
-**
2
Make every effort to allocate a new page. Only return
-** NULL if allocating a new page is effectively impossible.
-**
-**
-** ^(SQLite will normally invoke xFetch() with a createFlag of 0 or 1. SQLite
-** will only use a createFlag of 2 after a prior call with a createFlag of 1
-** failed.)^ In between the to xFetch() calls, SQLite may
-** attempt to unpin one or more cache pages by spilling the content of
-** pinned pages to disk and synching the operating system disk cache.
-**
-** [[the xUnpin() page cache method]]
-** ^xUnpin() is called by SQLite with a pointer to a currently pinned page
-** as its second argument. If the third parameter, discard, is non-zero,
-** then the page must be evicted from the cache.
-** ^If the discard parameter is
-** zero, then the page may be discarded or retained at the discretion of
-** page cache implementation. ^The page cache implementation
-** may choose to evict unpinned pages at any time.
-**
-** The cache must not perform any reference counting. A single
-** call to xUnpin() unpins the page regardless of the number of prior calls
-** to xFetch().
-**
-** [[the xRekey() page cache methods]]
-** The xRekey() method is used to change the key value associated with the
-** page passed as the second argument. If the cache
-** previously contains an entry associated with newKey, it must be
-** discarded. ^Any prior cache entry associated with newKey is guaranteed not
-** to be pinned.
-**
-** When SQLite calls the xTruncate() method, the cache must discard all
-** existing cache entries with page numbers (keys) greater than or equal
-** to the value of the iLimit parameter passed to xTruncate(). If any
-** of these pages are pinned, they are implicitly unpinned, meaning that
-** they can be safely discarded.
-**
-** [[the xDestroy() page cache method]]
-** ^The xDestroy() method is used to delete a cache allocated by xCreate().
-** All resources associated with the specified cache should be freed. ^After
-** calling the xDestroy() method, SQLite considers the [sqlite3_pcache*]
-** handle invalid, and will not use it with any other sqlite3_pcache_methods2
-** functions.
-**
-** [[the xShrink() page cache method]]
-** ^SQLite invokes the xShrink() method when it wants the page cache to
-** free up as much of heap memory as possible. The page cache implementation
-** is not obligated to free any memory, but well-behaved implementations should
-** do their best.
-*/
-typedef struct sqlite3_pcache_methods2 sqlite3_pcache_methods2;
-struct sqlite3_pcache_methods2 {
- int iVersion;
- void *pArg;
- int (*xInit)(void*);
- void (*xShutdown)(void*);
- sqlite3_pcache *(*xCreate)(int szPage, int szExtra, int bPurgeable);
- void (*xCachesize)(sqlite3_pcache*, int nCachesize);
- int (*xPagecount)(sqlite3_pcache*);
- sqlite3_pcache_page *(*xFetch)(sqlite3_pcache*, unsigned key, int createFlag);
- void (*xUnpin)(sqlite3_pcache*, sqlite3_pcache_page*, int discard);
- void (*xRekey)(sqlite3_pcache*, sqlite3_pcache_page*,
- unsigned oldKey, unsigned newKey);
- void (*xTruncate)(sqlite3_pcache*, unsigned iLimit);
- void (*xDestroy)(sqlite3_pcache*);
- void (*xShrink)(sqlite3_pcache*);
-};
-
-/*
-** This is the obsolete pcache_methods object that has now been replaced
-** by sqlite3_pcache_methods2. This object is not used by SQLite. It is
-** retained in the header file for backwards compatibility only.
-*/
-typedef struct sqlite3_pcache_methods sqlite3_pcache_methods;
-struct sqlite3_pcache_methods {
- void *pArg;
- int (*xInit)(void*);
- void (*xShutdown)(void*);
- sqlite3_pcache *(*xCreate)(int szPage, int bPurgeable);
- void (*xCachesize)(sqlite3_pcache*, int nCachesize);
- int (*xPagecount)(sqlite3_pcache*);
- void *(*xFetch)(sqlite3_pcache*, unsigned key, int createFlag);
- void (*xUnpin)(sqlite3_pcache*, void*, int discard);
- void (*xRekey)(sqlite3_pcache*, void*, unsigned oldKey, unsigned newKey);
- void (*xTruncate)(sqlite3_pcache*, unsigned iLimit);
- void (*xDestroy)(sqlite3_pcache*);
-};
-
-
-/*
-** CAPI3REF: Online Backup Object
-**
-** The sqlite3_backup object records state information about an ongoing
-** online backup operation. ^The sqlite3_backup object is created by
-** a call to [sqlite3_backup_init()] and is destroyed by a call to
-** [sqlite3_backup_finish()].
-**
-** See Also: [Using the SQLite Online Backup API]
-*/
-typedef struct sqlite3_backup sqlite3_backup;
-
-/*
-** CAPI3REF: Online Backup API.
-**
-** The backup API copies the content of one database into another.
-** It is useful either for creating backups of databases or
-** for copying in-memory databases to or from persistent files.
-**
-** See Also: [Using the SQLite Online Backup API]
-**
-** ^SQLite holds a write transaction open on the destination database file
-** for the duration of the backup operation.
-** ^The source database is read-locked only while it is being read;
-** it is not locked continuously for the entire backup operation.
-** ^Thus, the backup may be performed on a live source database without
-** preventing other database connections from
-** reading or writing to the source database while the backup is underway.
-**
-** ^(To perform a backup operation:
-**
-**
sqlite3_backup_init() is called once to initialize the
-** backup,
-**
sqlite3_backup_step() is called one or more times to transfer
-** the data between the two databases, and finally
-**
sqlite3_backup_finish() is called to release all resources
-** associated with the backup operation.
-**
)^
-** There should be exactly one call to sqlite3_backup_finish() for each
-** successful call to sqlite3_backup_init().
-**
-** [[sqlite3_backup_init()]] sqlite3_backup_init()
-**
-** ^The D and N arguments to sqlite3_backup_init(D,N,S,M) are the
-** [database connection] associated with the destination database
-** and the database name, respectively.
-** ^The database name is "main" for the main database, "temp" for the
-** temporary database, or the name specified after the AS keyword in
-** an [ATTACH] statement for an attached database.
-** ^The S and M arguments passed to
-** sqlite3_backup_init(D,N,S,M) identify the [database connection]
-** and database name of the source database, respectively.
-** ^The source and destination [database connections] (parameters S and D)
-** must be different or else sqlite3_backup_init(D,N,S,M) will fail with
-** an error.
-**
-** ^A call to sqlite3_backup_init() will fail, returning NULL, if
-** there is already a read or read-write transaction open on the
-** destination database.
-**
-** ^If an error occurs within sqlite3_backup_init(D,N,S,M), then NULL is
-** returned and an error code and error message are stored in the
-** destination [database connection] D.
-** ^The error code and message for the failed call to sqlite3_backup_init()
-** can be retrieved using the [sqlite3_errcode()], [sqlite3_errmsg()], and/or
-** [sqlite3_errmsg16()] functions.
-** ^A successful call to sqlite3_backup_init() returns a pointer to an
-** [sqlite3_backup] object.
-** ^The [sqlite3_backup] object may be used with the sqlite3_backup_step() and
-** sqlite3_backup_finish() functions to perform the specified backup
-** operation.
-**
-** [[sqlite3_backup_step()]] sqlite3_backup_step()
-**
-** ^Function sqlite3_backup_step(B,N) will copy up to N pages between
-** the source and destination databases specified by [sqlite3_backup] object B.
-** ^If N is negative, all remaining source pages are copied.
-** ^If sqlite3_backup_step(B,N) successfully copies N pages and there
-** are still more pages to be copied, then the function returns [SQLITE_OK].
-** ^If sqlite3_backup_step(B,N) successfully finishes copying all pages
-** from source to destination, then it returns [SQLITE_DONE].
-** ^If an error occurs while running sqlite3_backup_step(B,N),
-** then an [error code] is returned. ^As well as [SQLITE_OK] and
-** [SQLITE_DONE], a call to sqlite3_backup_step() may return [SQLITE_READONLY],
-** [SQLITE_NOMEM], [SQLITE_BUSY], [SQLITE_LOCKED], or an
-** [SQLITE_IOERR_ACCESS | SQLITE_IOERR_XXX] extended error code.
-**
-** ^(The sqlite3_backup_step() might return [SQLITE_READONLY] if
-**
-**
the destination database was opened read-only, or
-**
the destination database is using write-ahead-log journaling
-** and the destination and source page sizes differ, or
-**
the destination database is an in-memory database and the
-** destination and source page sizes differ.
-**
)^
-**
-** ^If sqlite3_backup_step() cannot obtain a required file-system lock, then
-** the [sqlite3_busy_handler | busy-handler function]
-** is invoked (if one is specified). ^If the
-** busy-handler returns non-zero before the lock is available, then
-** [SQLITE_BUSY] is returned to the caller. ^In this case the call to
-** sqlite3_backup_step() can be retried later. ^If the source
-** [database connection]
-** is being used to write to the source database when sqlite3_backup_step()
-** is called, then [SQLITE_LOCKED] is returned immediately. ^Again, in this
-** case the call to sqlite3_backup_step() can be retried later on. ^(If
-** [SQLITE_IOERR_ACCESS | SQLITE_IOERR_XXX], [SQLITE_NOMEM], or
-** [SQLITE_READONLY] is returned, then
-** there is no point in retrying the call to sqlite3_backup_step(). These
-** errors are considered fatal.)^ The application must accept
-** that the backup operation has failed and pass the backup operation handle
-** to the sqlite3_backup_finish() to release associated resources.
-**
-** ^The first call to sqlite3_backup_step() obtains an exclusive lock
-** on the destination file. ^The exclusive lock is not released until either
-** sqlite3_backup_finish() is called or the backup operation is complete
-** and sqlite3_backup_step() returns [SQLITE_DONE]. ^Every call to
-** sqlite3_backup_step() obtains a [shared lock] on the source database that
-** lasts for the duration of the sqlite3_backup_step() call.
-** ^Because the source database is not locked between calls to
-** sqlite3_backup_step(), the source database may be modified mid-way
-** through the backup process. ^If the source database is modified by an
-** external process or via a database connection other than the one being
-** used by the backup operation, then the backup will be automatically
-** restarted by the next call to sqlite3_backup_step(). ^If the source
-** database is modified by the using the same database connection as is used
-** by the backup operation, then the backup database is automatically
-** updated at the same time.
-**
-** [[sqlite3_backup_finish()]] sqlite3_backup_finish()
-**
-** When sqlite3_backup_step() has returned [SQLITE_DONE], or when the
-** application wishes to abandon the backup operation, the application
-** should destroy the [sqlite3_backup] by passing it to sqlite3_backup_finish().
-** ^The sqlite3_backup_finish() interfaces releases all
-** resources associated with the [sqlite3_backup] object.
-** ^If sqlite3_backup_step() has not yet returned [SQLITE_DONE], then any
-** active write-transaction on the destination database is rolled back.
-** The [sqlite3_backup] object is invalid
-** and may not be used following a call to sqlite3_backup_finish().
-**
-** ^The value returned by sqlite3_backup_finish is [SQLITE_OK] if no
-** sqlite3_backup_step() errors occurred, regardless or whether or not
-** sqlite3_backup_step() completed.
-** ^If an out-of-memory condition or IO error occurred during any prior
-** sqlite3_backup_step() call on the same [sqlite3_backup] object, then
-** sqlite3_backup_finish() returns the corresponding [error code].
-**
-** ^A return of [SQLITE_BUSY] or [SQLITE_LOCKED] from sqlite3_backup_step()
-** is not a permanent error and does not affect the return value of
-** sqlite3_backup_finish().
-**
-** [[sqlite3_backup_remaining()]] [[sqlite3_backup_pagecount()]]
-** sqlite3_backup_remaining() and sqlite3_backup_pagecount()
-**
-** ^The sqlite3_backup_remaining() routine returns the number of pages still
-** to be backed up at the conclusion of the most recent sqlite3_backup_step().
-** ^The sqlite3_backup_pagecount() routine returns the total number of pages
-** in the source database at the conclusion of the most recent
-** sqlite3_backup_step().
-** ^(The values returned by these functions are only updated by
-** sqlite3_backup_step(). If the source database is modified in a way that
-** changes the size of the source database or the number of pages remaining,
-** those changes are not reflected in the output of sqlite3_backup_pagecount()
-** and sqlite3_backup_remaining() until after the next
-** sqlite3_backup_step().)^
-**
-** Concurrent Usage of Database Handles
-**
-** ^The source [database connection] may be used by the application for other
-** purposes while a backup operation is underway or being initialized.
-** ^If SQLite is compiled and configured to support threadsafe database
-** connections, then the source database connection may be used concurrently
-** from within other threads.
-**
-** However, the application must guarantee that the destination
-** [database connection] is not passed to any other API (by any thread) after
-** sqlite3_backup_init() is called and before the corresponding call to
-** sqlite3_backup_finish(). SQLite does not currently check to see
-** if the application incorrectly accesses the destination [database connection]
-** and so no error code is reported, but the operations may malfunction
-** nevertheless. Use of the destination database connection while a
-** backup is in progress might also also cause a mutex deadlock.
-**
-** If running in [shared cache mode], the application must
-** guarantee that the shared cache used by the destination database
-** is not accessed while the backup is running. In practice this means
-** that the application must guarantee that the disk file being
-** backed up to is not accessed by any connection within the process,
-** not just the specific connection that was passed to sqlite3_backup_init().
-**
-** The [sqlite3_backup] object itself is partially threadsafe. Multiple
-** threads may safely make multiple concurrent calls to sqlite3_backup_step().
-** However, the sqlite3_backup_remaining() and sqlite3_backup_pagecount()
-** APIs are not strictly speaking threadsafe. If they are invoked at the
-** same time as another thread is invoking sqlite3_backup_step() it is
-** possible that they return invalid values.
-*/
-SQLITE_API sqlite3_backup *sqlite3_backup_init(
- sqlite3 *pDest, /* Destination database handle */
- const char *zDestName, /* Destination database name */
- sqlite3 *pSource, /* Source database handle */
- const char *zSourceName /* Source database name */
-);
-SQLITE_API int sqlite3_backup_step(sqlite3_backup *p, int nPage);
-SQLITE_API int sqlite3_backup_finish(sqlite3_backup *p);
-SQLITE_API int sqlite3_backup_remaining(sqlite3_backup *p);
-SQLITE_API int sqlite3_backup_pagecount(sqlite3_backup *p);
-
-/*
-** CAPI3REF: Unlock Notification
-** METHOD: sqlite3
-**
-** ^When running in shared-cache mode, a database operation may fail with
-** an [SQLITE_LOCKED] error if the required locks on the shared-cache or
-** individual tables within the shared-cache cannot be obtained. See
-** [SQLite Shared-Cache Mode] for a description of shared-cache locking.
-** ^This API may be used to register a callback that SQLite will invoke
-** when the connection currently holding the required lock relinquishes it.
-** ^This API is only available if the library was compiled with the
-** [SQLITE_ENABLE_UNLOCK_NOTIFY] C-preprocessor symbol defined.
-**
-** See Also: [Using the SQLite Unlock Notification Feature].
-**
-** ^Shared-cache locks are released when a database connection concludes
-** its current transaction, either by committing it or rolling it back.
-**
-** ^When a connection (known as the blocked connection) fails to obtain a
-** shared-cache lock and SQLITE_LOCKED is returned to the caller, the
-** identity of the database connection (the blocking connection) that
-** has locked the required resource is stored internally. ^After an
-** application receives an SQLITE_LOCKED error, it may call the
-** sqlite3_unlock_notify() method with the blocked connection handle as
-** the first argument to register for a callback that will be invoked
-** when the blocking connections current transaction is concluded. ^The
-** callback is invoked from within the [sqlite3_step] or [sqlite3_close]
-** call that concludes the blocking connections transaction.
-**
-** ^(If sqlite3_unlock_notify() is called in a multi-threaded application,
-** there is a chance that the blocking connection will have already
-** concluded its transaction by the time sqlite3_unlock_notify() is invoked.
-** If this happens, then the specified callback is invoked immediately,
-** from within the call to sqlite3_unlock_notify().)^
-**
-** ^If the blocked connection is attempting to obtain a write-lock on a
-** shared-cache table, and more than one other connection currently holds
-** a read-lock on the same table, then SQLite arbitrarily selects one of
-** the other connections to use as the blocking connection.
-**
-** ^(There may be at most one unlock-notify callback registered by a
-** blocked connection. If sqlite3_unlock_notify() is called when the
-** blocked connection already has a registered unlock-notify callback,
-** then the new callback replaces the old.)^ ^If sqlite3_unlock_notify() is
-** called with a NULL pointer as its second argument, then any existing
-** unlock-notify callback is canceled. ^The blocked connections
-** unlock-notify callback may also be canceled by closing the blocked
-** connection using [sqlite3_close()].
-**
-** The unlock-notify callback is not reentrant. If an application invokes
-** any sqlite3_xxx API functions from within an unlock-notify callback, a
-** crash or deadlock may be the result.
-**
-** ^Unless deadlock is detected (see below), sqlite3_unlock_notify() always
-** returns SQLITE_OK.
-**
-** Callback Invocation Details
-**
-** When an unlock-notify callback is registered, the application provides a
-** single void* pointer that is passed to the callback when it is invoked.
-** However, the signature of the callback function allows SQLite to pass
-** it an array of void* context pointers. The first argument passed to
-** an unlock-notify callback is a pointer to an array of void* pointers,
-** and the second is the number of entries in the array.
-**
-** When a blocking connections transaction is concluded, there may be
-** more than one blocked connection that has registered for an unlock-notify
-** callback. ^If two or more such blocked connections have specified the
-** same callback function, then instead of invoking the callback function
-** multiple times, it is invoked once with the set of void* context pointers
-** specified by the blocked connections bundled together into an array.
-** This gives the application an opportunity to prioritize any actions
-** related to the set of unblocked database connections.
-**
-** Deadlock Detection
-**
-** Assuming that after registering for an unlock-notify callback a
-** database waits for the callback to be issued before taking any further
-** action (a reasonable assumption), then using this API may cause the
-** application to deadlock. For example, if connection X is waiting for
-** connection Y's transaction to be concluded, and similarly connection
-** Y is waiting on connection X's transaction, then neither connection
-** will proceed and the system may remain deadlocked indefinitely.
-**
-** To avoid this scenario, the sqlite3_unlock_notify() performs deadlock
-** detection. ^If a given call to sqlite3_unlock_notify() would put the
-** system in a deadlocked state, then SQLITE_LOCKED is returned and no
-** unlock-notify callback is registered. The system is said to be in
-** a deadlocked state if connection A has registered for an unlock-notify
-** callback on the conclusion of connection B's transaction, and connection
-** B has itself registered for an unlock-notify callback when connection
-** A's transaction is concluded. ^Indirect deadlock is also detected, so
-** the system is also considered to be deadlocked if connection B has
-** registered for an unlock-notify callback on the conclusion of connection
-** C's transaction, where connection C is waiting on connection A. ^Any
-** number of levels of indirection are allowed.
-**
-** The "DROP TABLE" Exception
-**
-** When a call to [sqlite3_step()] returns SQLITE_LOCKED, it is almost
-** always appropriate to call sqlite3_unlock_notify(). There is however,
-** one exception. When executing a "DROP TABLE" or "DROP INDEX" statement,
-** SQLite checks if there are any currently executing SELECT statements
-** that belong to the same connection. If there are, SQLITE_LOCKED is
-** returned. In this case there is no "blocking connection", so invoking
-** sqlite3_unlock_notify() results in the unlock-notify callback being
-** invoked immediately. If the application then re-attempts the "DROP TABLE"
-** or "DROP INDEX" query, an infinite loop might be the result.
-**
-** One way around this problem is to check the extended error code returned
-** by an sqlite3_step() call. ^(If there is a blocking connection, then the
-** extended error code is set to SQLITE_LOCKED_SHAREDCACHE. Otherwise, in
-** the special "DROP TABLE/INDEX" case, the extended error code is just
-** SQLITE_LOCKED.)^
-*/
-SQLITE_API int sqlite3_unlock_notify(
- sqlite3 *pBlocked, /* Waiting connection */
- void (*xNotify)(void **apArg, int nArg), /* Callback function to invoke */
- void *pNotifyArg /* Argument to pass to xNotify */
-);
-
-
-/*
-** CAPI3REF: String Comparison
-**
-** ^The [sqlite3_stricmp()] and [sqlite3_strnicmp()] APIs allow applications
-** and extensions to compare the contents of two buffers containing UTF-8
-** strings in a case-independent fashion, using the same definition of "case
-** independence" that SQLite uses internally when comparing identifiers.
-*/
-SQLITE_API int sqlite3_stricmp(const char *, const char *);
-SQLITE_API int sqlite3_strnicmp(const char *, const char *, int);
-
-/*
-** CAPI3REF: String Globbing
-*
-** ^The [sqlite3_strglob(P,X)] interface returns zero if and only if
-** string X matches the [GLOB] pattern P.
-** ^The definition of [GLOB] pattern matching used in
-** [sqlite3_strglob(P,X)] is the same as for the "X GLOB P" operator in the
-** SQL dialect understood by SQLite. ^The [sqlite3_strglob(P,X)] function
-** is case sensitive.
-**
-** Note that this routine returns zero on a match and non-zero if the strings
-** do not match, the same as [sqlite3_stricmp()] and [sqlite3_strnicmp()].
-**
-** See also: [sqlite3_strlike()].
-*/
-SQLITE_API int sqlite3_strglob(const char *zGlob, const char *zStr);
-
-/*
-** CAPI3REF: String LIKE Matching
-*
-** ^The [sqlite3_strlike(P,X,E)] interface returns zero if and only if
-** string X matches the [LIKE] pattern P with escape character E.
-** ^The definition of [LIKE] pattern matching used in
-** [sqlite3_strlike(P,X,E)] is the same as for the "X LIKE P ESCAPE E"
-** operator in the SQL dialect understood by SQLite. ^For "X LIKE P" without
-** the ESCAPE clause, set the E parameter of [sqlite3_strlike(P,X,E)] to 0.
-** ^As with the LIKE operator, the [sqlite3_strlike(P,X,E)] function is case
-** insensitive - equivalent upper and lower case ASCII characters match
-** one another.
-**
-** ^The [sqlite3_strlike(P,X,E)] function matches Unicode characters, though
-** only ASCII characters are case folded.
-**
-** Note that this routine returns zero on a match and non-zero if the strings
-** do not match, the same as [sqlite3_stricmp()] and [sqlite3_strnicmp()].
-**
-** See also: [sqlite3_strglob()].
-*/
-SQLITE_API int sqlite3_strlike(const char *zGlob, const char *zStr, unsigned int cEsc);
-
-/*
-** CAPI3REF: Error Logging Interface
-**
-** ^The [sqlite3_log()] interface writes a message into the [error log]
-** established by the [SQLITE_CONFIG_LOG] option to [sqlite3_config()].
-** ^If logging is enabled, the zFormat string and subsequent arguments are
-** used with [sqlite3_snprintf()] to generate the final output string.
-**
-** The sqlite3_log() interface is intended for use by extensions such as
-** virtual tables, collating functions, and SQL functions. While there is
-** nothing to prevent an application from calling sqlite3_log(), doing so
-** is considered bad form.
-**
-** The zFormat string must not be NULL.
-**
-** To avoid deadlocks and other threading problems, the sqlite3_log() routine
-** will not use dynamically allocated memory. The log message is stored in
-** a fixed-length buffer on the stack. If the log message is longer than
-** a few hundred characters, it will be truncated to the length of the
-** buffer.
-*/
-SQLITE_API void sqlite3_log(int iErrCode, const char *zFormat, ...);
-
-/*
-** CAPI3REF: Write-Ahead Log Commit Hook
-** METHOD: sqlite3
-**
-** ^The [sqlite3_wal_hook()] function is used to register a callback that
-** is invoked each time data is committed to a database in wal mode.
-**
-** ^(The callback is invoked by SQLite after the commit has taken place and
-** the associated write-lock on the database released)^, so the implementation
-** may read, write or [checkpoint] the database as required.
-**
-** ^The first parameter passed to the callback function when it is invoked
-** is a copy of the third parameter passed to sqlite3_wal_hook() when
-** registering the callback. ^The second is a copy of the database handle.
-** ^The third parameter is the name of the database that was written to -
-** either "main" or the name of an [ATTACH]-ed database. ^The fourth parameter
-** is the number of pages currently in the write-ahead log file,
-** including those that were just committed.
-**
-** The callback function should normally return [SQLITE_OK]. ^If an error
-** code is returned, that error will propagate back up through the
-** SQLite code base to cause the statement that provoked the callback
-** to report an error, though the commit will have still occurred. If the
-** callback returns [SQLITE_ROW] or [SQLITE_DONE], or if it returns a value
-** that does not correspond to any valid SQLite error code, the results
-** are undefined.
-**
-** A single database handle may have at most a single write-ahead log callback
-** registered at one time. ^Calling [sqlite3_wal_hook()] replaces any
-** previously registered write-ahead log callback. ^Note that the
-** [sqlite3_wal_autocheckpoint()] interface and the
-** [wal_autocheckpoint pragma] both invoke [sqlite3_wal_hook()] and will
-** overwrite any prior [sqlite3_wal_hook()] settings.
-*/
-SQLITE_API void *sqlite3_wal_hook(
- sqlite3*,
- int(*)(void *,sqlite3*,const char*,int),
- void*
-);
-
-/*
-** CAPI3REF: Configure an auto-checkpoint
-** METHOD: sqlite3
-**
-** ^The [sqlite3_wal_autocheckpoint(D,N)] is a wrapper around
-** [sqlite3_wal_hook()] that causes any database on [database connection] D
-** to automatically [checkpoint]
-** after committing a transaction if there are N or
-** more frames in the [write-ahead log] file. ^Passing zero or
-** a negative value as the nFrame parameter disables automatic
-** checkpoints entirely.
-**
-** ^The callback registered by this function replaces any existing callback
-** registered using [sqlite3_wal_hook()]. ^Likewise, registering a callback
-** using [sqlite3_wal_hook()] disables the automatic checkpoint mechanism
-** configured by this function.
-**
-** ^The [wal_autocheckpoint pragma] can be used to invoke this interface
-** from SQL.
-**
-** ^Checkpoints initiated by this mechanism are
-** [sqlite3_wal_checkpoint_v2|PASSIVE].
-**
-** ^Every new [database connection] defaults to having the auto-checkpoint
-** enabled with a threshold of 1000 or [SQLITE_DEFAULT_WAL_AUTOCHECKPOINT]
-** pages. The use of this interface
-** is only necessary if the default setting is found to be suboptimal
-** for a particular application.
-*/
-SQLITE_API int sqlite3_wal_autocheckpoint(sqlite3 *db, int N);
-
-/*
-** CAPI3REF: Checkpoint a database
-** METHOD: sqlite3
-**
-** ^(The sqlite3_wal_checkpoint(D,X) is equivalent to
-** [sqlite3_wal_checkpoint_v2](D,X,[SQLITE_CHECKPOINT_PASSIVE],0,0).)^
-**
-** In brief, sqlite3_wal_checkpoint(D,X) causes the content in the
-** [write-ahead log] for database X on [database connection] D to be
-** transferred into the database file and for the write-ahead log to
-** be reset. See the [checkpointing] documentation for addition
-** information.
-**
-** This interface used to be the only way to cause a checkpoint to
-** occur. But then the newer and more powerful [sqlite3_wal_checkpoint_v2()]
-** interface was added. This interface is retained for backwards
-** compatibility and as a convenience for applications that need to manually
-** start a callback but which do not need the full power (and corresponding
-** complication) of [sqlite3_wal_checkpoint_v2()].
-*/
-SQLITE_API int sqlite3_wal_checkpoint(sqlite3 *db, const char *zDb);
-
-/*
-** CAPI3REF: Checkpoint a database
-** METHOD: sqlite3
-**
-** ^(The sqlite3_wal_checkpoint_v2(D,X,M,L,C) interface runs a checkpoint
-** operation on database X of [database connection] D in mode M. Status
-** information is written back into integers pointed to by L and C.)^
-** ^(The M parameter must be a valid [checkpoint mode]:)^
-**
-**
-**
SQLITE_CHECKPOINT_PASSIVE
-** ^Checkpoint as many frames as possible without waiting for any database
-** readers or writers to finish, then sync the database file if all frames
-** in the log were checkpointed. ^The [busy-handler callback]
-** is never invoked in the SQLITE_CHECKPOINT_PASSIVE mode.
-** ^On the other hand, passive mode might leave the checkpoint unfinished
-** if there are concurrent readers or writers.
-**
-**
SQLITE_CHECKPOINT_FULL
-** ^This mode blocks (it invokes the
-** [sqlite3_busy_handler|busy-handler callback]) until there is no
-** database writer and all readers are reading from the most recent database
-** snapshot. ^It then checkpoints all frames in the log file and syncs the
-** database file. ^This mode blocks new database writers while it is pending,
-** but new database readers are allowed to continue unimpeded.
-**
-**
SQLITE_CHECKPOINT_RESTART
-** ^This mode works the same way as SQLITE_CHECKPOINT_FULL with the addition
-** that after checkpointing the log file it blocks (calls the
-** [busy-handler callback])
-** until all readers are reading from the database file only. ^This ensures
-** that the next writer will restart the log file from the beginning.
-** ^Like SQLITE_CHECKPOINT_FULL, this mode blocks new
-** database writer attempts while it is pending, but does not impede readers.
-**
-**
SQLITE_CHECKPOINT_TRUNCATE
-** ^This mode works the same way as SQLITE_CHECKPOINT_RESTART with the
-** addition that it also truncates the log file to zero bytes just prior
-** to a successful return.
-**
-**
-** ^If pnLog is not NULL, then *pnLog is set to the total number of frames in
-** the log file or to -1 if the checkpoint could not run because
-** of an error or because the database is not in [WAL mode]. ^If pnCkpt is not
-** NULL,then *pnCkpt is set to the total number of checkpointed frames in the
-** log file (including any that were already checkpointed before the function
-** was called) or to -1 if the checkpoint could not run due to an error or
-** because the database is not in WAL mode. ^Note that upon successful
-** completion of an SQLITE_CHECKPOINT_TRUNCATE, the log file will have been
-** truncated to zero bytes and so both *pnLog and *pnCkpt will be set to zero.
-**
-** ^All calls obtain an exclusive "checkpoint" lock on the database file. ^If
-** any other process is running a checkpoint operation at the same time, the
-** lock cannot be obtained and SQLITE_BUSY is returned. ^Even if there is a
-** busy-handler configured, it will not be invoked in this case.
-**
-** ^The SQLITE_CHECKPOINT_FULL, RESTART and TRUNCATE modes also obtain the
-** exclusive "writer" lock on the database file. ^If the writer lock cannot be
-** obtained immediately, and a busy-handler is configured, it is invoked and
-** the writer lock retried until either the busy-handler returns 0 or the lock
-** is successfully obtained. ^The busy-handler is also invoked while waiting for
-** database readers as described above. ^If the busy-handler returns 0 before
-** the writer lock is obtained or while waiting for database readers, the
-** checkpoint operation proceeds from that point in the same way as
-** SQLITE_CHECKPOINT_PASSIVE - checkpointing as many frames as possible
-** without blocking any further. ^SQLITE_BUSY is returned in this case.
-**
-** ^If parameter zDb is NULL or points to a zero length string, then the
-** specified operation is attempted on all WAL databases [attached] to
-** [database connection] db. In this case the
-** values written to output parameters *pnLog and *pnCkpt are undefined. ^If
-** an SQLITE_BUSY error is encountered when processing one or more of the
-** attached WAL databases, the operation is still attempted on any remaining
-** attached databases and SQLITE_BUSY is returned at the end. ^If any other
-** error occurs while processing an attached database, processing is abandoned
-** and the error code is returned to the caller immediately. ^If no error
-** (SQLITE_BUSY or otherwise) is encountered while processing the attached
-** databases, SQLITE_OK is returned.
-**
-** ^If database zDb is the name of an attached database that is not in WAL
-** mode, SQLITE_OK is returned and both *pnLog and *pnCkpt set to -1. ^If
-** zDb is not NULL (or a zero length string) and is not the name of any
-** attached database, SQLITE_ERROR is returned to the caller.
-**
-** ^Unless it returns SQLITE_MISUSE,
-** the sqlite3_wal_checkpoint_v2() interface
-** sets the error information that is queried by
-** [sqlite3_errcode()] and [sqlite3_errmsg()].
-**
-** ^The [PRAGMA wal_checkpoint] command can be used to invoke this interface
-** from SQL.
-*/
-SQLITE_API int sqlite3_wal_checkpoint_v2(
- sqlite3 *db, /* Database handle */
- const char *zDb, /* Name of attached database (or NULL) */
- int eMode, /* SQLITE_CHECKPOINT_* value */
- int *pnLog, /* OUT: Size of WAL log in frames */
- int *pnCkpt /* OUT: Total number of frames checkpointed */
-);
-
-/*
-** CAPI3REF: Checkpoint Mode Values
-** KEYWORDS: {checkpoint mode}
-**
-** These constants define all valid values for the "checkpoint mode" passed
-** as the third parameter to the [sqlite3_wal_checkpoint_v2()] interface.
-** See the [sqlite3_wal_checkpoint_v2()] documentation for details on the
-** meaning of each of these checkpoint modes.
-*/
-#define SQLITE_CHECKPOINT_PASSIVE 0 /* Do as much as possible w/o blocking */
-#define SQLITE_CHECKPOINT_FULL 1 /* Wait for writers, then checkpoint */
-#define SQLITE_CHECKPOINT_RESTART 2 /* Like FULL but wait for for readers */
-#define SQLITE_CHECKPOINT_TRUNCATE 3 /* Like RESTART but also truncate WAL */
-
-/*
-** CAPI3REF: Virtual Table Interface Configuration
-**
-** This function may be called by either the [xConnect] or [xCreate] method
-** of a [virtual table] implementation to configure
-** various facets of the virtual table interface.
-**
-** If this interface is invoked outside the context of an xConnect or
-** xCreate virtual table method then the behavior is undefined.
-**
-** At present, there is only one option that may be configured using
-** this function. (See [SQLITE_VTAB_CONSTRAINT_SUPPORT].) Further options
-** may be added in the future.
-*/
-SQLITE_API int sqlite3_vtab_config(sqlite3*, int op, ...);
-
-/*
-** CAPI3REF: Virtual Table Configuration Options
-**
-** These macros define the various options to the
-** [sqlite3_vtab_config()] interface that [virtual table] implementations
-** can use to customize and optimize their behavior.
-**
-**
-**
SQLITE_VTAB_CONSTRAINT_SUPPORT
-**
Calls of the form
-** [sqlite3_vtab_config](db,SQLITE_VTAB_CONSTRAINT_SUPPORT,X) are supported,
-** where X is an integer. If X is zero, then the [virtual table] whose
-** [xCreate] or [xConnect] method invoked [sqlite3_vtab_config()] does not
-** support constraints. In this configuration (which is the default) if
-** a call to the [xUpdate] method returns [SQLITE_CONSTRAINT], then the entire
-** statement is rolled back as if [ON CONFLICT | OR ABORT] had been
-** specified as part of the users SQL statement, regardless of the actual
-** ON CONFLICT mode specified.
-**
-** If X is non-zero, then the virtual table implementation guarantees
-** that if [xUpdate] returns [SQLITE_CONSTRAINT], it will do so before
-** any modifications to internal or persistent data structures have been made.
-** If the [ON CONFLICT] mode is ABORT, FAIL, IGNORE or ROLLBACK, SQLite
-** is able to roll back a statement or database transaction, and abandon
-** or continue processing the current SQL statement as appropriate.
-** If the ON CONFLICT mode is REPLACE and the [xUpdate] method returns
-** [SQLITE_CONSTRAINT], SQLite handles this as if the ON CONFLICT mode
-** had been ABORT.
-**
-** Virtual table implementations that are required to handle OR REPLACE
-** must do so within the [xUpdate] method. If a call to the
-** [sqlite3_vtab_on_conflict()] function indicates that the current ON
-** CONFLICT policy is REPLACE, the virtual table implementation should
-** silently replace the appropriate rows within the xUpdate callback and
-** return SQLITE_OK. Or, if this is not possible, it may return
-** SQLITE_CONSTRAINT, in which case SQLite falls back to OR ABORT
-** constraint handling.
-**
-*/
-#define SQLITE_VTAB_CONSTRAINT_SUPPORT 1
-
-/*
-** CAPI3REF: Determine The Virtual Table Conflict Policy
-**
-** This function may only be called from within a call to the [xUpdate] method
-** of a [virtual table] implementation for an INSERT or UPDATE operation. ^The
-** value returned is one of [SQLITE_ROLLBACK], [SQLITE_IGNORE], [SQLITE_FAIL],
-** [SQLITE_ABORT], or [SQLITE_REPLACE], according to the [ON CONFLICT] mode
-** of the SQL statement that triggered the call to the [xUpdate] method of the
-** [virtual table].
-*/
-SQLITE_API int sqlite3_vtab_on_conflict(sqlite3 *);
-
-/*
-** CAPI3REF: Determine If Virtual Table Column Access Is For UPDATE
-**
-** If the sqlite3_vtab_nochange(X) routine is called within the [xColumn]
-** method of a [virtual table], then it returns true if and only if the
-** column is being fetched as part of an UPDATE operation during which the
-** column value will not change. Applications might use this to substitute
-** a return value that is less expensive to compute and that the corresponding
-** [xUpdate] method understands as a "no-change" value.
-**
-** If the [xColumn] method calls sqlite3_vtab_nochange() and finds that
-** the column is not changed by the UPDATE statement, then the xColumn
-** method can optionally return without setting a result, without calling
-** any of the [sqlite3_result_int|sqlite3_result_xxxxx() interfaces].
-** In that case, [sqlite3_value_nochange(X)] will return true for the
-** same column in the [xUpdate] method.
-*/
-SQLITE_API int sqlite3_vtab_nochange(sqlite3_context*);
-
-/*
-** CAPI3REF: Determine The Collation For a Virtual Table Constraint
-**
-** This function may only be called from within a call to the [xBestIndex]
-** method of a [virtual table].
-**
-** The first argument must be the sqlite3_index_info object that is the
-** first parameter to the xBestIndex() method. The second argument must be
-** an index into the aConstraint[] array belonging to the sqlite3_index_info
-** structure passed to xBestIndex. This function returns a pointer to a buffer
-** containing the name of the collation sequence for the corresponding
-** constraint.
-*/
-SQLITE_API SQLITE_EXPERIMENTAL const char *sqlite3_vtab_collation(sqlite3_index_info*,int);
-
-/*
-** CAPI3REF: Conflict resolution modes
-** KEYWORDS: {conflict resolution mode}
-**
-** These constants are returned by [sqlite3_vtab_on_conflict()] to
-** inform a [virtual table] implementation what the [ON CONFLICT] mode
-** is for the SQL statement being evaluated.
-**
-** Note that the [SQLITE_IGNORE] constant is also used as a potential
-** return value from the [sqlite3_set_authorizer()] callback and that
-** [SQLITE_ABORT] is also a [result code].
-*/
-#define SQLITE_ROLLBACK 1
-/* #define SQLITE_IGNORE 2 // Also used by sqlite3_authorizer() callback */
-#define SQLITE_FAIL 3
-/* #define SQLITE_ABORT 4 // Also an error code */
-#define SQLITE_REPLACE 5
-
-/*
-** CAPI3REF: Prepared Statement Scan Status Opcodes
-** KEYWORDS: {scanstatus options}
-**
-** The following constants can be used for the T parameter to the
-** [sqlite3_stmt_scanstatus(S,X,T,V)] interface. Each constant designates a
-** different metric for sqlite3_stmt_scanstatus() to return.
-**
-** When the value returned to V is a string, space to hold that string is
-** managed by the prepared statement S and will be automatically freed when
-** S is finalized.
-**
-**
-** [[SQLITE_SCANSTAT_NLOOP]]
SQLITE_SCANSTAT_NLOOP
-**
^The [sqlite3_int64] variable pointed to by the T parameter will be
-** set to the total number of times that the X-th loop has run.
-**
-** [[SQLITE_SCANSTAT_NVISIT]]
SQLITE_SCANSTAT_NVISIT
-**
^The [sqlite3_int64] variable pointed to by the T parameter will be set
-** to the total number of rows examined by all iterations of the X-th loop.
-**
-** [[SQLITE_SCANSTAT_EST]]
SQLITE_SCANSTAT_EST
-**
^The "double" variable pointed to by the T parameter will be set to the
-** query planner's estimate for the average number of rows output from each
-** iteration of the X-th loop. If the query planner's estimates was accurate,
-** then this value will approximate the quotient NVISIT/NLOOP and the
-** product of this value for all prior loops with the same SELECTID will
-** be the NLOOP value for the current loop.
-**
-** [[SQLITE_SCANSTAT_NAME]]
SQLITE_SCANSTAT_NAME
-**
^The "const char *" variable pointed to by the T parameter will be set
-** to a zero-terminated UTF-8 string containing the name of the index or table
-** used for the X-th loop.
-**
-** [[SQLITE_SCANSTAT_EXPLAIN]]
SQLITE_SCANSTAT_EXPLAIN
-**
^The "const char *" variable pointed to by the T parameter will be set
-** to a zero-terminated UTF-8 string containing the [EXPLAIN QUERY PLAN]
-** description for the X-th loop.
-**
-** [[SQLITE_SCANSTAT_SELECTID]]
SQLITE_SCANSTAT_SELECT
-**
^The "int" variable pointed to by the T parameter will be set to the
-** "select-id" for the X-th loop. The select-id identifies which query or
-** subquery the loop is part of. The main query has a select-id of zero.
-** The select-id is the same value as is output in the first column
-** of an [EXPLAIN QUERY PLAN] query.
-**
-*/
-#define SQLITE_SCANSTAT_NLOOP 0
-#define SQLITE_SCANSTAT_NVISIT 1
-#define SQLITE_SCANSTAT_EST 2
-#define SQLITE_SCANSTAT_NAME 3
-#define SQLITE_SCANSTAT_EXPLAIN 4
-#define SQLITE_SCANSTAT_SELECTID 5
-
-/*
-** CAPI3REF: Prepared Statement Scan Status
-** METHOD: sqlite3_stmt
-**
-** This interface returns information about the predicted and measured
-** performance for pStmt. Advanced applications can use this
-** interface to compare the predicted and the measured performance and
-** issue warnings and/or rerun [ANALYZE] if discrepancies are found.
-**
-** Since this interface is expected to be rarely used, it is only
-** available if SQLite is compiled using the [SQLITE_ENABLE_STMT_SCANSTATUS]
-** compile-time option.
-**
-** The "iScanStatusOp" parameter determines which status information to return.
-** The "iScanStatusOp" must be one of the [scanstatus options] or the behavior
-** of this interface is undefined.
-** ^The requested measurement is written into a variable pointed to by
-** the "pOut" parameter.
-** Parameter "idx" identifies the specific loop to retrieve statistics for.
-** Loops are numbered starting from zero. ^If idx is out of range - less than
-** zero or greater than or equal to the total number of loops used to implement
-** the statement - a non-zero value is returned and the variable that pOut
-** points to is unchanged.
-**
-** ^Statistics might not be available for all loops in all statements. ^In cases
-** where there exist loops with no available statistics, this function behaves
-** as if the loop did not exist - it returns non-zero and leave the variable
-** that pOut points to unchanged.
-**
-** See also: [sqlite3_stmt_scanstatus_reset()]
-*/
-SQLITE_API int sqlite3_stmt_scanstatus(
- sqlite3_stmt *pStmt, /* Prepared statement for which info desired */
- int idx, /* Index of loop to report on */
- int iScanStatusOp, /* Information desired. SQLITE_SCANSTAT_* */
- void *pOut /* Result written here */
-);
-
-/*
-** CAPI3REF: Zero Scan-Status Counters
-** METHOD: sqlite3_stmt
-**
-** ^Zero all [sqlite3_stmt_scanstatus()] related event counters.
-**
-** This API is only available if the library is built with pre-processor
-** symbol [SQLITE_ENABLE_STMT_SCANSTATUS] defined.
-*/
-SQLITE_API void sqlite3_stmt_scanstatus_reset(sqlite3_stmt*);
-
-/*
-** CAPI3REF: Flush caches to disk mid-transaction
-**
-** ^If a write-transaction is open on [database connection] D when the
-** [sqlite3_db_cacheflush(D)] interface invoked, any dirty
-** pages in the pager-cache that are not currently in use are written out
-** to disk. A dirty page may be in use if a database cursor created by an
-** active SQL statement is reading from it, or if it is page 1 of a database
-** file (page 1 is always "in use"). ^The [sqlite3_db_cacheflush(D)]
-** interface flushes caches for all schemas - "main", "temp", and
-** any [attached] databases.
-**
-** ^If this function needs to obtain extra database locks before dirty pages
-** can be flushed to disk, it does so. ^If those locks cannot be obtained
-** immediately and there is a busy-handler callback configured, it is invoked
-** in the usual manner. ^If the required lock still cannot be obtained, then
-** the database is skipped and an attempt made to flush any dirty pages
-** belonging to the next (if any) database. ^If any databases are skipped
-** because locks cannot be obtained, but no other error occurs, this
-** function returns SQLITE_BUSY.
-**
-** ^If any other error occurs while flushing dirty pages to disk (for
-** example an IO error or out-of-memory condition), then processing is
-** abandoned and an SQLite [error code] is returned to the caller immediately.
-**
-** ^Otherwise, if no error occurs, [sqlite3_db_cacheflush()] returns SQLITE_OK.
-**
-** ^This function does not set the database handle error code or message
-** returned by the [sqlite3_errcode()] and [sqlite3_errmsg()] functions.
-*/
-SQLITE_API int sqlite3_db_cacheflush(sqlite3*);
-
-/*
-** CAPI3REF: The pre-update hook.
-**
-** ^These interfaces are only available if SQLite is compiled using the
-** [SQLITE_ENABLE_PREUPDATE_HOOK] compile-time option.
-**
-** ^The [sqlite3_preupdate_hook()] interface registers a callback function
-** that is invoked prior to each [INSERT], [UPDATE], and [DELETE] operation
-** on a database table.
-** ^At most one preupdate hook may be registered at a time on a single
-** [database connection]; each call to [sqlite3_preupdate_hook()] overrides
-** the previous setting.
-** ^The preupdate hook is disabled by invoking [sqlite3_preupdate_hook()]
-** with a NULL pointer as the second parameter.
-** ^The third parameter to [sqlite3_preupdate_hook()] is passed through as
-** the first parameter to callbacks.
-**
-** ^The preupdate hook only fires for changes to real database tables; the
-** preupdate hook is not invoked for changes to [virtual tables] or to
-** system tables like sqlite_master or sqlite_stat1.
-**
-** ^The second parameter to the preupdate callback is a pointer to
-** the [database connection] that registered the preupdate hook.
-** ^The third parameter to the preupdate callback is one of the constants
-** [SQLITE_INSERT], [SQLITE_DELETE], or [SQLITE_UPDATE] to identify the
-** kind of update operation that is about to occur.
-** ^(The fourth parameter to the preupdate callback is the name of the
-** database within the database connection that is being modified. This
-** will be "main" for the main database or "temp" for TEMP tables or
-** the name given after the AS keyword in the [ATTACH] statement for attached
-** databases.)^
-** ^The fifth parameter to the preupdate callback is the name of the
-** table that is being modified.
-**
-** For an UPDATE or DELETE operation on a [rowid table], the sixth
-** parameter passed to the preupdate callback is the initial [rowid] of the
-** row being modified or deleted. For an INSERT operation on a rowid table,
-** or any operation on a WITHOUT ROWID table, the value of the sixth
-** parameter is undefined. For an INSERT or UPDATE on a rowid table the
-** seventh parameter is the final rowid value of the row being inserted
-** or updated. The value of the seventh parameter passed to the callback
-** function is not defined for operations on WITHOUT ROWID tables, or for
-** INSERT operations on rowid tables.
-**
-** The [sqlite3_preupdate_old()], [sqlite3_preupdate_new()],
-** [sqlite3_preupdate_count()], and [sqlite3_preupdate_depth()] interfaces
-** provide additional information about a preupdate event. These routines
-** may only be called from within a preupdate callback. Invoking any of
-** these routines from outside of a preupdate callback or with a
-** [database connection] pointer that is different from the one supplied
-** to the preupdate callback results in undefined and probably undesirable
-** behavior.
-**
-** ^The [sqlite3_preupdate_count(D)] interface returns the number of columns
-** in the row that is being inserted, updated, or deleted.
-**
-** ^The [sqlite3_preupdate_old(D,N,P)] interface writes into P a pointer to
-** a [protected sqlite3_value] that contains the value of the Nth column of
-** the table row before it is updated. The N parameter must be between 0
-** and one less than the number of columns or the behavior will be
-** undefined. This must only be used within SQLITE_UPDATE and SQLITE_DELETE
-** preupdate callbacks; if it is used by an SQLITE_INSERT callback then the
-** behavior is undefined. The [sqlite3_value] that P points to
-** will be destroyed when the preupdate callback returns.
-**
-** ^The [sqlite3_preupdate_new(D,N,P)] interface writes into P a pointer to
-** a [protected sqlite3_value] that contains the value of the Nth column of
-** the table row after it is updated. The N parameter must be between 0
-** and one less than the number of columns or the behavior will be
-** undefined. This must only be used within SQLITE_INSERT and SQLITE_UPDATE
-** preupdate callbacks; if it is used by an SQLITE_DELETE callback then the
-** behavior is undefined. The [sqlite3_value] that P points to
-** will be destroyed when the preupdate callback returns.
-**
-** ^The [sqlite3_preupdate_depth(D)] interface returns 0 if the preupdate
-** callback was invoked as a result of a direct insert, update, or delete
-** operation; or 1 for inserts, updates, or deletes invoked by top-level
-** triggers; or 2 for changes resulting from triggers called by top-level
-** triggers; and so forth.
-**
-** See also: [sqlite3_update_hook()]
-*/
-#if defined(SQLITE_ENABLE_PREUPDATE_HOOK)
-SQLITE_API void *sqlite3_preupdate_hook(
- sqlite3 *db,
- void(*xPreUpdate)(
- void *pCtx, /* Copy of third arg to preupdate_hook() */
- sqlite3 *db, /* Database handle */
- int op, /* SQLITE_UPDATE, DELETE or INSERT */
- char const *zDb, /* Database name */
- char const *zName, /* Table name */
- sqlite3_int64 iKey1, /* Rowid of row about to be deleted/updated */
- sqlite3_int64 iKey2 /* New rowid value (for a rowid UPDATE) */
- ),
- void*
-);
-SQLITE_API int sqlite3_preupdate_old(sqlite3 *, int, sqlite3_value **);
-SQLITE_API int sqlite3_preupdate_count(sqlite3 *);
-SQLITE_API int sqlite3_preupdate_depth(sqlite3 *);
-SQLITE_API int sqlite3_preupdate_new(sqlite3 *, int, sqlite3_value **);
-#endif
-
-/*
-** CAPI3REF: Low-level system error code
-**
-** ^Attempt to return the underlying operating system error code or error
-** number that caused the most recent I/O error or failure to open a file.
-** The return value is OS-dependent. For example, on unix systems, after
-** [sqlite3_open_v2()] returns [SQLITE_CANTOPEN], this interface could be
-** called to get back the underlying "errno" that caused the problem, such
-** as ENOSPC, EAUTH, EISDIR, and so forth.
-*/
-SQLITE_API int sqlite3_system_errno(sqlite3*);
-
-/*
-** CAPI3REF: Database Snapshot
-** KEYWORDS: {snapshot} {sqlite3_snapshot}
-**
-** An instance of the snapshot object records the state of a [WAL mode]
-** database for some specific point in history.
-**
-** In [WAL mode], multiple [database connections] that are open on the
-** same database file can each be reading a different historical version
-** of the database file. When a [database connection] begins a read
-** transaction, that connection sees an unchanging copy of the database
-** as it existed for the point in time when the transaction first started.
-** Subsequent changes to the database from other connections are not seen
-** by the reader until a new read transaction is started.
-**
-** The sqlite3_snapshot object records state information about an historical
-** version of the database file so that it is possible to later open a new read
-** transaction that sees that historical version of the database rather than
-** the most recent version.
-*/
-typedef struct sqlite3_snapshot {
- unsigned char hidden[48];
-} sqlite3_snapshot;
-
-/*
-** CAPI3REF: Record A Database Snapshot
-** CONSTRUCTOR: sqlite3_snapshot
-**
-** ^The [sqlite3_snapshot_get(D,S,P)] interface attempts to make a
-** new [sqlite3_snapshot] object that records the current state of
-** schema S in database connection D. ^On success, the
-** [sqlite3_snapshot_get(D,S,P)] interface writes a pointer to the newly
-** created [sqlite3_snapshot] object into *P and returns SQLITE_OK.
-** If there is not already a read-transaction open on schema S when
-** this function is called, one is opened automatically.
-**
-** The following must be true for this function to succeed. If any of
-** the following statements are false when sqlite3_snapshot_get() is
-** called, SQLITE_ERROR is returned. The final value of *P is undefined
-** in this case.
-**
-**
-**
The database handle must not be in [autocommit mode].
-**
-**
Schema S of [database connection] D must be a [WAL mode] database.
-**
-**
There must not be a write transaction open on schema S of database
-** connection D.
-**
-**
One or more transactions must have been written to the current wal
-** file since it was created on disk (by any connection). This means
-** that a snapshot cannot be taken on a wal mode database with no wal
-** file immediately after it is first opened. At least one transaction
-** must be written to it first.
-**
-**
-** This function may also return SQLITE_NOMEM. If it is called with the
-** database handle in autocommit mode but fails for some other reason,
-** whether or not a read transaction is opened on schema S is undefined.
-**
-** The [sqlite3_snapshot] object returned from a successful call to
-** [sqlite3_snapshot_get()] must be freed using [sqlite3_snapshot_free()]
-** to avoid a memory leak.
-**
-** The [sqlite3_snapshot_get()] interface is only available when the
-** [SQLITE_ENABLE_SNAPSHOT] compile-time option is used.
-*/
-SQLITE_API SQLITE_EXPERIMENTAL int sqlite3_snapshot_get(
- sqlite3 *db,
- const char *zSchema,
- sqlite3_snapshot **ppSnapshot
-);
-
-/*
-** CAPI3REF: Start a read transaction on an historical snapshot
-** METHOD: sqlite3_snapshot
-**
-** ^The [sqlite3_snapshot_open(D,S,P)] interface either starts a new read
-** transaction or upgrades an existing one for schema S of
-** [database connection] D such that the read transaction refers to
-** historical [snapshot] P, rather than the most recent change to the
-** database. ^The [sqlite3_snapshot_open()] interface returns SQLITE_OK
-** on success or an appropriate [error code] if it fails.
-**
-** ^In order to succeed, the database connection must not be in
-** [autocommit mode] when [sqlite3_snapshot_open(D,S,P)] is called. If there
-** is already a read transaction open on schema S, then the database handle
-** must have no active statements (SELECT statements that have been passed
-** to sqlite3_step() but not sqlite3_reset() or sqlite3_finalize()).
-** SQLITE_ERROR is returned if either of these conditions is violated, or
-** if schema S does not exist, or if the snapshot object is invalid.
-**
-** ^A call to sqlite3_snapshot_open() will fail to open if the specified
-** snapshot has been overwritten by a [checkpoint]. In this case
-** SQLITE_ERROR_SNAPSHOT is returned.
-**
-** If there is already a read transaction open when this function is
-** invoked, then the same read transaction remains open (on the same
-** database snapshot) if SQLITE_ERROR, SQLITE_BUSY or SQLITE_ERROR_SNAPSHOT
-** is returned. If another error code - for example SQLITE_PROTOCOL or an
-** SQLITE_IOERR error code - is returned, then the final state of the
-** read transaction is undefined. If SQLITE_OK is returned, then the
-** read transaction is now open on database snapshot P.
-**
-** ^(A call to [sqlite3_snapshot_open(D,S,P)] will fail if the
-** database connection D does not know that the database file for
-** schema S is in [WAL mode]. A database connection might not know
-** that the database file is in [WAL mode] if there has been no prior
-** I/O on that database connection, or if the database entered [WAL mode]
-** after the most recent I/O on the database connection.)^
-** (Hint: Run "[PRAGMA application_id]" against a newly opened
-** database connection in order to make it ready to use snapshots.)
-**
-** The [sqlite3_snapshot_open()] interface is only available when the
-** [SQLITE_ENABLE_SNAPSHOT] compile-time option is used.
-*/
-SQLITE_API SQLITE_EXPERIMENTAL int sqlite3_snapshot_open(
- sqlite3 *db,
- const char *zSchema,
- sqlite3_snapshot *pSnapshot
-);
-
-/*
-** CAPI3REF: Destroy a snapshot
-** DESTRUCTOR: sqlite3_snapshot
-**
-** ^The [sqlite3_snapshot_free(P)] interface destroys [sqlite3_snapshot] P.
-** The application must eventually free every [sqlite3_snapshot] object
-** using this routine to avoid a memory leak.
-**
-** The [sqlite3_snapshot_free()] interface is only available when the
-** [SQLITE_ENABLE_SNAPSHOT] compile-time option is used.
-*/
-SQLITE_API SQLITE_EXPERIMENTAL void sqlite3_snapshot_free(sqlite3_snapshot*);
-
-/*
-** CAPI3REF: Compare the ages of two snapshot handles.
-** METHOD: sqlite3_snapshot
-**
-** The sqlite3_snapshot_cmp(P1, P2) interface is used to compare the ages
-** of two valid snapshot handles.
-**
-** If the two snapshot handles are not associated with the same database
-** file, the result of the comparison is undefined.
-**
-** Additionally, the result of the comparison is only valid if both of the
-** snapshot handles were obtained by calling sqlite3_snapshot_get() since the
-** last time the wal file was deleted. The wal file is deleted when the
-** database is changed back to rollback mode or when the number of database
-** clients drops to zero. If either snapshot handle was obtained before the
-** wal file was last deleted, the value returned by this function
-** is undefined.
-**
-** Otherwise, this API returns a negative value if P1 refers to an older
-** snapshot than P2, zero if the two handles refer to the same database
-** snapshot, and a positive value if P1 is a newer snapshot than P2.
-**
-** This interface is only available if SQLite is compiled with the
-** [SQLITE_ENABLE_SNAPSHOT] option.
-*/
-SQLITE_API SQLITE_EXPERIMENTAL int sqlite3_snapshot_cmp(
- sqlite3_snapshot *p1,
- sqlite3_snapshot *p2
-);
-
-/*
-** CAPI3REF: Recover snapshots from a wal file
-** METHOD: sqlite3_snapshot
-**
-** If a [WAL file] remains on disk after all database connections close
-** (either through the use of the [SQLITE_FCNTL_PERSIST_WAL] [file control]
-** or because the last process to have the database opened exited without
-** calling [sqlite3_close()]) and a new connection is subsequently opened
-** on that database and [WAL file], the [sqlite3_snapshot_open()] interface
-** will only be able to open the last transaction added to the WAL file
-** even though the WAL file contains other valid transactions.
-**
-** This function attempts to scan the WAL file associated with database zDb
-** of database handle db and make all valid snapshots available to
-** sqlite3_snapshot_open(). It is an error if there is already a read
-** transaction open on the database, or if the database is not a WAL mode
-** database.
-**
-** SQLITE_OK is returned if successful, or an SQLite error code otherwise.
-**
-** This interface is only available if SQLite is compiled with the
-** [SQLITE_ENABLE_SNAPSHOT] option.
-*/
-SQLITE_API SQLITE_EXPERIMENTAL int sqlite3_snapshot_recover(sqlite3 *db, const char *zDb);
-
-/*
-** CAPI3REF: Serialize a database
-**
-** The sqlite3_serialize(D,S,P,F) interface returns a pointer to memory
-** that is a serialization of the S database on [database connection] D.
-** If P is not a NULL pointer, then the size of the database in bytes
-** is written into *P.
-**
-** For an ordinary on-disk database file, the serialization is just a
-** copy of the disk file. For an in-memory database or a "TEMP" database,
-** the serialization is the same sequence of bytes which would be written
-** to disk if that database where backed up to disk.
-**
-** The usual case is that sqlite3_serialize() copies the serialization of
-** the database into memory obtained from [sqlite3_malloc64()] and returns
-** a pointer to that memory. The caller is responsible for freeing the
-** returned value to avoid a memory leak. However, if the F argument
-** contains the SQLITE_SERIALIZE_NOCOPY bit, then no memory allocations
-** are made, and the sqlite3_serialize() function will return a pointer
-** to the contiguous memory representation of the database that SQLite
-** is currently using for that database, or NULL if the no such contiguous
-** memory representation of the database exists. A contiguous memory
-** representation of the database will usually only exist if there has
-** been a prior call to [sqlite3_deserialize(D,S,...)] with the same
-** values of D and S.
-** The size of the database is written into *P even if the
-** SQLITE_SERIALIZE_NOCOPY bit is set but no contiguous copy
-** of the database exists.
-**
-** A call to sqlite3_serialize(D,S,P,F) might return NULL even if the
-** SQLITE_SERIALIZE_NOCOPY bit is omitted from argument F if a memory
-** allocation error occurs.
-**
-** This interface is only available if SQLite is compiled with the
-** [SQLITE_ENABLE_DESERIALIZE] option.
-*/
-SQLITE_API unsigned char *sqlite3_serialize(
- sqlite3 *db, /* The database connection */
- const char *zSchema, /* Which DB to serialize. ex: "main", "temp", ... */
- sqlite3_int64 *piSize, /* Write size of the DB here, if not NULL */
- unsigned int mFlags /* Zero or more SQLITE_SERIALIZE_* flags */
-);
-
-/*
-** CAPI3REF: Flags for sqlite3_serialize
-**
-** Zero or more of the following constants can be OR-ed together for
-** the F argument to [sqlite3_serialize(D,S,P,F)].
-**
-** SQLITE_SERIALIZE_NOCOPY means that [sqlite3_serialize()] will return
-** a pointer to contiguous in-memory database that it is currently using,
-** without making a copy of the database. If SQLite is not currently using
-** a contiguous in-memory database, then this option causes
-** [sqlite3_serialize()] to return a NULL pointer. SQLite will only be
-** using a contiguous in-memory database if it has been initialized by a
-** prior call to [sqlite3_deserialize()].
-*/
-#define SQLITE_SERIALIZE_NOCOPY 0x001 /* Do no memory allocations */
-
-/*
-** CAPI3REF: Deserialize a database
-**
-** The sqlite3_deserialize(D,S,P,N,M,F) interface causes the
-** [database connection] D to disconnect from database S and then
-** reopen S as an in-memory database based on the serialization contained
-** in P. The serialized database P is N bytes in size. M is the size of
-** the buffer P, which might be larger than N. If M is larger than N, and
-** the SQLITE_DESERIALIZE_READONLY bit is not set in F, then SQLite is
-** permitted to add content to the in-memory database as long as the total
-** size does not exceed M bytes.
-**
-** If the SQLITE_DESERIALIZE_FREEONCLOSE bit is set in F, then SQLite will
-** invoke sqlite3_free() on the serialization buffer when the database
-** connection closes. If the SQLITE_DESERIALIZE_RESIZEABLE bit is set, then
-** SQLite will try to increase the buffer size using sqlite3_realloc64()
-** if writes on the database cause it to grow larger than M bytes.
-**
-** The sqlite3_deserialize() interface will fail with SQLITE_BUSY if the
-** database is currently in a read transaction or is involved in a backup
-** operation.
-**
-** If sqlite3_deserialize(D,S,P,N,M,F) fails for any reason and if the
-** SQLITE_DESERIALIZE_FREEONCLOSE bit is set in argument F, then
-** [sqlite3_free()] is invoked on argument P prior to returning.
-**
-** This interface is only available if SQLite is compiled with the
-** [SQLITE_ENABLE_DESERIALIZE] option.
-*/
-SQLITE_API int sqlite3_deserialize(
- sqlite3 *db, /* The database connection */
- const char *zSchema, /* Which DB to reopen with the deserialization */
- unsigned char *pData, /* The serialized database content */
- sqlite3_int64 szDb, /* Number bytes in the deserialization */
- sqlite3_int64 szBuf, /* Total size of buffer pData[] */
- unsigned mFlags /* Zero or more SQLITE_DESERIALIZE_* flags */
-);
-
-/*
-** CAPI3REF: Flags for sqlite3_deserialize()
-**
-** The following are allowed values for 6th argument (the F argument) to
-** the [sqlite3_deserialize(D,S,P,N,M,F)] interface.
-**
-** The SQLITE_DESERIALIZE_FREEONCLOSE means that the database serialization
-** in the P argument is held in memory obtained from [sqlite3_malloc64()]
-** and that SQLite should take ownership of this memory and automatically
-** free it when it has finished using it. Without this flag, the caller
-** is responsible for freeing any dynamically allocated memory.
-**
-** The SQLITE_DESERIALIZE_RESIZEABLE flag means that SQLite is allowed to
-** grow the size of the database using calls to [sqlite3_realloc64()]. This
-** flag should only be used if SQLITE_DESERIALIZE_FREEONCLOSE is also used.
-** Without this flag, the deserialized database cannot increase in size beyond
-** the number of bytes specified by the M parameter.
-**
-** The SQLITE_DESERIALIZE_READONLY flag means that the deserialized database
-** should be treated as read-only.
-*/
-#define SQLITE_DESERIALIZE_FREEONCLOSE 1 /* Call sqlite3_free() on close */
-#define SQLITE_DESERIALIZE_RESIZEABLE 2 /* Resize using sqlite3_realloc64() */
-#define SQLITE_DESERIALIZE_READONLY 4 /* Database is read-only */
-
-/*
-** Undo the hack that converts floating point types to integer for
-** builds on processors without floating point support.
-*/
-#ifdef SQLITE_OMIT_FLOATING_POINT
-# undef double
-#endif
-
-#if 0
-} /* End of the 'extern "C"' block */
-#endif
-#endif /* SQLITE3_H */
-
-/******** Begin file sqlite3rtree.h *********/
-/*
-** 2010 August 30
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-*/
-
-#ifndef _SQLITE3RTREE_H_
-#define _SQLITE3RTREE_H_
-
-
-#if 0
-extern "C" {
-#endif
-
-typedef struct sqlite3_rtree_geometry sqlite3_rtree_geometry;
-typedef struct sqlite3_rtree_query_info sqlite3_rtree_query_info;
-
-/* The double-precision datatype used by RTree depends on the
-** SQLITE_RTREE_INT_ONLY compile-time option.
-*/
-#ifdef SQLITE_RTREE_INT_ONLY
- typedef sqlite3_int64 sqlite3_rtree_dbl;
-#else
- typedef double sqlite3_rtree_dbl;
-#endif
-
-/*
-** Register a geometry callback named zGeom that can be used as part of an
-** R-Tree geometry query as follows:
-**
-** SELECT ... FROM WHERE MATCH $zGeom(... params ...)
-*/
-SQLITE_API int sqlite3_rtree_geometry_callback(
- sqlite3 *db,
- const char *zGeom,
- int (*xGeom)(sqlite3_rtree_geometry*, int, sqlite3_rtree_dbl*,int*),
- void *pContext
-);
-
-
-/*
-** A pointer to a structure of the following type is passed as the first
-** argument to callbacks registered using rtree_geometry_callback().
-*/
-struct sqlite3_rtree_geometry {
- void *pContext; /* Copy of pContext passed to s_r_g_c() */
- int nParam; /* Size of array aParam[] */
- sqlite3_rtree_dbl *aParam; /* Parameters passed to SQL geom function */
- void *pUser; /* Callback implementation user data */
- void (*xDelUser)(void *); /* Called by SQLite to clean up pUser */
-};
-
-/*
-** Register a 2nd-generation geometry callback named zScore that can be
-** used as part of an R-Tree geometry query as follows:
-**
-** SELECT ... FROM WHERE MATCH $zQueryFunc(... params ...)
-*/
-SQLITE_API int sqlite3_rtree_query_callback(
- sqlite3 *db,
- const char *zQueryFunc,
- int (*xQueryFunc)(sqlite3_rtree_query_info*),
- void *pContext,
- void (*xDestructor)(void*)
-);
-
-
-/*
-** A pointer to a structure of the following type is passed as the
-** argument to scored geometry callback registered using
-** sqlite3_rtree_query_callback().
-**
-** Note that the first 5 fields of this structure are identical to
-** sqlite3_rtree_geometry. This structure is a subclass of
-** sqlite3_rtree_geometry.
-*/
-struct sqlite3_rtree_query_info {
- void *pContext; /* pContext from when function registered */
- int nParam; /* Number of function parameters */
- sqlite3_rtree_dbl *aParam; /* value of function parameters */
- void *pUser; /* callback can use this, if desired */
- void (*xDelUser)(void*); /* function to free pUser */
- sqlite3_rtree_dbl *aCoord; /* Coordinates of node or entry to check */
- unsigned int *anQueue; /* Number of pending entries in the queue */
- int nCoord; /* Number of coordinates */
- int iLevel; /* Level of current node or entry */
- int mxLevel; /* The largest iLevel value in the tree */
- sqlite3_int64 iRowid; /* Rowid for current entry */
- sqlite3_rtree_dbl rParentScore; /* Score of parent node */
- int eParentWithin; /* Visibility of parent node */
- int eWithin; /* OUT: Visiblity */
- sqlite3_rtree_dbl rScore; /* OUT: Write the score here */
- /* The following fields are only available in 3.8.11 and later */
- sqlite3_value **apSqlParam; /* Original SQL values of parameters */
-};
-
-/*
-** Allowed values for sqlite3_rtree_query.eWithin and .eParentWithin.
-*/
-#define NOT_WITHIN 0 /* Object completely outside of query region */
-#define PARTLY_WITHIN 1 /* Object partially overlaps query region */
-#define FULLY_WITHIN 2 /* Object fully contained within query region */
-
-
-#if 0
-} /* end of the 'extern "C"' block */
-#endif
-
-#endif /* ifndef _SQLITE3RTREE_H_ */
-
-/******** End of sqlite3rtree.h *********/
-/******** Begin file sqlite3session.h *********/
-
-#if !defined(__SQLITESESSION_H_) && defined(SQLITE_ENABLE_SESSION)
-#define __SQLITESESSION_H_ 1
-
-/*
-** Make sure we can call this stuff from C++.
-*/
-#if 0
-extern "C" {
-#endif
-
-
-/*
-** CAPI3REF: Session Object Handle
-**
-** An instance of this object is a [session] that can be used to
-** record changes to a database.
-*/
-typedef struct sqlite3_session sqlite3_session;
-
-/*
-** CAPI3REF: Changeset Iterator Handle
-**
-** An instance of this object acts as a cursor for iterating
-** over the elements of a [changeset] or [patchset].
-*/
-typedef struct sqlite3_changeset_iter sqlite3_changeset_iter;
-
-/*
-** CAPI3REF: Create A New Session Object
-** CONSTRUCTOR: sqlite3_session
-**
-** Create a new session object attached to database handle db. If successful,
-** a pointer to the new object is written to *ppSession and SQLITE_OK is
-** returned. If an error occurs, *ppSession is set to NULL and an SQLite
-** error code (e.g. SQLITE_NOMEM) is returned.
-**
-** It is possible to create multiple session objects attached to a single
-** database handle.
-**
-** Session objects created using this function should be deleted using the
-** [sqlite3session_delete()] function before the database handle that they
-** are attached to is itself closed. If the database handle is closed before
-** the session object is deleted, then the results of calling any session
-** module function, including [sqlite3session_delete()] on the session object
-** are undefined.
-**
-** Because the session module uses the [sqlite3_preupdate_hook()] API, it
-** is not possible for an application to register a pre-update hook on a
-** database handle that has one or more session objects attached. Nor is
-** it possible to create a session object attached to a database handle for
-** which a pre-update hook is already defined. The results of attempting
-** either of these things are undefined.
-**
-** The session object will be used to create changesets for tables in
-** database zDb, where zDb is either "main", or "temp", or the name of an
-** attached database. It is not an error if database zDb is not attached
-** to the database when the session object is created.
-*/
-SQLITE_API int sqlite3session_create(
- sqlite3 *db, /* Database handle */
- const char *zDb, /* Name of db (e.g. "main") */
- sqlite3_session **ppSession /* OUT: New session object */
-);
-
-/*
-** CAPI3REF: Delete A Session Object
-** DESTRUCTOR: sqlite3_session
-**
-** Delete a session object previously allocated using
-** [sqlite3session_create()]. Once a session object has been deleted, the
-** results of attempting to use pSession with any other session module
-** function are undefined.
-**
-** Session objects must be deleted before the database handle to which they
-** are attached is closed. Refer to the documentation for
-** [sqlite3session_create()] for details.
-*/
-SQLITE_API void sqlite3session_delete(sqlite3_session *pSession);
-
-
-/*
-** CAPI3REF: Enable Or Disable A Session Object
-** METHOD: sqlite3_session
-**
-** Enable or disable the recording of changes by a session object. When
-** enabled, a session object records changes made to the database. When
-** disabled - it does not. A newly created session object is enabled.
-** Refer to the documentation for [sqlite3session_changeset()] for further
-** details regarding how enabling and disabling a session object affects
-** the eventual changesets.
-**
-** Passing zero to this function disables the session. Passing a value
-** greater than zero enables it. Passing a value less than zero is a
-** no-op, and may be used to query the current state of the session.
-**
-** The return value indicates the final state of the session object: 0 if
-** the session is disabled, or 1 if it is enabled.
-*/
-SQLITE_API int sqlite3session_enable(sqlite3_session *pSession, int bEnable);
-
-/*
-** CAPI3REF: Set Or Clear the Indirect Change Flag
-** METHOD: sqlite3_session
-**
-** Each change recorded by a session object is marked as either direct or
-** indirect. A change is marked as indirect if either:
-**
-**
-**
The session object "indirect" flag is set when the change is
-** made, or
-**
The change is made by an SQL trigger or foreign key action
-** instead of directly as a result of a users SQL statement.
-**
-**
-** If a single row is affected by more than one operation within a session,
-** then the change is considered indirect if all operations meet the criteria
-** for an indirect change above, or direct otherwise.
-**
-** This function is used to set, clear or query the session object indirect
-** flag. If the second argument passed to this function is zero, then the
-** indirect flag is cleared. If it is greater than zero, the indirect flag
-** is set. Passing a value less than zero does not modify the current value
-** of the indirect flag, and may be used to query the current state of the
-** indirect flag for the specified session object.
-**
-** The return value indicates the final state of the indirect flag: 0 if
-** it is clear, or 1 if it is set.
-*/
-SQLITE_API int sqlite3session_indirect(sqlite3_session *pSession, int bIndirect);
-
-/*
-** CAPI3REF: Attach A Table To A Session Object
-** METHOD: sqlite3_session
-**
-** If argument zTab is not NULL, then it is the name of a table to attach
-** to the session object passed as the first argument. All subsequent changes
-** made to the table while the session object is enabled will be recorded. See
-** documentation for [sqlite3session_changeset()] for further details.
-**
-** Or, if argument zTab is NULL, then changes are recorded for all tables
-** in the database. If additional tables are added to the database (by
-** executing "CREATE TABLE" statements) after this call is made, changes for
-** the new tables are also recorded.
-**
-** Changes can only be recorded for tables that have a PRIMARY KEY explicitly
-** defined as part of their CREATE TABLE statement. It does not matter if the
-** PRIMARY KEY is an "INTEGER PRIMARY KEY" (rowid alias) or not. The PRIMARY
-** KEY may consist of a single column, or may be a composite key.
-**
-** It is not an error if the named table does not exist in the database. Nor
-** is it an error if the named table does not have a PRIMARY KEY. However,
-** no changes will be recorded in either of these scenarios.
-**
-** Changes are not recorded for individual rows that have NULL values stored
-** in one or more of their PRIMARY KEY columns.
-**
-** SQLITE_OK is returned if the call completes without error. Or, if an error
-** occurs, an SQLite error code (e.g. SQLITE_NOMEM) is returned.
-**
-**
Special sqlite_stat1 Handling
-**
-** As of SQLite version 3.22.0, the "sqlite_stat1" table is an exception to
-** some of the rules above. In SQLite, the schema of sqlite_stat1 is:
-**
-** CREATE TABLE sqlite_stat1(tbl,idx,stat)
-**
-**
-** Even though sqlite_stat1 does not have a PRIMARY KEY, changes are
-** recorded for it as if the PRIMARY KEY is (tbl,idx). Additionally, changes
-** are recorded for rows for which (idx IS NULL) is true. However, for such
-** rows a zero-length blob (SQL value X'') is stored in the changeset or
-** patchset instead of a NULL value. This allows such changesets to be
-** manipulated by legacy implementations of sqlite3changeset_invert(),
-** concat() and similar.
-**
-** The sqlite3changeset_apply() function automatically converts the
-** zero-length blob back to a NULL value when updating the sqlite_stat1
-** table. However, if the application calls sqlite3changeset_new(),
-** sqlite3changeset_old() or sqlite3changeset_conflict on a changeset
-** iterator directly (including on a changeset iterator passed to a
-** conflict-handler callback) then the X'' value is returned. The application
-** must translate X'' to NULL itself if required.
-**
-** Legacy (older than 3.22.0) versions of the sessions module cannot capture
-** changes made to the sqlite_stat1 table. Legacy versions of the
-** sqlite3changeset_apply() function silently ignore any modifications to the
-** sqlite_stat1 table that are part of a changeset or patchset.
-*/
-SQLITE_API int sqlite3session_attach(
- sqlite3_session *pSession, /* Session object */
- const char *zTab /* Table name */
-);
-
-/*
-** CAPI3REF: Set a table filter on a Session Object.
-** METHOD: sqlite3_session
-**
-** The second argument (xFilter) is the "filter callback". For changes to rows
-** in tables that are not attached to the Session object, the filter is called
-** to determine whether changes to the table's rows should be tracked or not.
-** If xFilter returns 0, changes is not tracked. Note that once a table is
-** attached, xFilter will not be called again.
-*/
-SQLITE_API void sqlite3session_table_filter(
- sqlite3_session *pSession, /* Session object */
- int(*xFilter)(
- void *pCtx, /* Copy of third arg to _filter_table() */
- const char *zTab /* Table name */
- ),
- void *pCtx /* First argument passed to xFilter */
-);
-
-/*
-** CAPI3REF: Generate A Changeset From A Session Object
-** METHOD: sqlite3_session
-**
-** Obtain a changeset containing changes to the tables attached to the
-** session object passed as the first argument. If successful,
-** set *ppChangeset to point to a buffer containing the changeset
-** and *pnChangeset to the size of the changeset in bytes before returning
-** SQLITE_OK. If an error occurs, set both *ppChangeset and *pnChangeset to
-** zero and return an SQLite error code.
-**
-** A changeset consists of zero or more INSERT, UPDATE and/or DELETE changes,
-** each representing a change to a single row of an attached table. An INSERT
-** change contains the values of each field of a new database row. A DELETE
-** contains the original values of each field of a deleted database row. An
-** UPDATE change contains the original values of each field of an updated
-** database row along with the updated values for each updated non-primary-key
-** column. It is not possible for an UPDATE change to represent a change that
-** modifies the values of primary key columns. If such a change is made, it
-** is represented in a changeset as a DELETE followed by an INSERT.
-**
-** Changes are not recorded for rows that have NULL values stored in one or
-** more of their PRIMARY KEY columns. If such a row is inserted or deleted,
-** no corresponding change is present in the changesets returned by this
-** function. If an existing row with one or more NULL values stored in
-** PRIMARY KEY columns is updated so that all PRIMARY KEY columns are non-NULL,
-** only an INSERT is appears in the changeset. Similarly, if an existing row
-** with non-NULL PRIMARY KEY values is updated so that one or more of its
-** PRIMARY KEY columns are set to NULL, the resulting changeset contains a
-** DELETE change only.
-**
-** The contents of a changeset may be traversed using an iterator created
-** using the [sqlite3changeset_start()] API. A changeset may be applied to
-** a database with a compatible schema using the [sqlite3changeset_apply()]
-** API.
-**
-** Within a changeset generated by this function, all changes related to a
-** single table are grouped together. In other words, when iterating through
-** a changeset or when applying a changeset to a database, all changes related
-** to a single table are processed before moving on to the next table. Tables
-** are sorted in the same order in which they were attached (or auto-attached)
-** to the sqlite3_session object. The order in which the changes related to
-** a single table are stored is undefined.
-**
-** Following a successful call to this function, it is the responsibility of
-** the caller to eventually free the buffer that *ppChangeset points to using
-** [sqlite3_free()].
-**
-**
Changeset Generation
-**
-** Once a table has been attached to a session object, the session object
-** records the primary key values of all new rows inserted into the table.
-** It also records the original primary key and other column values of any
-** deleted or updated rows. For each unique primary key value, data is only
-** recorded once - the first time a row with said primary key is inserted,
-** updated or deleted in the lifetime of the session.
-**
-** There is one exception to the previous paragraph: when a row is inserted,
-** updated or deleted, if one or more of its primary key columns contain a
-** NULL value, no record of the change is made.
-**
-** The session object therefore accumulates two types of records - those
-** that consist of primary key values only (created when the user inserts
-** a new record) and those that consist of the primary key values and the
-** original values of other table columns (created when the users deletes
-** or updates a record).
-**
-** When this function is called, the requested changeset is created using
-** both the accumulated records and the current contents of the database
-** file. Specifically:
-**
-**
-**
For each record generated by an insert, the database is queried
-** for a row with a matching primary key. If one is found, an INSERT
-** change is added to the changeset. If no such row is found, no change
-** is added to the changeset.
-**
-**
For each record generated by an update or delete, the database is
-** queried for a row with a matching primary key. If such a row is
-** found and one or more of the non-primary key fields have been
-** modified from their original values, an UPDATE change is added to
-** the changeset. Or, if no such row is found in the table, a DELETE
-** change is added to the changeset. If there is a row with a matching
-** primary key in the database, but all fields contain their original
-** values, no change is added to the changeset.
-**
-**
-** This means, amongst other things, that if a row is inserted and then later
-** deleted while a session object is active, neither the insert nor the delete
-** will be present in the changeset. Or if a row is deleted and then later a
-** row with the same primary key values inserted while a session object is
-** active, the resulting changeset will contain an UPDATE change instead of
-** a DELETE and an INSERT.
-**
-** When a session object is disabled (see the [sqlite3session_enable()] API),
-** it does not accumulate records when rows are inserted, updated or deleted.
-** This may appear to have some counter-intuitive effects if a single row
-** is written to more than once during a session. For example, if a row
-** is inserted while a session object is enabled, then later deleted while
-** the same session object is disabled, no INSERT record will appear in the
-** changeset, even though the delete took place while the session was disabled.
-** Or, if one field of a row is updated while a session is disabled, and
-** another field of the same row is updated while the session is enabled, the
-** resulting changeset will contain an UPDATE change that updates both fields.
-*/
-SQLITE_API int sqlite3session_changeset(
- sqlite3_session *pSession, /* Session object */
- int *pnChangeset, /* OUT: Size of buffer at *ppChangeset */
- void **ppChangeset /* OUT: Buffer containing changeset */
-);
-
-/*
-** CAPI3REF: Load The Difference Between Tables Into A Session
-** METHOD: sqlite3_session
-**
-** If it is not already attached to the session object passed as the first
-** argument, this function attaches table zTbl in the same manner as the
-** [sqlite3session_attach()] function. If zTbl does not exist, or if it
-** does not have a primary key, this function is a no-op (but does not return
-** an error).
-**
-** Argument zFromDb must be the name of a database ("main", "temp" etc.)
-** attached to the same database handle as the session object that contains
-** a table compatible with the table attached to the session by this function.
-** A table is considered compatible if it:
-**
-**
-**
Has the same name,
-**
Has the same set of columns declared in the same order, and
-**
Has the same PRIMARY KEY definition.
-**
-**
-** If the tables are not compatible, SQLITE_SCHEMA is returned. If the tables
-** are compatible but do not have any PRIMARY KEY columns, it is not an error
-** but no changes are added to the session object. As with other session
-** APIs, tables without PRIMARY KEYs are simply ignored.
-**
-** This function adds a set of changes to the session object that could be
-** used to update the table in database zFrom (call this the "from-table")
-** so that its content is the same as the table attached to the session
-** object (call this the "to-table"). Specifically:
-**
-**
-**
For each row (primary key) that exists in the to-table but not in
-** the from-table, an INSERT record is added to the session object.
-**
-**
For each row (primary key) that exists in the to-table but not in
-** the from-table, a DELETE record is added to the session object.
-**
-**
For each row (primary key) that exists in both tables, but features
-** different non-PK values in each, an UPDATE record is added to the
-** session.
-**
-**
-** To clarify, if this function is called and then a changeset constructed
-** using [sqlite3session_changeset()], then after applying that changeset to
-** database zFrom the contents of the two compatible tables would be
-** identical.
-**
-** It an error if database zFrom does not exist or does not contain the
-** required compatible table.
-**
-** If the operation successful, SQLITE_OK is returned. Otherwise, an SQLite
-** error code. In this case, if argument pzErrMsg is not NULL, *pzErrMsg
-** may be set to point to a buffer containing an English language error
-** message. It is the responsibility of the caller to free this buffer using
-** sqlite3_free().
-*/
-SQLITE_API int sqlite3session_diff(
- sqlite3_session *pSession,
- const char *zFromDb,
- const char *zTbl,
- char **pzErrMsg
-);
-
-
-/*
-** CAPI3REF: Generate A Patchset From A Session Object
-** METHOD: sqlite3_session
-**
-** The differences between a patchset and a changeset are that:
-**
-**
-**
DELETE records consist of the primary key fields only. The
-** original values of other fields are omitted.
-**
The original values of any modified fields are omitted from
-** UPDATE records.
-**
-**
-** A patchset blob may be used with up to date versions of all
-** sqlite3changeset_xxx API functions except for sqlite3changeset_invert(),
-** which returns SQLITE_CORRUPT if it is passed a patchset. Similarly,
-** attempting to use a patchset blob with old versions of the
-** sqlite3changeset_xxx APIs also provokes an SQLITE_CORRUPT error.
-**
-** Because the non-primary key "old.*" fields are omitted, no
-** SQLITE_CHANGESET_DATA conflicts can be detected or reported if a patchset
-** is passed to the sqlite3changeset_apply() API. Other conflict types work
-** in the same way as for changesets.
-**
-** Changes within a patchset are ordered in the same way as for changesets
-** generated by the sqlite3session_changeset() function (i.e. all changes for
-** a single table are grouped together, tables appear in the order in which
-** they were attached to the session object).
-*/
-SQLITE_API int sqlite3session_patchset(
- sqlite3_session *pSession, /* Session object */
- int *pnPatchset, /* OUT: Size of buffer at *ppPatchset */
- void **ppPatchset /* OUT: Buffer containing patchset */
-);
-
-/*
-** CAPI3REF: Test if a changeset has recorded any changes.
-**
-** Return non-zero if no changes to attached tables have been recorded by
-** the session object passed as the first argument. Otherwise, if one or
-** more changes have been recorded, return zero.
-**
-** Even if this function returns zero, it is possible that calling
-** [sqlite3session_changeset()] on the session handle may still return a
-** changeset that contains no changes. This can happen when a row in
-** an attached table is modified and then later on the original values
-** are restored. However, if this function returns non-zero, then it is
-** guaranteed that a call to sqlite3session_changeset() will return a
-** changeset containing zero changes.
-*/
-SQLITE_API int sqlite3session_isempty(sqlite3_session *pSession);
-
-/*
-** CAPI3REF: Create An Iterator To Traverse A Changeset
-** CONSTRUCTOR: sqlite3_changeset_iter
-**
-** Create an iterator used to iterate through the contents of a changeset.
-** If successful, *pp is set to point to the iterator handle and SQLITE_OK
-** is returned. Otherwise, if an error occurs, *pp is set to zero and an
-** SQLite error code is returned.
-**
-** The following functions can be used to advance and query a changeset
-** iterator created by this function:
-**
-**
-**
[sqlite3changeset_next()]
-**
[sqlite3changeset_op()]
-**
[sqlite3changeset_new()]
-**
[sqlite3changeset_old()]
-**
-**
-** It is the responsibility of the caller to eventually destroy the iterator
-** by passing it to [sqlite3changeset_finalize()]. The buffer containing the
-** changeset (pChangeset) must remain valid until after the iterator is
-** destroyed.
-**
-** Assuming the changeset blob was created by one of the
-** [sqlite3session_changeset()], [sqlite3changeset_concat()] or
-** [sqlite3changeset_invert()] functions, all changes within the changeset
-** that apply to a single table are grouped together. This means that when
-** an application iterates through a changeset using an iterator created by
-** this function, all changes that relate to a single table are visited
-** consecutively. There is no chance that the iterator will visit a change
-** the applies to table X, then one for table Y, and then later on visit
-** another change for table X.
-*/
-SQLITE_API int sqlite3changeset_start(
- sqlite3_changeset_iter **pp, /* OUT: New changeset iterator handle */
- int nChangeset, /* Size of changeset blob in bytes */
- void *pChangeset /* Pointer to blob containing changeset */
-);
-
-
-/*
-** CAPI3REF: Advance A Changeset Iterator
-** METHOD: sqlite3_changeset_iter
-**
-** This function may only be used with iterators created by function
-** [sqlite3changeset_start()]. If it is called on an iterator passed to
-** a conflict-handler callback by [sqlite3changeset_apply()], SQLITE_MISUSE
-** is returned and the call has no effect.
-**
-** Immediately after an iterator is created by sqlite3changeset_start(), it
-** does not point to any change in the changeset. Assuming the changeset
-** is not empty, the first call to this function advances the iterator to
-** point to the first change in the changeset. Each subsequent call advances
-** the iterator to point to the next change in the changeset (if any). If
-** no error occurs and the iterator points to a valid change after a call
-** to sqlite3changeset_next() has advanced it, SQLITE_ROW is returned.
-** Otherwise, if all changes in the changeset have already been visited,
-** SQLITE_DONE is returned.
-**
-** If an error occurs, an SQLite error code is returned. Possible error
-** codes include SQLITE_CORRUPT (if the changeset buffer is corrupt) or
-** SQLITE_NOMEM.
-*/
-SQLITE_API int sqlite3changeset_next(sqlite3_changeset_iter *pIter);
-
-/*
-** CAPI3REF: Obtain The Current Operation From A Changeset Iterator
-** METHOD: sqlite3_changeset_iter
-**
-** The pIter argument passed to this function may either be an iterator
-** passed to a conflict-handler by [sqlite3changeset_apply()], or an iterator
-** created by [sqlite3changeset_start()]. In the latter case, the most recent
-** call to [sqlite3changeset_next()] must have returned [SQLITE_ROW]. If this
-** is not the case, this function returns [SQLITE_MISUSE].
-**
-** If argument pzTab is not NULL, then *pzTab is set to point to a
-** nul-terminated utf-8 encoded string containing the name of the table
-** affected by the current change. The buffer remains valid until either
-** sqlite3changeset_next() is called on the iterator or until the
-** conflict-handler function returns. If pnCol is not NULL, then *pnCol is
-** set to the number of columns in the table affected by the change. If
-** pbIncorrect is not NULL, then *pbIndirect is set to true (1) if the change
-** is an indirect change, or false (0) otherwise. See the documentation for
-** [sqlite3session_indirect()] for a description of direct and indirect
-** changes. Finally, if pOp is not NULL, then *pOp is set to one of
-** [SQLITE_INSERT], [SQLITE_DELETE] or [SQLITE_UPDATE], depending on the
-** type of change that the iterator currently points to.
-**
-** If no error occurs, SQLITE_OK is returned. If an error does occur, an
-** SQLite error code is returned. The values of the output variables may not
-** be trusted in this case.
-*/
-SQLITE_API int sqlite3changeset_op(
- sqlite3_changeset_iter *pIter, /* Iterator object */
- const char **pzTab, /* OUT: Pointer to table name */
- int *pnCol, /* OUT: Number of columns in table */
- int *pOp, /* OUT: SQLITE_INSERT, DELETE or UPDATE */
- int *pbIndirect /* OUT: True for an 'indirect' change */
-);
-
-/*
-** CAPI3REF: Obtain The Primary Key Definition Of A Table
-** METHOD: sqlite3_changeset_iter
-**
-** For each modified table, a changeset includes the following:
-**
-**
-**
The number of columns in the table, and
-**
Which of those columns make up the tables PRIMARY KEY.
-**
-**
-** This function is used to find which columns comprise the PRIMARY KEY of
-** the table modified by the change that iterator pIter currently points to.
-** If successful, *pabPK is set to point to an array of nCol entries, where
-** nCol is the number of columns in the table. Elements of *pabPK are set to
-** 0x01 if the corresponding column is part of the tables primary key, or
-** 0x00 if it is not.
-**
-** If argument pnCol is not NULL, then *pnCol is set to the number of columns
-** in the table.
-**
-** If this function is called when the iterator does not point to a valid
-** entry, SQLITE_MISUSE is returned and the output variables zeroed. Otherwise,
-** SQLITE_OK is returned and the output variables populated as described
-** above.
-*/
-SQLITE_API int sqlite3changeset_pk(
- sqlite3_changeset_iter *pIter, /* Iterator object */
- unsigned char **pabPK, /* OUT: Array of boolean - true for PK cols */
- int *pnCol /* OUT: Number of entries in output array */
-);
-
-/*
-** CAPI3REF: Obtain old.* Values From A Changeset Iterator
-** METHOD: sqlite3_changeset_iter
-**
-** The pIter argument passed to this function may either be an iterator
-** passed to a conflict-handler by [sqlite3changeset_apply()], or an iterator
-** created by [sqlite3changeset_start()]. In the latter case, the most recent
-** call to [sqlite3changeset_next()] must have returned SQLITE_ROW.
-** Furthermore, it may only be called if the type of change that the iterator
-** currently points to is either [SQLITE_DELETE] or [SQLITE_UPDATE]. Otherwise,
-** this function returns [SQLITE_MISUSE] and sets *ppValue to NULL.
-**
-** Argument iVal must be greater than or equal to 0, and less than the number
-** of columns in the table affected by the current change. Otherwise,
-** [SQLITE_RANGE] is returned and *ppValue is set to NULL.
-**
-** If successful, this function sets *ppValue to point to a protected
-** sqlite3_value object containing the iVal'th value from the vector of
-** original row values stored as part of the UPDATE or DELETE change and
-** returns SQLITE_OK. The name of the function comes from the fact that this
-** is similar to the "old.*" columns available to update or delete triggers.
-**
-** If some other error occurs (e.g. an OOM condition), an SQLite error code
-** is returned and *ppValue is set to NULL.
-*/
-SQLITE_API int sqlite3changeset_old(
- sqlite3_changeset_iter *pIter, /* Changeset iterator */
- int iVal, /* Column number */
- sqlite3_value **ppValue /* OUT: Old value (or NULL pointer) */
-);
-
-/*
-** CAPI3REF: Obtain new.* Values From A Changeset Iterator
-** METHOD: sqlite3_changeset_iter
-**
-** The pIter argument passed to this function may either be an iterator
-** passed to a conflict-handler by [sqlite3changeset_apply()], or an iterator
-** created by [sqlite3changeset_start()]. In the latter case, the most recent
-** call to [sqlite3changeset_next()] must have returned SQLITE_ROW.
-** Furthermore, it may only be called if the type of change that the iterator
-** currently points to is either [SQLITE_UPDATE] or [SQLITE_INSERT]. Otherwise,
-** this function returns [SQLITE_MISUSE] and sets *ppValue to NULL.
-**
-** Argument iVal must be greater than or equal to 0, and less than the number
-** of columns in the table affected by the current change. Otherwise,
-** [SQLITE_RANGE] is returned and *ppValue is set to NULL.
-**
-** If successful, this function sets *ppValue to point to a protected
-** sqlite3_value object containing the iVal'th value from the vector of
-** new row values stored as part of the UPDATE or INSERT change and
-** returns SQLITE_OK. If the change is an UPDATE and does not include
-** a new value for the requested column, *ppValue is set to NULL and
-** SQLITE_OK returned. The name of the function comes from the fact that
-** this is similar to the "new.*" columns available to update or delete
-** triggers.
-**
-** If some other error occurs (e.g. an OOM condition), an SQLite error code
-** is returned and *ppValue is set to NULL.
-*/
-SQLITE_API int sqlite3changeset_new(
- sqlite3_changeset_iter *pIter, /* Changeset iterator */
- int iVal, /* Column number */
- sqlite3_value **ppValue /* OUT: New value (or NULL pointer) */
-);
-
-/*
-** CAPI3REF: Obtain Conflicting Row Values From A Changeset Iterator
-** METHOD: sqlite3_changeset_iter
-**
-** This function should only be used with iterator objects passed to a
-** conflict-handler callback by [sqlite3changeset_apply()] with either
-** [SQLITE_CHANGESET_DATA] or [SQLITE_CHANGESET_CONFLICT]. If this function
-** is called on any other iterator, [SQLITE_MISUSE] is returned and *ppValue
-** is set to NULL.
-**
-** Argument iVal must be greater than or equal to 0, and less than the number
-** of columns in the table affected by the current change. Otherwise,
-** [SQLITE_RANGE] is returned and *ppValue is set to NULL.
-**
-** If successful, this function sets *ppValue to point to a protected
-** sqlite3_value object containing the iVal'th value from the
-** "conflicting row" associated with the current conflict-handler callback
-** and returns SQLITE_OK.
-**
-** If some other error occurs (e.g. an OOM condition), an SQLite error code
-** is returned and *ppValue is set to NULL.
-*/
-SQLITE_API int sqlite3changeset_conflict(
- sqlite3_changeset_iter *pIter, /* Changeset iterator */
- int iVal, /* Column number */
- sqlite3_value **ppValue /* OUT: Value from conflicting row */
-);
-
-/*
-** CAPI3REF: Determine The Number Of Foreign Key Constraint Violations
-** METHOD: sqlite3_changeset_iter
-**
-** This function may only be called with an iterator passed to an
-** SQLITE_CHANGESET_FOREIGN_KEY conflict handler callback. In this case
-** it sets the output variable to the total number of known foreign key
-** violations in the destination database and returns SQLITE_OK.
-**
-** In all other cases this function returns SQLITE_MISUSE.
-*/
-SQLITE_API int sqlite3changeset_fk_conflicts(
- sqlite3_changeset_iter *pIter, /* Changeset iterator */
- int *pnOut /* OUT: Number of FK violations */
-);
-
-
-/*
-** CAPI3REF: Finalize A Changeset Iterator
-** METHOD: sqlite3_changeset_iter
-**
-** This function is used to finalize an iterator allocated with
-** [sqlite3changeset_start()].
-**
-** This function should only be called on iterators created using the
-** [sqlite3changeset_start()] function. If an application calls this
-** function with an iterator passed to a conflict-handler by
-** [sqlite3changeset_apply()], [SQLITE_MISUSE] is immediately returned and the
-** call has no effect.
-**
-** If an error was encountered within a call to an sqlite3changeset_xxx()
-** function (for example an [SQLITE_CORRUPT] in [sqlite3changeset_next()] or an
-** [SQLITE_NOMEM] in [sqlite3changeset_new()]) then an error code corresponding
-** to that error is returned by this function. Otherwise, SQLITE_OK is
-** returned. This is to allow the following pattern (pseudo-code):
-**
-**
-** sqlite3changeset_start();
-** while( SQLITE_ROW==sqlite3changeset_next() ){
-** // Do something with change.
-** }
-** rc = sqlite3changeset_finalize();
-** if( rc!=SQLITE_OK ){
-** // An error has occurred
-** }
-**
-*/
-SQLITE_API int sqlite3changeset_finalize(sqlite3_changeset_iter *pIter);
-
-/*
-** CAPI3REF: Invert A Changeset
-**
-** This function is used to "invert" a changeset object. Applying an inverted
-** changeset to a database reverses the effects of applying the uninverted
-** changeset. Specifically:
-**
-**
-**
Each DELETE change is changed to an INSERT, and
-**
Each INSERT change is changed to a DELETE, and
-**
For each UPDATE change, the old.* and new.* values are exchanged.
-**
-**
-** This function does not change the order in which changes appear within
-** the changeset. It merely reverses the sense of each individual change.
-**
-** If successful, a pointer to a buffer containing the inverted changeset
-** is stored in *ppOut, the size of the same buffer is stored in *pnOut, and
-** SQLITE_OK is returned. If an error occurs, both *pnOut and *ppOut are
-** zeroed and an SQLite error code returned.
-**
-** It is the responsibility of the caller to eventually call sqlite3_free()
-** on the *ppOut pointer to free the buffer allocation following a successful
-** call to this function.
-**
-** WARNING/TODO: This function currently assumes that the input is a valid
-** changeset. If it is not, the results are undefined.
-*/
-SQLITE_API int sqlite3changeset_invert(
- int nIn, const void *pIn, /* Input changeset */
- int *pnOut, void **ppOut /* OUT: Inverse of input */
-);
-
-/*
-** CAPI3REF: Concatenate Two Changeset Objects
-**
-** This function is used to concatenate two changesets, A and B, into a
-** single changeset. The result is a changeset equivalent to applying
-** changeset A followed by changeset B.
-**
-** This function combines the two input changesets using an
-** sqlite3_changegroup object. Calling it produces similar results as the
-** following code fragment:
-**
-**
-**
-** Refer to the sqlite3_changegroup documentation below for details.
-*/
-SQLITE_API int sqlite3changeset_concat(
- int nA, /* Number of bytes in buffer pA */
- void *pA, /* Pointer to buffer containing changeset A */
- int nB, /* Number of bytes in buffer pB */
- void *pB, /* Pointer to buffer containing changeset B */
- int *pnOut, /* OUT: Number of bytes in output changeset */
- void **ppOut /* OUT: Buffer containing output changeset */
-);
-
-
-/*
-** CAPI3REF: Changegroup Handle
-**
-** A changegroup is an object used to combine two or more
-** [changesets] or [patchsets]
-*/
-typedef struct sqlite3_changegroup sqlite3_changegroup;
-
-/*
-** CAPI3REF: Create A New Changegroup Object
-** CONSTRUCTOR: sqlite3_changegroup
-**
-** An sqlite3_changegroup object is used to combine two or more changesets
-** (or patchsets) into a single changeset (or patchset). A single changegroup
-** object may combine changesets or patchsets, but not both. The output is
-** always in the same format as the input.
-**
-** If successful, this function returns SQLITE_OK and populates (*pp) with
-** a pointer to a new sqlite3_changegroup object before returning. The caller
-** should eventually free the returned object using a call to
-** sqlite3changegroup_delete(). If an error occurs, an SQLite error code
-** (i.e. SQLITE_NOMEM) is returned and *pp is set to NULL.
-**
-** The usual usage pattern for an sqlite3_changegroup object is as follows:
-**
-**
-**
It is created using a call to sqlite3changegroup_new().
-**
-**
Zero or more changesets (or patchsets) are added to the object
-** by calling sqlite3changegroup_add().
-**
-**
The result of combining all input changesets together is obtained
-** by the application via a call to sqlite3changegroup_output().
-**
-**
The object is deleted using a call to sqlite3changegroup_delete().
-**
-**
-** Any number of calls to add() and output() may be made between the calls to
-** new() and delete(), and in any order.
-**
-** As well as the regular sqlite3changegroup_add() and
-** sqlite3changegroup_output() functions, also available are the streaming
-** versions sqlite3changegroup_add_strm() and sqlite3changegroup_output_strm().
-*/
-SQLITE_API int sqlite3changegroup_new(sqlite3_changegroup **pp);
-
-/*
-** CAPI3REF: Add A Changeset To A Changegroup
-** METHOD: sqlite3_changegroup
-**
-** Add all changes within the changeset (or patchset) in buffer pData (size
-** nData bytes) to the changegroup.
-**
-** If the buffer contains a patchset, then all prior calls to this function
-** on the same changegroup object must also have specified patchsets. Or, if
-** the buffer contains a changeset, so must have the earlier calls to this
-** function. Otherwise, SQLITE_ERROR is returned and no changes are added
-** to the changegroup.
-**
-** Rows within the changeset and changegroup are identified by the values in
-** their PRIMARY KEY columns. A change in the changeset is considered to
-** apply to the same row as a change already present in the changegroup if
-** the two rows have the same primary key.
-**
-** Changes to rows that do not already appear in the changegroup are
-** simply copied into it. Or, if both the new changeset and the changegroup
-** contain changes that apply to a single row, the final contents of the
-** changegroup depends on the type of each change, as follows:
-**
-**
-**
Existing Change
-**
New Change
-**
Output Change
-**
INSERT
INSERT
-** The new change is ignored. This case does not occur if the new
-** changeset was recorded immediately after the changesets already
-** added to the changegroup.
-**
INSERT
UPDATE
-** The INSERT change remains in the changegroup. The values in the
-** INSERT change are modified as if the row was inserted by the
-** existing change and then updated according to the new change.
-**
INSERT
DELETE
-** The existing INSERT is removed from the changegroup. The DELETE is
-** not added.
-**
UPDATE
INSERT
-** The new change is ignored. This case does not occur if the new
-** changeset was recorded immediately after the changesets already
-** added to the changegroup.
-**
UPDATE
UPDATE
-** The existing UPDATE remains within the changegroup. It is amended
-** so that the accompanying values are as if the row was updated once
-** by the existing change and then again by the new change.
-**
UPDATE
DELETE
-** The existing UPDATE is replaced by the new DELETE within the
-** changegroup.
-**
DELETE
INSERT
-** If one or more of the column values in the row inserted by the
-** new change differ from those in the row deleted by the existing
-** change, the existing DELETE is replaced by an UPDATE within the
-** changegroup. Otherwise, if the inserted row is exactly the same
-** as the deleted row, the existing DELETE is simply discarded.
-**
DELETE
UPDATE
-** The new change is ignored. This case does not occur if the new
-** changeset was recorded immediately after the changesets already
-** added to the changegroup.
-**
DELETE
DELETE
-** The new change is ignored. This case does not occur if the new
-** changeset was recorded immediately after the changesets already
-** added to the changegroup.
-**
-**
-** If the new changeset contains changes to a table that is already present
-** in the changegroup, then the number of columns and the position of the
-** primary key columns for the table must be consistent. If this is not the
-** case, this function fails with SQLITE_SCHEMA. If the input changeset
-** appears to be corrupt and the corruption is detected, SQLITE_CORRUPT is
-** returned. Or, if an out-of-memory condition occurs during processing, this
-** function returns SQLITE_NOMEM. In all cases, if an error occurs the
-** final contents of the changegroup is undefined.
-**
-** If no error occurs, SQLITE_OK is returned.
-*/
-SQLITE_API int sqlite3changegroup_add(sqlite3_changegroup*, int nData, void *pData);
-
-/*
-** CAPI3REF: Obtain A Composite Changeset From A Changegroup
-** METHOD: sqlite3_changegroup
-**
-** Obtain a buffer containing a changeset (or patchset) representing the
-** current contents of the changegroup. If the inputs to the changegroup
-** were themselves changesets, the output is a changeset. Or, if the
-** inputs were patchsets, the output is also a patchset.
-**
-** As with the output of the sqlite3session_changeset() and
-** sqlite3session_patchset() functions, all changes related to a single
-** table are grouped together in the output of this function. Tables appear
-** in the same order as for the very first changeset added to the changegroup.
-** If the second or subsequent changesets added to the changegroup contain
-** changes for tables that do not appear in the first changeset, they are
-** appended onto the end of the output changeset, again in the order in
-** which they are first encountered.
-**
-** If an error occurs, an SQLite error code is returned and the output
-** variables (*pnData) and (*ppData) are set to 0. Otherwise, SQLITE_OK
-** is returned and the output variables are set to the size of and a
-** pointer to the output buffer, respectively. In this case it is the
-** responsibility of the caller to eventually free the buffer using a
-** call to sqlite3_free().
-*/
-SQLITE_API int sqlite3changegroup_output(
- sqlite3_changegroup*,
- int *pnData, /* OUT: Size of output buffer in bytes */
- void **ppData /* OUT: Pointer to output buffer */
-);
-
-/*
-** CAPI3REF: Delete A Changegroup Object
-** DESTRUCTOR: sqlite3_changegroup
-*/
-SQLITE_API void sqlite3changegroup_delete(sqlite3_changegroup*);
-
-/*
-** CAPI3REF: Apply A Changeset To A Database
-**
-** Apply a changeset or patchset to a database. These functions attempt to
-** update the "main" database attached to handle db with the changes found in
-** the changeset passed via the second and third arguments.
-**
-** The fourth argument (xFilter) passed to these functions is the "filter
-** callback". If it is not NULL, then for each table affected by at least one
-** change in the changeset, the filter callback is invoked with
-** the table name as the second argument, and a copy of the context pointer
-** passed as the sixth argument as the first. If the "filter callback"
-** returns zero, then no attempt is made to apply any changes to the table.
-** Otherwise, if the return value is non-zero or the xFilter argument to
-** is NULL, all changes related to the table are attempted.
-**
-** For each table that is not excluded by the filter callback, this function
-** tests that the target database contains a compatible table. A table is
-** considered compatible if all of the following are true:
-**
-**
-**
The table has the same name as the name recorded in the
-** changeset, and
-**
The table has at least as many columns as recorded in the
-** changeset, and
-**
The table has primary key columns in the same position as
-** recorded in the changeset.
-**
-**
-** If there is no compatible table, it is not an error, but none of the
-** changes associated with the table are applied. A warning message is issued
-** via the sqlite3_log() mechanism with the error code SQLITE_SCHEMA. At most
-** one such warning is issued for each table in the changeset.
-**
-** For each change for which there is a compatible table, an attempt is made
-** to modify the table contents according to the UPDATE, INSERT or DELETE
-** change. If a change cannot be applied cleanly, the conflict handler
-** function passed as the fifth argument to sqlite3changeset_apply() may be
-** invoked. A description of exactly when the conflict handler is invoked for
-** each type of change is below.
-**
-** Unlike the xFilter argument, xConflict may not be passed NULL. The results
-** of passing anything other than a valid function pointer as the xConflict
-** argument are undefined.
-**
-** Each time the conflict handler function is invoked, it must return one
-** of [SQLITE_CHANGESET_OMIT], [SQLITE_CHANGESET_ABORT] or
-** [SQLITE_CHANGESET_REPLACE]. SQLITE_CHANGESET_REPLACE may only be returned
-** if the second argument passed to the conflict handler is either
-** SQLITE_CHANGESET_DATA or SQLITE_CHANGESET_CONFLICT. If the conflict-handler
-** returns an illegal value, any changes already made are rolled back and
-** the call to sqlite3changeset_apply() returns SQLITE_MISUSE. Different
-** actions are taken by sqlite3changeset_apply() depending on the value
-** returned by each invocation of the conflict-handler function. Refer to
-** the documentation for the three
-** [SQLITE_CHANGESET_OMIT|available return values] for details.
-**
-**
-**
DELETE Changes
-** For each DELETE change, the function checks if the target database
-** contains a row with the same primary key value (or values) as the
-** original row values stored in the changeset. If it does, and the values
-** stored in all non-primary key columns also match the values stored in
-** the changeset the row is deleted from the target database.
-**
-** If a row with matching primary key values is found, but one or more of
-** the non-primary key fields contains a value different from the original
-** row value stored in the changeset, the conflict-handler function is
-** invoked with [SQLITE_CHANGESET_DATA] as the second argument. If the
-** database table has more columns than are recorded in the changeset,
-** only the values of those non-primary key fields are compared against
-** the current database contents - any trailing database table columns
-** are ignored.
-**
-** If no row with matching primary key values is found in the database,
-** the conflict-handler function is invoked with [SQLITE_CHANGESET_NOTFOUND]
-** passed as the second argument.
-**
-** If the DELETE operation is attempted, but SQLite returns SQLITE_CONSTRAINT
-** (which can only happen if a foreign key constraint is violated), the
-** conflict-handler function is invoked with [SQLITE_CHANGESET_CONSTRAINT]
-** passed as the second argument. This includes the case where the DELETE
-** operation is attempted because an earlier call to the conflict handler
-** function returned [SQLITE_CHANGESET_REPLACE].
-**
-**
INSERT Changes
-** For each INSERT change, an attempt is made to insert the new row into
-** the database. If the changeset row contains fewer fields than the
-** database table, the trailing fields are populated with their default
-** values.
-**
-** If the attempt to insert the row fails because the database already
-** contains a row with the same primary key values, the conflict handler
-** function is invoked with the second argument set to
-** [SQLITE_CHANGESET_CONFLICT].
-**
-** If the attempt to insert the row fails because of some other constraint
-** violation (e.g. NOT NULL or UNIQUE), the conflict handler function is
-** invoked with the second argument set to [SQLITE_CHANGESET_CONSTRAINT].
-** This includes the case where the INSERT operation is re-attempted because
-** an earlier call to the conflict handler function returned
-** [SQLITE_CHANGESET_REPLACE].
-**
-**
UPDATE Changes
-** For each UPDATE change, the function checks if the target database
-** contains a row with the same primary key value (or values) as the
-** original row values stored in the changeset. If it does, and the values
-** stored in all modified non-primary key columns also match the values
-** stored in the changeset the row is updated within the target database.
-**
-** If a row with matching primary key values is found, but one or more of
-** the modified non-primary key fields contains a value different from an
-** original row value stored in the changeset, the conflict-handler function
-** is invoked with [SQLITE_CHANGESET_DATA] as the second argument. Since
-** UPDATE changes only contain values for non-primary key fields that are
-** to be modified, only those fields need to match the original values to
-** avoid the SQLITE_CHANGESET_DATA conflict-handler callback.
-**
-** If no row with matching primary key values is found in the database,
-** the conflict-handler function is invoked with [SQLITE_CHANGESET_NOTFOUND]
-** passed as the second argument.
-**
-** If the UPDATE operation is attempted, but SQLite returns
-** SQLITE_CONSTRAINT, the conflict-handler function is invoked with
-** [SQLITE_CHANGESET_CONSTRAINT] passed as the second argument.
-** This includes the case where the UPDATE operation is attempted after
-** an earlier call to the conflict handler function returned
-** [SQLITE_CHANGESET_REPLACE].
-**
-**
-** It is safe to execute SQL statements, including those that write to the
-** table that the callback related to, from within the xConflict callback.
-** This can be used to further customize the applications conflict
-** resolution strategy.
-**
-** All changes made by these functions are enclosed in a savepoint transaction.
-** If any other error (aside from a constraint failure when attempting to
-** write to the target database) occurs, then the savepoint transaction is
-** rolled back, restoring the target database to its original state, and an
-** SQLite error code returned.
-**
-** If the output parameters (ppRebase) and (pnRebase) are non-NULL and
-** the input is a changeset (not a patchset), then sqlite3changeset_apply_v2()
-** may set (*ppRebase) to point to a "rebase" that may be used with the
-** sqlite3_rebaser APIs buffer before returning. In this case (*pnRebase)
-** is set to the size of the buffer in bytes. It is the responsibility of the
-** caller to eventually free any such buffer using sqlite3_free(). The buffer
-** is only allocated and populated if one or more conflicts were encountered
-** while applying the patchset. See comments surrounding the sqlite3_rebaser
-** APIs for further details.
-**
-** The behavior of sqlite3changeset_apply_v2() and its streaming equivalent
-** may be modified by passing a combination of
-** [SQLITE_CHANGESETAPPLY_NOSAVEPOINT | supported flags] as the 9th parameter.
-**
-** Note that the sqlite3changeset_apply_v2() API is still experimental
-** and therefore subject to change.
-*/
-SQLITE_API int sqlite3changeset_apply(
- sqlite3 *db, /* Apply change to "main" db of this handle */
- int nChangeset, /* Size of changeset in bytes */
- void *pChangeset, /* Changeset blob */
- int(*xFilter)(
- void *pCtx, /* Copy of sixth arg to _apply() */
- const char *zTab /* Table name */
- ),
- int(*xConflict)(
- void *pCtx, /* Copy of sixth arg to _apply() */
- int eConflict, /* DATA, MISSING, CONFLICT, CONSTRAINT */
- sqlite3_changeset_iter *p /* Handle describing change and conflict */
- ),
- void *pCtx /* First argument passed to xConflict */
-);
-SQLITE_API int sqlite3changeset_apply_v2(
- sqlite3 *db, /* Apply change to "main" db of this handle */
- int nChangeset, /* Size of changeset in bytes */
- void *pChangeset, /* Changeset blob */
- int(*xFilter)(
- void *pCtx, /* Copy of sixth arg to _apply() */
- const char *zTab /* Table name */
- ),
- int(*xConflict)(
- void *pCtx, /* Copy of sixth arg to _apply() */
- int eConflict, /* DATA, MISSING, CONFLICT, CONSTRAINT */
- sqlite3_changeset_iter *p /* Handle describing change and conflict */
- ),
- void *pCtx, /* First argument passed to xConflict */
- void **ppRebase, int *pnRebase, /* OUT: Rebase data */
- int flags /* Combination of SESSION_APPLY_* flags */
-);
-
-/*
-** CAPI3REF: Flags for sqlite3changeset_apply_v2
-**
-** The following flags may passed via the 9th parameter to
-** [sqlite3changeset_apply_v2] and [sqlite3changeset_apply_v2_strm]:
-**
-**
-**
SQLITE_CHANGESETAPPLY_NOSAVEPOINT
-** Usually, the sessions module encloses all operations performed by
-** a single call to apply_v2() or apply_v2_strm() in a [SAVEPOINT]. The
-** SAVEPOINT is committed if the changeset or patchset is successfully
-** applied, or rolled back if an error occurs. Specifying this flag
-** causes the sessions module to omit this savepoint. In this case, if the
-** caller has an open transaction or savepoint when apply_v2() is called,
-** it may revert the partially applied changeset by rolling it back.
-*/
-#define SQLITE_CHANGESETAPPLY_NOSAVEPOINT 0x0001
-
-/*
-** CAPI3REF: Constants Passed To The Conflict Handler
-**
-** Values that may be passed as the second argument to a conflict-handler.
-**
-**
-**
SQLITE_CHANGESET_DATA
-** The conflict handler is invoked with CHANGESET_DATA as the second argument
-** when processing a DELETE or UPDATE change if a row with the required
-** PRIMARY KEY fields is present in the database, but one or more other
-** (non primary-key) fields modified by the update do not contain the
-** expected "before" values.
-**
-** The conflicting row, in this case, is the database row with the matching
-** primary key.
-**
-**
SQLITE_CHANGESET_NOTFOUND
-** The conflict handler is invoked with CHANGESET_NOTFOUND as the second
-** argument when processing a DELETE or UPDATE change if a row with the
-** required PRIMARY KEY fields is not present in the database.
-**
-** There is no conflicting row in this case. The results of invoking the
-** sqlite3changeset_conflict() API are undefined.
-**
-**
SQLITE_CHANGESET_CONFLICT
-** CHANGESET_CONFLICT is passed as the second argument to the conflict
-** handler while processing an INSERT change if the operation would result
-** in duplicate primary key values.
-**
-** The conflicting row in this case is the database row with the matching
-** primary key.
-**
-**
SQLITE_CHANGESET_FOREIGN_KEY
-** If foreign key handling is enabled, and applying a changeset leaves the
-** database in a state containing foreign key violations, the conflict
-** handler is invoked with CHANGESET_FOREIGN_KEY as the second argument
-** exactly once before the changeset is committed. If the conflict handler
-** returns CHANGESET_OMIT, the changes, including those that caused the
-** foreign key constraint violation, are committed. Or, if it returns
-** CHANGESET_ABORT, the changeset is rolled back.
-**
-** No current or conflicting row information is provided. The only function
-** it is possible to call on the supplied sqlite3_changeset_iter handle
-** is sqlite3changeset_fk_conflicts().
-**
-**
SQLITE_CHANGESET_CONSTRAINT
-** If any other constraint violation occurs while applying a change (i.e.
-** a UNIQUE, CHECK or NOT NULL constraint), the conflict handler is
-** invoked with CHANGESET_CONSTRAINT as the second argument.
-**
-** There is no conflicting row in this case. The results of invoking the
-** sqlite3changeset_conflict() API are undefined.
-**
-**
-*/
-#define SQLITE_CHANGESET_DATA 1
-#define SQLITE_CHANGESET_NOTFOUND 2
-#define SQLITE_CHANGESET_CONFLICT 3
-#define SQLITE_CHANGESET_CONSTRAINT 4
-#define SQLITE_CHANGESET_FOREIGN_KEY 5
-
-/*
-** CAPI3REF: Constants Returned By The Conflict Handler
-**
-** A conflict handler callback must return one of the following three values.
-**
-**
-**
SQLITE_CHANGESET_OMIT
-** If a conflict handler returns this value no special action is taken. The
-** change that caused the conflict is not applied. The session module
-** continues to the next change in the changeset.
-**
-**
SQLITE_CHANGESET_REPLACE
-** This value may only be returned if the second argument to the conflict
-** handler was SQLITE_CHANGESET_DATA or SQLITE_CHANGESET_CONFLICT. If this
-** is not the case, any changes applied so far are rolled back and the
-** call to sqlite3changeset_apply() returns SQLITE_MISUSE.
-**
-** If CHANGESET_REPLACE is returned by an SQLITE_CHANGESET_DATA conflict
-** handler, then the conflicting row is either updated or deleted, depending
-** on the type of change.
-**
-** If CHANGESET_REPLACE is returned by an SQLITE_CHANGESET_CONFLICT conflict
-** handler, then the conflicting row is removed from the database and a
-** second attempt to apply the change is made. If this second attempt fails,
-** the original row is restored to the database before continuing.
-**
-**
SQLITE_CHANGESET_ABORT
-** If this value is returned, any changes applied so far are rolled back
-** and the call to sqlite3changeset_apply() returns SQLITE_ABORT.
-**
-*/
-#define SQLITE_CHANGESET_OMIT 0
-#define SQLITE_CHANGESET_REPLACE 1
-#define SQLITE_CHANGESET_ABORT 2
-
-/*
-** CAPI3REF: Rebasing changesets
-** EXPERIMENTAL
-**
-** Suppose there is a site hosting a database in state S0. And that
-** modifications are made that move that database to state S1 and a
-** changeset recorded (the "local" changeset). Then, a changeset based
-** on S0 is received from another site (the "remote" changeset) and
-** applied to the database. The database is then in state
-** (S1+"remote"), where the exact state depends on any conflict
-** resolution decisions (OMIT or REPLACE) made while applying "remote".
-** Rebasing a changeset is to update it to take those conflict
-** resolution decisions into account, so that the same conflicts
-** do not have to be resolved elsewhere in the network.
-**
-** For example, if both the local and remote changesets contain an
-** INSERT of the same key on "CREATE TABLE t1(a PRIMARY KEY, b)":
-**
-** local: INSERT INTO t1 VALUES(1, 'v1');
-** remote: INSERT INTO t1 VALUES(1, 'v2');
-**
-** and the conflict resolution is REPLACE, then the INSERT change is
-** removed from the local changeset (it was overridden). Or, if the
-** conflict resolution was "OMIT", then the local changeset is modified
-** to instead contain:
-**
-** UPDATE t1 SET b = 'v2' WHERE a=1;
-**
-** Changes within the local changeset are rebased as follows:
-**
-**
-**
Local INSERT
-** This may only conflict with a remote INSERT. If the conflict
-** resolution was OMIT, then add an UPDATE change to the rebased
-** changeset. Or, if the conflict resolution was REPLACE, add
-** nothing to the rebased changeset.
-**
-**
Local DELETE
-** This may conflict with a remote UPDATE or DELETE. In both cases the
-** only possible resolution is OMIT. If the remote operation was a
-** DELETE, then add no change to the rebased changeset. If the remote
-** operation was an UPDATE, then the old.* fields of change are updated
-** to reflect the new.* values in the UPDATE.
-**
-**
Local UPDATE
-** This may conflict with a remote UPDATE or DELETE. If it conflicts
-** with a DELETE, and the conflict resolution was OMIT, then the update
-** is changed into an INSERT. Any undefined values in the new.* record
-** from the update change are filled in using the old.* values from
-** the conflicting DELETE. Or, if the conflict resolution was REPLACE,
-** the UPDATE change is simply omitted from the rebased changeset.
-**
-** If conflict is with a remote UPDATE and the resolution is OMIT, then
-** the old.* values are rebased using the new.* values in the remote
-** change. Or, if the resolution is REPLACE, then the change is copied
-** into the rebased changeset with updates to columns also updated by
-** the conflicting remote UPDATE removed. If this means no columns would
-** be updated, the change is omitted.
-**
-**
-** A local change may be rebased against multiple remote changes
-** simultaneously. If a single key is modified by multiple remote
-** changesets, they are combined as follows before the local changeset
-** is rebased:
-**
-**
-**
If there has been one or more REPLACE resolutions on a
-** key, it is rebased according to a REPLACE.
-**
-**
If there have been no REPLACE resolutions on a key, then
-** the local changeset is rebased according to the most recent
-** of the OMIT resolutions.
-**
-**
-** Note that conflict resolutions from multiple remote changesets are
-** combined on a per-field basis, not per-row. This means that in the
-** case of multiple remote UPDATE operations, some fields of a single
-** local change may be rebased for REPLACE while others are rebased for
-** OMIT.
-**
-** In order to rebase a local changeset, the remote changeset must first
-** be applied to the local database using sqlite3changeset_apply_v2() and
-** the buffer of rebase information captured. Then:
-**
-**
-**
An sqlite3_rebaser object is created by calling
-** sqlite3rebaser_create().
-**
The new object is configured with the rebase buffer obtained from
-** sqlite3changeset_apply_v2() by calling sqlite3rebaser_configure().
-** If the local changeset is to be rebased against multiple remote
-** changesets, then sqlite3rebaser_configure() should be called
-** multiple times, in the same order that the multiple
-** sqlite3changeset_apply_v2() calls were made.
-**
Each local changeset is rebased by calling sqlite3rebaser_rebase().
-**
The sqlite3_rebaser object is deleted by calling
-** sqlite3rebaser_delete().
-**
-*/
-typedef struct sqlite3_rebaser sqlite3_rebaser;
-
-/*
-** CAPI3REF: Create a changeset rebaser object.
-** EXPERIMENTAL
-**
-** Allocate a new changeset rebaser object. If successful, set (*ppNew) to
-** point to the new object and return SQLITE_OK. Otherwise, if an error
-** occurs, return an SQLite error code (e.g. SQLITE_NOMEM) and set (*ppNew)
-** to NULL.
-*/
-SQLITE_API int sqlite3rebaser_create(sqlite3_rebaser **ppNew);
-
-/*
-** CAPI3REF: Configure a changeset rebaser object.
-** EXPERIMENTAL
-**
-** Configure the changeset rebaser object to rebase changesets according
-** to the conflict resolutions described by buffer pRebase (size nRebase
-** bytes), which must have been obtained from a previous call to
-** sqlite3changeset_apply_v2().
-*/
-SQLITE_API int sqlite3rebaser_configure(
- sqlite3_rebaser*,
- int nRebase, const void *pRebase
-);
-
-/*
-** CAPI3REF: Rebase a changeset
-** EXPERIMENTAL
-**
-** Argument pIn must point to a buffer containing a changeset nIn bytes
-** in size. This function allocates and populates a buffer with a copy
-** of the changeset rebased rebased according to the configuration of the
-** rebaser object passed as the first argument. If successful, (*ppOut)
-** is set to point to the new buffer containing the rebased changset and
-** (*pnOut) to its size in bytes and SQLITE_OK returned. It is the
-** responsibility of the caller to eventually free the new buffer using
-** sqlite3_free(). Otherwise, if an error occurs, (*ppOut) and (*pnOut)
-** are set to zero and an SQLite error code returned.
-*/
-SQLITE_API int sqlite3rebaser_rebase(
- sqlite3_rebaser*,
- int nIn, const void *pIn,
- int *pnOut, void **ppOut
-);
-
-/*
-** CAPI3REF: Delete a changeset rebaser object.
-** EXPERIMENTAL
-**
-** Delete the changeset rebaser object and all associated resources. There
-** should be one call to this function for each successful invocation
-** of sqlite3rebaser_create().
-*/
-SQLITE_API void sqlite3rebaser_delete(sqlite3_rebaser *p);
-
-/*
-** CAPI3REF: Streaming Versions of API functions.
-**
-** The six streaming API xxx_strm() functions serve similar purposes to the
-** corresponding non-streaming API functions:
-**
-**
-**
Streaming function
Non-streaming equivalent
-**
sqlite3changeset_apply_strm
[sqlite3changeset_apply]
-**
sqlite3changeset_apply_strm_v2
[sqlite3changeset_apply_v2]
-**
sqlite3changeset_concat_strm
[sqlite3changeset_concat]
-**
sqlite3changeset_invert_strm
[sqlite3changeset_invert]
-**
sqlite3changeset_start_strm
[sqlite3changeset_start]
-**
sqlite3session_changeset_strm
[sqlite3session_changeset]
-**
sqlite3session_patchset_strm
[sqlite3session_patchset]
-**
-**
-** Non-streaming functions that accept changesets (or patchsets) as input
-** require that the entire changeset be stored in a single buffer in memory.
-** Similarly, those that return a changeset or patchset do so by returning
-** a pointer to a single large buffer allocated using sqlite3_malloc().
-** Normally this is convenient. However, if an application running in a
-** low-memory environment is required to handle very large changesets, the
-** large contiguous memory allocations required can become onerous.
-**
-** In order to avoid this problem, instead of a single large buffer, input
-** is passed to a streaming API functions by way of a callback function that
-** the sessions module invokes to incrementally request input data as it is
-** required. In all cases, a pair of API function parameters such as
-**
-**
-** int nChangeset,
-** void *pChangeset,
-**
-**
-** Is replaced by:
-**
-**
-** int (*xInput)(void *pIn, void *pData, int *pnData),
-** void *pIn,
-**
-**
-** Each time the xInput callback is invoked by the sessions module, the first
-** argument passed is a copy of the supplied pIn context pointer. The second
-** argument, pData, points to a buffer (*pnData) bytes in size. Assuming no
-** error occurs the xInput method should copy up to (*pnData) bytes of data
-** into the buffer and set (*pnData) to the actual number of bytes copied
-** before returning SQLITE_OK. If the input is completely exhausted, (*pnData)
-** should be set to zero to indicate this. Or, if an error occurs, an SQLite
-** error code should be returned. In all cases, if an xInput callback returns
-** an error, all processing is abandoned and the streaming API function
-** returns a copy of the error code to the caller.
-**
-** In the case of sqlite3changeset_start_strm(), the xInput callback may be
-** invoked by the sessions module at any point during the lifetime of the
-** iterator. If such an xInput callback returns an error, the iterator enters
-** an error state, whereby all subsequent calls to iterator functions
-** immediately fail with the same error code as returned by xInput.
-**
-** Similarly, streaming API functions that return changesets (or patchsets)
-** return them in chunks by way of a callback function instead of via a
-** pointer to a single large buffer. In this case, a pair of parameters such
-** as:
-**
-**
-** int *pnChangeset,
-** void **ppChangeset,
-**
-**
-** Is replaced by:
-**
-**
-** int (*xOutput)(void *pOut, const void *pData, int nData),
-** void *pOut
-**
-**
-** The xOutput callback is invoked zero or more times to return data to
-** the application. The first parameter passed to each call is a copy of the
-** pOut pointer supplied by the application. The second parameter, pData,
-** points to a buffer nData bytes in size containing the chunk of output
-** data being returned. If the xOutput callback successfully processes the
-** supplied data, it should return SQLITE_OK to indicate success. Otherwise,
-** it should return some other SQLite error code. In this case processing
-** is immediately abandoned and the streaming API function returns a copy
-** of the xOutput error code to the application.
-**
-** The sessions module never invokes an xOutput callback with the third
-** parameter set to a value less than or equal to zero. Other than this,
-** no guarantees are made as to the size of the chunks of data returned.
-*/
-SQLITE_API int sqlite3changeset_apply_strm(
- sqlite3 *db, /* Apply change to "main" db of this handle */
- int (*xInput)(void *pIn, void *pData, int *pnData), /* Input function */
- void *pIn, /* First arg for xInput */
- int(*xFilter)(
- void *pCtx, /* Copy of sixth arg to _apply() */
- const char *zTab /* Table name */
- ),
- int(*xConflict)(
- void *pCtx, /* Copy of sixth arg to _apply() */
- int eConflict, /* DATA, MISSING, CONFLICT, CONSTRAINT */
- sqlite3_changeset_iter *p /* Handle describing change and conflict */
- ),
- void *pCtx /* First argument passed to xConflict */
-);
-SQLITE_API int sqlite3changeset_apply_v2_strm(
- sqlite3 *db, /* Apply change to "main" db of this handle */
- int (*xInput)(void *pIn, void *pData, int *pnData), /* Input function */
- void *pIn, /* First arg for xInput */
- int(*xFilter)(
- void *pCtx, /* Copy of sixth arg to _apply() */
- const char *zTab /* Table name */
- ),
- int(*xConflict)(
- void *pCtx, /* Copy of sixth arg to _apply() */
- int eConflict, /* DATA, MISSING, CONFLICT, CONSTRAINT */
- sqlite3_changeset_iter *p /* Handle describing change and conflict */
- ),
- void *pCtx, /* First argument passed to xConflict */
- void **ppRebase, int *pnRebase,
- int flags
-);
-SQLITE_API int sqlite3changeset_concat_strm(
- int (*xInputA)(void *pIn, void *pData, int *pnData),
- void *pInA,
- int (*xInputB)(void *pIn, void *pData, int *pnData),
- void *pInB,
- int (*xOutput)(void *pOut, const void *pData, int nData),
- void *pOut
-);
-SQLITE_API int sqlite3changeset_invert_strm(
- int (*xInput)(void *pIn, void *pData, int *pnData),
- void *pIn,
- int (*xOutput)(void *pOut, const void *pData, int nData),
- void *pOut
-);
-SQLITE_API int sqlite3changeset_start_strm(
- sqlite3_changeset_iter **pp,
- int (*xInput)(void *pIn, void *pData, int *pnData),
- void *pIn
-);
-SQLITE_API int sqlite3session_changeset_strm(
- sqlite3_session *pSession,
- int (*xOutput)(void *pOut, const void *pData, int nData),
- void *pOut
-);
-SQLITE_API int sqlite3session_patchset_strm(
- sqlite3_session *pSession,
- int (*xOutput)(void *pOut, const void *pData, int nData),
- void *pOut
-);
-SQLITE_API int sqlite3changegroup_add_strm(sqlite3_changegroup*,
- int (*xInput)(void *pIn, void *pData, int *pnData),
- void *pIn
-);
-SQLITE_API int sqlite3changegroup_output_strm(sqlite3_changegroup*,
- int (*xOutput)(void *pOut, const void *pData, int nData),
- void *pOut
-);
-SQLITE_API int sqlite3rebaser_rebase_strm(
- sqlite3_rebaser *pRebaser,
- int (*xInput)(void *pIn, void *pData, int *pnData),
- void *pIn,
- int (*xOutput)(void *pOut, const void *pData, int nData),
- void *pOut
-);
-
-
-/*
-** Make sure we can call this stuff from C++.
-*/
-#if 0
-}
-#endif
-
-#endif /* !defined(__SQLITESESSION_H_) && defined(SQLITE_ENABLE_SESSION) */
-
-/******** End of sqlite3session.h *********/
-/******** Begin file fts5.h *********/
-/*
-** 2014 May 31
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** Interfaces to extend FTS5. Using the interfaces defined in this file,
-** FTS5 may be extended with:
-**
-** * custom tokenizers, and
-** * custom auxiliary functions.
-*/
-
-
-#ifndef _FTS5_H
-#define _FTS5_H
-
-
-#if 0
-extern "C" {
-#endif
-
-/*************************************************************************
-** CUSTOM AUXILIARY FUNCTIONS
-**
-** Virtual table implementations may overload SQL functions by implementing
-** the sqlite3_module.xFindFunction() method.
-*/
-
-typedef struct Fts5ExtensionApi Fts5ExtensionApi;
-typedef struct Fts5Context Fts5Context;
-typedef struct Fts5PhraseIter Fts5PhraseIter;
-
-typedef void (*fts5_extension_function)(
- const Fts5ExtensionApi *pApi, /* API offered by current FTS version */
- Fts5Context *pFts, /* First arg to pass to pApi functions */
- sqlite3_context *pCtx, /* Context for returning result/error */
- int nVal, /* Number of values in apVal[] array */
- sqlite3_value **apVal /* Array of trailing arguments */
-);
-
-struct Fts5PhraseIter {
- const unsigned char *a;
- const unsigned char *b;
-};
-
-/*
-** EXTENSION API FUNCTIONS
-**
-** xUserData(pFts):
-** Return a copy of the context pointer the extension function was
-** registered with.
-**
-** xColumnTotalSize(pFts, iCol, pnToken):
-** If parameter iCol is less than zero, set output variable *pnToken
-** to the total number of tokens in the FTS5 table. Or, if iCol is
-** non-negative but less than the number of columns in the table, return
-** the total number of tokens in column iCol, considering all rows in
-** the FTS5 table.
-**
-** If parameter iCol is greater than or equal to the number of columns
-** in the table, SQLITE_RANGE is returned. Or, if an error occurs (e.g.
-** an OOM condition or IO error), an appropriate SQLite error code is
-** returned.
-**
-** xColumnCount(pFts):
-** Return the number of columns in the table.
-**
-** xColumnSize(pFts, iCol, pnToken):
-** If parameter iCol is less than zero, set output variable *pnToken
-** to the total number of tokens in the current row. Or, if iCol is
-** non-negative but less than the number of columns in the table, set
-** *pnToken to the number of tokens in column iCol of the current row.
-**
-** If parameter iCol is greater than or equal to the number of columns
-** in the table, SQLITE_RANGE is returned. Or, if an error occurs (e.g.
-** an OOM condition or IO error), an appropriate SQLite error code is
-** returned.
-**
-** This function may be quite inefficient if used with an FTS5 table
-** created with the "columnsize=0" option.
-**
-** xColumnText:
-** This function attempts to retrieve the text of column iCol of the
-** current document. If successful, (*pz) is set to point to a buffer
-** containing the text in utf-8 encoding, (*pn) is set to the size in bytes
-** (not characters) of the buffer and SQLITE_OK is returned. Otherwise,
-** if an error occurs, an SQLite error code is returned and the final values
-** of (*pz) and (*pn) are undefined.
-**
-** xPhraseCount:
-** Returns the number of phrases in the current query expression.
-**
-** xPhraseSize:
-** Returns the number of tokens in phrase iPhrase of the query. Phrases
-** are numbered starting from zero.
-**
-** xInstCount:
-** Set *pnInst to the total number of occurrences of all phrases within
-** the query within the current row. Return SQLITE_OK if successful, or
-** an error code (i.e. SQLITE_NOMEM) if an error occurs.
-**
-** This API can be quite slow if used with an FTS5 table created with the
-** "detail=none" or "detail=column" option. If the FTS5 table is created
-** with either "detail=none" or "detail=column" and "content=" option
-** (i.e. if it is a contentless table), then this API always returns 0.
-**
-** xInst:
-** Query for the details of phrase match iIdx within the current row.
-** Phrase matches are numbered starting from zero, so the iIdx argument
-** should be greater than or equal to zero and smaller than the value
-** output by xInstCount().
-**
-** Usually, output parameter *piPhrase is set to the phrase number, *piCol
-** to the column in which it occurs and *piOff the token offset of the
-** first token of the phrase. The exception is if the table was created
-** with the offsets=0 option specified. In this case *piOff is always
-** set to -1.
-**
-** Returns SQLITE_OK if successful, or an error code (i.e. SQLITE_NOMEM)
-** if an error occurs.
-**
-** This API can be quite slow if used with an FTS5 table created with the
-** "detail=none" or "detail=column" option.
-**
-** xRowid:
-** Returns the rowid of the current row.
-**
-** xTokenize:
-** Tokenize text using the tokenizer belonging to the FTS5 table.
-**
-** xQueryPhrase(pFts5, iPhrase, pUserData, xCallback):
-** This API function is used to query the FTS table for phrase iPhrase
-** of the current query. Specifically, a query equivalent to:
-**
-** ... FROM ftstable WHERE ftstable MATCH $p ORDER BY rowid
-**
-** with $p set to a phrase equivalent to the phrase iPhrase of the
-** current query is executed. Any column filter that applies to
-** phrase iPhrase of the current query is included in $p. For each
-** row visited, the callback function passed as the fourth argument
-** is invoked. The context and API objects passed to the callback
-** function may be used to access the properties of each matched row.
-** Invoking Api.xUserData() returns a copy of the pointer passed as
-** the third argument to pUserData.
-**
-** If the callback function returns any value other than SQLITE_OK, the
-** query is abandoned and the xQueryPhrase function returns immediately.
-** If the returned value is SQLITE_DONE, xQueryPhrase returns SQLITE_OK.
-** Otherwise, the error code is propagated upwards.
-**
-** If the query runs to completion without incident, SQLITE_OK is returned.
-** Or, if some error occurs before the query completes or is aborted by
-** the callback, an SQLite error code is returned.
-**
-**
-** xSetAuxdata(pFts5, pAux, xDelete)
-**
-** Save the pointer passed as the second argument as the extension functions
-** "auxiliary data". The pointer may then be retrieved by the current or any
-** future invocation of the same fts5 extension function made as part of
-** of the same MATCH query using the xGetAuxdata() API.
-**
-** Each extension function is allocated a single auxiliary data slot for
-** each FTS query (MATCH expression). If the extension function is invoked
-** more than once for a single FTS query, then all invocations share a
-** single auxiliary data context.
-**
-** If there is already an auxiliary data pointer when this function is
-** invoked, then it is replaced by the new pointer. If an xDelete callback
-** was specified along with the original pointer, it is invoked at this
-** point.
-**
-** The xDelete callback, if one is specified, is also invoked on the
-** auxiliary data pointer after the FTS5 query has finished.
-**
-** If an error (e.g. an OOM condition) occurs within this function, an
-** the auxiliary data is set to NULL and an error code returned. If the
-** xDelete parameter was not NULL, it is invoked on the auxiliary data
-** pointer before returning.
-**
-**
-** xGetAuxdata(pFts5, bClear)
-**
-** Returns the current auxiliary data pointer for the fts5 extension
-** function. See the xSetAuxdata() method for details.
-**
-** If the bClear argument is non-zero, then the auxiliary data is cleared
-** (set to NULL) before this function returns. In this case the xDelete,
-** if any, is not invoked.
-**
-**
-** xRowCount(pFts5, pnRow)
-**
-** This function is used to retrieve the total number of rows in the table.
-** In other words, the same value that would be returned by:
-**
-** SELECT count(*) FROM ftstable;
-**
-** xPhraseFirst()
-** This function is used, along with type Fts5PhraseIter and the xPhraseNext
-** method, to iterate through all instances of a single query phrase within
-** the current row. This is the same information as is accessible via the
-** xInstCount/xInst APIs. While the xInstCount/xInst APIs are more convenient
-** to use, this API may be faster under some circumstances. To iterate
-** through instances of phrase iPhrase, use the following code:
-**
-** Fts5PhraseIter iter;
-** int iCol, iOff;
-** for(pApi->xPhraseFirst(pFts, iPhrase, &iter, &iCol, &iOff);
-** iCol>=0;
-** pApi->xPhraseNext(pFts, &iter, &iCol, &iOff)
-** ){
-** // An instance of phrase iPhrase at offset iOff of column iCol
-** }
-**
-** The Fts5PhraseIter structure is defined above. Applications should not
-** modify this structure directly - it should only be used as shown above
-** with the xPhraseFirst() and xPhraseNext() API methods (and by
-** xPhraseFirstColumn() and xPhraseNextColumn() as illustrated below).
-**
-** This API can be quite slow if used with an FTS5 table created with the
-** "detail=none" or "detail=column" option. If the FTS5 table is created
-** with either "detail=none" or "detail=column" and "content=" option
-** (i.e. if it is a contentless table), then this API always iterates
-** through an empty set (all calls to xPhraseFirst() set iCol to -1).
-**
-** xPhraseNext()
-** See xPhraseFirst above.
-**
-** xPhraseFirstColumn()
-** This function and xPhraseNextColumn() are similar to the xPhraseFirst()
-** and xPhraseNext() APIs described above. The difference is that instead
-** of iterating through all instances of a phrase in the current row, these
-** APIs are used to iterate through the set of columns in the current row
-** that contain one or more instances of a specified phrase. For example:
-**
-** Fts5PhraseIter iter;
-** int iCol;
-** for(pApi->xPhraseFirstColumn(pFts, iPhrase, &iter, &iCol);
-** iCol>=0;
-** pApi->xPhraseNextColumn(pFts, &iter, &iCol)
-** ){
-** // Column iCol contains at least one instance of phrase iPhrase
-** }
-**
-** This API can be quite slow if used with an FTS5 table created with the
-** "detail=none" option. If the FTS5 table is created with either
-** "detail=none" "content=" option (i.e. if it is a contentless table),
-** then this API always iterates through an empty set (all calls to
-** xPhraseFirstColumn() set iCol to -1).
-**
-** The information accessed using this API and its companion
-** xPhraseFirstColumn() may also be obtained using xPhraseFirst/xPhraseNext
-** (or xInst/xInstCount). The chief advantage of this API is that it is
-** significantly more efficient than those alternatives when used with
-** "detail=column" tables.
-**
-** xPhraseNextColumn()
-** See xPhraseFirstColumn above.
-*/
-struct Fts5ExtensionApi {
- int iVersion; /* Currently always set to 3 */
-
- void *(*xUserData)(Fts5Context*);
-
- int (*xColumnCount)(Fts5Context*);
- int (*xRowCount)(Fts5Context*, sqlite3_int64 *pnRow);
- int (*xColumnTotalSize)(Fts5Context*, int iCol, sqlite3_int64 *pnToken);
-
- int (*xTokenize)(Fts5Context*,
- const char *pText, int nText, /* Text to tokenize */
- void *pCtx, /* Context passed to xToken() */
- int (*xToken)(void*, int, const char*, int, int, int) /* Callback */
- );
-
- int (*xPhraseCount)(Fts5Context*);
- int (*xPhraseSize)(Fts5Context*, int iPhrase);
-
- int (*xInstCount)(Fts5Context*, int *pnInst);
- int (*xInst)(Fts5Context*, int iIdx, int *piPhrase, int *piCol, int *piOff);
-
- sqlite3_int64 (*xRowid)(Fts5Context*);
- int (*xColumnText)(Fts5Context*, int iCol, const char **pz, int *pn);
- int (*xColumnSize)(Fts5Context*, int iCol, int *pnToken);
-
- int (*xQueryPhrase)(Fts5Context*, int iPhrase, void *pUserData,
- int(*)(const Fts5ExtensionApi*,Fts5Context*,void*)
- );
- int (*xSetAuxdata)(Fts5Context*, void *pAux, void(*xDelete)(void*));
- void *(*xGetAuxdata)(Fts5Context*, int bClear);
-
- int (*xPhraseFirst)(Fts5Context*, int iPhrase, Fts5PhraseIter*, int*, int*);
- void (*xPhraseNext)(Fts5Context*, Fts5PhraseIter*, int *piCol, int *piOff);
-
- int (*xPhraseFirstColumn)(Fts5Context*, int iPhrase, Fts5PhraseIter*, int*);
- void (*xPhraseNextColumn)(Fts5Context*, Fts5PhraseIter*, int *piCol);
-};
-
-/*
-** CUSTOM AUXILIARY FUNCTIONS
-*************************************************************************/
-
-/*************************************************************************
-** CUSTOM TOKENIZERS
-**
-** Applications may also register custom tokenizer types. A tokenizer
-** is registered by providing fts5 with a populated instance of the
-** following structure. All structure methods must be defined, setting
-** any member of the fts5_tokenizer struct to NULL leads to undefined
-** behaviour. The structure methods are expected to function as follows:
-**
-** xCreate:
-** This function is used to allocate and initialize a tokenizer instance.
-** A tokenizer instance is required to actually tokenize text.
-**
-** The first argument passed to this function is a copy of the (void*)
-** pointer provided by the application when the fts5_tokenizer object
-** was registered with FTS5 (the third argument to xCreateTokenizer()).
-** The second and third arguments are an array of nul-terminated strings
-** containing the tokenizer arguments, if any, specified following the
-** tokenizer name as part of the CREATE VIRTUAL TABLE statement used
-** to create the FTS5 table.
-**
-** The final argument is an output variable. If successful, (*ppOut)
-** should be set to point to the new tokenizer handle and SQLITE_OK
-** returned. If an error occurs, some value other than SQLITE_OK should
-** be returned. In this case, fts5 assumes that the final value of *ppOut
-** is undefined.
-**
-** xDelete:
-** This function is invoked to delete a tokenizer handle previously
-** allocated using xCreate(). Fts5 guarantees that this function will
-** be invoked exactly once for each successful call to xCreate().
-**
-** xTokenize:
-** This function is expected to tokenize the nText byte string indicated
-** by argument pText. pText may or may not be nul-terminated. The first
-** argument passed to this function is a pointer to an Fts5Tokenizer object
-** returned by an earlier call to xCreate().
-**
-** The second argument indicates the reason that FTS5 is requesting
-** tokenization of the supplied text. This is always one of the following
-** four values:
-**
-**
FTS5_TOKENIZE_DOCUMENT - A document is being inserted into
-** or removed from the FTS table. The tokenizer is being invoked to
-** determine the set of tokens to add to (or delete from) the
-** FTS index.
-**
-**
FTS5_TOKENIZE_QUERY - A MATCH query is being executed
-** against the FTS index. The tokenizer is being called to tokenize
-** a bareword or quoted string specified as part of the query.
-**
-**
(FTS5_TOKENIZE_QUERY | FTS5_TOKENIZE_PREFIX) - Same as
-** FTS5_TOKENIZE_QUERY, except that the bareword or quoted string is
-** followed by a "*" character, indicating that the last token
-** returned by the tokenizer will be treated as a token prefix.
-**
-**
FTS5_TOKENIZE_AUX - The tokenizer is being invoked to
-** satisfy an fts5_api.xTokenize() request made by an auxiliary
-** function. Or an fts5_api.xColumnSize() request made by the same
-** on a columnsize=0 database.
-**
-**
-** For each token in the input string, the supplied callback xToken() must
-** be invoked. The first argument to it should be a copy of the pointer
-** passed as the second argument to xTokenize(). The third and fourth
-** arguments are a pointer to a buffer containing the token text, and the
-** size of the token in bytes. The 4th and 5th arguments are the byte offsets
-** of the first byte of and first byte immediately following the text from
-** which the token is derived within the input.
-**
-** The second argument passed to the xToken() callback ("tflags") should
-** normally be set to 0. The exception is if the tokenizer supports
-** synonyms. In this case see the discussion below for details.
-**
-** FTS5 assumes the xToken() callback is invoked for each token in the
-** order that they occur within the input text.
-**
-** If an xToken() callback returns any value other than SQLITE_OK, then
-** the tokenization should be abandoned and the xTokenize() method should
-** immediately return a copy of the xToken() return value. Or, if the
-** input buffer is exhausted, xTokenize() should return SQLITE_OK. Finally,
-** if an error occurs with the xTokenize() implementation itself, it
-** may abandon the tokenization and return any error code other than
-** SQLITE_OK or SQLITE_DONE.
-**
-** SYNONYM SUPPORT
-**
-** Custom tokenizers may also support synonyms. Consider a case in which a
-** user wishes to query for a phrase such as "first place". Using the
-** built-in tokenizers, the FTS5 query 'first + place' will match instances
-** of "first place" within the document set, but not alternative forms
-** such as "1st place". In some applications, it would be better to match
-** all instances of "first place" or "1st place" regardless of which form
-** the user specified in the MATCH query text.
-**
-** There are several ways to approach this in FTS5:
-**
-**
By mapping all synonyms to a single token. In this case, the
-** In the above example, this means that the tokenizer returns the
-** same token for inputs "first" and "1st". Say that token is in
-** fact "first", so that when the user inserts the document "I won
-** 1st place" entries are added to the index for tokens "i", "won",
-** "first" and "place". If the user then queries for '1st + place',
-** the tokenizer substitutes "first" for "1st" and the query works
-** as expected.
-**
-**
By adding multiple synonyms for a single term to the FTS index.
-** In this case, when tokenizing query text, the tokenizer may
-** provide multiple synonyms for a single term within the document.
-** FTS5 then queries the index for each synonym individually. For
-** example, faced with the query:
-**
-**
-** ... MATCH 'first place'
-**
-** the tokenizer offers both "1st" and "first" as synonyms for the
-** first token in the MATCH query and FTS5 effectively runs a query
-** similar to:
-**
-**
-** ... MATCH '(first OR 1st) place'
-**
-** except that, for the purposes of auxiliary functions, the query
-** still appears to contain just two phrases - "(first OR 1st)"
-** being treated as a single phrase.
-**
-**
By adding multiple synonyms for a single term to the FTS index.
-** Using this method, when tokenizing document text, the tokenizer
-** provides multiple synonyms for each token. So that when a
-** document such as "I won first place" is tokenized, entries are
-** added to the FTS index for "i", "won", "first", "1st" and
-** "place".
-**
-** This way, even if the tokenizer does not provide synonyms
-** when tokenizing query text (it should not - to do would be
-** inefficient), it doesn't matter if the user queries for
-** 'first + place' or '1st + place', as there are entries in the
-** FTS index corresponding to both forms of the first token.
-**
-**
-** Whether it is parsing document or query text, any call to xToken that
-** specifies a tflags argument with the FTS5_TOKEN_COLOCATED bit
-** is considered to supply a synonym for the previous token. For example,
-** when parsing the document "I won first place", a tokenizer that supports
-** synonyms would call xToken() 5 times, as follows:
-**
-**
-** xToken(pCtx, 0, "i", 1, 0, 1);
-** xToken(pCtx, 0, "won", 3, 2, 5);
-** xToken(pCtx, 0, "first", 5, 6, 11);
-** xToken(pCtx, FTS5_TOKEN_COLOCATED, "1st", 3, 6, 11);
-** xToken(pCtx, 0, "place", 5, 12, 17);
-**
-**
-** It is an error to specify the FTS5_TOKEN_COLOCATED flag the first time
-** xToken() is called. Multiple synonyms may be specified for a single token
-** by making multiple calls to xToken(FTS5_TOKEN_COLOCATED) in sequence.
-** There is no limit to the number of synonyms that may be provided for a
-** single token.
-**
-** In many cases, method (1) above is the best approach. It does not add
-** extra data to the FTS index or require FTS5 to query for multiple terms,
-** so it is efficient in terms of disk space and query speed. However, it
-** does not support prefix queries very well. If, as suggested above, the
-** token "first" is substituted for "1st" by the tokenizer, then the query:
-**
-**
-** ... MATCH '1s*'
-**
-** will not match documents that contain the token "1st" (as the tokenizer
-** will probably not map "1s" to any prefix of "first").
-**
-** For full prefix support, method (3) may be preferred. In this case,
-** because the index contains entries for both "first" and "1st", prefix
-** queries such as 'fi*' or '1s*' will match correctly. However, because
-** extra entries are added to the FTS index, this method uses more space
-** within the database.
-**
-** Method (2) offers a midpoint between (1) and (3). Using this method,
-** a query such as '1s*' will match documents that contain the literal
-** token "1st", but not "first" (assuming the tokenizer is not able to
-** provide synonyms for prefixes). However, a non-prefix query like '1st'
-** will match against "1st" and "first". This method does not require
-** extra disk space, as no extra entries are added to the FTS index.
-** On the other hand, it may require more CPU cycles to run MATCH queries,
-** as separate queries of the FTS index are required for each synonym.
-**
-** When using methods (2) or (3), it is important that the tokenizer only
-** provide synonyms when tokenizing document text (method (2)) or query
-** text (method (3)), not both. Doing so will not cause any errors, but is
-** inefficient.
-*/
-typedef struct Fts5Tokenizer Fts5Tokenizer;
-typedef struct fts5_tokenizer fts5_tokenizer;
-struct fts5_tokenizer {
- int (*xCreate)(void*, const char **azArg, int nArg, Fts5Tokenizer **ppOut);
- void (*xDelete)(Fts5Tokenizer*);
- int (*xTokenize)(Fts5Tokenizer*,
- void *pCtx,
- int flags, /* Mask of FTS5_TOKENIZE_* flags */
- const char *pText, int nText,
- int (*xToken)(
- void *pCtx, /* Copy of 2nd argument to xTokenize() */
- int tflags, /* Mask of FTS5_TOKEN_* flags */
- const char *pToken, /* Pointer to buffer containing token */
- int nToken, /* Size of token in bytes */
- int iStart, /* Byte offset of token within input text */
- int iEnd /* Byte offset of end of token within input text */
- )
- );
-};
-
-/* Flags that may be passed as the third argument to xTokenize() */
-#define FTS5_TOKENIZE_QUERY 0x0001
-#define FTS5_TOKENIZE_PREFIX 0x0002
-#define FTS5_TOKENIZE_DOCUMENT 0x0004
-#define FTS5_TOKENIZE_AUX 0x0008
-
-/* Flags that may be passed by the tokenizer implementation back to FTS5
-** as the third argument to the supplied xToken callback. */
-#define FTS5_TOKEN_COLOCATED 0x0001 /* Same position as prev. token */
-
-/*
-** END OF CUSTOM TOKENIZERS
-*************************************************************************/
-
-/*************************************************************************
-** FTS5 EXTENSION REGISTRATION API
-*/
-typedef struct fts5_api fts5_api;
-struct fts5_api {
- int iVersion; /* Currently always set to 2 */
-
- /* Create a new tokenizer */
- int (*xCreateTokenizer)(
- fts5_api *pApi,
- const char *zName,
- void *pContext,
- fts5_tokenizer *pTokenizer,
- void (*xDestroy)(void*)
- );
-
- /* Find an existing tokenizer */
- int (*xFindTokenizer)(
- fts5_api *pApi,
- const char *zName,
- void **ppContext,
- fts5_tokenizer *pTokenizer
- );
-
- /* Create a new auxiliary function */
- int (*xCreateFunction)(
- fts5_api *pApi,
- const char *zName,
- void *pContext,
- fts5_extension_function xFunction,
- void (*xDestroy)(void*)
- );
-};
-
-/*
-** END OF REGISTRATION API
-*************************************************************************/
-
-#if 0
-} /* end of the 'extern "C"' block */
-#endif
-
-#endif /* _FTS5_H */
-
-/******** End of fts5.h *********/
-
-/************** End of sqlite3.h *********************************************/
-/************** Continuing where we left off in sqliteInt.h ******************/
-
-/*
-** Include the configuration header output by 'configure' if we're using the
-** autoconf-based build
-*/
-#if defined(_HAVE_SQLITE_CONFIG_H) && !defined(SQLITECONFIG_H)
-/* #include "config.h" */
-#define SQLITECONFIG_H 1
-#endif
-
-/************** Include sqliteLimit.h in the middle of sqliteInt.h ***********/
-/************** Begin file sqliteLimit.h *************************************/
-/*
-** 2007 May 7
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-**
-** This file defines various limits of what SQLite can process.
-*/
-
-/*
-** The maximum length of a TEXT or BLOB in bytes. This also
-** limits the size of a row in a table or index.
-**
-** The hard limit is the ability of a 32-bit signed integer
-** to count the size: 2^31-1 or 2147483647.
-*/
-#ifndef SQLITE_MAX_LENGTH
-# define SQLITE_MAX_LENGTH 1000000000
-#endif
-
-/*
-** This is the maximum number of
-**
-** * Columns in a table
-** * Columns in an index
-** * Columns in a view
-** * Terms in the SET clause of an UPDATE statement
-** * Terms in the result set of a SELECT statement
-** * Terms in the GROUP BY or ORDER BY clauses of a SELECT statement.
-** * Terms in the VALUES clause of an INSERT statement
-**
-** The hard upper limit here is 32676. Most database people will
-** tell you that in a well-normalized database, you usually should
-** not have more than a dozen or so columns in any table. And if
-** that is the case, there is no point in having more than a few
-** dozen values in any of the other situations described above.
-*/
-#ifndef SQLITE_MAX_COLUMN
-# define SQLITE_MAX_COLUMN 2000
-#endif
-
-/*
-** The maximum length of a single SQL statement in bytes.
-**
-** It used to be the case that setting this value to zero would
-** turn the limit off. That is no longer true. It is not possible
-** to turn this limit off.
-*/
-#ifndef SQLITE_MAX_SQL_LENGTH
-# define SQLITE_MAX_SQL_LENGTH 1000000000
-#endif
-
-/*
-** The maximum depth of an expression tree. This is limited to
-** some extent by SQLITE_MAX_SQL_LENGTH. But sometime you might
-** want to place more severe limits on the complexity of an
-** expression.
-**
-** A value of 0 used to mean that the limit was not enforced.
-** But that is no longer true. The limit is now strictly enforced
-** at all times.
-*/
-#ifndef SQLITE_MAX_EXPR_DEPTH
-# define SQLITE_MAX_EXPR_DEPTH 1000
-#endif
-
-/*
-** The maximum number of terms in a compound SELECT statement.
-** The code generator for compound SELECT statements does one
-** level of recursion for each term. A stack overflow can result
-** if the number of terms is too large. In practice, most SQL
-** never has more than 3 or 4 terms. Use a value of 0 to disable
-** any limit on the number of terms in a compount SELECT.
-*/
-#ifndef SQLITE_MAX_COMPOUND_SELECT
-# define SQLITE_MAX_COMPOUND_SELECT 500
-#endif
-
-/*
-** The maximum number of opcodes in a VDBE program.
-** Not currently enforced.
-*/
-#ifndef SQLITE_MAX_VDBE_OP
-# define SQLITE_MAX_VDBE_OP 250000000
-#endif
-
-/*
-** The maximum number of arguments to an SQL function.
-*/
-#ifndef SQLITE_MAX_FUNCTION_ARG
-# define SQLITE_MAX_FUNCTION_ARG 127
-#endif
-
-/*
-** The suggested maximum number of in-memory pages to use for
-** the main database table and for temporary tables.
-**
-** IMPLEMENTATION-OF: R-30185-15359 The default suggested cache size is -2000,
-** which means the cache size is limited to 2048000 bytes of memory.
-** IMPLEMENTATION-OF: R-48205-43578 The default suggested cache size can be
-** altered using the SQLITE_DEFAULT_CACHE_SIZE compile-time options.
-*/
-#ifndef SQLITE_DEFAULT_CACHE_SIZE
-# define SQLITE_DEFAULT_CACHE_SIZE -2000
-#endif
-
-/*
-** The default number of frames to accumulate in the log file before
-** checkpointing the database in WAL mode.
-*/
-#ifndef SQLITE_DEFAULT_WAL_AUTOCHECKPOINT
-# define SQLITE_DEFAULT_WAL_AUTOCHECKPOINT 1000
-#endif
-
-/*
-** The maximum number of attached databases. This must be between 0
-** and 125. The upper bound of 125 is because the attached databases are
-** counted using a signed 8-bit integer which has a maximum value of 127
-** and we have to allow 2 extra counts for the "main" and "temp" databases.
-*/
-#ifndef SQLITE_MAX_ATTACHED
-# define SQLITE_MAX_ATTACHED 10
-#endif
-
-
-/*
-** The maximum value of a ?nnn wildcard that the parser will accept.
-*/
-#ifndef SQLITE_MAX_VARIABLE_NUMBER
-# define SQLITE_MAX_VARIABLE_NUMBER 999
-#endif
-
-/* Maximum page size. The upper bound on this value is 65536. This a limit
-** imposed by the use of 16-bit offsets within each page.
-**
-** Earlier versions of SQLite allowed the user to change this value at
-** compile time. This is no longer permitted, on the grounds that it creates
-** a library that is technically incompatible with an SQLite library
-** compiled with a different limit. If a process operating on a database
-** with a page-size of 65536 bytes crashes, then an instance of SQLite
-** compiled with the default page-size limit will not be able to rollback
-** the aborted transaction. This could lead to database corruption.
-*/
-#ifdef SQLITE_MAX_PAGE_SIZE
-# undef SQLITE_MAX_PAGE_SIZE
-#endif
-#define SQLITE_MAX_PAGE_SIZE 65536
-
-
-/*
-** The default size of a database page.
-*/
-#ifndef SQLITE_DEFAULT_PAGE_SIZE
-# define SQLITE_DEFAULT_PAGE_SIZE 4096
-#endif
-#if SQLITE_DEFAULT_PAGE_SIZE>SQLITE_MAX_PAGE_SIZE
-# undef SQLITE_DEFAULT_PAGE_SIZE
-# define SQLITE_DEFAULT_PAGE_SIZE SQLITE_MAX_PAGE_SIZE
-#endif
-
-/*
-** Ordinarily, if no value is explicitly provided, SQLite creates databases
-** with page size SQLITE_DEFAULT_PAGE_SIZE. However, based on certain
-** device characteristics (sector-size and atomic write() support),
-** SQLite may choose a larger value. This constant is the maximum value
-** SQLite will choose on its own.
-*/
-#ifndef SQLITE_MAX_DEFAULT_PAGE_SIZE
-# define SQLITE_MAX_DEFAULT_PAGE_SIZE 8192
-#endif
-#if SQLITE_MAX_DEFAULT_PAGE_SIZE>SQLITE_MAX_PAGE_SIZE
-# undef SQLITE_MAX_DEFAULT_PAGE_SIZE
-# define SQLITE_MAX_DEFAULT_PAGE_SIZE SQLITE_MAX_PAGE_SIZE
-#endif
-
-
-/*
-** Maximum number of pages in one database file.
-**
-** This is really just the default value for the max_page_count pragma.
-** This value can be lowered (or raised) at run-time using that the
-** max_page_count macro.
-*/
-#ifndef SQLITE_MAX_PAGE_COUNT
-# define SQLITE_MAX_PAGE_COUNT 1073741823
-#endif
-
-/*
-** Maximum length (in bytes) of the pattern in a LIKE or GLOB
-** operator.
-*/
-#ifndef SQLITE_MAX_LIKE_PATTERN_LENGTH
-# define SQLITE_MAX_LIKE_PATTERN_LENGTH 50000
-#endif
-
-/*
-** Maximum depth of recursion for triggers.
-**
-** A value of 1 means that a trigger program will not be able to itself
-** fire any triggers. A value of 0 means that no trigger programs at all
-** may be executed.
-*/
-#ifndef SQLITE_MAX_TRIGGER_DEPTH
-# define SQLITE_MAX_TRIGGER_DEPTH 1000
-#endif
-
-/************** End of sqliteLimit.h *****************************************/
-/************** Continuing where we left off in sqliteInt.h ******************/
-
-/* Disable nuisance warnings on Borland compilers */
-#if defined(__BORLANDC__)
-#pragma warn -rch /* unreachable code */
-#pragma warn -ccc /* Condition is always true or false */
-#pragma warn -aus /* Assigned value is never used */
-#pragma warn -csu /* Comparing signed and unsigned */
-#pragma warn -spa /* Suspicious pointer arithmetic */
-#endif
-
-/*
-** Include standard header files as necessary
-*/
-#ifdef HAVE_STDINT_H
-#include
-#endif
-#ifdef HAVE_INTTYPES_H
-#include
-#endif
-
-/*
-** The following macros are used to cast pointers to integers and
-** integers to pointers. The way you do this varies from one compiler
-** to the next, so we have developed the following set of #if statements
-** to generate appropriate macros for a wide range of compilers.
-**
-** The correct "ANSI" way to do this is to use the intptr_t type.
-** Unfortunately, that typedef is not available on all compilers, or
-** if it is available, it requires an #include of specific headers
-** that vary from one machine to the next.
-**
-** Ticket #3860: The llvm-gcc-4.2 compiler from Apple chokes on
-** the ((void*)&((char*)0)[X]) construct. But MSVC chokes on ((void*)(X)).
-** So we have to define the macros in different ways depending on the
-** compiler.
-*/
-#if defined(__PTRDIFF_TYPE__) /* This case should work for GCC */
-# define SQLITE_INT_TO_PTR(X) ((void*)(__PTRDIFF_TYPE__)(X))
-# define SQLITE_PTR_TO_INT(X) ((int)(__PTRDIFF_TYPE__)(X))
-#elif !defined(__GNUC__) /* Works for compilers other than LLVM */
-# define SQLITE_INT_TO_PTR(X) ((void*)&((char*)0)[X])
-# define SQLITE_PTR_TO_INT(X) ((int)(((char*)X)-(char*)0))
-#elif defined(HAVE_STDINT_H) /* Use this case if we have ANSI headers */
-# define SQLITE_INT_TO_PTR(X) ((void*)(intptr_t)(X))
-# define SQLITE_PTR_TO_INT(X) ((int)(intptr_t)(X))
-#else /* Generates a warning - but it always works */
-# define SQLITE_INT_TO_PTR(X) ((void*)(X))
-# define SQLITE_PTR_TO_INT(X) ((int)(X))
-#endif
-
-/*
-** A macro to hint to the compiler that a function should not be
-** inlined.
-*/
-#if defined(__GNUC__)
-# define SQLITE_NOINLINE __attribute__((noinline))
-#elif defined(_MSC_VER) && _MSC_VER>=1310
-# define SQLITE_NOINLINE __declspec(noinline)
-#else
-# define SQLITE_NOINLINE
-#endif
-
-/*
-** Make sure that the compiler intrinsics we desire are enabled when
-** compiling with an appropriate version of MSVC unless prevented by
-** the SQLITE_DISABLE_INTRINSIC define.
-*/
-#if !defined(SQLITE_DISABLE_INTRINSIC)
-# if defined(_MSC_VER) && _MSC_VER>=1400
-# if !defined(_WIN32_WCE)
-# include
-# pragma intrinsic(_byteswap_ushort)
-# pragma intrinsic(_byteswap_ulong)
-# pragma intrinsic(_byteswap_uint64)
-# pragma intrinsic(_ReadWriteBarrier)
-# else
-# include
-# endif
-# endif
-#endif
-
-/*
-** The SQLITE_THREADSAFE macro must be defined as 0, 1, or 2.
-** 0 means mutexes are permanently disable and the library is never
-** threadsafe. 1 means the library is serialized which is the highest
-** level of threadsafety. 2 means the library is multithreaded - multiple
-** threads can use SQLite as long as no two threads try to use the same
-** database connection at the same time.
-**
-** Older versions of SQLite used an optional THREADSAFE macro.
-** We support that for legacy.
-**
-** To ensure that the correct value of "THREADSAFE" is reported when querying
-** for compile-time options at runtime (e.g. "PRAGMA compile_options"), this
-** logic is partially replicated in ctime.c. If it is updated here, it should
-** also be updated there.
-*/
-#if !defined(SQLITE_THREADSAFE)
-# if defined(THREADSAFE)
-# define SQLITE_THREADSAFE THREADSAFE
-# else
-# define SQLITE_THREADSAFE 1 /* IMP: R-07272-22309 */
-# endif
-#endif
-
-/*
-** Powersafe overwrite is on by default. But can be turned off using
-** the -DSQLITE_POWERSAFE_OVERWRITE=0 command-line option.
-*/
-#ifndef SQLITE_POWERSAFE_OVERWRITE
-# define SQLITE_POWERSAFE_OVERWRITE 1
-#endif
-
-/*
-** EVIDENCE-OF: R-25715-37072 Memory allocation statistics are enabled by
-** default unless SQLite is compiled with SQLITE_DEFAULT_MEMSTATUS=0 in
-** which case memory allocation statistics are disabled by default.
-*/
-#if !defined(SQLITE_DEFAULT_MEMSTATUS)
-# define SQLITE_DEFAULT_MEMSTATUS 1
-#endif
-
-/*
-** Exactly one of the following macros must be defined in order to
-** specify which memory allocation subsystem to use.
-**
-** SQLITE_SYSTEM_MALLOC // Use normal system malloc()
-** SQLITE_WIN32_MALLOC // Use Win32 native heap API
-** SQLITE_ZERO_MALLOC // Use a stub allocator that always fails
-** SQLITE_MEMDEBUG // Debugging version of system malloc()
-**
-** On Windows, if the SQLITE_WIN32_MALLOC_VALIDATE macro is defined and the
-** assert() macro is enabled, each call into the Win32 native heap subsystem
-** will cause HeapValidate to be called. If heap validation should fail, an
-** assertion will be triggered.
-**
-** If none of the above are defined, then set SQLITE_SYSTEM_MALLOC as
-** the default.
-*/
-#if defined(SQLITE_SYSTEM_MALLOC) \
- + defined(SQLITE_WIN32_MALLOC) \
- + defined(SQLITE_ZERO_MALLOC) \
- + defined(SQLITE_MEMDEBUG)>1
-# error "Two or more of the following compile-time configuration options\
- are defined but at most one is allowed:\
- SQLITE_SYSTEM_MALLOC, SQLITE_WIN32_MALLOC, SQLITE_MEMDEBUG,\
- SQLITE_ZERO_MALLOC"
-#endif
-#if defined(SQLITE_SYSTEM_MALLOC) \
- + defined(SQLITE_WIN32_MALLOC) \
- + defined(SQLITE_ZERO_MALLOC) \
- + defined(SQLITE_MEMDEBUG)==0
-# define SQLITE_SYSTEM_MALLOC 1
-#endif
-
-/*
-** If SQLITE_MALLOC_SOFT_LIMIT is not zero, then try to keep the
-** sizes of memory allocations below this value where possible.
-*/
-#if !defined(SQLITE_MALLOC_SOFT_LIMIT)
-# define SQLITE_MALLOC_SOFT_LIMIT 1024
-#endif
-
-/*
-** We need to define _XOPEN_SOURCE as follows in order to enable
-** recursive mutexes on most Unix systems and fchmod() on OpenBSD.
-** But _XOPEN_SOURCE define causes problems for Mac OS X, so omit
-** it.
-*/
-#if !defined(_XOPEN_SOURCE) && !defined(__DARWIN__) && !defined(__APPLE__)
-# define _XOPEN_SOURCE 600
-#endif
-
-/*
-** NDEBUG and SQLITE_DEBUG are opposites. It should always be true that
-** defined(NDEBUG)==!defined(SQLITE_DEBUG). If this is not currently true,
-** make it true by defining or undefining NDEBUG.
-**
-** Setting NDEBUG makes the code smaller and faster by disabling the
-** assert() statements in the code. So we want the default action
-** to be for NDEBUG to be set and NDEBUG to be undefined only if SQLITE_DEBUG
-** is set. Thus NDEBUG becomes an opt-in rather than an opt-out
-** feature.
-*/
-#if !defined(NDEBUG) && !defined(SQLITE_DEBUG)
-# define NDEBUG 1
-#endif
-#if defined(NDEBUG) && defined(SQLITE_DEBUG)
-# undef NDEBUG
-#endif
-
-/*
-** Enable SQLITE_ENABLE_EXPLAIN_COMMENTS if SQLITE_DEBUG is turned on.
-*/
-#if !defined(SQLITE_ENABLE_EXPLAIN_COMMENTS) && defined(SQLITE_DEBUG)
-# define SQLITE_ENABLE_EXPLAIN_COMMENTS 1
-#endif
-
-/*
-** The testcase() macro is used to aid in coverage testing. When
-** doing coverage testing, the condition inside the argument to
-** testcase() must be evaluated both true and false in order to
-** get full branch coverage. The testcase() macro is inserted
-** to help ensure adequate test coverage in places where simple
-** condition/decision coverage is inadequate. For example, testcase()
-** can be used to make sure boundary values are tested. For
-** bitmask tests, testcase() can be used to make sure each bit
-** is significant and used at least once. On switch statements
-** where multiple cases go to the same block of code, testcase()
-** can insure that all cases are evaluated.
-**
-*/
-#ifdef SQLITE_COVERAGE_TEST
-SQLITE_PRIVATE void sqlite3Coverage(int);
-# define testcase(X) if( X ){ sqlite3Coverage(__LINE__); }
-#else
-# define testcase(X)
-#endif
-
-/*
-** The TESTONLY macro is used to enclose variable declarations or
-** other bits of code that are needed to support the arguments
-** within testcase() and assert() macros.
-*/
-#if !defined(NDEBUG) || defined(SQLITE_COVERAGE_TEST)
-# define TESTONLY(X) X
-#else
-# define TESTONLY(X)
-#endif
-
-/*
-** Sometimes we need a small amount of code such as a variable initialization
-** to setup for a later assert() statement. We do not want this code to
-** appear when assert() is disabled. The following macro is therefore
-** used to contain that setup code. The "VVA" acronym stands for
-** "Verification, Validation, and Accreditation". In other words, the
-** code within VVA_ONLY() will only run during verification processes.
-*/
-#ifndef NDEBUG
-# define VVA_ONLY(X) X
-#else
-# define VVA_ONLY(X)
-#endif
-
-/*
-** The ALWAYS and NEVER macros surround boolean expressions which
-** are intended to always be true or false, respectively. Such
-** expressions could be omitted from the code completely. But they
-** are included in a few cases in order to enhance the resilience
-** of SQLite to unexpected behavior - to make the code "self-healing"
-** or "ductile" rather than being "brittle" and crashing at the first
-** hint of unplanned behavior.
-**
-** In other words, ALWAYS and NEVER are added for defensive code.
-**
-** When doing coverage testing ALWAYS and NEVER are hard-coded to
-** be true and false so that the unreachable code they specify will
-** not be counted as untested code.
-*/
-#if defined(SQLITE_COVERAGE_TEST) || defined(SQLITE_MUTATION_TEST)
-# define ALWAYS(X) (1)
-# define NEVER(X) (0)
-#elif !defined(NDEBUG)
-# define ALWAYS(X) ((X)?1:(assert(0),0))
-# define NEVER(X) ((X)?(assert(0),1):0)
-#else
-# define ALWAYS(X) (X)
-# define NEVER(X) (X)
-#endif
-
-/*
-** Some conditionals are optimizations only. In other words, if the
-** conditionals are replaced with a constant 1 (true) or 0 (false) then
-** the correct answer is still obtained, though perhaps not as quickly.
-**
-** The following macros mark these optimizations conditionals.
-*/
-#if defined(SQLITE_MUTATION_TEST)
-# define OK_IF_ALWAYS_TRUE(X) (1)
-# define OK_IF_ALWAYS_FALSE(X) (0)
-#else
-# define OK_IF_ALWAYS_TRUE(X) (X)
-# define OK_IF_ALWAYS_FALSE(X) (X)
-#endif
-
-/*
-** Some malloc failures are only possible if SQLITE_TEST_REALLOC_STRESS is
-** defined. We need to defend against those failures when testing with
-** SQLITE_TEST_REALLOC_STRESS, but we don't want the unreachable branches
-** during a normal build. The following macro can be used to disable tests
-** that are always false except when SQLITE_TEST_REALLOC_STRESS is set.
-*/
-#if defined(SQLITE_TEST_REALLOC_STRESS)
-# define ONLY_IF_REALLOC_STRESS(X) (X)
-#elif !defined(NDEBUG)
-# define ONLY_IF_REALLOC_STRESS(X) ((X)?(assert(0),1):0)
-#else
-# define ONLY_IF_REALLOC_STRESS(X) (0)
-#endif
-
-/*
-** Declarations used for tracing the operating system interfaces.
-*/
-#if defined(SQLITE_FORCE_OS_TRACE) || defined(SQLITE_TEST) || \
- (defined(SQLITE_DEBUG) && SQLITE_OS_WIN)
- extern int sqlite3OSTrace;
-# define OSTRACE(X) if( sqlite3OSTrace ) sqlite3DebugPrintf X
-# define SQLITE_HAVE_OS_TRACE
-#else
-# define OSTRACE(X)
-# undef SQLITE_HAVE_OS_TRACE
-#endif
-
-/*
-** Is the sqlite3ErrName() function needed in the build? Currently,
-** it is needed by "mutex_w32.c" (when debugging), "os_win.c" (when
-** OSTRACE is enabled), and by several "test*.c" files (which are
-** compiled using SQLITE_TEST).
-*/
-#if defined(SQLITE_HAVE_OS_TRACE) || defined(SQLITE_TEST) || \
- (defined(SQLITE_DEBUG) && SQLITE_OS_WIN)
-# define SQLITE_NEED_ERR_NAME
-#else
-# undef SQLITE_NEED_ERR_NAME
-#endif
-
-/*
-** SQLITE_ENABLE_EXPLAIN_COMMENTS is incompatible with SQLITE_OMIT_EXPLAIN
-*/
-#ifdef SQLITE_OMIT_EXPLAIN
-# undef SQLITE_ENABLE_EXPLAIN_COMMENTS
-#endif
-
-/*
-** Return true (non-zero) if the input is an integer that is too large
-** to fit in 32-bits. This macro is used inside of various testcase()
-** macros to verify that we have tested SQLite for large-file support.
-*/
-#define IS_BIG_INT(X) (((X)&~(i64)0xffffffff)!=0)
-
-/*
-** The macro unlikely() is a hint that surrounds a boolean
-** expression that is usually false. Macro likely() surrounds
-** a boolean expression that is usually true. These hints could,
-** in theory, be used by the compiler to generate better code, but
-** currently they are just comments for human readers.
-*/
-#define likely(X) (X)
-#define unlikely(X) (X)
-
-/************** Include hash.h in the middle of sqliteInt.h ******************/
-/************** Begin file hash.h ********************************************/
-/*
-** 2001 September 22
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** This is the header file for the generic hash-table implementation
-** used in SQLite.
-*/
-#ifndef SQLITE_HASH_H
-#define SQLITE_HASH_H
-
-/* Forward declarations of structures. */
-typedef struct Hash Hash;
-typedef struct HashElem HashElem;
-
-/* A complete hash table is an instance of the following structure.
-** The internals of this structure are intended to be opaque -- client
-** code should not attempt to access or modify the fields of this structure
-** directly. Change this structure only by using the routines below.
-** However, some of the "procedures" and "functions" for modifying and
-** accessing this structure are really macros, so we can't really make
-** this structure opaque.
-**
-** All elements of the hash table are on a single doubly-linked list.
-** Hash.first points to the head of this list.
-**
-** There are Hash.htsize buckets. Each bucket points to a spot in
-** the global doubly-linked list. The contents of the bucket are the
-** element pointed to plus the next _ht.count-1 elements in the list.
-**
-** Hash.htsize and Hash.ht may be zero. In that case lookup is done
-** by a linear search of the global list. For small tables, the
-** Hash.ht table is never allocated because if there are few elements
-** in the table, it is faster to do a linear search than to manage
-** the hash table.
-*/
-struct Hash {
- unsigned int htsize; /* Number of buckets in the hash table */
- unsigned int count; /* Number of entries in this table */
- HashElem *first; /* The first element of the array */
- struct _ht { /* the hash table */
- int count; /* Number of entries with this hash */
- HashElem *chain; /* Pointer to first entry with this hash */
- } *ht;
-};
-
-/* Each element in the hash table is an instance of the following
-** structure. All elements are stored on a single doubly-linked list.
-**
-** Again, this structure is intended to be opaque, but it can't really
-** be opaque because it is used by macros.
-*/
-struct HashElem {
- HashElem *next, *prev; /* Next and previous elements in the table */
- void *data; /* Data associated with this element */
- const char *pKey; /* Key associated with this element */
-};
-
-/*
-** Access routines. To delete, insert a NULL pointer.
-*/
-SQLITE_PRIVATE void sqlite3HashInit(Hash*);
-SQLITE_PRIVATE void *sqlite3HashInsert(Hash*, const char *pKey, void *pData);
-SQLITE_PRIVATE void *sqlite3HashFind(const Hash*, const char *pKey);
-SQLITE_PRIVATE void sqlite3HashClear(Hash*);
-
-/*
-** Macros for looping over all elements of a hash table. The idiom is
-** like this:
-**
-** Hash h;
-** HashElem *p;
-** ...
-** for(p=sqliteHashFirst(&h); p; p=sqliteHashNext(p)){
-** SomeStructure *pData = sqliteHashData(p);
-** // do something with pData
-** }
-*/
-#define sqliteHashFirst(H) ((H)->first)
-#define sqliteHashNext(E) ((E)->next)
-#define sqliteHashData(E) ((E)->data)
-/* #define sqliteHashKey(E) ((E)->pKey) // NOT USED */
-/* #define sqliteHashKeysize(E) ((E)->nKey) // NOT USED */
-
-/*
-** Number of entries in a hash table
-*/
-/* #define sqliteHashCount(H) ((H)->count) // NOT USED */
-
-#endif /* SQLITE_HASH_H */
-
-/************** End of hash.h ************************************************/
-/************** Continuing where we left off in sqliteInt.h ******************/
-/************** Include parse.h in the middle of sqliteInt.h *****************/
-/************** Begin file parse.h *******************************************/
-#define TK_SEMI 1
-#define TK_EXPLAIN 2
-#define TK_QUERY 3
-#define TK_PLAN 4
-#define TK_BEGIN 5
-#define TK_TRANSACTION 6
-#define TK_DEFERRED 7
-#define TK_IMMEDIATE 8
-#define TK_EXCLUSIVE 9
-#define TK_COMMIT 10
-#define TK_END 11
-#define TK_ROLLBACK 12
-#define TK_SAVEPOINT 13
-#define TK_RELEASE 14
-#define TK_TO 15
-#define TK_TABLE 16
-#define TK_CREATE 17
-#define TK_IF 18
-#define TK_NOT 19
-#define TK_EXISTS 20
-#define TK_TEMP 21
-#define TK_LP 22
-#define TK_RP 23
-#define TK_AS 24
-#define TK_WITHOUT 25
-#define TK_COMMA 26
-#define TK_ABORT 27
-#define TK_ACTION 28
-#define TK_AFTER 29
-#define TK_ANALYZE 30
-#define TK_ASC 31
-#define TK_ATTACH 32
-#define TK_BEFORE 33
-#define TK_BY 34
-#define TK_CASCADE 35
-#define TK_CAST 36
-#define TK_CONFLICT 37
-#define TK_DATABASE 38
-#define TK_DESC 39
-#define TK_DETACH 40
-#define TK_EACH 41
-#define TK_FAIL 42
-#define TK_OR 43
-#define TK_AND 44
-#define TK_IS 45
-#define TK_MATCH 46
-#define TK_LIKE_KW 47
-#define TK_BETWEEN 48
-#define TK_IN 49
-#define TK_ISNULL 50
-#define TK_NOTNULL 51
-#define TK_NE 52
-#define TK_EQ 53
-#define TK_GT 54
-#define TK_LE 55
-#define TK_LT 56
-#define TK_GE 57
-#define TK_ESCAPE 58
-#define TK_ID 59
-#define TK_COLUMNKW 60
-#define TK_DO 61
-#define TK_FOR 62
-#define TK_IGNORE 63
-#define TK_INITIALLY 64
-#define TK_INSTEAD 65
-#define TK_NO 66
-#define TK_KEY 67
-#define TK_OF 68
-#define TK_OFFSET 69
-#define TK_PRAGMA 70
-#define TK_RAISE 71
-#define TK_RECURSIVE 72
-#define TK_REPLACE 73
-#define TK_RESTRICT 74
-#define TK_ROW 75
-#define TK_ROWS 76
-#define TK_TRIGGER 77
-#define TK_VACUUM 78
-#define TK_VIEW 79
-#define TK_VIRTUAL 80
-#define TK_WITH 81
-#define TK_CURRENT 82
-#define TK_FOLLOWING 83
-#define TK_PARTITION 84
-#define TK_PRECEDING 85
-#define TK_RANGE 86
-#define TK_UNBOUNDED 87
-#define TK_REINDEX 88
-#define TK_RENAME 89
-#define TK_CTIME_KW 90
-#define TK_ANY 91
-#define TK_BITAND 92
-#define TK_BITOR 93
-#define TK_LSHIFT 94
-#define TK_RSHIFT 95
-#define TK_PLUS 96
-#define TK_MINUS 97
-#define TK_STAR 98
-#define TK_SLASH 99
-#define TK_REM 100
-#define TK_CONCAT 101
-#define TK_COLLATE 102
-#define TK_BITNOT 103
-#define TK_ON 104
-#define TK_INDEXED 105
-#define TK_STRING 106
-#define TK_JOIN_KW 107
-#define TK_CONSTRAINT 108
-#define TK_DEFAULT 109
-#define TK_NULL 110
-#define TK_PRIMARY 111
-#define TK_UNIQUE 112
-#define TK_CHECK 113
-#define TK_REFERENCES 114
-#define TK_AUTOINCR 115
-#define TK_INSERT 116
-#define TK_DELETE 117
-#define TK_UPDATE 118
-#define TK_SET 119
-#define TK_DEFERRABLE 120
-#define TK_FOREIGN 121
-#define TK_DROP 122
-#define TK_UNION 123
-#define TK_ALL 124
-#define TK_EXCEPT 125
-#define TK_INTERSECT 126
-#define TK_SELECT 127
-#define TK_VALUES 128
-#define TK_DISTINCT 129
-#define TK_DOT 130
-#define TK_FROM 131
-#define TK_JOIN 132
-#define TK_USING 133
-#define TK_ORDER 134
-#define TK_GROUP 135
-#define TK_HAVING 136
-#define TK_LIMIT 137
-#define TK_WHERE 138
-#define TK_INTO 139
-#define TK_NOTHING 140
-#define TK_FLOAT 141
-#define TK_BLOB 142
-#define TK_INTEGER 143
-#define TK_VARIABLE 144
-#define TK_CASE 145
-#define TK_WHEN 146
-#define TK_THEN 147
-#define TK_ELSE 148
-#define TK_INDEX 149
-#define TK_ALTER 150
-#define TK_ADD 151
-#define TK_WINDOW 152
-#define TK_OVER 153
-#define TK_FILTER 154
-#define TK_TRUEFALSE 155
-#define TK_ISNOT 156
-#define TK_FUNCTION 157
-#define TK_COLUMN 158
-#define TK_AGG_FUNCTION 159
-#define TK_AGG_COLUMN 160
-#define TK_UMINUS 161
-#define TK_UPLUS 162
-#define TK_TRUTH 163
-#define TK_REGISTER 164
-#define TK_VECTOR 165
-#define TK_SELECT_COLUMN 166
-#define TK_IF_NULL_ROW 167
-#define TK_ASTERISK 168
-#define TK_SPAN 169
-#define TK_END_OF_FILE 170
-#define TK_UNCLOSED_STRING 171
-#define TK_SPACE 172
-#define TK_ILLEGAL 173
-
-/* The token codes above must all fit in 8 bits */
-#define TKFLG_MASK 0xff
-
-/* Flags that can be added to a token code when it is not
-** being stored in a u8: */
-#define TKFLG_DONTFOLD 0x100 /* Omit constant folding optimizations */
-
-/************** End of parse.h ***********************************************/
-/************** Continuing where we left off in sqliteInt.h ******************/
-#include
-#include
-#include
-#include
-#include
-
-/*
-** Use a macro to replace memcpy() if compiled with SQLITE_INLINE_MEMCPY.
-** This allows better measurements of where memcpy() is used when running
-** cachegrind. But this macro version of memcpy() is very slow so it
-** should not be used in production. This is a performance measurement
-** hack only.
-*/
-#ifdef SQLITE_INLINE_MEMCPY
-# define memcpy(D,S,N) {char*xxd=(char*)(D);const char*xxs=(const char*)(S);\
- int xxn=(N);while(xxn-->0)*(xxd++)=*(xxs++);}
-#endif
-
-/*
-** If compiling for a processor that lacks floating point support,
-** substitute integer for floating-point
-*/
-#ifdef SQLITE_OMIT_FLOATING_POINT
-# define double sqlite_int64
-# define float sqlite_int64
-# define LONGDOUBLE_TYPE sqlite_int64
-# ifndef SQLITE_BIG_DBL
-# define SQLITE_BIG_DBL (((sqlite3_int64)1)<<50)
-# endif
-# define SQLITE_OMIT_DATETIME_FUNCS 1
-# define SQLITE_OMIT_TRACE 1
-# undef SQLITE_MIXED_ENDIAN_64BIT_FLOAT
-# undef SQLITE_HAVE_ISNAN
-#endif
-#ifndef SQLITE_BIG_DBL
-# define SQLITE_BIG_DBL (1e99)
-#endif
-
-/*
-** OMIT_TEMPDB is set to 1 if SQLITE_OMIT_TEMPDB is defined, or 0
-** afterward. Having this macro allows us to cause the C compiler
-** to omit code used by TEMP tables without messy #ifndef statements.
-*/
-#ifdef SQLITE_OMIT_TEMPDB
-#define OMIT_TEMPDB 1
-#else
-#define OMIT_TEMPDB 0
-#endif
-
-/*
-** The "file format" number is an integer that is incremented whenever
-** the VDBE-level file format changes. The following macros define the
-** the default file format for new databases and the maximum file format
-** that the library can read.
-*/
-#define SQLITE_MAX_FILE_FORMAT 4
-#ifndef SQLITE_DEFAULT_FILE_FORMAT
-# define SQLITE_DEFAULT_FILE_FORMAT 4
-#endif
-
-/*
-** Determine whether triggers are recursive by default. This can be
-** changed at run-time using a pragma.
-*/
-#ifndef SQLITE_DEFAULT_RECURSIVE_TRIGGERS
-# define SQLITE_DEFAULT_RECURSIVE_TRIGGERS 0
-#endif
-
-/*
-** Provide a default value for SQLITE_TEMP_STORE in case it is not specified
-** on the command-line
-*/
-#ifndef SQLITE_TEMP_STORE
-# define SQLITE_TEMP_STORE 1
-#endif
-
-/*
-** If no value has been provided for SQLITE_MAX_WORKER_THREADS, or if
-** SQLITE_TEMP_STORE is set to 3 (never use temporary files), set it
-** to zero.
-*/
-#if SQLITE_TEMP_STORE==3 || SQLITE_THREADSAFE==0
-# undef SQLITE_MAX_WORKER_THREADS
-# define SQLITE_MAX_WORKER_THREADS 0
-#endif
-#ifndef SQLITE_MAX_WORKER_THREADS
-# define SQLITE_MAX_WORKER_THREADS 8
-#endif
-#ifndef SQLITE_DEFAULT_WORKER_THREADS
-# define SQLITE_DEFAULT_WORKER_THREADS 0
-#endif
-#if SQLITE_DEFAULT_WORKER_THREADS>SQLITE_MAX_WORKER_THREADS
-# undef SQLITE_MAX_WORKER_THREADS
-# define SQLITE_MAX_WORKER_THREADS SQLITE_DEFAULT_WORKER_THREADS
-#endif
-
-/*
-** The default initial allocation for the pagecache when using separate
-** pagecaches for each database connection. A positive number is the
-** number of pages. A negative number N translations means that a buffer
-** of -1024*N bytes is allocated and used for as many pages as it will hold.
-**
-** The default value of "20" was choosen to minimize the run-time of the
-** speedtest1 test program with options: --shrink-memory --reprepare
-*/
-#ifndef SQLITE_DEFAULT_PCACHE_INITSZ
-# define SQLITE_DEFAULT_PCACHE_INITSZ 20
-#endif
-
-/*
-** Default value for the SQLITE_CONFIG_SORTERREF_SIZE option.
-*/
-#ifndef SQLITE_DEFAULT_SORTERREF_SIZE
-# define SQLITE_DEFAULT_SORTERREF_SIZE 0x7fffffff
-#endif
-
-/*
-** The compile-time options SQLITE_MMAP_READWRITE and
-** SQLITE_ENABLE_BATCH_ATOMIC_WRITE are not compatible with one another.
-** You must choose one or the other (or neither) but not both.
-*/
-#if defined(SQLITE_MMAP_READWRITE) && defined(SQLITE_ENABLE_BATCH_ATOMIC_WRITE)
-#error Cannot use both SQLITE_MMAP_READWRITE and SQLITE_ENABLE_BATCH_ATOMIC_WRITE
-#endif
-
-/*
-** GCC does not define the offsetof() macro so we'll have to do it
-** ourselves.
-*/
-#ifndef offsetof
-#define offsetof(STRUCTURE,FIELD) ((int)((char*)&((STRUCTURE*)0)->FIELD))
-#endif
-
-/*
-** Macros to compute minimum and maximum of two numbers.
-*/
-#ifndef MIN
-# define MIN(A,B) ((A)<(B)?(A):(B))
-#endif
-#ifndef MAX
-# define MAX(A,B) ((A)>(B)?(A):(B))
-#endif
-
-/*
-** Swap two objects of type TYPE.
-*/
-#define SWAP(TYPE,A,B) {TYPE t=A; A=B; B=t;}
-
-/*
-** Check to see if this machine uses EBCDIC. (Yes, believe it or
-** not, there are still machines out there that use EBCDIC.)
-*/
-#if 'A' == '\301'
-# define SQLITE_EBCDIC 1
-#else
-# define SQLITE_ASCII 1
-#endif
-
-/*
-** Integers of known sizes. These typedefs might change for architectures
-** where the sizes very. Preprocessor macros are available so that the
-** types can be conveniently redefined at compile-type. Like this:
-**
-** cc '-DUINTPTR_TYPE=long long int' ...
-*/
-#ifndef UINT32_TYPE
-# ifdef HAVE_UINT32_T
-# define UINT32_TYPE uint32_t
-# else
-# define UINT32_TYPE unsigned int
-# endif
-#endif
-#ifndef UINT16_TYPE
-# ifdef HAVE_UINT16_T
-# define UINT16_TYPE uint16_t
-# else
-# define UINT16_TYPE unsigned short int
-# endif
-#endif
-#ifndef INT16_TYPE
-# ifdef HAVE_INT16_T
-# define INT16_TYPE int16_t
-# else
-# define INT16_TYPE short int
-# endif
-#endif
-#ifndef UINT8_TYPE
-# ifdef HAVE_UINT8_T
-# define UINT8_TYPE uint8_t
-# else
-# define UINT8_TYPE unsigned char
-# endif
-#endif
-#ifndef INT8_TYPE
-# ifdef HAVE_INT8_T
-# define INT8_TYPE int8_t
-# else
-# define INT8_TYPE signed char
-# endif
-#endif
-#ifndef LONGDOUBLE_TYPE
-# define LONGDOUBLE_TYPE long double
-#endif
-typedef sqlite_int64 i64; /* 8-byte signed integer */
-typedef sqlite_uint64 u64; /* 8-byte unsigned integer */
-typedef UINT32_TYPE u32; /* 4-byte unsigned integer */
-typedef UINT16_TYPE u16; /* 2-byte unsigned integer */
-typedef INT16_TYPE i16; /* 2-byte signed integer */
-typedef UINT8_TYPE u8; /* 1-byte unsigned integer */
-typedef INT8_TYPE i8; /* 1-byte signed integer */
-
-/*
-** SQLITE_MAX_U32 is a u64 constant that is the maximum u64 value
-** that can be stored in a u32 without loss of data. The value
-** is 0x00000000ffffffff. But because of quirks of some compilers, we
-** have to specify the value in the less intuitive manner shown:
-*/
-#define SQLITE_MAX_U32 ((((u64)1)<<32)-1)
-
-/*
-** The datatype used to store estimates of the number of rows in a
-** table or index. This is an unsigned integer type. For 99.9% of
-** the world, a 32-bit integer is sufficient. But a 64-bit integer
-** can be used at compile-time if desired.
-*/
-#ifdef SQLITE_64BIT_STATS
- typedef u64 tRowcnt; /* 64-bit only if requested at compile-time */
-#else
- typedef u32 tRowcnt; /* 32-bit is the default */
-#endif
-
-/*
-** Estimated quantities used for query planning are stored as 16-bit
-** logarithms. For quantity X, the value stored is 10*log2(X). This
-** gives a possible range of values of approximately 1.0e986 to 1e-986.
-** But the allowed values are "grainy". Not every value is representable.
-** For example, quantities 16 and 17 are both represented by a LogEst
-** of 40. However, since LogEst quantities are suppose to be estimates,
-** not exact values, this imprecision is not a problem.
-**
-** "LogEst" is short for "Logarithmic Estimate".
-**
-** Examples:
-** 1 -> 0 20 -> 43 10000 -> 132
-** 2 -> 10 25 -> 46 25000 -> 146
-** 3 -> 16 100 -> 66 1000000 -> 199
-** 4 -> 20 1000 -> 99 1048576 -> 200
-** 10 -> 33 1024 -> 100 4294967296 -> 320
-**
-** The LogEst can be negative to indicate fractional values.
-** Examples:
-**
-** 0.5 -> -10 0.1 -> -33 0.0625 -> -40
-*/
-typedef INT16_TYPE LogEst;
-
-/*
-** Set the SQLITE_PTRSIZE macro to the number of bytes in a pointer
-*/
-#ifndef SQLITE_PTRSIZE
-# if defined(__SIZEOF_POINTER__)
-# define SQLITE_PTRSIZE __SIZEOF_POINTER__
-# elif defined(i386) || defined(__i386__) || defined(_M_IX86) || \
- defined(_M_ARM) || defined(__arm__) || defined(__x86) || \
- (defined(__TOS_AIX__) && !defined(__64BIT__))
-# define SQLITE_PTRSIZE 4
-# else
-# define SQLITE_PTRSIZE 8
-# endif
-#endif
-
-/* The uptr type is an unsigned integer large enough to hold a pointer
-*/
-#if defined(HAVE_STDINT_H)
- typedef uintptr_t uptr;
-#elif SQLITE_PTRSIZE==4
- typedef u32 uptr;
-#else
- typedef u64 uptr;
-#endif
-
-/*
-** The SQLITE_WITHIN(P,S,E) macro checks to see if pointer P points to
-** something between S (inclusive) and E (exclusive).
-**
-** In other words, S is a buffer and E is a pointer to the first byte after
-** the end of buffer S. This macro returns true if P points to something
-** contained within the buffer S.
-*/
-#define SQLITE_WITHIN(P,S,E) (((uptr)(P)>=(uptr)(S))&&((uptr)(P)<(uptr)(E)))
-
-
-/*
-** Macros to determine whether the machine is big or little endian,
-** and whether or not that determination is run-time or compile-time.
-**
-** For best performance, an attempt is made to guess at the byte-order
-** using C-preprocessor macros. If that is unsuccessful, or if
-** -DSQLITE_BYTEORDER=0 is set, then byte-order is determined
-** at run-time.
-*/
-#ifndef SQLITE_BYTEORDER
-# if defined(i386) || defined(__i386__) || defined(_M_IX86) || \
- defined(__x86_64) || defined(__x86_64__) || defined(_M_X64) || \
- defined(_M_AMD64) || defined(_M_ARM) || defined(__x86) || \
- defined(__arm__) || defined(_M_ARM64)
-# define SQLITE_BYTEORDER 1234
-# elif defined(sparc) || defined(__ppc__)
-# define SQLITE_BYTEORDER 4321
-# else
-# define SQLITE_BYTEORDER 0
-# endif
-#endif
-#if SQLITE_BYTEORDER==4321
-# define SQLITE_BIGENDIAN 1
-# define SQLITE_LITTLEENDIAN 0
-# define SQLITE_UTF16NATIVE SQLITE_UTF16BE
-#elif SQLITE_BYTEORDER==1234
-# define SQLITE_BIGENDIAN 0
-# define SQLITE_LITTLEENDIAN 1
-# define SQLITE_UTF16NATIVE SQLITE_UTF16LE
-#else
-# ifdef SQLITE_AMALGAMATION
- const int sqlite3one = 1;
-# else
- extern const int sqlite3one;
-# endif
-# define SQLITE_BIGENDIAN (*(char *)(&sqlite3one)==0)
-# define SQLITE_LITTLEENDIAN (*(char *)(&sqlite3one)==1)
-# define SQLITE_UTF16NATIVE (SQLITE_BIGENDIAN?SQLITE_UTF16BE:SQLITE_UTF16LE)
-#endif
-
-/*
-** Constants for the largest and smallest possible 64-bit signed integers.
-** These macros are designed to work correctly on both 32-bit and 64-bit
-** compilers.
-*/
-#define LARGEST_INT64 (0xffffffff|(((i64)0x7fffffff)<<32))
-#define SMALLEST_INT64 (((i64)-1) - LARGEST_INT64)
-
-/*
-** Round up a number to the next larger multiple of 8. This is used
-** to force 8-byte alignment on 64-bit architectures.
-*/
-#define ROUND8(x) (((x)+7)&~7)
-
-/*
-** Round down to the nearest multiple of 8
-*/
-#define ROUNDDOWN8(x) ((x)&~7)
-
-/*
-** Assert that the pointer X is aligned to an 8-byte boundary. This
-** macro is used only within assert() to verify that the code gets
-** all alignment restrictions correct.
-**
-** Except, if SQLITE_4_BYTE_ALIGNED_MALLOC is defined, then the
-** underlying malloc() implementation might return us 4-byte aligned
-** pointers. In that case, only verify 4-byte alignment.
-*/
-#ifdef SQLITE_4_BYTE_ALIGNED_MALLOC
-# define EIGHT_BYTE_ALIGNMENT(X) ((((char*)(X) - (char*)0)&3)==0)
-#else
-# define EIGHT_BYTE_ALIGNMENT(X) ((((char*)(X) - (char*)0)&7)==0)
-#endif
-
-/*
-** Disable MMAP on platforms where it is known to not work
-*/
-#if defined(__OpenBSD__) || defined(__QNXNTO__)
-# undef SQLITE_MAX_MMAP_SIZE
-# define SQLITE_MAX_MMAP_SIZE 0
-#endif
-
-/*
-** Default maximum size of memory used by memory-mapped I/O in the VFS
-*/
-#ifdef __APPLE__
-# include
-#endif
-#ifndef SQLITE_MAX_MMAP_SIZE
-# if defined(__linux__) \
- || defined(_WIN32) \
- || (defined(__APPLE__) && defined(__MACH__)) \
- || defined(__sun) \
- || defined(__FreeBSD__) \
- || defined(__DragonFly__)
-# define SQLITE_MAX_MMAP_SIZE 0x7fff0000 /* 2147418112 */
-# else
-# define SQLITE_MAX_MMAP_SIZE 0
-# endif
-#endif
-
-/*
-** The default MMAP_SIZE is zero on all platforms. Or, even if a larger
-** default MMAP_SIZE is specified at compile-time, make sure that it does
-** not exceed the maximum mmap size.
-*/
-#ifndef SQLITE_DEFAULT_MMAP_SIZE
-# define SQLITE_DEFAULT_MMAP_SIZE 0
-#endif
-#if SQLITE_DEFAULT_MMAP_SIZE>SQLITE_MAX_MMAP_SIZE
-# undef SQLITE_DEFAULT_MMAP_SIZE
-# define SQLITE_DEFAULT_MMAP_SIZE SQLITE_MAX_MMAP_SIZE
-#endif
-
-/*
-** Only one of SQLITE_ENABLE_STAT3 or SQLITE_ENABLE_STAT4 can be defined.
-** Priority is given to SQLITE_ENABLE_STAT4. If either are defined, also
-** define SQLITE_ENABLE_STAT3_OR_STAT4
-*/
-#ifdef SQLITE_ENABLE_STAT4
-# undef SQLITE_ENABLE_STAT3
-# define SQLITE_ENABLE_STAT3_OR_STAT4 1
-#elif SQLITE_ENABLE_STAT3
-# define SQLITE_ENABLE_STAT3_OR_STAT4 1
-#elif SQLITE_ENABLE_STAT3_OR_STAT4
-# undef SQLITE_ENABLE_STAT3_OR_STAT4
-#endif
-
-/*
-** SELECTTRACE_ENABLED will be either 1 or 0 depending on whether or not
-** the Select query generator tracing logic is turned on.
-*/
-#if defined(SQLITE_ENABLE_SELECTTRACE)
-# define SELECTTRACE_ENABLED 1
-#else
-# define SELECTTRACE_ENABLED 0
-#endif
-
-/*
-** An instance of the following structure is used to store the busy-handler
-** callback for a given sqlite handle.
-**
-** The sqlite.busyHandler member of the sqlite struct contains the busy
-** callback for the database handle. Each pager opened via the sqlite
-** handle is passed a pointer to sqlite.busyHandler. The busy-handler
-** callback is currently invoked only from within pager.c.
-*/
-typedef struct BusyHandler BusyHandler;
-struct BusyHandler {
- int (*xBusyHandler)(void *,int); /* The busy callback */
- void *pBusyArg; /* First arg to busy callback */
- int nBusy; /* Incremented with each busy call */
- u8 bExtraFileArg; /* Include sqlite3_file as callback arg */
-};
-
-/*
-** Name of the master database table. The master database table
-** is a special table that holds the names and attributes of all
-** user tables and indices.
-*/
-#define MASTER_NAME "sqlite_master"
-#define TEMP_MASTER_NAME "sqlite_temp_master"
-
-/*
-** The root-page of the master database table.
-*/
-#define MASTER_ROOT 1
-
-/*
-** The name of the schema table.
-*/
-#define SCHEMA_TABLE(x) ((!OMIT_TEMPDB)&&(x==1)?TEMP_MASTER_NAME:MASTER_NAME)
-
-/*
-** A convenience macro that returns the number of elements in
-** an array.
-*/
-#define ArraySize(X) ((int)(sizeof(X)/sizeof(X[0])))
-
-/*
-** Determine if the argument is a power of two
-*/
-#define IsPowerOfTwo(X) (((X)&((X)-1))==0)
-
-/*
-** The following value as a destructor means to use sqlite3DbFree().
-** The sqlite3DbFree() routine requires two parameters instead of the
-** one parameter that destructors normally want. So we have to introduce
-** this magic value that the code knows to handle differently. Any
-** pointer will work here as long as it is distinct from SQLITE_STATIC
-** and SQLITE_TRANSIENT.
-*/
-#define SQLITE_DYNAMIC ((sqlite3_destructor_type)sqlite3MallocSize)
-
-/*
-** When SQLITE_OMIT_WSD is defined, it means that the target platform does
-** not support Writable Static Data (WSD) such as global and static variables.
-** All variables must either be on the stack or dynamically allocated from
-** the heap. When WSD is unsupported, the variable declarations scattered
-** throughout the SQLite code must become constants instead. The SQLITE_WSD
-** macro is used for this purpose. And instead of referencing the variable
-** directly, we use its constant as a key to lookup the run-time allocated
-** buffer that holds real variable. The constant is also the initializer
-** for the run-time allocated buffer.
-**
-** In the usual case where WSD is supported, the SQLITE_WSD and GLOBAL
-** macros become no-ops and have zero performance impact.
-*/
-#ifdef SQLITE_OMIT_WSD
- #define SQLITE_WSD const
- #define GLOBAL(t,v) (*(t*)sqlite3_wsd_find((void*)&(v), sizeof(v)))
- #define sqlite3GlobalConfig GLOBAL(struct Sqlite3Config, sqlite3Config)
-SQLITE_API int sqlite3_wsd_init(int N, int J);
-SQLITE_API void *sqlite3_wsd_find(void *K, int L);
-#else
- #define SQLITE_WSD
- #define GLOBAL(t,v) v
- #define sqlite3GlobalConfig sqlite3Config
-#endif
-
-/*
-** The following macros are used to suppress compiler warnings and to
-** make it clear to human readers when a function parameter is deliberately
-** left unused within the body of a function. This usually happens when
-** a function is called via a function pointer. For example the
-** implementation of an SQL aggregate step callback may not use the
-** parameter indicating the number of arguments passed to the aggregate,
-** if it knows that this is enforced elsewhere.
-**
-** When a function parameter is not used at all within the body of a function,
-** it is generally named "NotUsed" or "NotUsed2" to make things even clearer.
-** However, these macros may also be used to suppress warnings related to
-** parameters that may or may not be used depending on compilation options.
-** For example those parameters only used in assert() statements. In these
-** cases the parameters are named as per the usual conventions.
-*/
-#define UNUSED_PARAMETER(x) (void)(x)
-#define UNUSED_PARAMETER2(x,y) UNUSED_PARAMETER(x),UNUSED_PARAMETER(y)
-
-/*
-** Forward references to structures
-*/
-typedef struct AggInfo AggInfo;
-typedef struct AuthContext AuthContext;
-typedef struct AutoincInfo AutoincInfo;
-typedef struct Bitvec Bitvec;
-typedef struct CollSeq CollSeq;
-typedef struct Column Column;
-typedef struct Db Db;
-typedef struct Schema Schema;
-typedef struct Expr Expr;
-typedef struct ExprList ExprList;
-typedef struct FKey FKey;
-typedef struct FuncDestructor FuncDestructor;
-typedef struct FuncDef FuncDef;
-typedef struct FuncDefHash FuncDefHash;
-typedef struct IdList IdList;
-typedef struct Index Index;
-typedef struct IndexSample IndexSample;
-typedef struct KeyClass KeyClass;
-typedef struct KeyInfo KeyInfo;
-typedef struct Lookaside Lookaside;
-typedef struct LookasideSlot LookasideSlot;
-typedef struct Module Module;
-typedef struct NameContext NameContext;
-typedef struct Parse Parse;
-typedef struct PreUpdate PreUpdate;
-typedef struct PrintfArguments PrintfArguments;
-typedef struct RenameToken RenameToken;
-typedef struct RowSet RowSet;
-typedef struct Savepoint Savepoint;
-typedef struct Select Select;
-typedef struct SQLiteThread SQLiteThread;
-typedef struct SelectDest SelectDest;
-typedef struct SrcList SrcList;
-typedef struct sqlite3_str StrAccum; /* Internal alias for sqlite3_str */
-typedef struct Table Table;
-typedef struct TableLock TableLock;
-typedef struct Token Token;
-typedef struct TreeView TreeView;
-typedef struct Trigger Trigger;
-typedef struct TriggerPrg TriggerPrg;
-typedef struct TriggerStep TriggerStep;
-typedef struct UnpackedRecord UnpackedRecord;
-typedef struct Upsert Upsert;
-typedef struct VTable VTable;
-typedef struct VtabCtx VtabCtx;
-typedef struct Walker Walker;
-typedef struct WhereInfo WhereInfo;
-typedef struct Window Window;
-typedef struct With With;
-
-
-/*
-** The bitmask datatype defined below is used for various optimizations.
-**
-** Changing this from a 64-bit to a 32-bit type limits the number of
-** tables in a join to 32 instead of 64. But it also reduces the size
-** of the library by 738 bytes on ix86.
-*/
-#ifdef SQLITE_BITMASK_TYPE
- typedef SQLITE_BITMASK_TYPE Bitmask;
-#else
- typedef u64 Bitmask;
-#endif
-
-/*
-** The number of bits in a Bitmask. "BMS" means "BitMask Size".
-*/
-#define BMS ((int)(sizeof(Bitmask)*8))
-
-/*
-** A bit in a Bitmask
-*/
-#define MASKBIT(n) (((Bitmask)1)<<(n))
-#define MASKBIT32(n) (((unsigned int)1)<<(n))
-#define ALLBITS ((Bitmask)-1)
-
-/* A VList object records a mapping between parameters/variables/wildcards
-** in the SQL statement (such as $abc, @pqr, or :xyz) and the integer
-** variable number associated with that parameter. See the format description
-** on the sqlite3VListAdd() routine for more information. A VList is really
-** just an array of integers.
-*/
-typedef int VList;
-
-/*
-** Defer sourcing vdbe.h and btree.h until after the "u8" and
-** "BusyHandler" typedefs. vdbe.h also requires a few of the opaque
-** pointer types (i.e. FuncDef) defined above.
-*/
-/************** Include btree.h in the middle of sqliteInt.h *****************/
-/************** Begin file btree.h *******************************************/
-/*
-** 2001 September 15
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** This header file defines the interface that the sqlite B-Tree file
-** subsystem. See comments in the source code for a detailed description
-** of what each interface routine does.
-*/
-#ifndef SQLITE_BTREE_H
-#define SQLITE_BTREE_H
-
-/* TODO: This definition is just included so other modules compile. It
-** needs to be revisited.
-*/
-#define SQLITE_N_BTREE_META 16
-
-/*
-** If defined as non-zero, auto-vacuum is enabled by default. Otherwise
-** it must be turned on for each database using "PRAGMA auto_vacuum = 1".
-*/
-#ifndef SQLITE_DEFAULT_AUTOVACUUM
- #define SQLITE_DEFAULT_AUTOVACUUM 0
-#endif
-
-#define BTREE_AUTOVACUUM_NONE 0 /* Do not do auto-vacuum */
-#define BTREE_AUTOVACUUM_FULL 1 /* Do full auto-vacuum */
-#define BTREE_AUTOVACUUM_INCR 2 /* Incremental vacuum */
-
-/*
-** Forward declarations of structure
-*/
-typedef struct Btree Btree;
-typedef struct BtCursor BtCursor;
-typedef struct BtShared BtShared;
-typedef struct BtreePayload BtreePayload;
-
-
-SQLITE_PRIVATE int sqlite3BtreeOpen(
- sqlite3_vfs *pVfs, /* VFS to use with this b-tree */
- const char *zFilename, /* Name of database file to open */
- sqlite3 *db, /* Associated database connection */
- Btree **ppBtree, /* Return open Btree* here */
- int flags, /* Flags */
- int vfsFlags /* Flags passed through to VFS open */
-);
-
-/* The flags parameter to sqlite3BtreeOpen can be the bitwise or of the
-** following values.
-**
-** NOTE: These values must match the corresponding PAGER_ values in
-** pager.h.
-*/
-#define BTREE_OMIT_JOURNAL 1 /* Do not create or use a rollback journal */
-#define BTREE_MEMORY 2 /* This is an in-memory DB */
-#define BTREE_SINGLE 4 /* The file contains at most 1 b-tree */
-#define BTREE_UNORDERED 8 /* Use of a hash implementation is OK */
-
-SQLITE_PRIVATE int sqlite3BtreeClose(Btree*);
-SQLITE_PRIVATE int sqlite3BtreeSetCacheSize(Btree*,int);
-SQLITE_PRIVATE int sqlite3BtreeSetSpillSize(Btree*,int);
-#if SQLITE_MAX_MMAP_SIZE>0
-SQLITE_PRIVATE int sqlite3BtreeSetMmapLimit(Btree*,sqlite3_int64);
-#endif
-SQLITE_PRIVATE int sqlite3BtreeSetPagerFlags(Btree*,unsigned);
-SQLITE_PRIVATE int sqlite3BtreeSetPageSize(Btree *p, int nPagesize, int nReserve, int eFix);
-SQLITE_PRIVATE int sqlite3BtreeGetPageSize(Btree*);
-SQLITE_PRIVATE int sqlite3BtreeMaxPageCount(Btree*,int);
-SQLITE_PRIVATE u32 sqlite3BtreeLastPage(Btree*);
-SQLITE_PRIVATE int sqlite3BtreeSecureDelete(Btree*,int);
-SQLITE_PRIVATE int sqlite3BtreeGetOptimalReserve(Btree*);
-SQLITE_PRIVATE int sqlite3BtreeGetReserveNoMutex(Btree *p);
-SQLITE_PRIVATE int sqlite3BtreeSetAutoVacuum(Btree *, int);
-SQLITE_PRIVATE int sqlite3BtreeGetAutoVacuum(Btree *);
-SQLITE_PRIVATE int sqlite3BtreeBeginTrans(Btree*,int,int*);
-SQLITE_PRIVATE int sqlite3BtreeCommitPhaseOne(Btree*, const char *zMaster);
-SQLITE_PRIVATE int sqlite3BtreeCommitPhaseTwo(Btree*, int);
-SQLITE_PRIVATE int sqlite3BtreeCommit(Btree*);
-SQLITE_PRIVATE int sqlite3BtreeRollback(Btree*,int,int);
-SQLITE_PRIVATE int sqlite3BtreeBeginStmt(Btree*,int);
-SQLITE_PRIVATE int sqlite3BtreeCreateTable(Btree*, int*, int flags);
-SQLITE_PRIVATE int sqlite3BtreeIsInTrans(Btree*);
-SQLITE_PRIVATE int sqlite3BtreeIsInReadTrans(Btree*);
-SQLITE_PRIVATE int sqlite3BtreeIsInBackup(Btree*);
-SQLITE_PRIVATE void *sqlite3BtreeSchema(Btree *, int, void(*)(void *));
-SQLITE_PRIVATE int sqlite3BtreeSchemaLocked(Btree *pBtree);
-#ifndef SQLITE_OMIT_SHARED_CACHE
-SQLITE_PRIVATE int sqlite3BtreeLockTable(Btree *pBtree, int iTab, u8 isWriteLock);
-#endif
-SQLITE_PRIVATE int sqlite3BtreeSavepoint(Btree *, int, int);
-
-SQLITE_PRIVATE const char *sqlite3BtreeGetFilename(Btree *);
-SQLITE_PRIVATE const char *sqlite3BtreeGetJournalname(Btree *);
-SQLITE_PRIVATE int sqlite3BtreeCopyFile(Btree *, Btree *);
-
-SQLITE_PRIVATE int sqlite3BtreeIncrVacuum(Btree *);
-
-/* The flags parameter to sqlite3BtreeCreateTable can be the bitwise OR
-** of the flags shown below.
-**
-** Every SQLite table must have either BTREE_INTKEY or BTREE_BLOBKEY set.
-** With BTREE_INTKEY, the table key is a 64-bit integer and arbitrary data
-** is stored in the leaves. (BTREE_INTKEY is used for SQL tables.) With
-** BTREE_BLOBKEY, the key is an arbitrary BLOB and no content is stored
-** anywhere - the key is the content. (BTREE_BLOBKEY is used for SQL
-** indices.)
-*/
-#define BTREE_INTKEY 1 /* Table has only 64-bit signed integer keys */
-#define BTREE_BLOBKEY 2 /* Table has keys only - no data */
-
-SQLITE_PRIVATE int sqlite3BtreeDropTable(Btree*, int, int*);
-SQLITE_PRIVATE int sqlite3BtreeClearTable(Btree*, int, int*);
-SQLITE_PRIVATE int sqlite3BtreeClearTableOfCursor(BtCursor*);
-SQLITE_PRIVATE int sqlite3BtreeTripAllCursors(Btree*, int, int);
-
-SQLITE_PRIVATE void sqlite3BtreeGetMeta(Btree *pBtree, int idx, u32 *pValue);
-SQLITE_PRIVATE int sqlite3BtreeUpdateMeta(Btree*, int idx, u32 value);
-
-SQLITE_PRIVATE int sqlite3BtreeNewDb(Btree *p);
-
-/*
-** The second parameter to sqlite3BtreeGetMeta or sqlite3BtreeUpdateMeta
-** should be one of the following values. The integer values are assigned
-** to constants so that the offset of the corresponding field in an
-** SQLite database header may be found using the following formula:
-**
-** offset = 36 + (idx * 4)
-**
-** For example, the free-page-count field is located at byte offset 36 of
-** the database file header. The incr-vacuum-flag field is located at
-** byte offset 64 (== 36+4*7).
-**
-** The BTREE_DATA_VERSION value is not really a value stored in the header.
-** It is a read-only number computed by the pager. But we merge it with
-** the header value access routines since its access pattern is the same.
-** Call it a "virtual meta value".
-*/
-#define BTREE_FREE_PAGE_COUNT 0
-#define BTREE_SCHEMA_VERSION 1
-#define BTREE_FILE_FORMAT 2
-#define BTREE_DEFAULT_CACHE_SIZE 3
-#define BTREE_LARGEST_ROOT_PAGE 4
-#define BTREE_TEXT_ENCODING 5
-#define BTREE_USER_VERSION 6
-#define BTREE_INCR_VACUUM 7
-#define BTREE_APPLICATION_ID 8
-#define BTREE_DATA_VERSION 15 /* A virtual meta-value */
-
-/*
-** Kinds of hints that can be passed into the sqlite3BtreeCursorHint()
-** interface.
-**
-** BTREE_HINT_RANGE (arguments: Expr*, Mem*)
-**
-** The first argument is an Expr* (which is guaranteed to be constant for
-** the lifetime of the cursor) that defines constraints on which rows
-** might be fetched with this cursor. The Expr* tree may contain
-** TK_REGISTER nodes that refer to values stored in the array of registers
-** passed as the second parameter. In other words, if Expr.op==TK_REGISTER
-** then the value of the node is the value in Mem[pExpr.iTable]. Any
-** TK_COLUMN node in the expression tree refers to the Expr.iColumn-th
-** column of the b-tree of the cursor. The Expr tree will not contain
-** any function calls nor subqueries nor references to b-trees other than
-** the cursor being hinted.
-**
-** The design of the _RANGE hint is aid b-tree implementations that try
-** to prefetch content from remote machines - to provide those
-** implementations with limits on what needs to be prefetched and thereby
-** reduce network bandwidth.
-**
-** Note that BTREE_HINT_FLAGS with BTREE_BULKLOAD is the only hint used by
-** standard SQLite. The other hints are provided for extentions that use
-** the SQLite parser and code generator but substitute their own storage
-** engine.
-*/
-#define BTREE_HINT_RANGE 0 /* Range constraints on queries */
-
-/*
-** Values that may be OR'd together to form the argument to the
-** BTREE_HINT_FLAGS hint for sqlite3BtreeCursorHint():
-**
-** The BTREE_BULKLOAD flag is set on index cursors when the index is going
-** to be filled with content that is already in sorted order.
-**
-** The BTREE_SEEK_EQ flag is set on cursors that will get OP_SeekGE or
-** OP_SeekLE opcodes for a range search, but where the range of entries
-** selected will all have the same key. In other words, the cursor will
-** be used only for equality key searches.
-**
-*/
-#define BTREE_BULKLOAD 0x00000001 /* Used to full index in sorted order */
-#define BTREE_SEEK_EQ 0x00000002 /* EQ seeks only - no range seeks */
-
-/*
-** Flags passed as the third argument to sqlite3BtreeCursor().
-**
-** For read-only cursors the wrFlag argument is always zero. For read-write
-** cursors it may be set to either (BTREE_WRCSR|BTREE_FORDELETE) or just
-** (BTREE_WRCSR). If the BTREE_FORDELETE bit is set, then the cursor will
-** only be used by SQLite for the following:
-**
-** * to seek to and then delete specific entries, and/or
-**
-** * to read values that will be used to create keys that other
-** BTREE_FORDELETE cursors will seek to and delete.
-**
-** The BTREE_FORDELETE flag is an optimization hint. It is not used by
-** by this, the native b-tree engine of SQLite, but it is available to
-** alternative storage engines that might be substituted in place of this
-** b-tree system. For alternative storage engines in which a delete of
-** the main table row automatically deletes corresponding index rows,
-** the FORDELETE flag hint allows those alternative storage engines to
-** skip a lot of work. Namely: FORDELETE cursors may treat all SEEK
-** and DELETE operations as no-ops, and any READ operation against a
-** FORDELETE cursor may return a null row: 0x01 0x00.
-*/
-#define BTREE_WRCSR 0x00000004 /* read-write cursor */
-#define BTREE_FORDELETE 0x00000008 /* Cursor is for seek/delete only */
-
-SQLITE_PRIVATE int sqlite3BtreeCursor(
- Btree*, /* BTree containing table to open */
- int iTable, /* Index of root page */
- int wrFlag, /* 1 for writing. 0 for read-only */
- struct KeyInfo*, /* First argument to compare function */
- BtCursor *pCursor /* Space to write cursor structure */
-);
-SQLITE_PRIVATE BtCursor *sqlite3BtreeFakeValidCursor(void);
-SQLITE_PRIVATE int sqlite3BtreeCursorSize(void);
-SQLITE_PRIVATE void sqlite3BtreeCursorZero(BtCursor*);
-SQLITE_PRIVATE void sqlite3BtreeCursorHintFlags(BtCursor*, unsigned);
-#ifdef SQLITE_ENABLE_CURSOR_HINTS
-SQLITE_PRIVATE void sqlite3BtreeCursorHint(BtCursor*, int, ...);
-#endif
-
-SQLITE_PRIVATE int sqlite3BtreeCloseCursor(BtCursor*);
-SQLITE_PRIVATE int sqlite3BtreeMovetoUnpacked(
- BtCursor*,
- UnpackedRecord *pUnKey,
- i64 intKey,
- int bias,
- int *pRes
-);
-SQLITE_PRIVATE int sqlite3BtreeCursorHasMoved(BtCursor*);
-SQLITE_PRIVATE int sqlite3BtreeCursorRestore(BtCursor*, int*);
-SQLITE_PRIVATE int sqlite3BtreeDelete(BtCursor*, u8 flags);
-
-/* Allowed flags for sqlite3BtreeDelete() and sqlite3BtreeInsert() */
-#define BTREE_SAVEPOSITION 0x02 /* Leave cursor pointing at NEXT or PREV */
-#define BTREE_AUXDELETE 0x04 /* not the primary delete operation */
-#define BTREE_APPEND 0x08 /* Insert is likely an append */
-
-/* An instance of the BtreePayload object describes the content of a single
-** entry in either an index or table btree.
-**
-** Index btrees (used for indexes and also WITHOUT ROWID tables) contain
-** an arbitrary key and no data. These btrees have pKey,nKey set to the
-** key and the pData,nData,nZero fields are uninitialized. The aMem,nMem
-** fields give an array of Mem objects that are a decomposition of the key.
-** The nMem field might be zero, indicating that no decomposition is available.
-**
-** Table btrees (used for rowid tables) contain an integer rowid used as
-** the key and passed in the nKey field. The pKey field is zero.
-** pData,nData hold the content of the new entry. nZero extra zero bytes
-** are appended to the end of the content when constructing the entry.
-** The aMem,nMem fields are uninitialized for table btrees.
-**
-** Field usage summary:
-**
-** Table BTrees Index Btrees
-**
-** pKey always NULL encoded key
-** nKey the ROWID length of pKey
-** pData data not used
-** aMem not used decomposed key value
-** nMem not used entries in aMem
-** nData length of pData not used
-** nZero extra zeros after pData not used
-**
-** This object is used to pass information into sqlite3BtreeInsert(). The
-** same information used to be passed as five separate parameters. But placing
-** the information into this object helps to keep the interface more
-** organized and understandable, and it also helps the resulting code to
-** run a little faster by using fewer registers for parameter passing.
-*/
-struct BtreePayload {
- const void *pKey; /* Key content for indexes. NULL for tables */
- sqlite3_int64 nKey; /* Size of pKey for indexes. PRIMARY KEY for tabs */
- const void *pData; /* Data for tables. */
- sqlite3_value *aMem; /* First of nMem value in the unpacked pKey */
- u16 nMem; /* Number of aMem[] value. Might be zero */
- int nData; /* Size of pData. 0 if none. */
- int nZero; /* Extra zero data appended after pData,nData */
-};
-
-SQLITE_PRIVATE int sqlite3BtreeInsert(BtCursor*, const BtreePayload *pPayload,
- int flags, int seekResult);
-SQLITE_PRIVATE int sqlite3BtreeFirst(BtCursor*, int *pRes);
-#ifndef SQLITE_OMIT_WINDOWFUNC
-SQLITE_PRIVATE void sqlite3BtreeSkipNext(BtCursor*);
-#endif
-SQLITE_PRIVATE int sqlite3BtreeLast(BtCursor*, int *pRes);
-SQLITE_PRIVATE int sqlite3BtreeNext(BtCursor*, int flags);
-SQLITE_PRIVATE int sqlite3BtreeEof(BtCursor*);
-SQLITE_PRIVATE int sqlite3BtreePrevious(BtCursor*, int flags);
-SQLITE_PRIVATE i64 sqlite3BtreeIntegerKey(BtCursor*);
-#ifdef SQLITE_ENABLE_OFFSET_SQL_FUNC
-SQLITE_PRIVATE i64 sqlite3BtreeOffset(BtCursor*);
-#endif
-SQLITE_PRIVATE int sqlite3BtreePayload(BtCursor*, u32 offset, u32 amt, void*);
-SQLITE_PRIVATE const void *sqlite3BtreePayloadFetch(BtCursor*, u32 *pAmt);
-SQLITE_PRIVATE u32 sqlite3BtreePayloadSize(BtCursor*);
-
-SQLITE_PRIVATE char *sqlite3BtreeIntegrityCheck(Btree*, int *aRoot, int nRoot, int, int*);
-SQLITE_PRIVATE struct Pager *sqlite3BtreePager(Btree*);
-SQLITE_PRIVATE i64 sqlite3BtreeRowCountEst(BtCursor*);
-
-#ifndef SQLITE_OMIT_INCRBLOB
-SQLITE_PRIVATE int sqlite3BtreePayloadChecked(BtCursor*, u32 offset, u32 amt, void*);
-SQLITE_PRIVATE int sqlite3BtreePutData(BtCursor*, u32 offset, u32 amt, void*);
-SQLITE_PRIVATE void sqlite3BtreeIncrblobCursor(BtCursor *);
-#endif
-SQLITE_PRIVATE void sqlite3BtreeClearCursor(BtCursor *);
-SQLITE_PRIVATE int sqlite3BtreeSetVersion(Btree *pBt, int iVersion);
-SQLITE_PRIVATE int sqlite3BtreeCursorHasHint(BtCursor*, unsigned int mask);
-SQLITE_PRIVATE int sqlite3BtreeIsReadonly(Btree *pBt);
-SQLITE_PRIVATE int sqlite3HeaderSizeBtree(void);
-
-#ifndef NDEBUG
-SQLITE_PRIVATE int sqlite3BtreeCursorIsValid(BtCursor*);
-#endif
-SQLITE_PRIVATE int sqlite3BtreeCursorIsValidNN(BtCursor*);
-
-#ifndef SQLITE_OMIT_BTREECOUNT
-SQLITE_PRIVATE int sqlite3BtreeCount(BtCursor *, i64 *);
-#endif
-
-#ifdef SQLITE_TEST
-SQLITE_PRIVATE int sqlite3BtreeCursorInfo(BtCursor*, int*, int);
-SQLITE_PRIVATE void sqlite3BtreeCursorList(Btree*);
-#endif
-
-#ifndef SQLITE_OMIT_WAL
-SQLITE_PRIVATE int sqlite3BtreeCheckpoint(Btree*, int, int *, int *);
-#endif
-
-/*
-** If we are not using shared cache, then there is no need to
-** use mutexes to access the BtShared structures. So make the
-** Enter and Leave procedures no-ops.
-*/
-#ifndef SQLITE_OMIT_SHARED_CACHE
-SQLITE_PRIVATE void sqlite3BtreeEnter(Btree*);
-SQLITE_PRIVATE void sqlite3BtreeEnterAll(sqlite3*);
-SQLITE_PRIVATE int sqlite3BtreeSharable(Btree*);
-SQLITE_PRIVATE void sqlite3BtreeEnterCursor(BtCursor*);
-SQLITE_PRIVATE int sqlite3BtreeConnectionCount(Btree*);
-#else
-# define sqlite3BtreeEnter(X)
-# define sqlite3BtreeEnterAll(X)
-# define sqlite3BtreeSharable(X) 0
-# define sqlite3BtreeEnterCursor(X)
-# define sqlite3BtreeConnectionCount(X) 1
-#endif
-
-#if !defined(SQLITE_OMIT_SHARED_CACHE) && SQLITE_THREADSAFE
-SQLITE_PRIVATE void sqlite3BtreeLeave(Btree*);
-SQLITE_PRIVATE void sqlite3BtreeLeaveCursor(BtCursor*);
-SQLITE_PRIVATE void sqlite3BtreeLeaveAll(sqlite3*);
-#ifndef NDEBUG
- /* These routines are used inside assert() statements only. */
-SQLITE_PRIVATE int sqlite3BtreeHoldsMutex(Btree*);
-SQLITE_PRIVATE int sqlite3BtreeHoldsAllMutexes(sqlite3*);
-SQLITE_PRIVATE int sqlite3SchemaMutexHeld(sqlite3*,int,Schema*);
-#endif
-#else
-
-# define sqlite3BtreeLeave(X)
-# define sqlite3BtreeLeaveCursor(X)
-# define sqlite3BtreeLeaveAll(X)
-
-# define sqlite3BtreeHoldsMutex(X) 1
-# define sqlite3BtreeHoldsAllMutexes(X) 1
-# define sqlite3SchemaMutexHeld(X,Y,Z) 1
-#endif
-
-
-#endif /* SQLITE_BTREE_H */
-
-/************** End of btree.h ***********************************************/
-/************** Continuing where we left off in sqliteInt.h ******************/
-/************** Include vdbe.h in the middle of sqliteInt.h ******************/
-/************** Begin file vdbe.h ********************************************/
-/*
-** 2001 September 15
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** Header file for the Virtual DataBase Engine (VDBE)
-**
-** This header defines the interface to the virtual database engine
-** or VDBE. The VDBE implements an abstract machine that runs a
-** simple program to access and modify the underlying database.
-*/
-#ifndef SQLITE_VDBE_H
-#define SQLITE_VDBE_H
-/* #include */
-
-/*
-** A single VDBE is an opaque structure named "Vdbe". Only routines
-** in the source file sqliteVdbe.c are allowed to see the insides
-** of this structure.
-*/
-typedef struct Vdbe Vdbe;
-
-/*
-** The names of the following types declared in vdbeInt.h are required
-** for the VdbeOp definition.
-*/
-typedef struct sqlite3_value Mem;
-typedef struct SubProgram SubProgram;
-
-/*
-** A single instruction of the virtual machine has an opcode
-** and as many as three operands. The instruction is recorded
-** as an instance of the following structure:
-*/
-struct VdbeOp {
- u8 opcode; /* What operation to perform */
- signed char p4type; /* One of the P4_xxx constants for p4 */
- u16 p5; /* Fifth parameter is an unsigned 16-bit integer */
- int p1; /* First operand */
- int p2; /* Second parameter (often the jump destination) */
- int p3; /* The third parameter */
- union p4union { /* fourth parameter */
- int i; /* Integer value if p4type==P4_INT32 */
- void *p; /* Generic pointer */
- char *z; /* Pointer to data for string (char array) types */
- i64 *pI64; /* Used when p4type is P4_INT64 */
- double *pReal; /* Used when p4type is P4_REAL */
- FuncDef *pFunc; /* Used when p4type is P4_FUNCDEF */
- sqlite3_context *pCtx; /* Used when p4type is P4_FUNCCTX */
- CollSeq *pColl; /* Used when p4type is P4_COLLSEQ */
- Mem *pMem; /* Used when p4type is P4_MEM */
- VTable *pVtab; /* Used when p4type is P4_VTAB */
- KeyInfo *pKeyInfo; /* Used when p4type is P4_KEYINFO */
- int *ai; /* Used when p4type is P4_INTARRAY */
- SubProgram *pProgram; /* Used when p4type is P4_SUBPROGRAM */
- Table *pTab; /* Used when p4type is P4_TABLE */
-#ifdef SQLITE_ENABLE_CURSOR_HINTS
- Expr *pExpr; /* Used when p4type is P4_EXPR */
-#endif
- int (*xAdvance)(BtCursor *, int);
- } p4;
-#ifdef SQLITE_ENABLE_EXPLAIN_COMMENTS
- char *zComment; /* Comment to improve readability */
-#endif
-#ifdef VDBE_PROFILE
- u32 cnt; /* Number of times this instruction was executed */
- u64 cycles; /* Total time spent executing this instruction */
-#endif
-#ifdef SQLITE_VDBE_COVERAGE
- u32 iSrcLine; /* Source-code line that generated this opcode
- ** with flags in the upper 8 bits */
-#endif
-};
-typedef struct VdbeOp VdbeOp;
-
-
-/*
-** A sub-routine used to implement a trigger program.
-*/
-struct SubProgram {
- VdbeOp *aOp; /* Array of opcodes for sub-program */
- int nOp; /* Elements in aOp[] */
- int nMem; /* Number of memory cells required */
- int nCsr; /* Number of cursors required */
- u8 *aOnce; /* Array of OP_Once flags */
- void *token; /* id that may be used to recursive triggers */
- SubProgram *pNext; /* Next sub-program already visited */
-};
-
-/*
-** A smaller version of VdbeOp used for the VdbeAddOpList() function because
-** it takes up less space.
-*/
-struct VdbeOpList {
- u8 opcode; /* What operation to perform */
- signed char p1; /* First operand */
- signed char p2; /* Second parameter (often the jump destination) */
- signed char p3; /* Third parameter */
-};
-typedef struct VdbeOpList VdbeOpList;
-
-/*
-** Allowed values of VdbeOp.p4type
-*/
-#define P4_NOTUSED 0 /* The P4 parameter is not used */
-#define P4_TRANSIENT 0 /* P4 is a pointer to a transient string */
-#define P4_STATIC (-1) /* Pointer to a static string */
-#define P4_COLLSEQ (-2) /* P4 is a pointer to a CollSeq structure */
-#define P4_INT32 (-3) /* P4 is a 32-bit signed integer */
-#define P4_SUBPROGRAM (-4) /* P4 is a pointer to a SubProgram structure */
-#define P4_ADVANCE (-5) /* P4 is a pointer to BtreeNext() or BtreePrev() */
-#define P4_TABLE (-6) /* P4 is a pointer to a Table structure */
-/* Above do not own any resources. Must free those below */
-#define P4_FREE_IF_LE (-7)
-#define P4_DYNAMIC (-7) /* Pointer to memory from sqliteMalloc() */
-#define P4_FUNCDEF (-8) /* P4 is a pointer to a FuncDef structure */
-#define P4_KEYINFO (-9) /* P4 is a pointer to a KeyInfo structure */
-#define P4_EXPR (-10) /* P4 is a pointer to an Expr tree */
-#define P4_MEM (-11) /* P4 is a pointer to a Mem* structure */
-#define P4_VTAB (-12) /* P4 is a pointer to an sqlite3_vtab structure */
-#define P4_REAL (-13) /* P4 is a 64-bit floating point value */
-#define P4_INT64 (-14) /* P4 is a 64-bit signed integer */
-#define P4_INTARRAY (-15) /* P4 is a vector of 32-bit integers */
-#define P4_FUNCCTX (-16) /* P4 is a pointer to an sqlite3_context object */
-#define P4_DYNBLOB (-17) /* Pointer to memory from sqliteMalloc() */
-
-/* Error message codes for OP_Halt */
-#define P5_ConstraintNotNull 1
-#define P5_ConstraintUnique 2
-#define P5_ConstraintCheck 3
-#define P5_ConstraintFK 4
-
-/*
-** The Vdbe.aColName array contains 5n Mem structures, where n is the
-** number of columns of data returned by the statement.
-*/
-#define COLNAME_NAME 0
-#define COLNAME_DECLTYPE 1
-#define COLNAME_DATABASE 2
-#define COLNAME_TABLE 3
-#define COLNAME_COLUMN 4
-#ifdef SQLITE_ENABLE_COLUMN_METADATA
-# define COLNAME_N 5 /* Number of COLNAME_xxx symbols */
-#else
-# ifdef SQLITE_OMIT_DECLTYPE
-# define COLNAME_N 1 /* Store only the name */
-# else
-# define COLNAME_N 2 /* Store the name and decltype */
-# endif
-#endif
-
-/*
-** The following macro converts a relative address in the p2 field
-** of a VdbeOp structure into a negative number so that
-** sqlite3VdbeAddOpList() knows that the address is relative. Calling
-** the macro again restores the address.
-*/
-#define ADDR(X) (-1-(X))
-
-/*
-** The makefile scans the vdbe.c source file and creates the "opcodes.h"
-** header file that defines a number for each opcode used by the VDBE.
-*/
-/************** Include opcodes.h in the middle of vdbe.h ********************/
-/************** Begin file opcodes.h *****************************************/
-/* Automatically generated. Do not edit */
-/* See the tool/mkopcodeh.tcl script for details */
-#define OP_Savepoint 0
-#define OP_AutoCommit 1
-#define OP_Transaction 2
-#define OP_SorterNext 3 /* jump */
-#define OP_Prev 4 /* jump */
-#define OP_Next 5 /* jump */
-#define OP_Checkpoint 6
-#define OP_JournalMode 7
-#define OP_Vacuum 8
-#define OP_VFilter 9 /* jump, synopsis: iplan=r[P3] zplan='P4' */
-#define OP_VUpdate 10 /* synopsis: data=r[P3@P2] */
-#define OP_Goto 11 /* jump */
-#define OP_Gosub 12 /* jump */
-#define OP_InitCoroutine 13 /* jump */
-#define OP_Yield 14 /* jump */
-#define OP_MustBeInt 15 /* jump */
-#define OP_Jump 16 /* jump */
-#define OP_Once 17 /* jump */
-#define OP_If 18 /* jump */
-#define OP_Not 19 /* same as TK_NOT, synopsis: r[P2]= !r[P1] */
-#define OP_IfNot 20 /* jump */
-#define OP_IfNullRow 21 /* jump, synopsis: if P1.nullRow then r[P3]=NULL, goto P2 */
-#define OP_SeekLT 22 /* jump, synopsis: key=r[P3@P4] */
-#define OP_SeekLE 23 /* jump, synopsis: key=r[P3@P4] */
-#define OP_SeekGE 24 /* jump, synopsis: key=r[P3@P4] */
-#define OP_SeekGT 25 /* jump, synopsis: key=r[P3@P4] */
-#define OP_IfNoHope 26 /* jump, synopsis: key=r[P3@P4] */
-#define OP_NoConflict 27 /* jump, synopsis: key=r[P3@P4] */
-#define OP_NotFound 28 /* jump, synopsis: key=r[P3@P4] */
-#define OP_Found 29 /* jump, synopsis: key=r[P3@P4] */
-#define OP_SeekRowid 30 /* jump, synopsis: intkey=r[P3] */
-#define OP_NotExists 31 /* jump, synopsis: intkey=r[P3] */
-#define OP_Last 32 /* jump */
-#define OP_IfSmaller 33 /* jump */
-#define OP_SorterSort 34 /* jump */
-#define OP_Sort 35 /* jump */
-#define OP_Rewind 36 /* jump */
-#define OP_IdxLE 37 /* jump, synopsis: key=r[P3@P4] */
-#define OP_IdxGT 38 /* jump, synopsis: key=r[P3@P4] */
-#define OP_IdxLT 39 /* jump, synopsis: key=r[P3@P4] */
-#define OP_IdxGE 40 /* jump, synopsis: key=r[P3@P4] */
-#define OP_RowSetRead 41 /* jump, synopsis: r[P3]=rowset(P1) */
-#define OP_RowSetTest 42 /* jump, synopsis: if r[P3] in rowset(P1) goto P2 */
-#define OP_Or 43 /* same as TK_OR, synopsis: r[P3]=(r[P1] || r[P2]) */
-#define OP_And 44 /* same as TK_AND, synopsis: r[P3]=(r[P1] && r[P2]) */
-#define OP_Program 45 /* jump */
-#define OP_FkIfZero 46 /* jump, synopsis: if fkctr[P1]==0 goto P2 */
-#define OP_IfPos 47 /* jump, synopsis: if r[P1]>0 then r[P1]-=P3, goto P2 */
-#define OP_IfNotZero 48 /* jump, synopsis: if r[P1]!=0 then r[P1]--, goto P2 */
-#define OP_DecrJumpZero 49 /* jump, synopsis: if (--r[P1])==0 goto P2 */
-#define OP_IsNull 50 /* jump, same as TK_ISNULL, synopsis: if r[P1]==NULL goto P2 */
-#define OP_NotNull 51 /* jump, same as TK_NOTNULL, synopsis: if r[P1]!=NULL goto P2 */
-#define OP_Ne 52 /* jump, same as TK_NE, synopsis: IF r[P3]!=r[P1] */
-#define OP_Eq 53 /* jump, same as TK_EQ, synopsis: IF r[P3]==r[P1] */
-#define OP_Gt 54 /* jump, same as TK_GT, synopsis: IF r[P3]>r[P1] */
-#define OP_Le 55 /* jump, same as TK_LE, synopsis: IF r[P3]<=r[P1] */
-#define OP_Lt 56 /* jump, same as TK_LT, synopsis: IF r[P3]=r[P1] */
-#define OP_ElseNotEq 58 /* jump, same as TK_ESCAPE */
-#define OP_IncrVacuum 59 /* jump */
-#define OP_VNext 60 /* jump */
-#define OP_Init 61 /* jump, synopsis: Start at P2 */
-#define OP_PureFunc0 62
-#define OP_Function0 63 /* synopsis: r[P3]=func(r[P2@P5]) */
-#define OP_PureFunc 64
-#define OP_Function 65 /* synopsis: r[P3]=func(r[P2@P5]) */
-#define OP_Return 66
-#define OP_EndCoroutine 67
-#define OP_HaltIfNull 68 /* synopsis: if r[P3]=null halt */
-#define OP_Halt 69
-#define OP_Integer 70 /* synopsis: r[P2]=P1 */
-#define OP_Int64 71 /* synopsis: r[P2]=P4 */
-#define OP_String 72 /* synopsis: r[P2]='P4' (len=P1) */
-#define OP_Null 73 /* synopsis: r[P2..P3]=NULL */
-#define OP_SoftNull 74 /* synopsis: r[P1]=NULL */
-#define OP_Blob 75 /* synopsis: r[P2]=P4 (len=P1) */
-#define OP_Variable 76 /* synopsis: r[P2]=parameter(P1,P4) */
-#define OP_Move 77 /* synopsis: r[P2@P3]=r[P1@P3] */
-#define OP_Copy 78 /* synopsis: r[P2@P3+1]=r[P1@P3+1] */
-#define OP_SCopy 79 /* synopsis: r[P2]=r[P1] */
-#define OP_IntCopy 80 /* synopsis: r[P2]=r[P1] */
-#define OP_ResultRow 81 /* synopsis: output=r[P1@P2] */
-#define OP_CollSeq 82
-#define OP_AddImm 83 /* synopsis: r[P1]=r[P1]+P2 */
-#define OP_RealAffinity 84
-#define OP_Cast 85 /* synopsis: affinity(r[P1]) */
-#define OP_Permutation 86
-#define OP_Compare 87 /* synopsis: r[P1@P3] <-> r[P2@P3] */
-#define OP_IsTrue 88 /* synopsis: r[P2] = coalesce(r[P1]==TRUE,P3) ^ P4 */
-#define OP_Offset 89 /* synopsis: r[P3] = sqlite_offset(P1) */
-#define OP_Column 90 /* synopsis: r[P3]=PX */
-#define OP_Affinity 91 /* synopsis: affinity(r[P1@P2]) */
-#define OP_BitAnd 92 /* same as TK_BITAND, synopsis: r[P3]=r[P1]&r[P2] */
-#define OP_BitOr 93 /* same as TK_BITOR, synopsis: r[P3]=r[P1]|r[P2] */
-#define OP_ShiftLeft 94 /* same as TK_LSHIFT, synopsis: r[P3]=r[P2]<>r[P1] */
-#define OP_Add 96 /* same as TK_PLUS, synopsis: r[P3]=r[P1]+r[P2] */
-#define OP_Subtract 97 /* same as TK_MINUS, synopsis: r[P3]=r[P2]-r[P1] */
-#define OP_Multiply 98 /* same as TK_STAR, synopsis: r[P3]=r[P1]*r[P2] */
-#define OP_Divide 99 /* same as TK_SLASH, synopsis: r[P3]=r[P2]/r[P1] */
-#define OP_Remainder 100 /* same as TK_REM, synopsis: r[P3]=r[P2]%r[P1] */
-#define OP_Concat 101 /* same as TK_CONCAT, synopsis: r[P3]=r[P2]+r[P1] */
-#define OP_MakeRecord 102 /* synopsis: r[P3]=mkrec(r[P1@P2]) */
-#define OP_BitNot 103 /* same as TK_BITNOT, synopsis: r[P2]= ~r[P1] */
-#define OP_Count 104 /* synopsis: r[P2]=count() */
-#define OP_ReadCookie 105
-#define OP_String8 106 /* same as TK_STRING, synopsis: r[P2]='P4' */
-#define OP_SetCookie 107
-#define OP_ReopenIdx 108 /* synopsis: root=P2 iDb=P3 */
-#define OP_OpenRead 109 /* synopsis: root=P2 iDb=P3 */
-#define OP_OpenWrite 110 /* synopsis: root=P2 iDb=P3 */
-#define OP_OpenDup 111
-#define OP_OpenAutoindex 112 /* synopsis: nColumn=P2 */
-#define OP_OpenEphemeral 113 /* synopsis: nColumn=P2 */
-#define OP_SorterOpen 114
-#define OP_SequenceTest 115 /* synopsis: if( cursor[P1].ctr++ ) pc = P2 */
-#define OP_OpenPseudo 116 /* synopsis: P3 columns in r[P2] */
-#define OP_Close 117
-#define OP_ColumnsUsed 118
-#define OP_SeekHit 119 /* synopsis: seekHit=P2 */
-#define OP_Sequence 120 /* synopsis: r[P2]=cursor[P1].ctr++ */
-#define OP_NewRowid 121 /* synopsis: r[P2]=rowid */
-#define OP_Insert 122 /* synopsis: intkey=r[P3] data=r[P2] */
-#define OP_InsertInt 123 /* synopsis: intkey=P3 data=r[P2] */
-#define OP_Delete 124
-#define OP_ResetCount 125
-#define OP_SorterCompare 126 /* synopsis: if key(P1)!=trim(r[P3],P4) goto P2 */
-#define OP_SorterData 127 /* synopsis: r[P2]=data */
-#define OP_RowData 128 /* synopsis: r[P2]=data */
-#define OP_Rowid 129 /* synopsis: r[P2]=rowid */
-#define OP_NullRow 130
-#define OP_SeekEnd 131
-#define OP_SorterInsert 132 /* synopsis: key=r[P2] */
-#define OP_IdxInsert 133 /* synopsis: key=r[P2] */
-#define OP_IdxDelete 134 /* synopsis: key=r[P2@P3] */
-#define OP_DeferredSeek 135 /* synopsis: Move P3 to P1.rowid if needed */
-#define OP_IdxRowid 136 /* synopsis: r[P2]=rowid */
-#define OP_Destroy 137
-#define OP_Clear 138
-#define OP_ResetSorter 139
-#define OP_CreateBtree 140 /* synopsis: r[P2]=root iDb=P1 flags=P3 */
-#define OP_Real 141 /* same as TK_FLOAT, synopsis: r[P2]=P4 */
-#define OP_SqlExec 142
-#define OP_ParseSchema 143
-#define OP_LoadAnalysis 144
-#define OP_DropTable 145
-#define OP_DropIndex 146
-#define OP_DropTrigger 147
-#define OP_IntegrityCk 148
-#define OP_RowSetAdd 149 /* synopsis: rowset(P1)=r[P2] */
-#define OP_Param 150
-#define OP_FkCounter 151 /* synopsis: fkctr[P1]+=P2 */
-#define OP_MemMax 152 /* synopsis: r[P1]=max(r[P1],r[P2]) */
-#define OP_OffsetLimit 153 /* synopsis: if r[P1]>0 then r[P2]=r[P1]+max(0,r[P3]) else r[P2]=(-1) */
-#define OP_AggInverse 154 /* synopsis: accum=r[P3] inverse(r[P2@P5]) */
-#define OP_AggStep 155 /* synopsis: accum=r[P3] step(r[P2@P5]) */
-#define OP_AggStep1 156 /* synopsis: accum=r[P3] step(r[P2@P5]) */
-#define OP_AggValue 157 /* synopsis: r[P3]=value N=P2 */
-#define OP_AggFinal 158 /* synopsis: accum=r[P1] N=P2 */
-#define OP_Expire 159
-#define OP_TableLock 160 /* synopsis: iDb=P1 root=P2 write=P3 */
-#define OP_VBegin 161
-#define OP_VCreate 162
-#define OP_VDestroy 163
-#define OP_VOpen 164
-#define OP_VColumn 165 /* synopsis: r[P3]=vcolumn(P2) */
-#define OP_VRename 166
-#define OP_Pagecount 167
-#define OP_MaxPgcnt 168
-#define OP_Trace 169
-#define OP_CursorHint 170
-#define OP_Noop 171
-#define OP_Explain 172
-#define OP_Abortable 173
-
-/* Properties such as "out2" or "jump" that are specified in
-** comments following the "case" for each opcode in the vdbe.c
-** are encoded into bitvectors as follows:
-*/
-#define OPFLG_JUMP 0x01 /* jump: P2 holds jmp target */
-#define OPFLG_IN1 0x02 /* in1: P1 is an input */
-#define OPFLG_IN2 0x04 /* in2: P2 is an input */
-#define OPFLG_IN3 0x08 /* in3: P3 is an input */
-#define OPFLG_OUT2 0x10 /* out2: P2 is an output */
-#define OPFLG_OUT3 0x20 /* out3: P3 is an output */
-#define OPFLG_INITIALIZER {\
-/* 0 */ 0x00, 0x00, 0x00, 0x01, 0x01, 0x01, 0x00, 0x10,\
-/* 8 */ 0x00, 0x01, 0x00, 0x01, 0x01, 0x01, 0x03, 0x03,\
-/* 16 */ 0x01, 0x01, 0x03, 0x12, 0x03, 0x01, 0x09, 0x09,\
-/* 24 */ 0x09, 0x09, 0x09, 0x09, 0x09, 0x09, 0x09, 0x09,\
-/* 32 */ 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01,\
-/* 40 */ 0x01, 0x23, 0x0b, 0x26, 0x26, 0x01, 0x01, 0x03,\
-/* 48 */ 0x03, 0x03, 0x03, 0x03, 0x0b, 0x0b, 0x0b, 0x0b,\
-/* 56 */ 0x0b, 0x0b, 0x01, 0x01, 0x01, 0x01, 0x00, 0x00,\
-/* 64 */ 0x00, 0x00, 0x02, 0x02, 0x08, 0x00, 0x10, 0x10,\
-/* 72 */ 0x10, 0x10, 0x00, 0x10, 0x10, 0x00, 0x00, 0x10,\
-/* 80 */ 0x10, 0x00, 0x00, 0x02, 0x02, 0x02, 0x00, 0x00,\
-/* 88 */ 0x12, 0x20, 0x00, 0x00, 0x26, 0x26, 0x26, 0x26,\
-/* 96 */ 0x26, 0x26, 0x26, 0x26, 0x26, 0x26, 0x00, 0x12,\
-/* 104 */ 0x10, 0x10, 0x10, 0x00, 0x00, 0x00, 0x00, 0x00,\
-/* 112 */ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,\
-/* 120 */ 0x10, 0x10, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,\
-/* 128 */ 0x00, 0x10, 0x00, 0x00, 0x04, 0x04, 0x00, 0x00,\
-/* 136 */ 0x10, 0x10, 0x00, 0x00, 0x10, 0x10, 0x00, 0x00,\
-/* 144 */ 0x00, 0x00, 0x00, 0x00, 0x00, 0x06, 0x10, 0x00,\
-/* 152 */ 0x04, 0x1a, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,\
-/* 160 */ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x10,\
-/* 168 */ 0x10, 0x00, 0x00, 0x00, 0x00, 0x00,}
-
-/* The sqlite3P2Values() routine is able to run faster if it knows
-** the value of the largest JUMP opcode. The smaller the maximum
-** JUMP opcode the better, so the mkopcodeh.tcl script that
-** generated this include file strives to group all JUMP opcodes
-** together near the beginning of the list.
-*/
-#define SQLITE_MX_JUMP_OPCODE 61 /* Maximum JUMP opcode */
-
-/************** End of opcodes.h *********************************************/
-/************** Continuing where we left off in vdbe.h ***********************/
-
-/*
-** Additional non-public SQLITE_PREPARE_* flags
-*/
-#define SQLITE_PREPARE_SAVESQL 0x80 /* Preserve SQL text */
-#define SQLITE_PREPARE_MASK 0x0f /* Mask of public flags */
-
-/*
-** Prototypes for the VDBE interface. See comments on the implementation
-** for a description of what each of these routines does.
-*/
-SQLITE_PRIVATE Vdbe *sqlite3VdbeCreate(Parse*);
-SQLITE_PRIVATE int sqlite3VdbeAddOp0(Vdbe*,int);
-SQLITE_PRIVATE int sqlite3VdbeAddOp1(Vdbe*,int,int);
-SQLITE_PRIVATE int sqlite3VdbeAddOp2(Vdbe*,int,int,int);
-SQLITE_PRIVATE int sqlite3VdbeGoto(Vdbe*,int);
-SQLITE_PRIVATE int sqlite3VdbeLoadString(Vdbe*,int,const char*);
-SQLITE_PRIVATE void sqlite3VdbeMultiLoad(Vdbe*,int,const char*,...);
-SQLITE_PRIVATE int sqlite3VdbeAddOp3(Vdbe*,int,int,int,int);
-SQLITE_PRIVATE int sqlite3VdbeAddOp4(Vdbe*,int,int,int,int,const char *zP4,int);
-SQLITE_PRIVATE int sqlite3VdbeAddOp4Dup8(Vdbe*,int,int,int,int,const u8*,int);
-SQLITE_PRIVATE int sqlite3VdbeAddOp4Int(Vdbe*,int,int,int,int,int);
-SQLITE_PRIVATE void sqlite3VdbeEndCoroutine(Vdbe*,int);
-#if defined(SQLITE_DEBUG) && !defined(SQLITE_TEST_REALLOC_STRESS)
-SQLITE_PRIVATE void sqlite3VdbeVerifyNoMallocRequired(Vdbe *p, int N);
-SQLITE_PRIVATE void sqlite3VdbeVerifyNoResultRow(Vdbe *p);
-#else
-# define sqlite3VdbeVerifyNoMallocRequired(A,B)
-# define sqlite3VdbeVerifyNoResultRow(A)
-#endif
-#if defined(SQLITE_DEBUG)
-SQLITE_PRIVATE void sqlite3VdbeVerifyAbortable(Vdbe *p, int);
-#else
-# define sqlite3VdbeVerifyAbortable(A,B)
-#endif
-SQLITE_PRIVATE VdbeOp *sqlite3VdbeAddOpList(Vdbe*, int nOp, VdbeOpList const *aOp,int iLineno);
-#ifndef SQLITE_OMIT_EXPLAIN
-SQLITE_PRIVATE void sqlite3VdbeExplain(Parse*,u8,const char*,...);
-SQLITE_PRIVATE void sqlite3VdbeExplainPop(Parse*);
-SQLITE_PRIVATE int sqlite3VdbeExplainParent(Parse*);
-# define ExplainQueryPlan(P) sqlite3VdbeExplain P
-# define ExplainQueryPlanPop(P) sqlite3VdbeExplainPop(P)
-# define ExplainQueryPlanParent(P) sqlite3VdbeExplainParent(P)
-#else
-# define ExplainQueryPlan(P)
-# define ExplainQueryPlanPop(P)
-# define ExplainQueryPlanParent(P) 0
-#endif
-SQLITE_PRIVATE void sqlite3VdbeAddParseSchemaOp(Vdbe*,int,char*);
-SQLITE_PRIVATE void sqlite3VdbeChangeOpcode(Vdbe*, u32 addr, u8);
-SQLITE_PRIVATE void sqlite3VdbeChangeP1(Vdbe*, u32 addr, int P1);
-SQLITE_PRIVATE void sqlite3VdbeChangeP2(Vdbe*, u32 addr, int P2);
-SQLITE_PRIVATE void sqlite3VdbeChangeP3(Vdbe*, u32 addr, int P3);
-SQLITE_PRIVATE void sqlite3VdbeChangeP5(Vdbe*, u16 P5);
-SQLITE_PRIVATE void sqlite3VdbeJumpHere(Vdbe*, int addr);
-SQLITE_PRIVATE int sqlite3VdbeChangeToNoop(Vdbe*, int addr);
-SQLITE_PRIVATE int sqlite3VdbeDeletePriorOpcode(Vdbe*, u8 op);
-SQLITE_PRIVATE void sqlite3VdbeChangeP4(Vdbe*, int addr, const char *zP4, int N);
-SQLITE_PRIVATE void sqlite3VdbeAppendP4(Vdbe*, void *pP4, int p4type);
-SQLITE_PRIVATE void sqlite3VdbeSetP4KeyInfo(Parse*, Index*);
-SQLITE_PRIVATE void sqlite3VdbeUsesBtree(Vdbe*, int);
-SQLITE_PRIVATE VdbeOp *sqlite3VdbeGetOp(Vdbe*, int);
-SQLITE_PRIVATE int sqlite3VdbeMakeLabel(Vdbe*);
-SQLITE_PRIVATE void sqlite3VdbeRunOnlyOnce(Vdbe*);
-SQLITE_PRIVATE void sqlite3VdbeReusable(Vdbe*);
-SQLITE_PRIVATE void sqlite3VdbeDelete(Vdbe*);
-SQLITE_PRIVATE void sqlite3VdbeClearObject(sqlite3*,Vdbe*);
-SQLITE_PRIVATE void sqlite3VdbeMakeReady(Vdbe*,Parse*);
-SQLITE_PRIVATE int sqlite3VdbeFinalize(Vdbe*);
-SQLITE_PRIVATE void sqlite3VdbeResolveLabel(Vdbe*, int);
-SQLITE_PRIVATE int sqlite3VdbeCurrentAddr(Vdbe*);
-#ifdef SQLITE_DEBUG
-SQLITE_PRIVATE int sqlite3VdbeAssertMayAbort(Vdbe *, int);
-#endif
-SQLITE_PRIVATE void sqlite3VdbeResetStepResult(Vdbe*);
-SQLITE_PRIVATE void sqlite3VdbeRewind(Vdbe*);
-SQLITE_PRIVATE int sqlite3VdbeReset(Vdbe*);
-SQLITE_PRIVATE void sqlite3VdbeSetNumCols(Vdbe*,int);
-SQLITE_PRIVATE int sqlite3VdbeSetColName(Vdbe*, int, int, const char *, void(*)(void*));
-SQLITE_PRIVATE void sqlite3VdbeCountChanges(Vdbe*);
-SQLITE_PRIVATE sqlite3 *sqlite3VdbeDb(Vdbe*);
-SQLITE_PRIVATE u8 sqlite3VdbePrepareFlags(Vdbe*);
-SQLITE_PRIVATE void sqlite3VdbeSetSql(Vdbe*, const char *z, int n, u8);
-SQLITE_PRIVATE void sqlite3VdbeSwap(Vdbe*,Vdbe*);
-SQLITE_PRIVATE VdbeOp *sqlite3VdbeTakeOpArray(Vdbe*, int*, int*);
-SQLITE_PRIVATE sqlite3_value *sqlite3VdbeGetBoundValue(Vdbe*, int, u8);
-SQLITE_PRIVATE void sqlite3VdbeSetVarmask(Vdbe*, int);
-#ifndef SQLITE_OMIT_TRACE
-SQLITE_PRIVATE char *sqlite3VdbeExpandSql(Vdbe*, const char*);
-#endif
-SQLITE_PRIVATE int sqlite3MemCompare(const Mem*, const Mem*, const CollSeq*);
-SQLITE_PRIVATE int sqlite3BlobCompare(const Mem*, const Mem*);
-
-SQLITE_PRIVATE void sqlite3VdbeRecordUnpack(KeyInfo*,int,const void*,UnpackedRecord*);
-SQLITE_PRIVATE int sqlite3VdbeRecordCompare(int,const void*,UnpackedRecord*);
-SQLITE_PRIVATE int sqlite3VdbeRecordCompareWithSkip(int, const void *, UnpackedRecord *, int);
-SQLITE_PRIVATE UnpackedRecord *sqlite3VdbeAllocUnpackedRecord(KeyInfo*);
-
-typedef int (*RecordCompare)(int,const void*,UnpackedRecord*);
-SQLITE_PRIVATE RecordCompare sqlite3VdbeFindCompare(UnpackedRecord*);
-
-#ifndef SQLITE_OMIT_TRIGGER
-SQLITE_PRIVATE void sqlite3VdbeLinkSubProgram(Vdbe *, SubProgram *);
-#endif
-
-SQLITE_PRIVATE int sqlite3NotPureFunc(sqlite3_context*);
-
-/* Use SQLITE_ENABLE_COMMENTS to enable generation of extra comments on
-** each VDBE opcode.
-**
-** Use the SQLITE_ENABLE_MODULE_COMMENTS macro to see some extra no-op
-** comments in VDBE programs that show key decision points in the code
-** generator.
-*/
-#ifdef SQLITE_ENABLE_EXPLAIN_COMMENTS
-SQLITE_PRIVATE void sqlite3VdbeComment(Vdbe*, const char*, ...);
-# define VdbeComment(X) sqlite3VdbeComment X
-SQLITE_PRIVATE void sqlite3VdbeNoopComment(Vdbe*, const char*, ...);
-# define VdbeNoopComment(X) sqlite3VdbeNoopComment X
-# ifdef SQLITE_ENABLE_MODULE_COMMENTS
-# define VdbeModuleComment(X) sqlite3VdbeNoopComment X
-# else
-# define VdbeModuleComment(X)
-# endif
-#else
-# define VdbeComment(X)
-# define VdbeNoopComment(X)
-# define VdbeModuleComment(X)
-#endif
-
-/*
-** The VdbeCoverage macros are used to set a coverage testing point
-** for VDBE branch instructions. The coverage testing points are line
-** numbers in the sqlite3.c source file. VDBE branch coverage testing
-** only works with an amalagmation build. That's ok since a VDBE branch
-** coverage build designed for testing the test suite only. No application
-** should ever ship with VDBE branch coverage measuring turned on.
-**
-** VdbeCoverage(v) // Mark the previously coded instruction
-** // as a branch
-**
-** VdbeCoverageIf(v, conditional) // Mark previous if conditional true
-**
-** VdbeCoverageAlwaysTaken(v) // Previous branch is always taken
-**
-** VdbeCoverageNeverTaken(v) // Previous branch is never taken
-**
-** VdbeCoverageNeverNull(v) // Previous three-way branch is only
-** // taken on the first two ways. The
-** // NULL option is not possible
-**
-** VdbeCoverageEqNe(v) // Previous OP_Jump is only interested
-** // in distingishing equal and not-equal.
-**
-** Every VDBE branch operation must be tagged with one of the macros above.
-** If not, then when "make test" is run with -DSQLITE_VDBE_COVERAGE and
-** -DSQLITE_DEBUG then an ALWAYS() will fail in the vdbeTakeBranch()
-** routine in vdbe.c, alerting the developer to the missed tag.
-**
-** During testing, the test application will invoke
-** sqlite3_test_control(SQLITE_TESTCTRL_VDBE_COVERAGE,...) to set a callback
-** routine that is invoked as each bytecode branch is taken. The callback
-** contains the sqlite3.c source line number ov the VdbeCoverage macro and
-** flags to indicate whether or not the branch was taken. The test application
-** is responsible for keeping track of this and reporting byte-code branches
-** that are never taken.
-**
-** See the VdbeBranchTaken() macro and vdbeTakeBranch() function in the
-** vdbe.c source file for additional information.
-*/
-#ifdef SQLITE_VDBE_COVERAGE
-SQLITE_PRIVATE void sqlite3VdbeSetLineNumber(Vdbe*,int);
-# define VdbeCoverage(v) sqlite3VdbeSetLineNumber(v,__LINE__)
-# define VdbeCoverageIf(v,x) if(x)sqlite3VdbeSetLineNumber(v,__LINE__)
-# define VdbeCoverageAlwaysTaken(v) \
- sqlite3VdbeSetLineNumber(v,__LINE__|0x5000000);
-# define VdbeCoverageNeverTaken(v) \
- sqlite3VdbeSetLineNumber(v,__LINE__|0x6000000);
-# define VdbeCoverageNeverNull(v) \
- sqlite3VdbeSetLineNumber(v,__LINE__|0x4000000);
-# define VdbeCoverageNeverNullIf(v,x) \
- if(x)sqlite3VdbeSetLineNumber(v,__LINE__|0x4000000);
-# define VdbeCoverageEqNe(v) \
- sqlite3VdbeSetLineNumber(v,__LINE__|0x8000000);
-# define VDBE_OFFSET_LINENO(x) (__LINE__+x)
-#else
-# define VdbeCoverage(v)
-# define VdbeCoverageIf(v,x)
-# define VdbeCoverageAlwaysTaken(v)
-# define VdbeCoverageNeverTaken(v)
-# define VdbeCoverageNeverNull(v)
-# define VdbeCoverageNeverNullIf(v,x)
-# define VdbeCoverageEqNe(v)
-# define VDBE_OFFSET_LINENO(x) 0
-#endif
-
-#ifdef SQLITE_ENABLE_STMT_SCANSTATUS
-SQLITE_PRIVATE void sqlite3VdbeScanStatus(Vdbe*, int, int, int, LogEst, const char*);
-#else
-# define sqlite3VdbeScanStatus(a,b,c,d,e)
-#endif
-
-#if defined(SQLITE_DEBUG) || defined(VDBE_PROFILE)
-SQLITE_PRIVATE void sqlite3VdbePrintOp(FILE*, int, VdbeOp*);
-#endif
-
-#endif /* SQLITE_VDBE_H */
-
-/************** End of vdbe.h ************************************************/
-/************** Continuing where we left off in sqliteInt.h ******************/
-/************** Include pager.h in the middle of sqliteInt.h *****************/
-/************** Begin file pager.h *******************************************/
-/*
-** 2001 September 15
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** This header file defines the interface that the sqlite page cache
-** subsystem. The page cache subsystem reads and writes a file a page
-** at a time and provides a journal for rollback.
-*/
-
-#ifndef SQLITE_PAGER_H
-#define SQLITE_PAGER_H
-
-/*
-** Default maximum size for persistent journal files. A negative
-** value means no limit. This value may be overridden using the
-** sqlite3PagerJournalSizeLimit() API. See also "PRAGMA journal_size_limit".
-*/
-#ifndef SQLITE_DEFAULT_JOURNAL_SIZE_LIMIT
- #define SQLITE_DEFAULT_JOURNAL_SIZE_LIMIT -1
-#endif
-
-/*
-** The type used to represent a page number. The first page in a file
-** is called page 1. 0 is used to represent "not a page".
-*/
-typedef u32 Pgno;
-
-/*
-** Each open file is managed by a separate instance of the "Pager" structure.
-*/
-typedef struct Pager Pager;
-
-/*
-** Handle type for pages.
-*/
-typedef struct PgHdr DbPage;
-
-/*
-** Page number PAGER_MJ_PGNO is never used in an SQLite database (it is
-** reserved for working around a windows/posix incompatibility). It is
-** used in the journal to signify that the remainder of the journal file
-** is devoted to storing a master journal name - there are no more pages to
-** roll back. See comments for function writeMasterJournal() in pager.c
-** for details.
-*/
-#define PAGER_MJ_PGNO(x) ((Pgno)((PENDING_BYTE/((x)->pageSize))+1))
-
-/*
-** Allowed values for the flags parameter to sqlite3PagerOpen().
-**
-** NOTE: These values must match the corresponding BTREE_ values in btree.h.
-*/
-#define PAGER_OMIT_JOURNAL 0x0001 /* Do not use a rollback journal */
-#define PAGER_MEMORY 0x0002 /* In-memory database */
-
-/*
-** Valid values for the second argument to sqlite3PagerLockingMode().
-*/
-#define PAGER_LOCKINGMODE_QUERY -1
-#define PAGER_LOCKINGMODE_NORMAL 0
-#define PAGER_LOCKINGMODE_EXCLUSIVE 1
-
-/*
-** Numeric constants that encode the journalmode.
-**
-** The numeric values encoded here (other than PAGER_JOURNALMODE_QUERY)
-** are exposed in the API via the "PRAGMA journal_mode" command and
-** therefore cannot be changed without a compatibility break.
-*/
-#define PAGER_JOURNALMODE_QUERY (-1) /* Query the value of journalmode */
-#define PAGER_JOURNALMODE_DELETE 0 /* Commit by deleting journal file */
-#define PAGER_JOURNALMODE_PERSIST 1 /* Commit by zeroing journal header */
-#define PAGER_JOURNALMODE_OFF 2 /* Journal omitted. */
-#define PAGER_JOURNALMODE_TRUNCATE 3 /* Commit by truncating journal */
-#define PAGER_JOURNALMODE_MEMORY 4 /* In-memory journal file */
-#define PAGER_JOURNALMODE_WAL 5 /* Use write-ahead logging */
-
-/*
-** Flags that make up the mask passed to sqlite3PagerGet().
-*/
-#define PAGER_GET_NOCONTENT 0x01 /* Do not load data from disk */
-#define PAGER_GET_READONLY 0x02 /* Read-only page is acceptable */
-
-/*
-** Flags for sqlite3PagerSetFlags()
-**
-** Value constraints (enforced via assert()):
-** PAGER_FULLFSYNC == SQLITE_FullFSync
-** PAGER_CKPT_FULLFSYNC == SQLITE_CkptFullFSync
-** PAGER_CACHE_SPILL == SQLITE_CacheSpill
-*/
-#define PAGER_SYNCHRONOUS_OFF 0x01 /* PRAGMA synchronous=OFF */
-#define PAGER_SYNCHRONOUS_NORMAL 0x02 /* PRAGMA synchronous=NORMAL */
-#define PAGER_SYNCHRONOUS_FULL 0x03 /* PRAGMA synchronous=FULL */
-#define PAGER_SYNCHRONOUS_EXTRA 0x04 /* PRAGMA synchronous=EXTRA */
-#define PAGER_SYNCHRONOUS_MASK 0x07 /* Mask for four values above */
-#define PAGER_FULLFSYNC 0x08 /* PRAGMA fullfsync=ON */
-#define PAGER_CKPT_FULLFSYNC 0x10 /* PRAGMA checkpoint_fullfsync=ON */
-#define PAGER_CACHESPILL 0x20 /* PRAGMA cache_spill=ON */
-#define PAGER_FLAGS_MASK 0x38 /* All above except SYNCHRONOUS */
-
-/*
-** The remainder of this file contains the declarations of the functions
-** that make up the Pager sub-system API. See source code comments for
-** a detailed description of each routine.
-*/
-
-/* Open and close a Pager connection. */
-SQLITE_PRIVATE int sqlite3PagerOpen(
- sqlite3_vfs*,
- Pager **ppPager,
- const char*,
- int,
- int,
- int,
- void(*)(DbPage*)
-);
-SQLITE_PRIVATE int sqlite3PagerClose(Pager *pPager, sqlite3*);
-SQLITE_PRIVATE int sqlite3PagerReadFileheader(Pager*, int, unsigned char*);
-
-/* Functions used to configure a Pager object. */
-SQLITE_PRIVATE void sqlite3PagerSetBusyHandler(Pager*, int(*)(void *), void *);
-SQLITE_PRIVATE int sqlite3PagerSetPagesize(Pager*, u32*, int);
-#ifdef SQLITE_HAS_CODEC
-SQLITE_PRIVATE void sqlite3PagerAlignReserve(Pager*,Pager*);
-#endif
-SQLITE_PRIVATE int sqlite3PagerMaxPageCount(Pager*, int);
-SQLITE_PRIVATE void sqlite3PagerSetCachesize(Pager*, int);
-SQLITE_PRIVATE int sqlite3PagerSetSpillsize(Pager*, int);
-SQLITE_PRIVATE void sqlite3PagerSetMmapLimit(Pager *, sqlite3_int64);
-SQLITE_PRIVATE void sqlite3PagerShrink(Pager*);
-SQLITE_PRIVATE void sqlite3PagerSetFlags(Pager*,unsigned);
-SQLITE_PRIVATE int sqlite3PagerLockingMode(Pager *, int);
-SQLITE_PRIVATE int sqlite3PagerSetJournalMode(Pager *, int);
-SQLITE_PRIVATE int sqlite3PagerGetJournalMode(Pager*);
-SQLITE_PRIVATE int sqlite3PagerOkToChangeJournalMode(Pager*);
-SQLITE_PRIVATE i64 sqlite3PagerJournalSizeLimit(Pager *, i64);
-SQLITE_PRIVATE sqlite3_backup **sqlite3PagerBackupPtr(Pager*);
-SQLITE_PRIVATE int sqlite3PagerFlush(Pager*);
-
-/* Functions used to obtain and release page references. */
-SQLITE_PRIVATE int sqlite3PagerGet(Pager *pPager, Pgno pgno, DbPage **ppPage, int clrFlag);
-SQLITE_PRIVATE DbPage *sqlite3PagerLookup(Pager *pPager, Pgno pgno);
-SQLITE_PRIVATE void sqlite3PagerRef(DbPage*);
-SQLITE_PRIVATE void sqlite3PagerUnref(DbPage*);
-SQLITE_PRIVATE void sqlite3PagerUnrefNotNull(DbPage*);
-SQLITE_PRIVATE void sqlite3PagerUnrefPageOne(DbPage*);
-
-/* Operations on page references. */
-SQLITE_PRIVATE int sqlite3PagerWrite(DbPage*);
-SQLITE_PRIVATE void sqlite3PagerDontWrite(DbPage*);
-SQLITE_PRIVATE int sqlite3PagerMovepage(Pager*,DbPage*,Pgno,int);
-SQLITE_PRIVATE int sqlite3PagerPageRefcount(DbPage*);
-SQLITE_PRIVATE void *sqlite3PagerGetData(DbPage *);
-SQLITE_PRIVATE void *sqlite3PagerGetExtra(DbPage *);
-
-/* Functions used to manage pager transactions and savepoints. */
-SQLITE_PRIVATE void sqlite3PagerPagecount(Pager*, int*);
-SQLITE_PRIVATE int sqlite3PagerBegin(Pager*, int exFlag, int);
-SQLITE_PRIVATE int sqlite3PagerCommitPhaseOne(Pager*,const char *zMaster, int);
-SQLITE_PRIVATE int sqlite3PagerExclusiveLock(Pager*);
-SQLITE_PRIVATE int sqlite3PagerSync(Pager *pPager, const char *zMaster);
-SQLITE_PRIVATE int sqlite3PagerCommitPhaseTwo(Pager*);
-SQLITE_PRIVATE int sqlite3PagerRollback(Pager*);
-SQLITE_PRIVATE int sqlite3PagerOpenSavepoint(Pager *pPager, int n);
-SQLITE_PRIVATE int sqlite3PagerSavepoint(Pager *pPager, int op, int iSavepoint);
-SQLITE_PRIVATE int sqlite3PagerSharedLock(Pager *pPager);
-
-#ifndef SQLITE_OMIT_WAL
-SQLITE_PRIVATE int sqlite3PagerCheckpoint(Pager *pPager, sqlite3*, int, int*, int*);
-SQLITE_PRIVATE int sqlite3PagerWalSupported(Pager *pPager);
-SQLITE_PRIVATE int sqlite3PagerWalCallback(Pager *pPager);
-SQLITE_PRIVATE int sqlite3PagerOpenWal(Pager *pPager, int *pisOpen);
-SQLITE_PRIVATE int sqlite3PagerCloseWal(Pager *pPager, sqlite3*);
-# ifdef SQLITE_DIRECT_OVERFLOW_READ
-SQLITE_PRIVATE int sqlite3PagerUseWal(Pager *pPager, Pgno);
-# endif
-# ifdef SQLITE_ENABLE_SNAPSHOT
-SQLITE_PRIVATE int sqlite3PagerSnapshotGet(Pager *pPager, sqlite3_snapshot **ppSnapshot);
-SQLITE_PRIVATE int sqlite3PagerSnapshotOpen(Pager *pPager, sqlite3_snapshot *pSnapshot);
-SQLITE_PRIVATE int sqlite3PagerSnapshotRecover(Pager *pPager);
-SQLITE_PRIVATE int sqlite3PagerSnapshotCheck(Pager *pPager, sqlite3_snapshot *pSnapshot);
-SQLITE_PRIVATE void sqlite3PagerSnapshotUnlock(Pager *pPager);
-# endif
-#else
-# define sqlite3PagerUseWal(x,y) 0
-#endif
-
-#ifdef SQLITE_ENABLE_ZIPVFS
-SQLITE_PRIVATE int sqlite3PagerWalFramesize(Pager *pPager);
-#endif
-
-/* Functions used to query pager state and configuration. */
-SQLITE_PRIVATE u8 sqlite3PagerIsreadonly(Pager*);
-SQLITE_PRIVATE u32 sqlite3PagerDataVersion(Pager*);
-#ifdef SQLITE_DEBUG
-SQLITE_PRIVATE int sqlite3PagerRefcount(Pager*);
-#endif
-SQLITE_PRIVATE int sqlite3PagerMemUsed(Pager*);
-SQLITE_PRIVATE const char *sqlite3PagerFilename(Pager*, int);
-SQLITE_PRIVATE sqlite3_vfs *sqlite3PagerVfs(Pager*);
-SQLITE_PRIVATE sqlite3_file *sqlite3PagerFile(Pager*);
-SQLITE_PRIVATE sqlite3_file *sqlite3PagerJrnlFile(Pager*);
-SQLITE_PRIVATE const char *sqlite3PagerJournalname(Pager*);
-SQLITE_PRIVATE void *sqlite3PagerTempSpace(Pager*);
-SQLITE_PRIVATE int sqlite3PagerIsMemdb(Pager*);
-SQLITE_PRIVATE void sqlite3PagerCacheStat(Pager *, int, int, int *);
-SQLITE_PRIVATE void sqlite3PagerClearCache(Pager*);
-SQLITE_PRIVATE int sqlite3SectorSize(sqlite3_file *);
-#ifdef SQLITE_ENABLE_SETLK_TIMEOUT
-SQLITE_PRIVATE void sqlite3PagerResetLockTimeout(Pager *pPager);
-#else
-# define sqlite3PagerResetLockTimeout(X)
-#endif
-
-/* Functions used to truncate the database file. */
-SQLITE_PRIVATE void sqlite3PagerTruncateImage(Pager*,Pgno);
-
-SQLITE_PRIVATE void sqlite3PagerRekey(DbPage*, Pgno, u16);
-
-#if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_WAL)
-SQLITE_PRIVATE void *sqlite3PagerCodec(DbPage *);
-#endif
-
-/* Functions to support testing and debugging. */
-#if !defined(NDEBUG) || defined(SQLITE_TEST)
-SQLITE_PRIVATE Pgno sqlite3PagerPagenumber(DbPage*);
-SQLITE_PRIVATE int sqlite3PagerIswriteable(DbPage*);
-#endif
-#ifdef SQLITE_TEST
-SQLITE_PRIVATE int *sqlite3PagerStats(Pager*);
-SQLITE_PRIVATE void sqlite3PagerRefdump(Pager*);
- void disable_simulated_io_errors(void);
- void enable_simulated_io_errors(void);
-#else
-# define disable_simulated_io_errors()
-# define enable_simulated_io_errors()
-#endif
-
-#endif /* SQLITE_PAGER_H */
-
-/************** End of pager.h ***********************************************/
-/************** Continuing where we left off in sqliteInt.h ******************/
-/************** Include pcache.h in the middle of sqliteInt.h ****************/
-/************** Begin file pcache.h ******************************************/
-/*
-** 2008 August 05
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** This header file defines the interface that the sqlite page cache
-** subsystem.
-*/
-
-#ifndef _PCACHE_H_
-
-typedef struct PgHdr PgHdr;
-typedef struct PCache PCache;
-
-/*
-** Every page in the cache is controlled by an instance of the following
-** structure.
-*/
-struct PgHdr {
- sqlite3_pcache_page *pPage; /* Pcache object page handle */
- void *pData; /* Page data */
- void *pExtra; /* Extra content */
- PCache *pCache; /* PRIVATE: Cache that owns this page */
- PgHdr *pDirty; /* Transient list of dirty sorted by pgno */
- Pager *pPager; /* The pager this page is part of */
- Pgno pgno; /* Page number for this page */
-#ifdef SQLITE_CHECK_PAGES
- u32 pageHash; /* Hash of page content */
-#endif
- u16 flags; /* PGHDR flags defined below */
-
- /**********************************************************************
- ** Elements above, except pCache, are public. All that follow are
- ** private to pcache.c and should not be accessed by other modules.
- ** pCache is grouped with the public elements for efficiency.
- */
- i16 nRef; /* Number of users of this page */
- PgHdr *pDirtyNext; /* Next element in list of dirty pages */
- PgHdr *pDirtyPrev; /* Previous element in list of dirty pages */
- /* NB: pDirtyNext and pDirtyPrev are undefined if the
- ** PgHdr object is not dirty */
-};
-
-/* Bit values for PgHdr.flags */
-#define PGHDR_CLEAN 0x001 /* Page not on the PCache.pDirty list */
-#define PGHDR_DIRTY 0x002 /* Page is on the PCache.pDirty list */
-#define PGHDR_WRITEABLE 0x004 /* Journaled and ready to modify */
-#define PGHDR_NEED_SYNC 0x008 /* Fsync the rollback journal before
- ** writing this page to the database */
-#define PGHDR_DONT_WRITE 0x010 /* Do not write content to disk */
-#define PGHDR_MMAP 0x020 /* This is an mmap page object */
-
-#define PGHDR_WAL_APPEND 0x040 /* Appended to wal file */
-
-/* Initialize and shutdown the page cache subsystem */
-SQLITE_PRIVATE int sqlite3PcacheInitialize(void);
-SQLITE_PRIVATE void sqlite3PcacheShutdown(void);
-
-/* Page cache buffer management:
-** These routines implement SQLITE_CONFIG_PAGECACHE.
-*/
-SQLITE_PRIVATE void sqlite3PCacheBufferSetup(void *, int sz, int n);
-
-/* Create a new pager cache.
-** Under memory stress, invoke xStress to try to make pages clean.
-** Only clean and unpinned pages can be reclaimed.
-*/
-SQLITE_PRIVATE int sqlite3PcacheOpen(
- int szPage, /* Size of every page */
- int szExtra, /* Extra space associated with each page */
- int bPurgeable, /* True if pages are on backing store */
- int (*xStress)(void*, PgHdr*), /* Call to try to make pages clean */
- void *pStress, /* Argument to xStress */
- PCache *pToInit /* Preallocated space for the PCache */
-);
-
-/* Modify the page-size after the cache has been created. */
-SQLITE_PRIVATE int sqlite3PcacheSetPageSize(PCache *, int);
-
-/* Return the size in bytes of a PCache object. Used to preallocate
-** storage space.
-*/
-SQLITE_PRIVATE int sqlite3PcacheSize(void);
-
-/* One release per successful fetch. Page is pinned until released.
-** Reference counted.
-*/
-SQLITE_PRIVATE sqlite3_pcache_page *sqlite3PcacheFetch(PCache*, Pgno, int createFlag);
-SQLITE_PRIVATE int sqlite3PcacheFetchStress(PCache*, Pgno, sqlite3_pcache_page**);
-SQLITE_PRIVATE PgHdr *sqlite3PcacheFetchFinish(PCache*, Pgno, sqlite3_pcache_page *pPage);
-SQLITE_PRIVATE void sqlite3PcacheRelease(PgHdr*);
-
-SQLITE_PRIVATE void sqlite3PcacheDrop(PgHdr*); /* Remove page from cache */
-SQLITE_PRIVATE void sqlite3PcacheMakeDirty(PgHdr*); /* Make sure page is marked dirty */
-SQLITE_PRIVATE void sqlite3PcacheMakeClean(PgHdr*); /* Mark a single page as clean */
-SQLITE_PRIVATE void sqlite3PcacheCleanAll(PCache*); /* Mark all dirty list pages as clean */
-SQLITE_PRIVATE void sqlite3PcacheClearWritable(PCache*);
-
-/* Change a page number. Used by incr-vacuum. */
-SQLITE_PRIVATE void sqlite3PcacheMove(PgHdr*, Pgno);
-
-/* Remove all pages with pgno>x. Reset the cache if x==0 */
-SQLITE_PRIVATE void sqlite3PcacheTruncate(PCache*, Pgno x);
-
-/* Get a list of all dirty pages in the cache, sorted by page number */
-SQLITE_PRIVATE PgHdr *sqlite3PcacheDirtyList(PCache*);
-
-/* Reset and close the cache object */
-SQLITE_PRIVATE void sqlite3PcacheClose(PCache*);
-
-/* Clear flags from pages of the page cache */
-SQLITE_PRIVATE void sqlite3PcacheClearSyncFlags(PCache *);
-
-/* Discard the contents of the cache */
-SQLITE_PRIVATE void sqlite3PcacheClear(PCache*);
-
-/* Return the total number of outstanding page references */
-SQLITE_PRIVATE int sqlite3PcacheRefCount(PCache*);
-
-/* Increment the reference count of an existing page */
-SQLITE_PRIVATE void sqlite3PcacheRef(PgHdr*);
-
-SQLITE_PRIVATE int sqlite3PcachePageRefcount(PgHdr*);
-
-/* Return the total number of pages stored in the cache */
-SQLITE_PRIVATE int sqlite3PcachePagecount(PCache*);
-
-#if defined(SQLITE_CHECK_PAGES) || defined(SQLITE_DEBUG)
-/* Iterate through all dirty pages currently stored in the cache. This
-** interface is only available if SQLITE_CHECK_PAGES is defined when the
-** library is built.
-*/
-SQLITE_PRIVATE void sqlite3PcacheIterateDirty(PCache *pCache, void (*xIter)(PgHdr *));
-#endif
-
-#if defined(SQLITE_DEBUG)
-/* Check invariants on a PgHdr object */
-SQLITE_PRIVATE int sqlite3PcachePageSanity(PgHdr*);
-#endif
-
-/* Set and get the suggested cache-size for the specified pager-cache.
-**
-** If no global maximum is configured, then the system attempts to limit
-** the total number of pages cached by purgeable pager-caches to the sum
-** of the suggested cache-sizes.
-*/
-SQLITE_PRIVATE void sqlite3PcacheSetCachesize(PCache *, int);
-#ifdef SQLITE_TEST
-SQLITE_PRIVATE int sqlite3PcacheGetCachesize(PCache *);
-#endif
-
-/* Set or get the suggested spill-size for the specified pager-cache.
-**
-** The spill-size is the minimum number of pages in cache before the cache
-** will attempt to spill dirty pages by calling xStress.
-*/
-SQLITE_PRIVATE int sqlite3PcacheSetSpillsize(PCache *, int);
-
-/* Free up as much memory as possible from the page cache */
-SQLITE_PRIVATE void sqlite3PcacheShrink(PCache*);
-
-#ifdef SQLITE_ENABLE_MEMORY_MANAGEMENT
-/* Try to return memory used by the pcache module to the main memory heap */
-SQLITE_PRIVATE int sqlite3PcacheReleaseMemory(int);
-#endif
-
-#ifdef SQLITE_TEST
-SQLITE_PRIVATE void sqlite3PcacheStats(int*,int*,int*,int*);
-#endif
-
-SQLITE_PRIVATE void sqlite3PCacheSetDefault(void);
-
-/* Return the header size */
-SQLITE_PRIVATE int sqlite3HeaderSizePcache(void);
-SQLITE_PRIVATE int sqlite3HeaderSizePcache1(void);
-
-/* Number of dirty pages as a percentage of the configured cache size */
-SQLITE_PRIVATE int sqlite3PCachePercentDirty(PCache*);
-
-#endif /* _PCACHE_H_ */
-
-/************** End of pcache.h **********************************************/
-/************** Continuing where we left off in sqliteInt.h ******************/
-/************** Include os.h in the middle of sqliteInt.h ********************/
-/************** Begin file os.h **********************************************/
-/*
-** 2001 September 16
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This header file (together with is companion C source-code file
-** "os.c") attempt to abstract the underlying operating system so that
-** the SQLite library will work on both POSIX and windows systems.
-**
-** This header file is #include-ed by sqliteInt.h and thus ends up
-** being included by every source file.
-*/
-#ifndef _SQLITE_OS_H_
-#define _SQLITE_OS_H_
-
-/*
-** Attempt to automatically detect the operating system and setup the
-** necessary pre-processor macros for it.
-*/
-/************** Include os_setup.h in the middle of os.h *********************/
-/************** Begin file os_setup.h ****************************************/
-/*
-** 2013 November 25
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This file contains pre-processor directives related to operating system
-** detection and/or setup.
-*/
-#ifndef SQLITE_OS_SETUP_H
-#define SQLITE_OS_SETUP_H
-
-/*
-** Figure out if we are dealing with Unix, Windows, or some other operating
-** system.
-**
-** After the following block of preprocess macros, all of SQLITE_OS_UNIX,
-** SQLITE_OS_WIN, and SQLITE_OS_OTHER will defined to either 1 or 0. One of
-** the three will be 1. The other two will be 0.
-*/
-#if defined(SQLITE_OS_OTHER)
-# if SQLITE_OS_OTHER==1
-# undef SQLITE_OS_UNIX
-# define SQLITE_OS_UNIX 0
-# undef SQLITE_OS_WIN
-# define SQLITE_OS_WIN 0
-# else
-# undef SQLITE_OS_OTHER
-# endif
-#endif
-#if !defined(SQLITE_OS_UNIX) && !defined(SQLITE_OS_OTHER)
-# define SQLITE_OS_OTHER 0
-# ifndef SQLITE_OS_WIN
-# if defined(_WIN32) || defined(WIN32) || defined(__CYGWIN__) || \
- defined(__MINGW32__) || defined(__BORLANDC__)
-# define SQLITE_OS_WIN 1
-# define SQLITE_OS_UNIX 0
-# else
-# define SQLITE_OS_WIN 0
-# define SQLITE_OS_UNIX 1
-# endif
-# else
-# define SQLITE_OS_UNIX 0
-# endif
-#else
-# ifndef SQLITE_OS_WIN
-# define SQLITE_OS_WIN 0
-# endif
-#endif
-
-#endif /* SQLITE_OS_SETUP_H */
-
-/************** End of os_setup.h ********************************************/
-/************** Continuing where we left off in os.h *************************/
-
-/* If the SET_FULLSYNC macro is not defined above, then make it
-** a no-op
-*/
-#ifndef SET_FULLSYNC
-# define SET_FULLSYNC(x,y)
-#endif
-
-/*
-** The default size of a disk sector
-*/
-#ifndef SQLITE_DEFAULT_SECTOR_SIZE
-# define SQLITE_DEFAULT_SECTOR_SIZE 4096
-#endif
-
-/*
-** Temporary files are named starting with this prefix followed by 16 random
-** alphanumeric characters, and no file extension. They are stored in the
-** OS's standard temporary file directory, and are deleted prior to exit.
-** If sqlite is being embedded in another program, you may wish to change the
-** prefix to reflect your program's name, so that if your program exits
-** prematurely, old temporary files can be easily identified. This can be done
-** using -DSQLITE_TEMP_FILE_PREFIX=myprefix_ on the compiler command line.
-**
-** 2006-10-31: The default prefix used to be "sqlite_". But then
-** Mcafee started using SQLite in their anti-virus product and it
-** started putting files with the "sqlite" name in the c:/temp folder.
-** This annoyed many windows users. Those users would then do a
-** Google search for "sqlite", find the telephone numbers of the
-** developers and call to wake them up at night and complain.
-** For this reason, the default name prefix is changed to be "sqlite"
-** spelled backwards. So the temp files are still identified, but
-** anybody smart enough to figure out the code is also likely smart
-** enough to know that calling the developer will not help get rid
-** of the file.
-*/
-#ifndef SQLITE_TEMP_FILE_PREFIX
-# define SQLITE_TEMP_FILE_PREFIX "etilqs_"
-#endif
-
-/*
-** The following values may be passed as the second argument to
-** sqlite3OsLock(). The various locks exhibit the following semantics:
-**
-** SHARED: Any number of processes may hold a SHARED lock simultaneously.
-** RESERVED: A single process may hold a RESERVED lock on a file at
-** any time. Other processes may hold and obtain new SHARED locks.
-** PENDING: A single process may hold a PENDING lock on a file at
-** any one time. Existing SHARED locks may persist, but no new
-** SHARED locks may be obtained by other processes.
-** EXCLUSIVE: An EXCLUSIVE lock precludes all other locks.
-**
-** PENDING_LOCK may not be passed directly to sqlite3OsLock(). Instead, a
-** process that requests an EXCLUSIVE lock may actually obtain a PENDING
-** lock. This can be upgraded to an EXCLUSIVE lock by a subsequent call to
-** sqlite3OsLock().
-*/
-#define NO_LOCK 0
-#define SHARED_LOCK 1
-#define RESERVED_LOCK 2
-#define PENDING_LOCK 3
-#define EXCLUSIVE_LOCK 4
-
-/*
-** File Locking Notes: (Mostly about windows but also some info for Unix)
-**
-** We cannot use LockFileEx() or UnlockFileEx() on Win95/98/ME because
-** those functions are not available. So we use only LockFile() and
-** UnlockFile().
-**
-** LockFile() prevents not just writing but also reading by other processes.
-** A SHARED_LOCK is obtained by locking a single randomly-chosen
-** byte out of a specific range of bytes. The lock byte is obtained at
-** random so two separate readers can probably access the file at the
-** same time, unless they are unlucky and choose the same lock byte.
-** An EXCLUSIVE_LOCK is obtained by locking all bytes in the range.
-** There can only be one writer. A RESERVED_LOCK is obtained by locking
-** a single byte of the file that is designated as the reserved lock byte.
-** A PENDING_LOCK is obtained by locking a designated byte different from
-** the RESERVED_LOCK byte.
-**
-** On WinNT/2K/XP systems, LockFileEx() and UnlockFileEx() are available,
-** which means we can use reader/writer locks. When reader/writer locks
-** are used, the lock is placed on the same range of bytes that is used
-** for probabilistic locking in Win95/98/ME. Hence, the locking scheme
-** will support two or more Win95 readers or two or more WinNT readers.
-** But a single Win95 reader will lock out all WinNT readers and a single
-** WinNT reader will lock out all other Win95 readers.
-**
-** The following #defines specify the range of bytes used for locking.
-** SHARED_SIZE is the number of bytes available in the pool from which
-** a random byte is selected for a shared lock. The pool of bytes for
-** shared locks begins at SHARED_FIRST.
-**
-** The same locking strategy and
-** byte ranges are used for Unix. This leaves open the possibility of having
-** clients on win95, winNT, and unix all talking to the same shared file
-** and all locking correctly. To do so would require that samba (or whatever
-** tool is being used for file sharing) implements locks correctly between
-** windows and unix. I'm guessing that isn't likely to happen, but by
-** using the same locking range we are at least open to the possibility.
-**
-** Locking in windows is manditory. For this reason, we cannot store
-** actual data in the bytes used for locking. The pager never allocates
-** the pages involved in locking therefore. SHARED_SIZE is selected so
-** that all locks will fit on a single page even at the minimum page size.
-** PENDING_BYTE defines the beginning of the locks. By default PENDING_BYTE
-** is set high so that we don't have to allocate an unused page except
-** for very large databases. But one should test the page skipping logic
-** by setting PENDING_BYTE low and running the entire regression suite.
-**
-** Changing the value of PENDING_BYTE results in a subtly incompatible
-** file format. Depending on how it is changed, you might not notice
-** the incompatibility right away, even running a full regression test.
-** The default location of PENDING_BYTE is the first byte past the
-** 1GB boundary.
-**
-*/
-#ifdef SQLITE_OMIT_WSD
-# define PENDING_BYTE (0x40000000)
-#else
-# define PENDING_BYTE sqlite3PendingByte
-#endif
-#define RESERVED_BYTE (PENDING_BYTE+1)
-#define SHARED_FIRST (PENDING_BYTE+2)
-#define SHARED_SIZE 510
-
-/*
-** Wrapper around OS specific sqlite3_os_init() function.
-*/
-SQLITE_PRIVATE int sqlite3OsInit(void);
-
-/*
-** Functions for accessing sqlite3_file methods
-*/
-SQLITE_PRIVATE void sqlite3OsClose(sqlite3_file*);
-SQLITE_PRIVATE int sqlite3OsRead(sqlite3_file*, void*, int amt, i64 offset);
-SQLITE_PRIVATE int sqlite3OsWrite(sqlite3_file*, const void*, int amt, i64 offset);
-SQLITE_PRIVATE int sqlite3OsTruncate(sqlite3_file*, i64 size);
-SQLITE_PRIVATE int sqlite3OsSync(sqlite3_file*, int);
-SQLITE_PRIVATE int sqlite3OsFileSize(sqlite3_file*, i64 *pSize);
-SQLITE_PRIVATE int sqlite3OsLock(sqlite3_file*, int);
-SQLITE_PRIVATE int sqlite3OsUnlock(sqlite3_file*, int);
-SQLITE_PRIVATE int sqlite3OsCheckReservedLock(sqlite3_file *id, int *pResOut);
-SQLITE_PRIVATE int sqlite3OsFileControl(sqlite3_file*,int,void*);
-SQLITE_PRIVATE void sqlite3OsFileControlHint(sqlite3_file*,int,void*);
-#define SQLITE_FCNTL_DB_UNCHANGED 0xca093fa0
-SQLITE_PRIVATE int sqlite3OsSectorSize(sqlite3_file *id);
-SQLITE_PRIVATE int sqlite3OsDeviceCharacteristics(sqlite3_file *id);
-#ifndef SQLITE_OMIT_WAL
-SQLITE_PRIVATE int sqlite3OsShmMap(sqlite3_file *,int,int,int,void volatile **);
-SQLITE_PRIVATE int sqlite3OsShmLock(sqlite3_file *id, int, int, int);
-SQLITE_PRIVATE void sqlite3OsShmBarrier(sqlite3_file *id);
-SQLITE_PRIVATE int sqlite3OsShmUnmap(sqlite3_file *id, int);
-#endif /* SQLITE_OMIT_WAL */
-SQLITE_PRIVATE int sqlite3OsFetch(sqlite3_file *id, i64, int, void **);
-SQLITE_PRIVATE int sqlite3OsUnfetch(sqlite3_file *, i64, void *);
-
-
-/*
-** Functions for accessing sqlite3_vfs methods
-*/
-SQLITE_PRIVATE int sqlite3OsOpen(sqlite3_vfs *, const char *, sqlite3_file*, int, int *);
-SQLITE_PRIVATE int sqlite3OsDelete(sqlite3_vfs *, const char *, int);
-SQLITE_PRIVATE int sqlite3OsAccess(sqlite3_vfs *, const char *, int, int *pResOut);
-SQLITE_PRIVATE int sqlite3OsFullPathname(sqlite3_vfs *, const char *, int, char *);
-#ifndef SQLITE_OMIT_LOAD_EXTENSION
-SQLITE_PRIVATE void *sqlite3OsDlOpen(sqlite3_vfs *, const char *);
-SQLITE_PRIVATE void sqlite3OsDlError(sqlite3_vfs *, int, char *);
-SQLITE_PRIVATE void (*sqlite3OsDlSym(sqlite3_vfs *, void *, const char *))(void);
-SQLITE_PRIVATE void sqlite3OsDlClose(sqlite3_vfs *, void *);
-#endif /* SQLITE_OMIT_LOAD_EXTENSION */
-SQLITE_PRIVATE int sqlite3OsRandomness(sqlite3_vfs *, int, char *);
-SQLITE_PRIVATE int sqlite3OsSleep(sqlite3_vfs *, int);
-SQLITE_PRIVATE int sqlite3OsGetLastError(sqlite3_vfs*);
-SQLITE_PRIVATE int sqlite3OsCurrentTimeInt64(sqlite3_vfs *, sqlite3_int64*);
-
-/*
-** Convenience functions for opening and closing files using
-** sqlite3_malloc() to obtain space for the file-handle structure.
-*/
-SQLITE_PRIVATE int sqlite3OsOpenMalloc(sqlite3_vfs *, const char *, sqlite3_file **, int,int*);
-SQLITE_PRIVATE void sqlite3OsCloseFree(sqlite3_file *);
-
-#endif /* _SQLITE_OS_H_ */
-
-/************** End of os.h **************************************************/
-/************** Continuing where we left off in sqliteInt.h ******************/
-/************** Include mutex.h in the middle of sqliteInt.h *****************/
-/************** Begin file mutex.h *******************************************/
-/*
-** 2007 August 28
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-**
-** This file contains the common header for all mutex implementations.
-** The sqliteInt.h header #includes this file so that it is available
-** to all source files. We break it out in an effort to keep the code
-** better organized.
-**
-** NOTE: source files should *not* #include this header file directly.
-** Source files should #include the sqliteInt.h file and let that file
-** include this one indirectly.
-*/
-
-
-/*
-** Figure out what version of the code to use. The choices are
-**
-** SQLITE_MUTEX_OMIT No mutex logic. Not even stubs. The
-** mutexes implementation cannot be overridden
-** at start-time.
-**
-** SQLITE_MUTEX_NOOP For single-threaded applications. No
-** mutual exclusion is provided. But this
-** implementation can be overridden at
-** start-time.
-**
-** SQLITE_MUTEX_PTHREADS For multi-threaded applications on Unix.
-**
-** SQLITE_MUTEX_W32 For multi-threaded applications on Win32.
-*/
-#if !SQLITE_THREADSAFE
-# define SQLITE_MUTEX_OMIT
-#endif
-#if SQLITE_THREADSAFE && !defined(SQLITE_MUTEX_NOOP)
-# if SQLITE_OS_UNIX
-# define SQLITE_MUTEX_PTHREADS
-# elif SQLITE_OS_WIN
-# define SQLITE_MUTEX_W32
-# else
-# define SQLITE_MUTEX_NOOP
-# endif
-#endif
-
-#ifdef SQLITE_MUTEX_OMIT
-/*
-** If this is a no-op implementation, implement everything as macros.
-*/
-#define sqlite3_mutex_alloc(X) ((sqlite3_mutex*)8)
-#define sqlite3_mutex_free(X)
-#define sqlite3_mutex_enter(X)
-#define sqlite3_mutex_try(X) SQLITE_OK
-#define sqlite3_mutex_leave(X)
-#define sqlite3_mutex_held(X) ((void)(X),1)
-#define sqlite3_mutex_notheld(X) ((void)(X),1)
-#define sqlite3MutexAlloc(X) ((sqlite3_mutex*)8)
-#define sqlite3MutexInit() SQLITE_OK
-#define sqlite3MutexEnd()
-#define MUTEX_LOGIC(X)
-#else
-#define MUTEX_LOGIC(X) X
-#endif /* defined(SQLITE_MUTEX_OMIT) */
-
-/************** End of mutex.h ***********************************************/
-/************** Continuing where we left off in sqliteInt.h ******************/
-
-/* The SQLITE_EXTRA_DURABLE compile-time option used to set the default
-** synchronous setting to EXTRA. It is no longer supported.
-*/
-#ifdef SQLITE_EXTRA_DURABLE
-# warning Use SQLITE_DEFAULT_SYNCHRONOUS=3 instead of SQLITE_EXTRA_DURABLE
-# define SQLITE_DEFAULT_SYNCHRONOUS 3
-#endif
-
-/*
-** Default synchronous levels.
-**
-** Note that (for historcal reasons) the PAGER_SYNCHRONOUS_* macros differ
-** from the SQLITE_DEFAULT_SYNCHRONOUS value by 1.
-**
-** PAGER_SYNCHRONOUS DEFAULT_SYNCHRONOUS
-** OFF 1 0
-** NORMAL 2 1
-** FULL 3 2
-** EXTRA 4 3
-**
-** The "PRAGMA synchronous" statement also uses the zero-based numbers.
-** In other words, the zero-based numbers are used for all external interfaces
-** and the one-based values are used internally.
-*/
-#ifndef SQLITE_DEFAULT_SYNCHRONOUS
-# define SQLITE_DEFAULT_SYNCHRONOUS 2
-#endif
-#ifndef SQLITE_DEFAULT_WAL_SYNCHRONOUS
-# define SQLITE_DEFAULT_WAL_SYNCHRONOUS SQLITE_DEFAULT_SYNCHRONOUS
-#endif
-
-/*
-** Each database file to be accessed by the system is an instance
-** of the following structure. There are normally two of these structures
-** in the sqlite.aDb[] array. aDb[0] is the main database file and
-** aDb[1] is the database file used to hold temporary tables. Additional
-** databases may be attached.
-*/
-struct Db {
- char *zDbSName; /* Name of this database. (schema name, not filename) */
- Btree *pBt; /* The B*Tree structure for this database file */
- u8 safety_level; /* How aggressive at syncing data to disk */
- u8 bSyncSet; /* True if "PRAGMA synchronous=N" has been run */
- Schema *pSchema; /* Pointer to database schema (possibly shared) */
-};
-
-/*
-** An instance of the following structure stores a database schema.
-**
-** Most Schema objects are associated with a Btree. The exception is
-** the Schema for the TEMP databaes (sqlite3.aDb[1]) which is free-standing.
-** In shared cache mode, a single Schema object can be shared by multiple
-** Btrees that refer to the same underlying BtShared object.
-**
-** Schema objects are automatically deallocated when the last Btree that
-** references them is destroyed. The TEMP Schema is manually freed by
-** sqlite3_close().
-*
-** A thread must be holding a mutex on the corresponding Btree in order
-** to access Schema content. This implies that the thread must also be
-** holding a mutex on the sqlite3 connection pointer that owns the Btree.
-** For a TEMP Schema, only the connection mutex is required.
-*/
-struct Schema {
- int schema_cookie; /* Database schema version number for this file */
- int iGeneration; /* Generation counter. Incremented with each change */
- Hash tblHash; /* All tables indexed by name */
- Hash idxHash; /* All (named) indices indexed by name */
- Hash trigHash; /* All triggers indexed by name */
- Hash fkeyHash; /* All foreign keys by referenced table name */
- Table *pSeqTab; /* The sqlite_sequence table used by AUTOINCREMENT */
- u8 file_format; /* Schema format version for this file */
- u8 enc; /* Text encoding used by this database */
- u16 schemaFlags; /* Flags associated with this schema */
- int cache_size; /* Number of pages to use in the cache */
-};
-
-/*
-** These macros can be used to test, set, or clear bits in the
-** Db.pSchema->flags field.
-*/
-#define DbHasProperty(D,I,P) (((D)->aDb[I].pSchema->schemaFlags&(P))==(P))
-#define DbHasAnyProperty(D,I,P) (((D)->aDb[I].pSchema->schemaFlags&(P))!=0)
-#define DbSetProperty(D,I,P) (D)->aDb[I].pSchema->schemaFlags|=(P)
-#define DbClearProperty(D,I,P) (D)->aDb[I].pSchema->schemaFlags&=~(P)
-
-/*
-** Allowed values for the DB.pSchema->flags field.
-**
-** The DB_SchemaLoaded flag is set after the database schema has been
-** read into internal hash tables.
-**
-** DB_UnresetViews means that one or more views have column names that
-** have been filled out. If the schema changes, these column names might
-** changes and so the view will need to be reset.
-*/
-#define DB_SchemaLoaded 0x0001 /* The schema has been loaded */
-#define DB_UnresetViews 0x0002 /* Some views have defined column names */
-#define DB_Empty 0x0004 /* The file is empty (length 0 bytes) */
-#define DB_ResetWanted 0x0008 /* Reset the schema when nSchemaLock==0 */
-
-/*
-** The number of different kinds of things that can be limited
-** using the sqlite3_limit() interface.
-*/
-#define SQLITE_N_LIMIT (SQLITE_LIMIT_WORKER_THREADS+1)
-
-/*
-** Lookaside malloc is a set of fixed-size buffers that can be used
-** to satisfy small transient memory allocation requests for objects
-** associated with a particular database connection. The use of
-** lookaside malloc provides a significant performance enhancement
-** (approx 10%) by avoiding numerous malloc/free requests while parsing
-** SQL statements.
-**
-** The Lookaside structure holds configuration information about the
-** lookaside malloc subsystem. Each available memory allocation in
-** the lookaside subsystem is stored on a linked list of LookasideSlot
-** objects.
-**
-** Lookaside allocations are only allowed for objects that are associated
-** with a particular database connection. Hence, schema information cannot
-** be stored in lookaside because in shared cache mode the schema information
-** is shared by multiple database connections. Therefore, while parsing
-** schema information, the Lookaside.bEnabled flag is cleared so that
-** lookaside allocations are not used to construct the schema objects.
-*/
-struct Lookaside {
- u32 bDisable; /* Only operate the lookaside when zero */
- u16 sz; /* Size of each buffer in bytes */
- u8 bMalloced; /* True if pStart obtained from sqlite3_malloc() */
- u32 nSlot; /* Number of lookaside slots allocated */
- u32 anStat[3]; /* 0: hits. 1: size misses. 2: full misses */
- LookasideSlot *pInit; /* List of buffers not previously used */
- LookasideSlot *pFree; /* List of available buffers */
- void *pStart; /* First byte of available memory space */
- void *pEnd; /* First byte past end of available space */
-};
-struct LookasideSlot {
- LookasideSlot *pNext; /* Next buffer in the list of free buffers */
-};
-
-/*
-** A hash table for built-in function definitions. (Application-defined
-** functions use a regular table table from hash.h.)
-**
-** Hash each FuncDef structure into one of the FuncDefHash.a[] slots.
-** Collisions are on the FuncDef.u.pHash chain.
-*/
-#define SQLITE_FUNC_HASH_SZ 23
-struct FuncDefHash {
- FuncDef *a[SQLITE_FUNC_HASH_SZ]; /* Hash table for functions */
-};
-
-#ifdef SQLITE_USER_AUTHENTICATION
-/*
-** Information held in the "sqlite3" database connection object and used
-** to manage user authentication.
-*/
-typedef struct sqlite3_userauth sqlite3_userauth;
-struct sqlite3_userauth {
- u8 authLevel; /* Current authentication level */
- int nAuthPW; /* Size of the zAuthPW in bytes */
- char *zAuthPW; /* Password used to authenticate */
- char *zAuthUser; /* User name used to authenticate */
-};
-
-/* Allowed values for sqlite3_userauth.authLevel */
-#define UAUTH_Unknown 0 /* Authentication not yet checked */
-#define UAUTH_Fail 1 /* User authentication failed */
-#define UAUTH_User 2 /* Authenticated as a normal user */
-#define UAUTH_Admin 3 /* Authenticated as an administrator */
-
-/* Functions used only by user authorization logic */
-SQLITE_PRIVATE int sqlite3UserAuthTable(const char*);
-SQLITE_PRIVATE int sqlite3UserAuthCheckLogin(sqlite3*,const char*,u8*);
-SQLITE_PRIVATE void sqlite3UserAuthInit(sqlite3*);
-SQLITE_PRIVATE void sqlite3CryptFunc(sqlite3_context*,int,sqlite3_value**);
-
-#endif /* SQLITE_USER_AUTHENTICATION */
-
-/*
-** typedef for the authorization callback function.
-*/
-#ifdef SQLITE_USER_AUTHENTICATION
- typedef int (*sqlite3_xauth)(void*,int,const char*,const char*,const char*,
- const char*, const char*);
-#else
- typedef int (*sqlite3_xauth)(void*,int,const char*,const char*,const char*,
- const char*);
-#endif
-
-#ifndef SQLITE_OMIT_DEPRECATED
-/* This is an extra SQLITE_TRACE macro that indicates "legacy" tracing
-** in the style of sqlite3_trace()
-*/
-#define SQLITE_TRACE_LEGACY 0x80
-#else
-#define SQLITE_TRACE_LEGACY 0
-#endif /* SQLITE_OMIT_DEPRECATED */
-
-
-/*
-** Each database connection is an instance of the following structure.
-*/
-struct sqlite3 {
- sqlite3_vfs *pVfs; /* OS Interface */
- struct Vdbe *pVdbe; /* List of active virtual machines */
- CollSeq *pDfltColl; /* The default collating sequence (BINARY) */
- sqlite3_mutex *mutex; /* Connection mutex */
- Db *aDb; /* All backends */
- int nDb; /* Number of backends currently in use */
- u32 mDbFlags; /* flags recording internal state */
- u32 flags; /* flags settable by pragmas. See below */
- i64 lastRowid; /* ROWID of most recent insert (see above) */
- i64 szMmap; /* Default mmap_size setting */
- u32 nSchemaLock; /* Do not reset the schema when non-zero */
- unsigned int openFlags; /* Flags passed to sqlite3_vfs.xOpen() */
- int errCode; /* Most recent error code (SQLITE_*) */
- int errMask; /* & result codes with this before returning */
- int iSysErrno; /* Errno value from last system error */
- u16 dbOptFlags; /* Flags to enable/disable optimizations */
- u8 enc; /* Text encoding */
- u8 autoCommit; /* The auto-commit flag. */
- u8 temp_store; /* 1: file 2: memory 0: default */
- u8 mallocFailed; /* True if we have seen a malloc failure */
- u8 bBenignMalloc; /* Do not require OOMs if true */
- u8 dfltLockMode; /* Default locking-mode for attached dbs */
- signed char nextAutovac; /* Autovac setting after VACUUM if >=0 */
- u8 suppressErr; /* Do not issue error messages if true */
- u8 vtabOnConflict; /* Value to return for s3_vtab_on_conflict() */
- u8 isTransactionSavepoint; /* True if the outermost savepoint is a TS */
- u8 mTrace; /* zero or more SQLITE_TRACE flags */
- u8 noSharedCache; /* True if no shared-cache backends */
- u8 nSqlExec; /* Number of pending OP_SqlExec opcodes */
- int nextPagesize; /* Pagesize after VACUUM if >0 */
- u32 magic; /* Magic number for detect library misuse */
- int nChange; /* Value returned by sqlite3_changes() */
- int nTotalChange; /* Value returned by sqlite3_total_changes() */
- int aLimit[SQLITE_N_LIMIT]; /* Limits */
- int nMaxSorterMmap; /* Maximum size of regions mapped by sorter */
- struct sqlite3InitInfo { /* Information used during initialization */
- int newTnum; /* Rootpage of table being initialized */
- u8 iDb; /* Which db file is being initialized */
- u8 busy; /* TRUE if currently initializing */
- unsigned orphanTrigger : 1; /* Last statement is orphaned TEMP trigger */
- unsigned imposterTable : 1; /* Building an imposter table */
- unsigned reopenMemdb : 1; /* ATTACH is really a reopen using MemDB */
- } init;
- int nVdbeActive; /* Number of VDBEs currently running */
- int nVdbeRead; /* Number of active VDBEs that read or write */
- int nVdbeWrite; /* Number of active VDBEs that read and write */
- int nVdbeExec; /* Number of nested calls to VdbeExec() */
- int nVDestroy; /* Number of active OP_VDestroy operations */
- int nExtension; /* Number of loaded extensions */
- void **aExtension; /* Array of shared library handles */
- int (*xTrace)(u32,void*,void*,void*); /* Trace function */
- void *pTraceArg; /* Argument to the trace function */
- void (*xProfile)(void*,const char*,u64); /* Profiling function */
- void *pProfileArg; /* Argument to profile function */
- void *pCommitArg; /* Argument to xCommitCallback() */
- int (*xCommitCallback)(void*); /* Invoked at every commit. */
- void *pRollbackArg; /* Argument to xRollbackCallback() */
- void (*xRollbackCallback)(void*); /* Invoked at every commit. */
- void *pUpdateArg;
- void (*xUpdateCallback)(void*,int, const char*,const char*,sqlite_int64);
-#ifdef SQLITE_ENABLE_PREUPDATE_HOOK
- void *pPreUpdateArg; /* First argument to xPreUpdateCallback */
- void (*xPreUpdateCallback)( /* Registered using sqlite3_preupdate_hook() */
- void*,sqlite3*,int,char const*,char const*,sqlite3_int64,sqlite3_int64
- );
- PreUpdate *pPreUpdate; /* Context for active pre-update callback */
-#endif /* SQLITE_ENABLE_PREUPDATE_HOOK */
-#ifndef SQLITE_OMIT_WAL
- int (*xWalCallback)(void *, sqlite3 *, const char *, int);
- void *pWalArg;
-#endif
- void(*xCollNeeded)(void*,sqlite3*,int eTextRep,const char*);
- void(*xCollNeeded16)(void*,sqlite3*,int eTextRep,const void*);
- void *pCollNeededArg;
- sqlite3_value *pErr; /* Most recent error message */
- union {
- volatile int isInterrupted; /* True if sqlite3_interrupt has been called */
- double notUsed1; /* Spacer */
- } u1;
- Lookaside lookaside; /* Lookaside malloc configuration */
-#ifndef SQLITE_OMIT_AUTHORIZATION
- sqlite3_xauth xAuth; /* Access authorization function */
- void *pAuthArg; /* 1st argument to the access auth function */
-#endif
-#ifndef SQLITE_OMIT_PROGRESS_CALLBACK
- int (*xProgress)(void *); /* The progress callback */
- void *pProgressArg; /* Argument to the progress callback */
- unsigned nProgressOps; /* Number of opcodes for progress callback */
-#endif
-#ifndef SQLITE_OMIT_VIRTUALTABLE
- int nVTrans; /* Allocated size of aVTrans */
- Hash aModule; /* populated by sqlite3_create_module() */
- VtabCtx *pVtabCtx; /* Context for active vtab connect/create */
- VTable **aVTrans; /* Virtual tables with open transactions */
- VTable *pDisconnect; /* Disconnect these in next sqlite3_prepare() */
-#endif
- Hash aFunc; /* Hash table of connection functions */
- Hash aCollSeq; /* All collating sequences */
- BusyHandler busyHandler; /* Busy callback */
- Db aDbStatic[2]; /* Static space for the 2 default backends */
- Savepoint *pSavepoint; /* List of active savepoints */
- int busyTimeout; /* Busy handler timeout, in msec */
- int nSavepoint; /* Number of non-transaction savepoints */
- int nStatement; /* Number of nested statement-transactions */
- i64 nDeferredCons; /* Net deferred constraints this transaction. */
- i64 nDeferredImmCons; /* Net deferred immediate constraints */
- int *pnBytesFreed; /* If not NULL, increment this in DbFree() */
-#ifdef SQLITE_ENABLE_UNLOCK_NOTIFY
- /* The following variables are all protected by the STATIC_MASTER
- ** mutex, not by sqlite3.mutex. They are used by code in notify.c.
- **
- ** When X.pUnlockConnection==Y, that means that X is waiting for Y to
- ** unlock so that it can proceed.
- **
- ** When X.pBlockingConnection==Y, that means that something that X tried
- ** tried to do recently failed with an SQLITE_LOCKED error due to locks
- ** held by Y.
- */
- sqlite3 *pBlockingConnection; /* Connection that caused SQLITE_LOCKED */
- sqlite3 *pUnlockConnection; /* Connection to watch for unlock */
- void *pUnlockArg; /* Argument to xUnlockNotify */
- void (*xUnlockNotify)(void **, int); /* Unlock notify callback */
- sqlite3 *pNextBlocked; /* Next in list of all blocked connections */
-#endif
-#ifdef SQLITE_USER_AUTHENTICATION
- sqlite3_userauth auth; /* User authentication information */
-#endif
-};
-
-/*
-** A macro to discover the encoding of a database.
-*/
-#define SCHEMA_ENC(db) ((db)->aDb[0].pSchema->enc)
-#define ENC(db) ((db)->enc)
-
-/*
-** Possible values for the sqlite3.flags.
-**
-** Value constraints (enforced via assert()):
-** SQLITE_FullFSync == PAGER_FULLFSYNC
-** SQLITE_CkptFullFSync == PAGER_CKPT_FULLFSYNC
-** SQLITE_CacheSpill == PAGER_CACHE_SPILL
-*/
-#define SQLITE_WriteSchema 0x00000001 /* OK to update SQLITE_MASTER */
-#define SQLITE_LegacyFileFmt 0x00000002 /* Create new databases in format 1 */
-#define SQLITE_FullColNames 0x00000004 /* Show full column names on SELECT */
-#define SQLITE_FullFSync 0x00000008 /* Use full fsync on the backend */
-#define SQLITE_CkptFullFSync 0x00000010 /* Use full fsync for checkpoint */
-#define SQLITE_CacheSpill 0x00000020 /* OK to spill pager cache */
-#define SQLITE_ShortColNames 0x00000040 /* Show short columns names */
-#define SQLITE_CountRows 0x00000080 /* Count rows changed by INSERT, */
- /* DELETE, or UPDATE and return */
- /* the count using a callback. */
-#define SQLITE_NullCallback 0x00000100 /* Invoke the callback once if the */
- /* result set is empty */
-#define SQLITE_IgnoreChecks 0x00000200 /* Do not enforce check constraints */
-#define SQLITE_ReadUncommit 0x00000400 /* READ UNCOMMITTED in shared-cache */
-#define SQLITE_NoCkptOnClose 0x00000800 /* No checkpoint on close()/DETACH */
-#define SQLITE_ReverseOrder 0x00001000 /* Reverse unordered SELECTs */
-#define SQLITE_RecTriggers 0x00002000 /* Enable recursive triggers */
-#define SQLITE_ForeignKeys 0x00004000 /* Enforce foreign key constraints */
-#define SQLITE_AutoIndex 0x00008000 /* Enable automatic indexes */
-#define SQLITE_LoadExtension 0x00010000 /* Enable load_extension */
-#define SQLITE_LoadExtFunc 0x00020000 /* Enable load_extension() SQL func */
-#define SQLITE_EnableTrigger 0x00040000 /* True to enable triggers */
-#define SQLITE_DeferFKs 0x00080000 /* Defer all FK constraints */
-#define SQLITE_QueryOnly 0x00100000 /* Disable database changes */
-#define SQLITE_CellSizeCk 0x00200000 /* Check btree cell sizes on load */
-#define SQLITE_Fts3Tokenizer 0x00400000 /* Enable fts3_tokenizer(2) */
-#define SQLITE_EnableQPSG 0x00800000 /* Query Planner Stability Guarantee*/
-#define SQLITE_TriggerEQP 0x01000000 /* Show trigger EXPLAIN QUERY PLAN */
-#define SQLITE_ResetDatabase 0x02000000 /* Reset the database */
-#define SQLITE_LegacyAlter 0x04000000 /* Legacy ALTER TABLE behaviour */
-
-/* Flags used only if debugging */
-#ifdef SQLITE_DEBUG
-#define SQLITE_SqlTrace 0x08000000 /* Debug print SQL as it executes */
-#define SQLITE_VdbeListing 0x10000000 /* Debug listings of VDBE programs */
-#define SQLITE_VdbeTrace 0x20000000 /* True to trace VDBE execution */
-#define SQLITE_VdbeAddopTrace 0x40000000 /* Trace sqlite3VdbeAddOp() calls */
-#define SQLITE_VdbeEQP 0x80000000 /* Debug EXPLAIN QUERY PLAN */
-#endif
-
-/*
-** Allowed values for sqlite3.mDbFlags
-*/
-#define DBFLAG_SchemaChange 0x0001 /* Uncommitted Hash table changes */
-#define DBFLAG_PreferBuiltin 0x0002 /* Preference to built-in funcs */
-#define DBFLAG_Vacuum 0x0004 /* Currently in a VACUUM */
-#define DBFLAG_SchemaKnownOk 0x0008 /* Schema is known to be valid */
-
-/*
-** Bits of the sqlite3.dbOptFlags field that are used by the
-** sqlite3_test_control(SQLITE_TESTCTRL_OPTIMIZATIONS,...) interface to
-** selectively disable various optimizations.
-*/
-#define SQLITE_QueryFlattener 0x0001 /* Query flattening */
- /* 0x0002 available for reuse */
-#define SQLITE_GroupByOrder 0x0004 /* GROUPBY cover of ORDERBY */
-#define SQLITE_FactorOutConst 0x0008 /* Constant factoring */
-#define SQLITE_DistinctOpt 0x0010 /* DISTINCT using indexes */
-#define SQLITE_CoverIdxScan 0x0020 /* Covering index scans */
-#define SQLITE_OrderByIdxJoin 0x0040 /* ORDER BY of joins via index */
-#define SQLITE_Transitive 0x0080 /* Transitive constraints */
-#define SQLITE_OmitNoopJoin 0x0100 /* Omit unused tables in joins */
-#define SQLITE_CountOfView 0x0200 /* The count-of-view optimization */
-#define SQLITE_CursorHints 0x0400 /* Add OP_CursorHint opcodes */
-#define SQLITE_Stat34 0x0800 /* Use STAT3 or STAT4 data */
- /* TH3 expects the Stat34 ^^^^^^ value to be 0x0800. Don't change it */
-#define SQLITE_PushDown 0x1000 /* The push-down optimization */
-#define SQLITE_SimplifyJoin 0x2000 /* Convert LEFT JOIN to JOIN */
-#define SQLITE_SkipScan 0x4000 /* Skip-scans */
-#define SQLITE_PropagateConst 0x8000 /* The constant propagation opt */
-#define SQLITE_AllOpts 0xffff /* All optimizations */
-
-/*
-** Macros for testing whether or not optimizations are enabled or disabled.
-*/
-#define OptimizationDisabled(db, mask) (((db)->dbOptFlags&(mask))!=0)
-#define OptimizationEnabled(db, mask) (((db)->dbOptFlags&(mask))==0)
-
-/*
-** Return true if it OK to factor constant expressions into the initialization
-** code. The argument is a Parse object for the code generator.
-*/
-#define ConstFactorOk(P) ((P)->okConstFactor)
-
-/*
-** Possible values for the sqlite.magic field.
-** The numbers are obtained at random and have no special meaning, other
-** than being distinct from one another.
-*/
-#define SQLITE_MAGIC_OPEN 0xa029a697 /* Database is open */
-#define SQLITE_MAGIC_CLOSED 0x9f3c2d33 /* Database is closed */
-#define SQLITE_MAGIC_SICK 0x4b771290 /* Error and awaiting close */
-#define SQLITE_MAGIC_BUSY 0xf03b7906 /* Database currently in use */
-#define SQLITE_MAGIC_ERROR 0xb5357930 /* An SQLITE_MISUSE error occurred */
-#define SQLITE_MAGIC_ZOMBIE 0x64cffc7f /* Close with last statement close */
-
-/*
-** Each SQL function is defined by an instance of the following
-** structure. For global built-in functions (ex: substr(), max(), count())
-** a pointer to this structure is held in the sqlite3BuiltinFunctions object.
-** For per-connection application-defined functions, a pointer to this
-** structure is held in the db->aHash hash table.
-**
-** The u.pHash field is used by the global built-ins. The u.pDestructor
-** field is used by per-connection app-def functions.
-*/
-struct FuncDef {
- i8 nArg; /* Number of arguments. -1 means unlimited */
- u32 funcFlags; /* Some combination of SQLITE_FUNC_* */
- void *pUserData; /* User data parameter */
- FuncDef *pNext; /* Next function with same name */
- void (*xSFunc)(sqlite3_context*,int,sqlite3_value**); /* func or agg-step */
- void (*xFinalize)(sqlite3_context*); /* Agg finalizer */
- void (*xValue)(sqlite3_context*); /* Current agg value */
- void (*xInverse)(sqlite3_context*,int,sqlite3_value**); /* inverse agg-step */
- const char *zName; /* SQL name of the function. */
- union {
- FuncDef *pHash; /* Next with a different name but the same hash */
- FuncDestructor *pDestructor; /* Reference counted destructor function */
- } u;
-};
-
-/*
-** This structure encapsulates a user-function destructor callback (as
-** configured using create_function_v2()) and a reference counter. When
-** create_function_v2() is called to create a function with a destructor,
-** a single object of this type is allocated. FuncDestructor.nRef is set to
-** the number of FuncDef objects created (either 1 or 3, depending on whether
-** or not the specified encoding is SQLITE_ANY). The FuncDef.pDestructor
-** member of each of the new FuncDef objects is set to point to the allocated
-** FuncDestructor.
-**
-** Thereafter, when one of the FuncDef objects is deleted, the reference
-** count on this object is decremented. When it reaches 0, the destructor
-** is invoked and the FuncDestructor structure freed.
-*/
-struct FuncDestructor {
- int nRef;
- void (*xDestroy)(void *);
- void *pUserData;
-};
-
-/*
-** Possible values for FuncDef.flags. Note that the _LENGTH and _TYPEOF
-** values must correspond to OPFLAG_LENGTHARG and OPFLAG_TYPEOFARG. And
-** SQLITE_FUNC_CONSTANT must be the same as SQLITE_DETERMINISTIC. There
-** are assert() statements in the code to verify this.
-**
-** Value constraints (enforced via assert()):
-** SQLITE_FUNC_MINMAX == NC_MinMaxAgg == SF_MinMaxAgg
-** SQLITE_FUNC_LENGTH == OPFLAG_LENGTHARG
-** SQLITE_FUNC_TYPEOF == OPFLAG_TYPEOFARG
-** SQLITE_FUNC_CONSTANT == SQLITE_DETERMINISTIC from the API
-** SQLITE_FUNC_ENCMASK depends on SQLITE_UTF* macros in the API
-*/
-#define SQLITE_FUNC_ENCMASK 0x0003 /* SQLITE_UTF8, SQLITE_UTF16BE or UTF16LE */
-#define SQLITE_FUNC_LIKE 0x0004 /* Candidate for the LIKE optimization */
-#define SQLITE_FUNC_CASE 0x0008 /* Case-sensitive LIKE-type function */
-#define SQLITE_FUNC_EPHEM 0x0010 /* Ephemeral. Delete with VDBE */
-#define SQLITE_FUNC_NEEDCOLL 0x0020 /* sqlite3GetFuncCollSeq() might be called*/
-#define SQLITE_FUNC_LENGTH 0x0040 /* Built-in length() function */
-#define SQLITE_FUNC_TYPEOF 0x0080 /* Built-in typeof() function */
-#define SQLITE_FUNC_COUNT 0x0100 /* Built-in count(*) aggregate */
-#define SQLITE_FUNC_COALESCE 0x0200 /* Built-in coalesce() or ifnull() */
-#define SQLITE_FUNC_UNLIKELY 0x0400 /* Built-in unlikely() function */
-#define SQLITE_FUNC_CONSTANT 0x0800 /* Constant inputs give a constant output */
-#define SQLITE_FUNC_MINMAX 0x1000 /* True for min() and max() aggregates */
-#define SQLITE_FUNC_SLOCHNG 0x2000 /* "Slow Change". Value constant during a
- ** single query - might change over time */
-#define SQLITE_FUNC_AFFINITY 0x4000 /* Built-in affinity() function */
-#define SQLITE_FUNC_OFFSET 0x8000 /* Built-in sqlite_offset() function */
-#define SQLITE_FUNC_WINDOW 0x10000 /* Built-in window-only function */
-#define SQLITE_FUNC_WINDOW_SIZE 0x20000 /* Requires partition size as arg. */
-
-/*
-** The following three macros, FUNCTION(), LIKEFUNC() and AGGREGATE() are
-** used to create the initializers for the FuncDef structures.
-**
-** FUNCTION(zName, nArg, iArg, bNC, xFunc)
-** Used to create a scalar function definition of a function zName
-** implemented by C function xFunc that accepts nArg arguments. The
-** value passed as iArg is cast to a (void*) and made available
-** as the user-data (sqlite3_user_data()) for the function. If
-** argument bNC is true, then the SQLITE_FUNC_NEEDCOLL flag is set.
-**
-** VFUNCTION(zName, nArg, iArg, bNC, xFunc)
-** Like FUNCTION except it omits the SQLITE_FUNC_CONSTANT flag.
-**
-** DFUNCTION(zName, nArg, iArg, bNC, xFunc)
-** Like FUNCTION except it omits the SQLITE_FUNC_CONSTANT flag and
-** adds the SQLITE_FUNC_SLOCHNG flag. Used for date & time functions
-** and functions like sqlite_version() that can change, but not during
-** a single query. The iArg is ignored. The user-data is always set
-** to a NULL pointer. The bNC parameter is not used.
-**
-** PURE_DATE(zName, nArg, iArg, bNC, xFunc)
-** Used for "pure" date/time functions, this macro is like DFUNCTION
-** except that it does set the SQLITE_FUNC_CONSTANT flags. iArg is
-** ignored and the user-data for these functions is set to an
-** arbitrary non-NULL pointer. The bNC parameter is not used.
-**
-** AGGREGATE(zName, nArg, iArg, bNC, xStep, xFinal)
-** Used to create an aggregate function definition implemented by
-** the C functions xStep and xFinal. The first four parameters
-** are interpreted in the same way as the first 4 parameters to
-** FUNCTION().
-**
-** WFUNCTION(zName, nArg, iArg, xStep, xFinal, xValue, xInverse)
-** Used to create an aggregate function definition implemented by
-** the C functions xStep and xFinal. The first four parameters
-** are interpreted in the same way as the first 4 parameters to
-** FUNCTION().
-**
-** LIKEFUNC(zName, nArg, pArg, flags)
-** Used to create a scalar function definition of a function zName
-** that accepts nArg arguments and is implemented by a call to C
-** function likeFunc. Argument pArg is cast to a (void *) and made
-** available as the function user-data (sqlite3_user_data()). The
-** FuncDef.flags variable is set to the value passed as the flags
-** parameter.
-*/
-#define FUNCTION(zName, nArg, iArg, bNC, xFunc) \
- {nArg, SQLITE_FUNC_CONSTANT|SQLITE_UTF8|(bNC*SQLITE_FUNC_NEEDCOLL), \
- SQLITE_INT_TO_PTR(iArg), 0, xFunc, 0, 0, 0, #zName, {0} }
-#define VFUNCTION(zName, nArg, iArg, bNC, xFunc) \
- {nArg, SQLITE_UTF8|(bNC*SQLITE_FUNC_NEEDCOLL), \
- SQLITE_INT_TO_PTR(iArg), 0, xFunc, 0, 0, 0, #zName, {0} }
-#define DFUNCTION(zName, nArg, iArg, bNC, xFunc) \
- {nArg, SQLITE_FUNC_SLOCHNG|SQLITE_UTF8, \
- 0, 0, xFunc, 0, 0, 0, #zName, {0} }
-#define PURE_DATE(zName, nArg, iArg, bNC, xFunc) \
- {nArg, SQLITE_FUNC_SLOCHNG|SQLITE_UTF8|SQLITE_FUNC_CONSTANT, \
- (void*)&sqlite3Config, 0, xFunc, 0, 0, 0, #zName, {0} }
-#define FUNCTION2(zName, nArg, iArg, bNC, xFunc, extraFlags) \
- {nArg,SQLITE_FUNC_CONSTANT|SQLITE_UTF8|(bNC*SQLITE_FUNC_NEEDCOLL)|extraFlags,\
- SQLITE_INT_TO_PTR(iArg), 0, xFunc, 0, 0, 0, #zName, {0} }
-#define STR_FUNCTION(zName, nArg, pArg, bNC, xFunc) \
- {nArg, SQLITE_FUNC_SLOCHNG|SQLITE_UTF8|(bNC*SQLITE_FUNC_NEEDCOLL), \
- pArg, 0, xFunc, 0, 0, 0, #zName, }
-#define LIKEFUNC(zName, nArg, arg, flags) \
- {nArg, SQLITE_FUNC_CONSTANT|SQLITE_UTF8|flags, \
- (void *)arg, 0, likeFunc, 0, 0, 0, #zName, {0} }
-#define AGGREGATE(zName, nArg, arg, nc, xStep, xFinal, xValue) \
- {nArg, SQLITE_UTF8|(nc*SQLITE_FUNC_NEEDCOLL), \
- SQLITE_INT_TO_PTR(arg), 0, xStep,xFinal,xValue,0,#zName, {0}}
-#define AGGREGATE2(zName, nArg, arg, nc, xStep, xFinal, extraFlags) \
- {nArg, SQLITE_UTF8|(nc*SQLITE_FUNC_NEEDCOLL)|extraFlags, \
- SQLITE_INT_TO_PTR(arg), 0, xStep,xFinal,xFinal,0,#zName, {0}}
-
-#define WAGGREGATE(zName, nArg, arg, nc, xStep, xFinal, xValue, xInverse, f) \
- {nArg, SQLITE_UTF8|(nc*SQLITE_FUNC_NEEDCOLL)|f, \
- SQLITE_INT_TO_PTR(arg), 0, xStep,xFinal,xValue,xInverse,#zName, {0}}
-
-/*
-** All current savepoints are stored in a linked list starting at
-** sqlite3.pSavepoint. The first element in the list is the most recently
-** opened savepoint. Savepoints are added to the list by the vdbe
-** OP_Savepoint instruction.
-*/
-struct Savepoint {
- char *zName; /* Savepoint name (nul-terminated) */
- i64 nDeferredCons; /* Number of deferred fk violations */
- i64 nDeferredImmCons; /* Number of deferred imm fk. */
- Savepoint *pNext; /* Parent savepoint (if any) */
-};
-
-/*
-** The following are used as the second parameter to sqlite3Savepoint(),
-** and as the P1 argument to the OP_Savepoint instruction.
-*/
-#define SAVEPOINT_BEGIN 0
-#define SAVEPOINT_RELEASE 1
-#define SAVEPOINT_ROLLBACK 2
-
-
-/*
-** Each SQLite module (virtual table definition) is defined by an
-** instance of the following structure, stored in the sqlite3.aModule
-** hash table.
-*/
-struct Module {
- const sqlite3_module *pModule; /* Callback pointers */
- const char *zName; /* Name passed to create_module() */
- void *pAux; /* pAux passed to create_module() */
- void (*xDestroy)(void *); /* Module destructor function */
- Table *pEpoTab; /* Eponymous table for this module */
-};
-
-/*
-** information about each column of an SQL table is held in an instance
-** of this structure.
-*/
-struct Column {
- char *zName; /* Name of this column, \000, then the type */
- Expr *pDflt; /* Default value of this column */
- char *zColl; /* Collating sequence. If NULL, use the default */
- u8 notNull; /* An OE_ code for handling a NOT NULL constraint */
- char affinity; /* One of the SQLITE_AFF_... values */
- u8 szEst; /* Estimated size of value in this column. sizeof(INT)==1 */
- u8 colFlags; /* Boolean properties. See COLFLAG_ defines below */
-};
-
-/* Allowed values for Column.colFlags:
-*/
-#define COLFLAG_PRIMKEY 0x0001 /* Column is part of the primary key */
-#define COLFLAG_HIDDEN 0x0002 /* A hidden column in a virtual table */
-#define COLFLAG_HASTYPE 0x0004 /* Type name follows column name */
-#define COLFLAG_UNIQUE 0x0008 /* Column def contains "UNIQUE" or "PK" */
-#define COLFLAG_SORTERREF 0x0010 /* Use sorter-refs with this column */
-
-/*
-** A "Collating Sequence" is defined by an instance of the following
-** structure. Conceptually, a collating sequence consists of a name and
-** a comparison routine that defines the order of that sequence.
-**
-** If CollSeq.xCmp is NULL, it means that the
-** collating sequence is undefined. Indices built on an undefined
-** collating sequence may not be read or written.
-*/
-struct CollSeq {
- char *zName; /* Name of the collating sequence, UTF-8 encoded */
- u8 enc; /* Text encoding handled by xCmp() */
- void *pUser; /* First argument to xCmp() */
- int (*xCmp)(void*,int, const void*, int, const void*);
- void (*xDel)(void*); /* Destructor for pUser */
-};
-
-/*
-** A sort order can be either ASC or DESC.
-*/
-#define SQLITE_SO_ASC 0 /* Sort in ascending order */
-#define SQLITE_SO_DESC 1 /* Sort in ascending order */
-#define SQLITE_SO_UNDEFINED -1 /* No sort order specified */
-
-/*
-** Column affinity types.
-**
-** These used to have mnemonic name like 'i' for SQLITE_AFF_INTEGER and
-** 't' for SQLITE_AFF_TEXT. But we can save a little space and improve
-** the speed a little by numbering the values consecutively.
-**
-** But rather than start with 0 or 1, we begin with 'A'. That way,
-** when multiple affinity types are concatenated into a string and
-** used as the P4 operand, they will be more readable.
-**
-** Note also that the numeric types are grouped together so that testing
-** for a numeric type is a single comparison. And the BLOB type is first.
-*/
-#define SQLITE_AFF_BLOB 'A'
-#define SQLITE_AFF_TEXT 'B'
-#define SQLITE_AFF_NUMERIC 'C'
-#define SQLITE_AFF_INTEGER 'D'
-#define SQLITE_AFF_REAL 'E'
-
-#define sqlite3IsNumericAffinity(X) ((X)>=SQLITE_AFF_NUMERIC)
-
-/*
-** The SQLITE_AFF_MASK values masks off the significant bits of an
-** affinity value.
-*/
-#define SQLITE_AFF_MASK 0x47
-
-/*
-** Additional bit values that can be ORed with an affinity without
-** changing the affinity.
-**
-** The SQLITE_NOTNULL flag is a combination of NULLEQ and JUMPIFNULL.
-** It causes an assert() to fire if either operand to a comparison
-** operator is NULL. It is added to certain comparison operators to
-** prove that the operands are always NOT NULL.
-*/
-#define SQLITE_KEEPNULL 0x08 /* Used by vector == or <> */
-#define SQLITE_JUMPIFNULL 0x10 /* jumps if either operand is NULL */
-#define SQLITE_STOREP2 0x20 /* Store result in reg[P2] rather than jump */
-#define SQLITE_NULLEQ 0x80 /* NULL=NULL */
-#define SQLITE_NOTNULL 0x90 /* Assert that operands are never NULL */
-
-/*
-** An object of this type is created for each virtual table present in
-** the database schema.
-**
-** If the database schema is shared, then there is one instance of this
-** structure for each database connection (sqlite3*) that uses the shared
-** schema. This is because each database connection requires its own unique
-** instance of the sqlite3_vtab* handle used to access the virtual table
-** implementation. sqlite3_vtab* handles can not be shared between
-** database connections, even when the rest of the in-memory database
-** schema is shared, as the implementation often stores the database
-** connection handle passed to it via the xConnect() or xCreate() method
-** during initialization internally. This database connection handle may
-** then be used by the virtual table implementation to access real tables
-** within the database. So that they appear as part of the callers
-** transaction, these accesses need to be made via the same database
-** connection as that used to execute SQL operations on the virtual table.
-**
-** All VTable objects that correspond to a single table in a shared
-** database schema are initially stored in a linked-list pointed to by
-** the Table.pVTable member variable of the corresponding Table object.
-** When an sqlite3_prepare() operation is required to access the virtual
-** table, it searches the list for the VTable that corresponds to the
-** database connection doing the preparing so as to use the correct
-** sqlite3_vtab* handle in the compiled query.
-**
-** When an in-memory Table object is deleted (for example when the
-** schema is being reloaded for some reason), the VTable objects are not
-** deleted and the sqlite3_vtab* handles are not xDisconnect()ed
-** immediately. Instead, they are moved from the Table.pVTable list to
-** another linked list headed by the sqlite3.pDisconnect member of the
-** corresponding sqlite3 structure. They are then deleted/xDisconnected
-** next time a statement is prepared using said sqlite3*. This is done
-** to avoid deadlock issues involving multiple sqlite3.mutex mutexes.
-** Refer to comments above function sqlite3VtabUnlockList() for an
-** explanation as to why it is safe to add an entry to an sqlite3.pDisconnect
-** list without holding the corresponding sqlite3.mutex mutex.
-**
-** The memory for objects of this type is always allocated by
-** sqlite3DbMalloc(), using the connection handle stored in VTable.db as
-** the first argument.
-*/
-struct VTable {
- sqlite3 *db; /* Database connection associated with this table */
- Module *pMod; /* Pointer to module implementation */
- sqlite3_vtab *pVtab; /* Pointer to vtab instance */
- int nRef; /* Number of pointers to this structure */
- u8 bConstraint; /* True if constraints are supported */
- int iSavepoint; /* Depth of the SAVEPOINT stack */
- VTable *pNext; /* Next in linked list (see above) */
-};
-
-/*
-** The schema for each SQL table and view is represented in memory
-** by an instance of the following structure.
-*/
-struct Table {
- char *zName; /* Name of the table or view */
- Column *aCol; /* Information about each column */
- Index *pIndex; /* List of SQL indexes on this table. */
- Select *pSelect; /* NULL for tables. Points to definition if a view. */
- FKey *pFKey; /* Linked list of all foreign keys in this table */
- char *zColAff; /* String defining the affinity of each column */
- ExprList *pCheck; /* All CHECK constraints */
- /* ... also used as column name list in a VIEW */
- int tnum; /* Root BTree page for this table */
- u32 nTabRef; /* Number of pointers to this Table */
- u32 tabFlags; /* Mask of TF_* values */
- i16 iPKey; /* If not negative, use aCol[iPKey] as the rowid */
- i16 nCol; /* Number of columns in this table */
- LogEst nRowLogEst; /* Estimated rows in table - from sqlite_stat1 table */
- LogEst szTabRow; /* Estimated size of each table row in bytes */
-#ifdef SQLITE_ENABLE_COSTMULT
- LogEst costMult; /* Cost multiplier for using this table */
-#endif
- u8 keyConf; /* What to do in case of uniqueness conflict on iPKey */
-#ifndef SQLITE_OMIT_ALTERTABLE
- int addColOffset; /* Offset in CREATE TABLE stmt to add a new column */
-#endif
-#ifndef SQLITE_OMIT_VIRTUALTABLE
- int nModuleArg; /* Number of arguments to the module */
- char **azModuleArg; /* 0: module 1: schema 2: vtab name 3...: args */
- VTable *pVTable; /* List of VTable objects. */
-#endif
- Trigger *pTrigger; /* List of triggers stored in pSchema */
- Schema *pSchema; /* Schema that contains this table */
- Table *pNextZombie; /* Next on the Parse.pZombieTab list */
-};
-
-/*
-** Allowed values for Table.tabFlags.
-**
-** TF_OOOHidden applies to tables or view that have hidden columns that are
-** followed by non-hidden columns. Example: "CREATE VIRTUAL TABLE x USING
-** vtab1(a HIDDEN, b);". Since "b" is a non-hidden column but "a" is hidden,
-** the TF_OOOHidden attribute would apply in this case. Such tables require
-** special handling during INSERT processing.
-*/
-#define TF_Readonly 0x0001 /* Read-only system table */
-#define TF_Ephemeral 0x0002 /* An ephemeral table */
-#define TF_HasPrimaryKey 0x0004 /* Table has a primary key */
-#define TF_Autoincrement 0x0008 /* Integer primary key is autoincrement */
-#define TF_HasStat1 0x0010 /* nRowLogEst set from sqlite_stat1 */
-#define TF_WithoutRowid 0x0020 /* No rowid. PRIMARY KEY is the key */
-#define TF_NoVisibleRowid 0x0040 /* No user-visible "rowid" column */
-#define TF_OOOHidden 0x0080 /* Out-of-Order hidden columns */
-#define TF_StatsUsed 0x0100 /* Query planner decisions affected by
- ** Index.aiRowLogEst[] values */
-#define TF_HasNotNull 0x0200 /* Contains NOT NULL constraints */
-
-/*
-** Test to see whether or not a table is a virtual table. This is
-** done as a macro so that it will be optimized out when virtual
-** table support is omitted from the build.
-*/
-#ifndef SQLITE_OMIT_VIRTUALTABLE
-# define IsVirtual(X) ((X)->nModuleArg)
-#else
-# define IsVirtual(X) 0
-#endif
-
-/*
-** Macros to determine if a column is hidden. IsOrdinaryHiddenColumn()
-** only works for non-virtual tables (ordinary tables and views) and is
-** always false unless SQLITE_ENABLE_HIDDEN_COLUMNS is defined. The
-** IsHiddenColumn() macro is general purpose.
-*/
-#if defined(SQLITE_ENABLE_HIDDEN_COLUMNS)
-# define IsHiddenColumn(X) (((X)->colFlags & COLFLAG_HIDDEN)!=0)
-# define IsOrdinaryHiddenColumn(X) (((X)->colFlags & COLFLAG_HIDDEN)!=0)
-#elif !defined(SQLITE_OMIT_VIRTUALTABLE)
-# define IsHiddenColumn(X) (((X)->colFlags & COLFLAG_HIDDEN)!=0)
-# define IsOrdinaryHiddenColumn(X) 0
-#else
-# define IsHiddenColumn(X) 0
-# define IsOrdinaryHiddenColumn(X) 0
-#endif
-
-
-/* Does the table have a rowid */
-#define HasRowid(X) (((X)->tabFlags & TF_WithoutRowid)==0)
-#define VisibleRowid(X) (((X)->tabFlags & TF_NoVisibleRowid)==0)
-
-/*
-** Each foreign key constraint is an instance of the following structure.
-**
-** A foreign key is associated with two tables. The "from" table is
-** the table that contains the REFERENCES clause that creates the foreign
-** key. The "to" table is the table that is named in the REFERENCES clause.
-** Consider this example:
-**
-** CREATE TABLE ex1(
-** a INTEGER PRIMARY KEY,
-** b INTEGER CONSTRAINT fk1 REFERENCES ex2(x)
-** );
-**
-** For foreign key "fk1", the from-table is "ex1" and the to-table is "ex2".
-** Equivalent names:
-**
-** from-table == child-table
-** to-table == parent-table
-**
-** Each REFERENCES clause generates an instance of the following structure
-** which is attached to the from-table. The to-table need not exist when
-** the from-table is created. The existence of the to-table is not checked.
-**
-** The list of all parents for child Table X is held at X.pFKey.
-**
-** A list of all children for a table named Z (which might not even exist)
-** is held in Schema.fkeyHash with a hash key of Z.
-*/
-struct FKey {
- Table *pFrom; /* Table containing the REFERENCES clause (aka: Child) */
- FKey *pNextFrom; /* Next FKey with the same in pFrom. Next parent of pFrom */
- char *zTo; /* Name of table that the key points to (aka: Parent) */
- FKey *pNextTo; /* Next with the same zTo. Next child of zTo. */
- FKey *pPrevTo; /* Previous with the same zTo */
- int nCol; /* Number of columns in this key */
- /* EV: R-30323-21917 */
- u8 isDeferred; /* True if constraint checking is deferred till COMMIT */
- u8 aAction[2]; /* ON DELETE and ON UPDATE actions, respectively */
- Trigger *apTrigger[2];/* Triggers for aAction[] actions */
- struct sColMap { /* Mapping of columns in pFrom to columns in zTo */
- int iFrom; /* Index of column in pFrom */
- char *zCol; /* Name of column in zTo. If NULL use PRIMARY KEY */
- } aCol[1]; /* One entry for each of nCol columns */
-};
-
-/*
-** SQLite supports many different ways to resolve a constraint
-** error. ROLLBACK processing means that a constraint violation
-** causes the operation in process to fail and for the current transaction
-** to be rolled back. ABORT processing means the operation in process
-** fails and any prior changes from that one operation are backed out,
-** but the transaction is not rolled back. FAIL processing means that
-** the operation in progress stops and returns an error code. But prior
-** changes due to the same operation are not backed out and no rollback
-** occurs. IGNORE means that the particular row that caused the constraint
-** error is not inserted or updated. Processing continues and no error
-** is returned. REPLACE means that preexisting database rows that caused
-** a UNIQUE constraint violation are removed so that the new insert or
-** update can proceed. Processing continues and no error is reported.
-**
-** RESTRICT, SETNULL, and CASCADE actions apply only to foreign keys.
-** RESTRICT is the same as ABORT for IMMEDIATE foreign keys and the
-** same as ROLLBACK for DEFERRED keys. SETNULL means that the foreign
-** key is set to NULL. CASCADE means that a DELETE or UPDATE of the
-** referenced table row is propagated into the row that holds the
-** foreign key.
-**
-** The following symbolic values are used to record which type
-** of action to take.
-*/
-#define OE_None 0 /* There is no constraint to check */
-#define OE_Rollback 1 /* Fail the operation and rollback the transaction */
-#define OE_Abort 2 /* Back out changes but do no rollback transaction */
-#define OE_Fail 3 /* Stop the operation but leave all prior changes */
-#define OE_Ignore 4 /* Ignore the error. Do not do the INSERT or UPDATE */
-#define OE_Replace 5 /* Delete existing record, then do INSERT or UPDATE */
-#define OE_Update 6 /* Process as a DO UPDATE in an upsert */
-#define OE_Restrict 7 /* OE_Abort for IMMEDIATE, OE_Rollback for DEFERRED */
-#define OE_SetNull 8 /* Set the foreign key value to NULL */
-#define OE_SetDflt 9 /* Set the foreign key value to its default */
-#define OE_Cascade 10 /* Cascade the changes */
-#define OE_Default 11 /* Do whatever the default action is */
-
-
-/*
-** An instance of the following structure is passed as the first
-** argument to sqlite3VdbeKeyCompare and is used to control the
-** comparison of the two index keys.
-**
-** Note that aSortOrder[] and aColl[] have nField+1 slots. There
-** are nField slots for the columns of an index then one extra slot
-** for the rowid at the end.
-*/
-struct KeyInfo {
- u32 nRef; /* Number of references to this KeyInfo object */
- u8 enc; /* Text encoding - one of the SQLITE_UTF* values */
- u16 nKeyField; /* Number of key columns in the index */
- u16 nAllField; /* Total columns, including key plus others */
- sqlite3 *db; /* The database connection */
- u8 *aSortOrder; /* Sort order for each column. */
- CollSeq *aColl[1]; /* Collating sequence for each term of the key */
-};
-
-/*
-** This object holds a record which has been parsed out into individual
-** fields, for the purposes of doing a comparison.
-**
-** A record is an object that contains one or more fields of data.
-** Records are used to store the content of a table row and to store
-** the key of an index. A blob encoding of a record is created by
-** the OP_MakeRecord opcode of the VDBE and is disassembled by the
-** OP_Column opcode.
-**
-** An instance of this object serves as a "key" for doing a search on
-** an index b+tree. The goal of the search is to find the entry that
-** is closed to the key described by this object. This object might hold
-** just a prefix of the key. The number of fields is given by
-** pKeyInfo->nField.
-**
-** The r1 and r2 fields are the values to return if this key is less than
-** or greater than a key in the btree, respectively. These are normally
-** -1 and +1 respectively, but might be inverted to +1 and -1 if the b-tree
-** is in DESC order.
-**
-** The key comparison functions actually return default_rc when they find
-** an equals comparison. default_rc can be -1, 0, or +1. If there are
-** multiple entries in the b-tree with the same key (when only looking
-** at the first pKeyInfo->nFields,) then default_rc can be set to -1 to
-** cause the search to find the last match, or +1 to cause the search to
-** find the first match.
-**
-** The key comparison functions will set eqSeen to true if they ever
-** get and equal results when comparing this structure to a b-tree record.
-** When default_rc!=0, the search might end up on the record immediately
-** before the first match or immediately after the last match. The
-** eqSeen field will indicate whether or not an exact match exists in the
-** b-tree.
-*/
-struct UnpackedRecord {
- KeyInfo *pKeyInfo; /* Collation and sort-order information */
- Mem *aMem; /* Values */
- u16 nField; /* Number of entries in apMem[] */
- i8 default_rc; /* Comparison result if keys are equal */
- u8 errCode; /* Error detected by xRecordCompare (CORRUPT or NOMEM) */
- i8 r1; /* Value to return if (lhs < rhs) */
- i8 r2; /* Value to return if (lhs > rhs) */
- u8 eqSeen; /* True if an equality comparison has been seen */
-};
-
-
-/*
-** Each SQL index is represented in memory by an
-** instance of the following structure.
-**
-** The columns of the table that are to be indexed are described
-** by the aiColumn[] field of this structure. For example, suppose
-** we have the following table and index:
-**
-** CREATE TABLE Ex1(c1 int, c2 int, c3 text);
-** CREATE INDEX Ex2 ON Ex1(c3,c1);
-**
-** In the Table structure describing Ex1, nCol==3 because there are
-** three columns in the table. In the Index structure describing
-** Ex2, nColumn==2 since 2 of the 3 columns of Ex1 are indexed.
-** The value of aiColumn is {2, 0}. aiColumn[0]==2 because the
-** first column to be indexed (c3) has an index of 2 in Ex1.aCol[].
-** The second column to be indexed (c1) has an index of 0 in
-** Ex1.aCol[], hence Ex2.aiColumn[1]==0.
-**
-** The Index.onError field determines whether or not the indexed columns
-** must be unique and what to do if they are not. When Index.onError=OE_None,
-** it means this is not a unique index. Otherwise it is a unique index
-** and the value of Index.onError indicate the which conflict resolution
-** algorithm to employ whenever an attempt is made to insert a non-unique
-** element.
-**
-** While parsing a CREATE TABLE or CREATE INDEX statement in order to
-** generate VDBE code (as opposed to parsing one read from an sqlite_master
-** table as part of parsing an existing database schema), transient instances
-** of this structure may be created. In this case the Index.tnum variable is
-** used to store the address of a VDBE instruction, not a database page
-** number (it cannot - the database page is not allocated until the VDBE
-** program is executed). See convertToWithoutRowidTable() for details.
-*/
-struct Index {
- char *zName; /* Name of this index */
- i16 *aiColumn; /* Which columns are used by this index. 1st is 0 */
- LogEst *aiRowLogEst; /* From ANALYZE: Est. rows selected by each column */
- Table *pTable; /* The SQL table being indexed */
- char *zColAff; /* String defining the affinity of each column */
- Index *pNext; /* The next index associated with the same table */
- Schema *pSchema; /* Schema containing this index */
- u8 *aSortOrder; /* for each column: True==DESC, False==ASC */
- const char **azColl; /* Array of collation sequence names for index */
- Expr *pPartIdxWhere; /* WHERE clause for partial indices */
- ExprList *aColExpr; /* Column expressions */
- int tnum; /* DB Page containing root of this index */
- LogEst szIdxRow; /* Estimated average row size in bytes */
- u16 nKeyCol; /* Number of columns forming the key */
- u16 nColumn; /* Number of columns stored in the index */
- u8 onError; /* OE_Abort, OE_Ignore, OE_Replace, or OE_None */
- unsigned idxType:2; /* 1==UNIQUE, 2==PRIMARY KEY, 0==CREATE INDEX */
- unsigned bUnordered:1; /* Use this index for == or IN queries only */
- unsigned uniqNotNull:1; /* True if UNIQUE and NOT NULL for all columns */
- unsigned isResized:1; /* True if resizeIndexObject() has been called */
- unsigned isCovering:1; /* True if this is a covering index */
- unsigned noSkipScan:1; /* Do not try to use skip-scan if true */
- unsigned hasStat1:1; /* aiRowLogEst values come from sqlite_stat1 */
- unsigned bNoQuery:1; /* Do not use this index to optimize queries */
-#ifdef SQLITE_ENABLE_STAT3_OR_STAT4
- int nSample; /* Number of elements in aSample[] */
- int nSampleCol; /* Size of IndexSample.anEq[] and so on */
- tRowcnt *aAvgEq; /* Average nEq values for keys not in aSample */
- IndexSample *aSample; /* Samples of the left-most key */
- tRowcnt *aiRowEst; /* Non-logarithmic stat1 data for this index */
- tRowcnt nRowEst0; /* Non-logarithmic number of rows in the index */
-#endif
- Bitmask colNotIdxed; /* 0 for unindexed columns in pTab */
-};
-
-/*
-** Allowed values for Index.idxType
-*/
-#define SQLITE_IDXTYPE_APPDEF 0 /* Created using CREATE INDEX */
-#define SQLITE_IDXTYPE_UNIQUE 1 /* Implements a UNIQUE constraint */
-#define SQLITE_IDXTYPE_PRIMARYKEY 2 /* Is the PRIMARY KEY for the table */
-
-/* Return true if index X is a PRIMARY KEY index */
-#define IsPrimaryKeyIndex(X) ((X)->idxType==SQLITE_IDXTYPE_PRIMARYKEY)
-
-/* Return true if index X is a UNIQUE index */
-#define IsUniqueIndex(X) ((X)->onError!=OE_None)
-
-/* The Index.aiColumn[] values are normally positive integer. But
-** there are some negative values that have special meaning:
-*/
-#define XN_ROWID (-1) /* Indexed column is the rowid */
-#define XN_EXPR (-2) /* Indexed column is an expression */
-
-/*
-** Each sample stored in the sqlite_stat3 table is represented in memory
-** using a structure of this type. See documentation at the top of the
-** analyze.c source file for additional information.
-*/
-struct IndexSample {
- void *p; /* Pointer to sampled record */
- int n; /* Size of record in bytes */
- tRowcnt *anEq; /* Est. number of rows where the key equals this sample */
- tRowcnt *anLt; /* Est. number of rows where key is less than this sample */
- tRowcnt *anDLt; /* Est. number of distinct keys less than this sample */
-};
-
-/*
-** Each token coming out of the lexer is an instance of
-** this structure. Tokens are also used as part of an expression.
-**
-** The memory that "z" points to is owned by other objects. Take care
-** that the owner of the "z" string does not deallocate the string before
-** the Token goes out of scope! Very often, the "z" points to some place
-** in the middle of the Parse.zSql text. But it might also point to a
-** static string.
-*/
-struct Token {
- const char *z; /* Text of the token. Not NULL-terminated! */
- unsigned int n; /* Number of characters in this token */
-};
-
-/*
-** An instance of this structure contains information needed to generate
-** code for a SELECT that contains aggregate functions.
-**
-** If Expr.op==TK_AGG_COLUMN or TK_AGG_FUNCTION then Expr.pAggInfo is a
-** pointer to this structure. The Expr.iColumn field is the index in
-** AggInfo.aCol[] or AggInfo.aFunc[] of information needed to generate
-** code for that node.
-**
-** AggInfo.pGroupBy and AggInfo.aFunc.pExpr point to fields within the
-** original Select structure that describes the SELECT statement. These
-** fields do not need to be freed when deallocating the AggInfo structure.
-*/
-struct AggInfo {
- u8 directMode; /* Direct rendering mode means take data directly
- ** from source tables rather than from accumulators */
- u8 useSortingIdx; /* In direct mode, reference the sorting index rather
- ** than the source table */
- int sortingIdx; /* Cursor number of the sorting index */
- int sortingIdxPTab; /* Cursor number of pseudo-table */
- int nSortingColumn; /* Number of columns in the sorting index */
- int mnReg, mxReg; /* Range of registers allocated for aCol and aFunc */
- ExprList *pGroupBy; /* The group by clause */
- struct AggInfo_col { /* For each column used in source tables */
- Table *pTab; /* Source table */
- int iTable; /* Cursor number of the source table */
- int iColumn; /* Column number within the source table */
- int iSorterColumn; /* Column number in the sorting index */
- int iMem; /* Memory location that acts as accumulator */
- Expr *pExpr; /* The original expression */
- } *aCol;
- int nColumn; /* Number of used entries in aCol[] */
- int nAccumulator; /* Number of columns that show through to the output.
- ** Additional columns are used only as parameters to
- ** aggregate functions */
- struct AggInfo_func { /* For each aggregate function */
- Expr *pExpr; /* Expression encoding the function */
- FuncDef *pFunc; /* The aggregate function implementation */
- int iMem; /* Memory location that acts as accumulator */
- int iDistinct; /* Ephemeral table used to enforce DISTINCT */
- } *aFunc;
- int nFunc; /* Number of entries in aFunc[] */
-};
-
-/*
-** The datatype ynVar is a signed integer, either 16-bit or 32-bit.
-** Usually it is 16-bits. But if SQLITE_MAX_VARIABLE_NUMBER is greater
-** than 32767 we have to make it 32-bit. 16-bit is preferred because
-** it uses less memory in the Expr object, which is a big memory user
-** in systems with lots of prepared statements. And few applications
-** need more than about 10 or 20 variables. But some extreme users want
-** to have prepared statements with over 32767 variables, and for them
-** the option is available (at compile-time).
-*/
-#if SQLITE_MAX_VARIABLE_NUMBER<=32767
-typedef i16 ynVar;
-#else
-typedef int ynVar;
-#endif
-
-/*
-** Each node of an expression in the parse tree is an instance
-** of this structure.
-**
-** Expr.op is the opcode. The integer parser token codes are reused
-** as opcodes here. For example, the parser defines TK_GE to be an integer
-** code representing the ">=" operator. This same integer code is reused
-** to represent the greater-than-or-equal-to operator in the expression
-** tree.
-**
-** If the expression is an SQL literal (TK_INTEGER, TK_FLOAT, TK_BLOB,
-** or TK_STRING), then Expr.token contains the text of the SQL literal. If
-** the expression is a variable (TK_VARIABLE), then Expr.token contains the
-** variable name. Finally, if the expression is an SQL function (TK_FUNCTION),
-** then Expr.token contains the name of the function.
-**
-** Expr.pRight and Expr.pLeft are the left and right subexpressions of a
-** binary operator. Either or both may be NULL.
-**
-** Expr.x.pList is a list of arguments if the expression is an SQL function,
-** a CASE expression or an IN expression of the form " IN (, ...)".
-** Expr.x.pSelect is used if the expression is a sub-select or an expression of
-** the form " IN (SELECT ...)". If the EP_xIsSelect bit is set in the
-** Expr.flags mask, then Expr.x.pSelect is valid. Otherwise, Expr.x.pList is
-** valid.
-**
-** An expression of the form ID or ID.ID refers to a column in a table.
-** For such expressions, Expr.op is set to TK_COLUMN and Expr.iTable is
-** the integer cursor number of a VDBE cursor pointing to that table and
-** Expr.iColumn is the column number for the specific column. If the
-** expression is used as a result in an aggregate SELECT, then the
-** value is also stored in the Expr.iAgg column in the aggregate so that
-** it can be accessed after all aggregates are computed.
-**
-** If the expression is an unbound variable marker (a question mark
-** character '?' in the original SQL) then the Expr.iTable holds the index
-** number for that variable.
-**
-** If the expression is a subquery then Expr.iColumn holds an integer
-** register number containing the result of the subquery. If the
-** subquery gives a constant result, then iTable is -1. If the subquery
-** gives a different answer at different times during statement processing
-** then iTable is the address of a subroutine that computes the subquery.
-**
-** If the Expr is of type OP_Column, and the table it is selecting from
-** is a disk table or the "old.*" pseudo-table, then pTab points to the
-** corresponding table definition.
-**
-** ALLOCATION NOTES:
-**
-** Expr objects can use a lot of memory space in database schema. To
-** help reduce memory requirements, sometimes an Expr object will be
-** truncated. And to reduce the number of memory allocations, sometimes
-** two or more Expr objects will be stored in a single memory allocation,
-** together with Expr.zToken strings.
-**
-** If the EP_Reduced and EP_TokenOnly flags are set when
-** an Expr object is truncated. When EP_Reduced is set, then all
-** the child Expr objects in the Expr.pLeft and Expr.pRight subtrees
-** are contained within the same memory allocation. Note, however, that
-** the subtrees in Expr.x.pList or Expr.x.pSelect are always separately
-** allocated, regardless of whether or not EP_Reduced is set.
-*/
-struct Expr {
- u8 op; /* Operation performed by this node */
- char affinity; /* The affinity of the column or 0 if not a column */
- u32 flags; /* Various flags. EP_* See below */
- union {
- char *zToken; /* Token value. Zero terminated and dequoted */
- int iValue; /* Non-negative integer value if EP_IntValue */
- } u;
-
- /* If the EP_TokenOnly flag is set in the Expr.flags mask, then no
- ** space is allocated for the fields below this point. An attempt to
- ** access them will result in a segfault or malfunction.
- *********************************************************************/
-
- Expr *pLeft; /* Left subnode */
- Expr *pRight; /* Right subnode */
- union {
- ExprList *pList; /* op = IN, EXISTS, SELECT, CASE, FUNCTION, BETWEEN */
- Select *pSelect; /* EP_xIsSelect and op = IN, EXISTS, SELECT */
- } x;
-
- /* If the EP_Reduced flag is set in the Expr.flags mask, then no
- ** space is allocated for the fields below this point. An attempt to
- ** access them will result in a segfault or malfunction.
- *********************************************************************/
-
-#if SQLITE_MAX_EXPR_DEPTH>0
- int nHeight; /* Height of the tree headed by this node */
-#endif
- int iTable; /* TK_COLUMN: cursor number of table holding column
- ** TK_REGISTER: register number
- ** TK_TRIGGER: 1 -> new, 0 -> old
- ** EP_Unlikely: 134217728 times likelihood
- ** TK_SELECT: 1st register of result vector */
- ynVar iColumn; /* TK_COLUMN: column index. -1 for rowid.
- ** TK_VARIABLE: variable number (always >= 1).
- ** TK_SELECT_COLUMN: column of the result vector */
- i16 iAgg; /* Which entry in pAggInfo->aCol[] or ->aFunc[] */
- i16 iRightJoinTable; /* If EP_FromJoin, the right table of the join */
- u8 op2; /* TK_REGISTER: original value of Expr.op
- ** TK_COLUMN: the value of p5 for OP_Column
- ** TK_AGG_FUNCTION: nesting depth */
- AggInfo *pAggInfo; /* Used by TK_AGG_COLUMN and TK_AGG_FUNCTION */
- Table *pTab; /* Table for TK_COLUMN expressions. Can be NULL
- ** for a column of an index on an expression */
-#ifndef SQLITE_OMIT_WINDOWFUNC
- Window *pWin; /* Window definition for window functions */
-#endif
-};
-
-/*
-** The following are the meanings of bits in the Expr.flags field.
-*/
-#define EP_FromJoin 0x000001 /* Originates in ON/USING clause of outer join */
-#define EP_Agg 0x000002 /* Contains one or more aggregate functions */
-#define EP_HasFunc 0x000004 /* Contains one or more functions of any kind */
-#define EP_FixedCol 0x000008 /* TK_Column with a known fixed value */
-#define EP_Distinct 0x000010 /* Aggregate function with DISTINCT keyword */
-#define EP_VarSelect 0x000020 /* pSelect is correlated, not constant */
-#define EP_DblQuoted 0x000040 /* token.z was originally in "..." */
-#define EP_InfixFunc 0x000080 /* True for an infix function: LIKE, GLOB, etc */
-#define EP_Collate 0x000100 /* Tree contains a TK_COLLATE operator */
-#define EP_Generic 0x000200 /* Ignore COLLATE or affinity on this tree */
-#define EP_IntValue 0x000400 /* Integer value contained in u.iValue */
-#define EP_xIsSelect 0x000800 /* x.pSelect is valid (otherwise x.pList is) */
-#define EP_Skip 0x001000 /* COLLATE, AS, or UNLIKELY */
-#define EP_Reduced 0x002000 /* Expr struct EXPR_REDUCEDSIZE bytes only */
-#define EP_TokenOnly 0x004000 /* Expr struct EXPR_TOKENONLYSIZE bytes only */
-#define EP_Static 0x008000 /* Held in memory not obtained from malloc() */
-#define EP_MemToken 0x010000 /* Need to sqlite3DbFree() Expr.zToken */
-#define EP_NoReduce 0x020000 /* Cannot EXPRDUP_REDUCE this Expr */
-#define EP_Unlikely 0x040000 /* unlikely() or likelihood() function */
-#define EP_ConstFunc 0x080000 /* A SQLITE_FUNC_CONSTANT or _SLOCHNG function */
-#define EP_CanBeNull 0x100000 /* Can be null despite NOT NULL constraint */
-#define EP_Subquery 0x200000 /* Tree contains a TK_SELECT operator */
-#define EP_Alias 0x400000 /* Is an alias for a result set column */
-#define EP_Leaf 0x800000 /* Expr.pLeft, .pRight, .u.pSelect all NULL */
-
-/*
-** The EP_Propagate mask is a set of properties that automatically propagate
-** upwards into parent nodes.
-*/
-#define EP_Propagate (EP_Collate|EP_Subquery|EP_HasFunc)
-
-/*
-** These macros can be used to test, set, or clear bits in the
-** Expr.flags field.
-*/
-#define ExprHasProperty(E,P) (((E)->flags&(P))!=0)
-#define ExprHasAllProperty(E,P) (((E)->flags&(P))==(P))
-#define ExprSetProperty(E,P) (E)->flags|=(P)
-#define ExprClearProperty(E,P) (E)->flags&=~(P)
-
-/* The ExprSetVVAProperty() macro is used for Verification, Validation,
-** and Accreditation only. It works like ExprSetProperty() during VVA
-** processes but is a no-op for delivery.
-*/
-#ifdef SQLITE_DEBUG
-# define ExprSetVVAProperty(E,P) (E)->flags|=(P)
-#else
-# define ExprSetVVAProperty(E,P)
-#endif
-
-/*
-** Macros to determine the number of bytes required by a normal Expr
-** struct, an Expr struct with the EP_Reduced flag set in Expr.flags
-** and an Expr struct with the EP_TokenOnly flag set.
-*/
-#define EXPR_FULLSIZE sizeof(Expr) /* Full size */
-#define EXPR_REDUCEDSIZE offsetof(Expr,iTable) /* Common features */
-#define EXPR_TOKENONLYSIZE offsetof(Expr,pLeft) /* Fewer features */
-
-/*
-** Flags passed to the sqlite3ExprDup() function. See the header comment
-** above sqlite3ExprDup() for details.
-*/
-#define EXPRDUP_REDUCE 0x0001 /* Used reduced-size Expr nodes */
-
-/*
-** A list of expressions. Each expression may optionally have a
-** name. An expr/name combination can be used in several ways, such
-** as the list of "expr AS ID" fields following a "SELECT" or in the
-** list of "ID = expr" items in an UPDATE. A list of expressions can
-** also be used as the argument to a function, in which case the a.zName
-** field is not used.
-**
-** By default the Expr.zSpan field holds a human-readable description of
-** the expression that is used in the generation of error messages and
-** column labels. In this case, Expr.zSpan is typically the text of a
-** column expression as it exists in a SELECT statement. However, if
-** the bSpanIsTab flag is set, then zSpan is overloaded to mean the name
-** of the result column in the form: DATABASE.TABLE.COLUMN. This later
-** form is used for name resolution with nested FROM clauses.
-*/
-struct ExprList {
- int nExpr; /* Number of expressions on the list */
- struct ExprList_item { /* For each expression in the list */
- Expr *pExpr; /* The parse tree for this expression */
- char *zName; /* Token associated with this expression */
- char *zSpan; /* Original text of the expression */
- u8 sortOrder; /* 1 for DESC or 0 for ASC */
- unsigned done :1; /* A flag to indicate when processing is finished */
- unsigned bSpanIsTab :1; /* zSpan holds DB.TABLE.COLUMN */
- unsigned reusable :1; /* Constant expression is reusable */
- unsigned bSorterRef :1; /* Defer evaluation until after sorting */
- union {
- struct {
- u16 iOrderByCol; /* For ORDER BY, column number in result set */
- u16 iAlias; /* Index into Parse.aAlias[] for zName */
- } x;
- int iConstExprReg; /* Register in which Expr value is cached */
- } u;
- } a[1]; /* One slot for each expression in the list */
-};
-
-/*
-** An instance of this structure can hold a simple list of identifiers,
-** such as the list "a,b,c" in the following statements:
-**
-** INSERT INTO t(a,b,c) VALUES ...;
-** CREATE INDEX idx ON t(a,b,c);
-** CREATE TRIGGER trig BEFORE UPDATE ON t(a,b,c) ...;
-**
-** The IdList.a.idx field is used when the IdList represents the list of
-** column names after a table name in an INSERT statement. In the statement
-**
-** INSERT INTO t(a,b,c) ...
-**
-** If "a" is the k-th column of table "t", then IdList.a[0].idx==k.
-*/
-struct IdList {
- struct IdList_item {
- char *zName; /* Name of the identifier */
- int idx; /* Index in some Table.aCol[] of a column named zName */
- } *a;
- int nId; /* Number of identifiers on the list */
-};
-
-/*
-** The following structure describes the FROM clause of a SELECT statement.
-** Each table or subquery in the FROM clause is a separate element of
-** the SrcList.a[] array.
-**
-** With the addition of multiple database support, the following structure
-** can also be used to describe a particular table such as the table that
-** is modified by an INSERT, DELETE, or UPDATE statement. In standard SQL,
-** such a table must be a simple name: ID. But in SQLite, the table can
-** now be identified by a database name, a dot, then the table name: ID.ID.
-**
-** The jointype starts out showing the join type between the current table
-** and the next table on the list. The parser builds the list this way.
-** But sqlite3SrcListShiftJoinType() later shifts the jointypes so that each
-** jointype expresses the join between the table and the previous table.
-**
-** In the colUsed field, the high-order bit (bit 63) is set if the table
-** contains more than 63 columns and the 64-th or later column is used.
-*/
-struct SrcList {
- int nSrc; /* Number of tables or subqueries in the FROM clause */
- u32 nAlloc; /* Number of entries allocated in a[] below */
- struct SrcList_item {
- Schema *pSchema; /* Schema to which this item is fixed */
- char *zDatabase; /* Name of database holding this table */
- char *zName; /* Name of the table */
- char *zAlias; /* The "B" part of a "A AS B" phrase. zName is the "A" */
- Table *pTab; /* An SQL table corresponding to zName */
- Select *pSelect; /* A SELECT statement used in place of a table name */
- int addrFillSub; /* Address of subroutine to manifest a subquery */
- int regReturn; /* Register holding return address of addrFillSub */
- int regResult; /* Registers holding results of a co-routine */
- struct {
- u8 jointype; /* Type of join between this table and the previous */
- unsigned notIndexed :1; /* True if there is a NOT INDEXED clause */
- unsigned isIndexedBy :1; /* True if there is an INDEXED BY clause */
- unsigned isTabFunc :1; /* True if table-valued-function syntax */
- unsigned isCorrelated :1; /* True if sub-query is correlated */
- unsigned viaCoroutine :1; /* Implemented as a co-routine */
- unsigned isRecursive :1; /* True for recursive reference in WITH */
- } fg;
- int iCursor; /* The VDBE cursor number used to access this table */
- Expr *pOn; /* The ON clause of a join */
- IdList *pUsing; /* The USING clause of a join */
- Bitmask colUsed; /* Bit N (1<" clause */
- ExprList *pFuncArg; /* Arguments to table-valued-function */
- } u1;
- Index *pIBIndex; /* Index structure corresponding to u1.zIndexedBy */
- } a[1]; /* One entry for each identifier on the list */
-};
-
-/*
-** Permitted values of the SrcList.a.jointype field
-*/
-#define JT_INNER 0x0001 /* Any kind of inner or cross join */
-#define JT_CROSS 0x0002 /* Explicit use of the CROSS keyword */
-#define JT_NATURAL 0x0004 /* True for a "natural" join */
-#define JT_LEFT 0x0008 /* Left outer join */
-#define JT_RIGHT 0x0010 /* Right outer join */
-#define JT_OUTER 0x0020 /* The "OUTER" keyword is present */
-#define JT_ERROR 0x0040 /* unknown or unsupported join type */
-
-
-/*
-** Flags appropriate for the wctrlFlags parameter of sqlite3WhereBegin()
-** and the WhereInfo.wctrlFlags member.
-**
-** Value constraints (enforced via assert()):
-** WHERE_USE_LIMIT == SF_FixedLimit
-*/
-#define WHERE_ORDERBY_NORMAL 0x0000 /* No-op */
-#define WHERE_ORDERBY_MIN 0x0001 /* ORDER BY processing for min() func */
-#define WHERE_ORDERBY_MAX 0x0002 /* ORDER BY processing for max() func */
-#define WHERE_ONEPASS_DESIRED 0x0004 /* Want to do one-pass UPDATE/DELETE */
-#define WHERE_ONEPASS_MULTIROW 0x0008 /* ONEPASS is ok with multiple rows */
-#define WHERE_DUPLICATES_OK 0x0010 /* Ok to return a row more than once */
-#define WHERE_OR_SUBCLAUSE 0x0020 /* Processing a sub-WHERE as part of
- ** the OR optimization */
-#define WHERE_GROUPBY 0x0040 /* pOrderBy is really a GROUP BY */
-#define WHERE_DISTINCTBY 0x0080 /* pOrderby is really a DISTINCT clause */
-#define WHERE_WANT_DISTINCT 0x0100 /* All output needs to be distinct */
-#define WHERE_SORTBYGROUP 0x0200 /* Support sqlite3WhereIsSorted() */
-#define WHERE_SEEK_TABLE 0x0400 /* Do not defer seeks on main table */
-#define WHERE_ORDERBY_LIMIT 0x0800 /* ORDERBY+LIMIT on the inner loop */
-#define WHERE_SEEK_UNIQ_TABLE 0x1000 /* Do not defer seeks if unique */
- /* 0x2000 not currently used */
-#define WHERE_USE_LIMIT 0x4000 /* Use the LIMIT in cost estimates */
- /* 0x8000 not currently used */
-
-/* Allowed return values from sqlite3WhereIsDistinct()
-*/
-#define WHERE_DISTINCT_NOOP 0 /* DISTINCT keyword not used */
-#define WHERE_DISTINCT_UNIQUE 1 /* No duplicates */
-#define WHERE_DISTINCT_ORDERED 2 /* All duplicates are adjacent */
-#define WHERE_DISTINCT_UNORDERED 3 /* Duplicates are scattered */
-
-/*
-** A NameContext defines a context in which to resolve table and column
-** names. The context consists of a list of tables (the pSrcList) field and
-** a list of named expression (pEList). The named expression list may
-** be NULL. The pSrc corresponds to the FROM clause of a SELECT or
-** to the table being operated on by INSERT, UPDATE, or DELETE. The
-** pEList corresponds to the result set of a SELECT and is NULL for
-** other statements.
-**
-** NameContexts can be nested. When resolving names, the inner-most
-** context is searched first. If no match is found, the next outer
-** context is checked. If there is still no match, the next context
-** is checked. This process continues until either a match is found
-** or all contexts are check. When a match is found, the nRef member of
-** the context containing the match is incremented.
-**
-** Each subquery gets a new NameContext. The pNext field points to the
-** NameContext in the parent query. Thus the process of scanning the
-** NameContext list corresponds to searching through successively outer
-** subqueries looking for a match.
-*/
-struct NameContext {
- Parse *pParse; /* The parser */
- SrcList *pSrcList; /* One or more tables used to resolve names */
- union {
- ExprList *pEList; /* Optional list of result-set columns */
- AggInfo *pAggInfo; /* Information about aggregates at this level */
- Upsert *pUpsert; /* ON CONFLICT clause information from an upsert */
- } uNC;
- NameContext *pNext; /* Next outer name context. NULL for outermost */
- int nRef; /* Number of names resolved by this context */
- int nErr; /* Number of errors encountered while resolving names */
- u16 ncFlags; /* Zero or more NC_* flags defined below */
- Select *pWinSelect; /* SELECT statement for any window functions */
-};
-
-/*
-** Allowed values for the NameContext, ncFlags field.
-**
-** Value constraints (all checked via assert()):
-** NC_HasAgg == SF_HasAgg
-** NC_MinMaxAgg == SF_MinMaxAgg == SQLITE_FUNC_MINMAX
-**
-*/
-#define NC_AllowAgg 0x0001 /* Aggregate functions are allowed here */
-#define NC_PartIdx 0x0002 /* True if resolving a partial index WHERE */
-#define NC_IsCheck 0x0004 /* True if resolving names in a CHECK constraint */
-#define NC_InAggFunc 0x0008 /* True if analyzing arguments to an agg func */
-#define NC_HasAgg 0x0010 /* One or more aggregate functions seen */
-#define NC_IdxExpr 0x0020 /* True if resolving columns of CREATE INDEX */
-#define NC_VarSelect 0x0040 /* A correlated subquery has been seen */
-#define NC_UEList 0x0080 /* True if uNC.pEList is used */
-#define NC_UAggInfo 0x0100 /* True if uNC.pAggInfo is used */
-#define NC_UUpsert 0x0200 /* True if uNC.pUpsert is used */
-#define NC_MinMaxAgg 0x1000 /* min/max aggregates seen. See note above */
-#define NC_Complex 0x2000 /* True if a function or subquery seen */
-#define NC_AllowWin 0x4000 /* Window functions are allowed here */
-
-/*
-** An instance of the following object describes a single ON CONFLICT
-** clause in an upsert.
-**
-** The pUpsertTarget field is only set if the ON CONFLICT clause includes
-** conflict-target clause. (In "ON CONFLICT(a,b)" the "(a,b)" is the
-** conflict-target clause.) The pUpsertTargetWhere is the optional
-** WHERE clause used to identify partial unique indexes.
-**
-** pUpsertSet is the list of column=expr terms of the UPDATE statement.
-** The pUpsertSet field is NULL for a ON CONFLICT DO NOTHING. The
-** pUpsertWhere is the WHERE clause for the UPDATE and is NULL if the
-** WHERE clause is omitted.
-*/
-struct Upsert {
- ExprList *pUpsertTarget; /* Optional description of conflicting index */
- Expr *pUpsertTargetWhere; /* WHERE clause for partial index targets */
- ExprList *pUpsertSet; /* The SET clause from an ON CONFLICT UPDATE */
- Expr *pUpsertWhere; /* WHERE clause for the ON CONFLICT UPDATE */
- /* The fields above comprise the parse tree for the upsert clause.
- ** The fields below are used to transfer information from the INSERT
- ** processing down into the UPDATE processing while generating code.
- ** Upsert owns the memory allocated above, but not the memory below. */
- Index *pUpsertIdx; /* Constraint that pUpsertTarget identifies */
- SrcList *pUpsertSrc; /* Table to be updated */
- int regData; /* First register holding array of VALUES */
- int iDataCur; /* Index of the data cursor */
- int iIdxCur; /* Index of the first index cursor */
-};
-
-/*
-** An instance of the following structure contains all information
-** needed to generate code for a single SELECT statement.
-**
-** See the header comment on the computeLimitRegisters() routine for a
-** detailed description of the meaning of the iLimit and iOffset fields.
-**
-** addrOpenEphm[] entries contain the address of OP_OpenEphemeral opcodes.
-** These addresses must be stored so that we can go back and fill in
-** the P4_KEYINFO and P2 parameters later. Neither the KeyInfo nor
-** the number of columns in P2 can be computed at the same time
-** as the OP_OpenEphm instruction is coded because not
-** enough information about the compound query is known at that point.
-** The KeyInfo for addrOpenTran[0] and [1] contains collating sequences
-** for the result set. The KeyInfo for addrOpenEphm[2] contains collating
-** sequences for the ORDER BY clause.
-*/
-struct Select {
- ExprList *pEList; /* The fields of the result */
- u8 op; /* One of: TK_UNION TK_ALL TK_INTERSECT TK_EXCEPT */
- LogEst nSelectRow; /* Estimated number of result rows */
- u32 selFlags; /* Various SF_* values */
- int iLimit, iOffset; /* Memory registers holding LIMIT & OFFSET counters */
- u32 selId; /* Unique identifier number for this SELECT */
- int addrOpenEphm[2]; /* OP_OpenEphem opcodes related to this select */
- SrcList *pSrc; /* The FROM clause */
- Expr *pWhere; /* The WHERE clause */
- ExprList *pGroupBy; /* The GROUP BY clause */
- Expr *pHaving; /* The HAVING clause */
- ExprList *pOrderBy; /* The ORDER BY clause */
- Select *pPrior; /* Prior select in a compound select statement */
- Select *pNext; /* Next select to the left in a compound */
- Expr *pLimit; /* LIMIT expression. NULL means not used. */
- With *pWith; /* WITH clause attached to this select. Or NULL. */
-#ifndef SQLITE_OMIT_WINDOWFUNC
- Window *pWin; /* List of window functions */
- Window *pWinDefn; /* List of named window definitions */
-#endif
-};
-
-/*
-** Allowed values for Select.selFlags. The "SF" prefix stands for
-** "Select Flag".
-**
-** Value constraints (all checked via assert())
-** SF_HasAgg == NC_HasAgg
-** SF_MinMaxAgg == NC_MinMaxAgg == SQLITE_FUNC_MINMAX
-** SF_FixedLimit == WHERE_USE_LIMIT
-*/
-#define SF_Distinct 0x00001 /* Output should be DISTINCT */
-#define SF_All 0x00002 /* Includes the ALL keyword */
-#define SF_Resolved 0x00004 /* Identifiers have been resolved */
-#define SF_Aggregate 0x00008 /* Contains agg functions or a GROUP BY */
-#define SF_HasAgg 0x00010 /* Contains aggregate functions */
-#define SF_UsesEphemeral 0x00020 /* Uses the OpenEphemeral opcode */
-#define SF_Expanded 0x00040 /* sqlite3SelectExpand() called on this */
-#define SF_HasTypeInfo 0x00080 /* FROM subqueries have Table metadata */
-#define SF_Compound 0x00100 /* Part of a compound query */
-#define SF_Values 0x00200 /* Synthesized from VALUES clause */
-#define SF_MultiValue 0x00400 /* Single VALUES term with multiple rows */
-#define SF_NestedFrom 0x00800 /* Part of a parenthesized FROM clause */
-#define SF_MinMaxAgg 0x01000 /* Aggregate containing min() or max() */
-#define SF_Recursive 0x02000 /* The recursive part of a recursive CTE */
-#define SF_FixedLimit 0x04000 /* nSelectRow set by a constant LIMIT */
-#define SF_MaybeConvert 0x08000 /* Need convertCompoundSelectToSubquery() */
-#define SF_Converted 0x10000 /* By convertCompoundSelectToSubquery() */
-#define SF_IncludeHidden 0x20000 /* Include hidden columns in output */
-#define SF_ComplexResult 0x40000 /* Result contains subquery or function */
-
-/*
-** The results of a SELECT can be distributed in several ways, as defined
-** by one of the following macros. The "SRT" prefix means "SELECT Result
-** Type".
-**
-** SRT_Union Store results as a key in a temporary index
-** identified by pDest->iSDParm.
-**
-** SRT_Except Remove results from the temporary index pDest->iSDParm.
-**
-** SRT_Exists Store a 1 in memory cell pDest->iSDParm if the result
-** set is not empty.
-**
-** SRT_Discard Throw the results away. This is used by SELECT
-** statements within triggers whose only purpose is
-** the side-effects of functions.
-**
-** All of the above are free to ignore their ORDER BY clause. Those that
-** follow must honor the ORDER BY clause.
-**
-** SRT_Output Generate a row of output (using the OP_ResultRow
-** opcode) for each row in the result set.
-**
-** SRT_Mem Only valid if the result is a single column.
-** Store the first column of the first result row
-** in register pDest->iSDParm then abandon the rest
-** of the query. This destination implies "LIMIT 1".
-**
-** SRT_Set The result must be a single column. Store each
-** row of result as the key in table pDest->iSDParm.
-** Apply the affinity pDest->affSdst before storing
-** results. Used to implement "IN (SELECT ...)".
-**
-** SRT_EphemTab Create an temporary table pDest->iSDParm and store
-** the result there. The cursor is left open after
-** returning. This is like SRT_Table except that
-** this destination uses OP_OpenEphemeral to create
-** the table first.
-**
-** SRT_Coroutine Generate a co-routine that returns a new row of
-** results each time it is invoked. The entry point
-** of the co-routine is stored in register pDest->iSDParm
-** and the result row is stored in pDest->nDest registers
-** starting with pDest->iSdst.
-**
-** SRT_Table Store results in temporary table pDest->iSDParm.
-** SRT_Fifo This is like SRT_EphemTab except that the table
-** is assumed to already be open. SRT_Fifo has
-** the additional property of being able to ignore
-** the ORDER BY clause.
-**
-** SRT_DistFifo Store results in a temporary table pDest->iSDParm.
-** But also use temporary table pDest->iSDParm+1 as
-** a record of all prior results and ignore any duplicate
-** rows. Name means: "Distinct Fifo".
-**
-** SRT_Queue Store results in priority queue pDest->iSDParm (really
-** an index). Append a sequence number so that all entries
-** are distinct.
-**
-** SRT_DistQueue Store results in priority queue pDest->iSDParm only if
-** the same record has never been stored before. The
-** index at pDest->iSDParm+1 hold all prior stores.
-*/
-#define SRT_Union 1 /* Store result as keys in an index */
-#define SRT_Except 2 /* Remove result from a UNION index */
-#define SRT_Exists 3 /* Store 1 if the result is not empty */
-#define SRT_Discard 4 /* Do not save the results anywhere */
-#define SRT_Fifo 5 /* Store result as data with an automatic rowid */
-#define SRT_DistFifo 6 /* Like SRT_Fifo, but unique results only */
-#define SRT_Queue 7 /* Store result in an queue */
-#define SRT_DistQueue 8 /* Like SRT_Queue, but unique results only */
-
-/* The ORDER BY clause is ignored for all of the above */
-#define IgnorableOrderby(X) ((X->eDest)<=SRT_DistQueue)
-
-#define SRT_Output 9 /* Output each row of result */
-#define SRT_Mem 10 /* Store result in a memory cell */
-#define SRT_Set 11 /* Store results as keys in an index */
-#define SRT_EphemTab 12 /* Create transient tab and store like SRT_Table */
-#define SRT_Coroutine 13 /* Generate a single row of result */
-#define SRT_Table 14 /* Store result as data with an automatic rowid */
-
-/*
-** An instance of this object describes where to put of the results of
-** a SELECT statement.
-*/
-struct SelectDest {
- u8 eDest; /* How to dispose of the results. On of SRT_* above. */
- int iSDParm; /* A parameter used by the eDest disposal method */
- int iSdst; /* Base register where results are written */
- int nSdst; /* Number of registers allocated */
- char *zAffSdst; /* Affinity used when eDest==SRT_Set */
- ExprList *pOrderBy; /* Key columns for SRT_Queue and SRT_DistQueue */
-};
-
-/*
-** During code generation of statements that do inserts into AUTOINCREMENT
-** tables, the following information is attached to the Table.u.autoInc.p
-** pointer of each autoincrement table to record some side information that
-** the code generator needs. We have to keep per-table autoincrement
-** information in case inserts are done within triggers. Triggers do not
-** normally coordinate their activities, but we do need to coordinate the
-** loading and saving of autoincrement information.
-*/
-struct AutoincInfo {
- AutoincInfo *pNext; /* Next info block in a list of them all */
- Table *pTab; /* Table this info block refers to */
- int iDb; /* Index in sqlite3.aDb[] of database holding pTab */
- int regCtr; /* Memory register holding the rowid counter */
-};
-
-/*
-** At least one instance of the following structure is created for each
-** trigger that may be fired while parsing an INSERT, UPDATE or DELETE
-** statement. All such objects are stored in the linked list headed at
-** Parse.pTriggerPrg and deleted once statement compilation has been
-** completed.
-**
-** A Vdbe sub-program that implements the body and WHEN clause of trigger
-** TriggerPrg.pTrigger, assuming a default ON CONFLICT clause of
-** TriggerPrg.orconf, is stored in the TriggerPrg.pProgram variable.
-** The Parse.pTriggerPrg list never contains two entries with the same
-** values for both pTrigger and orconf.
-**
-** The TriggerPrg.aColmask[0] variable is set to a mask of old.* columns
-** accessed (or set to 0 for triggers fired as a result of INSERT
-** statements). Similarly, the TriggerPrg.aColmask[1] variable is set to
-** a mask of new.* columns used by the program.
-*/
-struct TriggerPrg {
- Trigger *pTrigger; /* Trigger this program was coded from */
- TriggerPrg *pNext; /* Next entry in Parse.pTriggerPrg list */
- SubProgram *pProgram; /* Program implementing pTrigger/orconf */
- int orconf; /* Default ON CONFLICT policy */
- u32 aColmask[2]; /* Masks of old.*, new.* columns accessed */
-};
-
-/*
-** The yDbMask datatype for the bitmask of all attached databases.
-*/
-#if SQLITE_MAX_ATTACHED>30
- typedef unsigned char yDbMask[(SQLITE_MAX_ATTACHED+9)/8];
-# define DbMaskTest(M,I) (((M)[(I)/8]&(1<<((I)&7)))!=0)
-# define DbMaskZero(M) memset((M),0,sizeof(M))
-# define DbMaskSet(M,I) (M)[(I)/8]|=(1<<((I)&7))
-# define DbMaskAllZero(M) sqlite3DbMaskAllZero(M)
-# define DbMaskNonZero(M) (sqlite3DbMaskAllZero(M)==0)
-#else
- typedef unsigned int yDbMask;
-# define DbMaskTest(M,I) (((M)&(((yDbMask)1)<<(I)))!=0)
-# define DbMaskZero(M) (M)=0
-# define DbMaskSet(M,I) (M)|=(((yDbMask)1)<<(I))
-# define DbMaskAllZero(M) (M)==0
-# define DbMaskNonZero(M) (M)!=0
-#endif
-
-/*
-** An SQL parser context. A copy of this structure is passed through
-** the parser and down into all the parser action routine in order to
-** carry around information that is global to the entire parse.
-**
-** The structure is divided into two parts. When the parser and code
-** generate call themselves recursively, the first part of the structure
-** is constant but the second part is reset at the beginning and end of
-** each recursion.
-**
-** The nTableLock and aTableLock variables are only used if the shared-cache
-** feature is enabled (if sqlite3Tsd()->useSharedData is true). They are
-** used to store the set of table-locks required by the statement being
-** compiled. Function sqlite3TableLock() is used to add entries to the
-** list.
-*/
-struct Parse {
- sqlite3 *db; /* The main database structure */
- char *zErrMsg; /* An error message */
- Vdbe *pVdbe; /* An engine for executing database bytecode */
- int rc; /* Return code from execution */
- u8 colNamesSet; /* TRUE after OP_ColumnName has been issued to pVdbe */
- u8 checkSchema; /* Causes schema cookie check after an error */
- u8 nested; /* Number of nested calls to the parser/code generator */
- u8 nTempReg; /* Number of temporary registers in aTempReg[] */
- u8 isMultiWrite; /* True if statement may modify/insert multiple rows */
- u8 mayAbort; /* True if statement may throw an ABORT exception */
- u8 hasCompound; /* Need to invoke convertCompoundSelectToSubquery() */
- u8 okConstFactor; /* OK to factor out constants */
- u8 disableLookaside; /* Number of times lookaside has been disabled */
- int nRangeReg; /* Size of the temporary register block */
- int iRangeReg; /* First register in temporary register block */
- int nErr; /* Number of errors seen */
- int nTab; /* Number of previously allocated VDBE cursors */
- int nMem; /* Number of memory cells used so far */
- int nOpAlloc; /* Number of slots allocated for Vdbe.aOp[] */
- int szOpAlloc; /* Bytes of memory space allocated for Vdbe.aOp[] */
- int iSelfTab; /* Table associated with an index on expr, or negative
- ** of the base register during check-constraint eval */
- int nLabel; /* Number of labels used */
- int *aLabel; /* Space to hold the labels */
- ExprList *pConstExpr;/* Constant expressions */
- Token constraintName;/* Name of the constraint currently being parsed */
- yDbMask writeMask; /* Start a write transaction on these databases */
- yDbMask cookieMask; /* Bitmask of schema verified databases */
- int regRowid; /* Register holding rowid of CREATE TABLE entry */
- int regRoot; /* Register holding root page number for new objects */
- int nMaxArg; /* Max args passed to user function by sub-program */
- int nSelect; /* Number of SELECT stmts. Counter for Select.selId */
-#ifndef SQLITE_OMIT_SHARED_CACHE
- int nTableLock; /* Number of locks in aTableLock */
- TableLock *aTableLock; /* Required table locks for shared-cache mode */
-#endif
- AutoincInfo *pAinc; /* Information about AUTOINCREMENT counters */
- Parse *pToplevel; /* Parse structure for main program (or NULL) */
- Table *pTriggerTab; /* Table triggers are being coded for */
- int addrCrTab; /* Address of OP_CreateBtree opcode on CREATE TABLE */
- u32 nQueryLoop; /* Est number of iterations of a query (10*log2(N)) */
- u32 oldmask; /* Mask of old.* columns referenced */
- u32 newmask; /* Mask of new.* columns referenced */
- u8 eTriggerOp; /* TK_UPDATE, TK_INSERT or TK_DELETE */
- u8 eOrconf; /* Default ON CONFLICT policy for trigger steps */
- u8 disableTriggers; /* True to disable triggers */
-
- /**************************************************************************
- ** Fields above must be initialized to zero. The fields that follow,
- ** down to the beginning of the recursive section, do not need to be
- ** initialized as they will be set before being used. The boundary is
- ** determined by offsetof(Parse,aTempReg).
- **************************************************************************/
-
- int aTempReg[8]; /* Holding area for temporary registers */
- Token sNameToken; /* Token with unqualified schema object name */
-
- /************************************************************************
- ** Above is constant between recursions. Below is reset before and after
- ** each recursion. The boundary between these two regions is determined
- ** using offsetof(Parse,sLastToken) so the sLastToken field must be the
- ** first field in the recursive region.
- ************************************************************************/
-
- Token sLastToken; /* The last token parsed */
- ynVar nVar; /* Number of '?' variables seen in the SQL so far */
- u8 iPkSortOrder; /* ASC or DESC for INTEGER PRIMARY KEY */
- u8 explain; /* True if the EXPLAIN flag is found on the query */
-#if !(defined(SQLITE_OMIT_VIRTUALTABLE) && defined(SQLITE_OMIT_ALTERTABLE))
- u8 eParseMode; /* PARSE_MODE_XXX constant */
-#endif
-#ifndef SQLITE_OMIT_VIRTUALTABLE
- int nVtabLock; /* Number of virtual tables to lock */
-#endif
- int nHeight; /* Expression tree height of current sub-select */
-#ifndef SQLITE_OMIT_EXPLAIN
- int addrExplain; /* Address of current OP_Explain opcode */
-#endif
- VList *pVList; /* Mapping between variable names and numbers */
- Vdbe *pReprepare; /* VM being reprepared (sqlite3Reprepare()) */
- const char *zTail; /* All SQL text past the last semicolon parsed */
- Table *pNewTable; /* A table being constructed by CREATE TABLE */
- Index *pNewIndex; /* An index being constructed by CREATE INDEX */
- Trigger *pNewTrigger; /* Trigger under construct by a CREATE TRIGGER */
- const char *zAuthContext; /* The 6th parameter to db->xAuth callbacks */
-#ifndef SQLITE_OMIT_VIRTUALTABLE
- Token sArg; /* Complete text of a module argument */
- Table **apVtabLock; /* Pointer to virtual tables needing locking */
-#endif
- Table *pZombieTab; /* List of Table objects to delete after code gen */
- TriggerPrg *pTriggerPrg; /* Linked list of coded triggers */
- With *pWith; /* Current WITH clause, or NULL */
- With *pWithToFree; /* Free this WITH object at the end of the parse */
-#ifndef SQLITE_OMIT_ALTERTABLE
- RenameToken *pRename; /* Tokens subject to renaming by ALTER TABLE */
-#endif
-};
-
-#define PARSE_MODE_NORMAL 0
-#define PARSE_MODE_DECLARE_VTAB 1
-#define PARSE_MODE_RENAME_COLUMN 2
-#define PARSE_MODE_RENAME_TABLE 3
-
-/*
-** Sizes and pointers of various parts of the Parse object.
-*/
-#define PARSE_HDR_SZ offsetof(Parse,aTempReg) /* Recursive part w/o aColCache*/
-#define PARSE_RECURSE_SZ offsetof(Parse,sLastToken) /* Recursive part */
-#define PARSE_TAIL_SZ (sizeof(Parse)-PARSE_RECURSE_SZ) /* Non-recursive part */
-#define PARSE_TAIL(X) (((char*)(X))+PARSE_RECURSE_SZ) /* Pointer to tail */
-
-/*
-** Return true if currently inside an sqlite3_declare_vtab() call.
-*/
-#ifdef SQLITE_OMIT_VIRTUALTABLE
- #define IN_DECLARE_VTAB 0
-#else
- #define IN_DECLARE_VTAB (pParse->eParseMode==PARSE_MODE_DECLARE_VTAB)
-#endif
-
-#if defined(SQLITE_OMIT_ALTERTABLE)
- #define IN_RENAME_OBJECT 0
-#else
- #define IN_RENAME_OBJECT (pParse->eParseMode>=PARSE_MODE_RENAME_COLUMN)
-#endif
-
-#if defined(SQLITE_OMIT_VIRTUALTABLE) && defined(SQLITE_OMIT_ALTERTABLE)
- #define IN_SPECIAL_PARSE 0
-#else
- #define IN_SPECIAL_PARSE (pParse->eParseMode!=PARSE_MODE_NORMAL)
-#endif
-
-/*
-** An instance of the following structure can be declared on a stack and used
-** to save the Parse.zAuthContext value so that it can be restored later.
-*/
-struct AuthContext {
- const char *zAuthContext; /* Put saved Parse.zAuthContext here */
- Parse *pParse; /* The Parse structure */
-};
-
-/*
-** Bitfield flags for P5 value in various opcodes.
-**
-** Value constraints (enforced via assert()):
-** OPFLAG_LENGTHARG == SQLITE_FUNC_LENGTH
-** OPFLAG_TYPEOFARG == SQLITE_FUNC_TYPEOF
-** OPFLAG_BULKCSR == BTREE_BULKLOAD
-** OPFLAG_SEEKEQ == BTREE_SEEK_EQ
-** OPFLAG_FORDELETE == BTREE_FORDELETE
-** OPFLAG_SAVEPOSITION == BTREE_SAVEPOSITION
-** OPFLAG_AUXDELETE == BTREE_AUXDELETE
-*/
-#define OPFLAG_NCHANGE 0x01 /* OP_Insert: Set to update db->nChange */
- /* Also used in P2 (not P5) of OP_Delete */
-#define OPFLAG_EPHEM 0x01 /* OP_Column: Ephemeral output is ok */
-#define OPFLAG_LASTROWID 0x20 /* Set to update db->lastRowid */
-#define OPFLAG_ISUPDATE 0x04 /* This OP_Insert is an sql UPDATE */
-#define OPFLAG_APPEND 0x08 /* This is likely to be an append */
-#define OPFLAG_USESEEKRESULT 0x10 /* Try to avoid a seek in BtreeInsert() */
-#define OPFLAG_ISNOOP 0x40 /* OP_Delete does pre-update-hook only */
-#define OPFLAG_LENGTHARG 0x40 /* OP_Column only used for length() */
-#define OPFLAG_TYPEOFARG 0x80 /* OP_Column only used for typeof() */
-#define OPFLAG_BULKCSR 0x01 /* OP_Open** used to open bulk cursor */
-#define OPFLAG_SEEKEQ 0x02 /* OP_Open** cursor uses EQ seek only */
-#define OPFLAG_FORDELETE 0x08 /* OP_Open should use BTREE_FORDELETE */
-#define OPFLAG_P2ISREG 0x10 /* P2 to OP_Open** is a register number */
-#define OPFLAG_PERMUTE 0x01 /* OP_Compare: use the permutation */
-#define OPFLAG_SAVEPOSITION 0x02 /* OP_Delete/Insert: save cursor pos */
-#define OPFLAG_AUXDELETE 0x04 /* OP_Delete: index in a DELETE op */
-#define OPFLAG_NOCHNG_MAGIC 0x6d /* OP_MakeRecord: serialtype 10 is ok */
-
-/*
- * Each trigger present in the database schema is stored as an instance of
- * struct Trigger.
- *
- * Pointers to instances of struct Trigger are stored in two ways.
- * 1. In the "trigHash" hash table (part of the sqlite3* that represents the
- * database). This allows Trigger structures to be retrieved by name.
- * 2. All triggers associated with a single table form a linked list, using the
- * pNext member of struct Trigger. A pointer to the first element of the
- * linked list is stored as the "pTrigger" member of the associated
- * struct Table.
- *
- * The "step_list" member points to the first element of a linked list
- * containing the SQL statements specified as the trigger program.
- */
-struct Trigger {
- char *zName; /* The name of the trigger */
- char *table; /* The table or view to which the trigger applies */
- u8 op; /* One of TK_DELETE, TK_UPDATE, TK_INSERT */
- u8 tr_tm; /* One of TRIGGER_BEFORE, TRIGGER_AFTER */
- Expr *pWhen; /* The WHEN clause of the expression (may be NULL) */
- IdList *pColumns; /* If this is an UPDATE OF trigger,
- the is stored here */
- Schema *pSchema; /* Schema containing the trigger */
- Schema *pTabSchema; /* Schema containing the table */
- TriggerStep *step_list; /* Link list of trigger program steps */
- Trigger *pNext; /* Next trigger associated with the table */
-};
-
-/*
-** A trigger is either a BEFORE or an AFTER trigger. The following constants
-** determine which.
-**
-** If there are multiple triggers, you might of some BEFORE and some AFTER.
-** In that cases, the constants below can be ORed together.
-*/
-#define TRIGGER_BEFORE 1
-#define TRIGGER_AFTER 2
-
-/*
- * An instance of struct TriggerStep is used to store a single SQL statement
- * that is a part of a trigger-program.
- *
- * Instances of struct TriggerStep are stored in a singly linked list (linked
- * using the "pNext" member) referenced by the "step_list" member of the
- * associated struct Trigger instance. The first element of the linked list is
- * the first step of the trigger-program.
- *
- * The "op" member indicates whether this is a "DELETE", "INSERT", "UPDATE" or
- * "SELECT" statement. The meanings of the other members is determined by the
- * value of "op" as follows:
- *
- * (op == TK_INSERT)
- * orconf -> stores the ON CONFLICT algorithm
- * pSelect -> If this is an INSERT INTO ... SELECT ... statement, then
- * this stores a pointer to the SELECT statement. Otherwise NULL.
- * zTarget -> Dequoted name of the table to insert into.
- * pExprList -> If this is an INSERT INTO ... VALUES ... statement, then
- * this stores values to be inserted. Otherwise NULL.
- * pIdList -> If this is an INSERT INTO ... () VALUES ...
- * statement, then this stores the column-names to be
- * inserted into.
- *
- * (op == TK_DELETE)
- * zTarget -> Dequoted name of the table to delete from.
- * pWhere -> The WHERE clause of the DELETE statement if one is specified.
- * Otherwise NULL.
- *
- * (op == TK_UPDATE)
- * zTarget -> Dequoted name of the table to update.
- * pWhere -> The WHERE clause of the UPDATE statement if one is specified.
- * Otherwise NULL.
- * pExprList -> A list of the columns to update and the expressions to update
- * them to. See sqlite3Update() documentation of "pChanges"
- * argument.
- *
- */
-struct TriggerStep {
- u8 op; /* One of TK_DELETE, TK_UPDATE, TK_INSERT, TK_SELECT */
- u8 orconf; /* OE_Rollback etc. */
- Trigger *pTrig; /* The trigger that this step is a part of */
- Select *pSelect; /* SELECT statement or RHS of INSERT INTO SELECT ... */
- char *zTarget; /* Target table for DELETE, UPDATE, INSERT */
- Expr *pWhere; /* The WHERE clause for DELETE or UPDATE steps */
- ExprList *pExprList; /* SET clause for UPDATE */
- IdList *pIdList; /* Column names for INSERT */
- Upsert *pUpsert; /* Upsert clauses on an INSERT */
- char *zSpan; /* Original SQL text of this command */
- TriggerStep *pNext; /* Next in the link-list */
- TriggerStep *pLast; /* Last element in link-list. Valid for 1st elem only */
-};
-
-/*
-** The following structure contains information used by the sqliteFix...
-** routines as they walk the parse tree to make database references
-** explicit.
-*/
-typedef struct DbFixer DbFixer;
-struct DbFixer {
- Parse *pParse; /* The parsing context. Error messages written here */
- Schema *pSchema; /* Fix items to this schema */
- int bVarOnly; /* Check for variable references only */
- const char *zDb; /* Make sure all objects are contained in this database */
- const char *zType; /* Type of the container - used for error messages */
- const Token *pName; /* Name of the container - used for error messages */
-};
-
-/*
-** An objected used to accumulate the text of a string where we
-** do not necessarily know how big the string will be in the end.
-*/
-struct sqlite3_str {
- sqlite3 *db; /* Optional database for lookaside. Can be NULL */
- char *zText; /* The string collected so far */
- u32 nAlloc; /* Amount of space allocated in zText */
- u32 mxAlloc; /* Maximum allowed allocation. 0 for no malloc usage */
- u32 nChar; /* Length of the string so far */
- u8 accError; /* SQLITE_NOMEM or SQLITE_TOOBIG */
- u8 printfFlags; /* SQLITE_PRINTF flags below */
-};
-#define SQLITE_PRINTF_INTERNAL 0x01 /* Internal-use-only converters allowed */
-#define SQLITE_PRINTF_SQLFUNC 0x02 /* SQL function arguments to VXPrintf */
-#define SQLITE_PRINTF_MALLOCED 0x04 /* True if xText is allocated space */
-
-#define isMalloced(X) (((X)->printfFlags & SQLITE_PRINTF_MALLOCED)!=0)
-
-
-/*
-** A pointer to this structure is used to communicate information
-** from sqlite3Init and OP_ParseSchema into the sqlite3InitCallback.
-*/
-typedef struct {
- sqlite3 *db; /* The database being initialized */
- char **pzErrMsg; /* Error message stored here */
- int iDb; /* 0 for main database. 1 for TEMP, 2.. for ATTACHed */
- int rc; /* Result code stored here */
- u32 mInitFlags; /* Flags controlling error messages */
-} InitData;
-
-/*
-** Allowed values for mInitFlags
-*/
-#define INITFLAG_AlterTable 0x0001 /* This is a reparse after ALTER TABLE */
-
-/*
-** Structure containing global configuration data for the SQLite library.
-**
-** This structure also contains some state information.
-*/
-struct Sqlite3Config {
- int bMemstat; /* True to enable memory status */
- int bCoreMutex; /* True to enable core mutexing */
- int bFullMutex; /* True to enable full mutexing */
- int bOpenUri; /* True to interpret filenames as URIs */
- int bUseCis; /* Use covering indices for full-scans */
- int bSmallMalloc; /* Avoid large memory allocations if true */
- int mxStrlen; /* Maximum string length */
- int neverCorrupt; /* Database is always well-formed */
- int szLookaside; /* Default lookaside buffer size */
- int nLookaside; /* Default lookaside buffer count */
- int nStmtSpill; /* Stmt-journal spill-to-disk threshold */
- sqlite3_mem_methods m; /* Low-level memory allocation interface */
- sqlite3_mutex_methods mutex; /* Low-level mutex interface */
- sqlite3_pcache_methods2 pcache2; /* Low-level page-cache interface */
- void *pHeap; /* Heap storage space */
- int nHeap; /* Size of pHeap[] */
- int mnReq, mxReq; /* Min and max heap requests sizes */
- sqlite3_int64 szMmap; /* mmap() space per open file */
- sqlite3_int64 mxMmap; /* Maximum value for szMmap */
- void *pPage; /* Page cache memory */
- int szPage; /* Size of each page in pPage[] */
- int nPage; /* Number of pages in pPage[] */
- int mxParserStack; /* maximum depth of the parser stack */
- int sharedCacheEnabled; /* true if shared-cache mode enabled */
- u32 szPma; /* Maximum Sorter PMA size */
- /* The above might be initialized to non-zero. The following need to always
- ** initially be zero, however. */
- int isInit; /* True after initialization has finished */
- int inProgress; /* True while initialization in progress */
- int isMutexInit; /* True after mutexes are initialized */
- int isMallocInit; /* True after malloc is initialized */
- int isPCacheInit; /* True after malloc is initialized */
- int nRefInitMutex; /* Number of users of pInitMutex */
- sqlite3_mutex *pInitMutex; /* Mutex used by sqlite3_initialize() */
- void (*xLog)(void*,int,const char*); /* Function for logging */
- void *pLogArg; /* First argument to xLog() */
-#ifdef SQLITE_ENABLE_SQLLOG
- void(*xSqllog)(void*,sqlite3*,const char*, int);
- void *pSqllogArg;
-#endif
-#ifdef SQLITE_VDBE_COVERAGE
- /* The following callback (if not NULL) is invoked on every VDBE branch
- ** operation. Set the callback using SQLITE_TESTCTRL_VDBE_COVERAGE.
- */
- void (*xVdbeBranch)(void*,unsigned iSrcLine,u8 eThis,u8 eMx); /* Callback */
- void *pVdbeBranchArg; /* 1st argument */
-#endif
-#ifndef SQLITE_UNTESTABLE
- int (*xTestCallback)(int); /* Invoked by sqlite3FaultSim() */
-#endif
- int bLocaltimeFault; /* True to fail localtime() calls */
- int iOnceResetThreshold; /* When to reset OP_Once counters */
- u32 szSorterRef; /* Min size in bytes to use sorter-refs */
-};
-
-/*
-** This macro is used inside of assert() statements to indicate that
-** the assert is only valid on a well-formed database. Instead of:
-**
-** assert( X );
-**
-** One writes:
-**
-** assert( X || CORRUPT_DB );
-**
-** CORRUPT_DB is true during normal operation. CORRUPT_DB does not indicate
-** that the database is definitely corrupt, only that it might be corrupt.
-** For most test cases, CORRUPT_DB is set to false using a special
-** sqlite3_test_control(). This enables assert() statements to prove
-** things that are always true for well-formed databases.
-*/
-#define CORRUPT_DB (sqlite3Config.neverCorrupt==0)
-
-/*
-** Context pointer passed down through the tree-walk.
-*/
-struct Walker {
- Parse *pParse; /* Parser context. */
- int (*xExprCallback)(Walker*, Expr*); /* Callback for expressions */
- int (*xSelectCallback)(Walker*,Select*); /* Callback for SELECTs */
- void (*xSelectCallback2)(Walker*,Select*);/* Second callback for SELECTs */
- int walkerDepth; /* Number of subqueries */
- u8 eCode; /* A small processing code */
- union { /* Extra data for callback */
- NameContext *pNC; /* Naming context */
- int n; /* A counter */
- int iCur; /* A cursor number */
- SrcList *pSrcList; /* FROM clause */
- struct SrcCount *pSrcCount; /* Counting column references */
- struct CCurHint *pCCurHint; /* Used by codeCursorHint() */
- int *aiCol; /* array of column indexes */
- struct IdxCover *pIdxCover; /* Check for index coverage */
- struct IdxExprTrans *pIdxTrans; /* Convert idxed expr to column */
- ExprList *pGroupBy; /* GROUP BY clause */
- Select *pSelect; /* HAVING to WHERE clause ctx */
- struct WindowRewrite *pRewrite; /* Window rewrite context */
- struct WhereConst *pConst; /* WHERE clause constants */
- struct RenameCtx *pRename; /* RENAME COLUMN context */
- } u;
-};
-
-/* Forward declarations */
-SQLITE_PRIVATE int sqlite3WalkExpr(Walker*, Expr*);
-SQLITE_PRIVATE int sqlite3WalkExprList(Walker*, ExprList*);
-SQLITE_PRIVATE int sqlite3WalkSelect(Walker*, Select*);
-SQLITE_PRIVATE int sqlite3WalkSelectExpr(Walker*, Select*);
-SQLITE_PRIVATE int sqlite3WalkSelectFrom(Walker*, Select*);
-SQLITE_PRIVATE int sqlite3ExprWalkNoop(Walker*, Expr*);
-SQLITE_PRIVATE int sqlite3SelectWalkNoop(Walker*, Select*);
-SQLITE_PRIVATE int sqlite3SelectWalkFail(Walker*, Select*);
-#ifdef SQLITE_DEBUG
-SQLITE_PRIVATE void sqlite3SelectWalkAssert2(Walker*, Select*);
-#endif
-
-/*
-** Return code from the parse-tree walking primitives and their
-** callbacks.
-*/
-#define WRC_Continue 0 /* Continue down into children */
-#define WRC_Prune 1 /* Omit children but continue walking siblings */
-#define WRC_Abort 2 /* Abandon the tree walk */
-
-/*
-** An instance of this structure represents a set of one or more CTEs
-** (common table expressions) created by a single WITH clause.
-*/
-struct With {
- int nCte; /* Number of CTEs in the WITH clause */
- With *pOuter; /* Containing WITH clause, or NULL */
- struct Cte { /* For each CTE in the WITH clause.... */
- char *zName; /* Name of this CTE */
- ExprList *pCols; /* List of explicit column names, or NULL */
- Select *pSelect; /* The definition of this CTE */
- const char *zCteErr; /* Error message for circular references */
- } a[1];
-};
-
-#ifdef SQLITE_DEBUG
-/*
-** An instance of the TreeView object is used for printing the content of
-** data structures on sqlite3DebugPrintf() using a tree-like view.
-*/
-struct TreeView {
- int iLevel; /* Which level of the tree we are on */
- u8 bLine[100]; /* Draw vertical in column i if bLine[i] is true */
-};
-#endif /* SQLITE_DEBUG */
-
-/*
-** This object is used in varioius ways, all related to window functions
-**
-** (1) A single instance of this structure is attached to the
-** the Expr.pWin field for each window function in an expression tree.
-** This object holds the information contained in the OVER clause,
-** plus additional fields used during code generation.
-**
-** (2) All window functions in a single SELECT form a linked-list
-** attached to Select.pWin. The Window.pFunc and Window.pExpr
-** fields point back to the expression that is the window function.
-**
-** (3) The terms of the WINDOW clause of a SELECT are instances of this
-** object on a linked list attached to Select.pWinDefn.
-**
-** The uses (1) and (2) are really the same Window object that just happens
-** to be accessible in two different ways. Use (3) is are separate objects.
-*/
-struct Window {
- char *zName; /* Name of window (may be NULL) */
- ExprList *pPartition; /* PARTITION BY clause */
- ExprList *pOrderBy; /* ORDER BY clause */
- u8 eType; /* TK_RANGE or TK_ROWS */
- u8 eStart; /* UNBOUNDED, CURRENT, PRECEDING or FOLLOWING */
- u8 eEnd; /* UNBOUNDED, CURRENT, PRECEDING or FOLLOWING */
- Expr *pStart; /* Expression for " PRECEDING" */
- Expr *pEnd; /* Expression for " FOLLOWING" */
- Window *pNextWin; /* Next window function belonging to this SELECT */
- Expr *pFilter; /* The FILTER expression */
- FuncDef *pFunc; /* The function */
- int iEphCsr; /* Partition buffer or Peer buffer */
- int regAccum;
- int regResult;
- int csrApp; /* Function cursor (used by min/max) */
- int regApp; /* Function register (also used by min/max) */
- int regPart; /* First in a set of registers holding PARTITION BY
- ** and ORDER BY values for the window */
- Expr *pOwner; /* Expression object this window is attached to */
- int nBufferCol; /* Number of columns in buffer table */
- int iArgCol; /* Offset of first argument for this function */
-};
-
-#ifndef SQLITE_OMIT_WINDOWFUNC
-SQLITE_PRIVATE void sqlite3WindowDelete(sqlite3*, Window*);
-SQLITE_PRIVATE void sqlite3WindowListDelete(sqlite3 *db, Window *p);
-SQLITE_PRIVATE Window *sqlite3WindowAlloc(Parse*, int, int, Expr*, int , Expr*);
-SQLITE_PRIVATE void sqlite3WindowAttach(Parse*, Expr*, Window*);
-SQLITE_PRIVATE int sqlite3WindowCompare(Parse*, Window*, Window*);
-SQLITE_PRIVATE void sqlite3WindowCodeInit(Parse*, Window*);
-SQLITE_PRIVATE void sqlite3WindowCodeStep(Parse*, Select*, WhereInfo*, int, int);
-SQLITE_PRIVATE int sqlite3WindowRewrite(Parse*, Select*);
-SQLITE_PRIVATE int sqlite3ExpandSubquery(Parse*, struct SrcList_item*);
-SQLITE_PRIVATE void sqlite3WindowUpdate(Parse*, Window*, Window*, FuncDef*);
-SQLITE_PRIVATE Window *sqlite3WindowDup(sqlite3 *db, Expr *pOwner, Window *p);
-SQLITE_PRIVATE Window *sqlite3WindowListDup(sqlite3 *db, Window *p);
-SQLITE_PRIVATE void sqlite3WindowFunctions(void);
-#else
-# define sqlite3WindowDelete(a,b)
-# define sqlite3WindowFunctions()
-# define sqlite3WindowAttach(a,b,c)
-#endif
-
-/*
-** Assuming zIn points to the first byte of a UTF-8 character,
-** advance zIn to point to the first byte of the next UTF-8 character.
-*/
-#define SQLITE_SKIP_UTF8(zIn) { \
- if( (*(zIn++))>=0xc0 ){ \
- while( (*zIn & 0xc0)==0x80 ){ zIn++; } \
- } \
-}
-
-/*
-** The SQLITE_*_BKPT macros are substitutes for the error codes with
-** the same name but without the _BKPT suffix. These macros invoke
-** routines that report the line-number on which the error originated
-** using sqlite3_log(). The routines also provide a convenient place
-** to set a debugger breakpoint.
-*/
-SQLITE_PRIVATE int sqlite3ReportError(int iErr, int lineno, const char *zType);
-SQLITE_PRIVATE int sqlite3CorruptError(int);
-SQLITE_PRIVATE int sqlite3MisuseError(int);
-SQLITE_PRIVATE int sqlite3CantopenError(int);
-#define SQLITE_CORRUPT_BKPT sqlite3CorruptError(__LINE__)
-#define SQLITE_MISUSE_BKPT sqlite3MisuseError(__LINE__)
-#define SQLITE_CANTOPEN_BKPT sqlite3CantopenError(__LINE__)
-#ifdef SQLITE_DEBUG
-SQLITE_PRIVATE int sqlite3NomemError(int);
-SQLITE_PRIVATE int sqlite3IoerrnomemError(int);
-SQLITE_PRIVATE int sqlite3CorruptPgnoError(int,Pgno);
-# define SQLITE_NOMEM_BKPT sqlite3NomemError(__LINE__)
-# define SQLITE_IOERR_NOMEM_BKPT sqlite3IoerrnomemError(__LINE__)
-# define SQLITE_CORRUPT_PGNO(P) sqlite3CorruptPgnoError(__LINE__,(P))
-#else
-# define SQLITE_NOMEM_BKPT SQLITE_NOMEM
-# define SQLITE_IOERR_NOMEM_BKPT SQLITE_IOERR_NOMEM
-# define SQLITE_CORRUPT_PGNO(P) sqlite3CorruptError(__LINE__)
-#endif
-
-/*
-** FTS3 and FTS4 both require virtual table support
-*/
-#if defined(SQLITE_OMIT_VIRTUALTABLE)
-# undef SQLITE_ENABLE_FTS3
-# undef SQLITE_ENABLE_FTS4
-#endif
-
-/*
-** FTS4 is really an extension for FTS3. It is enabled using the
-** SQLITE_ENABLE_FTS3 macro. But to avoid confusion we also call
-** the SQLITE_ENABLE_FTS4 macro to serve as an alias for SQLITE_ENABLE_FTS3.
-*/
-#if defined(SQLITE_ENABLE_FTS4) && !defined(SQLITE_ENABLE_FTS3)
-# define SQLITE_ENABLE_FTS3 1
-#endif
-
-/*
-** The ctype.h header is needed for non-ASCII systems. It is also
-** needed by FTS3 when FTS3 is included in the amalgamation.
-*/
-#if !defined(SQLITE_ASCII) || \
- (defined(SQLITE_ENABLE_FTS3) && defined(SQLITE_AMALGAMATION))
-# include
-#endif
-
-/*
-** The following macros mimic the standard library functions toupper(),
-** isspace(), isalnum(), isdigit() and isxdigit(), respectively. The
-** sqlite versions only work for ASCII characters, regardless of locale.
-*/
-#ifdef SQLITE_ASCII
-# define sqlite3Toupper(x) ((x)&~(sqlite3CtypeMap[(unsigned char)(x)]&0x20))
-# define sqlite3Isspace(x) (sqlite3CtypeMap[(unsigned char)(x)]&0x01)
-# define sqlite3Isalnum(x) (sqlite3CtypeMap[(unsigned char)(x)]&0x06)
-# define sqlite3Isalpha(x) (sqlite3CtypeMap[(unsigned char)(x)]&0x02)
-# define sqlite3Isdigit(x) (sqlite3CtypeMap[(unsigned char)(x)]&0x04)
-# define sqlite3Isxdigit(x) (sqlite3CtypeMap[(unsigned char)(x)]&0x08)
-# define sqlite3Tolower(x) (sqlite3UpperToLower[(unsigned char)(x)])
-# define sqlite3Isquote(x) (sqlite3CtypeMap[(unsigned char)(x)]&0x80)
-#else
-# define sqlite3Toupper(x) toupper((unsigned char)(x))
-# define sqlite3Isspace(x) isspace((unsigned char)(x))
-# define sqlite3Isalnum(x) isalnum((unsigned char)(x))
-# define sqlite3Isalpha(x) isalpha((unsigned char)(x))
-# define sqlite3Isdigit(x) isdigit((unsigned char)(x))
-# define sqlite3Isxdigit(x) isxdigit((unsigned char)(x))
-# define sqlite3Tolower(x) tolower((unsigned char)(x))
-# define sqlite3Isquote(x) ((x)=='"'||(x)=='\''||(x)=='['||(x)=='`')
-#endif
-SQLITE_PRIVATE int sqlite3IsIdChar(u8);
-
-/*
-** Internal function prototypes
-*/
-SQLITE_PRIVATE int sqlite3StrICmp(const char*,const char*);
-SQLITE_PRIVATE int sqlite3Strlen30(const char*);
-SQLITE_PRIVATE char *sqlite3ColumnType(Column*,char*);
-#define sqlite3StrNICmp sqlite3_strnicmp
-
-SQLITE_PRIVATE int sqlite3MallocInit(void);
-SQLITE_PRIVATE void sqlite3MallocEnd(void);
-SQLITE_PRIVATE void *sqlite3Malloc(u64);
-SQLITE_PRIVATE void *sqlite3MallocZero(u64);
-SQLITE_PRIVATE void *sqlite3DbMallocZero(sqlite3*, u64);
-SQLITE_PRIVATE void *sqlite3DbMallocRaw(sqlite3*, u64);
-SQLITE_PRIVATE void *sqlite3DbMallocRawNN(sqlite3*, u64);
-SQLITE_PRIVATE char *sqlite3DbStrDup(sqlite3*,const char*);
-SQLITE_PRIVATE char *sqlite3DbStrNDup(sqlite3*,const char*, u64);
-SQLITE_PRIVATE char *sqlite3DbSpanDup(sqlite3*,const char*,const char*);
-SQLITE_PRIVATE void *sqlite3Realloc(void*, u64);
-SQLITE_PRIVATE void *sqlite3DbReallocOrFree(sqlite3 *, void *, u64);
-SQLITE_PRIVATE void *sqlite3DbRealloc(sqlite3 *, void *, u64);
-SQLITE_PRIVATE void sqlite3DbFree(sqlite3*, void*);
-SQLITE_PRIVATE void sqlite3DbFreeNN(sqlite3*, void*);
-SQLITE_PRIVATE int sqlite3MallocSize(void*);
-SQLITE_PRIVATE int sqlite3DbMallocSize(sqlite3*, void*);
-SQLITE_PRIVATE void *sqlite3PageMalloc(int);
-SQLITE_PRIVATE void sqlite3PageFree(void*);
-SQLITE_PRIVATE void sqlite3MemSetDefault(void);
-#ifndef SQLITE_UNTESTABLE
-SQLITE_PRIVATE void sqlite3BenignMallocHooks(void (*)(void), void (*)(void));
-#endif
-SQLITE_PRIVATE int sqlite3HeapNearlyFull(void);
-
-/*
-** On systems with ample stack space and that support alloca(), make
-** use of alloca() to obtain space for large automatic objects. By default,
-** obtain space from malloc().
-**
-** The alloca() routine never returns NULL. This will cause code paths
-** that deal with sqlite3StackAlloc() failures to be unreachable.
-*/
-#ifdef SQLITE_USE_ALLOCA
-# define sqlite3StackAllocRaw(D,N) alloca(N)
-# define sqlite3StackAllocZero(D,N) memset(alloca(N), 0, N)
-# define sqlite3StackFree(D,P)
-#else
-# define sqlite3StackAllocRaw(D,N) sqlite3DbMallocRaw(D,N)
-# define sqlite3StackAllocZero(D,N) sqlite3DbMallocZero(D,N)
-# define sqlite3StackFree(D,P) sqlite3DbFree(D,P)
-#endif
-
-/* Do not allow both MEMSYS5 and MEMSYS3 to be defined together. If they
-** are, disable MEMSYS3
-*/
-#ifdef SQLITE_ENABLE_MEMSYS5
-SQLITE_PRIVATE const sqlite3_mem_methods *sqlite3MemGetMemsys5(void);
-#undef SQLITE_ENABLE_MEMSYS3
-#endif
-#ifdef SQLITE_ENABLE_MEMSYS3
-SQLITE_PRIVATE const sqlite3_mem_methods *sqlite3MemGetMemsys3(void);
-#endif
-
-
-#ifndef SQLITE_MUTEX_OMIT
-SQLITE_PRIVATE sqlite3_mutex_methods const *sqlite3DefaultMutex(void);
-SQLITE_PRIVATE sqlite3_mutex_methods const *sqlite3NoopMutex(void);
-SQLITE_PRIVATE sqlite3_mutex *sqlite3MutexAlloc(int);
-SQLITE_PRIVATE int sqlite3MutexInit(void);
-SQLITE_PRIVATE int sqlite3MutexEnd(void);
-#endif
-#if !defined(SQLITE_MUTEX_OMIT) && !defined(SQLITE_MUTEX_NOOP)
-SQLITE_PRIVATE void sqlite3MemoryBarrier(void);
-#else
-# define sqlite3MemoryBarrier()
-#endif
-
-SQLITE_PRIVATE sqlite3_int64 sqlite3StatusValue(int);
-SQLITE_PRIVATE void sqlite3StatusUp(int, int);
-SQLITE_PRIVATE void sqlite3StatusDown(int, int);
-SQLITE_PRIVATE void sqlite3StatusHighwater(int, int);
-SQLITE_PRIVATE int sqlite3LookasideUsed(sqlite3*,int*);
-
-/* Access to mutexes used by sqlite3_status() */
-SQLITE_PRIVATE sqlite3_mutex *sqlite3Pcache1Mutex(void);
-SQLITE_PRIVATE sqlite3_mutex *sqlite3MallocMutex(void);
-
-#if defined(SQLITE_ENABLE_MULTITHREADED_CHECKS) && !defined(SQLITE_MUTEX_OMIT)
-SQLITE_PRIVATE void sqlite3MutexWarnOnContention(sqlite3_mutex*);
-#else
-# define sqlite3MutexWarnOnContention(x)
-#endif
-
-#ifndef SQLITE_OMIT_FLOATING_POINT
-SQLITE_PRIVATE int sqlite3IsNaN(double);
-#else
-# define sqlite3IsNaN(X) 0
-#endif
-
-/*
-** An instance of the following structure holds information about SQL
-** functions arguments that are the parameters to the printf() function.
-*/
-struct PrintfArguments {
- int nArg; /* Total number of arguments */
- int nUsed; /* Number of arguments used so far */
- sqlite3_value **apArg; /* The argument values */
-};
-
-SQLITE_PRIVATE char *sqlite3MPrintf(sqlite3*,const char*, ...);
-SQLITE_PRIVATE char *sqlite3VMPrintf(sqlite3*,const char*, va_list);
-#if defined(SQLITE_DEBUG) || defined(SQLITE_HAVE_OS_TRACE)
-SQLITE_PRIVATE void sqlite3DebugPrintf(const char*, ...);
-#endif
-#if defined(SQLITE_TEST)
-SQLITE_PRIVATE void *sqlite3TestTextToPtr(const char*);
-#endif
-
-#if defined(SQLITE_DEBUG)
-SQLITE_PRIVATE void sqlite3TreeViewExpr(TreeView*, const Expr*, u8);
-SQLITE_PRIVATE void sqlite3TreeViewBareExprList(TreeView*, const ExprList*, const char*);
-SQLITE_PRIVATE void sqlite3TreeViewExprList(TreeView*, const ExprList*, u8, const char*);
-SQLITE_PRIVATE void sqlite3TreeViewSelect(TreeView*, const Select*, u8);
-SQLITE_PRIVATE void sqlite3TreeViewWith(TreeView*, const With*, u8);
-#ifndef SQLITE_OMIT_WINDOWFUNC
-SQLITE_PRIVATE void sqlite3TreeViewWindow(TreeView*, const Window*, u8);
-SQLITE_PRIVATE void sqlite3TreeViewWinFunc(TreeView*, const Window*, u8);
-#endif
-#endif
-
-
-SQLITE_PRIVATE void sqlite3SetString(char **, sqlite3*, const char*);
-SQLITE_PRIVATE void sqlite3ErrorMsg(Parse*, const char*, ...);
-SQLITE_PRIVATE void sqlite3Dequote(char*);
-SQLITE_PRIVATE void sqlite3TokenInit(Token*,char*);
-SQLITE_PRIVATE int sqlite3KeywordCode(const unsigned char*, int);
-SQLITE_PRIVATE int sqlite3RunParser(Parse*, const char*, char **);
-SQLITE_PRIVATE void sqlite3FinishCoding(Parse*);
-SQLITE_PRIVATE int sqlite3GetTempReg(Parse*);
-SQLITE_PRIVATE void sqlite3ReleaseTempReg(Parse*,int);
-SQLITE_PRIVATE int sqlite3GetTempRange(Parse*,int);
-SQLITE_PRIVATE void sqlite3ReleaseTempRange(Parse*,int,int);
-SQLITE_PRIVATE void sqlite3ClearTempRegCache(Parse*);
-#ifdef SQLITE_DEBUG
-SQLITE_PRIVATE int sqlite3NoTempsInRange(Parse*,int,int);
-#endif
-SQLITE_PRIVATE Expr *sqlite3ExprAlloc(sqlite3*,int,const Token*,int);
-SQLITE_PRIVATE Expr *sqlite3Expr(sqlite3*,int,const char*);
-SQLITE_PRIVATE void sqlite3ExprAttachSubtrees(sqlite3*,Expr*,Expr*,Expr*);
-SQLITE_PRIVATE Expr *sqlite3PExpr(Parse*, int, Expr*, Expr*);
-SQLITE_PRIVATE void sqlite3PExprAddSelect(Parse*, Expr*, Select*);
-SQLITE_PRIVATE Expr *sqlite3ExprAnd(sqlite3*,Expr*, Expr*);
-SQLITE_PRIVATE Expr *sqlite3ExprFunction(Parse*,ExprList*, Token*, int);
-SQLITE_PRIVATE void sqlite3ExprAssignVarNumber(Parse*, Expr*, u32);
-SQLITE_PRIVATE void sqlite3ExprDelete(sqlite3*, Expr*);
-SQLITE_PRIVATE ExprList *sqlite3ExprListAppend(Parse*,ExprList*,Expr*);
-SQLITE_PRIVATE ExprList *sqlite3ExprListAppendVector(Parse*,ExprList*,IdList*,Expr*);
-SQLITE_PRIVATE void sqlite3ExprListSetSortOrder(ExprList*,int);
-SQLITE_PRIVATE void sqlite3ExprListSetName(Parse*,ExprList*,Token*,int);
-SQLITE_PRIVATE void sqlite3ExprListSetSpan(Parse*,ExprList*,const char*,const char*);
-SQLITE_PRIVATE void sqlite3ExprListDelete(sqlite3*, ExprList*);
-SQLITE_PRIVATE u32 sqlite3ExprListFlags(const ExprList*);
-SQLITE_PRIVATE int sqlite3Init(sqlite3*, char**);
-SQLITE_PRIVATE int sqlite3InitCallback(void*, int, char**, char**);
-SQLITE_PRIVATE int sqlite3InitOne(sqlite3*, int, char**, u32);
-SQLITE_PRIVATE void sqlite3Pragma(Parse*,Token*,Token*,Token*,int);
-#ifndef SQLITE_OMIT_VIRTUALTABLE
-SQLITE_PRIVATE Module *sqlite3PragmaVtabRegister(sqlite3*,const char *zName);
-#endif
-SQLITE_PRIVATE void sqlite3ResetAllSchemasOfConnection(sqlite3*);
-SQLITE_PRIVATE void sqlite3ResetOneSchema(sqlite3*,int);
-SQLITE_PRIVATE void sqlite3CollapseDatabaseArray(sqlite3*);
-SQLITE_PRIVATE void sqlite3CommitInternalChanges(sqlite3*);
-SQLITE_PRIVATE void sqlite3DeleteColumnNames(sqlite3*,Table*);
-SQLITE_PRIVATE int sqlite3ColumnsFromExprList(Parse*,ExprList*,i16*,Column**);
-SQLITE_PRIVATE void sqlite3SelectAddColumnTypeAndCollation(Parse*,Table*,Select*);
-SQLITE_PRIVATE Table *sqlite3ResultSetOfSelect(Parse*,Select*);
-SQLITE_PRIVATE void sqlite3OpenMasterTable(Parse *, int);
-SQLITE_PRIVATE Index *sqlite3PrimaryKeyIndex(Table*);
-SQLITE_PRIVATE i16 sqlite3ColumnOfIndex(Index*, i16);
-SQLITE_PRIVATE void sqlite3StartTable(Parse*,Token*,Token*,int,int,int,int);
-#if SQLITE_ENABLE_HIDDEN_COLUMNS
-SQLITE_PRIVATE void sqlite3ColumnPropertiesFromName(Table*, Column*);
-#else
-# define sqlite3ColumnPropertiesFromName(T,C) /* no-op */
-#endif
-SQLITE_PRIVATE void sqlite3AddColumn(Parse*,Token*,Token*);
-SQLITE_PRIVATE void sqlite3AddNotNull(Parse*, int);
-SQLITE_PRIVATE void sqlite3AddPrimaryKey(Parse*, ExprList*, int, int, int);
-SQLITE_PRIVATE void sqlite3AddCheckConstraint(Parse*, Expr*);
-SQLITE_PRIVATE void sqlite3AddDefaultValue(Parse*,Expr*,const char*,const char*);
-SQLITE_PRIVATE void sqlite3AddCollateType(Parse*, Token*);
-SQLITE_PRIVATE void sqlite3EndTable(Parse*,Token*,Token*,u8,Select*);
-SQLITE_PRIVATE int sqlite3ParseUri(const char*,const char*,unsigned int*,
- sqlite3_vfs**,char**,char **);
-SQLITE_PRIVATE Btree *sqlite3DbNameToBtree(sqlite3*,const char*);
-
-#ifdef SQLITE_UNTESTABLE
-# define sqlite3FaultSim(X) SQLITE_OK
-#else
-SQLITE_PRIVATE int sqlite3FaultSim(int);
-#endif
-
-SQLITE_PRIVATE Bitvec *sqlite3BitvecCreate(u32);
-SQLITE_PRIVATE int sqlite3BitvecTest(Bitvec*, u32);
-SQLITE_PRIVATE int sqlite3BitvecTestNotNull(Bitvec*, u32);
-SQLITE_PRIVATE int sqlite3BitvecSet(Bitvec*, u32);
-SQLITE_PRIVATE void sqlite3BitvecClear(Bitvec*, u32, void*);
-SQLITE_PRIVATE void sqlite3BitvecDestroy(Bitvec*);
-SQLITE_PRIVATE u32 sqlite3BitvecSize(Bitvec*);
-#ifndef SQLITE_UNTESTABLE
-SQLITE_PRIVATE int sqlite3BitvecBuiltinTest(int,int*);
-#endif
-
-SQLITE_PRIVATE RowSet *sqlite3RowSetInit(sqlite3*);
-SQLITE_PRIVATE void sqlite3RowSetDelete(void*);
-SQLITE_PRIVATE void sqlite3RowSetClear(void*);
-SQLITE_PRIVATE void sqlite3RowSetInsert(RowSet*, i64);
-SQLITE_PRIVATE int sqlite3RowSetTest(RowSet*, int iBatch, i64);
-SQLITE_PRIVATE int sqlite3RowSetNext(RowSet*, i64*);
-
-SQLITE_PRIVATE void sqlite3CreateView(Parse*,Token*,Token*,Token*,ExprList*,Select*,int,int);
-
-#if !defined(SQLITE_OMIT_VIEW) || !defined(SQLITE_OMIT_VIRTUALTABLE)
-SQLITE_PRIVATE int sqlite3ViewGetColumnNames(Parse*,Table*);
-#else
-# define sqlite3ViewGetColumnNames(A,B) 0
-#endif
-
-#if SQLITE_MAX_ATTACHED>30
-SQLITE_PRIVATE int sqlite3DbMaskAllZero(yDbMask);
-#endif
-SQLITE_PRIVATE void sqlite3DropTable(Parse*, SrcList*, int, int);
-SQLITE_PRIVATE void sqlite3CodeDropTable(Parse*, Table*, int, int);
-SQLITE_PRIVATE void sqlite3DeleteTable(sqlite3*, Table*);
-SQLITE_PRIVATE void sqlite3FreeIndex(sqlite3*, Index*);
-#ifndef SQLITE_OMIT_AUTOINCREMENT
-SQLITE_PRIVATE void sqlite3AutoincrementBegin(Parse *pParse);
-SQLITE_PRIVATE void sqlite3AutoincrementEnd(Parse *pParse);
-#else
-# define sqlite3AutoincrementBegin(X)
-# define sqlite3AutoincrementEnd(X)
-#endif
-SQLITE_PRIVATE void sqlite3Insert(Parse*, SrcList*, Select*, IdList*, int, Upsert*);
-SQLITE_PRIVATE void *sqlite3ArrayAllocate(sqlite3*,void*,int,int*,int*);
-SQLITE_PRIVATE IdList *sqlite3IdListAppend(Parse*, IdList*, Token*);
-SQLITE_PRIVATE int sqlite3IdListIndex(IdList*,const char*);
-SQLITE_PRIVATE SrcList *sqlite3SrcListEnlarge(sqlite3*, SrcList*, int, int);
-SQLITE_PRIVATE SrcList *sqlite3SrcListAppend(sqlite3*, SrcList*, Token*, Token*);
-SQLITE_PRIVATE SrcList *sqlite3SrcListAppendFromTerm(Parse*, SrcList*, Token*, Token*,
- Token*, Select*, Expr*, IdList*);
-SQLITE_PRIVATE void sqlite3SrcListIndexedBy(Parse *, SrcList *, Token *);
-SQLITE_PRIVATE void sqlite3SrcListFuncArgs(Parse*, SrcList*, ExprList*);
-SQLITE_PRIVATE int sqlite3IndexedByLookup(Parse *, struct SrcList_item *);
-SQLITE_PRIVATE void sqlite3SrcListShiftJoinType(SrcList*);
-SQLITE_PRIVATE void sqlite3SrcListAssignCursors(Parse*, SrcList*);
-SQLITE_PRIVATE void sqlite3IdListDelete(sqlite3*, IdList*);
-SQLITE_PRIVATE void sqlite3SrcListDelete(sqlite3*, SrcList*);
-SQLITE_PRIVATE Index *sqlite3AllocateIndexObject(sqlite3*,i16,int,char**);
-SQLITE_PRIVATE void sqlite3CreateIndex(Parse*,Token*,Token*,SrcList*,ExprList*,int,Token*,
- Expr*, int, int, u8);
-SQLITE_PRIVATE void sqlite3DropIndex(Parse*, SrcList*, int);
-SQLITE_PRIVATE int sqlite3Select(Parse*, Select*, SelectDest*);
-SQLITE_PRIVATE Select *sqlite3SelectNew(Parse*,ExprList*,SrcList*,Expr*,ExprList*,
- Expr*,ExprList*,u32,Expr*);
-SQLITE_PRIVATE void sqlite3SelectDelete(sqlite3*, Select*);
-SQLITE_PRIVATE Table *sqlite3SrcListLookup(Parse*, SrcList*);
-SQLITE_PRIVATE int sqlite3IsReadOnly(Parse*, Table*, int);
-SQLITE_PRIVATE void sqlite3OpenTable(Parse*, int iCur, int iDb, Table*, int);
-#if defined(SQLITE_ENABLE_UPDATE_DELETE_LIMIT) && !defined(SQLITE_OMIT_SUBQUERY)
-SQLITE_PRIVATE Expr *sqlite3LimitWhere(Parse*,SrcList*,Expr*,ExprList*,Expr*,char*);
-#endif
-SQLITE_PRIVATE void sqlite3DeleteFrom(Parse*, SrcList*, Expr*, ExprList*, Expr*);
-SQLITE_PRIVATE void sqlite3Update(Parse*, SrcList*, ExprList*,Expr*,int,ExprList*,Expr*,
- Upsert*);
-SQLITE_PRIVATE WhereInfo *sqlite3WhereBegin(Parse*,SrcList*,Expr*,ExprList*,ExprList*,u16,int);
-SQLITE_PRIVATE void sqlite3WhereEnd(WhereInfo*);
-SQLITE_PRIVATE LogEst sqlite3WhereOutputRowCount(WhereInfo*);
-SQLITE_PRIVATE int sqlite3WhereIsDistinct(WhereInfo*);
-SQLITE_PRIVATE int sqlite3WhereIsOrdered(WhereInfo*);
-SQLITE_PRIVATE int sqlite3WhereOrderByLimitOptLabel(WhereInfo*);
-SQLITE_PRIVATE int sqlite3WhereIsSorted(WhereInfo*);
-SQLITE_PRIVATE int sqlite3WhereContinueLabel(WhereInfo*);
-SQLITE_PRIVATE int sqlite3WhereBreakLabel(WhereInfo*);
-SQLITE_PRIVATE int sqlite3WhereOkOnePass(WhereInfo*, int*);
-#define ONEPASS_OFF 0 /* Use of ONEPASS not allowed */
-#define ONEPASS_SINGLE 1 /* ONEPASS valid for a single row update */
-#define ONEPASS_MULTI 2 /* ONEPASS is valid for multiple rows */
-SQLITE_PRIVATE void sqlite3ExprCodeLoadIndexColumn(Parse*, Index*, int, int, int);
-SQLITE_PRIVATE int sqlite3ExprCodeGetColumn(Parse*, Table*, int, int, int, u8);
-SQLITE_PRIVATE void sqlite3ExprCodeGetColumnOfTable(Vdbe*, Table*, int, int, int);
-SQLITE_PRIVATE void sqlite3ExprCodeMove(Parse*, int, int, int);
-SQLITE_PRIVATE void sqlite3ExprCode(Parse*, Expr*, int);
-SQLITE_PRIVATE void sqlite3ExprCodeCopy(Parse*, Expr*, int);
-SQLITE_PRIVATE void sqlite3ExprCodeFactorable(Parse*, Expr*, int);
-SQLITE_PRIVATE int sqlite3ExprCodeAtInit(Parse*, Expr*, int);
-SQLITE_PRIVATE int sqlite3ExprCodeTemp(Parse*, Expr*, int*);
-SQLITE_PRIVATE int sqlite3ExprCodeTarget(Parse*, Expr*, int);
-SQLITE_PRIVATE void sqlite3ExprCodeAndCache(Parse*, Expr*, int);
-SQLITE_PRIVATE int sqlite3ExprCodeExprList(Parse*, ExprList*, int, int, u8);
-#define SQLITE_ECEL_DUP 0x01 /* Deep, not shallow copies */
-#define SQLITE_ECEL_FACTOR 0x02 /* Factor out constant terms */
-#define SQLITE_ECEL_REF 0x04 /* Use ExprList.u.x.iOrderByCol */
-#define SQLITE_ECEL_OMITREF 0x08 /* Omit if ExprList.u.x.iOrderByCol */
-SQLITE_PRIVATE void sqlite3ExprIfTrue(Parse*, Expr*, int, int);
-SQLITE_PRIVATE void sqlite3ExprIfFalse(Parse*, Expr*, int, int);
-SQLITE_PRIVATE void sqlite3ExprIfFalseDup(Parse*, Expr*, int, int);
-SQLITE_PRIVATE Table *sqlite3FindTable(sqlite3*,const char*, const char*);
-#define LOCATE_VIEW 0x01
-#define LOCATE_NOERR 0x02
-SQLITE_PRIVATE Table *sqlite3LocateTable(Parse*,u32 flags,const char*, const char*);
-SQLITE_PRIVATE Table *sqlite3LocateTableItem(Parse*,u32 flags,struct SrcList_item *);
-SQLITE_PRIVATE Index *sqlite3FindIndex(sqlite3*,const char*, const char*);
-SQLITE_PRIVATE void sqlite3UnlinkAndDeleteTable(sqlite3*,int,const char*);
-SQLITE_PRIVATE void sqlite3UnlinkAndDeleteIndex(sqlite3*,int,const char*);
-SQLITE_PRIVATE void sqlite3Vacuum(Parse*,Token*);
-SQLITE_PRIVATE int sqlite3RunVacuum(char**, sqlite3*, int);
-SQLITE_PRIVATE char *sqlite3NameFromToken(sqlite3*, Token*);
-SQLITE_PRIVATE int sqlite3ExprCompare(Parse*,Expr*, Expr*, int);
-SQLITE_PRIVATE int sqlite3ExprCompareSkip(Expr*, Expr*, int);
-SQLITE_PRIVATE int sqlite3ExprListCompare(ExprList*, ExprList*, int);
-SQLITE_PRIVATE int sqlite3ExprImpliesExpr(Parse*,Expr*, Expr*, int);
-SQLITE_PRIVATE int sqlite3ExprImpliesNonNullRow(Expr*,int);
-SQLITE_PRIVATE void sqlite3ExprAnalyzeAggregates(NameContext*, Expr*);
-SQLITE_PRIVATE void sqlite3ExprAnalyzeAggList(NameContext*,ExprList*);
-SQLITE_PRIVATE int sqlite3ExprCoveredByIndex(Expr*, int iCur, Index *pIdx);
-SQLITE_PRIVATE int sqlite3FunctionUsesThisSrc(Expr*, SrcList*);
-SQLITE_PRIVATE Vdbe *sqlite3GetVdbe(Parse*);
-#ifndef SQLITE_UNTESTABLE
-SQLITE_PRIVATE void sqlite3PrngSaveState(void);
-SQLITE_PRIVATE void sqlite3PrngRestoreState(void);
-#endif
-SQLITE_PRIVATE void sqlite3RollbackAll(sqlite3*,int);
-SQLITE_PRIVATE void sqlite3CodeVerifySchema(Parse*, int);
-SQLITE_PRIVATE void sqlite3CodeVerifyNamedSchema(Parse*, const char *zDb);
-SQLITE_PRIVATE void sqlite3BeginTransaction(Parse*, int);
-SQLITE_PRIVATE void sqlite3EndTransaction(Parse*,int);
-SQLITE_PRIVATE void sqlite3Savepoint(Parse*, int, Token*);
-SQLITE_PRIVATE void sqlite3CloseSavepoints(sqlite3 *);
-SQLITE_PRIVATE void sqlite3LeaveMutexAndCloseZombie(sqlite3*);
-SQLITE_PRIVATE int sqlite3ExprIdToTrueFalse(Expr*);
-SQLITE_PRIVATE int sqlite3ExprTruthValue(const Expr*);
-SQLITE_PRIVATE int sqlite3ExprIsConstant(Expr*);
-SQLITE_PRIVATE int sqlite3ExprIsConstantNotJoin(Expr*);
-SQLITE_PRIVATE int sqlite3ExprIsConstantOrFunction(Expr*, u8);
-SQLITE_PRIVATE int sqlite3ExprIsConstantOrGroupBy(Parse*, Expr*, ExprList*);
-SQLITE_PRIVATE int sqlite3ExprIsTableConstant(Expr*,int);
-#ifdef SQLITE_ENABLE_CURSOR_HINTS
-SQLITE_PRIVATE int sqlite3ExprContainsSubquery(Expr*);
-#endif
-SQLITE_PRIVATE int sqlite3ExprIsInteger(Expr*, int*);
-SQLITE_PRIVATE int sqlite3ExprCanBeNull(const Expr*);
-SQLITE_PRIVATE int sqlite3ExprNeedsNoAffinityChange(const Expr*, char);
-SQLITE_PRIVATE int sqlite3IsRowid(const char*);
-SQLITE_PRIVATE void sqlite3GenerateRowDelete(
- Parse*,Table*,Trigger*,int,int,int,i16,u8,u8,u8,int);
-SQLITE_PRIVATE void sqlite3GenerateRowIndexDelete(Parse*, Table*, int, int, int*, int);
-SQLITE_PRIVATE int sqlite3GenerateIndexKey(Parse*, Index*, int, int, int, int*,Index*,int);
-SQLITE_PRIVATE void sqlite3ResolvePartIdxLabel(Parse*,int);
-SQLITE_PRIVATE void sqlite3GenerateConstraintChecks(Parse*,Table*,int*,int,int,int,int,
- u8,u8,int,int*,int*,Upsert*);
-#ifdef SQLITE_ENABLE_NULL_TRIM
-SQLITE_PRIVATE void sqlite3SetMakeRecordP5(Vdbe*,Table*);
-#else
-# define sqlite3SetMakeRecordP5(A,B)
-#endif
-SQLITE_PRIVATE void sqlite3CompleteInsertion(Parse*,Table*,int,int,int,int*,int,int,int);
-SQLITE_PRIVATE int sqlite3OpenTableAndIndices(Parse*, Table*, int, u8, int, u8*, int*, int*);
-SQLITE_PRIVATE void sqlite3BeginWriteOperation(Parse*, int, int);
-SQLITE_PRIVATE void sqlite3MultiWrite(Parse*);
-SQLITE_PRIVATE void sqlite3MayAbort(Parse*);
-SQLITE_PRIVATE void sqlite3HaltConstraint(Parse*, int, int, char*, i8, u8);
-SQLITE_PRIVATE void sqlite3UniqueConstraint(Parse*, int, Index*);
-SQLITE_PRIVATE void sqlite3RowidConstraint(Parse*, int, Table*);
-SQLITE_PRIVATE Expr *sqlite3ExprDup(sqlite3*,Expr*,int);
-SQLITE_PRIVATE ExprList *sqlite3ExprListDup(sqlite3*,ExprList*,int);
-SQLITE_PRIVATE SrcList *sqlite3SrcListDup(sqlite3*,SrcList*,int);
-SQLITE_PRIVATE IdList *sqlite3IdListDup(sqlite3*,IdList*);
-SQLITE_PRIVATE Select *sqlite3SelectDup(sqlite3*,Select*,int);
-SQLITE_PRIVATE void sqlite3InsertBuiltinFuncs(FuncDef*,int);
-SQLITE_PRIVATE FuncDef *sqlite3FindFunction(sqlite3*,const char*,int,u8,u8);
-SQLITE_PRIVATE void sqlite3RegisterBuiltinFunctions(void);
-SQLITE_PRIVATE void sqlite3RegisterDateTimeFunctions(void);
-SQLITE_PRIVATE void sqlite3RegisterPerConnectionBuiltinFunctions(sqlite3*);
-SQLITE_PRIVATE int sqlite3SafetyCheckOk(sqlite3*);
-SQLITE_PRIVATE int sqlite3SafetyCheckSickOrOk(sqlite3*);
-SQLITE_PRIVATE void sqlite3ChangeCookie(Parse*, int);
-
-#if !defined(SQLITE_OMIT_VIEW) && !defined(SQLITE_OMIT_TRIGGER)
-SQLITE_PRIVATE void sqlite3MaterializeView(Parse*, Table*, Expr*, ExprList*,Expr*,int);
-#endif
-
-#ifndef SQLITE_OMIT_TRIGGER
-SQLITE_PRIVATE void sqlite3BeginTrigger(Parse*, Token*,Token*,int,int,IdList*,SrcList*,
- Expr*,int, int);
-SQLITE_PRIVATE void sqlite3FinishTrigger(Parse*, TriggerStep*, Token*);
-SQLITE_PRIVATE void sqlite3DropTrigger(Parse*, SrcList*, int);
-SQLITE_PRIVATE void sqlite3DropTriggerPtr(Parse*, Trigger*);
-SQLITE_PRIVATE Trigger *sqlite3TriggersExist(Parse *, Table*, int, ExprList*, int *pMask);
-SQLITE_PRIVATE Trigger *sqlite3TriggerList(Parse *, Table *);
-SQLITE_PRIVATE void sqlite3CodeRowTrigger(Parse*, Trigger *, int, ExprList*, int, Table *,
- int, int, int);
-SQLITE_PRIVATE void sqlite3CodeRowTriggerDirect(Parse *, Trigger *, Table *, int, int, int);
- void sqliteViewTriggers(Parse*, Table*, Expr*, int, ExprList*);
-SQLITE_PRIVATE void sqlite3DeleteTriggerStep(sqlite3*, TriggerStep*);
-SQLITE_PRIVATE TriggerStep *sqlite3TriggerSelectStep(sqlite3*,Select*,
- const char*,const char*);
-SQLITE_PRIVATE TriggerStep *sqlite3TriggerInsertStep(Parse*,Token*, IdList*,
- Select*,u8,Upsert*,
- const char*,const char*);
-SQLITE_PRIVATE TriggerStep *sqlite3TriggerUpdateStep(Parse*,Token*,ExprList*, Expr*, u8,
- const char*,const char*);
-SQLITE_PRIVATE TriggerStep *sqlite3TriggerDeleteStep(Parse*,Token*, Expr*,
- const char*,const char*);
-SQLITE_PRIVATE void sqlite3DeleteTrigger(sqlite3*, Trigger*);
-SQLITE_PRIVATE void sqlite3UnlinkAndDeleteTrigger(sqlite3*,int,const char*);
-SQLITE_PRIVATE u32 sqlite3TriggerColmask(Parse*,Trigger*,ExprList*,int,int,Table*,int);
-# define sqlite3ParseToplevel(p) ((p)->pToplevel ? (p)->pToplevel : (p))
-# define sqlite3IsToplevel(p) ((p)->pToplevel==0)
-#else
-# define sqlite3TriggersExist(B,C,D,E,F) 0
-# define sqlite3DeleteTrigger(A,B)
-# define sqlite3DropTriggerPtr(A,B)
-# define sqlite3UnlinkAndDeleteTrigger(A,B,C)
-# define sqlite3CodeRowTrigger(A,B,C,D,E,F,G,H,I)
-# define sqlite3CodeRowTriggerDirect(A,B,C,D,E,F)
-# define sqlite3TriggerList(X, Y) 0
-# define sqlite3ParseToplevel(p) p
-# define sqlite3IsToplevel(p) 1
-# define sqlite3TriggerColmask(A,B,C,D,E,F,G) 0
-#endif
-
-SQLITE_PRIVATE int sqlite3JoinType(Parse*, Token*, Token*, Token*);
-SQLITE_PRIVATE void sqlite3CreateForeignKey(Parse*, ExprList*, Token*, ExprList*, int);
-SQLITE_PRIVATE void sqlite3DeferForeignKey(Parse*, int);
-#ifndef SQLITE_OMIT_AUTHORIZATION
-SQLITE_PRIVATE void sqlite3AuthRead(Parse*,Expr*,Schema*,SrcList*);
-SQLITE_PRIVATE int sqlite3AuthCheck(Parse*,int, const char*, const char*, const char*);
-SQLITE_PRIVATE void sqlite3AuthContextPush(Parse*, AuthContext*, const char*);
-SQLITE_PRIVATE void sqlite3AuthContextPop(AuthContext*);
-SQLITE_PRIVATE int sqlite3AuthReadCol(Parse*, const char *, const char *, int);
-#else
-# define sqlite3AuthRead(a,b,c,d)
-# define sqlite3AuthCheck(a,b,c,d,e) SQLITE_OK
-# define sqlite3AuthContextPush(a,b,c)
-# define sqlite3AuthContextPop(a) ((void)(a))
-#endif
-SQLITE_PRIVATE void sqlite3Attach(Parse*, Expr*, Expr*, Expr*);
-SQLITE_PRIVATE void sqlite3Detach(Parse*, Expr*);
-SQLITE_PRIVATE void sqlite3FixInit(DbFixer*, Parse*, int, const char*, const Token*);
-SQLITE_PRIVATE int sqlite3FixSrcList(DbFixer*, SrcList*);
-SQLITE_PRIVATE int sqlite3FixSelect(DbFixer*, Select*);
-SQLITE_PRIVATE int sqlite3FixExpr(DbFixer*, Expr*);
-SQLITE_PRIVATE int sqlite3FixExprList(DbFixer*, ExprList*);
-SQLITE_PRIVATE int sqlite3FixTriggerStep(DbFixer*, TriggerStep*);
-SQLITE_PRIVATE int sqlite3AtoF(const char *z, double*, int, u8);
-SQLITE_PRIVATE int sqlite3GetInt32(const char *, int*);
-SQLITE_PRIVATE int sqlite3Atoi(const char*);
-#ifndef SQLITE_OMIT_UTF16
-SQLITE_PRIVATE int sqlite3Utf16ByteLen(const void *pData, int nChar);
-#endif
-SQLITE_PRIVATE int sqlite3Utf8CharLen(const char *pData, int nByte);
-SQLITE_PRIVATE u32 sqlite3Utf8Read(const u8**);
-SQLITE_PRIVATE LogEst sqlite3LogEst(u64);
-SQLITE_PRIVATE LogEst sqlite3LogEstAdd(LogEst,LogEst);
-#ifndef SQLITE_OMIT_VIRTUALTABLE
-SQLITE_PRIVATE LogEst sqlite3LogEstFromDouble(double);
-#endif
-#if defined(SQLITE_ENABLE_STMT_SCANSTATUS) || \
- defined(SQLITE_ENABLE_STAT3_OR_STAT4) || \
- defined(SQLITE_EXPLAIN_ESTIMATED_ROWS)
-SQLITE_PRIVATE u64 sqlite3LogEstToInt(LogEst);
-#endif
-SQLITE_PRIVATE VList *sqlite3VListAdd(sqlite3*,VList*,const char*,int,int);
-SQLITE_PRIVATE const char *sqlite3VListNumToName(VList*,int);
-SQLITE_PRIVATE int sqlite3VListNameToNum(VList*,const char*,int);
-
-/*
-** Routines to read and write variable-length integers. These used to
-** be defined locally, but now we use the varint routines in the util.c
-** file.
-*/
-SQLITE_PRIVATE int sqlite3PutVarint(unsigned char*, u64);
-SQLITE_PRIVATE u8 sqlite3GetVarint(const unsigned char *, u64 *);
-SQLITE_PRIVATE u8 sqlite3GetVarint32(const unsigned char *, u32 *);
-SQLITE_PRIVATE int sqlite3VarintLen(u64 v);
-
-/*
-** The common case is for a varint to be a single byte. They following
-** macros handle the common case without a procedure call, but then call
-** the procedure for larger varints.
-*/
-#define getVarint32(A,B) \
- (u8)((*(A)<(u8)0x80)?((B)=(u32)*(A)),1:sqlite3GetVarint32((A),(u32 *)&(B)))
-#define putVarint32(A,B) \
- (u8)(((u32)(B)<(u32)0x80)?(*(A)=(unsigned char)(B)),1:\
- sqlite3PutVarint((A),(B)))
-#define getVarint sqlite3GetVarint
-#define putVarint sqlite3PutVarint
-
-
-SQLITE_PRIVATE const char *sqlite3IndexAffinityStr(sqlite3*, Index*);
-SQLITE_PRIVATE void sqlite3TableAffinity(Vdbe*, Table*, int);
-SQLITE_PRIVATE char sqlite3CompareAffinity(Expr *pExpr, char aff2);
-SQLITE_PRIVATE int sqlite3IndexAffinityOk(Expr *pExpr, char idx_affinity);
-SQLITE_PRIVATE char sqlite3TableColumnAffinity(Table*,int);
-SQLITE_PRIVATE char sqlite3ExprAffinity(Expr *pExpr);
-SQLITE_PRIVATE int sqlite3Atoi64(const char*, i64*, int, u8);
-SQLITE_PRIVATE int sqlite3DecOrHexToI64(const char*, i64*);
-SQLITE_PRIVATE void sqlite3ErrorWithMsg(sqlite3*, int, const char*,...);
-SQLITE_PRIVATE void sqlite3Error(sqlite3*,int);
-SQLITE_PRIVATE void sqlite3SystemError(sqlite3*,int);
-SQLITE_PRIVATE void *sqlite3HexToBlob(sqlite3*, const char *z, int n);
-SQLITE_PRIVATE u8 sqlite3HexToInt(int h);
-SQLITE_PRIVATE int sqlite3TwoPartName(Parse *, Token *, Token *, Token **);
-
-#if defined(SQLITE_NEED_ERR_NAME)
-SQLITE_PRIVATE const char *sqlite3ErrName(int);
-#endif
-
-#ifdef SQLITE_ENABLE_DESERIALIZE
-SQLITE_PRIVATE int sqlite3MemdbInit(void);
-#endif
-
-SQLITE_PRIVATE const char *sqlite3ErrStr(int);
-SQLITE_PRIVATE int sqlite3ReadSchema(Parse *pParse);
-SQLITE_PRIVATE CollSeq *sqlite3FindCollSeq(sqlite3*,u8 enc, const char*,int);
-SQLITE_PRIVATE int sqlite3IsBinary(const CollSeq*);
-SQLITE_PRIVATE CollSeq *sqlite3LocateCollSeq(Parse *pParse, const char*zName);
-SQLITE_PRIVATE CollSeq *sqlite3ExprCollSeq(Parse *pParse, Expr *pExpr);
-SQLITE_PRIVATE CollSeq *sqlite3ExprNNCollSeq(Parse *pParse, Expr *pExpr);
-SQLITE_PRIVATE int sqlite3ExprCollSeqMatch(Parse*,Expr*,Expr*);
-SQLITE_PRIVATE Expr *sqlite3ExprAddCollateToken(Parse *pParse, Expr*, const Token*, int);
-SQLITE_PRIVATE Expr *sqlite3ExprAddCollateString(Parse*,Expr*,const char*);
-SQLITE_PRIVATE Expr *sqlite3ExprSkipCollate(Expr*);
-SQLITE_PRIVATE int sqlite3CheckCollSeq(Parse *, CollSeq *);
-SQLITE_PRIVATE int sqlite3CheckObjectName(Parse *, const char *);
-SQLITE_PRIVATE void sqlite3VdbeSetChanges(sqlite3 *, int);
-SQLITE_PRIVATE int sqlite3AddInt64(i64*,i64);
-SQLITE_PRIVATE int sqlite3SubInt64(i64*,i64);
-SQLITE_PRIVATE int sqlite3MulInt64(i64*,i64);
-SQLITE_PRIVATE int sqlite3AbsInt32(int);
-#ifdef SQLITE_ENABLE_8_3_NAMES
-SQLITE_PRIVATE void sqlite3FileSuffix3(const char*, char*);
-#else
-# define sqlite3FileSuffix3(X,Y)
-#endif
-SQLITE_PRIVATE u8 sqlite3GetBoolean(const char *z,u8);
-
-SQLITE_PRIVATE const void *sqlite3ValueText(sqlite3_value*, u8);
-SQLITE_PRIVATE int sqlite3ValueBytes(sqlite3_value*, u8);
-SQLITE_PRIVATE void sqlite3ValueSetStr(sqlite3_value*, int, const void *,u8,
- void(*)(void*));
-SQLITE_PRIVATE void sqlite3ValueSetNull(sqlite3_value*);
-SQLITE_PRIVATE void sqlite3ValueFree(sqlite3_value*);
-SQLITE_PRIVATE sqlite3_value *sqlite3ValueNew(sqlite3 *);
-#ifndef SQLITE_OMIT_UTF16
-SQLITE_PRIVATE char *sqlite3Utf16to8(sqlite3 *, const void*, int, u8);
-#endif
-SQLITE_PRIVATE int sqlite3ValueFromExpr(sqlite3 *, Expr *, u8, u8, sqlite3_value **);
-SQLITE_PRIVATE void sqlite3ValueApplyAffinity(sqlite3_value *, u8, u8);
-#ifndef SQLITE_AMALGAMATION
-SQLITE_PRIVATE const unsigned char sqlite3OpcodeProperty[];
-SQLITE_PRIVATE const char sqlite3StrBINARY[];
-SQLITE_PRIVATE const unsigned char sqlite3UpperToLower[];
-SQLITE_PRIVATE const unsigned char sqlite3CtypeMap[];
-SQLITE_PRIVATE const Token sqlite3IntTokens[];
-SQLITE_PRIVATE SQLITE_WSD struct Sqlite3Config sqlite3Config;
-SQLITE_PRIVATE FuncDefHash sqlite3BuiltinFunctions;
-#ifndef SQLITE_OMIT_WSD
-SQLITE_PRIVATE int sqlite3PendingByte;
-#endif
-#endif
-#ifdef VDBE_PROFILE
-SQLITE_PRIVATE sqlite3_uint64 sqlite3NProfileCnt;
-#endif
-SQLITE_PRIVATE void sqlite3RootPageMoved(sqlite3*, int, int, int);
-SQLITE_PRIVATE void sqlite3Reindex(Parse*, Token*, Token*);
-SQLITE_PRIVATE void sqlite3AlterFunctions(void);
-SQLITE_PRIVATE void sqlite3AlterRenameTable(Parse*, SrcList*, Token*);
-SQLITE_PRIVATE void sqlite3AlterRenameColumn(Parse*, SrcList*, Token*, Token*);
-SQLITE_PRIVATE int sqlite3GetToken(const unsigned char *, int *);
-SQLITE_PRIVATE void sqlite3NestedParse(Parse*, const char*, ...);
-SQLITE_PRIVATE void sqlite3ExpirePreparedStatements(sqlite3*, int);
-SQLITE_PRIVATE int sqlite3CodeSubselect(Parse*, Expr *, int, int);
-SQLITE_PRIVATE void sqlite3SelectPrep(Parse*, Select*, NameContext*);
-SQLITE_PRIVATE void sqlite3SelectWrongNumTermsError(Parse *pParse, Select *p);
-SQLITE_PRIVATE int sqlite3MatchSpanName(const char*, const char*, const char*, const char*);
-SQLITE_PRIVATE int sqlite3ResolveExprNames(NameContext*, Expr*);
-SQLITE_PRIVATE int sqlite3ResolveExprListNames(NameContext*, ExprList*);
-SQLITE_PRIVATE void sqlite3ResolveSelectNames(Parse*, Select*, NameContext*);
-SQLITE_PRIVATE void sqlite3ResolveSelfReference(Parse*,Table*,int,Expr*,ExprList*);
-SQLITE_PRIVATE int sqlite3ResolveOrderGroupBy(Parse*, Select*, ExprList*, const char*);
-SQLITE_PRIVATE void sqlite3ColumnDefault(Vdbe *, Table *, int, int);
-SQLITE_PRIVATE void sqlite3AlterFinishAddColumn(Parse *, Token *);
-SQLITE_PRIVATE void sqlite3AlterBeginAddColumn(Parse *, SrcList *);
-SQLITE_PRIVATE void *sqlite3RenameTokenMap(Parse*, void*, Token*);
-SQLITE_PRIVATE void sqlite3RenameTokenRemap(Parse*, void *pTo, void *pFrom);
-SQLITE_PRIVATE void sqlite3RenameExprUnmap(Parse*, Expr*);
-SQLITE_PRIVATE void sqlite3RenameExprlistUnmap(Parse*, ExprList*);
-SQLITE_PRIVATE CollSeq *sqlite3GetCollSeq(Parse*, u8, CollSeq *, const char*);
-SQLITE_PRIVATE char sqlite3AffinityType(const char*, Column*);
-SQLITE_PRIVATE void sqlite3Analyze(Parse*, Token*, Token*);
-SQLITE_PRIVATE int sqlite3InvokeBusyHandler(BusyHandler*, sqlite3_file*);
-SQLITE_PRIVATE int sqlite3FindDb(sqlite3*, Token*);
-SQLITE_PRIVATE int sqlite3FindDbName(sqlite3 *, const char *);
-SQLITE_PRIVATE int sqlite3AnalysisLoad(sqlite3*,int iDB);
-SQLITE_PRIVATE void sqlite3DeleteIndexSamples(sqlite3*,Index*);
-SQLITE_PRIVATE void sqlite3DefaultRowEst(Index*);
-SQLITE_PRIVATE void sqlite3RegisterLikeFunctions(sqlite3*, int);
-SQLITE_PRIVATE int sqlite3IsLikeFunction(sqlite3*,Expr*,int*,char*);
-SQLITE_PRIVATE void sqlite3SchemaClear(void *);
-SQLITE_PRIVATE Schema *sqlite3SchemaGet(sqlite3 *, Btree *);
-SQLITE_PRIVATE int sqlite3SchemaToIndex(sqlite3 *db, Schema *);
-SQLITE_PRIVATE KeyInfo *sqlite3KeyInfoAlloc(sqlite3*,int,int);
-SQLITE_PRIVATE void sqlite3KeyInfoUnref(KeyInfo*);
-SQLITE_PRIVATE KeyInfo *sqlite3KeyInfoRef(KeyInfo*);
-SQLITE_PRIVATE KeyInfo *sqlite3KeyInfoOfIndex(Parse*, Index*);
-SQLITE_PRIVATE KeyInfo *sqlite3KeyInfoFromExprList(Parse*, ExprList*, int, int);
-
-#ifdef SQLITE_DEBUG
-SQLITE_PRIVATE int sqlite3KeyInfoIsWriteable(KeyInfo*);
-#endif
-SQLITE_PRIVATE int sqlite3CreateFunc(sqlite3 *, const char *, int, int, void *,
- void (*)(sqlite3_context*,int,sqlite3_value **),
- void (*)(sqlite3_context*,int,sqlite3_value **),
- void (*)(sqlite3_context*),
- void (*)(sqlite3_context*),
- void (*)(sqlite3_context*,int,sqlite3_value **),
- FuncDestructor *pDestructor
-);
-SQLITE_PRIVATE void sqlite3NoopDestructor(void*);
-SQLITE_PRIVATE void sqlite3OomFault(sqlite3*);
-SQLITE_PRIVATE void sqlite3OomClear(sqlite3*);
-SQLITE_PRIVATE int sqlite3ApiExit(sqlite3 *db, int);
-SQLITE_PRIVATE int sqlite3OpenTempDatabase(Parse *);
-
-SQLITE_PRIVATE void sqlite3StrAccumInit(StrAccum*, sqlite3*, char*, int, int);
-SQLITE_PRIVATE char *sqlite3StrAccumFinish(StrAccum*);
-SQLITE_PRIVATE void sqlite3SelectDestInit(SelectDest*,int,int);
-SQLITE_PRIVATE Expr *sqlite3CreateColumnExpr(sqlite3 *, SrcList *, int, int);
-
-SQLITE_PRIVATE void sqlite3BackupRestart(sqlite3_backup *);
-SQLITE_PRIVATE void sqlite3BackupUpdate(sqlite3_backup *, Pgno, const u8 *);
-
-#ifndef SQLITE_OMIT_SUBQUERY
-SQLITE_PRIVATE int sqlite3ExprCheckIN(Parse*, Expr*);
-#else
-# define sqlite3ExprCheckIN(x,y) SQLITE_OK
-#endif
-
-#ifdef SQLITE_ENABLE_STAT3_OR_STAT4
-SQLITE_PRIVATE void sqlite3AnalyzeFunctions(void);
-SQLITE_PRIVATE int sqlite3Stat4ProbeSetValue(
- Parse*,Index*,UnpackedRecord**,Expr*,int,int,int*);
-SQLITE_PRIVATE int sqlite3Stat4ValueFromExpr(Parse*, Expr*, u8, sqlite3_value**);
-SQLITE_PRIVATE void sqlite3Stat4ProbeFree(UnpackedRecord*);
-SQLITE_PRIVATE int sqlite3Stat4Column(sqlite3*, const void*, int, int, sqlite3_value**);
-SQLITE_PRIVATE char sqlite3IndexColumnAffinity(sqlite3*, Index*, int);
-#endif
-
-/*
-** The interface to the LEMON-generated parser
-*/
-#ifndef SQLITE_AMALGAMATION
-SQLITE_PRIVATE void *sqlite3ParserAlloc(void*(*)(u64), Parse*);
-SQLITE_PRIVATE void sqlite3ParserFree(void*, void(*)(void*));
-#endif
-SQLITE_PRIVATE void sqlite3Parser(void*, int, Token);
-SQLITE_PRIVATE int sqlite3ParserFallback(int);
-#ifdef YYTRACKMAXSTACKDEPTH
-SQLITE_PRIVATE int sqlite3ParserStackPeak(void*);
-#endif
-
-SQLITE_PRIVATE void sqlite3AutoLoadExtensions(sqlite3*);
-#ifndef SQLITE_OMIT_LOAD_EXTENSION
-SQLITE_PRIVATE void sqlite3CloseExtensions(sqlite3*);
-#else
-# define sqlite3CloseExtensions(X)
-#endif
-
-#ifndef SQLITE_OMIT_SHARED_CACHE
-SQLITE_PRIVATE void sqlite3TableLock(Parse *, int, int, u8, const char *);
-#else
- #define sqlite3TableLock(v,w,x,y,z)
-#endif
-
-#ifdef SQLITE_TEST
-SQLITE_PRIVATE int sqlite3Utf8To8(unsigned char*);
-#endif
-
-#ifdef SQLITE_OMIT_VIRTUALTABLE
-# define sqlite3VtabClear(Y)
-# define sqlite3VtabSync(X,Y) SQLITE_OK
-# define sqlite3VtabRollback(X)
-# define sqlite3VtabCommit(X)
-# define sqlite3VtabInSync(db) 0
-# define sqlite3VtabLock(X)
-# define sqlite3VtabUnlock(X)
-# define sqlite3VtabUnlockList(X)
-# define sqlite3VtabSavepoint(X, Y, Z) SQLITE_OK
-# define sqlite3GetVTable(X,Y) ((VTable*)0)
-#else
-SQLITE_PRIVATE void sqlite3VtabClear(sqlite3 *db, Table*);
-SQLITE_PRIVATE void sqlite3VtabDisconnect(sqlite3 *db, Table *p);
-SQLITE_PRIVATE int sqlite3VtabSync(sqlite3 *db, Vdbe*);
-SQLITE_PRIVATE int sqlite3VtabRollback(sqlite3 *db);
-SQLITE_PRIVATE int sqlite3VtabCommit(sqlite3 *db);
-SQLITE_PRIVATE void sqlite3VtabLock(VTable *);
-SQLITE_PRIVATE void sqlite3VtabUnlock(VTable *);
-SQLITE_PRIVATE void sqlite3VtabUnlockList(sqlite3*);
-SQLITE_PRIVATE int sqlite3VtabSavepoint(sqlite3 *, int, int);
-SQLITE_PRIVATE void sqlite3VtabImportErrmsg(Vdbe*, sqlite3_vtab*);
-SQLITE_PRIVATE VTable *sqlite3GetVTable(sqlite3*, Table*);
-SQLITE_PRIVATE Module *sqlite3VtabCreateModule(
- sqlite3*,
- const char*,
- const sqlite3_module*,
- void*,
- void(*)(void*)
- );
-# define sqlite3VtabInSync(db) ((db)->nVTrans>0 && (db)->aVTrans==0)
-#endif
-SQLITE_PRIVATE int sqlite3VtabEponymousTableInit(Parse*,Module*);
-SQLITE_PRIVATE void sqlite3VtabEponymousTableClear(sqlite3*,Module*);
-SQLITE_PRIVATE void sqlite3VtabMakeWritable(Parse*,Table*);
-SQLITE_PRIVATE void sqlite3VtabBeginParse(Parse*, Token*, Token*, Token*, int);
-SQLITE_PRIVATE void sqlite3VtabFinishParse(Parse*, Token*);
-SQLITE_PRIVATE void sqlite3VtabArgInit(Parse*);
-SQLITE_PRIVATE void sqlite3VtabArgExtend(Parse*, Token*);
-SQLITE_PRIVATE int sqlite3VtabCallCreate(sqlite3*, int, const char *, char **);
-SQLITE_PRIVATE int sqlite3VtabCallConnect(Parse*, Table*);
-SQLITE_PRIVATE int sqlite3VtabCallDestroy(sqlite3*, int, const char *);
-SQLITE_PRIVATE int sqlite3VtabBegin(sqlite3 *, VTable *);
-SQLITE_PRIVATE FuncDef *sqlite3VtabOverloadFunction(sqlite3 *,FuncDef*, int nArg, Expr*);
-SQLITE_PRIVATE sqlite3_int64 sqlite3StmtCurrentTime(sqlite3_context*);
-SQLITE_PRIVATE int sqlite3VdbeParameterIndex(Vdbe*, const char*, int);
-SQLITE_PRIVATE int sqlite3TransferBindings(sqlite3_stmt *, sqlite3_stmt *);
-SQLITE_PRIVATE void sqlite3ParserReset(Parse*);
-SQLITE_PRIVATE int sqlite3Reprepare(Vdbe*);
-SQLITE_PRIVATE void sqlite3ExprListCheckLength(Parse*, ExprList*, const char*);
-SQLITE_PRIVATE CollSeq *sqlite3BinaryCompareCollSeq(Parse *, Expr *, Expr *);
-SQLITE_PRIVATE int sqlite3TempInMemory(const sqlite3*);
-SQLITE_PRIVATE const char *sqlite3JournalModename(int);
-#ifndef SQLITE_OMIT_WAL
-SQLITE_PRIVATE int sqlite3Checkpoint(sqlite3*, int, int, int*, int*);
-SQLITE_PRIVATE int sqlite3WalDefaultHook(void*,sqlite3*,const char*,int);
-#endif
-#ifndef SQLITE_OMIT_CTE
-SQLITE_PRIVATE With *sqlite3WithAdd(Parse*,With*,Token*,ExprList*,Select*);
-SQLITE_PRIVATE void sqlite3WithDelete(sqlite3*,With*);
-SQLITE_PRIVATE void sqlite3WithPush(Parse*, With*, u8);
-#else
-#define sqlite3WithPush(x,y,z)
-#define sqlite3WithDelete(x,y)
-#endif
-#ifndef SQLITE_OMIT_UPSERT
-SQLITE_PRIVATE Upsert *sqlite3UpsertNew(sqlite3*,ExprList*,Expr*,ExprList*,Expr*);
-SQLITE_PRIVATE void sqlite3UpsertDelete(sqlite3*,Upsert*);
-SQLITE_PRIVATE Upsert *sqlite3UpsertDup(sqlite3*,Upsert*);
-SQLITE_PRIVATE int sqlite3UpsertAnalyzeTarget(Parse*,SrcList*,Upsert*);
-SQLITE_PRIVATE void sqlite3UpsertDoUpdate(Parse*,Upsert*,Table*,Index*,int);
-#else
-#define sqlite3UpsertNew(v,w,x,y,z) ((Upsert*)0)
-#define sqlite3UpsertDelete(x,y)
-#define sqlite3UpsertDup(x,y) ((Upsert*)0)
-#endif
-
-
-/* Declarations for functions in fkey.c. All of these are replaced by
-** no-op macros if OMIT_FOREIGN_KEY is defined. In this case no foreign
-** key functionality is available. If OMIT_TRIGGER is defined but
-** OMIT_FOREIGN_KEY is not, only some of the functions are no-oped. In
-** this case foreign keys are parsed, but no other functionality is
-** provided (enforcement of FK constraints requires the triggers sub-system).
-*/
-#if !defined(SQLITE_OMIT_FOREIGN_KEY) && !defined(SQLITE_OMIT_TRIGGER)
-SQLITE_PRIVATE void sqlite3FkCheck(Parse*, Table*, int, int, int*, int);
-SQLITE_PRIVATE void sqlite3FkDropTable(Parse*, SrcList *, Table*);
-SQLITE_PRIVATE void sqlite3FkActions(Parse*, Table*, ExprList*, int, int*, int);
-SQLITE_PRIVATE int sqlite3FkRequired(Parse*, Table*, int*, int);
-SQLITE_PRIVATE u32 sqlite3FkOldmask(Parse*, Table*);
-SQLITE_PRIVATE FKey *sqlite3FkReferences(Table *);
-#else
- #define sqlite3FkActions(a,b,c,d,e,f)
- #define sqlite3FkCheck(a,b,c,d,e,f)
- #define sqlite3FkDropTable(a,b,c)
- #define sqlite3FkOldmask(a,b) 0
- #define sqlite3FkRequired(a,b,c,d) 0
- #define sqlite3FkReferences(a) 0
-#endif
-#ifndef SQLITE_OMIT_FOREIGN_KEY
-SQLITE_PRIVATE void sqlite3FkDelete(sqlite3 *, Table*);
-SQLITE_PRIVATE int sqlite3FkLocateIndex(Parse*,Table*,FKey*,Index**,int**);
-#else
- #define sqlite3FkDelete(a,b)
- #define sqlite3FkLocateIndex(a,b,c,d,e)
-#endif
-
-
-/*
-** Available fault injectors. Should be numbered beginning with 0.
-*/
-#define SQLITE_FAULTINJECTOR_MALLOC 0
-#define SQLITE_FAULTINJECTOR_COUNT 1
-
-/*
-** The interface to the code in fault.c used for identifying "benign"
-** malloc failures. This is only present if SQLITE_UNTESTABLE
-** is not defined.
-*/
-#ifndef SQLITE_UNTESTABLE
-SQLITE_PRIVATE void sqlite3BeginBenignMalloc(void);
-SQLITE_PRIVATE void sqlite3EndBenignMalloc(void);
-#else
- #define sqlite3BeginBenignMalloc()
- #define sqlite3EndBenignMalloc()
-#endif
-
-/*
-** Allowed return values from sqlite3FindInIndex()
-*/
-#define IN_INDEX_ROWID 1 /* Search the rowid of the table */
-#define IN_INDEX_EPH 2 /* Search an ephemeral b-tree */
-#define IN_INDEX_INDEX_ASC 3 /* Existing index ASCENDING */
-#define IN_INDEX_INDEX_DESC 4 /* Existing index DESCENDING */
-#define IN_INDEX_NOOP 5 /* No table available. Use comparisons */
-/*
-** Allowed flags for the 3rd parameter to sqlite3FindInIndex().
-*/
-#define IN_INDEX_NOOP_OK 0x0001 /* OK to return IN_INDEX_NOOP */
-#define IN_INDEX_MEMBERSHIP 0x0002 /* IN operator used for membership test */
-#define IN_INDEX_LOOP 0x0004 /* IN operator used as a loop */
-SQLITE_PRIVATE int sqlite3FindInIndex(Parse *, Expr *, u32, int*, int*);
-
-SQLITE_PRIVATE int sqlite3JournalOpen(sqlite3_vfs *, const char *, sqlite3_file *, int, int);
-SQLITE_PRIVATE int sqlite3JournalSize(sqlite3_vfs *);
-#if defined(SQLITE_ENABLE_ATOMIC_WRITE) \
- || defined(SQLITE_ENABLE_BATCH_ATOMIC_WRITE)
-SQLITE_PRIVATE int sqlite3JournalCreate(sqlite3_file *);
-#endif
-
-SQLITE_PRIVATE int sqlite3JournalIsInMemory(sqlite3_file *p);
-SQLITE_PRIVATE void sqlite3MemJournalOpen(sqlite3_file *);
-
-SQLITE_PRIVATE void sqlite3ExprSetHeightAndFlags(Parse *pParse, Expr *p);
-#if SQLITE_MAX_EXPR_DEPTH>0
-SQLITE_PRIVATE int sqlite3SelectExprHeight(Select *);
-SQLITE_PRIVATE int sqlite3ExprCheckHeight(Parse*, int);
-#else
- #define sqlite3SelectExprHeight(x) 0
- #define sqlite3ExprCheckHeight(x,y)
-#endif
-
-SQLITE_PRIVATE u32 sqlite3Get4byte(const u8*);
-SQLITE_PRIVATE void sqlite3Put4byte(u8*, u32);
-
-#ifdef SQLITE_ENABLE_UNLOCK_NOTIFY
-SQLITE_PRIVATE void sqlite3ConnectionBlocked(sqlite3 *, sqlite3 *);
-SQLITE_PRIVATE void sqlite3ConnectionUnlocked(sqlite3 *db);
-SQLITE_PRIVATE void sqlite3ConnectionClosed(sqlite3 *db);
-#else
- #define sqlite3ConnectionBlocked(x,y)
- #define sqlite3ConnectionUnlocked(x)
- #define sqlite3ConnectionClosed(x)
-#endif
-
-#ifdef SQLITE_DEBUG
-SQLITE_PRIVATE void sqlite3ParserTrace(FILE*, char *);
-#endif
-#if defined(YYCOVERAGE)
-SQLITE_PRIVATE int sqlite3ParserCoverage(FILE*);
-#endif
-
-/*
-** If the SQLITE_ENABLE IOTRACE exists then the global variable
-** sqlite3IoTrace is a pointer to a printf-like routine used to
-** print I/O tracing messages.
-*/
-#ifdef SQLITE_ENABLE_IOTRACE
-# define IOTRACE(A) if( sqlite3IoTrace ){ sqlite3IoTrace A; }
-SQLITE_PRIVATE void sqlite3VdbeIOTraceSql(Vdbe*);
-SQLITE_API SQLITE_EXTERN void (SQLITE_CDECL *sqlite3IoTrace)(const char*,...);
-#else
-# define IOTRACE(A)
-# define sqlite3VdbeIOTraceSql(X)
-#endif
-
-/*
-** These routines are available for the mem2.c debugging memory allocator
-** only. They are used to verify that different "types" of memory
-** allocations are properly tracked by the system.
-**
-** sqlite3MemdebugSetType() sets the "type" of an allocation to one of
-** the MEMTYPE_* macros defined below. The type must be a bitmask with
-** a single bit set.
-**
-** sqlite3MemdebugHasType() returns true if any of the bits in its second
-** argument match the type set by the previous sqlite3MemdebugSetType().
-** sqlite3MemdebugHasType() is intended for use inside assert() statements.
-**
-** sqlite3MemdebugNoType() returns true if none of the bits in its second
-** argument match the type set by the previous sqlite3MemdebugSetType().
-**
-** Perhaps the most important point is the difference between MEMTYPE_HEAP
-** and MEMTYPE_LOOKASIDE. If an allocation is MEMTYPE_LOOKASIDE, that means
-** it might have been allocated by lookaside, except the allocation was
-** too large or lookaside was already full. It is important to verify
-** that allocations that might have been satisfied by lookaside are not
-** passed back to non-lookaside free() routines. Asserts such as the
-** example above are placed on the non-lookaside free() routines to verify
-** this constraint.
-**
-** All of this is no-op for a production build. It only comes into
-** play when the SQLITE_MEMDEBUG compile-time option is used.
-*/
-#ifdef SQLITE_MEMDEBUG
-SQLITE_PRIVATE void sqlite3MemdebugSetType(void*,u8);
-SQLITE_PRIVATE int sqlite3MemdebugHasType(void*,u8);
-SQLITE_PRIVATE int sqlite3MemdebugNoType(void*,u8);
-#else
-# define sqlite3MemdebugSetType(X,Y) /* no-op */
-# define sqlite3MemdebugHasType(X,Y) 1
-# define sqlite3MemdebugNoType(X,Y) 1
-#endif
-#define MEMTYPE_HEAP 0x01 /* General heap allocations */
-#define MEMTYPE_LOOKASIDE 0x02 /* Heap that might have been lookaside */
-#define MEMTYPE_PCACHE 0x04 /* Page cache allocations */
-
-/*
-** Threading interface
-*/
-#if SQLITE_MAX_WORKER_THREADS>0
-SQLITE_PRIVATE int sqlite3ThreadCreate(SQLiteThread**,void*(*)(void*),void*);
-SQLITE_PRIVATE int sqlite3ThreadJoin(SQLiteThread*, void**);
-#endif
-
-#if defined(SQLITE_ENABLE_DBPAGE_VTAB) || defined(SQLITE_TEST)
-SQLITE_PRIVATE int sqlite3DbpageRegister(sqlite3*);
-#endif
-#if defined(SQLITE_ENABLE_DBSTAT_VTAB) || defined(SQLITE_TEST)
-SQLITE_PRIVATE int sqlite3DbstatRegister(sqlite3*);
-#endif
-
-SQLITE_PRIVATE int sqlite3ExprVectorSize(Expr *pExpr);
-SQLITE_PRIVATE int sqlite3ExprIsVector(Expr *pExpr);
-SQLITE_PRIVATE Expr *sqlite3VectorFieldSubexpr(Expr*, int);
-SQLITE_PRIVATE Expr *sqlite3ExprForVectorField(Parse*,Expr*,int);
-SQLITE_PRIVATE void sqlite3VectorErrorMsg(Parse*, Expr*);
-
-#ifndef SQLITE_OMIT_COMPILEOPTION_DIAGS
-SQLITE_PRIVATE const char **sqlite3CompileOptions(int *pnOpt);
-#endif
-
-#endif /* SQLITEINT_H */
-
-/************** End of sqliteInt.h *******************************************/
-/************** Begin file global.c ******************************************/
-/*
-** 2008 June 13
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-**
-** This file contains definitions of global variables and constants.
-*/
-/* #include "sqliteInt.h" */
-
-/* An array to map all upper-case characters into their corresponding
-** lower-case character.
-**
-** SQLite only considers US-ASCII (or EBCDIC) characters. We do not
-** handle case conversions for the UTF character set since the tables
-** involved are nearly as big or bigger than SQLite itself.
-*/
-SQLITE_PRIVATE const unsigned char sqlite3UpperToLower[] = {
-#ifdef SQLITE_ASCII
- 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17,
- 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35,
- 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, 52, 53,
- 54, 55, 56, 57, 58, 59, 60, 61, 62, 63, 64, 97, 98, 99,100,101,102,103,
- 104,105,106,107,108,109,110,111,112,113,114,115,116,117,118,119,120,121,
- 122, 91, 92, 93, 94, 95, 96, 97, 98, 99,100,101,102,103,104,105,106,107,
- 108,109,110,111,112,113,114,115,116,117,118,119,120,121,122,123,124,125,
- 126,127,128,129,130,131,132,133,134,135,136,137,138,139,140,141,142,143,
- 144,145,146,147,148,149,150,151,152,153,154,155,156,157,158,159,160,161,
- 162,163,164,165,166,167,168,169,170,171,172,173,174,175,176,177,178,179,
- 180,181,182,183,184,185,186,187,188,189,190,191,192,193,194,195,196,197,
- 198,199,200,201,202,203,204,205,206,207,208,209,210,211,212,213,214,215,
- 216,217,218,219,220,221,222,223,224,225,226,227,228,229,230,231,232,233,
- 234,235,236,237,238,239,240,241,242,243,244,245,246,247,248,249,250,251,
- 252,253,254,255
-#endif
-#ifdef SQLITE_EBCDIC
- 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, /* 0x */
- 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, /* 1x */
- 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, /* 2x */
- 48, 49, 50, 51, 52, 53, 54, 55, 56, 57, 58, 59, 60, 61, 62, 63, /* 3x */
- 64, 65, 66, 67, 68, 69, 70, 71, 72, 73, 74, 75, 76, 77, 78, 79, /* 4x */
- 80, 81, 82, 83, 84, 85, 86, 87, 88, 89, 90, 91, 92, 93, 94, 95, /* 5x */
- 96, 97, 98, 99,100,101,102,103,104,105,106,107,108,109,110,111, /* 6x */
- 112,113,114,115,116,117,118,119,120,121,122,123,124,125,126,127, /* 7x */
- 128,129,130,131,132,133,134,135,136,137,138,139,140,141,142,143, /* 8x */
- 144,145,146,147,148,149,150,151,152,153,154,155,156,157,158,159, /* 9x */
- 160,161,162,163,164,165,166,167,168,169,170,171,140,141,142,175, /* Ax */
- 176,177,178,179,180,181,182,183,184,185,186,187,188,189,190,191, /* Bx */
- 192,129,130,131,132,133,134,135,136,137,202,203,204,205,206,207, /* Cx */
- 208,145,146,147,148,149,150,151,152,153,218,219,220,221,222,223, /* Dx */
- 224,225,162,163,164,165,166,167,168,169,234,235,236,237,238,239, /* Ex */
- 240,241,242,243,244,245,246,247,248,249,250,251,252,253,254,255, /* Fx */
-#endif
-};
-
-/*
-** The following 256 byte lookup table is used to support SQLites built-in
-** equivalents to the following standard library functions:
-**
-** isspace() 0x01
-** isalpha() 0x02
-** isdigit() 0x04
-** isalnum() 0x06
-** isxdigit() 0x08
-** toupper() 0x20
-** SQLite identifier character 0x40
-** Quote character 0x80
-**
-** Bit 0x20 is set if the mapped character requires translation to upper
-** case. i.e. if the character is a lower-case ASCII character.
-** If x is a lower-case ASCII character, then its upper-case equivalent
-** is (x - 0x20). Therefore toupper() can be implemented as:
-**
-** (x & ~(map[x]&0x20))
-**
-** The equivalent of tolower() is implemented using the sqlite3UpperToLower[]
-** array. tolower() is used more often than toupper() by SQLite.
-**
-** Bit 0x40 is set if the character is non-alphanumeric and can be used in an
-** SQLite identifier. Identifiers are alphanumerics, "_", "$", and any
-** non-ASCII UTF character. Hence the test for whether or not a character is
-** part of an identifier is 0x46.
-*/
-#ifdef SQLITE_ASCII
-SQLITE_PRIVATE const unsigned char sqlite3CtypeMap[256] = {
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 00..07 ........ */
- 0x00, 0x01, 0x01, 0x01, 0x01, 0x01, 0x00, 0x00, /* 08..0f ........ */
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 10..17 ........ */
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 18..1f ........ */
- 0x01, 0x00, 0x80, 0x00, 0x40, 0x00, 0x00, 0x80, /* 20..27 !"#$%&' */
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 28..2f ()*+,-./ */
- 0x0c, 0x0c, 0x0c, 0x0c, 0x0c, 0x0c, 0x0c, 0x0c, /* 30..37 01234567 */
- 0x0c, 0x0c, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 38..3f 89:;<=>? */
-
- 0x00, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x02, /* 40..47 @ABCDEFG */
- 0x02, 0x02, 0x02, 0x02, 0x02, 0x02, 0x02, 0x02, /* 48..4f HIJKLMNO */
- 0x02, 0x02, 0x02, 0x02, 0x02, 0x02, 0x02, 0x02, /* 50..57 PQRSTUVW */
- 0x02, 0x02, 0x02, 0x80, 0x00, 0x00, 0x00, 0x40, /* 58..5f XYZ[\]^_ */
- 0x80, 0x2a, 0x2a, 0x2a, 0x2a, 0x2a, 0x2a, 0x22, /* 60..67 `abcdefg */
- 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, /* 68..6f hijklmno */
- 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, /* 70..77 pqrstuvw */
- 0x22, 0x22, 0x22, 0x00, 0x00, 0x00, 0x00, 0x00, /* 78..7f xyz{|}~. */
-
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* 80..87 ........ */
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* 88..8f ........ */
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* 90..97 ........ */
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* 98..9f ........ */
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* a0..a7 ........ */
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* a8..af ........ */
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* b0..b7 ........ */
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* b8..bf ........ */
-
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* c0..c7 ........ */
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* c8..cf ........ */
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* d0..d7 ........ */
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* d8..df ........ */
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* e0..e7 ........ */
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* e8..ef ........ */
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, /* f0..f7 ........ */
- 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40 /* f8..ff ........ */
-};
-#endif
-
-/* EVIDENCE-OF: R-02982-34736 In order to maintain full backwards
-** compatibility for legacy applications, the URI filename capability is
-** disabled by default.
-**
-** EVIDENCE-OF: R-38799-08373 URI filenames can be enabled or disabled
-** using the SQLITE_USE_URI=1 or SQLITE_USE_URI=0 compile-time options.
-**
-** EVIDENCE-OF: R-43642-56306 By default, URI handling is globally
-** disabled. The default value may be changed by compiling with the
-** SQLITE_USE_URI symbol defined.
-**
-** URI filenames are enabled by default if SQLITE_HAS_CODEC is
-** enabled.
-*/
-#ifndef SQLITE_USE_URI
-# ifdef SQLITE_HAS_CODEC
-# define SQLITE_USE_URI 1
-# else
-# define SQLITE_USE_URI 0
-# endif
-#endif
-
-/* EVIDENCE-OF: R-38720-18127 The default setting is determined by the
-** SQLITE_ALLOW_COVERING_INDEX_SCAN compile-time option, or is "on" if
-** that compile-time option is omitted.
-*/
-#ifndef SQLITE_ALLOW_COVERING_INDEX_SCAN
-# define SQLITE_ALLOW_COVERING_INDEX_SCAN 1
-#endif
-
-/* The minimum PMA size is set to this value multiplied by the database
-** page size in bytes.
-*/
-#ifndef SQLITE_SORTER_PMASZ
-# define SQLITE_SORTER_PMASZ 250
-#endif
-
-/* Statement journals spill to disk when their size exceeds the following
-** threshold (in bytes). 0 means that statement journals are created and
-** written to disk immediately (the default behavior for SQLite versions
-** before 3.12.0). -1 means always keep the entire statement journal in
-** memory. (The statement journal is also always held entirely in memory
-** if journal_mode=MEMORY or if temp_store=MEMORY, regardless of this
-** setting.)
-*/
-#ifndef SQLITE_STMTJRNL_SPILL
-# define SQLITE_STMTJRNL_SPILL (64*1024)
-#endif
-
-/*
-** The default lookaside-configuration, the format "SZ,N". SZ is the
-** number of bytes in each lookaside slot (should be a multiple of 8)
-** and N is the number of slots. The lookaside-configuration can be
-** changed as start-time using sqlite3_config(SQLITE_CONFIG_LOOKASIDE)
-** or at run-time for an individual database connection using
-** sqlite3_db_config(db, SQLITE_DBCONFIG_LOOKASIDE);
-*/
-#ifndef SQLITE_DEFAULT_LOOKASIDE
-# define SQLITE_DEFAULT_LOOKASIDE 1200,100
-#endif
-
-
-/*
-** The following singleton contains the global configuration for
-** the SQLite library.
-*/
-SQLITE_PRIVATE SQLITE_WSD struct Sqlite3Config sqlite3Config = {
- SQLITE_DEFAULT_MEMSTATUS, /* bMemstat */
- 1, /* bCoreMutex */
- SQLITE_THREADSAFE==1, /* bFullMutex */
- SQLITE_USE_URI, /* bOpenUri */
- SQLITE_ALLOW_COVERING_INDEX_SCAN, /* bUseCis */
- 0, /* bSmallMalloc */
- 0x7ffffffe, /* mxStrlen */
- 0, /* neverCorrupt */
- SQLITE_DEFAULT_LOOKASIDE, /* szLookaside, nLookaside */
- SQLITE_STMTJRNL_SPILL, /* nStmtSpill */
- {0,0,0,0,0,0,0,0}, /* m */
- {0,0,0,0,0,0,0,0,0}, /* mutex */
- {0,0,0,0,0,0,0,0,0,0,0,0,0},/* pcache2 */
- (void*)0, /* pHeap */
- 0, /* nHeap */
- 0, 0, /* mnHeap, mxHeap */
- SQLITE_DEFAULT_MMAP_SIZE, /* szMmap */
- SQLITE_MAX_MMAP_SIZE, /* mxMmap */
- (void*)0, /* pPage */
- 0, /* szPage */
- SQLITE_DEFAULT_PCACHE_INITSZ, /* nPage */
- 0, /* mxParserStack */
- 0, /* sharedCacheEnabled */
- SQLITE_SORTER_PMASZ, /* szPma */
- /* All the rest should always be initialized to zero */
- 0, /* isInit */
- 0, /* inProgress */
- 0, /* isMutexInit */
- 0, /* isMallocInit */
- 0, /* isPCacheInit */
- 0, /* nRefInitMutex */
- 0, /* pInitMutex */
- 0, /* xLog */
- 0, /* pLogArg */
-#ifdef SQLITE_ENABLE_SQLLOG
- 0, /* xSqllog */
- 0, /* pSqllogArg */
-#endif
-#ifdef SQLITE_VDBE_COVERAGE
- 0, /* xVdbeBranch */
- 0, /* pVbeBranchArg */
-#endif
-#ifndef SQLITE_UNTESTABLE
- 0, /* xTestCallback */
-#endif
- 0, /* bLocaltimeFault */
- 0x7ffffffe, /* iOnceResetThreshold */
- SQLITE_DEFAULT_SORTERREF_SIZE /* szSorterRef */
-};
-
-/*
-** Hash table for global functions - functions common to all
-** database connections. After initialization, this table is
-** read-only.
-*/
-SQLITE_PRIVATE FuncDefHash sqlite3BuiltinFunctions;
-
-/*
-** Constant tokens for values 0 and 1.
-*/
-SQLITE_PRIVATE const Token sqlite3IntTokens[] = {
- { "0", 1 },
- { "1", 1 }
-};
-
-#ifdef VDBE_PROFILE
-/*
-** The following performance counter can be used in place of
-** sqlite3Hwtime() for profiling. This is a no-op on standard builds.
-*/
-SQLITE_PRIVATE sqlite3_uint64 sqlite3NProfileCnt = 0;
-#endif
-
-/*
-** The value of the "pending" byte must be 0x40000000 (1 byte past the
-** 1-gibabyte boundary) in a compatible database. SQLite never uses
-** the database page that contains the pending byte. It never attempts
-** to read or write that page. The pending byte page is set aside
-** for use by the VFS layers as space for managing file locks.
-**
-** During testing, it is often desirable to move the pending byte to
-** a different position in the file. This allows code that has to
-** deal with the pending byte to run on files that are much smaller
-** than 1 GiB. The sqlite3_test_control() interface can be used to
-** move the pending byte.
-**
-** IMPORTANT: Changing the pending byte to any value other than
-** 0x40000000 results in an incompatible database file format!
-** Changing the pending byte during operation will result in undefined
-** and incorrect behavior.
-*/
-#ifndef SQLITE_OMIT_WSD
-SQLITE_PRIVATE int sqlite3PendingByte = 0x40000000;
-#endif
-
-/* #include "opcodes.h" */
-/*
-** Properties of opcodes. The OPFLG_INITIALIZER macro is
-** created by mkopcodeh.awk during compilation. Data is obtained
-** from the comments following the "case OP_xxxx:" statements in
-** the vdbe.c file.
-*/
-SQLITE_PRIVATE const unsigned char sqlite3OpcodeProperty[] = OPFLG_INITIALIZER;
-
-/*
-** Name of the default collating sequence
-*/
-SQLITE_PRIVATE const char sqlite3StrBINARY[] = "BINARY";
-
-/************** End of global.c **********************************************/
-/************** Begin file status.c ******************************************/
-/*
-** 2008 June 18
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-**
-** This module implements the sqlite3_status() interface and related
-** functionality.
-*/
-/* #include "sqliteInt.h" */
-/************** Include vdbeInt.h in the middle of status.c ******************/
-/************** Begin file vdbeInt.h *****************************************/
-/*
-** 2003 September 6
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** This is the header file for information that is private to the
-** VDBE. This information used to all be at the top of the single
-** source code file "vdbe.c". When that file became too big (over
-** 6000 lines long) it was split up into several smaller files and
-** this header information was factored out.
-*/
-#ifndef SQLITE_VDBEINT_H
-#define SQLITE_VDBEINT_H
-
-/*
-** The maximum number of times that a statement will try to reparse
-** itself before giving up and returning SQLITE_SCHEMA.
-*/
-#ifndef SQLITE_MAX_SCHEMA_RETRY
-# define SQLITE_MAX_SCHEMA_RETRY 50
-#endif
-
-/*
-** VDBE_DISPLAY_P4 is true or false depending on whether or not the
-** "explain" P4 display logic is enabled.
-*/
-#if !defined(SQLITE_OMIT_EXPLAIN) || !defined(NDEBUG) \
- || defined(VDBE_PROFILE) || defined(SQLITE_DEBUG)
-# define VDBE_DISPLAY_P4 1
-#else
-# define VDBE_DISPLAY_P4 0
-#endif
-
-/*
-** SQL is translated into a sequence of instructions to be
-** executed by a virtual machine. Each instruction is an instance
-** of the following structure.
-*/
-typedef struct VdbeOp Op;
-
-/*
-** Boolean values
-*/
-typedef unsigned Bool;
-
-/* Opaque type used by code in vdbesort.c */
-typedef struct VdbeSorter VdbeSorter;
-
-/* Elements of the linked list at Vdbe.pAuxData */
-typedef struct AuxData AuxData;
-
-/* Types of VDBE cursors */
-#define CURTYPE_BTREE 0
-#define CURTYPE_SORTER 1
-#define CURTYPE_VTAB 2
-#define CURTYPE_PSEUDO 3
-
-/*
-** A VdbeCursor is an superclass (a wrapper) for various cursor objects:
-**
-** * A b-tree cursor
-** - In the main database or in an ephemeral database
-** - On either an index or a table
-** * A sorter
-** * A virtual table
-** * A one-row "pseudotable" stored in a single register
-*/
-typedef struct VdbeCursor VdbeCursor;
-struct VdbeCursor {
- u8 eCurType; /* One of the CURTYPE_* values above */
- i8 iDb; /* Index of cursor database in db->aDb[] (or -1) */
- u8 nullRow; /* True if pointing to a row with no data */
- u8 deferredMoveto; /* A call to sqlite3BtreeMoveto() is needed */
- u8 isTable; /* True for rowid tables. False for indexes */
-#ifdef SQLITE_DEBUG
- u8 seekOp; /* Most recent seek operation on this cursor */
- u8 wrFlag; /* The wrFlag argument to sqlite3BtreeCursor() */
-#endif
- Bool isEphemeral:1; /* True for an ephemeral table */
- Bool useRandomRowid:1; /* Generate new record numbers semi-randomly */
- Bool isOrdered:1; /* True if the table is not BTREE_UNORDERED */
- Bool seekHit:1; /* See the OP_SeekHit and OP_IfNoHope opcodes */
- Btree *pBtx; /* Separate file holding temporary table */
- i64 seqCount; /* Sequence counter */
- int *aAltMap; /* Mapping from table to index column numbers */
-
- /* Cached OP_Column parse information is only valid if cacheStatus matches
- ** Vdbe.cacheCtr. Vdbe.cacheCtr will never take on the value of
- ** CACHE_STALE (0) and so setting cacheStatus=CACHE_STALE guarantees that
- ** the cache is out of date. */
- u32 cacheStatus; /* Cache is valid if this matches Vdbe.cacheCtr */
- int seekResult; /* Result of previous sqlite3BtreeMoveto() or 0
- ** if there have been no prior seeks on the cursor. */
- /* seekResult does not distinguish between "no seeks have ever occurred
- ** on this cursor" and "the most recent seek was an exact match".
- ** For CURTYPE_PSEUDO, seekResult is the register holding the record */
-
- /* When a new VdbeCursor is allocated, only the fields above are zeroed.
- ** The fields that follow are uninitialized, and must be individually
- ** initialized prior to first use. */
- VdbeCursor *pAltCursor; /* Associated index cursor from which to read */
- union {
- BtCursor *pCursor; /* CURTYPE_BTREE or _PSEUDO. Btree cursor */
- sqlite3_vtab_cursor *pVCur; /* CURTYPE_VTAB. Vtab cursor */
- VdbeSorter *pSorter; /* CURTYPE_SORTER. Sorter object */
- } uc;
- KeyInfo *pKeyInfo; /* Info about index keys needed by index cursors */
- u32 iHdrOffset; /* Offset to next unparsed byte of the header */
- Pgno pgnoRoot; /* Root page of the open btree cursor */
- i16 nField; /* Number of fields in the header */
- u16 nHdrParsed; /* Number of header fields parsed so far */
- i64 movetoTarget; /* Argument to the deferred sqlite3BtreeMoveto() */
- u32 *aOffset; /* Pointer to aType[nField] */
- const u8 *aRow; /* Data for the current row, if all on one page */
- u32 payloadSize; /* Total number of bytes in the record */
- u32 szRow; /* Byte available in aRow */
-#ifdef SQLITE_ENABLE_COLUMN_USED_MASK
- u64 maskUsed; /* Mask of columns used by this cursor */
-#endif
-
- /* 2*nField extra array elements allocated for aType[], beyond the one
- ** static element declared in the structure. nField total array slots for
- ** aType[] and nField+1 array slots for aOffset[] */
- u32 aType[1]; /* Type values record decode. MUST BE LAST */
-};
-
-
-/*
-** A value for VdbeCursor.cacheStatus that means the cache is always invalid.
-*/
-#define CACHE_STALE 0
-
-/*
-** When a sub-program is executed (OP_Program), a structure of this type
-** is allocated to store the current value of the program counter, as
-** well as the current memory cell array and various other frame specific
-** values stored in the Vdbe struct. When the sub-program is finished,
-** these values are copied back to the Vdbe from the VdbeFrame structure,
-** restoring the state of the VM to as it was before the sub-program
-** began executing.
-**
-** The memory for a VdbeFrame object is allocated and managed by a memory
-** cell in the parent (calling) frame. When the memory cell is deleted or
-** overwritten, the VdbeFrame object is not freed immediately. Instead, it
-** is linked into the Vdbe.pDelFrame list. The contents of the Vdbe.pDelFrame
-** list is deleted when the VM is reset in VdbeHalt(). The reason for doing
-** this instead of deleting the VdbeFrame immediately is to avoid recursive
-** calls to sqlite3VdbeMemRelease() when the memory cells belonging to the
-** child frame are released.
-**
-** The currently executing frame is stored in Vdbe.pFrame. Vdbe.pFrame is
-** set to NULL if the currently executing frame is the main program.
-*/
-typedef struct VdbeFrame VdbeFrame;
-struct VdbeFrame {
- Vdbe *v; /* VM this frame belongs to */
- VdbeFrame *pParent; /* Parent of this frame, or NULL if parent is main */
- Op *aOp; /* Program instructions for parent frame */
- i64 *anExec; /* Event counters from parent frame */
- Mem *aMem; /* Array of memory cells for parent frame */
- VdbeCursor **apCsr; /* Array of Vdbe cursors for parent frame */
- u8 *aOnce; /* Bitmask used by OP_Once */
- void *token; /* Copy of SubProgram.token */
- i64 lastRowid; /* Last insert rowid (sqlite3.lastRowid) */
- AuxData *pAuxData; /* Linked list of auxdata allocations */
-#if SQLITE_DEBUG
- u32 iFrameMagic; /* magic number for sanity checking */
-#endif
- int nCursor; /* Number of entries in apCsr */
- int pc; /* Program Counter in parent (calling) frame */
- int nOp; /* Size of aOp array */
- int nMem; /* Number of entries in aMem */
- int nChildMem; /* Number of memory cells for child frame */
- int nChildCsr; /* Number of cursors for child frame */
- int nChange; /* Statement changes (Vdbe.nChange) */
- int nDbChange; /* Value of db->nChange */
-};
-
-/* Magic number for sanity checking on VdbeFrame objects */
-#define SQLITE_FRAME_MAGIC 0x879fb71e
-
-/*
-** Return a pointer to the array of registers allocated for use
-** by a VdbeFrame.
-*/
-#define VdbeFrameMem(p) ((Mem *)&((u8 *)p)[ROUND8(sizeof(VdbeFrame))])
-
-/*
-** Internally, the vdbe manipulates nearly all SQL values as Mem
-** structures. Each Mem struct may cache multiple representations (string,
-** integer etc.) of the same value.
-*/
-struct sqlite3_value {
- union MemValue {
- double r; /* Real value used when MEM_Real is set in flags */
- i64 i; /* Integer value used when MEM_Int is set in flags */
- int nZero; /* Extra zero bytes when MEM_Zero and MEM_Blob set */
- const char *zPType; /* Pointer type when MEM_Term|MEM_Subtype|MEM_Null */
- FuncDef *pDef; /* Used only when flags==MEM_Agg */
- } u;
- u16 flags; /* Some combination of MEM_Null, MEM_Str, MEM_Dyn, etc. */
- u8 enc; /* SQLITE_UTF8, SQLITE_UTF16BE, SQLITE_UTF16LE */
- u8 eSubtype; /* Subtype for this value */
- int n; /* Number of characters in string value, excluding '\0' */
- char *z; /* String or BLOB value */
- /* ShallowCopy only needs to copy the information above */
- char *zMalloc; /* Space to hold MEM_Str or MEM_Blob if szMalloc>0 */
- int szMalloc; /* Size of the zMalloc allocation */
- u32 uTemp; /* Transient storage for serial_type in OP_MakeRecord */
- sqlite3 *db; /* The associated database connection */
- void (*xDel)(void*);/* Destructor for Mem.z - only valid if MEM_Dyn */
-#ifdef SQLITE_DEBUG
- Mem *pScopyFrom; /* This Mem is a shallow copy of pScopyFrom */
- u16 mScopyFlags; /* flags value immediately after the shallow copy */
-#endif
-};
-
-/*
-** Size of struct Mem not including the Mem.zMalloc member or anything that
-** follows.
-*/
-#define MEMCELLSIZE offsetof(Mem,zMalloc)
-
-/* One or more of the following flags are set to indicate the validOK
-** representations of the value stored in the Mem struct.
-**
-** If the MEM_Null flag is set, then the value is an SQL NULL value.
-** For a pointer type created using sqlite3_bind_pointer() or
-** sqlite3_result_pointer() the MEM_Term and MEM_Subtype flags are also set.
-**
-** If the MEM_Str flag is set then Mem.z points at a string representation.
-** Usually this is encoded in the same unicode encoding as the main
-** database (see below for exceptions). If the MEM_Term flag is also
-** set, then the string is nul terminated. The MEM_Int and MEM_Real
-** flags may coexist with the MEM_Str flag.
-*/
-#define MEM_Null 0x0001 /* Value is NULL (or a pointer) */
-#define MEM_Str 0x0002 /* Value is a string */
-#define MEM_Int 0x0004 /* Value is an integer */
-#define MEM_Real 0x0008 /* Value is a real number */
-#define MEM_Blob 0x0010 /* Value is a BLOB */
-#define MEM_AffMask 0x001f /* Mask of affinity bits */
-/* Available 0x0020 */
-/* Available 0x0040 */
-#define MEM_Undefined 0x0080 /* Value is undefined */
-#define MEM_Cleared 0x0100 /* NULL set by OP_Null, not from data */
-#define MEM_TypeMask 0xc1ff /* Mask of type bits */
-
-
-/* Whenever Mem contains a valid string or blob representation, one of
-** the following flags must be set to determine the memory management
-** policy for Mem.z. The MEM_Term flag tells us whether or not the
-** string is \000 or \u0000 terminated
-*/
-#define MEM_Term 0x0200 /* String in Mem.z is zero terminated */
-#define MEM_Dyn 0x0400 /* Need to call Mem.xDel() on Mem.z */
-#define MEM_Static 0x0800 /* Mem.z points to a static string */
-#define MEM_Ephem 0x1000 /* Mem.z points to an ephemeral string */
-#define MEM_Agg 0x2000 /* Mem.z points to an agg function context */
-#define MEM_Zero 0x4000 /* Mem.i contains count of 0s appended to blob */
-#define MEM_Subtype 0x8000 /* Mem.eSubtype is valid */
-#ifdef SQLITE_OMIT_INCRBLOB
- #undef MEM_Zero
- #define MEM_Zero 0x0000
-#endif
-
-/* Return TRUE if Mem X contains dynamically allocated content - anything
-** that needs to be deallocated to avoid a leak.
-*/
-#define VdbeMemDynamic(X) \
- (((X)->flags&(MEM_Agg|MEM_Dyn))!=0)
-
-/*
-** Clear any existing type flags from a Mem and replace them with f
-*/
-#define MemSetTypeFlag(p, f) \
- ((p)->flags = ((p)->flags&~(MEM_TypeMask|MEM_Zero))|f)
-
-/*
-** Return true if a memory cell is not marked as invalid. This macro
-** is for use inside assert() statements only.
-*/
-#ifdef SQLITE_DEBUG
-#define memIsValid(M) ((M)->flags & MEM_Undefined)==0
-#endif
-
-/*
-** Each auxiliary data pointer stored by a user defined function
-** implementation calling sqlite3_set_auxdata() is stored in an instance
-** of this structure. All such structures associated with a single VM
-** are stored in a linked list headed at Vdbe.pAuxData. All are destroyed
-** when the VM is halted (if not before).
-*/
-struct AuxData {
- int iAuxOp; /* Instruction number of OP_Function opcode */
- int iAuxArg; /* Index of function argument. */
- void *pAux; /* Aux data pointer */
- void (*xDeleteAux)(void*); /* Destructor for the aux data */
- AuxData *pNextAux; /* Next element in list */
-};
-
-/*
-** The "context" argument for an installable function. A pointer to an
-** instance of this structure is the first argument to the routines used
-** implement the SQL functions.
-**
-** There is a typedef for this structure in sqlite.h. So all routines,
-** even the public interface to SQLite, can use a pointer to this structure.
-** But this file is the only place where the internal details of this
-** structure are known.
-**
-** This structure is defined inside of vdbeInt.h because it uses substructures
-** (Mem) which are only defined there.
-*/
-struct sqlite3_context {
- Mem *pOut; /* The return value is stored here */
- FuncDef *pFunc; /* Pointer to function information */
- Mem *pMem; /* Memory cell used to store aggregate context */
- Vdbe *pVdbe; /* The VM that owns this context */
- int iOp; /* Instruction number of OP_Function */
- int isError; /* Error code returned by the function. */
- u8 skipFlag; /* Skip accumulator loading if true */
- u8 argc; /* Number of arguments */
- sqlite3_value *argv[1]; /* Argument set */
-};
-
-/* A bitfield type for use inside of structures. Always follow with :N where
-** N is the number of bits.
-*/
-typedef unsigned bft; /* Bit Field Type */
-
-typedef struct ScanStatus ScanStatus;
-struct ScanStatus {
- int addrExplain; /* OP_Explain for loop */
- int addrLoop; /* Address of "loops" counter */
- int addrVisit; /* Address of "rows visited" counter */
- int iSelectID; /* The "Select-ID" for this loop */
- LogEst nEst; /* Estimated output rows per loop */
- char *zName; /* Name of table or index */
-};
-
-/*
-** An instance of the virtual machine. This structure contains the complete
-** state of the virtual machine.
-**
-** The "sqlite3_stmt" structure pointer that is returned by sqlite3_prepare()
-** is really a pointer to an instance of this structure.
-*/
-struct Vdbe {
- sqlite3 *db; /* The database connection that owns this statement */
- Vdbe *pPrev,*pNext; /* Linked list of VDBEs with the same Vdbe.db */
- Parse *pParse; /* Parsing context used to create this Vdbe */
- ynVar nVar; /* Number of entries in aVar[] */
- u32 magic; /* Magic number for sanity checking */
- int nMem; /* Number of memory locations currently allocated */
- int nCursor; /* Number of slots in apCsr[] */
- u32 cacheCtr; /* VdbeCursor row cache generation counter */
- int pc; /* The program counter */
- int rc; /* Value to return */
- int nChange; /* Number of db changes made since last reset */
- int iStatement; /* Statement number (or 0 if has not opened stmt) */
- i64 iCurrentTime; /* Value of julianday('now') for this statement */
- i64 nFkConstraint; /* Number of imm. FK constraints this VM */
- i64 nStmtDefCons; /* Number of def. constraints when stmt started */
- i64 nStmtDefImmCons; /* Number of def. imm constraints when stmt started */
-
- /* When allocating a new Vdbe object, all of the fields below should be
- ** initialized to zero or NULL */
-
- Op *aOp; /* Space to hold the virtual machine's program */
- Mem *aMem; /* The memory locations */
- Mem **apArg; /* Arguments to currently executing user function */
- Mem *aColName; /* Column names to return */
- Mem *pResultSet; /* Pointer to an array of results */
- char *zErrMsg; /* Error message written here */
- VdbeCursor **apCsr; /* One element of this array for each open cursor */
- Mem *aVar; /* Values for the OP_Variable opcode. */
- VList *pVList; /* Name of variables */
-#ifndef SQLITE_OMIT_TRACE
- i64 startTime; /* Time when query started - used for profiling */
-#endif
- int nOp; /* Number of instructions in the program */
-#ifdef SQLITE_DEBUG
- int rcApp; /* errcode set by sqlite3_result_error_code() */
- u32 nWrite; /* Number of write operations that have occurred */
-#endif
- u16 nResColumn; /* Number of columns in one row of the result set */
- u8 errorAction; /* Recovery action to do in case of an error */
- u8 minWriteFileFormat; /* Minimum file format for writable database files */
- u8 prepFlags; /* SQLITE_PREPARE_* flags */
- bft expired:2; /* 1: recompile VM immediately 2: when convenient */
- bft explain:2; /* True if EXPLAIN present on SQL command */
- bft doingRerun:1; /* True if rerunning after an auto-reprepare */
- bft changeCntOn:1; /* True to update the change-counter */
- bft runOnlyOnce:1; /* Automatically expire on reset */
- bft usesStmtJournal:1; /* True if uses a statement journal */
- bft readOnly:1; /* True for statements that do not write */
- bft bIsReader:1; /* True for statements that read */
- yDbMask btreeMask; /* Bitmask of db->aDb[] entries referenced */
- yDbMask lockMask; /* Subset of btreeMask that requires a lock */
- u32 aCounter[7]; /* Counters used by sqlite3_stmt_status() */
- char *zSql; /* Text of the SQL statement that generated this */
- void *pFree; /* Free this when deleting the vdbe */
- VdbeFrame *pFrame; /* Parent frame */
- VdbeFrame *pDelFrame; /* List of frame objects to free on VM reset */
- int nFrame; /* Number of frames in pFrame list */
- u32 expmask; /* Binding to these vars invalidates VM */
- SubProgram *pProgram; /* Linked list of all sub-programs used by VM */
- AuxData *pAuxData; /* Linked list of auxdata allocations */
-#ifdef SQLITE_ENABLE_STMT_SCANSTATUS
- i64 *anExec; /* Number of times each op has been executed */
- int nScan; /* Entries in aScan[] */
- ScanStatus *aScan; /* Scan definitions for sqlite3_stmt_scanstatus() */
-#endif
-};
-
-/*
-** The following are allowed values for Vdbe.magic
-*/
-#define VDBE_MAGIC_INIT 0x16bceaa5 /* Building a VDBE program */
-#define VDBE_MAGIC_RUN 0x2df20da3 /* VDBE is ready to execute */
-#define VDBE_MAGIC_HALT 0x319c2973 /* VDBE has completed execution */
-#define VDBE_MAGIC_RESET 0x48fa9f76 /* Reset and ready to run again */
-#define VDBE_MAGIC_DEAD 0x5606c3c8 /* The VDBE has been deallocated */
-
-/*
-** Structure used to store the context required by the
-** sqlite3_preupdate_*() API functions.
-*/
-struct PreUpdate {
- Vdbe *v;
- VdbeCursor *pCsr; /* Cursor to read old values from */
- int op; /* One of SQLITE_INSERT, UPDATE, DELETE */
- u8 *aRecord; /* old.* database record */
- KeyInfo keyinfo;
- UnpackedRecord *pUnpacked; /* Unpacked version of aRecord[] */
- UnpackedRecord *pNewUnpacked; /* Unpacked version of new.* record */
- int iNewReg; /* Register for new.* values */
- i64 iKey1; /* First key value passed to hook */
- i64 iKey2; /* Second key value passed to hook */
- Mem *aNew; /* Array of new.* values */
- Table *pTab; /* Schema object being upated */
- Index *pPk; /* PK index if pTab is WITHOUT ROWID */
-};
-
-/*
-** Function prototypes
-*/
-SQLITE_PRIVATE void sqlite3VdbeError(Vdbe*, const char *, ...);
-SQLITE_PRIVATE void sqlite3VdbeFreeCursor(Vdbe *, VdbeCursor*);
-void sqliteVdbePopStack(Vdbe*,int);
-SQLITE_PRIVATE int sqlite3VdbeCursorMoveto(VdbeCursor**, int*);
-SQLITE_PRIVATE int sqlite3VdbeCursorRestore(VdbeCursor*);
-SQLITE_PRIVATE u32 sqlite3VdbeSerialTypeLen(u32);
-SQLITE_PRIVATE u8 sqlite3VdbeOneByteSerialTypeLen(u8);
-SQLITE_PRIVATE u32 sqlite3VdbeSerialType(Mem*, int, u32*);
-SQLITE_PRIVATE u32 sqlite3VdbeSerialPut(unsigned char*, Mem*, u32);
-SQLITE_PRIVATE u32 sqlite3VdbeSerialGet(const unsigned char*, u32, Mem*);
-SQLITE_PRIVATE void sqlite3VdbeDeleteAuxData(sqlite3*, AuxData**, int, int);
-
-int sqlite2BtreeKeyCompare(BtCursor *, const void *, int, int, int *);
-SQLITE_PRIVATE int sqlite3VdbeIdxKeyCompare(sqlite3*,VdbeCursor*,UnpackedRecord*,int*);
-SQLITE_PRIVATE int sqlite3VdbeIdxRowid(sqlite3*, BtCursor*, i64*);
-SQLITE_PRIVATE int sqlite3VdbeExec(Vdbe*);
-SQLITE_PRIVATE int sqlite3VdbeList(Vdbe*);
-SQLITE_PRIVATE int sqlite3VdbeHalt(Vdbe*);
-SQLITE_PRIVATE int sqlite3VdbeChangeEncoding(Mem *, int);
-SQLITE_PRIVATE int sqlite3VdbeMemTooBig(Mem*);
-SQLITE_PRIVATE int sqlite3VdbeMemCopy(Mem*, const Mem*);
-SQLITE_PRIVATE void sqlite3VdbeMemShallowCopy(Mem*, const Mem*, int);
-SQLITE_PRIVATE void sqlite3VdbeMemMove(Mem*, Mem*);
-SQLITE_PRIVATE int sqlite3VdbeMemNulTerminate(Mem*);
-SQLITE_PRIVATE int sqlite3VdbeMemSetStr(Mem*, const char*, int, u8, void(*)(void*));
-SQLITE_PRIVATE void sqlite3VdbeMemSetInt64(Mem*, i64);
-#ifdef SQLITE_OMIT_FLOATING_POINT
-# define sqlite3VdbeMemSetDouble sqlite3VdbeMemSetInt64
-#else
-SQLITE_PRIVATE void sqlite3VdbeMemSetDouble(Mem*, double);
-#endif
-SQLITE_PRIVATE void sqlite3VdbeMemSetPointer(Mem*, void*, const char*, void(*)(void*));
-SQLITE_PRIVATE void sqlite3VdbeMemInit(Mem*,sqlite3*,u16);
-SQLITE_PRIVATE void sqlite3VdbeMemSetNull(Mem*);
-SQLITE_PRIVATE void sqlite3VdbeMemSetZeroBlob(Mem*,int);
-#ifdef SQLITE_DEBUG
-SQLITE_PRIVATE int sqlite3VdbeMemIsRowSet(const Mem*);
-#endif
-SQLITE_PRIVATE int sqlite3VdbeMemSetRowSet(Mem*);
-SQLITE_PRIVATE int sqlite3VdbeMemMakeWriteable(Mem*);
-SQLITE_PRIVATE int sqlite3VdbeMemStringify(Mem*, u8, u8);
-SQLITE_PRIVATE i64 sqlite3VdbeIntValue(Mem*);
-SQLITE_PRIVATE int sqlite3VdbeMemIntegerify(Mem*);
-SQLITE_PRIVATE double sqlite3VdbeRealValue(Mem*);
-SQLITE_PRIVATE int sqlite3VdbeBooleanValue(Mem*, int ifNull);
-SQLITE_PRIVATE void sqlite3VdbeIntegerAffinity(Mem*);
-SQLITE_PRIVATE int sqlite3VdbeMemRealify(Mem*);
-SQLITE_PRIVATE int sqlite3VdbeMemNumerify(Mem*);
-SQLITE_PRIVATE void sqlite3VdbeMemCast(Mem*,u8,u8);
-SQLITE_PRIVATE int sqlite3VdbeMemFromBtree(BtCursor*,u32,u32,Mem*);
-SQLITE_PRIVATE void sqlite3VdbeMemRelease(Mem *p);
-SQLITE_PRIVATE int sqlite3VdbeMemFinalize(Mem*, FuncDef*);
-#ifndef SQLITE_OMIT_WINDOWFUNC
-SQLITE_PRIVATE int sqlite3VdbeMemAggValue(Mem*, Mem*, FuncDef*);
-#endif
-SQLITE_PRIVATE const char *sqlite3OpcodeName(int);
-SQLITE_PRIVATE int sqlite3VdbeMemGrow(Mem *pMem, int n, int preserve);
-SQLITE_PRIVATE int sqlite3VdbeMemClearAndResize(Mem *pMem, int n);
-SQLITE_PRIVATE int sqlite3VdbeCloseStatement(Vdbe *, int);
-#ifdef SQLITE_DEBUG
-SQLITE_PRIVATE int sqlite3VdbeFrameIsValid(VdbeFrame*);
-#endif
-SQLITE_PRIVATE void sqlite3VdbeFrameMemDel(void*); /* Destructor on Mem */
-SQLITE_PRIVATE void sqlite3VdbeFrameDelete(VdbeFrame*); /* Actually deletes the Frame */
-SQLITE_PRIVATE int sqlite3VdbeFrameRestore(VdbeFrame *);
-#ifdef SQLITE_ENABLE_PREUPDATE_HOOK
-SQLITE_PRIVATE void sqlite3VdbePreUpdateHook(Vdbe*,VdbeCursor*,int,const char*,Table*,i64,int);
-#endif
-SQLITE_PRIVATE int sqlite3VdbeTransferError(Vdbe *p);
-
-SQLITE_PRIVATE int sqlite3VdbeSorterInit(sqlite3 *, int, VdbeCursor *);
-SQLITE_PRIVATE void sqlite3VdbeSorterReset(sqlite3 *, VdbeSorter *);
-SQLITE_PRIVATE void sqlite3VdbeSorterClose(sqlite3 *, VdbeCursor *);
-SQLITE_PRIVATE int sqlite3VdbeSorterRowkey(const VdbeCursor *, Mem *);
-SQLITE_PRIVATE int sqlite3VdbeSorterNext(sqlite3 *, const VdbeCursor *);
-SQLITE_PRIVATE int sqlite3VdbeSorterRewind(const VdbeCursor *, int *);
-SQLITE_PRIVATE int sqlite3VdbeSorterWrite(const VdbeCursor *, Mem *);
-SQLITE_PRIVATE int sqlite3VdbeSorterCompare(const VdbeCursor *, Mem *, int, int *);
-
-#ifdef SQLITE_DEBUG
-SQLITE_PRIVATE void sqlite3VdbeIncrWriteCounter(Vdbe*, VdbeCursor*);
-SQLITE_PRIVATE void sqlite3VdbeAssertAbortable(Vdbe*);
-#else
-# define sqlite3VdbeIncrWriteCounter(V,C)
-# define sqlite3VdbeAssertAbortable(V)
-#endif
-
-#if !defined(SQLITE_OMIT_SHARED_CACHE)
-SQLITE_PRIVATE void sqlite3VdbeEnter(Vdbe*);
-#else
-# define sqlite3VdbeEnter(X)
-#endif
-
-#if !defined(SQLITE_OMIT_SHARED_CACHE) && SQLITE_THREADSAFE>0
-SQLITE_PRIVATE void sqlite3VdbeLeave(Vdbe*);
-#else
-# define sqlite3VdbeLeave(X)
-#endif
-
-#ifdef SQLITE_DEBUG
-SQLITE_PRIVATE void sqlite3VdbeMemAboutToChange(Vdbe*,Mem*);
-SQLITE_PRIVATE int sqlite3VdbeCheckMemInvariants(Mem*);
-#endif
-
-#ifndef SQLITE_OMIT_FOREIGN_KEY
-SQLITE_PRIVATE int sqlite3VdbeCheckFk(Vdbe *, int);
-#else
-# define sqlite3VdbeCheckFk(p,i) 0
-#endif
-
-#ifdef SQLITE_DEBUG
-SQLITE_PRIVATE void sqlite3VdbePrintSql(Vdbe*);
-SQLITE_PRIVATE void sqlite3VdbeMemPrettyPrint(Mem *pMem, char *zBuf);
-#endif
-#ifndef SQLITE_OMIT_UTF16
-SQLITE_PRIVATE int sqlite3VdbeMemTranslate(Mem*, u8);
-SQLITE_PRIVATE int sqlite3VdbeMemHandleBom(Mem *pMem);
-#endif
-
-#ifndef SQLITE_OMIT_INCRBLOB
-SQLITE_PRIVATE int sqlite3VdbeMemExpandBlob(Mem *);
- #define ExpandBlob(P) (((P)->flags&MEM_Zero)?sqlite3VdbeMemExpandBlob(P):0)
-#else
- #define sqlite3VdbeMemExpandBlob(x) SQLITE_OK
- #define ExpandBlob(P) SQLITE_OK
-#endif
-
-#endif /* !defined(SQLITE_VDBEINT_H) */
-
-/************** End of vdbeInt.h *********************************************/
-/************** Continuing where we left off in status.c *********************/
-
-/*
-** Variables in which to record status information.
-*/
-#if SQLITE_PTRSIZE>4
-typedef sqlite3_int64 sqlite3StatValueType;
-#else
-typedef u32 sqlite3StatValueType;
-#endif
-typedef struct sqlite3StatType sqlite3StatType;
-static SQLITE_WSD struct sqlite3StatType {
- sqlite3StatValueType nowValue[10]; /* Current value */
- sqlite3StatValueType mxValue[10]; /* Maximum value */
-} sqlite3Stat = { {0,}, {0,} };
-
-/*
-** Elements of sqlite3Stat[] are protected by either the memory allocator
-** mutex, or by the pcache1 mutex. The following array determines which.
-*/
-static const char statMutex[] = {
- 0, /* SQLITE_STATUS_MEMORY_USED */
- 1, /* SQLITE_STATUS_PAGECACHE_USED */
- 1, /* SQLITE_STATUS_PAGECACHE_OVERFLOW */
- 0, /* SQLITE_STATUS_SCRATCH_USED */
- 0, /* SQLITE_STATUS_SCRATCH_OVERFLOW */
- 0, /* SQLITE_STATUS_MALLOC_SIZE */
- 0, /* SQLITE_STATUS_PARSER_STACK */
- 1, /* SQLITE_STATUS_PAGECACHE_SIZE */
- 0, /* SQLITE_STATUS_SCRATCH_SIZE */
- 0, /* SQLITE_STATUS_MALLOC_COUNT */
-};
-
-
-/* The "wsdStat" macro will resolve to the status information
-** state vector. If writable static data is unsupported on the target,
-** we have to locate the state vector at run-time. In the more common
-** case where writable static data is supported, wsdStat can refer directly
-** to the "sqlite3Stat" state vector declared above.
-*/
-#ifdef SQLITE_OMIT_WSD
-# define wsdStatInit sqlite3StatType *x = &GLOBAL(sqlite3StatType,sqlite3Stat)
-# define wsdStat x[0]
-#else
-# define wsdStatInit
-# define wsdStat sqlite3Stat
-#endif
-
-/*
-** Return the current value of a status parameter. The caller must
-** be holding the appropriate mutex.
-*/
-SQLITE_PRIVATE sqlite3_int64 sqlite3StatusValue(int op){
- wsdStatInit;
- assert( op>=0 && op=0 && op=0 && op=0 && opwsdStat.mxValue[op] ){
- wsdStat.mxValue[op] = wsdStat.nowValue[op];
- }
-}
-SQLITE_PRIVATE void sqlite3StatusDown(int op, int N){
- wsdStatInit;
- assert( N>=0 );
- assert( op>=0 && op=0 && op=0 );
- newValue = (sqlite3StatValueType)X;
- assert( op>=0 && op=0 && opwsdStat.mxValue[op] ){
- wsdStat.mxValue[op] = newValue;
- }
-}
-
-/*
-** Query status information.
-*/
-SQLITE_API int sqlite3_status64(
- int op,
- sqlite3_int64 *pCurrent,
- sqlite3_int64 *pHighwater,
- int resetFlag
-){
- sqlite3_mutex *pMutex;
- wsdStatInit;
- if( op<0 || op>=ArraySize(wsdStat.nowValue) ){
- return SQLITE_MISUSE_BKPT;
- }
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( pCurrent==0 || pHighwater==0 ) return SQLITE_MISUSE_BKPT;
-#endif
- pMutex = statMutex[op] ? sqlite3Pcache1Mutex() : sqlite3MallocMutex();
- sqlite3_mutex_enter(pMutex);
- *pCurrent = wsdStat.nowValue[op];
- *pHighwater = wsdStat.mxValue[op];
- if( resetFlag ){
- wsdStat.mxValue[op] = wsdStat.nowValue[op];
- }
- sqlite3_mutex_leave(pMutex);
- (void)pMutex; /* Prevent warning when SQLITE_THREADSAFE=0 */
- return SQLITE_OK;
-}
-SQLITE_API int sqlite3_status(int op, int *pCurrent, int *pHighwater, int resetFlag){
- sqlite3_int64 iCur = 0, iHwtr = 0;
- int rc;
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( pCurrent==0 || pHighwater==0 ) return SQLITE_MISUSE_BKPT;
-#endif
- rc = sqlite3_status64(op, &iCur, &iHwtr, resetFlag);
- if( rc==0 ){
- *pCurrent = (int)iCur;
- *pHighwater = (int)iHwtr;
- }
- return rc;
-}
-
-/*
-** Return the number of LookasideSlot elements on the linked list
-*/
-static u32 countLookasideSlots(LookasideSlot *p){
- u32 cnt = 0;
- while( p ){
- p = p->pNext;
- cnt++;
- }
- return cnt;
-}
-
-/*
-** Count the number of slots of lookaside memory that are outstanding
-*/
-SQLITE_PRIVATE int sqlite3LookasideUsed(sqlite3 *db, int *pHighwater){
- u32 nInit = countLookasideSlots(db->lookaside.pInit);
- u32 nFree = countLookasideSlots(db->lookaside.pFree);
- if( pHighwater ) *pHighwater = db->lookaside.nSlot - nInit;
- return db->lookaside.nSlot - (nInit+nFree);
-}
-
-/*
-** Query status information for a single database connection
-*/
-SQLITE_API int sqlite3_db_status(
- sqlite3 *db, /* The database connection whose status is desired */
- int op, /* Status verb */
- int *pCurrent, /* Write current value here */
- int *pHighwater, /* Write high-water mark here */
- int resetFlag /* Reset high-water mark if true */
-){
- int rc = SQLITE_OK; /* Return code */
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( !sqlite3SafetyCheckOk(db) || pCurrent==0|| pHighwater==0 ){
- return SQLITE_MISUSE_BKPT;
- }
-#endif
- sqlite3_mutex_enter(db->mutex);
- switch( op ){
- case SQLITE_DBSTATUS_LOOKASIDE_USED: {
- *pCurrent = sqlite3LookasideUsed(db, pHighwater);
- if( resetFlag ){
- LookasideSlot *p = db->lookaside.pFree;
- if( p ){
- while( p->pNext ) p = p->pNext;
- p->pNext = db->lookaside.pInit;
- db->lookaside.pInit = db->lookaside.pFree;
- db->lookaside.pFree = 0;
- }
- }
- break;
- }
-
- case SQLITE_DBSTATUS_LOOKASIDE_HIT:
- case SQLITE_DBSTATUS_LOOKASIDE_MISS_SIZE:
- case SQLITE_DBSTATUS_LOOKASIDE_MISS_FULL: {
- testcase( op==SQLITE_DBSTATUS_LOOKASIDE_HIT );
- testcase( op==SQLITE_DBSTATUS_LOOKASIDE_MISS_SIZE );
- testcase( op==SQLITE_DBSTATUS_LOOKASIDE_MISS_FULL );
- assert( (op-SQLITE_DBSTATUS_LOOKASIDE_HIT)>=0 );
- assert( (op-SQLITE_DBSTATUS_LOOKASIDE_HIT)<3 );
- *pCurrent = 0;
- *pHighwater = db->lookaside.anStat[op - SQLITE_DBSTATUS_LOOKASIDE_HIT];
- if( resetFlag ){
- db->lookaside.anStat[op - SQLITE_DBSTATUS_LOOKASIDE_HIT] = 0;
- }
- break;
- }
-
- /*
- ** Return an approximation for the amount of memory currently used
- ** by all pagers associated with the given database connection. The
- ** highwater mark is meaningless and is returned as zero.
- */
- case SQLITE_DBSTATUS_CACHE_USED_SHARED:
- case SQLITE_DBSTATUS_CACHE_USED: {
- int totalUsed = 0;
- int i;
- sqlite3BtreeEnterAll(db);
- for(i=0; inDb; i++){
- Btree *pBt = db->aDb[i].pBt;
- if( pBt ){
- Pager *pPager = sqlite3BtreePager(pBt);
- int nByte = sqlite3PagerMemUsed(pPager);
- if( op==SQLITE_DBSTATUS_CACHE_USED_SHARED ){
- nByte = nByte / sqlite3BtreeConnectionCount(pBt);
- }
- totalUsed += nByte;
- }
- }
- sqlite3BtreeLeaveAll(db);
- *pCurrent = totalUsed;
- *pHighwater = 0;
- break;
- }
-
- /*
- ** *pCurrent gets an accurate estimate of the amount of memory used
- ** to store the schema for all databases (main, temp, and any ATTACHed
- ** databases. *pHighwater is set to zero.
- */
- case SQLITE_DBSTATUS_SCHEMA_USED: {
- int i; /* Used to iterate through schemas */
- int nByte = 0; /* Used to accumulate return value */
-
- sqlite3BtreeEnterAll(db);
- db->pnBytesFreed = &nByte;
- for(i=0; inDb; i++){
- Schema *pSchema = db->aDb[i].pSchema;
- if( ALWAYS(pSchema!=0) ){
- HashElem *p;
-
- nByte += sqlite3GlobalConfig.m.xRoundup(sizeof(HashElem)) * (
- pSchema->tblHash.count
- + pSchema->trigHash.count
- + pSchema->idxHash.count
- + pSchema->fkeyHash.count
- );
- nByte += sqlite3_msize(pSchema->tblHash.ht);
- nByte += sqlite3_msize(pSchema->trigHash.ht);
- nByte += sqlite3_msize(pSchema->idxHash.ht);
- nByte += sqlite3_msize(pSchema->fkeyHash.ht);
-
- for(p=sqliteHashFirst(&pSchema->trigHash); p; p=sqliteHashNext(p)){
- sqlite3DeleteTrigger(db, (Trigger*)sqliteHashData(p));
- }
- for(p=sqliteHashFirst(&pSchema->tblHash); p; p=sqliteHashNext(p)){
- sqlite3DeleteTable(db, (Table *)sqliteHashData(p));
- }
- }
- }
- db->pnBytesFreed = 0;
- sqlite3BtreeLeaveAll(db);
-
- *pHighwater = 0;
- *pCurrent = nByte;
- break;
- }
-
- /*
- ** *pCurrent gets an accurate estimate of the amount of memory used
- ** to store all prepared statements.
- ** *pHighwater is set to zero.
- */
- case SQLITE_DBSTATUS_STMT_USED: {
- struct Vdbe *pVdbe; /* Used to iterate through VMs */
- int nByte = 0; /* Used to accumulate return value */
-
- db->pnBytesFreed = &nByte;
- for(pVdbe=db->pVdbe; pVdbe; pVdbe=pVdbe->pNext){
- sqlite3VdbeClearObject(db, pVdbe);
- sqlite3DbFree(db, pVdbe);
- }
- db->pnBytesFreed = 0;
-
- *pHighwater = 0; /* IMP: R-64479-57858 */
- *pCurrent = nByte;
-
- break;
- }
-
- /*
- ** Set *pCurrent to the total cache hits or misses encountered by all
- ** pagers the database handle is connected to. *pHighwater is always set
- ** to zero.
- */
- case SQLITE_DBSTATUS_CACHE_SPILL:
- op = SQLITE_DBSTATUS_CACHE_WRITE+1;
- /* Fall through into the next case */
- case SQLITE_DBSTATUS_CACHE_HIT:
- case SQLITE_DBSTATUS_CACHE_MISS:
- case SQLITE_DBSTATUS_CACHE_WRITE:{
- int i;
- int nRet = 0;
- assert( SQLITE_DBSTATUS_CACHE_MISS==SQLITE_DBSTATUS_CACHE_HIT+1 );
- assert( SQLITE_DBSTATUS_CACHE_WRITE==SQLITE_DBSTATUS_CACHE_HIT+2 );
-
- for(i=0; inDb; i++){
- if( db->aDb[i].pBt ){
- Pager *pPager = sqlite3BtreePager(db->aDb[i].pBt);
- sqlite3PagerCacheStat(pPager, op, resetFlag, &nRet);
- }
- }
- *pHighwater = 0; /* IMP: R-42420-56072 */
- /* IMP: R-54100-20147 */
- /* IMP: R-29431-39229 */
- *pCurrent = nRet;
- break;
- }
-
- /* Set *pCurrent to non-zero if there are unresolved deferred foreign
- ** key constraints. Set *pCurrent to zero if all foreign key constraints
- ** have been satisfied. The *pHighwater is always set to zero.
- */
- case SQLITE_DBSTATUS_DEFERRED_FKS: {
- *pHighwater = 0; /* IMP: R-11967-56545 */
- *pCurrent = db->nDeferredImmCons>0 || db->nDeferredCons>0;
- break;
- }
-
- default: {
- rc = SQLITE_ERROR;
- }
- }
- sqlite3_mutex_leave(db->mutex);
- return rc;
-}
-
-/************** End of status.c **********************************************/
-/************** Begin file date.c ********************************************/
-/*
-** 2003 October 31
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** This file contains the C functions that implement date and time
-** functions for SQLite.
-**
-** There is only one exported symbol in this file - the function
-** sqlite3RegisterDateTimeFunctions() found at the bottom of the file.
-** All other code has file scope.
-**
-** SQLite processes all times and dates as julian day numbers. The
-** dates and times are stored as the number of days since noon
-** in Greenwich on November 24, 4714 B.C. according to the Gregorian
-** calendar system.
-**
-** 1970-01-01 00:00:00 is JD 2440587.5
-** 2000-01-01 00:00:00 is JD 2451544.5
-**
-** This implementation requires years to be expressed as a 4-digit number
-** which means that only dates between 0000-01-01 and 9999-12-31 can
-** be represented, even though julian day numbers allow a much wider
-** range of dates.
-**
-** The Gregorian calendar system is used for all dates and times,
-** even those that predate the Gregorian calendar. Historians usually
-** use the julian calendar for dates prior to 1582-10-15 and for some
-** dates afterwards, depending on locale. Beware of this difference.
-**
-** The conversion algorithms are implemented based on descriptions
-** in the following text:
-**
-** Jean Meeus
-** Astronomical Algorithms, 2nd Edition, 1998
-** ISBN 0-943396-61-1
-** Willmann-Bell, Inc
-** Richmond, Virginia (USA)
-*/
-/* #include "sqliteInt.h" */
-/* #include */
-/* #include */
-#include
-
-#ifndef SQLITE_OMIT_DATETIME_FUNCS
-
-/*
-** The MSVC CRT on Windows CE may not have a localtime() function.
-** So declare a substitute. The substitute function itself is
-** defined in "os_win.c".
-*/
-#if !defined(SQLITE_OMIT_LOCALTIME) && defined(_WIN32_WCE) && \
- (!defined(SQLITE_MSVC_LOCALTIME_API) || !SQLITE_MSVC_LOCALTIME_API)
-struct tm *__cdecl localtime(const time_t *);
-#endif
-
-/*
-** A structure for holding a single date and time.
-*/
-typedef struct DateTime DateTime;
-struct DateTime {
- sqlite3_int64 iJD; /* The julian day number times 86400000 */
- int Y, M, D; /* Year, month, and day */
- int h, m; /* Hour and minutes */
- int tz; /* Timezone offset in minutes */
- double s; /* Seconds */
- char validJD; /* True (1) if iJD is valid */
- char rawS; /* Raw numeric value stored in s */
- char validYMD; /* True (1) if Y,M,D are valid */
- char validHMS; /* True (1) if h,m,s are valid */
- char validTZ; /* True (1) if tz is valid */
- char tzSet; /* Timezone was set explicitly */
- char isError; /* An overflow has occurred */
-};
-
-
-/*
-** Convert zDate into one or more integers according to the conversion
-** specifier zFormat.
-**
-** zFormat[] contains 4 characters for each integer converted, except for
-** the last integer which is specified by three characters. The meaning
-** of a four-character format specifiers ABCD is:
-**
-** A: number of digits to convert. Always "2" or "4".
-** B: minimum value. Always "0" or "1".
-** C: maximum value, decoded as:
-** a: 12
-** b: 14
-** c: 24
-** d: 31
-** e: 59
-** f: 9999
-** D: the separator character, or \000 to indicate this is the
-** last number to convert.
-**
-** Example: To translate an ISO-8601 date YYYY-MM-DD, the format would
-** be "40f-21a-20c". The "40f-" indicates the 4-digit year followed by "-".
-** The "21a-" indicates the 2-digit month followed by "-". The "20c" indicates
-** the 2-digit day which is the last integer in the set.
-**
-** The function returns the number of successful conversions.
-*/
-static int getDigits(const char *zDate, const char *zFormat, ...){
- /* The aMx[] array translates the 3rd character of each format
- ** spec into a max size: a b c d e f */
- static const u16 aMx[] = { 12, 14, 24, 31, 59, 9999 };
- va_list ap;
- int cnt = 0;
- char nextC;
- va_start(ap, zFormat);
- do{
- char N = zFormat[0] - '0';
- char min = zFormat[1] - '0';
- int val = 0;
- u16 max;
-
- assert( zFormat[2]>='a' && zFormat[2]<='f' );
- max = aMx[zFormat[2] - 'a'];
- nextC = zFormat[3];
- val = 0;
- while( N-- ){
- if( !sqlite3Isdigit(*zDate) ){
- goto end_getDigits;
- }
- val = val*10 + *zDate - '0';
- zDate++;
- }
- if( val<(int)min || val>(int)max || (nextC!=0 && nextC!=*zDate) ){
- goto end_getDigits;
- }
- *va_arg(ap,int*) = val;
- zDate++;
- cnt++;
- zFormat += 4;
- }while( nextC );
-end_getDigits:
- va_end(ap);
- return cnt;
-}
-
-/*
-** Parse a timezone extension on the end of a date-time.
-** The extension is of the form:
-**
-** (+/-)HH:MM
-**
-** Or the "zulu" notation:
-**
-** Z
-**
-** If the parse is successful, write the number of minutes
-** of change in p->tz and return 0. If a parser error occurs,
-** return non-zero.
-**
-** A missing specifier is not considered an error.
-*/
-static int parseTimezone(const char *zDate, DateTime *p){
- int sgn = 0;
- int nHr, nMn;
- int c;
- while( sqlite3Isspace(*zDate) ){ zDate++; }
- p->tz = 0;
- c = *zDate;
- if( c=='-' ){
- sgn = -1;
- }else if( c=='+' ){
- sgn = +1;
- }else if( c=='Z' || c=='z' ){
- zDate++;
- goto zulu_time;
- }else{
- return c!=0;
- }
- zDate++;
- if( getDigits(zDate, "20b:20e", &nHr, &nMn)!=2 ){
- return 1;
- }
- zDate += 5;
- p->tz = sgn*(nMn + nHr*60);
-zulu_time:
- while( sqlite3Isspace(*zDate) ){ zDate++; }
- p->tzSet = 1;
- return *zDate!=0;
-}
-
-/*
-** Parse times of the form HH:MM or HH:MM:SS or HH:MM:SS.FFFF.
-** The HH, MM, and SS must each be exactly 2 digits. The
-** fractional seconds FFFF can be one or more digits.
-**
-** Return 1 if there is a parsing error and 0 on success.
-*/
-static int parseHhMmSs(const char *zDate, DateTime *p){
- int h, m, s;
- double ms = 0.0;
- if( getDigits(zDate, "20c:20e", &h, &m)!=2 ){
- return 1;
- }
- zDate += 5;
- if( *zDate==':' ){
- zDate++;
- if( getDigits(zDate, "20e", &s)!=1 ){
- return 1;
- }
- zDate += 2;
- if( *zDate=='.' && sqlite3Isdigit(zDate[1]) ){
- double rScale = 1.0;
- zDate++;
- while( sqlite3Isdigit(*zDate) ){
- ms = ms*10.0 + *zDate - '0';
- rScale *= 10.0;
- zDate++;
- }
- ms /= rScale;
- }
- }else{
- s = 0;
- }
- p->validJD = 0;
- p->rawS = 0;
- p->validHMS = 1;
- p->h = h;
- p->m = m;
- p->s = s + ms;
- if( parseTimezone(zDate, p) ) return 1;
- p->validTZ = (p->tz!=0)?1:0;
- return 0;
-}
-
-/*
-** Put the DateTime object into its error state.
-*/
-static void datetimeError(DateTime *p){
- memset(p, 0, sizeof(*p));
- p->isError = 1;
-}
-
-/*
-** Convert from YYYY-MM-DD HH:MM:SS to julian day. We always assume
-** that the YYYY-MM-DD is according to the Gregorian calendar.
-**
-** Reference: Meeus page 61
-*/
-static void computeJD(DateTime *p){
- int Y, M, D, A, B, X1, X2;
-
- if( p->validJD ) return;
- if( p->validYMD ){
- Y = p->Y;
- M = p->M;
- D = p->D;
- }else{
- Y = 2000; /* If no YMD specified, assume 2000-Jan-01 */
- M = 1;
- D = 1;
- }
- if( Y<-4713 || Y>9999 || p->rawS ){
- datetimeError(p);
- return;
- }
- if( M<=2 ){
- Y--;
- M += 12;
- }
- A = Y/100;
- B = 2 - A + (A/4);
- X1 = 36525*(Y+4716)/100;
- X2 = 306001*(M+1)/10000;
- p->iJD = (sqlite3_int64)((X1 + X2 + D + B - 1524.5 ) * 86400000);
- p->validJD = 1;
- if( p->validHMS ){
- p->iJD += p->h*3600000 + p->m*60000 + (sqlite3_int64)(p->s*1000);
- if( p->validTZ ){
- p->iJD -= p->tz*60000;
- p->validYMD = 0;
- p->validHMS = 0;
- p->validTZ = 0;
- }
- }
-}
-
-/*
-** Parse dates of the form
-**
-** YYYY-MM-DD HH:MM:SS.FFF
-** YYYY-MM-DD HH:MM:SS
-** YYYY-MM-DD HH:MM
-** YYYY-MM-DD
-**
-** Write the result into the DateTime structure and return 0
-** on success and 1 if the input string is not a well-formed
-** date.
-*/
-static int parseYyyyMmDd(const char *zDate, DateTime *p){
- int Y, M, D, neg;
-
- if( zDate[0]=='-' ){
- zDate++;
- neg = 1;
- }else{
- neg = 0;
- }
- if( getDigits(zDate, "40f-21a-21d", &Y, &M, &D)!=3 ){
- return 1;
- }
- zDate += 10;
- while( sqlite3Isspace(*zDate) || 'T'==*(u8*)zDate ){ zDate++; }
- if( parseHhMmSs(zDate, p)==0 ){
- /* We got the time */
- }else if( *zDate==0 ){
- p->validHMS = 0;
- }else{
- return 1;
- }
- p->validJD = 0;
- p->validYMD = 1;
- p->Y = neg ? -Y : Y;
- p->M = M;
- p->D = D;
- if( p->validTZ ){
- computeJD(p);
- }
- return 0;
-}
-
-/*
-** Set the time to the current time reported by the VFS.
-**
-** Return the number of errors.
-*/
-static int setDateTimeToCurrent(sqlite3_context *context, DateTime *p){
- p->iJD = sqlite3StmtCurrentTime(context);
- if( p->iJD>0 ){
- p->validJD = 1;
- return 0;
- }else{
- return 1;
- }
-}
-
-/*
-** Input "r" is a numeric quantity which might be a julian day number,
-** or the number of seconds since 1970. If the value if r is within
-** range of a julian day number, install it as such and set validJD.
-** If the value is a valid unix timestamp, put it in p->s and set p->rawS.
-*/
-static void setRawDateNumber(DateTime *p, double r){
- p->s = r;
- p->rawS = 1;
- if( r>=0.0 && r<5373484.5 ){
- p->iJD = (sqlite3_int64)(r*86400000.0 + 0.5);
- p->validJD = 1;
- }
-}
-
-/*
-** Attempt to parse the given string into a julian day number. Return
-** the number of errors.
-**
-** The following are acceptable forms for the input string:
-**
-** YYYY-MM-DD HH:MM:SS.FFF +/-HH:MM
-** DDDD.DD
-** now
-**
-** In the first form, the +/-HH:MM is always optional. The fractional
-** seconds extension (the ".FFF") is optional. The seconds portion
-** (":SS.FFF") is option. The year and date can be omitted as long
-** as there is a time string. The time string can be omitted as long
-** as there is a year and date.
-*/
-static int parseDateOrTime(
- sqlite3_context *context,
- const char *zDate,
- DateTime *p
-){
- double r;
- if( parseYyyyMmDd(zDate,p)==0 ){
- return 0;
- }else if( parseHhMmSs(zDate, p)==0 ){
- return 0;
- }else if( sqlite3StrICmp(zDate,"now")==0 && sqlite3NotPureFunc(context) ){
- return setDateTimeToCurrent(context, p);
- }else if( sqlite3AtoF(zDate, &r, sqlite3Strlen30(zDate), SQLITE_UTF8) ){
- setRawDateNumber(p, r);
- return 0;
- }
- return 1;
-}
-
-/* The julian day number for 9999-12-31 23:59:59.999 is 5373484.4999999.
-** Multiplying this by 86400000 gives 464269060799999 as the maximum value
-** for DateTime.iJD.
-**
-** But some older compilers (ex: gcc 4.2.1 on older Macs) cannot deal with
-** such a large integer literal, so we have to encode it.
-*/
-#define INT_464269060799999 ((((i64)0x1a640)<<32)|0x1072fdff)
-
-/*
-** Return TRUE if the given julian day number is within range.
-**
-** The input is the JulianDay times 86400000.
-*/
-static int validJulianDay(sqlite3_int64 iJD){
- return iJD>=0 && iJD<=INT_464269060799999;
-}
-
-/*
-** Compute the Year, Month, and Day from the julian day number.
-*/
-static void computeYMD(DateTime *p){
- int Z, A, B, C, D, E, X1;
- if( p->validYMD ) return;
- if( !p->validJD ){
- p->Y = 2000;
- p->M = 1;
- p->D = 1;
- }else if( !validJulianDay(p->iJD) ){
- datetimeError(p);
- return;
- }else{
- Z = (int)((p->iJD + 43200000)/86400000);
- A = (int)((Z - 1867216.25)/36524.25);
- A = Z + 1 + A - (A/4);
- B = A + 1524;
- C = (int)((B - 122.1)/365.25);
- D = (36525*(C&32767))/100;
- E = (int)((B-D)/30.6001);
- X1 = (int)(30.6001*E);
- p->D = B - D - X1;
- p->M = E<14 ? E-1 : E-13;
- p->Y = p->M>2 ? C - 4716 : C - 4715;
- }
- p->validYMD = 1;
-}
-
-/*
-** Compute the Hour, Minute, and Seconds from the julian day number.
-*/
-static void computeHMS(DateTime *p){
- int s;
- if( p->validHMS ) return;
- computeJD(p);
- s = (int)((p->iJD + 43200000) % 86400000);
- p->s = s/1000.0;
- s = (int)p->s;
- p->s -= s;
- p->h = s/3600;
- s -= p->h*3600;
- p->m = s/60;
- p->s += s - p->m*60;
- p->rawS = 0;
- p->validHMS = 1;
-}
-
-/*
-** Compute both YMD and HMS
-*/
-static void computeYMD_HMS(DateTime *p){
- computeYMD(p);
- computeHMS(p);
-}
-
-/*
-** Clear the YMD and HMS and the TZ
-*/
-static void clearYMD_HMS_TZ(DateTime *p){
- p->validYMD = 0;
- p->validHMS = 0;
- p->validTZ = 0;
-}
-
-#ifndef SQLITE_OMIT_LOCALTIME
-/*
-** On recent Windows platforms, the localtime_s() function is available
-** as part of the "Secure CRT". It is essentially equivalent to
-** localtime_r() available under most POSIX platforms, except that the
-** order of the parameters is reversed.
-**
-** See http://msdn.microsoft.com/en-us/library/a442x3ye(VS.80).aspx.
-**
-** If the user has not indicated to use localtime_r() or localtime_s()
-** already, check for an MSVC build environment that provides
-** localtime_s().
-*/
-#if !HAVE_LOCALTIME_R && !HAVE_LOCALTIME_S \
- && defined(_MSC_VER) && defined(_CRT_INSECURE_DEPRECATE)
-#undef HAVE_LOCALTIME_S
-#define HAVE_LOCALTIME_S 1
-#endif
-
-/*
-** The following routine implements the rough equivalent of localtime_r()
-** using whatever operating-system specific localtime facility that
-** is available. This routine returns 0 on success and
-** non-zero on any kind of error.
-**
-** If the sqlite3GlobalConfig.bLocaltimeFault variable is true then this
-** routine will always fail.
-**
-** EVIDENCE-OF: R-62172-00036 In this implementation, the standard C
-** library function localtime_r() is used to assist in the calculation of
-** local time.
-*/
-static int osLocaltime(time_t *t, struct tm *pTm){
- int rc;
-#if !HAVE_LOCALTIME_R && !HAVE_LOCALTIME_S
- struct tm *pX;
-#if SQLITE_THREADSAFE>0
- sqlite3_mutex *mutex = sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_MASTER);
-#endif
- sqlite3_mutex_enter(mutex);
- pX = localtime(t);
-#ifndef SQLITE_UNTESTABLE
- if( sqlite3GlobalConfig.bLocaltimeFault ) pX = 0;
-#endif
- if( pX ) *pTm = *pX;
- sqlite3_mutex_leave(mutex);
- rc = pX==0;
-#else
-#ifndef SQLITE_UNTESTABLE
- if( sqlite3GlobalConfig.bLocaltimeFault ) return 1;
-#endif
-#if HAVE_LOCALTIME_R
- rc = localtime_r(t, pTm)==0;
-#else
- rc = localtime_s(pTm, t);
-#endif /* HAVE_LOCALTIME_R */
-#endif /* HAVE_LOCALTIME_R || HAVE_LOCALTIME_S */
- return rc;
-}
-#endif /* SQLITE_OMIT_LOCALTIME */
-
-
-#ifndef SQLITE_OMIT_LOCALTIME
-/*
-** Compute the difference (in milliseconds) between localtime and UTC
-** (a.k.a. GMT) for the time value p where p is in UTC. If no error occurs,
-** return this value and set *pRc to SQLITE_OK.
-**
-** Or, if an error does occur, set *pRc to SQLITE_ERROR. The returned value
-** is undefined in this case.
-*/
-static sqlite3_int64 localtimeOffset(
- DateTime *p, /* Date at which to calculate offset */
- sqlite3_context *pCtx, /* Write error here if one occurs */
- int *pRc /* OUT: Error code. SQLITE_OK or ERROR */
-){
- DateTime x, y;
- time_t t;
- struct tm sLocal;
-
- /* Initialize the contents of sLocal to avoid a compiler warning. */
- memset(&sLocal, 0, sizeof(sLocal));
-
- x = *p;
- computeYMD_HMS(&x);
- if( x.Y<1971 || x.Y>=2038 ){
- /* EVIDENCE-OF: R-55269-29598 The localtime_r() C function normally only
- ** works for years between 1970 and 2037. For dates outside this range,
- ** SQLite attempts to map the year into an equivalent year within this
- ** range, do the calculation, then map the year back.
- */
- x.Y = 2000;
- x.M = 1;
- x.D = 1;
- x.h = 0;
- x.m = 0;
- x.s = 0.0;
- } else {
- int s = (int)(x.s + 0.5);
- x.s = s;
- }
- x.tz = 0;
- x.validJD = 0;
- computeJD(&x);
- t = (time_t)(x.iJD/1000 - 21086676*(i64)10000);
- if( osLocaltime(&t, &sLocal) ){
- sqlite3_result_error(pCtx, "local time unavailable", -1);
- *pRc = SQLITE_ERROR;
- return 0;
- }
- y.Y = sLocal.tm_year + 1900;
- y.M = sLocal.tm_mon + 1;
- y.D = sLocal.tm_mday;
- y.h = sLocal.tm_hour;
- y.m = sLocal.tm_min;
- y.s = sLocal.tm_sec;
- y.validYMD = 1;
- y.validHMS = 1;
- y.validJD = 0;
- y.rawS = 0;
- y.validTZ = 0;
- y.isError = 0;
- computeJD(&y);
- *pRc = SQLITE_OK;
- return y.iJD - x.iJD;
-}
-#endif /* SQLITE_OMIT_LOCALTIME */
-
-/*
-** The following table defines various date transformations of the form
-**
-** 'NNN days'
-**
-** Where NNN is an arbitrary floating-point number and "days" can be one
-** of several units of time.
-*/
-static const struct {
- u8 eType; /* Transformation type code */
- u8 nName; /* Length of th name */
- char *zName; /* Name of the transformation */
- double rLimit; /* Maximum NNN value for this transform */
- double rXform; /* Constant used for this transform */
-} aXformType[] = {
- { 0, 6, "second", 464269060800.0, 86400000.0/(24.0*60.0*60.0) },
- { 0, 6, "minute", 7737817680.0, 86400000.0/(24.0*60.0) },
- { 0, 4, "hour", 128963628.0, 86400000.0/24.0 },
- { 0, 3, "day", 5373485.0, 86400000.0 },
- { 1, 5, "month", 176546.0, 30.0*86400000.0 },
- { 2, 4, "year", 14713.0, 365.0*86400000.0 },
-};
-
-/*
-** Process a modifier to a date-time stamp. The modifiers are
-** as follows:
-**
-** NNN days
-** NNN hours
-** NNN minutes
-** NNN.NNNN seconds
-** NNN months
-** NNN years
-** start of month
-** start of year
-** start of week
-** start of day
-** weekday N
-** unixepoch
-** localtime
-** utc
-**
-** Return 0 on success and 1 if there is any kind of error. If the error
-** is in a system call (i.e. localtime()), then an error message is written
-** to context pCtx. If the error is an unrecognized modifier, no error is
-** written to pCtx.
-*/
-static int parseModifier(
- sqlite3_context *pCtx, /* Function context */
- const char *z, /* The text of the modifier */
- int n, /* Length of zMod in bytes */
- DateTime *p /* The date/time value to be modified */
-){
- int rc = 1;
- double r;
- switch(sqlite3UpperToLower[(u8)z[0]] ){
-#ifndef SQLITE_OMIT_LOCALTIME
- case 'l': {
- /* localtime
- **
- ** Assuming the current time value is UTC (a.k.a. GMT), shift it to
- ** show local time.
- */
- if( sqlite3_stricmp(z, "localtime")==0 && sqlite3NotPureFunc(pCtx) ){
- computeJD(p);
- p->iJD += localtimeOffset(p, pCtx, &rc);
- clearYMD_HMS_TZ(p);
- }
- break;
- }
-#endif
- case 'u': {
- /*
- ** unixepoch
- **
- ** Treat the current value of p->s as the number of
- ** seconds since 1970. Convert to a real julian day number.
- */
- if( sqlite3_stricmp(z, "unixepoch")==0 && p->rawS ){
- r = p->s*1000.0 + 210866760000000.0;
- if( r>=0.0 && r<464269060800000.0 ){
- clearYMD_HMS_TZ(p);
- p->iJD = (sqlite3_int64)r;
- p->validJD = 1;
- p->rawS = 0;
- rc = 0;
- }
- }
-#ifndef SQLITE_OMIT_LOCALTIME
- else if( sqlite3_stricmp(z, "utc")==0 && sqlite3NotPureFunc(pCtx) ){
- if( p->tzSet==0 ){
- sqlite3_int64 c1;
- computeJD(p);
- c1 = localtimeOffset(p, pCtx, &rc);
- if( rc==SQLITE_OK ){
- p->iJD -= c1;
- clearYMD_HMS_TZ(p);
- p->iJD += c1 - localtimeOffset(p, pCtx, &rc);
- }
- p->tzSet = 1;
- }else{
- rc = SQLITE_OK;
- }
- }
-#endif
- break;
- }
- case 'w': {
- /*
- ** weekday N
- **
- ** Move the date to the same time on the next occurrence of
- ** weekday N where 0==Sunday, 1==Monday, and so forth. If the
- ** date is already on the appropriate weekday, this is a no-op.
- */
- if( sqlite3_strnicmp(z, "weekday ", 8)==0
- && sqlite3AtoF(&z[8], &r, sqlite3Strlen30(&z[8]), SQLITE_UTF8)
- && (n=(int)r)==r && n>=0 && r<7 ){
- sqlite3_int64 Z;
- computeYMD_HMS(p);
- p->validTZ = 0;
- p->validJD = 0;
- computeJD(p);
- Z = ((p->iJD + 129600000)/86400000) % 7;
- if( Z>n ) Z -= 7;
- p->iJD += (n - Z)*86400000;
- clearYMD_HMS_TZ(p);
- rc = 0;
- }
- break;
- }
- case 's': {
- /*
- ** start of TTTTT
- **
- ** Move the date backwards to the beginning of the current day,
- ** or month or year.
- */
- if( sqlite3_strnicmp(z, "start of ", 9)!=0 ) break;
- if( !p->validJD && !p->validYMD && !p->validHMS ) break;
- z += 9;
- computeYMD(p);
- p->validHMS = 1;
- p->h = p->m = 0;
- p->s = 0.0;
- p->rawS = 0;
- p->validTZ = 0;
- p->validJD = 0;
- if( sqlite3_stricmp(z,"month")==0 ){
- p->D = 1;
- rc = 0;
- }else if( sqlite3_stricmp(z,"year")==0 ){
- p->M = 1;
- p->D = 1;
- rc = 0;
- }else if( sqlite3_stricmp(z,"day")==0 ){
- rc = 0;
- }
- break;
- }
- case '+':
- case '-':
- case '0':
- case '1':
- case '2':
- case '3':
- case '4':
- case '5':
- case '6':
- case '7':
- case '8':
- case '9': {
- double rRounder;
- int i;
- for(n=1; z[n] && z[n]!=':' && !sqlite3Isspace(z[n]); n++){}
- if( !sqlite3AtoF(z, &r, n, SQLITE_UTF8) ){
- rc = 1;
- break;
- }
- if( z[n]==':' ){
- /* A modifier of the form (+|-)HH:MM:SS.FFF adds (or subtracts) the
- ** specified number of hours, minutes, seconds, and fractional seconds
- ** to the time. The ".FFF" may be omitted. The ":SS.FFF" may be
- ** omitted.
- */
- const char *z2 = z;
- DateTime tx;
- sqlite3_int64 day;
- if( !sqlite3Isdigit(*z2) ) z2++;
- memset(&tx, 0, sizeof(tx));
- if( parseHhMmSs(z2, &tx) ) break;
- computeJD(&tx);
- tx.iJD -= 43200000;
- day = tx.iJD/86400000;
- tx.iJD -= day*86400000;
- if( z[0]=='-' ) tx.iJD = -tx.iJD;
- computeJD(p);
- clearYMD_HMS_TZ(p);
- p->iJD += tx.iJD;
- rc = 0;
- break;
- }
-
- /* If control reaches this point, it means the transformation is
- ** one of the forms like "+NNN days". */
- z += n;
- while( sqlite3Isspace(*z) ) z++;
- n = sqlite3Strlen30(z);
- if( n>10 || n<3 ) break;
- if( sqlite3UpperToLower[(u8)z[n-1]]=='s' ) n--;
- computeJD(p);
- rc = 1;
- rRounder = r<0 ? -0.5 : +0.5;
- for(i=0; i-aXformType[i].rLimit && rM += (int)r;
- x = p->M>0 ? (p->M-1)/12 : (p->M-12)/12;
- p->Y += x;
- p->M -= x*12;
- p->validJD = 0;
- r -= (int)r;
- break;
- }
- case 2: { /* Special processing to add years */
- int y = (int)r;
- computeYMD_HMS(p);
- p->Y += y;
- p->validJD = 0;
- r -= (int)r;
- break;
- }
- }
- computeJD(p);
- p->iJD += (sqlite3_int64)(r*aXformType[i].rXform + rRounder);
- rc = 0;
- break;
- }
- }
- clearYMD_HMS_TZ(p);
- break;
- }
- default: {
- break;
- }
- }
- return rc;
-}
-
-/*
-** Process time function arguments. argv[0] is a date-time stamp.
-** argv[1] and following are modifiers. Parse them all and write
-** the resulting time into the DateTime structure p. Return 0
-** on success and 1 if there are any errors.
-**
-** If there are zero parameters (if even argv[0] is undefined)
-** then assume a default value of "now" for argv[0].
-*/
-static int isDate(
- sqlite3_context *context,
- int argc,
- sqlite3_value **argv,
- DateTime *p
-){
- int i, n;
- const unsigned char *z;
- int eType;
- memset(p, 0, sizeof(*p));
- if( argc==0 ){
- return setDateTimeToCurrent(context, p);
- }
- if( (eType = sqlite3_value_type(argv[0]))==SQLITE_FLOAT
- || eType==SQLITE_INTEGER ){
- setRawDateNumber(p, sqlite3_value_double(argv[0]));
- }else{
- z = sqlite3_value_text(argv[0]);
- if( !z || parseDateOrTime(context, (char*)z, p) ){
- return 1;
- }
- }
- for(i=1; iisError || !validJulianDay(p->iJD) ) return 1;
- return 0;
-}
-
-
-/*
-** The following routines implement the various date and time functions
-** of SQLite.
-*/
-
-/*
-** julianday( TIMESTRING, MOD, MOD, ...)
-**
-** Return the julian day number of the date specified in the arguments
-*/
-static void juliandayFunc(
- sqlite3_context *context,
- int argc,
- sqlite3_value **argv
-){
- DateTime x;
- if( isDate(context, argc, argv, &x)==0 ){
- computeJD(&x);
- sqlite3_result_double(context, x.iJD/86400000.0);
- }
-}
-
-/*
-** datetime( TIMESTRING, MOD, MOD, ...)
-**
-** Return YYYY-MM-DD HH:MM:SS
-*/
-static void datetimeFunc(
- sqlite3_context *context,
- int argc,
- sqlite3_value **argv
-){
- DateTime x;
- if( isDate(context, argc, argv, &x)==0 ){
- char zBuf[100];
- computeYMD_HMS(&x);
- sqlite3_snprintf(sizeof(zBuf), zBuf, "%04d-%02d-%02d %02d:%02d:%02d",
- x.Y, x.M, x.D, x.h, x.m, (int)(x.s));
- sqlite3_result_text(context, zBuf, -1, SQLITE_TRANSIENT);
- }
-}
-
-/*
-** time( TIMESTRING, MOD, MOD, ...)
-**
-** Return HH:MM:SS
-*/
-static void timeFunc(
- sqlite3_context *context,
- int argc,
- sqlite3_value **argv
-){
- DateTime x;
- if( isDate(context, argc, argv, &x)==0 ){
- char zBuf[100];
- computeHMS(&x);
- sqlite3_snprintf(sizeof(zBuf), zBuf, "%02d:%02d:%02d", x.h, x.m, (int)x.s);
- sqlite3_result_text(context, zBuf, -1, SQLITE_TRANSIENT);
- }
-}
-
-/*
-** date( TIMESTRING, MOD, MOD, ...)
-**
-** Return YYYY-MM-DD
-*/
-static void dateFunc(
- sqlite3_context *context,
- int argc,
- sqlite3_value **argv
-){
- DateTime x;
- if( isDate(context, argc, argv, &x)==0 ){
- char zBuf[100];
- computeYMD(&x);
- sqlite3_snprintf(sizeof(zBuf), zBuf, "%04d-%02d-%02d", x.Y, x.M, x.D);
- sqlite3_result_text(context, zBuf, -1, SQLITE_TRANSIENT);
- }
-}
-
-/*
-** strftime( FORMAT, TIMESTRING, MOD, MOD, ...)
-**
-** Return a string described by FORMAT. Conversions as follows:
-**
-** %d day of month
-** %f ** fractional seconds SS.SSS
-** %H hour 00-24
-** %j day of year 000-366
-** %J ** julian day number
-** %m month 01-12
-** %M minute 00-59
-** %s seconds since 1970-01-01
-** %S seconds 00-59
-** %w day of week 0-6 sunday==0
-** %W week of year 00-53
-** %Y year 0000-9999
-** %% %
-*/
-static void strftimeFunc(
- sqlite3_context *context,
- int argc,
- sqlite3_value **argv
-){
- DateTime x;
- u64 n;
- size_t i,j;
- char *z;
- sqlite3 *db;
- const char *zFmt;
- char zBuf[100];
- if( argc==0 ) return;
- zFmt = (const char*)sqlite3_value_text(argv[0]);
- if( zFmt==0 || isDate(context, argc-1, argv+1, &x) ) return;
- db = sqlite3_context_db_handle(context);
- for(i=0, n=1; zFmt[i]; i++, n++){
- if( zFmt[i]=='%' ){
- switch( zFmt[i+1] ){
- case 'd':
- case 'H':
- case 'm':
- case 'M':
- case 'S':
- case 'W':
- n++;
- /* fall thru */
- case 'w':
- case '%':
- break;
- case 'f':
- n += 8;
- break;
- case 'j':
- n += 3;
- break;
- case 'Y':
- n += 8;
- break;
- case 's':
- case 'J':
- n += 50;
- break;
- default:
- return; /* ERROR. return a NULL */
- }
- i++;
- }
- }
- testcase( n==sizeof(zBuf)-1 );
- testcase( n==sizeof(zBuf) );
- testcase( n==(u64)db->aLimit[SQLITE_LIMIT_LENGTH]+1 );
- testcase( n==(u64)db->aLimit[SQLITE_LIMIT_LENGTH] );
- if( n(u64)db->aLimit[SQLITE_LIMIT_LENGTH] ){
- sqlite3_result_error_toobig(context);
- return;
- }else{
- z = sqlite3DbMallocRawNN(db, (int)n);
- if( z==0 ){
- sqlite3_result_error_nomem(context);
- return;
- }
- }
- computeJD(&x);
- computeYMD_HMS(&x);
- for(i=j=0; zFmt[i]; i++){
- if( zFmt[i]!='%' ){
- z[j++] = zFmt[i];
- }else{
- i++;
- switch( zFmt[i] ){
- case 'd': sqlite3_snprintf(3, &z[j],"%02d",x.D); j+=2; break;
- case 'f': {
- double s = x.s;
- if( s>59.999 ) s = 59.999;
- sqlite3_snprintf(7, &z[j],"%06.3f", s);
- j += sqlite3Strlen30(&z[j]);
- break;
- }
- case 'H': sqlite3_snprintf(3, &z[j],"%02d",x.h); j+=2; break;
- case 'W': /* Fall thru */
- case 'j': {
- int nDay; /* Number of days since 1st day of year */
- DateTime y = x;
- y.validJD = 0;
- y.M = 1;
- y.D = 1;
- computeJD(&y);
- nDay = (int)((x.iJD-y.iJD+43200000)/86400000);
- if( zFmt[i]=='W' ){
- int wd; /* 0=Monday, 1=Tuesday, ... 6=Sunday */
- wd = (int)(((x.iJD+43200000)/86400000)%7);
- sqlite3_snprintf(3, &z[j],"%02d",(nDay+7-wd)/7);
- j += 2;
- }else{
- sqlite3_snprintf(4, &z[j],"%03d",nDay+1);
- j += 3;
- }
- break;
- }
- case 'J': {
- sqlite3_snprintf(20, &z[j],"%.16g",x.iJD/86400000.0);
- j+=sqlite3Strlen30(&z[j]);
- break;
- }
- case 'm': sqlite3_snprintf(3, &z[j],"%02d",x.M); j+=2; break;
- case 'M': sqlite3_snprintf(3, &z[j],"%02d",x.m); j+=2; break;
- case 's': {
- sqlite3_snprintf(30,&z[j],"%lld",
- (i64)(x.iJD/1000 - 21086676*(i64)10000));
- j += sqlite3Strlen30(&z[j]);
- break;
- }
- case 'S': sqlite3_snprintf(3,&z[j],"%02d",(int)x.s); j+=2; break;
- case 'w': {
- z[j++] = (char)(((x.iJD+129600000)/86400000) % 7) + '0';
- break;
- }
- case 'Y': {
- sqlite3_snprintf(5,&z[j],"%04d",x.Y); j+=sqlite3Strlen30(&z[j]);
- break;
- }
- default: z[j++] = '%'; break;
- }
- }
- }
- z[j] = 0;
- sqlite3_result_text(context, z, -1,
- z==zBuf ? SQLITE_TRANSIENT : SQLITE_DYNAMIC);
-}
-
-/*
-** current_time()
-**
-** This function returns the same value as time('now').
-*/
-static void ctimeFunc(
- sqlite3_context *context,
- int NotUsed,
- sqlite3_value **NotUsed2
-){
- UNUSED_PARAMETER2(NotUsed, NotUsed2);
- timeFunc(context, 0, 0);
-}
-
-/*
-** current_date()
-**
-** This function returns the same value as date('now').
-*/
-static void cdateFunc(
- sqlite3_context *context,
- int NotUsed,
- sqlite3_value **NotUsed2
-){
- UNUSED_PARAMETER2(NotUsed, NotUsed2);
- dateFunc(context, 0, 0);
-}
-
-/*
-** current_timestamp()
-**
-** This function returns the same value as datetime('now').
-*/
-static void ctimestampFunc(
- sqlite3_context *context,
- int NotUsed,
- sqlite3_value **NotUsed2
-){
- UNUSED_PARAMETER2(NotUsed, NotUsed2);
- datetimeFunc(context, 0, 0);
-}
-#endif /* !defined(SQLITE_OMIT_DATETIME_FUNCS) */
-
-#ifdef SQLITE_OMIT_DATETIME_FUNCS
-/*
-** If the library is compiled to omit the full-scale date and time
-** handling (to get a smaller binary), the following minimal version
-** of the functions current_time(), current_date() and current_timestamp()
-** are included instead. This is to support column declarations that
-** include "DEFAULT CURRENT_TIME" etc.
-**
-** This function uses the C-library functions time(), gmtime()
-** and strftime(). The format string to pass to strftime() is supplied
-** as the user-data for the function.
-*/
-static void currentTimeFunc(
- sqlite3_context *context,
- int argc,
- sqlite3_value **argv
-){
- time_t t;
- char *zFormat = (char *)sqlite3_user_data(context);
- sqlite3_int64 iT;
- struct tm *pTm;
- struct tm sNow;
- char zBuf[20];
-
- UNUSED_PARAMETER(argc);
- UNUSED_PARAMETER(argv);
-
- iT = sqlite3StmtCurrentTime(context);
- if( iT<=0 ) return;
- t = iT/1000 - 10000*(sqlite3_int64)21086676;
-#if HAVE_GMTIME_R
- pTm = gmtime_r(&t, &sNow);
-#else
- sqlite3_mutex_enter(sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_MASTER));
- pTm = gmtime(&t);
- if( pTm ) memcpy(&sNow, pTm, sizeof(sNow));
- sqlite3_mutex_leave(sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_MASTER));
-#endif
- if( pTm ){
- strftime(zBuf, 20, zFormat, &sNow);
- sqlite3_result_text(context, zBuf, -1, SQLITE_TRANSIENT);
- }
-}
-#endif
-
-/*
-** This function registered all of the above C functions as SQL
-** functions. This should be the only routine in this file with
-** external linkage.
-*/
-SQLITE_PRIVATE void sqlite3RegisterDateTimeFunctions(void){
- static FuncDef aDateTimeFuncs[] = {
-#ifndef SQLITE_OMIT_DATETIME_FUNCS
- PURE_DATE(julianday, -1, 0, 0, juliandayFunc ),
- PURE_DATE(date, -1, 0, 0, dateFunc ),
- PURE_DATE(time, -1, 0, 0, timeFunc ),
- PURE_DATE(datetime, -1, 0, 0, datetimeFunc ),
- PURE_DATE(strftime, -1, 0, 0, strftimeFunc ),
- DFUNCTION(current_time, 0, 0, 0, ctimeFunc ),
- DFUNCTION(current_timestamp, 0, 0, 0, ctimestampFunc),
- DFUNCTION(current_date, 0, 0, 0, cdateFunc ),
-#else
- STR_FUNCTION(current_time, 0, "%H:%M:%S", 0, currentTimeFunc),
- STR_FUNCTION(current_date, 0, "%Y-%m-%d", 0, currentTimeFunc),
- STR_FUNCTION(current_timestamp, 0, "%Y-%m-%d %H:%M:%S", 0, currentTimeFunc),
-#endif
- };
- sqlite3InsertBuiltinFuncs(aDateTimeFuncs, ArraySize(aDateTimeFuncs));
-}
-
-/************** End of date.c ************************************************/
-/************** Begin file os.c **********************************************/
-/*
-** 2005 November 29
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This file contains OS interface code that is common to all
-** architectures.
-*/
-/* #include "sqliteInt.h" */
-
-/*
-** If we compile with the SQLITE_TEST macro set, then the following block
-** of code will give us the ability to simulate a disk I/O error. This
-** is used for testing the I/O recovery logic.
-*/
-#if defined(SQLITE_TEST)
-SQLITE_API int sqlite3_io_error_hit = 0; /* Total number of I/O Errors */
-SQLITE_API int sqlite3_io_error_hardhit = 0; /* Number of non-benign errors */
-SQLITE_API int sqlite3_io_error_pending = 0; /* Count down to first I/O error */
-SQLITE_API int sqlite3_io_error_persist = 0; /* True if I/O errors persist */
-SQLITE_API int sqlite3_io_error_benign = 0; /* True if errors are benign */
-SQLITE_API int sqlite3_diskfull_pending = 0;
-SQLITE_API int sqlite3_diskfull = 0;
-#endif /* defined(SQLITE_TEST) */
-
-/*
-** When testing, also keep a count of the number of open files.
-*/
-#if defined(SQLITE_TEST)
-SQLITE_API int sqlite3_open_file_count = 0;
-#endif /* defined(SQLITE_TEST) */
-
-/*
-** The default SQLite sqlite3_vfs implementations do not allocate
-** memory (actually, os_unix.c allocates a small amount of memory
-** from within OsOpen()), but some third-party implementations may.
-** So we test the effects of a malloc() failing and the sqlite3OsXXX()
-** function returning SQLITE_IOERR_NOMEM using the DO_OS_MALLOC_TEST macro.
-**
-** The following functions are instrumented for malloc() failure
-** testing:
-**
-** sqlite3OsRead()
-** sqlite3OsWrite()
-** sqlite3OsSync()
-** sqlite3OsFileSize()
-** sqlite3OsLock()
-** sqlite3OsCheckReservedLock()
-** sqlite3OsFileControl()
-** sqlite3OsShmMap()
-** sqlite3OsOpen()
-** sqlite3OsDelete()
-** sqlite3OsAccess()
-** sqlite3OsFullPathname()
-**
-*/
-#if defined(SQLITE_TEST)
-SQLITE_API int sqlite3_memdebug_vfs_oom_test = 1;
- #define DO_OS_MALLOC_TEST(x) \
- if (sqlite3_memdebug_vfs_oom_test && (!x || !sqlite3JournalIsInMemory(x))) { \
- void *pTstAlloc = sqlite3Malloc(10); \
- if (!pTstAlloc) return SQLITE_IOERR_NOMEM_BKPT; \
- sqlite3_free(pTstAlloc); \
- }
-#else
- #define DO_OS_MALLOC_TEST(x)
-#endif
-
-/*
-** The following routines are convenience wrappers around methods
-** of the sqlite3_file object. This is mostly just syntactic sugar. All
-** of this would be completely automatic if SQLite were coded using
-** C++ instead of plain old C.
-*/
-SQLITE_PRIVATE void sqlite3OsClose(sqlite3_file *pId){
- if( pId->pMethods ){
- pId->pMethods->xClose(pId);
- pId->pMethods = 0;
- }
-}
-SQLITE_PRIVATE int sqlite3OsRead(sqlite3_file *id, void *pBuf, int amt, i64 offset){
- DO_OS_MALLOC_TEST(id);
- return id->pMethods->xRead(id, pBuf, amt, offset);
-}
-SQLITE_PRIVATE int sqlite3OsWrite(sqlite3_file *id, const void *pBuf, int amt, i64 offset){
- DO_OS_MALLOC_TEST(id);
- return id->pMethods->xWrite(id, pBuf, amt, offset);
-}
-SQLITE_PRIVATE int sqlite3OsTruncate(sqlite3_file *id, i64 size){
- return id->pMethods->xTruncate(id, size);
-}
-SQLITE_PRIVATE int sqlite3OsSync(sqlite3_file *id, int flags){
- DO_OS_MALLOC_TEST(id);
- return flags ? id->pMethods->xSync(id, flags) : SQLITE_OK;
-}
-SQLITE_PRIVATE int sqlite3OsFileSize(sqlite3_file *id, i64 *pSize){
- DO_OS_MALLOC_TEST(id);
- return id->pMethods->xFileSize(id, pSize);
-}
-SQLITE_PRIVATE int sqlite3OsLock(sqlite3_file *id, int lockType){
- DO_OS_MALLOC_TEST(id);
- return id->pMethods->xLock(id, lockType);
-}
-SQLITE_PRIVATE int sqlite3OsUnlock(sqlite3_file *id, int lockType){
- return id->pMethods->xUnlock(id, lockType);
-}
-SQLITE_PRIVATE int sqlite3OsCheckReservedLock(sqlite3_file *id, int *pResOut){
- DO_OS_MALLOC_TEST(id);
- return id->pMethods->xCheckReservedLock(id, pResOut);
-}
-
-/*
-** Use sqlite3OsFileControl() when we are doing something that might fail
-** and we need to know about the failures. Use sqlite3OsFileControlHint()
-** when simply tossing information over the wall to the VFS and we do not
-** really care if the VFS receives and understands the information since it
-** is only a hint and can be safely ignored. The sqlite3OsFileControlHint()
-** routine has no return value since the return value would be meaningless.
-*/
-SQLITE_PRIVATE int sqlite3OsFileControl(sqlite3_file *id, int op, void *pArg){
- if( id->pMethods==0 ) return SQLITE_NOTFOUND;
-#ifdef SQLITE_TEST
- if( op!=SQLITE_FCNTL_COMMIT_PHASETWO
- && op!=SQLITE_FCNTL_LOCK_TIMEOUT
- ){
- /* Faults are not injected into COMMIT_PHASETWO because, assuming SQLite
- ** is using a regular VFS, it is called after the corresponding
- ** transaction has been committed. Injecting a fault at this point
- ** confuses the test scripts - the COMMIT comand returns SQLITE_NOMEM
- ** but the transaction is committed anyway.
- **
- ** The core must call OsFileControl() though, not OsFileControlHint(),
- ** as if a custom VFS (e.g. zipvfs) returns an error here, it probably
- ** means the commit really has failed and an error should be returned
- ** to the user. */
- DO_OS_MALLOC_TEST(id);
- }
-#endif
- return id->pMethods->xFileControl(id, op, pArg);
-}
-SQLITE_PRIVATE void sqlite3OsFileControlHint(sqlite3_file *id, int op, void *pArg){
- if( id->pMethods ) (void)id->pMethods->xFileControl(id, op, pArg);
-}
-
-SQLITE_PRIVATE int sqlite3OsSectorSize(sqlite3_file *id){
- int (*xSectorSize)(sqlite3_file*) = id->pMethods->xSectorSize;
- return (xSectorSize ? xSectorSize(id) : SQLITE_DEFAULT_SECTOR_SIZE);
-}
-SQLITE_PRIVATE int sqlite3OsDeviceCharacteristics(sqlite3_file *id){
- return id->pMethods->xDeviceCharacteristics(id);
-}
-#ifndef SQLITE_OMIT_WAL
-SQLITE_PRIVATE int sqlite3OsShmLock(sqlite3_file *id, int offset, int n, int flags){
- return id->pMethods->xShmLock(id, offset, n, flags);
-}
-SQLITE_PRIVATE void sqlite3OsShmBarrier(sqlite3_file *id){
- id->pMethods->xShmBarrier(id);
-}
-SQLITE_PRIVATE int sqlite3OsShmUnmap(sqlite3_file *id, int deleteFlag){
- return id->pMethods->xShmUnmap(id, deleteFlag);
-}
-SQLITE_PRIVATE int sqlite3OsShmMap(
- sqlite3_file *id, /* Database file handle */
- int iPage,
- int pgsz,
- int bExtend, /* True to extend file if necessary */
- void volatile **pp /* OUT: Pointer to mapping */
-){
- DO_OS_MALLOC_TEST(id);
- return id->pMethods->xShmMap(id, iPage, pgsz, bExtend, pp);
-}
-#endif /* SQLITE_OMIT_WAL */
-
-#if SQLITE_MAX_MMAP_SIZE>0
-/* The real implementation of xFetch and xUnfetch */
-SQLITE_PRIVATE int sqlite3OsFetch(sqlite3_file *id, i64 iOff, int iAmt, void **pp){
- DO_OS_MALLOC_TEST(id);
- return id->pMethods->xFetch(id, iOff, iAmt, pp);
-}
-SQLITE_PRIVATE int sqlite3OsUnfetch(sqlite3_file *id, i64 iOff, void *p){
- return id->pMethods->xUnfetch(id, iOff, p);
-}
-#else
-/* No-op stubs to use when memory-mapped I/O is disabled */
-SQLITE_PRIVATE int sqlite3OsFetch(sqlite3_file *id, i64 iOff, int iAmt, void **pp){
- *pp = 0;
- return SQLITE_OK;
-}
-SQLITE_PRIVATE int sqlite3OsUnfetch(sqlite3_file *id, i64 iOff, void *p){
- return SQLITE_OK;
-}
-#endif
-
-/*
-** The next group of routines are convenience wrappers around the
-** VFS methods.
-*/
-SQLITE_PRIVATE int sqlite3OsOpen(
- sqlite3_vfs *pVfs,
- const char *zPath,
- sqlite3_file *pFile,
- int flags,
- int *pFlagsOut
-){
- int rc;
- DO_OS_MALLOC_TEST(0);
- /* 0x87f7f is a mask of SQLITE_OPEN_ flags that are valid to be passed
- ** down into the VFS layer. Some SQLITE_OPEN_ flags (for example,
- ** SQLITE_OPEN_FULLMUTEX or SQLITE_OPEN_SHAREDCACHE) are blocked before
- ** reaching the VFS. */
- rc = pVfs->xOpen(pVfs, zPath, pFile, flags & 0x87f7f, pFlagsOut);
- assert( rc==SQLITE_OK || pFile->pMethods==0 );
- return rc;
-}
-SQLITE_PRIVATE int sqlite3OsDelete(sqlite3_vfs *pVfs, const char *zPath, int dirSync){
- DO_OS_MALLOC_TEST(0);
- assert( dirSync==0 || dirSync==1 );
- return pVfs->xDelete(pVfs, zPath, dirSync);
-}
-SQLITE_PRIVATE int sqlite3OsAccess(
- sqlite3_vfs *pVfs,
- const char *zPath,
- int flags,
- int *pResOut
-){
- DO_OS_MALLOC_TEST(0);
- return pVfs->xAccess(pVfs, zPath, flags, pResOut);
-}
-SQLITE_PRIVATE int sqlite3OsFullPathname(
- sqlite3_vfs *pVfs,
- const char *zPath,
- int nPathOut,
- char *zPathOut
-){
- DO_OS_MALLOC_TEST(0);
- zPathOut[0] = 0;
- return pVfs->xFullPathname(pVfs, zPath, nPathOut, zPathOut);
-}
-#ifndef SQLITE_OMIT_LOAD_EXTENSION
-SQLITE_PRIVATE void *sqlite3OsDlOpen(sqlite3_vfs *pVfs, const char *zPath){
- return pVfs->xDlOpen(pVfs, zPath);
-}
-SQLITE_PRIVATE void sqlite3OsDlError(sqlite3_vfs *pVfs, int nByte, char *zBufOut){
- pVfs->xDlError(pVfs, nByte, zBufOut);
-}
-SQLITE_PRIVATE void (*sqlite3OsDlSym(sqlite3_vfs *pVfs, void *pHdle, const char *zSym))(void){
- return pVfs->xDlSym(pVfs, pHdle, zSym);
-}
-SQLITE_PRIVATE void sqlite3OsDlClose(sqlite3_vfs *pVfs, void *pHandle){
- pVfs->xDlClose(pVfs, pHandle);
-}
-#endif /* SQLITE_OMIT_LOAD_EXTENSION */
-SQLITE_PRIVATE int sqlite3OsRandomness(sqlite3_vfs *pVfs, int nByte, char *zBufOut){
- return pVfs->xRandomness(pVfs, nByte, zBufOut);
-}
-SQLITE_PRIVATE int sqlite3OsSleep(sqlite3_vfs *pVfs, int nMicro){
- return pVfs->xSleep(pVfs, nMicro);
-}
-SQLITE_PRIVATE int sqlite3OsGetLastError(sqlite3_vfs *pVfs){
- return pVfs->xGetLastError ? pVfs->xGetLastError(pVfs, 0, 0) : 0;
-}
-SQLITE_PRIVATE int sqlite3OsCurrentTimeInt64(sqlite3_vfs *pVfs, sqlite3_int64 *pTimeOut){
- int rc;
- /* IMPLEMENTATION-OF: R-49045-42493 SQLite will use the xCurrentTimeInt64()
- ** method to get the current date and time if that method is available
- ** (if iVersion is 2 or greater and the function pointer is not NULL) and
- ** will fall back to xCurrentTime() if xCurrentTimeInt64() is
- ** unavailable.
- */
- if( pVfs->iVersion>=2 && pVfs->xCurrentTimeInt64 ){
- rc = pVfs->xCurrentTimeInt64(pVfs, pTimeOut);
- }else{
- double r;
- rc = pVfs->xCurrentTime(pVfs, &r);
- *pTimeOut = (sqlite3_int64)(r*86400000.0);
- }
- return rc;
-}
-
-SQLITE_PRIVATE int sqlite3OsOpenMalloc(
- sqlite3_vfs *pVfs,
- const char *zFile,
- sqlite3_file **ppFile,
- int flags,
- int *pOutFlags
-){
- int rc;
- sqlite3_file *pFile;
- pFile = (sqlite3_file *)sqlite3MallocZero(pVfs->szOsFile);
- if( pFile ){
- rc = sqlite3OsOpen(pVfs, zFile, pFile, flags, pOutFlags);
- if( rc!=SQLITE_OK ){
- sqlite3_free(pFile);
- }else{
- *ppFile = pFile;
- }
- }else{
- rc = SQLITE_NOMEM_BKPT;
- }
- return rc;
-}
-SQLITE_PRIVATE void sqlite3OsCloseFree(sqlite3_file *pFile){
- assert( pFile );
- sqlite3OsClose(pFile);
- sqlite3_free(pFile);
-}
-
-/*
-** This function is a wrapper around the OS specific implementation of
-** sqlite3_os_init(). The purpose of the wrapper is to provide the
-** ability to simulate a malloc failure, so that the handling of an
-** error in sqlite3_os_init() by the upper layers can be tested.
-*/
-SQLITE_PRIVATE int sqlite3OsInit(void){
- void *p = sqlite3_malloc(10);
- if( p==0 ) return SQLITE_NOMEM_BKPT;
- sqlite3_free(p);
- return sqlite3_os_init();
-}
-
-/*
-** The list of all registered VFS implementations.
-*/
-static sqlite3_vfs * SQLITE_WSD vfsList = 0;
-#define vfsList GLOBAL(sqlite3_vfs *, vfsList)
-
-/*
-** Locate a VFS by name. If no name is given, simply return the
-** first VFS on the list.
-*/
-SQLITE_API sqlite3_vfs *sqlite3_vfs_find(const char *zVfs){
- sqlite3_vfs *pVfs = 0;
-#if SQLITE_THREADSAFE
- sqlite3_mutex *mutex;
-#endif
-#ifndef SQLITE_OMIT_AUTOINIT
- int rc = sqlite3_initialize();
- if( rc ) return 0;
-#endif
-#if SQLITE_THREADSAFE
- mutex = sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_MASTER);
-#endif
- sqlite3_mutex_enter(mutex);
- for(pVfs = vfsList; pVfs; pVfs=pVfs->pNext){
- if( zVfs==0 ) break;
- if( strcmp(zVfs, pVfs->zName)==0 ) break;
- }
- sqlite3_mutex_leave(mutex);
- return pVfs;
-}
-
-/*
-** Unlink a VFS from the linked list
-*/
-static void vfsUnlink(sqlite3_vfs *pVfs){
- assert( sqlite3_mutex_held(sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_MASTER)) );
- if( pVfs==0 ){
- /* No-op */
- }else if( vfsList==pVfs ){
- vfsList = pVfs->pNext;
- }else if( vfsList ){
- sqlite3_vfs *p = vfsList;
- while( p->pNext && p->pNext!=pVfs ){
- p = p->pNext;
- }
- if( p->pNext==pVfs ){
- p->pNext = pVfs->pNext;
- }
- }
-}
-
-/*
-** Register a VFS with the system. It is harmless to register the same
-** VFS multiple times. The new VFS becomes the default if makeDflt is
-** true.
-*/
-SQLITE_API int sqlite3_vfs_register(sqlite3_vfs *pVfs, int makeDflt){
- MUTEX_LOGIC(sqlite3_mutex *mutex;)
-#ifndef SQLITE_OMIT_AUTOINIT
- int rc = sqlite3_initialize();
- if( rc ) return rc;
-#endif
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( pVfs==0 ) return SQLITE_MISUSE_BKPT;
-#endif
-
- MUTEX_LOGIC( mutex = sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_MASTER); )
- sqlite3_mutex_enter(mutex);
- vfsUnlink(pVfs);
- if( makeDflt || vfsList==0 ){
- pVfs->pNext = vfsList;
- vfsList = pVfs;
- }else{
- pVfs->pNext = vfsList->pNext;
- vfsList->pNext = pVfs;
- }
- assert(vfsList);
- sqlite3_mutex_leave(mutex);
- return SQLITE_OK;
-}
-
-/*
-** Unregister a VFS so that it is no longer accessible.
-*/
-SQLITE_API int sqlite3_vfs_unregister(sqlite3_vfs *pVfs){
- MUTEX_LOGIC(sqlite3_mutex *mutex;)
-#ifndef SQLITE_OMIT_AUTOINIT
- int rc = sqlite3_initialize();
- if( rc ) return rc;
-#endif
- MUTEX_LOGIC( mutex = sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_MASTER); )
- sqlite3_mutex_enter(mutex);
- vfsUnlink(pVfs);
- sqlite3_mutex_leave(mutex);
- return SQLITE_OK;
-}
-
-/************** End of os.c **************************************************/
-/************** Begin file fault.c *******************************************/
-/*
-** 2008 Jan 22
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-**
-** This file contains code to support the concept of "benign"
-** malloc failures (when the xMalloc() or xRealloc() method of the
-** sqlite3_mem_methods structure fails to allocate a block of memory
-** and returns 0).
-**
-** Most malloc failures are non-benign. After they occur, SQLite
-** abandons the current operation and returns an error code (usually
-** SQLITE_NOMEM) to the user. However, sometimes a fault is not necessarily
-** fatal. For example, if a malloc fails while resizing a hash table, this
-** is completely recoverable simply by not carrying out the resize. The
-** hash table will continue to function normally. So a malloc failure
-** during a hash table resize is a benign fault.
-*/
-
-/* #include "sqliteInt.h" */
-
-#ifndef SQLITE_UNTESTABLE
-
-/*
-** Global variables.
-*/
-typedef struct BenignMallocHooks BenignMallocHooks;
-static SQLITE_WSD struct BenignMallocHooks {
- void (*xBenignBegin)(void);
- void (*xBenignEnd)(void);
-} sqlite3Hooks = { 0, 0 };
-
-/* The "wsdHooks" macro will resolve to the appropriate BenignMallocHooks
-** structure. If writable static data is unsupported on the target,
-** we have to locate the state vector at run-time. In the more common
-** case where writable static data is supported, wsdHooks can refer directly
-** to the "sqlite3Hooks" state vector declared above.
-*/
-#ifdef SQLITE_OMIT_WSD
-# define wsdHooksInit \
- BenignMallocHooks *x = &GLOBAL(BenignMallocHooks,sqlite3Hooks)
-# define wsdHooks x[0]
-#else
-# define wsdHooksInit
-# define wsdHooks sqlite3Hooks
-#endif
-
-
-/*
-** Register hooks to call when sqlite3BeginBenignMalloc() and
-** sqlite3EndBenignMalloc() are called, respectively.
-*/
-SQLITE_PRIVATE void sqlite3BenignMallocHooks(
- void (*xBenignBegin)(void),
- void (*xBenignEnd)(void)
-){
- wsdHooksInit;
- wsdHooks.xBenignBegin = xBenignBegin;
- wsdHooks.xBenignEnd = xBenignEnd;
-}
-
-/*
-** This (sqlite3EndBenignMalloc()) is called by SQLite code to indicate that
-** subsequent malloc failures are benign. A call to sqlite3EndBenignMalloc()
-** indicates that subsequent malloc failures are non-benign.
-*/
-SQLITE_PRIVATE void sqlite3BeginBenignMalloc(void){
- wsdHooksInit;
- if( wsdHooks.xBenignBegin ){
- wsdHooks.xBenignBegin();
- }
-}
-SQLITE_PRIVATE void sqlite3EndBenignMalloc(void){
- wsdHooksInit;
- if( wsdHooks.xBenignEnd ){
- wsdHooks.xBenignEnd();
- }
-}
-
-#endif /* #ifndef SQLITE_UNTESTABLE */
-
-/************** End of fault.c ***********************************************/
-/************** Begin file mem0.c ********************************************/
-/*
-** 2008 October 28
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-**
-** This file contains a no-op memory allocation drivers for use when
-** SQLITE_ZERO_MALLOC is defined. The allocation drivers implemented
-** here always fail. SQLite will not operate with these drivers. These
-** are merely placeholders. Real drivers must be substituted using
-** sqlite3_config() before SQLite will operate.
-*/
-/* #include "sqliteInt.h" */
-
-/*
-** This version of the memory allocator is the default. It is
-** used when no other memory allocator is specified using compile-time
-** macros.
-*/
-#ifdef SQLITE_ZERO_MALLOC
-
-/*
-** No-op versions of all memory allocation routines
-*/
-static void *sqlite3MemMalloc(int nByte){ return 0; }
-static void sqlite3MemFree(void *pPrior){ return; }
-static void *sqlite3MemRealloc(void *pPrior, int nByte){ return 0; }
-static int sqlite3MemSize(void *pPrior){ return 0; }
-static int sqlite3MemRoundup(int n){ return n; }
-static int sqlite3MemInit(void *NotUsed){ return SQLITE_OK; }
-static void sqlite3MemShutdown(void *NotUsed){ return; }
-
-/*
-** This routine is the only routine in this file with external linkage.
-**
-** Populate the low-level memory allocation function pointers in
-** sqlite3GlobalConfig.m with pointers to the routines in this file.
-*/
-SQLITE_PRIVATE void sqlite3MemSetDefault(void){
- static const sqlite3_mem_methods defaultMethods = {
- sqlite3MemMalloc,
- sqlite3MemFree,
- sqlite3MemRealloc,
- sqlite3MemSize,
- sqlite3MemRoundup,
- sqlite3MemInit,
- sqlite3MemShutdown,
- 0
- };
- sqlite3_config(SQLITE_CONFIG_MALLOC, &defaultMethods);
-}
-
-#endif /* SQLITE_ZERO_MALLOC */
-
-/************** End of mem0.c ************************************************/
-/************** Begin file mem1.c ********************************************/
-/*
-** 2007 August 14
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-**
-** This file contains low-level memory allocation drivers for when
-** SQLite will use the standard C-library malloc/realloc/free interface
-** to obtain the memory it needs.
-**
-** This file contains implementations of the low-level memory allocation
-** routines specified in the sqlite3_mem_methods object. The content of
-** this file is only used if SQLITE_SYSTEM_MALLOC is defined. The
-** SQLITE_SYSTEM_MALLOC macro is defined automatically if neither the
-** SQLITE_MEMDEBUG nor the SQLITE_WIN32_MALLOC macros are defined. The
-** default configuration is to use memory allocation routines in this
-** file.
-**
-** C-preprocessor macro summary:
-**
-** HAVE_MALLOC_USABLE_SIZE The configure script sets this symbol if
-** the malloc_usable_size() interface exists
-** on the target platform. Or, this symbol
-** can be set manually, if desired.
-** If an equivalent interface exists by
-** a different name, using a separate -D
-** option to rename it.
-**
-** SQLITE_WITHOUT_ZONEMALLOC Some older macs lack support for the zone
-** memory allocator. Set this symbol to enable
-** building on older macs.
-**
-** SQLITE_WITHOUT_MSIZE Set this symbol to disable the use of
-** _msize() on windows systems. This might
-** be necessary when compiling for Delphi,
-** for example.
-*/
-/* #include "sqliteInt.h" */
-
-/*
-** This version of the memory allocator is the default. It is
-** used when no other memory allocator is specified using compile-time
-** macros.
-*/
-#ifdef SQLITE_SYSTEM_MALLOC
-#if defined(__APPLE__) && !defined(SQLITE_WITHOUT_ZONEMALLOC)
-
-/*
-** Use the zone allocator available on apple products unless the
-** SQLITE_WITHOUT_ZONEMALLOC symbol is defined.
-*/
-#include
-#include
-#ifdef SQLITE_MIGHT_BE_SINGLE_CORE
-#include
-#endif /* SQLITE_MIGHT_BE_SINGLE_CORE */
-static malloc_zone_t* _sqliteZone_;
-#define SQLITE_MALLOC(x) malloc_zone_malloc(_sqliteZone_, (x))
-#define SQLITE_FREE(x) malloc_zone_free(_sqliteZone_, (x));
-#define SQLITE_REALLOC(x,y) malloc_zone_realloc(_sqliteZone_, (x), (y))
-#define SQLITE_MALLOCSIZE(x) \
- (_sqliteZone_ ? _sqliteZone_->size(_sqliteZone_,x) : malloc_size(x))
-
-#else /* if not __APPLE__ */
-
-/*
-** Use standard C library malloc and free on non-Apple systems.
-** Also used by Apple systems if SQLITE_WITHOUT_ZONEMALLOC is defined.
-*/
-#define SQLITE_MALLOC(x) malloc(x)
-#define SQLITE_FREE(x) free(x)
-#define SQLITE_REALLOC(x,y) realloc((x),(y))
-
-/*
-** The malloc.h header file is needed for malloc_usable_size() function
-** on some systems (e.g. Linux).
-*/
-#if HAVE_MALLOC_H && HAVE_MALLOC_USABLE_SIZE
-# define SQLITE_USE_MALLOC_H 1
-# define SQLITE_USE_MALLOC_USABLE_SIZE 1
-/*
-** The MSVCRT has malloc_usable_size(), but it is called _msize(). The
-** use of _msize() is automatic, but can be disabled by compiling with
-** -DSQLITE_WITHOUT_MSIZE. Using the _msize() function also requires
-** the malloc.h header file.
-*/
-#elif defined(_MSC_VER) && !defined(SQLITE_WITHOUT_MSIZE)
-# define SQLITE_USE_MALLOC_H
-# define SQLITE_USE_MSIZE
-#endif
-
-/*
-** Include the malloc.h header file, if necessary. Also set define macro
-** SQLITE_MALLOCSIZE to the appropriate function name, which is _msize()
-** for MSVC and malloc_usable_size() for most other systems (e.g. Linux).
-** The memory size function can always be overridden manually by defining
-** the macro SQLITE_MALLOCSIZE to the desired function name.
-*/
-#if defined(SQLITE_USE_MALLOC_H)
-# include
-# if defined(SQLITE_USE_MALLOC_USABLE_SIZE)
-# if !defined(SQLITE_MALLOCSIZE)
-# define SQLITE_MALLOCSIZE(x) malloc_usable_size(x)
-# endif
-# elif defined(SQLITE_USE_MSIZE)
-# if !defined(SQLITE_MALLOCSIZE)
-# define SQLITE_MALLOCSIZE _msize
-# endif
-# endif
-#endif /* defined(SQLITE_USE_MALLOC_H) */
-
-#endif /* __APPLE__ or not __APPLE__ */
-
-/*
-** Like malloc(), but remember the size of the allocation
-** so that we can find it later using sqlite3MemSize().
-**
-** For this low-level routine, we are guaranteed that nByte>0 because
-** cases of nByte<=0 will be intercepted and dealt with by higher level
-** routines.
-*/
-static void *sqlite3MemMalloc(int nByte){
-#ifdef SQLITE_MALLOCSIZE
- void *p;
- testcase( ROUND8(nByte)==nByte );
- p = SQLITE_MALLOC( nByte );
- if( p==0 ){
- testcase( sqlite3GlobalConfig.xLog!=0 );
- sqlite3_log(SQLITE_NOMEM, "failed to allocate %u bytes of memory", nByte);
- }
- return p;
-#else
- sqlite3_int64 *p;
- assert( nByte>0 );
- testcase( ROUND8(nByte)!=nByte );
- p = SQLITE_MALLOC( nByte+8 );
- if( p ){
- p[0] = nByte;
- p++;
- }else{
- testcase( sqlite3GlobalConfig.xLog!=0 );
- sqlite3_log(SQLITE_NOMEM, "failed to allocate %u bytes of memory", nByte);
- }
- return (void *)p;
-#endif
-}
-
-/*
-** Like free() but works for allocations obtained from sqlite3MemMalloc()
-** or sqlite3MemRealloc().
-**
-** For this low-level routine, we already know that pPrior!=0 since
-** cases where pPrior==0 will have been intecepted and dealt with
-** by higher-level routines.
-*/
-static void sqlite3MemFree(void *pPrior){
-#ifdef SQLITE_MALLOCSIZE
- SQLITE_FREE(pPrior);
-#else
- sqlite3_int64 *p = (sqlite3_int64*)pPrior;
- assert( pPrior!=0 );
- p--;
- SQLITE_FREE(p);
-#endif
-}
-
-/*
-** Report the allocated size of a prior return from xMalloc()
-** or xRealloc().
-*/
-static int sqlite3MemSize(void *pPrior){
-#ifdef SQLITE_MALLOCSIZE
- assert( pPrior!=0 );
- return (int)SQLITE_MALLOCSIZE(pPrior);
-#else
- sqlite3_int64 *p;
- assert( pPrior!=0 );
- p = (sqlite3_int64*)pPrior;
- p--;
- return (int)p[0];
-#endif
-}
-
-/*
-** Like realloc(). Resize an allocation previously obtained from
-** sqlite3MemMalloc().
-**
-** For this low-level interface, we know that pPrior!=0. Cases where
-** pPrior==0 while have been intercepted by higher-level routine and
-** redirected to xMalloc. Similarly, we know that nByte>0 because
-** cases where nByte<=0 will have been intercepted by higher-level
-** routines and redirected to xFree.
-*/
-static void *sqlite3MemRealloc(void *pPrior, int nByte){
-#ifdef SQLITE_MALLOCSIZE
- void *p = SQLITE_REALLOC(pPrior, nByte);
- if( p==0 ){
- testcase( sqlite3GlobalConfig.xLog!=0 );
- sqlite3_log(SQLITE_NOMEM,
- "failed memory resize %u to %u bytes",
- SQLITE_MALLOCSIZE(pPrior), nByte);
- }
- return p;
-#else
- sqlite3_int64 *p = (sqlite3_int64*)pPrior;
- assert( pPrior!=0 && nByte>0 );
- assert( nByte==ROUND8(nByte) ); /* EV: R-46199-30249 */
- p--;
- p = SQLITE_REALLOC(p, nByte+8 );
- if( p ){
- p[0] = nByte;
- p++;
- }else{
- testcase( sqlite3GlobalConfig.xLog!=0 );
- sqlite3_log(SQLITE_NOMEM,
- "failed memory resize %u to %u bytes",
- sqlite3MemSize(pPrior), nByte);
- }
- return (void*)p;
-#endif
-}
-
-/*
-** Round up a request size to the next valid allocation size.
-*/
-static int sqlite3MemRoundup(int n){
- return ROUND8(n);
-}
-
-/*
-** Initialize this module.
-*/
-static int sqlite3MemInit(void *NotUsed){
-#if defined(__APPLE__) && !defined(SQLITE_WITHOUT_ZONEMALLOC)
- int cpuCount;
- size_t len;
- if( _sqliteZone_ ){
- return SQLITE_OK;
- }
- len = sizeof(cpuCount);
- /* One usually wants to use hw.acctivecpu for MT decisions, but not here */
- sysctlbyname("hw.ncpu", &cpuCount, &len, NULL, 0);
- if( cpuCount>1 ){
- /* defer MT decisions to system malloc */
- _sqliteZone_ = malloc_default_zone();
- }else{
- /* only 1 core, use our own zone to contention over global locks,
- ** e.g. we have our own dedicated locks */
- _sqliteZone_ = malloc_create_zone(4096, 0);
- malloc_set_zone_name(_sqliteZone_, "Sqlite_Heap");
- }
-#endif /* defined(__APPLE__) && !defined(SQLITE_WITHOUT_ZONEMALLOC) */
- UNUSED_PARAMETER(NotUsed);
- return SQLITE_OK;
-}
-
-/*
-** Deinitialize this module.
-*/
-static void sqlite3MemShutdown(void *NotUsed){
- UNUSED_PARAMETER(NotUsed);
- return;
-}
-
-/*
-** This routine is the only routine in this file with external linkage.
-**
-** Populate the low-level memory allocation function pointers in
-** sqlite3GlobalConfig.m with pointers to the routines in this file.
-*/
-SQLITE_PRIVATE void sqlite3MemSetDefault(void){
- static const sqlite3_mem_methods defaultMethods = {
- sqlite3MemMalloc,
- sqlite3MemFree,
- sqlite3MemRealloc,
- sqlite3MemSize,
- sqlite3MemRoundup,
- sqlite3MemInit,
- sqlite3MemShutdown,
- 0
- };
- sqlite3_config(SQLITE_CONFIG_MALLOC, &defaultMethods);
-}
-
-#endif /* SQLITE_SYSTEM_MALLOC */
-
-/************** End of mem1.c ************************************************/
-/************** Begin file mem2.c ********************************************/
-/*
-** 2007 August 15
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-**
-** This file contains low-level memory allocation drivers for when
-** SQLite will use the standard C-library malloc/realloc/free interface
-** to obtain the memory it needs while adding lots of additional debugging
-** information to each allocation in order to help detect and fix memory
-** leaks and memory usage errors.
-**
-** This file contains implementations of the low-level memory allocation
-** routines specified in the sqlite3_mem_methods object.
-*/
-/* #include "sqliteInt.h" */
-
-/*
-** This version of the memory allocator is used only if the
-** SQLITE_MEMDEBUG macro is defined
-*/
-#ifdef SQLITE_MEMDEBUG
-
-/*
-** The backtrace functionality is only available with GLIBC
-*/
-#ifdef __GLIBC__
- extern int backtrace(void**,int);
- extern void backtrace_symbols_fd(void*const*,int,int);
-#else
-# define backtrace(A,B) 1
-# define backtrace_symbols_fd(A,B,C)
-#endif
-/* #include */
-
-/*
-** Each memory allocation looks like this:
-**
-** ------------------------------------------------------------------------
-** | Title | backtrace pointers | MemBlockHdr | allocation | EndGuard |
-** ------------------------------------------------------------------------
-**
-** The application code sees only a pointer to the allocation. We have
-** to back up from the allocation pointer to find the MemBlockHdr. The
-** MemBlockHdr tells us the size of the allocation and the number of
-** backtrace pointers. There is also a guard word at the end of the
-** MemBlockHdr.
-*/
-struct MemBlockHdr {
- i64 iSize; /* Size of this allocation */
- struct MemBlockHdr *pNext, *pPrev; /* Linked list of all unfreed memory */
- char nBacktrace; /* Number of backtraces on this alloc */
- char nBacktraceSlots; /* Available backtrace slots */
- u8 nTitle; /* Bytes of title; includes '\0' */
- u8 eType; /* Allocation type code */
- int iForeGuard; /* Guard word for sanity */
-};
-
-/*
-** Guard words
-*/
-#define FOREGUARD 0x80F5E153
-#define REARGUARD 0xE4676B53
-
-/*
-** Number of malloc size increments to track.
-*/
-#define NCSIZE 1000
-
-/*
-** All of the static variables used by this module are collected
-** into a single structure named "mem". This is to keep the
-** static variables organized and to reduce namespace pollution
-** when this module is combined with other in the amalgamation.
-*/
-static struct {
-
- /*
- ** Mutex to control access to the memory allocation subsystem.
- */
- sqlite3_mutex *mutex;
-
- /*
- ** Head and tail of a linked list of all outstanding allocations
- */
- struct MemBlockHdr *pFirst;
- struct MemBlockHdr *pLast;
-
- /*
- ** The number of levels of backtrace to save in new allocations.
- */
- int nBacktrace;
- void (*xBacktrace)(int, int, void **);
-
- /*
- ** Title text to insert in front of each block
- */
- int nTitle; /* Bytes of zTitle to save. Includes '\0' and padding */
- char zTitle[100]; /* The title text */
-
- /*
- ** sqlite3MallocDisallow() increments the following counter.
- ** sqlite3MallocAllow() decrements it.
- */
- int disallow; /* Do not allow memory allocation */
-
- /*
- ** Gather statistics on the sizes of memory allocations.
- ** nAlloc[i] is the number of allocation attempts of i*8
- ** bytes. i==NCSIZE is the number of allocation attempts for
- ** sizes more than NCSIZE*8 bytes.
- */
- int nAlloc[NCSIZE]; /* Total number of allocations */
- int nCurrent[NCSIZE]; /* Current number of allocations */
- int mxCurrent[NCSIZE]; /* Highwater mark for nCurrent */
-
-} mem;
-
-
-/*
-** Adjust memory usage statistics
-*/
-static void adjustStats(int iSize, int increment){
- int i = ROUND8(iSize)/8;
- if( i>NCSIZE-1 ){
- i = NCSIZE - 1;
- }
- if( increment>0 ){
- mem.nAlloc[i]++;
- mem.nCurrent[i]++;
- if( mem.nCurrent[i]>mem.mxCurrent[i] ){
- mem.mxCurrent[i] = mem.nCurrent[i];
- }
- }else{
- mem.nCurrent[i]--;
- assert( mem.nCurrent[i]>=0 );
- }
-}
-
-/*
-** Given an allocation, find the MemBlockHdr for that allocation.
-**
-** This routine checks the guards at either end of the allocation and
-** if they are incorrect it asserts.
-*/
-static struct MemBlockHdr *sqlite3MemsysGetHeader(void *pAllocation){
- struct MemBlockHdr *p;
- int *pInt;
- u8 *pU8;
- int nReserve;
-
- p = (struct MemBlockHdr*)pAllocation;
- p--;
- assert( p->iForeGuard==(int)FOREGUARD );
- nReserve = ROUND8(p->iSize);
- pInt = (int*)pAllocation;
- pU8 = (u8*)pAllocation;
- assert( pInt[nReserve/sizeof(int)]==(int)REARGUARD );
- /* This checks any of the "extra" bytes allocated due
- ** to rounding up to an 8 byte boundary to ensure
- ** they haven't been overwritten.
- */
- while( nReserve-- > p->iSize ) assert( pU8[nReserve]==0x65 );
- return p;
-}
-
-/*
-** Return the number of bytes currently allocated at address p.
-*/
-static int sqlite3MemSize(void *p){
- struct MemBlockHdr *pHdr;
- if( !p ){
- return 0;
- }
- pHdr = sqlite3MemsysGetHeader(p);
- return (int)pHdr->iSize;
-}
-
-/*
-** Initialize the memory allocation subsystem.
-*/
-static int sqlite3MemInit(void *NotUsed){
- UNUSED_PARAMETER(NotUsed);
- assert( (sizeof(struct MemBlockHdr)&7) == 0 );
- if( !sqlite3GlobalConfig.bMemstat ){
- /* If memory status is enabled, then the malloc.c wrapper will already
- ** hold the STATIC_MEM mutex when the routines here are invoked. */
- mem.mutex = sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_MEM);
- }
- return SQLITE_OK;
-}
-
-/*
-** Deinitialize the memory allocation subsystem.
-*/
-static void sqlite3MemShutdown(void *NotUsed){
- UNUSED_PARAMETER(NotUsed);
- mem.mutex = 0;
-}
-
-/*
-** Round up a request size to the next valid allocation size.
-*/
-static int sqlite3MemRoundup(int n){
- return ROUND8(n);
-}
-
-/*
-** Fill a buffer with pseudo-random bytes. This is used to preset
-** the content of a new memory allocation to unpredictable values and
-** to clear the content of a freed allocation to unpredictable values.
-*/
-static void randomFill(char *pBuf, int nByte){
- unsigned int x, y, r;
- x = SQLITE_PTR_TO_INT(pBuf);
- y = nByte | 1;
- while( nByte >= 4 ){
- x = (x>>1) ^ (-(int)(x&1) & 0xd0000001);
- y = y*1103515245 + 12345;
- r = x ^ y;
- *(int*)pBuf = r;
- pBuf += 4;
- nByte -= 4;
- }
- while( nByte-- > 0 ){
- x = (x>>1) ^ (-(int)(x&1) & 0xd0000001);
- y = y*1103515245 + 12345;
- r = x ^ y;
- *(pBuf++) = r & 0xff;
- }
-}
-
-/*
-** Allocate nByte bytes of memory.
-*/
-static void *sqlite3MemMalloc(int nByte){
- struct MemBlockHdr *pHdr;
- void **pBt;
- char *z;
- int *pInt;
- void *p = 0;
- int totalSize;
- int nReserve;
- sqlite3_mutex_enter(mem.mutex);
- assert( mem.disallow==0 );
- nReserve = ROUND8(nByte);
- totalSize = nReserve + sizeof(*pHdr) + sizeof(int) +
- mem.nBacktrace*sizeof(void*) + mem.nTitle;
- p = malloc(totalSize);
- if( p ){
- z = p;
- pBt = (void**)&z[mem.nTitle];
- pHdr = (struct MemBlockHdr*)&pBt[mem.nBacktrace];
- pHdr->pNext = 0;
- pHdr->pPrev = mem.pLast;
- if( mem.pLast ){
- mem.pLast->pNext = pHdr;
- }else{
- mem.pFirst = pHdr;
- }
- mem.pLast = pHdr;
- pHdr->iForeGuard = FOREGUARD;
- pHdr->eType = MEMTYPE_HEAP;
- pHdr->nBacktraceSlots = mem.nBacktrace;
- pHdr->nTitle = mem.nTitle;
- if( mem.nBacktrace ){
- void *aAddr[40];
- pHdr->nBacktrace = backtrace(aAddr, mem.nBacktrace+1)-1;
- memcpy(pBt, &aAddr[1], pHdr->nBacktrace*sizeof(void*));
- assert(pBt[0]);
- if( mem.xBacktrace ){
- mem.xBacktrace(nByte, pHdr->nBacktrace-1, &aAddr[1]);
- }
- }else{
- pHdr->nBacktrace = 0;
- }
- if( mem.nTitle ){
- memcpy(z, mem.zTitle, mem.nTitle);
- }
- pHdr->iSize = nByte;
- adjustStats(nByte, +1);
- pInt = (int*)&pHdr[1];
- pInt[nReserve/sizeof(int)] = REARGUARD;
- randomFill((char*)pInt, nByte);
- memset(((char*)pInt)+nByte, 0x65, nReserve-nByte);
- p = (void*)pInt;
- }
- sqlite3_mutex_leave(mem.mutex);
- return p;
-}
-
-/*
-** Free memory.
-*/
-static void sqlite3MemFree(void *pPrior){
- struct MemBlockHdr *pHdr;
- void **pBt;
- char *z;
- assert( sqlite3GlobalConfig.bMemstat || sqlite3GlobalConfig.bCoreMutex==0
- || mem.mutex!=0 );
- pHdr = sqlite3MemsysGetHeader(pPrior);
- pBt = (void**)pHdr;
- pBt -= pHdr->nBacktraceSlots;
- sqlite3_mutex_enter(mem.mutex);
- if( pHdr->pPrev ){
- assert( pHdr->pPrev->pNext==pHdr );
- pHdr->pPrev->pNext = pHdr->pNext;
- }else{
- assert( mem.pFirst==pHdr );
- mem.pFirst = pHdr->pNext;
- }
- if( pHdr->pNext ){
- assert( pHdr->pNext->pPrev==pHdr );
- pHdr->pNext->pPrev = pHdr->pPrev;
- }else{
- assert( mem.pLast==pHdr );
- mem.pLast = pHdr->pPrev;
- }
- z = (char*)pBt;
- z -= pHdr->nTitle;
- adjustStats((int)pHdr->iSize, -1);
- randomFill(z, sizeof(void*)*pHdr->nBacktraceSlots + sizeof(*pHdr) +
- (int)pHdr->iSize + sizeof(int) + pHdr->nTitle);
- free(z);
- sqlite3_mutex_leave(mem.mutex);
-}
-
-/*
-** Change the size of an existing memory allocation.
-**
-** For this debugging implementation, we *always* make a copy of the
-** allocation into a new place in memory. In this way, if the
-** higher level code is using pointer to the old allocation, it is
-** much more likely to break and we are much more liking to find
-** the error.
-*/
-static void *sqlite3MemRealloc(void *pPrior, int nByte){
- struct MemBlockHdr *pOldHdr;
- void *pNew;
- assert( mem.disallow==0 );
- assert( (nByte & 7)==0 ); /* EV: R-46199-30249 */
- pOldHdr = sqlite3MemsysGetHeader(pPrior);
- pNew = sqlite3MemMalloc(nByte);
- if( pNew ){
- memcpy(pNew, pPrior, (int)(nByteiSize ? nByte : pOldHdr->iSize));
- if( nByte>pOldHdr->iSize ){
- randomFill(&((char*)pNew)[pOldHdr->iSize], nByte - (int)pOldHdr->iSize);
- }
- sqlite3MemFree(pPrior);
- }
- return pNew;
-}
-
-/*
-** Populate the low-level memory allocation function pointers in
-** sqlite3GlobalConfig.m with pointers to the routines in this file.
-*/
-SQLITE_PRIVATE void sqlite3MemSetDefault(void){
- static const sqlite3_mem_methods defaultMethods = {
- sqlite3MemMalloc,
- sqlite3MemFree,
- sqlite3MemRealloc,
- sqlite3MemSize,
- sqlite3MemRoundup,
- sqlite3MemInit,
- sqlite3MemShutdown,
- 0
- };
- sqlite3_config(SQLITE_CONFIG_MALLOC, &defaultMethods);
-}
-
-/*
-** Set the "type" of an allocation.
-*/
-SQLITE_PRIVATE void sqlite3MemdebugSetType(void *p, u8 eType){
- if( p && sqlite3GlobalConfig.m.xMalloc==sqlite3MemMalloc ){
- struct MemBlockHdr *pHdr;
- pHdr = sqlite3MemsysGetHeader(p);
- assert( pHdr->iForeGuard==FOREGUARD );
- pHdr->eType = eType;
- }
-}
-
-/*
-** Return TRUE if the mask of type in eType matches the type of the
-** allocation p. Also return true if p==NULL.
-**
-** This routine is designed for use within an assert() statement, to
-** verify the type of an allocation. For example:
-**
-** assert( sqlite3MemdebugHasType(p, MEMTYPE_HEAP) );
-*/
-SQLITE_PRIVATE int sqlite3MemdebugHasType(void *p, u8 eType){
- int rc = 1;
- if( p && sqlite3GlobalConfig.m.xMalloc==sqlite3MemMalloc ){
- struct MemBlockHdr *pHdr;
- pHdr = sqlite3MemsysGetHeader(p);
- assert( pHdr->iForeGuard==FOREGUARD ); /* Allocation is valid */
- if( (pHdr->eType&eType)==0 ){
- rc = 0;
- }
- }
- return rc;
-}
-
-/*
-** Return TRUE if the mask of type in eType matches no bits of the type of the
-** allocation p. Also return true if p==NULL.
-**
-** This routine is designed for use within an assert() statement, to
-** verify the type of an allocation. For example:
-**
-** assert( sqlite3MemdebugNoType(p, MEMTYPE_LOOKASIDE) );
-*/
-SQLITE_PRIVATE int sqlite3MemdebugNoType(void *p, u8 eType){
- int rc = 1;
- if( p && sqlite3GlobalConfig.m.xMalloc==sqlite3MemMalloc ){
- struct MemBlockHdr *pHdr;
- pHdr = sqlite3MemsysGetHeader(p);
- assert( pHdr->iForeGuard==FOREGUARD ); /* Allocation is valid */
- if( (pHdr->eType&eType)!=0 ){
- rc = 0;
- }
- }
- return rc;
-}
-
-/*
-** Set the number of backtrace levels kept for each allocation.
-** A value of zero turns off backtracing. The number is always rounded
-** up to a multiple of 2.
-*/
-SQLITE_PRIVATE void sqlite3MemdebugBacktrace(int depth){
- if( depth<0 ){ depth = 0; }
- if( depth>20 ){ depth = 20; }
- depth = (depth+1)&0xfe;
- mem.nBacktrace = depth;
-}
-
-SQLITE_PRIVATE void sqlite3MemdebugBacktraceCallback(void (*xBacktrace)(int, int, void **)){
- mem.xBacktrace = xBacktrace;
-}
-
-/*
-** Set the title string for subsequent allocations.
-*/
-SQLITE_PRIVATE void sqlite3MemdebugSettitle(const char *zTitle){
- unsigned int n = sqlite3Strlen30(zTitle) + 1;
- sqlite3_mutex_enter(mem.mutex);
- if( n>=sizeof(mem.zTitle) ) n = sizeof(mem.zTitle)-1;
- memcpy(mem.zTitle, zTitle, n);
- mem.zTitle[n] = 0;
- mem.nTitle = ROUND8(n);
- sqlite3_mutex_leave(mem.mutex);
-}
-
-SQLITE_PRIVATE void sqlite3MemdebugSync(){
- struct MemBlockHdr *pHdr;
- for(pHdr=mem.pFirst; pHdr; pHdr=pHdr->pNext){
- void **pBt = (void**)pHdr;
- pBt -= pHdr->nBacktraceSlots;
- mem.xBacktrace((int)pHdr->iSize, pHdr->nBacktrace-1, &pBt[1]);
- }
-}
-
-/*
-** Open the file indicated and write a log of all unfreed memory
-** allocations into that log.
-*/
-SQLITE_PRIVATE void sqlite3MemdebugDump(const char *zFilename){
- FILE *out;
- struct MemBlockHdr *pHdr;
- void **pBt;
- int i;
- out = fopen(zFilename, "w");
- if( out==0 ){
- fprintf(stderr, "** Unable to output memory debug output log: %s **\n",
- zFilename);
- return;
- }
- for(pHdr=mem.pFirst; pHdr; pHdr=pHdr->pNext){
- char *z = (char*)pHdr;
- z -= pHdr->nBacktraceSlots*sizeof(void*) + pHdr->nTitle;
- fprintf(out, "**** %lld bytes at %p from %s ****\n",
- pHdr->iSize, &pHdr[1], pHdr->nTitle ? z : "???");
- if( pHdr->nBacktrace ){
- fflush(out);
- pBt = (void**)pHdr;
- pBt -= pHdr->nBacktraceSlots;
- backtrace_symbols_fd(pBt, pHdr->nBacktrace, fileno(out));
- fprintf(out, "\n");
- }
- }
- fprintf(out, "COUNTS:\n");
- for(i=0; i=1 );
- size = mem3.aPool[i-1].u.hdr.size4x/4;
- assert( size==mem3.aPool[i+size-1].u.hdr.prevSize );
- assert( size>=2 );
- if( size <= MX_SMALL ){
- memsys3UnlinkFromList(i, &mem3.aiSmall[size-2]);
- }else{
- hash = size % N_HASH;
- memsys3UnlinkFromList(i, &mem3.aiHash[hash]);
- }
-}
-
-/*
-** Link the chunk at mem3.aPool[i] so that is on the list rooted
-** at *pRoot.
-*/
-static void memsys3LinkIntoList(u32 i, u32 *pRoot){
- assert( sqlite3_mutex_held(mem3.mutex) );
- mem3.aPool[i].u.list.next = *pRoot;
- mem3.aPool[i].u.list.prev = 0;
- if( *pRoot ){
- mem3.aPool[*pRoot].u.list.prev = i;
- }
- *pRoot = i;
-}
-
-/*
-** Link the chunk at index i into either the appropriate
-** small chunk list, or into the large chunk hash table.
-*/
-static void memsys3Link(u32 i){
- u32 size, hash;
- assert( sqlite3_mutex_held(mem3.mutex) );
- assert( i>=1 );
- assert( (mem3.aPool[i-1].u.hdr.size4x & 1)==0 );
- size = mem3.aPool[i-1].u.hdr.size4x/4;
- assert( size==mem3.aPool[i+size-1].u.hdr.prevSize );
- assert( size>=2 );
- if( size <= MX_SMALL ){
- memsys3LinkIntoList(i, &mem3.aiSmall[size-2]);
- }else{
- hash = size % N_HASH;
- memsys3LinkIntoList(i, &mem3.aiHash[hash]);
- }
-}
-
-/*
-** If the STATIC_MEM mutex is not already held, obtain it now. The mutex
-** will already be held (obtained by code in malloc.c) if
-** sqlite3GlobalConfig.bMemStat is true.
-*/
-static void memsys3Enter(void){
- if( sqlite3GlobalConfig.bMemstat==0 && mem3.mutex==0 ){
- mem3.mutex = sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_MEM);
- }
- sqlite3_mutex_enter(mem3.mutex);
-}
-static void memsys3Leave(void){
- sqlite3_mutex_leave(mem3.mutex);
-}
-
-/*
-** Called when we are unable to satisfy an allocation of nBytes.
-*/
-static void memsys3OutOfMemory(int nByte){
- if( !mem3.alarmBusy ){
- mem3.alarmBusy = 1;
- assert( sqlite3_mutex_held(mem3.mutex) );
- sqlite3_mutex_leave(mem3.mutex);
- sqlite3_release_memory(nByte);
- sqlite3_mutex_enter(mem3.mutex);
- mem3.alarmBusy = 0;
- }
-}
-
-
-/*
-** Chunk i is a free chunk that has been unlinked. Adjust its
-** size parameters for check-out and return a pointer to the
-** user portion of the chunk.
-*/
-static void *memsys3Checkout(u32 i, u32 nBlock){
- u32 x;
- assert( sqlite3_mutex_held(mem3.mutex) );
- assert( i>=1 );
- assert( mem3.aPool[i-1].u.hdr.size4x/4==nBlock );
- assert( mem3.aPool[i+nBlock-1].u.hdr.prevSize==nBlock );
- x = mem3.aPool[i-1].u.hdr.size4x;
- mem3.aPool[i-1].u.hdr.size4x = nBlock*4 | 1 | (x&2);
- mem3.aPool[i+nBlock-1].u.hdr.prevSize = nBlock;
- mem3.aPool[i+nBlock-1].u.hdr.size4x |= 2;
- return &mem3.aPool[i];
-}
-
-/*
-** Carve a piece off of the end of the mem3.iMaster free chunk.
-** Return a pointer to the new allocation. Or, if the master chunk
-** is not large enough, return 0.
-*/
-static void *memsys3FromMaster(u32 nBlock){
- assert( sqlite3_mutex_held(mem3.mutex) );
- assert( mem3.szMaster>=nBlock );
- if( nBlock>=mem3.szMaster-1 ){
- /* Use the entire master */
- void *p = memsys3Checkout(mem3.iMaster, mem3.szMaster);
- mem3.iMaster = 0;
- mem3.szMaster = 0;
- mem3.mnMaster = 0;
- return p;
- }else{
- /* Split the master block. Return the tail. */
- u32 newi, x;
- newi = mem3.iMaster + mem3.szMaster - nBlock;
- assert( newi > mem3.iMaster+1 );
- mem3.aPool[mem3.iMaster+mem3.szMaster-1].u.hdr.prevSize = nBlock;
- mem3.aPool[mem3.iMaster+mem3.szMaster-1].u.hdr.size4x |= 2;
- mem3.aPool[newi-1].u.hdr.size4x = nBlock*4 + 1;
- mem3.szMaster -= nBlock;
- mem3.aPool[newi-1].u.hdr.prevSize = mem3.szMaster;
- x = mem3.aPool[mem3.iMaster-1].u.hdr.size4x & 2;
- mem3.aPool[mem3.iMaster-1].u.hdr.size4x = mem3.szMaster*4 | x;
- if( mem3.szMaster < mem3.mnMaster ){
- mem3.mnMaster = mem3.szMaster;
- }
- return (void*)&mem3.aPool[newi];
- }
-}
-
-/*
-** *pRoot is the head of a list of free chunks of the same size
-** or same size hash. In other words, *pRoot is an entry in either
-** mem3.aiSmall[] or mem3.aiHash[].
-**
-** This routine examines all entries on the given list and tries
-** to coalesce each entries with adjacent free chunks.
-**
-** If it sees a chunk that is larger than mem3.iMaster, it replaces
-** the current mem3.iMaster with the new larger chunk. In order for
-** this mem3.iMaster replacement to work, the master chunk must be
-** linked into the hash tables. That is not the normal state of
-** affairs, of course. The calling routine must link the master
-** chunk before invoking this routine, then must unlink the (possibly
-** changed) master chunk once this routine has finished.
-*/
-static void memsys3Merge(u32 *pRoot){
- u32 iNext, prev, size, i, x;
-
- assert( sqlite3_mutex_held(mem3.mutex) );
- for(i=*pRoot; i>0; i=iNext){
- iNext = mem3.aPool[i].u.list.next;
- size = mem3.aPool[i-1].u.hdr.size4x;
- assert( (size&1)==0 );
- if( (size&2)==0 ){
- memsys3UnlinkFromList(i, pRoot);
- assert( i > mem3.aPool[i-1].u.hdr.prevSize );
- prev = i - mem3.aPool[i-1].u.hdr.prevSize;
- if( prev==iNext ){
- iNext = mem3.aPool[prev].u.list.next;
- }
- memsys3Unlink(prev);
- size = i + size/4 - prev;
- x = mem3.aPool[prev-1].u.hdr.size4x & 2;
- mem3.aPool[prev-1].u.hdr.size4x = size*4 | x;
- mem3.aPool[prev+size-1].u.hdr.prevSize = size;
- memsys3Link(prev);
- i = prev;
- }else{
- size /= 4;
- }
- if( size>mem3.szMaster ){
- mem3.iMaster = i;
- mem3.szMaster = size;
- }
- }
-}
-
-/*
-** Return a block of memory of at least nBytes in size.
-** Return NULL if unable.
-**
-** This function assumes that the necessary mutexes, if any, are
-** already held by the caller. Hence "Unsafe".
-*/
-static void *memsys3MallocUnsafe(int nByte){
- u32 i;
- u32 nBlock;
- u32 toFree;
-
- assert( sqlite3_mutex_held(mem3.mutex) );
- assert( sizeof(Mem3Block)==8 );
- if( nByte<=12 ){
- nBlock = 2;
- }else{
- nBlock = (nByte + 11)/8;
- }
- assert( nBlock>=2 );
-
- /* STEP 1:
- ** Look for an entry of the correct size in either the small
- ** chunk table or in the large chunk hash table. This is
- ** successful most of the time (about 9 times out of 10).
- */
- if( nBlock <= MX_SMALL ){
- i = mem3.aiSmall[nBlock-2];
- if( i>0 ){
- memsys3UnlinkFromList(i, &mem3.aiSmall[nBlock-2]);
- return memsys3Checkout(i, nBlock);
- }
- }else{
- int hash = nBlock % N_HASH;
- for(i=mem3.aiHash[hash]; i>0; i=mem3.aPool[i].u.list.next){
- if( mem3.aPool[i-1].u.hdr.size4x/4==nBlock ){
- memsys3UnlinkFromList(i, &mem3.aiHash[hash]);
- return memsys3Checkout(i, nBlock);
- }
- }
- }
-
- /* STEP 2:
- ** Try to satisfy the allocation by carving a piece off of the end
- ** of the master chunk. This step usually works if step 1 fails.
- */
- if( mem3.szMaster>=nBlock ){
- return memsys3FromMaster(nBlock);
- }
-
-
- /* STEP 3:
- ** Loop through the entire memory pool. Coalesce adjacent free
- ** chunks. Recompute the master chunk as the largest free chunk.
- ** Then try again to satisfy the allocation by carving a piece off
- ** of the end of the master chunk. This step happens very
- ** rarely (we hope!)
- */
- for(toFree=nBlock*16; toFree<(mem3.nPool*16); toFree *= 2){
- memsys3OutOfMemory(toFree);
- if( mem3.iMaster ){
- memsys3Link(mem3.iMaster);
- mem3.iMaster = 0;
- mem3.szMaster = 0;
- }
- for(i=0; i=nBlock ){
- return memsys3FromMaster(nBlock);
- }
- }
- }
-
- /* If none of the above worked, then we fail. */
- return 0;
-}
-
-/*
-** Free an outstanding memory allocation.
-**
-** This function assumes that the necessary mutexes, if any, are
-** already held by the caller. Hence "Unsafe".
-*/
-static void memsys3FreeUnsafe(void *pOld){
- Mem3Block *p = (Mem3Block*)pOld;
- int i;
- u32 size, x;
- assert( sqlite3_mutex_held(mem3.mutex) );
- assert( p>mem3.aPool && p<&mem3.aPool[mem3.nPool] );
- i = p - mem3.aPool;
- assert( (mem3.aPool[i-1].u.hdr.size4x&1)==1 );
- size = mem3.aPool[i-1].u.hdr.size4x/4;
- assert( i+size<=mem3.nPool+1 );
- mem3.aPool[i-1].u.hdr.size4x &= ~1;
- mem3.aPool[i+size-1].u.hdr.prevSize = size;
- mem3.aPool[i+size-1].u.hdr.size4x &= ~2;
- memsys3Link(i);
-
- /* Try to expand the master using the newly freed chunk */
- if( mem3.iMaster ){
- while( (mem3.aPool[mem3.iMaster-1].u.hdr.size4x&2)==0 ){
- size = mem3.aPool[mem3.iMaster-1].u.hdr.prevSize;
- mem3.iMaster -= size;
- mem3.szMaster += size;
- memsys3Unlink(mem3.iMaster);
- x = mem3.aPool[mem3.iMaster-1].u.hdr.size4x & 2;
- mem3.aPool[mem3.iMaster-1].u.hdr.size4x = mem3.szMaster*4 | x;
- mem3.aPool[mem3.iMaster+mem3.szMaster-1].u.hdr.prevSize = mem3.szMaster;
- }
- x = mem3.aPool[mem3.iMaster-1].u.hdr.size4x & 2;
- while( (mem3.aPool[mem3.iMaster+mem3.szMaster-1].u.hdr.size4x&1)==0 ){
- memsys3Unlink(mem3.iMaster+mem3.szMaster);
- mem3.szMaster += mem3.aPool[mem3.iMaster+mem3.szMaster-1].u.hdr.size4x/4;
- mem3.aPool[mem3.iMaster-1].u.hdr.size4x = mem3.szMaster*4 | x;
- mem3.aPool[mem3.iMaster+mem3.szMaster-1].u.hdr.prevSize = mem3.szMaster;
- }
- }
-}
-
-/*
-** Return the size of an outstanding allocation, in bytes. The
-** size returned omits the 8-byte header overhead. This only
-** works for chunks that are currently checked out.
-*/
-static int memsys3Size(void *p){
- Mem3Block *pBlock;
- assert( p!=0 );
- pBlock = (Mem3Block*)p;
- assert( (pBlock[-1].u.hdr.size4x&1)!=0 );
- return (pBlock[-1].u.hdr.size4x&~3)*2 - 4;
-}
-
-/*
-** Round up a request size to the next valid allocation size.
-*/
-static int memsys3Roundup(int n){
- if( n<=12 ){
- return 12;
- }else{
- return ((n+11)&~7) - 4;
- }
-}
-
-/*
-** Allocate nBytes of memory.
-*/
-static void *memsys3Malloc(int nBytes){
- sqlite3_int64 *p;
- assert( nBytes>0 ); /* malloc.c filters out 0 byte requests */
- memsys3Enter();
- p = memsys3MallocUnsafe(nBytes);
- memsys3Leave();
- return (void*)p;
-}
-
-/*
-** Free memory.
-*/
-static void memsys3Free(void *pPrior){
- assert( pPrior );
- memsys3Enter();
- memsys3FreeUnsafe(pPrior);
- memsys3Leave();
-}
-
-/*
-** Change the size of an existing memory allocation
-*/
-static void *memsys3Realloc(void *pPrior, int nBytes){
- int nOld;
- void *p;
- if( pPrior==0 ){
- return sqlite3_malloc(nBytes);
- }
- if( nBytes<=0 ){
- sqlite3_free(pPrior);
- return 0;
- }
- nOld = memsys3Size(pPrior);
- if( nBytes<=nOld && nBytes>=nOld-128 ){
- return pPrior;
- }
- memsys3Enter();
- p = memsys3MallocUnsafe(nBytes);
- if( p ){
- if( nOld>1)!=(size&1) ){
- fprintf(out, "%p tail checkout bit is incorrect\n", &mem3.aPool[i]);
- assert( 0 );
- break;
- }
- if( size&1 ){
- fprintf(out, "%p %6d bytes checked out\n", &mem3.aPool[i], (size/4)*8-8);
- }else{
- fprintf(out, "%p %6d bytes free%s\n", &mem3.aPool[i], (size/4)*8-8,
- i==mem3.iMaster ? " **master**" : "");
- }
- }
- for(i=0; i0; j=mem3.aPool[j].u.list.next){
- fprintf(out, " %p(%d)", &mem3.aPool[j],
- (mem3.aPool[j-1].u.hdr.size4x/4)*8-8);
- }
- fprintf(out, "\n");
- }
- for(i=0; i0; j=mem3.aPool[j].u.list.next){
- fprintf(out, " %p(%d)", &mem3.aPool[j],
- (mem3.aPool[j-1].u.hdr.size4x/4)*8-8);
- }
- fprintf(out, "\n");
- }
- fprintf(out, "master=%d\n", mem3.iMaster);
- fprintf(out, "nowUsed=%d\n", mem3.nPool*8 - mem3.szMaster*8);
- fprintf(out, "mxUsed=%d\n", mem3.nPool*8 - mem3.mnMaster*8);
- sqlite3_mutex_leave(mem3.mutex);
- if( out==stdout ){
- fflush(stdout);
- }else{
- fclose(out);
- }
-#else
- UNUSED_PARAMETER(zFilename);
-#endif
-}
-
-/*
-** This routine is the only routine in this file with external
-** linkage.
-**
-** Populate the low-level memory allocation function pointers in
-** sqlite3GlobalConfig.m with pointers to the routines in this file. The
-** arguments specify the block of memory to manage.
-**
-** This routine is only called by sqlite3_config(), and therefore
-** is not required to be threadsafe (it is not).
-*/
-SQLITE_PRIVATE const sqlite3_mem_methods *sqlite3MemGetMemsys3(void){
- static const sqlite3_mem_methods mempoolMethods = {
- memsys3Malloc,
- memsys3Free,
- memsys3Realloc,
- memsys3Size,
- memsys3Roundup,
- memsys3Init,
- memsys3Shutdown,
- 0
- };
- return &mempoolMethods;
-}
-
-#endif /* SQLITE_ENABLE_MEMSYS3 */
-
-/************** End of mem3.c ************************************************/
-/************** Begin file mem5.c ********************************************/
-/*
-** 2007 October 14
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** This file contains the C functions that implement a memory
-** allocation subsystem for use by SQLite.
-**
-** This version of the memory allocation subsystem omits all
-** use of malloc(). The application gives SQLite a block of memory
-** before calling sqlite3_initialize() from which allocations
-** are made and returned by the xMalloc() and xRealloc()
-** implementations. Once sqlite3_initialize() has been called,
-** the amount of memory available to SQLite is fixed and cannot
-** be changed.
-**
-** This version of the memory allocation subsystem is included
-** in the build only if SQLITE_ENABLE_MEMSYS5 is defined.
-**
-** This memory allocator uses the following algorithm:
-**
-** 1. All memory allocation sizes are rounded up to a power of 2.
-**
-** 2. If two adjacent free blocks are the halves of a larger block,
-** then the two blocks are coalesced into the single larger block.
-**
-** 3. New memory is allocated from the first available free block.
-**
-** This algorithm is described in: J. M. Robson. "Bounds for Some Functions
-** Concerning Dynamic Storage Allocation". Journal of the Association for
-** Computing Machinery, Volume 21, Number 8, July 1974, pages 491-499.
-**
-** Let n be the size of the largest allocation divided by the minimum
-** allocation size (after rounding all sizes up to a power of 2.) Let M
-** be the maximum amount of memory ever outstanding at one time. Let
-** N be the total amount of memory available for allocation. Robson
-** proved that this memory allocator will never breakdown due to
-** fragmentation as long as the following constraint holds:
-**
-** N >= M*(1 + log2(n)/2) - n + 1
-**
-** The sqlite3_status() logic tracks the maximum values of n and M so
-** that an application can, at any time, verify this constraint.
-*/
-/* #include "sqliteInt.h" */
-
-/*
-** This version of the memory allocator is used only when
-** SQLITE_ENABLE_MEMSYS5 is defined.
-*/
-#ifdef SQLITE_ENABLE_MEMSYS5
-
-/*
-** A minimum allocation is an instance of the following structure.
-** Larger allocations are an array of these structures where the
-** size of the array is a power of 2.
-**
-** The size of this object must be a power of two. That fact is
-** verified in memsys5Init().
-*/
-typedef struct Mem5Link Mem5Link;
-struct Mem5Link {
- int next; /* Index of next free chunk */
- int prev; /* Index of previous free chunk */
-};
-
-/*
-** Maximum size of any allocation is ((1<=0 && i=0 && iLogsize<=LOGMAX );
- assert( (mem5.aCtrl[i] & CTRL_LOGSIZE)==iLogsize );
-
- next = MEM5LINK(i)->next;
- prev = MEM5LINK(i)->prev;
- if( prev<0 ){
- mem5.aiFreelist[iLogsize] = next;
- }else{
- MEM5LINK(prev)->next = next;
- }
- if( next>=0 ){
- MEM5LINK(next)->prev = prev;
- }
-}
-
-/*
-** Link the chunk at mem5.aPool[i] so that is on the iLogsize
-** free list.
-*/
-static void memsys5Link(int i, int iLogsize){
- int x;
- assert( sqlite3_mutex_held(mem5.mutex) );
- assert( i>=0 && i=0 && iLogsize<=LOGMAX );
- assert( (mem5.aCtrl[i] & CTRL_LOGSIZE)==iLogsize );
-
- x = MEM5LINK(i)->next = mem5.aiFreelist[iLogsize];
- MEM5LINK(i)->prev = -1;
- if( x>=0 ){
- assert( xprev = i;
- }
- mem5.aiFreelist[iLogsize] = i;
-}
-
-/*
-** Obtain or release the mutex needed to access global data structures.
-*/
-static void memsys5Enter(void){
- sqlite3_mutex_enter(mem5.mutex);
-}
-static void memsys5Leave(void){
- sqlite3_mutex_leave(mem5.mutex);
-}
-
-/*
-** Return the size of an outstanding allocation, in bytes.
-** This only works for chunks that are currently checked out.
-*/
-static int memsys5Size(void *p){
- int iSize, i;
- assert( p!=0 );
- i = (int)(((u8 *)p-mem5.zPool)/mem5.szAtom);
- assert( i>=0 && i0 );
-
- /* No more than 1GiB per allocation */
- if( nByte > 0x40000000 ) return 0;
-
-#if defined(SQLITE_DEBUG) || defined(SQLITE_TEST)
- /* Keep track of the maximum allocation request. Even unfulfilled
- ** requests are counted */
- if( (u32)nByte>mem5.maxRequest ){
- mem5.maxRequest = nByte;
- }
-#endif
-
-
- /* Round nByte up to the next valid power of two */
- for(iFullSz=mem5.szAtom,iLogsize=0; iFullSzLOGMAX ){
- testcase( sqlite3GlobalConfig.xLog!=0 );
- sqlite3_log(SQLITE_NOMEM, "failed to allocate %u bytes", nByte);
- return 0;
- }
- i = mem5.aiFreelist[iBin];
- memsys5Unlink(i, iBin);
- while( iBin>iLogsize ){
- int newSize;
-
- iBin--;
- newSize = 1 << iBin;
- mem5.aCtrl[i+newSize] = CTRL_FREE | iBin;
- memsys5Link(i+newSize, iBin);
- }
- mem5.aCtrl[i] = iLogsize;
-
-#if defined(SQLITE_DEBUG) || defined(SQLITE_TEST)
- /* Update allocator performance statistics. */
- mem5.nAlloc++;
- mem5.totalAlloc += iFullSz;
- mem5.totalExcess += iFullSz - nByte;
- mem5.currentCount++;
- mem5.currentOut += iFullSz;
- if( mem5.maxCount=0 && iBlock0 );
- assert( mem5.currentOut>=(size*mem5.szAtom) );
- mem5.currentCount--;
- mem5.currentOut -= size*mem5.szAtom;
- assert( mem5.currentOut>0 || mem5.currentCount==0 );
- assert( mem5.currentCount>0 || mem5.currentOut==0 );
-#endif
-
- mem5.aCtrl[iBlock] = CTRL_FREE | iLogsize;
- while( ALWAYS(iLogsize>iLogsize) & 1 ){
- iBuddy = iBlock - size;
- assert( iBuddy>=0 );
- }else{
- iBuddy = iBlock + size;
- if( iBuddy>=mem5.nBlock ) break;
- }
- if( mem5.aCtrl[iBuddy]!=(CTRL_FREE | iLogsize) ) break;
- memsys5Unlink(iBuddy, iLogsize);
- iLogsize++;
- if( iBuddy0 ){
- memsys5Enter();
- p = memsys5MallocUnsafe(nBytes);
- memsys5Leave();
- }
- return (void*)p;
-}
-
-/*
-** Free memory.
-**
-** The outer layer memory allocator prevents this routine from
-** being called with pPrior==0.
-*/
-static void memsys5Free(void *pPrior){
- assert( pPrior!=0 );
- memsys5Enter();
- memsys5FreeUnsafe(pPrior);
- memsys5Leave();
-}
-
-/*
-** Change the size of an existing memory allocation.
-**
-** The outer layer memory allocator prevents this routine from
-** being called with pPrior==0.
-**
-** nBytes is always a value obtained from a prior call to
-** memsys5Round(). Hence nBytes is always a non-negative power
-** of two. If nBytes==0 that means that an oversize allocation
-** (an allocation larger than 0x40000000) was requested and this
-** routine should return 0 without freeing pPrior.
-*/
-static void *memsys5Realloc(void *pPrior, int nBytes){
- int nOld;
- void *p;
- assert( pPrior!=0 );
- assert( (nBytes&(nBytes-1))==0 ); /* EV: R-46199-30249 */
- assert( nBytes>=0 );
- if( nBytes==0 ){
- return 0;
- }
- nOld = memsys5Size(pPrior);
- if( nBytes<=nOld ){
- return pPrior;
- }
- p = memsys5Malloc(nBytes);
- if( p ){
- memcpy(p, pPrior, nOld);
- memsys5Free(pPrior);
- }
- return p;
-}
-
-/*
-** Round up a request size to the next valid allocation size. If
-** the allocation is too large to be handled by this allocation system,
-** return 0.
-**
-** All allocations must be a power of two and must be expressed by a
-** 32-bit signed integer. Hence the largest allocation is 0x40000000
-** or 1073741824 bytes.
-*/
-static int memsys5Roundup(int n){
- int iFullSz;
- if( n > 0x40000000 ) return 0;
- for(iFullSz=mem5.szAtom; iFullSz 0
-** memsys5Log(2) -> 1
-** memsys5Log(4) -> 2
-** memsys5Log(5) -> 3
-** memsys5Log(8) -> 3
-** memsys5Log(9) -> 4
-*/
-static int memsys5Log(int iValue){
- int iLog;
- for(iLog=0; (iLog<(int)((sizeof(int)*8)-1)) && (1<mem5.szAtom ){
- mem5.szAtom = mem5.szAtom << 1;
- }
-
- mem5.nBlock = (nByte / (mem5.szAtom+sizeof(u8)));
- mem5.zPool = zByte;
- mem5.aCtrl = (u8 *)&mem5.zPool[mem5.nBlock*mem5.szAtom];
-
- for(ii=0; ii<=LOGMAX; ii++){
- mem5.aiFreelist[ii] = -1;
- }
-
- iOffset = 0;
- for(ii=LOGMAX; ii>=0; ii--){
- int nAlloc = (1<mem5.nBlock);
- }
-
- /* If a mutex is required for normal operation, allocate one */
- if( sqlite3GlobalConfig.bMemstat==0 ){
- mem5.mutex = sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_MEM);
- }
-
- return SQLITE_OK;
-}
-
-/*
-** Deinitialize this module.
-*/
-static void memsys5Shutdown(void *NotUsed){
- UNUSED_PARAMETER(NotUsed);
- mem5.mutex = 0;
- return;
-}
-
-#ifdef SQLITE_TEST
-/*
-** Open the file indicated and write a log of all unfreed memory
-** allocations into that log.
-*/
-SQLITE_PRIVATE void sqlite3Memsys5Dump(const char *zFilename){
- FILE *out;
- int i, j, n;
- int nMinLog;
-
- if( zFilename==0 || zFilename[0]==0 ){
- out = stdout;
- }else{
- out = fopen(zFilename, "w");
- if( out==0 ){
- fprintf(stderr, "** Unable to output memory debug output log: %s **\n",
- zFilename);
- return;
- }
- }
- memsys5Enter();
- nMinLog = memsys5Log(mem5.szAtom);
- for(i=0; i<=LOGMAX && i+nMinLog<32; i++){
- for(n=0, j=mem5.aiFreelist[i]; j>=0; j = MEM5LINK(j)->next, n++){}
- fprintf(out, "freelist items of size %d: %d\n", mem5.szAtom << i, n);
- }
- fprintf(out, "mem5.nAlloc = %llu\n", mem5.nAlloc);
- fprintf(out, "mem5.totalAlloc = %llu\n", mem5.totalAlloc);
- fprintf(out, "mem5.totalExcess = %llu\n", mem5.totalExcess);
- fprintf(out, "mem5.currentOut = %u\n", mem5.currentOut);
- fprintf(out, "mem5.currentCount = %u\n", mem5.currentCount);
- fprintf(out, "mem5.maxOut = %u\n", mem5.maxOut);
- fprintf(out, "mem5.maxCount = %u\n", mem5.maxCount);
- fprintf(out, "mem5.maxRequest = %u\n", mem5.maxRequest);
- memsys5Leave();
- if( out==stdout ){
- fflush(stdout);
- }else{
- fclose(out);
- }
-}
-#endif
-
-/*
-** This routine is the only routine in this file with external
-** linkage. It returns a pointer to a static sqlite3_mem_methods
-** struct populated with the memsys5 methods.
-*/
-SQLITE_PRIVATE const sqlite3_mem_methods *sqlite3MemGetMemsys5(void){
- static const sqlite3_mem_methods memsys5Methods = {
- memsys5Malloc,
- memsys5Free,
- memsys5Realloc,
- memsys5Size,
- memsys5Roundup,
- memsys5Init,
- memsys5Shutdown,
- 0
- };
- return &memsys5Methods;
-}
-
-#endif /* SQLITE_ENABLE_MEMSYS5 */
-
-/************** End of mem5.c ************************************************/
-/************** Begin file mutex.c *******************************************/
-/*
-** 2007 August 14
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** This file contains the C functions that implement mutexes.
-**
-** This file contains code that is common across all mutex implementations.
-*/
-/* #include "sqliteInt.h" */
-
-#if defined(SQLITE_DEBUG) && !defined(SQLITE_MUTEX_OMIT)
-/*
-** For debugging purposes, record when the mutex subsystem is initialized
-** and uninitialized so that we can assert() if there is an attempt to
-** allocate a mutex while the system is uninitialized.
-*/
-static SQLITE_WSD int mutexIsInit = 0;
-#endif /* SQLITE_DEBUG && !defined(SQLITE_MUTEX_OMIT) */
-
-
-#ifndef SQLITE_MUTEX_OMIT
-
-#ifdef SQLITE_ENABLE_MULTITHREADED_CHECKS
-/*
-** This block (enclosed by SQLITE_ENABLE_MULTITHREADED_CHECKS) contains
-** the implementation of a wrapper around the system default mutex
-** implementation (sqlite3DefaultMutex()).
-**
-** Most calls are passed directly through to the underlying default
-** mutex implementation. Except, if a mutex is configured by calling
-** sqlite3MutexWarnOnContention() on it, then if contention is ever
-** encountered within xMutexEnter() a warning is emitted via sqlite3_log().
-**
-** This type of mutex is used as the database handle mutex when testing
-** apps that usually use SQLITE_CONFIG_MULTITHREAD mode.
-*/
-
-/*
-** Type for all mutexes used when SQLITE_ENABLE_MULTITHREADED_CHECKS
-** is defined. Variable CheckMutex.mutex is a pointer to the real mutex
-** allocated by the system mutex implementation. Variable iType is usually set
-** to the type of mutex requested - SQLITE_MUTEX_RECURSIVE, SQLITE_MUTEX_FAST
-** or one of the static mutex identifiers. Or, if this is a recursive mutex
-** that has been configured using sqlite3MutexWarnOnContention(), it is
-** set to SQLITE_MUTEX_WARNONCONTENTION.
-*/
-typedef struct CheckMutex CheckMutex;
-struct CheckMutex {
- int iType;
- sqlite3_mutex *mutex;
-};
-
-#define SQLITE_MUTEX_WARNONCONTENTION (-1)
-
-/*
-** Pointer to real mutex methods object used by the CheckMutex
-** implementation. Set by checkMutexInit().
-*/
-static SQLITE_WSD const sqlite3_mutex_methods *pGlobalMutexMethods;
-
-#ifdef SQLITE_DEBUG
-static int checkMutexHeld(sqlite3_mutex *p){
- return pGlobalMutexMethods->xMutexHeld(((CheckMutex*)p)->mutex);
-}
-static int checkMutexNotheld(sqlite3_mutex *p){
- return pGlobalMutexMethods->xMutexNotheld(((CheckMutex*)p)->mutex);
-}
-#endif
-
-/*
-** Initialize and deinitialize the mutex subsystem.
-*/
-static int checkMutexInit(void){
- pGlobalMutexMethods = sqlite3DefaultMutex();
- return SQLITE_OK;
-}
-static int checkMutexEnd(void){
- pGlobalMutexMethods = 0;
- return SQLITE_OK;
-}
-
-/*
-** Allocate a mutex.
-*/
-static sqlite3_mutex *checkMutexAlloc(int iType){
- static CheckMutex staticMutexes[] = {
- {2, 0}, {3, 0}, {4, 0}, {5, 0},
- {6, 0}, {7, 0}, {8, 0}, {9, 0},
- {10, 0}, {11, 0}, {12, 0}, {13, 0}
- };
- CheckMutex *p = 0;
-
- assert( SQLITE_MUTEX_RECURSIVE==1 && SQLITE_MUTEX_FAST==0 );
- if( iType<2 ){
- p = sqlite3MallocZero(sizeof(CheckMutex));
- if( p==0 ) return 0;
- p->iType = iType;
- }else{
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( iType-2>=ArraySize(staticMutexes) ){
- (void)SQLITE_MISUSE_BKPT;
- return 0;
- }
-#endif
- p = &staticMutexes[iType-2];
- }
-
- if( p->mutex==0 ){
- p->mutex = pGlobalMutexMethods->xMutexAlloc(iType);
- if( p->mutex==0 ){
- if( iType<2 ){
- sqlite3_free(p);
- }
- p = 0;
- }
- }
-
- return (sqlite3_mutex*)p;
-}
-
-/*
-** Free a mutex.
-*/
-static void checkMutexFree(sqlite3_mutex *p){
- assert( SQLITE_MUTEX_RECURSIVE<2 );
- assert( SQLITE_MUTEX_FAST<2 );
- assert( SQLITE_MUTEX_WARNONCONTENTION<2 );
-
-#if SQLITE_ENABLE_API_ARMOR
- if( ((CheckMutex*)p)->iType<2 )
-#endif
- {
- CheckMutex *pCheck = (CheckMutex*)p;
- pGlobalMutexMethods->xMutexFree(pCheck->mutex);
- sqlite3_free(pCheck);
- }
-#ifdef SQLITE_ENABLE_API_ARMOR
- else{
- (void)SQLITE_MISUSE_BKPT;
- }
-#endif
-}
-
-/*
-** Enter the mutex.
-*/
-static void checkMutexEnter(sqlite3_mutex *p){
- CheckMutex *pCheck = (CheckMutex*)p;
- if( pCheck->iType==SQLITE_MUTEX_WARNONCONTENTION ){
- if( SQLITE_OK==pGlobalMutexMethods->xMutexTry(pCheck->mutex) ){
- return;
- }
- sqlite3_log(SQLITE_MISUSE,
- "illegal multi-threaded access to database connection"
- );
- }
- pGlobalMutexMethods->xMutexEnter(pCheck->mutex);
-}
-
-/*
-** Enter the mutex (do not block).
-*/
-static int checkMutexTry(sqlite3_mutex *p){
- CheckMutex *pCheck = (CheckMutex*)p;
- return pGlobalMutexMethods->xMutexTry(pCheck->mutex);
-}
-
-/*
-** Leave the mutex.
-*/
-static void checkMutexLeave(sqlite3_mutex *p){
- CheckMutex *pCheck = (CheckMutex*)p;
- pGlobalMutexMethods->xMutexLeave(pCheck->mutex);
-}
-
-sqlite3_mutex_methods const *multiThreadedCheckMutex(void){
- static const sqlite3_mutex_methods sMutex = {
- checkMutexInit,
- checkMutexEnd,
- checkMutexAlloc,
- checkMutexFree,
- checkMutexEnter,
- checkMutexTry,
- checkMutexLeave,
-#ifdef SQLITE_DEBUG
- checkMutexHeld,
- checkMutexNotheld
-#else
- 0,
- 0
-#endif
- };
- return &sMutex;
-}
-
-/*
-** Mark the SQLITE_MUTEX_RECURSIVE mutex passed as the only argument as
-** one on which there should be no contention.
-*/
-SQLITE_PRIVATE void sqlite3MutexWarnOnContention(sqlite3_mutex *p){
- if( sqlite3GlobalConfig.mutex.xMutexAlloc==checkMutexAlloc ){
- CheckMutex *pCheck = (CheckMutex*)p;
- assert( pCheck->iType==SQLITE_MUTEX_RECURSIVE );
- pCheck->iType = SQLITE_MUTEX_WARNONCONTENTION;
- }
-}
-#endif /* ifdef SQLITE_ENABLE_MULTITHREADED_CHECKS */
-
-/*
-** Initialize the mutex system.
-*/
-SQLITE_PRIVATE int sqlite3MutexInit(void){
- int rc = SQLITE_OK;
- if( !sqlite3GlobalConfig.mutex.xMutexAlloc ){
- /* If the xMutexAlloc method has not been set, then the user did not
- ** install a mutex implementation via sqlite3_config() prior to
- ** sqlite3_initialize() being called. This block copies pointers to
- ** the default implementation into the sqlite3GlobalConfig structure.
- */
- sqlite3_mutex_methods const *pFrom;
- sqlite3_mutex_methods *pTo = &sqlite3GlobalConfig.mutex;
-
- if( sqlite3GlobalConfig.bCoreMutex ){
-#ifdef SQLITE_ENABLE_MULTITHREADED_CHECKS
- pFrom = multiThreadedCheckMutex();
-#else
- pFrom = sqlite3DefaultMutex();
-#endif
- }else{
- pFrom = sqlite3NoopMutex();
- }
- pTo->xMutexInit = pFrom->xMutexInit;
- pTo->xMutexEnd = pFrom->xMutexEnd;
- pTo->xMutexFree = pFrom->xMutexFree;
- pTo->xMutexEnter = pFrom->xMutexEnter;
- pTo->xMutexTry = pFrom->xMutexTry;
- pTo->xMutexLeave = pFrom->xMutexLeave;
- pTo->xMutexHeld = pFrom->xMutexHeld;
- pTo->xMutexNotheld = pFrom->xMutexNotheld;
- sqlite3MemoryBarrier();
- pTo->xMutexAlloc = pFrom->xMutexAlloc;
- }
- assert( sqlite3GlobalConfig.mutex.xMutexInit );
- rc = sqlite3GlobalConfig.mutex.xMutexInit();
-
-#ifdef SQLITE_DEBUG
- GLOBAL(int, mutexIsInit) = 1;
-#endif
-
- return rc;
-}
-
-/*
-** Shutdown the mutex system. This call frees resources allocated by
-** sqlite3MutexInit().
-*/
-SQLITE_PRIVATE int sqlite3MutexEnd(void){
- int rc = SQLITE_OK;
- if( sqlite3GlobalConfig.mutex.xMutexEnd ){
- rc = sqlite3GlobalConfig.mutex.xMutexEnd();
- }
-
-#ifdef SQLITE_DEBUG
- GLOBAL(int, mutexIsInit) = 0;
-#endif
-
- return rc;
-}
-
-/*
-** Retrieve a pointer to a static mutex or allocate a new dynamic one.
-*/
-SQLITE_API sqlite3_mutex *sqlite3_mutex_alloc(int id){
-#ifndef SQLITE_OMIT_AUTOINIT
- if( id<=SQLITE_MUTEX_RECURSIVE && sqlite3_initialize() ) return 0;
- if( id>SQLITE_MUTEX_RECURSIVE && sqlite3MutexInit() ) return 0;
-#endif
- assert( sqlite3GlobalConfig.mutex.xMutexAlloc );
- return sqlite3GlobalConfig.mutex.xMutexAlloc(id);
-}
-
-SQLITE_PRIVATE sqlite3_mutex *sqlite3MutexAlloc(int id){
- if( !sqlite3GlobalConfig.bCoreMutex ){
- return 0;
- }
- assert( GLOBAL(int, mutexIsInit) );
- assert( sqlite3GlobalConfig.mutex.xMutexAlloc );
- return sqlite3GlobalConfig.mutex.xMutexAlloc(id);
-}
-
-/*
-** Free a dynamic mutex.
-*/
-SQLITE_API void sqlite3_mutex_free(sqlite3_mutex *p){
- if( p ){
- assert( sqlite3GlobalConfig.mutex.xMutexFree );
- sqlite3GlobalConfig.mutex.xMutexFree(p);
- }
-}
-
-/*
-** Obtain the mutex p. If some other thread already has the mutex, block
-** until it can be obtained.
-*/
-SQLITE_API void sqlite3_mutex_enter(sqlite3_mutex *p){
- if( p ){
- assert( sqlite3GlobalConfig.mutex.xMutexEnter );
- sqlite3GlobalConfig.mutex.xMutexEnter(p);
- }
-}
-
-/*
-** Obtain the mutex p. If successful, return SQLITE_OK. Otherwise, if another
-** thread holds the mutex and it cannot be obtained, return SQLITE_BUSY.
-*/
-SQLITE_API int sqlite3_mutex_try(sqlite3_mutex *p){
- int rc = SQLITE_OK;
- if( p ){
- assert( sqlite3GlobalConfig.mutex.xMutexTry );
- return sqlite3GlobalConfig.mutex.xMutexTry(p);
- }
- return rc;
-}
-
-/*
-** The sqlite3_mutex_leave() routine exits a mutex that was previously
-** entered by the same thread. The behavior is undefined if the mutex
-** is not currently entered. If a NULL pointer is passed as an argument
-** this function is a no-op.
-*/
-SQLITE_API void sqlite3_mutex_leave(sqlite3_mutex *p){
- if( p ){
- assert( sqlite3GlobalConfig.mutex.xMutexLeave );
- sqlite3GlobalConfig.mutex.xMutexLeave(p);
- }
-}
-
-#ifndef NDEBUG
-/*
-** The sqlite3_mutex_held() and sqlite3_mutex_notheld() routine are
-** intended for use inside assert() statements.
-*/
-SQLITE_API int sqlite3_mutex_held(sqlite3_mutex *p){
- assert( p==0 || sqlite3GlobalConfig.mutex.xMutexHeld );
- return p==0 || sqlite3GlobalConfig.mutex.xMutexHeld(p);
-}
-SQLITE_API int sqlite3_mutex_notheld(sqlite3_mutex *p){
- assert( p==0 || sqlite3GlobalConfig.mutex.xMutexNotheld );
- return p==0 || sqlite3GlobalConfig.mutex.xMutexNotheld(p);
-}
-#endif
-
-#endif /* !defined(SQLITE_MUTEX_OMIT) */
-
-/************** End of mutex.c ***********************************************/
-/************** Begin file mutex_noop.c **************************************/
-/*
-** 2008 October 07
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** This file contains the C functions that implement mutexes.
-**
-** This implementation in this file does not provide any mutual
-** exclusion and is thus suitable for use only in applications
-** that use SQLite in a single thread. The routines defined
-** here are place-holders. Applications can substitute working
-** mutex routines at start-time using the
-**
-** sqlite3_config(SQLITE_CONFIG_MUTEX,...)
-**
-** interface.
-**
-** If compiled with SQLITE_DEBUG, then additional logic is inserted
-** that does error checking on mutexes to make sure they are being
-** called correctly.
-*/
-/* #include "sqliteInt.h" */
-
-#ifndef SQLITE_MUTEX_OMIT
-
-#ifndef SQLITE_DEBUG
-/*
-** Stub routines for all mutex methods.
-**
-** This routines provide no mutual exclusion or error checking.
-*/
-static int noopMutexInit(void){ return SQLITE_OK; }
-static int noopMutexEnd(void){ return SQLITE_OK; }
-static sqlite3_mutex *noopMutexAlloc(int id){
- UNUSED_PARAMETER(id);
- return (sqlite3_mutex*)8;
-}
-static void noopMutexFree(sqlite3_mutex *p){ UNUSED_PARAMETER(p); return; }
-static void noopMutexEnter(sqlite3_mutex *p){ UNUSED_PARAMETER(p); return; }
-static int noopMutexTry(sqlite3_mutex *p){
- UNUSED_PARAMETER(p);
- return SQLITE_OK;
-}
-static void noopMutexLeave(sqlite3_mutex *p){ UNUSED_PARAMETER(p); return; }
-
-SQLITE_PRIVATE sqlite3_mutex_methods const *sqlite3NoopMutex(void){
- static const sqlite3_mutex_methods sMutex = {
- noopMutexInit,
- noopMutexEnd,
- noopMutexAlloc,
- noopMutexFree,
- noopMutexEnter,
- noopMutexTry,
- noopMutexLeave,
-
- 0,
- 0,
- };
-
- return &sMutex;
-}
-#endif /* !SQLITE_DEBUG */
-
-#ifdef SQLITE_DEBUG
-/*
-** In this implementation, error checking is provided for testing
-** and debugging purposes. The mutexes still do not provide any
-** mutual exclusion.
-*/
-
-/*
-** The mutex object
-*/
-typedef struct sqlite3_debug_mutex {
- int id; /* The mutex type */
- int cnt; /* Number of entries without a matching leave */
-} sqlite3_debug_mutex;
-
-/*
-** The sqlite3_mutex_held() and sqlite3_mutex_notheld() routine are
-** intended for use inside assert() statements.
-*/
-static int debugMutexHeld(sqlite3_mutex *pX){
- sqlite3_debug_mutex *p = (sqlite3_debug_mutex*)pX;
- return p==0 || p->cnt>0;
-}
-static int debugMutexNotheld(sqlite3_mutex *pX){
- sqlite3_debug_mutex *p = (sqlite3_debug_mutex*)pX;
- return p==0 || p->cnt==0;
-}
-
-/*
-** Initialize and deinitialize the mutex subsystem.
-*/
-static int debugMutexInit(void){ return SQLITE_OK; }
-static int debugMutexEnd(void){ return SQLITE_OK; }
-
-/*
-** The sqlite3_mutex_alloc() routine allocates a new
-** mutex and returns a pointer to it. If it returns NULL
-** that means that a mutex could not be allocated.
-*/
-static sqlite3_mutex *debugMutexAlloc(int id){
- static sqlite3_debug_mutex aStatic[SQLITE_MUTEX_STATIC_VFS3 - 1];
- sqlite3_debug_mutex *pNew = 0;
- switch( id ){
- case SQLITE_MUTEX_FAST:
- case SQLITE_MUTEX_RECURSIVE: {
- pNew = sqlite3Malloc(sizeof(*pNew));
- if( pNew ){
- pNew->id = id;
- pNew->cnt = 0;
- }
- break;
- }
- default: {
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( id-2<0 || id-2>=ArraySize(aStatic) ){
- (void)SQLITE_MISUSE_BKPT;
- return 0;
- }
-#endif
- pNew = &aStatic[id-2];
- pNew->id = id;
- break;
- }
- }
- return (sqlite3_mutex*)pNew;
-}
-
-/*
-** This routine deallocates a previously allocated mutex.
-*/
-static void debugMutexFree(sqlite3_mutex *pX){
- sqlite3_debug_mutex *p = (sqlite3_debug_mutex*)pX;
- assert( p->cnt==0 );
- if( p->id==SQLITE_MUTEX_RECURSIVE || p->id==SQLITE_MUTEX_FAST ){
- sqlite3_free(p);
- }else{
-#ifdef SQLITE_ENABLE_API_ARMOR
- (void)SQLITE_MISUSE_BKPT;
-#endif
- }
-}
-
-/*
-** The sqlite3_mutex_enter() and sqlite3_mutex_try() routines attempt
-** to enter a mutex. If another thread is already within the mutex,
-** sqlite3_mutex_enter() will block and sqlite3_mutex_try() will return
-** SQLITE_BUSY. The sqlite3_mutex_try() interface returns SQLITE_OK
-** upon successful entry. Mutexes created using SQLITE_MUTEX_RECURSIVE can
-** be entered multiple times by the same thread. In such cases the,
-** mutex must be exited an equal number of times before another thread
-** can enter. If the same thread tries to enter any other kind of mutex
-** more than once, the behavior is undefined.
-*/
-static void debugMutexEnter(sqlite3_mutex *pX){
- sqlite3_debug_mutex *p = (sqlite3_debug_mutex*)pX;
- assert( p->id==SQLITE_MUTEX_RECURSIVE || debugMutexNotheld(pX) );
- p->cnt++;
-}
-static int debugMutexTry(sqlite3_mutex *pX){
- sqlite3_debug_mutex *p = (sqlite3_debug_mutex*)pX;
- assert( p->id==SQLITE_MUTEX_RECURSIVE || debugMutexNotheld(pX) );
- p->cnt++;
- return SQLITE_OK;
-}
-
-/*
-** The sqlite3_mutex_leave() routine exits a mutex that was
-** previously entered by the same thread. The behavior
-** is undefined if the mutex is not currently entered or
-** is not currently allocated. SQLite will never do either.
-*/
-static void debugMutexLeave(sqlite3_mutex *pX){
- sqlite3_debug_mutex *p = (sqlite3_debug_mutex*)pX;
- assert( debugMutexHeld(pX) );
- p->cnt--;
- assert( p->id==SQLITE_MUTEX_RECURSIVE || debugMutexNotheld(pX) );
-}
-
-SQLITE_PRIVATE sqlite3_mutex_methods const *sqlite3NoopMutex(void){
- static const sqlite3_mutex_methods sMutex = {
- debugMutexInit,
- debugMutexEnd,
- debugMutexAlloc,
- debugMutexFree,
- debugMutexEnter,
- debugMutexTry,
- debugMutexLeave,
-
- debugMutexHeld,
- debugMutexNotheld
- };
-
- return &sMutex;
-}
-#endif /* SQLITE_DEBUG */
-
-/*
-** If compiled with SQLITE_MUTEX_NOOP, then the no-op mutex implementation
-** is used regardless of the run-time threadsafety setting.
-*/
-#ifdef SQLITE_MUTEX_NOOP
-SQLITE_PRIVATE sqlite3_mutex_methods const *sqlite3DefaultMutex(void){
- return sqlite3NoopMutex();
-}
-#endif /* defined(SQLITE_MUTEX_NOOP) */
-#endif /* !defined(SQLITE_MUTEX_OMIT) */
-
-/************** End of mutex_noop.c ******************************************/
-/************** Begin file mutex_unix.c **************************************/
-/*
-** 2007 August 28
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** This file contains the C functions that implement mutexes for pthreads
-*/
-/* #include "sqliteInt.h" */
-
-/*
-** The code in this file is only used if we are compiling threadsafe
-** under unix with pthreads.
-**
-** Note that this implementation requires a version of pthreads that
-** supports recursive mutexes.
-*/
-#ifdef SQLITE_MUTEX_PTHREADS
-
-#include
-
-/*
-** The sqlite3_mutex.id, sqlite3_mutex.nRef, and sqlite3_mutex.owner fields
-** are necessary under two condidtions: (1) Debug builds and (2) using
-** home-grown mutexes. Encapsulate these conditions into a single #define.
-*/
-#if defined(SQLITE_DEBUG) || defined(SQLITE_HOMEGROWN_RECURSIVE_MUTEX)
-# define SQLITE_MUTEX_NREF 1
-#else
-# define SQLITE_MUTEX_NREF 0
-#endif
-
-/*
-** Each recursive mutex is an instance of the following structure.
-*/
-struct sqlite3_mutex {
- pthread_mutex_t mutex; /* Mutex controlling the lock */
-#if SQLITE_MUTEX_NREF || defined(SQLITE_ENABLE_API_ARMOR)
- int id; /* Mutex type */
-#endif
-#if SQLITE_MUTEX_NREF
- volatile int nRef; /* Number of entrances */
- volatile pthread_t owner; /* Thread that is within this mutex */
- int trace; /* True to trace changes */
-#endif
-};
-#if SQLITE_MUTEX_NREF
-# define SQLITE3_MUTEX_INITIALIZER(id) \
- {PTHREAD_MUTEX_INITIALIZER,id,0,(pthread_t)0,0}
-#elif defined(SQLITE_ENABLE_API_ARMOR)
-# define SQLITE3_MUTEX_INITIALIZER(id) { PTHREAD_MUTEX_INITIALIZER, id }
-#else
-#define SQLITE3_MUTEX_INITIALIZER(id) { PTHREAD_MUTEX_INITIALIZER }
-#endif
-
-/*
-** The sqlite3_mutex_held() and sqlite3_mutex_notheld() routine are
-** intended for use only inside assert() statements. On some platforms,
-** there might be race conditions that can cause these routines to
-** deliver incorrect results. In particular, if pthread_equal() is
-** not an atomic operation, then these routines might delivery
-** incorrect results. On most platforms, pthread_equal() is a
-** comparison of two integers and is therefore atomic. But we are
-** told that HPUX is not such a platform. If so, then these routines
-** will not always work correctly on HPUX.
-**
-** On those platforms where pthread_equal() is not atomic, SQLite
-** should be compiled without -DSQLITE_DEBUG and with -DNDEBUG to
-** make sure no assert() statements are evaluated and hence these
-** routines are never called.
-*/
-#if !defined(NDEBUG) || defined(SQLITE_DEBUG)
-static int pthreadMutexHeld(sqlite3_mutex *p){
- return (p->nRef!=0 && pthread_equal(p->owner, pthread_self()));
-}
-static int pthreadMutexNotheld(sqlite3_mutex *p){
- return p->nRef==0 || pthread_equal(p->owner, pthread_self())==0;
-}
-#endif
-
-/*
-** Try to provide a memory barrier operation, needed for initialization
-** and also for the implementation of xShmBarrier in the VFS in cases
-** where SQLite is compiled without mutexes.
-*/
-SQLITE_PRIVATE void sqlite3MemoryBarrier(void){
-#if defined(SQLITE_MEMORY_BARRIER)
- SQLITE_MEMORY_BARRIER;
-#elif defined(__GNUC__) && GCC_VERSION>=4001000
- __sync_synchronize();
-#endif
-}
-
-/*
-** Initialize and deinitialize the mutex subsystem.
-*/
-static int pthreadMutexInit(void){ return SQLITE_OK; }
-static int pthreadMutexEnd(void){ return SQLITE_OK; }
-
-/*
-** The sqlite3_mutex_alloc() routine allocates a new
-** mutex and returns a pointer to it. If it returns NULL
-** that means that a mutex could not be allocated. SQLite
-** will unwind its stack and return an error. The argument
-** to sqlite3_mutex_alloc() is one of these integer constants:
-**
-**
-**
SQLITE_MUTEX_FAST
-**
SQLITE_MUTEX_RECURSIVE
-**
SQLITE_MUTEX_STATIC_MASTER
-**
SQLITE_MUTEX_STATIC_MEM
-**
SQLITE_MUTEX_STATIC_OPEN
-**
SQLITE_MUTEX_STATIC_PRNG
-**
SQLITE_MUTEX_STATIC_LRU
-**
SQLITE_MUTEX_STATIC_PMEM
-**
SQLITE_MUTEX_STATIC_APP1
-**
SQLITE_MUTEX_STATIC_APP2
-**
SQLITE_MUTEX_STATIC_APP3
-**
SQLITE_MUTEX_STATIC_VFS1
-**
SQLITE_MUTEX_STATIC_VFS2
-**
SQLITE_MUTEX_STATIC_VFS3
-**
-**
-** The first two constants cause sqlite3_mutex_alloc() to create
-** a new mutex. The new mutex is recursive when SQLITE_MUTEX_RECURSIVE
-** is used but not necessarily so when SQLITE_MUTEX_FAST is used.
-** The mutex implementation does not need to make a distinction
-** between SQLITE_MUTEX_RECURSIVE and SQLITE_MUTEX_FAST if it does
-** not want to. But SQLite will only request a recursive mutex in
-** cases where it really needs one. If a faster non-recursive mutex
-** implementation is available on the host platform, the mutex subsystem
-** might return such a mutex in response to SQLITE_MUTEX_FAST.
-**
-** The other allowed parameters to sqlite3_mutex_alloc() each return
-** a pointer to a static preexisting mutex. Six static mutexes are
-** used by the current version of SQLite. Future versions of SQLite
-** may add additional static mutexes. Static mutexes are for internal
-** use by SQLite only. Applications that use SQLite mutexes should
-** use only the dynamic mutexes returned by SQLITE_MUTEX_FAST or
-** SQLITE_MUTEX_RECURSIVE.
-**
-** Note that if one of the dynamic mutex parameters (SQLITE_MUTEX_FAST
-** or SQLITE_MUTEX_RECURSIVE) is used then sqlite3_mutex_alloc()
-** returns a different mutex on every call. But for the static
-** mutex types, the same mutex is returned on every call that has
-** the same type number.
-*/
-static sqlite3_mutex *pthreadMutexAlloc(int iType){
- static sqlite3_mutex staticMutexes[] = {
- SQLITE3_MUTEX_INITIALIZER(2),
- SQLITE3_MUTEX_INITIALIZER(3),
- SQLITE3_MUTEX_INITIALIZER(4),
- SQLITE3_MUTEX_INITIALIZER(5),
- SQLITE3_MUTEX_INITIALIZER(6),
- SQLITE3_MUTEX_INITIALIZER(7),
- SQLITE3_MUTEX_INITIALIZER(8),
- SQLITE3_MUTEX_INITIALIZER(9),
- SQLITE3_MUTEX_INITIALIZER(10),
- SQLITE3_MUTEX_INITIALIZER(11),
- SQLITE3_MUTEX_INITIALIZER(12),
- SQLITE3_MUTEX_INITIALIZER(13)
- };
- sqlite3_mutex *p;
- switch( iType ){
- case SQLITE_MUTEX_RECURSIVE: {
- p = sqlite3MallocZero( sizeof(*p) );
- if( p ){
-#ifdef SQLITE_HOMEGROWN_RECURSIVE_MUTEX
- /* If recursive mutexes are not available, we will have to
- ** build our own. See below. */
- pthread_mutex_init(&p->mutex, 0);
-#else
- /* Use a recursive mutex if it is available */
- pthread_mutexattr_t recursiveAttr;
- pthread_mutexattr_init(&recursiveAttr);
- pthread_mutexattr_settype(&recursiveAttr, PTHREAD_MUTEX_RECURSIVE);
- pthread_mutex_init(&p->mutex, &recursiveAttr);
- pthread_mutexattr_destroy(&recursiveAttr);
-#endif
-#if SQLITE_MUTEX_NREF || defined(SQLITE_ENABLE_API_ARMOR)
- p->id = SQLITE_MUTEX_RECURSIVE;
-#endif
- }
- break;
- }
- case SQLITE_MUTEX_FAST: {
- p = sqlite3MallocZero( sizeof(*p) );
- if( p ){
- pthread_mutex_init(&p->mutex, 0);
-#if SQLITE_MUTEX_NREF || defined(SQLITE_ENABLE_API_ARMOR)
- p->id = SQLITE_MUTEX_FAST;
-#endif
- }
- break;
- }
- default: {
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( iType-2<0 || iType-2>=ArraySize(staticMutexes) ){
- (void)SQLITE_MISUSE_BKPT;
- return 0;
- }
-#endif
- p = &staticMutexes[iType-2];
- break;
- }
- }
-#if SQLITE_MUTEX_NREF || defined(SQLITE_ENABLE_API_ARMOR)
- assert( p==0 || p->id==iType );
-#endif
- return p;
-}
-
-
-/*
-** This routine deallocates a previously
-** allocated mutex. SQLite is careful to deallocate every
-** mutex that it allocates.
-*/
-static void pthreadMutexFree(sqlite3_mutex *p){
- assert( p->nRef==0 );
-#if SQLITE_ENABLE_API_ARMOR
- if( p->id==SQLITE_MUTEX_FAST || p->id==SQLITE_MUTEX_RECURSIVE )
-#endif
- {
- pthread_mutex_destroy(&p->mutex);
- sqlite3_free(p);
- }
-#ifdef SQLITE_ENABLE_API_ARMOR
- else{
- (void)SQLITE_MISUSE_BKPT;
- }
-#endif
-}
-
-/*
-** The sqlite3_mutex_enter() and sqlite3_mutex_try() routines attempt
-** to enter a mutex. If another thread is already within the mutex,
-** sqlite3_mutex_enter() will block and sqlite3_mutex_try() will return
-** SQLITE_BUSY. The sqlite3_mutex_try() interface returns SQLITE_OK
-** upon successful entry. Mutexes created using SQLITE_MUTEX_RECURSIVE can
-** be entered multiple times by the same thread. In such cases the,
-** mutex must be exited an equal number of times before another thread
-** can enter. If the same thread tries to enter any other kind of mutex
-** more than once, the behavior is undefined.
-*/
-static void pthreadMutexEnter(sqlite3_mutex *p){
- assert( p->id==SQLITE_MUTEX_RECURSIVE || pthreadMutexNotheld(p) );
-
-#ifdef SQLITE_HOMEGROWN_RECURSIVE_MUTEX
- /* If recursive mutexes are not available, then we have to grow
- ** our own. This implementation assumes that pthread_equal()
- ** is atomic - that it cannot be deceived into thinking self
- ** and p->owner are equal if p->owner changes between two values
- ** that are not equal to self while the comparison is taking place.
- ** This implementation also assumes a coherent cache - that
- ** separate processes cannot read different values from the same
- ** address at the same time. If either of these two conditions
- ** are not met, then the mutexes will fail and problems will result.
- */
- {
- pthread_t self = pthread_self();
- if( p->nRef>0 && pthread_equal(p->owner, self) ){
- p->nRef++;
- }else{
- pthread_mutex_lock(&p->mutex);
- assert( p->nRef==0 );
- p->owner = self;
- p->nRef = 1;
- }
- }
-#else
- /* Use the built-in recursive mutexes if they are available.
- */
- pthread_mutex_lock(&p->mutex);
-#if SQLITE_MUTEX_NREF
- assert( p->nRef>0 || p->owner==0 );
- p->owner = pthread_self();
- p->nRef++;
-#endif
-#endif
-
-#ifdef SQLITE_DEBUG
- if( p->trace ){
- printf("enter mutex %p (%d) with nRef=%d\n", p, p->trace, p->nRef);
- }
-#endif
-}
-static int pthreadMutexTry(sqlite3_mutex *p){
- int rc;
- assert( p->id==SQLITE_MUTEX_RECURSIVE || pthreadMutexNotheld(p) );
-
-#ifdef SQLITE_HOMEGROWN_RECURSIVE_MUTEX
- /* If recursive mutexes are not available, then we have to grow
- ** our own. This implementation assumes that pthread_equal()
- ** is atomic - that it cannot be deceived into thinking self
- ** and p->owner are equal if p->owner changes between two values
- ** that are not equal to self while the comparison is taking place.
- ** This implementation also assumes a coherent cache - that
- ** separate processes cannot read different values from the same
- ** address at the same time. If either of these two conditions
- ** are not met, then the mutexes will fail and problems will result.
- */
- {
- pthread_t self = pthread_self();
- if( p->nRef>0 && pthread_equal(p->owner, self) ){
- p->nRef++;
- rc = SQLITE_OK;
- }else if( pthread_mutex_trylock(&p->mutex)==0 ){
- assert( p->nRef==0 );
- p->owner = self;
- p->nRef = 1;
- rc = SQLITE_OK;
- }else{
- rc = SQLITE_BUSY;
- }
- }
-#else
- /* Use the built-in recursive mutexes if they are available.
- */
- if( pthread_mutex_trylock(&p->mutex)==0 ){
-#if SQLITE_MUTEX_NREF
- p->owner = pthread_self();
- p->nRef++;
-#endif
- rc = SQLITE_OK;
- }else{
- rc = SQLITE_BUSY;
- }
-#endif
-
-#ifdef SQLITE_DEBUG
- if( rc==SQLITE_OK && p->trace ){
- printf("enter mutex %p (%d) with nRef=%d\n", p, p->trace, p->nRef);
- }
-#endif
- return rc;
-}
-
-/*
-** The sqlite3_mutex_leave() routine exits a mutex that was
-** previously entered by the same thread. The behavior
-** is undefined if the mutex is not currently entered or
-** is not currently allocated. SQLite will never do either.
-*/
-static void pthreadMutexLeave(sqlite3_mutex *p){
- assert( pthreadMutexHeld(p) );
-#if SQLITE_MUTEX_NREF
- p->nRef--;
- if( p->nRef==0 ) p->owner = 0;
-#endif
- assert( p->nRef==0 || p->id==SQLITE_MUTEX_RECURSIVE );
-
-#ifdef SQLITE_HOMEGROWN_RECURSIVE_MUTEX
- if( p->nRef==0 ){
- pthread_mutex_unlock(&p->mutex);
- }
-#else
- pthread_mutex_unlock(&p->mutex);
-#endif
-
-#ifdef SQLITE_DEBUG
- if( p->trace ){
- printf("leave mutex %p (%d) with nRef=%d\n", p, p->trace, p->nRef);
- }
-#endif
-}
-
-SQLITE_PRIVATE sqlite3_mutex_methods const *sqlite3DefaultMutex(void){
- static const sqlite3_mutex_methods sMutex = {
- pthreadMutexInit,
- pthreadMutexEnd,
- pthreadMutexAlloc,
- pthreadMutexFree,
- pthreadMutexEnter,
- pthreadMutexTry,
- pthreadMutexLeave,
-#ifdef SQLITE_DEBUG
- pthreadMutexHeld,
- pthreadMutexNotheld
-#else
- 0,
- 0
-#endif
- };
-
- return &sMutex;
-}
-
-#endif /* SQLITE_MUTEX_PTHREADS */
-
-/************** End of mutex_unix.c ******************************************/
-/************** Begin file mutex_w32.c ***************************************/
-/*
-** 2007 August 14
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** This file contains the C functions that implement mutexes for Win32.
-*/
-/* #include "sqliteInt.h" */
-
-#if SQLITE_OS_WIN
-/*
-** Include code that is common to all os_*.c files
-*/
-/************** Include os_common.h in the middle of mutex_w32.c *************/
-/************** Begin file os_common.h ***************************************/
-/*
-** 2004 May 22
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This file contains macros and a little bit of code that is common to
-** all of the platform-specific files (os_*.c) and is #included into those
-** files.
-**
-** This file should be #included by the os_*.c files only. It is not a
-** general purpose header file.
-*/
-#ifndef _OS_COMMON_H_
-#define _OS_COMMON_H_
-
-/*
-** At least two bugs have slipped in because we changed the MEMORY_DEBUG
-** macro to SQLITE_DEBUG and some older makefiles have not yet made the
-** switch. The following code should catch this problem at compile-time.
-*/
-#ifdef MEMORY_DEBUG
-# error "The MEMORY_DEBUG macro is obsolete. Use SQLITE_DEBUG instead."
-#endif
-
-/*
-** Macros for performance tracing. Normally turned off. Only works
-** on i486 hardware.
-*/
-#ifdef SQLITE_PERFORMANCE_TRACE
-
-/*
-** hwtime.h contains inline assembler code for implementing
-** high-performance timing routines.
-*/
-/************** Include hwtime.h in the middle of os_common.h ****************/
-/************** Begin file hwtime.h ******************************************/
-/*
-** 2008 May 27
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This file contains inline asm code for retrieving "high-performance"
-** counters for x86 class CPUs.
-*/
-#ifndef SQLITE_HWTIME_H
-#define SQLITE_HWTIME_H
-
-/*
-** The following routine only works on pentium-class (or newer) processors.
-** It uses the RDTSC opcode to read the cycle count value out of the
-** processor and returns that value. This can be used for high-res
-** profiling.
-*/
-#if (defined(__GNUC__) || defined(_MSC_VER)) && \
- (defined(i386) || defined(__i386__) || defined(_M_IX86))
-
- #if defined(__GNUC__)
-
- __inline__ sqlite_uint64 sqlite3Hwtime(void){
- unsigned int lo, hi;
- __asm__ __volatile__ ("rdtsc" : "=a" (lo), "=d" (hi));
- return (sqlite_uint64)hi << 32 | lo;
- }
-
- #elif defined(_MSC_VER)
-
- __declspec(naked) __inline sqlite_uint64 __cdecl sqlite3Hwtime(void){
- __asm {
- rdtsc
- ret ; return value at EDX:EAX
- }
- }
-
- #endif
-
-#elif (defined(__GNUC__) && defined(__x86_64__))
-
- __inline__ sqlite_uint64 sqlite3Hwtime(void){
- unsigned long val;
- __asm__ __volatile__ ("rdtsc" : "=A" (val));
- return val;
- }
-
-#elif (defined(__GNUC__) && defined(__ppc__))
-
- __inline__ sqlite_uint64 sqlite3Hwtime(void){
- unsigned long long retval;
- unsigned long junk;
- __asm__ __volatile__ ("\n\
- 1: mftbu %1\n\
- mftb %L0\n\
- mftbu %0\n\
- cmpw %0,%1\n\
- bne 1b"
- : "=r" (retval), "=r" (junk));
- return retval;
- }
-
-#else
-
- #error Need implementation of sqlite3Hwtime() for your platform.
-
- /*
- ** To compile without implementing sqlite3Hwtime() for your platform,
- ** you can remove the above #error and use the following
- ** stub function. You will lose timing support for many
- ** of the debugging and testing utilities, but it should at
- ** least compile and run.
- */
-SQLITE_PRIVATE sqlite_uint64 sqlite3Hwtime(void){ return ((sqlite_uint64)0); }
-
-#endif
-
-#endif /* !defined(SQLITE_HWTIME_H) */
-
-/************** End of hwtime.h **********************************************/
-/************** Continuing where we left off in os_common.h ******************/
-
-static sqlite_uint64 g_start;
-static sqlite_uint64 g_elapsed;
-#define TIMER_START g_start=sqlite3Hwtime()
-#define TIMER_END g_elapsed=sqlite3Hwtime()-g_start
-#define TIMER_ELAPSED g_elapsed
-#else
-#define TIMER_START
-#define TIMER_END
-#define TIMER_ELAPSED ((sqlite_uint64)0)
-#endif
-
-/*
-** If we compile with the SQLITE_TEST macro set, then the following block
-** of code will give us the ability to simulate a disk I/O error. This
-** is used for testing the I/O recovery logic.
-*/
-#if defined(SQLITE_TEST)
-SQLITE_API extern int sqlite3_io_error_hit;
-SQLITE_API extern int sqlite3_io_error_hardhit;
-SQLITE_API extern int sqlite3_io_error_pending;
-SQLITE_API extern int sqlite3_io_error_persist;
-SQLITE_API extern int sqlite3_io_error_benign;
-SQLITE_API extern int sqlite3_diskfull_pending;
-SQLITE_API extern int sqlite3_diskfull;
-#define SimulateIOErrorBenign(X) sqlite3_io_error_benign=(X)
-#define SimulateIOError(CODE) \
- if( (sqlite3_io_error_persist && sqlite3_io_error_hit) \
- || sqlite3_io_error_pending-- == 1 ) \
- { local_ioerr(); CODE; }
-static void local_ioerr(){
- IOTRACE(("IOERR\n"));
- sqlite3_io_error_hit++;
- if( !sqlite3_io_error_benign ) sqlite3_io_error_hardhit++;
-}
-#define SimulateDiskfullError(CODE) \
- if( sqlite3_diskfull_pending ){ \
- if( sqlite3_diskfull_pending == 1 ){ \
- local_ioerr(); \
- sqlite3_diskfull = 1; \
- sqlite3_io_error_hit = 1; \
- CODE; \
- }else{ \
- sqlite3_diskfull_pending--; \
- } \
- }
-#else
-#define SimulateIOErrorBenign(X)
-#define SimulateIOError(A)
-#define SimulateDiskfullError(A)
-#endif /* defined(SQLITE_TEST) */
-
-/*
-** When testing, keep a count of the number of open files.
-*/
-#if defined(SQLITE_TEST)
-SQLITE_API extern int sqlite3_open_file_count;
-#define OpenCounter(X) sqlite3_open_file_count+=(X)
-#else
-#define OpenCounter(X)
-#endif /* defined(SQLITE_TEST) */
-
-#endif /* !defined(_OS_COMMON_H_) */
-
-/************** End of os_common.h *******************************************/
-/************** Continuing where we left off in mutex_w32.c ******************/
-
-/*
-** Include the header file for the Windows VFS.
-*/
-/************** Include os_win.h in the middle of mutex_w32.c ****************/
-/************** Begin file os_win.h ******************************************/
-/*
-** 2013 November 25
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This file contains code that is specific to Windows.
-*/
-#ifndef SQLITE_OS_WIN_H
-#define SQLITE_OS_WIN_H
-
-/*
-** Include the primary Windows SDK header file.
-*/
-#include "windows.h"
-
-#ifdef __CYGWIN__
-# include
-# include /* amalgamator: dontcache */
-#endif
-
-/*
-** Determine if we are dealing with Windows NT.
-**
-** We ought to be able to determine if we are compiling for Windows 9x or
-** Windows NT using the _WIN32_WINNT macro as follows:
-**
-** #if defined(_WIN32_WINNT)
-** # define SQLITE_OS_WINNT 1
-** #else
-** # define SQLITE_OS_WINNT 0
-** #endif
-**
-** However, Visual Studio 2005 does not set _WIN32_WINNT by default, as
-** it ought to, so the above test does not work. We'll just assume that
-** everything is Windows NT unless the programmer explicitly says otherwise
-** by setting SQLITE_OS_WINNT to 0.
-*/
-#if SQLITE_OS_WIN && !defined(SQLITE_OS_WINNT)
-# define SQLITE_OS_WINNT 1
-#endif
-
-/*
-** Determine if we are dealing with Windows CE - which has a much reduced
-** API.
-*/
-#if defined(_WIN32_WCE)
-# define SQLITE_OS_WINCE 1
-#else
-# define SQLITE_OS_WINCE 0
-#endif
-
-/*
-** Determine if we are dealing with WinRT, which provides only a subset of
-** the full Win32 API.
-*/
-#if !defined(SQLITE_OS_WINRT)
-# define SQLITE_OS_WINRT 0
-#endif
-
-/*
-** For WinCE, some API function parameters do not appear to be declared as
-** volatile.
-*/
-#if SQLITE_OS_WINCE
-# define SQLITE_WIN32_VOLATILE
-#else
-# define SQLITE_WIN32_VOLATILE volatile
-#endif
-
-/*
-** For some Windows sub-platforms, the _beginthreadex() / _endthreadex()
-** functions are not available (e.g. those not using MSVC, Cygwin, etc).
-*/
-#if SQLITE_OS_WIN && !SQLITE_OS_WINCE && !SQLITE_OS_WINRT && \
- SQLITE_THREADSAFE>0 && !defined(__CYGWIN__)
-# define SQLITE_OS_WIN_THREADS 1
-#else
-# define SQLITE_OS_WIN_THREADS 0
-#endif
-
-#endif /* SQLITE_OS_WIN_H */
-
-/************** End of os_win.h **********************************************/
-/************** Continuing where we left off in mutex_w32.c ******************/
-#endif
-
-/*
-** The code in this file is only used if we are compiling multithreaded
-** on a Win32 system.
-*/
-#ifdef SQLITE_MUTEX_W32
-
-/*
-** Each recursive mutex is an instance of the following structure.
-*/
-struct sqlite3_mutex {
- CRITICAL_SECTION mutex; /* Mutex controlling the lock */
- int id; /* Mutex type */
-#ifdef SQLITE_DEBUG
- volatile int nRef; /* Number of enterances */
- volatile DWORD owner; /* Thread holding this mutex */
- volatile LONG trace; /* True to trace changes */
-#endif
-};
-
-/*
-** These are the initializer values used when declaring a "static" mutex
-** on Win32. It should be noted that all mutexes require initialization
-** on the Win32 platform.
-*/
-#define SQLITE_W32_MUTEX_INITIALIZER { 0 }
-
-#ifdef SQLITE_DEBUG
-#define SQLITE3_MUTEX_INITIALIZER(id) { SQLITE_W32_MUTEX_INITIALIZER, id, \
- 0L, (DWORD)0, 0 }
-#else
-#define SQLITE3_MUTEX_INITIALIZER(id) { SQLITE_W32_MUTEX_INITIALIZER, id }
-#endif
-
-#ifdef SQLITE_DEBUG
-/*
-** The sqlite3_mutex_held() and sqlite3_mutex_notheld() routine are
-** intended for use only inside assert() statements.
-*/
-static int winMutexHeld(sqlite3_mutex *p){
- return p->nRef!=0 && p->owner==GetCurrentThreadId();
-}
-
-static int winMutexNotheld2(sqlite3_mutex *p, DWORD tid){
- return p->nRef==0 || p->owner!=tid;
-}
-
-static int winMutexNotheld(sqlite3_mutex *p){
- DWORD tid = GetCurrentThreadId();
- return winMutexNotheld2(p, tid);
-}
-#endif
-
-/*
-** Try to provide a memory barrier operation, needed for initialization
-** and also for the xShmBarrier method of the VFS in cases when SQLite is
-** compiled without mutexes (SQLITE_THREADSAFE=0).
-*/
-SQLITE_PRIVATE void sqlite3MemoryBarrier(void){
-#if defined(SQLITE_MEMORY_BARRIER)
- SQLITE_MEMORY_BARRIER;
-#elif defined(__GNUC__)
- __sync_synchronize();
-#elif MSVC_VERSION>=1300
- _ReadWriteBarrier();
-#elif defined(MemoryBarrier)
- MemoryBarrier();
-#endif
-}
-
-/*
-** Initialize and deinitialize the mutex subsystem.
-*/
-static sqlite3_mutex winMutex_staticMutexes[] = {
- SQLITE3_MUTEX_INITIALIZER(2),
- SQLITE3_MUTEX_INITIALIZER(3),
- SQLITE3_MUTEX_INITIALIZER(4),
- SQLITE3_MUTEX_INITIALIZER(5),
- SQLITE3_MUTEX_INITIALIZER(6),
- SQLITE3_MUTEX_INITIALIZER(7),
- SQLITE3_MUTEX_INITIALIZER(8),
- SQLITE3_MUTEX_INITIALIZER(9),
- SQLITE3_MUTEX_INITIALIZER(10),
- SQLITE3_MUTEX_INITIALIZER(11),
- SQLITE3_MUTEX_INITIALIZER(12),
- SQLITE3_MUTEX_INITIALIZER(13)
-};
-
-static int winMutex_isInit = 0;
-static int winMutex_isNt = -1; /* <0 means "need to query" */
-
-/* As the winMutexInit() and winMutexEnd() functions are called as part
-** of the sqlite3_initialize() and sqlite3_shutdown() processing, the
-** "interlocked" magic used here is probably not strictly necessary.
-*/
-static LONG SQLITE_WIN32_VOLATILE winMutex_lock = 0;
-
-SQLITE_API int sqlite3_win32_is_nt(void); /* os_win.c */
-SQLITE_API void sqlite3_win32_sleep(DWORD milliseconds); /* os_win.c */
-
-static int winMutexInit(void){
- /* The first to increment to 1 does actual initialization */
- if( InterlockedCompareExchange(&winMutex_lock, 1, 0)==0 ){
- int i;
- for(i=0; i
-**
SQLITE_MUTEX_FAST
-**
SQLITE_MUTEX_RECURSIVE
-**
SQLITE_MUTEX_STATIC_MASTER
-**
SQLITE_MUTEX_STATIC_MEM
-**
SQLITE_MUTEX_STATIC_OPEN
-**
SQLITE_MUTEX_STATIC_PRNG
-**
SQLITE_MUTEX_STATIC_LRU
-**
SQLITE_MUTEX_STATIC_PMEM
-**
SQLITE_MUTEX_STATIC_APP1
-**
SQLITE_MUTEX_STATIC_APP2
-**
SQLITE_MUTEX_STATIC_APP3
-**
SQLITE_MUTEX_STATIC_VFS1
-**
SQLITE_MUTEX_STATIC_VFS2
-**
SQLITE_MUTEX_STATIC_VFS3
-**
-**
-** The first two constants cause sqlite3_mutex_alloc() to create
-** a new mutex. The new mutex is recursive when SQLITE_MUTEX_RECURSIVE
-** is used but not necessarily so when SQLITE_MUTEX_FAST is used.
-** The mutex implementation does not need to make a distinction
-** between SQLITE_MUTEX_RECURSIVE and SQLITE_MUTEX_FAST if it does
-** not want to. But SQLite will only request a recursive mutex in
-** cases where it really needs one. If a faster non-recursive mutex
-** implementation is available on the host platform, the mutex subsystem
-** might return such a mutex in response to SQLITE_MUTEX_FAST.
-**
-** The other allowed parameters to sqlite3_mutex_alloc() each return
-** a pointer to a static preexisting mutex. Six static mutexes are
-** used by the current version of SQLite. Future versions of SQLite
-** may add additional static mutexes. Static mutexes are for internal
-** use by SQLite only. Applications that use SQLite mutexes should
-** use only the dynamic mutexes returned by SQLITE_MUTEX_FAST or
-** SQLITE_MUTEX_RECURSIVE.
-**
-** Note that if one of the dynamic mutex parameters (SQLITE_MUTEX_FAST
-** or SQLITE_MUTEX_RECURSIVE) is used then sqlite3_mutex_alloc()
-** returns a different mutex on every call. But for the static
-** mutex types, the same mutex is returned on every call that has
-** the same type number.
-*/
-static sqlite3_mutex *winMutexAlloc(int iType){
- sqlite3_mutex *p;
-
- switch( iType ){
- case SQLITE_MUTEX_FAST:
- case SQLITE_MUTEX_RECURSIVE: {
- p = sqlite3MallocZero( sizeof(*p) );
- if( p ){
- p->id = iType;
-#ifdef SQLITE_DEBUG
-#ifdef SQLITE_WIN32_MUTEX_TRACE_DYNAMIC
- p->trace = 1;
-#endif
-#endif
-#if SQLITE_OS_WINRT
- InitializeCriticalSectionEx(&p->mutex, 0, 0);
-#else
- InitializeCriticalSection(&p->mutex);
-#endif
- }
- break;
- }
- default: {
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( iType-2<0 || iType-2>=ArraySize(winMutex_staticMutexes) ){
- (void)SQLITE_MISUSE_BKPT;
- return 0;
- }
-#endif
- p = &winMutex_staticMutexes[iType-2];
-#ifdef SQLITE_DEBUG
-#ifdef SQLITE_WIN32_MUTEX_TRACE_STATIC
- InterlockedCompareExchange(&p->trace, 1, 0);
-#endif
-#endif
- break;
- }
- }
- assert( p==0 || p->id==iType );
- return p;
-}
-
-
-/*
-** This routine deallocates a previously
-** allocated mutex. SQLite is careful to deallocate every
-** mutex that it allocates.
-*/
-static void winMutexFree(sqlite3_mutex *p){
- assert( p );
- assert( p->nRef==0 && p->owner==0 );
- if( p->id==SQLITE_MUTEX_FAST || p->id==SQLITE_MUTEX_RECURSIVE ){
- DeleteCriticalSection(&p->mutex);
- sqlite3_free(p);
- }else{
-#ifdef SQLITE_ENABLE_API_ARMOR
- (void)SQLITE_MISUSE_BKPT;
-#endif
- }
-}
-
-/*
-** The sqlite3_mutex_enter() and sqlite3_mutex_try() routines attempt
-** to enter a mutex. If another thread is already within the mutex,
-** sqlite3_mutex_enter() will block and sqlite3_mutex_try() will return
-** SQLITE_BUSY. The sqlite3_mutex_try() interface returns SQLITE_OK
-** upon successful entry. Mutexes created using SQLITE_MUTEX_RECURSIVE can
-** be entered multiple times by the same thread. In such cases the,
-** mutex must be exited an equal number of times before another thread
-** can enter. If the same thread tries to enter any other kind of mutex
-** more than once, the behavior is undefined.
-*/
-static void winMutexEnter(sqlite3_mutex *p){
-#if defined(SQLITE_DEBUG) || defined(SQLITE_TEST)
- DWORD tid = GetCurrentThreadId();
-#endif
-#ifdef SQLITE_DEBUG
- assert( p );
- assert( p->id==SQLITE_MUTEX_RECURSIVE || winMutexNotheld2(p, tid) );
-#else
- assert( p );
-#endif
- assert( winMutex_isInit==1 );
- EnterCriticalSection(&p->mutex);
-#ifdef SQLITE_DEBUG
- assert( p->nRef>0 || p->owner==0 );
- p->owner = tid;
- p->nRef++;
- if( p->trace ){
- OSTRACE(("ENTER-MUTEX tid=%lu, mutex(%d)=%p (%d), nRef=%d\n",
- tid, p->id, p, p->trace, p->nRef));
- }
-#endif
-}
-
-static int winMutexTry(sqlite3_mutex *p){
-#if defined(SQLITE_DEBUG) || defined(SQLITE_TEST)
- DWORD tid = GetCurrentThreadId();
-#endif
- int rc = SQLITE_BUSY;
- assert( p );
- assert( p->id==SQLITE_MUTEX_RECURSIVE || winMutexNotheld2(p, tid) );
- /*
- ** The sqlite3_mutex_try() routine is very rarely used, and when it
- ** is used it is merely an optimization. So it is OK for it to always
- ** fail.
- **
- ** The TryEnterCriticalSection() interface is only available on WinNT.
- ** And some windows compilers complain if you try to use it without
- ** first doing some #defines that prevent SQLite from building on Win98.
- ** For that reason, we will omit this optimization for now. See
- ** ticket #2685.
- */
-#if defined(_WIN32_WINNT) && _WIN32_WINNT >= 0x0400
- assert( winMutex_isInit==1 );
- assert( winMutex_isNt>=-1 && winMutex_isNt<=1 );
- if( winMutex_isNt<0 ){
- winMutex_isNt = sqlite3_win32_is_nt();
- }
- assert( winMutex_isNt==0 || winMutex_isNt==1 );
- if( winMutex_isNt && TryEnterCriticalSection(&p->mutex) ){
-#ifdef SQLITE_DEBUG
- p->owner = tid;
- p->nRef++;
-#endif
- rc = SQLITE_OK;
- }
-#else
- UNUSED_PARAMETER(p);
-#endif
-#ifdef SQLITE_DEBUG
- if( p->trace ){
- OSTRACE(("TRY-MUTEX tid=%lu, mutex(%d)=%p (%d), owner=%lu, nRef=%d, rc=%s\n",
- tid, p->id, p, p->trace, p->owner, p->nRef, sqlite3ErrName(rc)));
- }
-#endif
- return rc;
-}
-
-/*
-** The sqlite3_mutex_leave() routine exits a mutex that was
-** previously entered by the same thread. The behavior
-** is undefined if the mutex is not currently entered or
-** is not currently allocated. SQLite will never do either.
-*/
-static void winMutexLeave(sqlite3_mutex *p){
-#if defined(SQLITE_DEBUG) || defined(SQLITE_TEST)
- DWORD tid = GetCurrentThreadId();
-#endif
- assert( p );
-#ifdef SQLITE_DEBUG
- assert( p->nRef>0 );
- assert( p->owner==tid );
- p->nRef--;
- if( p->nRef==0 ) p->owner = 0;
- assert( p->nRef==0 || p->id==SQLITE_MUTEX_RECURSIVE );
-#endif
- assert( winMutex_isInit==1 );
- LeaveCriticalSection(&p->mutex);
-#ifdef SQLITE_DEBUG
- if( p->trace ){
- OSTRACE(("LEAVE-MUTEX tid=%lu, mutex(%d)=%p (%d), nRef=%d\n",
- tid, p->id, p, p->trace, p->nRef));
- }
-#endif
-}
-
-SQLITE_PRIVATE sqlite3_mutex_methods const *sqlite3DefaultMutex(void){
- static const sqlite3_mutex_methods sMutex = {
- winMutexInit,
- winMutexEnd,
- winMutexAlloc,
- winMutexFree,
- winMutexEnter,
- winMutexTry,
- winMutexLeave,
-#ifdef SQLITE_DEBUG
- winMutexHeld,
- winMutexNotheld
-#else
- 0,
- 0
-#endif
- };
- return &sMutex;
-}
-
-#endif /* SQLITE_MUTEX_W32 */
-
-/************** End of mutex_w32.c *******************************************/
-/************** Begin file malloc.c ******************************************/
-/*
-** 2001 September 15
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-**
-** Memory allocation functions used throughout sqlite.
-*/
-/* #include "sqliteInt.h" */
-/* #include */
-
-/*
-** Attempt to release up to n bytes of non-essential memory currently
-** held by SQLite. An example of non-essential memory is memory used to
-** cache database pages that are not currently in use.
-*/
-SQLITE_API int sqlite3_release_memory(int n){
-#ifdef SQLITE_ENABLE_MEMORY_MANAGEMENT
- return sqlite3PcacheReleaseMemory(n);
-#else
- /* IMPLEMENTATION-OF: R-34391-24921 The sqlite3_release_memory() routine
- ** is a no-op returning zero if SQLite is not compiled with
- ** SQLITE_ENABLE_MEMORY_MANAGEMENT. */
- UNUSED_PARAMETER(n);
- return 0;
-#endif
-}
-
-/*
-** State information local to the memory allocation subsystem.
-*/
-static SQLITE_WSD struct Mem0Global {
- sqlite3_mutex *mutex; /* Mutex to serialize access */
- sqlite3_int64 alarmThreshold; /* The soft heap limit */
-
- /*
- ** True if heap is nearly "full" where "full" is defined by the
- ** sqlite3_soft_heap_limit() setting.
- */
- int nearlyFull;
-} mem0 = { 0, 0, 0 };
-
-#define mem0 GLOBAL(struct Mem0Global, mem0)
-
-/*
-** Return the memory allocator mutex. sqlite3_status() needs it.
-*/
-SQLITE_PRIVATE sqlite3_mutex *sqlite3MallocMutex(void){
- return mem0.mutex;
-}
-
-#ifndef SQLITE_OMIT_DEPRECATED
-/*
-** Deprecated external interface. It used to set an alarm callback
-** that was invoked when memory usage grew too large. Now it is a
-** no-op.
-*/
-SQLITE_API int sqlite3_memory_alarm(
- void(*xCallback)(void *pArg, sqlite3_int64 used,int N),
- void *pArg,
- sqlite3_int64 iThreshold
-){
- (void)xCallback;
- (void)pArg;
- (void)iThreshold;
- return SQLITE_OK;
-}
-#endif
-
-/*
-** Set the soft heap-size limit for the library. Passing a zero or
-** negative value indicates no limit.
-*/
-SQLITE_API sqlite3_int64 sqlite3_soft_heap_limit64(sqlite3_int64 n){
- sqlite3_int64 priorLimit;
- sqlite3_int64 excess;
- sqlite3_int64 nUsed;
-#ifndef SQLITE_OMIT_AUTOINIT
- int rc = sqlite3_initialize();
- if( rc ) return -1;
-#endif
- sqlite3_mutex_enter(mem0.mutex);
- priorLimit = mem0.alarmThreshold;
- if( n<0 ){
- sqlite3_mutex_leave(mem0.mutex);
- return priorLimit;
- }
- mem0.alarmThreshold = n;
- nUsed = sqlite3StatusValue(SQLITE_STATUS_MEMORY_USED);
- mem0.nearlyFull = (n>0 && n<=nUsed);
- sqlite3_mutex_leave(mem0.mutex);
- excess = sqlite3_memory_used() - n;
- if( excess>0 ) sqlite3_release_memory((int)(excess & 0x7fffffff));
- return priorLimit;
-}
-SQLITE_API void sqlite3_soft_heap_limit(int n){
- if( n<0 ) n = 0;
- sqlite3_soft_heap_limit64(n);
-}
-
-/*
-** Initialize the memory allocation subsystem.
-*/
-SQLITE_PRIVATE int sqlite3MallocInit(void){
- int rc;
- if( sqlite3GlobalConfig.m.xMalloc==0 ){
- sqlite3MemSetDefault();
- }
- memset(&mem0, 0, sizeof(mem0));
- mem0.mutex = sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_MEM);
- if( sqlite3GlobalConfig.pPage==0 || sqlite3GlobalConfig.szPage<512
- || sqlite3GlobalConfig.nPage<=0 ){
- sqlite3GlobalConfig.pPage = 0;
- sqlite3GlobalConfig.szPage = 0;
- }
- rc = sqlite3GlobalConfig.m.xInit(sqlite3GlobalConfig.m.pAppData);
- if( rc!=SQLITE_OK ) memset(&mem0, 0, sizeof(mem0));
- return rc;
-}
-
-/*
-** Return true if the heap is currently under memory pressure - in other
-** words if the amount of heap used is close to the limit set by
-** sqlite3_soft_heap_limit().
-*/
-SQLITE_PRIVATE int sqlite3HeapNearlyFull(void){
- return mem0.nearlyFull;
-}
-
-/*
-** Deinitialize the memory allocation subsystem.
-*/
-SQLITE_PRIVATE void sqlite3MallocEnd(void){
- if( sqlite3GlobalConfig.m.xShutdown ){
- sqlite3GlobalConfig.m.xShutdown(sqlite3GlobalConfig.m.pAppData);
- }
- memset(&mem0, 0, sizeof(mem0));
-}
-
-/*
-** Return the amount of memory currently checked out.
-*/
-SQLITE_API sqlite3_int64 sqlite3_memory_used(void){
- sqlite3_int64 res, mx;
- sqlite3_status64(SQLITE_STATUS_MEMORY_USED, &res, &mx, 0);
- return res;
-}
-
-/*
-** Return the maximum amount of memory that has ever been
-** checked out since either the beginning of this process
-** or since the most recent reset.
-*/
-SQLITE_API sqlite3_int64 sqlite3_memory_highwater(int resetFlag){
- sqlite3_int64 res, mx;
- sqlite3_status64(SQLITE_STATUS_MEMORY_USED, &res, &mx, resetFlag);
- return mx;
-}
-
-/*
-** Trigger the alarm
-*/
-static void sqlite3MallocAlarm(int nByte){
- if( mem0.alarmThreshold<=0 ) return;
- sqlite3_mutex_leave(mem0.mutex);
- sqlite3_release_memory(nByte);
- sqlite3_mutex_enter(mem0.mutex);
-}
-
-/*
-** Do a memory allocation with statistics and alarms. Assume the
-** lock is already held.
-*/
-static void mallocWithAlarm(int n, void **pp){
- void *p;
- int nFull;
- assert( sqlite3_mutex_held(mem0.mutex) );
- assert( n>0 );
-
- /* In Firefox (circa 2017-02-08), xRoundup() is remapped to an internal
- ** implementation of malloc_good_size(), which must be called in debug
- ** mode and specifically when the DMD "Dark Matter Detector" is enabled
- ** or else a crash results. Hence, do not attempt to optimize out the
- ** following xRoundup() call. */
- nFull = sqlite3GlobalConfig.m.xRoundup(n);
-
-#ifdef SQLITE_MAX_MEMORY
- if( sqlite3StatusValue(SQLITE_STATUS_MEMORY_USED)+nFull>SQLITE_MAX_MEMORY ){
- *pp = 0;
- return;
- }
-#endif
-
- sqlite3StatusHighwater(SQLITE_STATUS_MALLOC_SIZE, n);
- if( mem0.alarmThreshold>0 ){
- sqlite3_int64 nUsed = sqlite3StatusValue(SQLITE_STATUS_MEMORY_USED);
- if( nUsed >= mem0.alarmThreshold - nFull ){
- mem0.nearlyFull = 1;
- sqlite3MallocAlarm(nFull);
- }else{
- mem0.nearlyFull = 0;
- }
- }
- p = sqlite3GlobalConfig.m.xMalloc(nFull);
-#ifdef SQLITE_ENABLE_MEMORY_MANAGEMENT
- if( p==0 && mem0.alarmThreshold>0 ){
- sqlite3MallocAlarm(nFull);
- p = sqlite3GlobalConfig.m.xMalloc(nFull);
- }
-#endif
- if( p ){
- nFull = sqlite3MallocSize(p);
- sqlite3StatusUp(SQLITE_STATUS_MEMORY_USED, nFull);
- sqlite3StatusUp(SQLITE_STATUS_MALLOC_COUNT, 1);
- }
- *pp = p;
-}
-
-/*
-** Allocate memory. This routine is like sqlite3_malloc() except that it
-** assumes the memory subsystem has already been initialized.
-*/
-SQLITE_PRIVATE void *sqlite3Malloc(u64 n){
- void *p;
- if( n==0 || n>=0x7fffff00 ){
- /* A memory allocation of a number of bytes which is near the maximum
- ** signed integer value might cause an integer overflow inside of the
- ** xMalloc(). Hence we limit the maximum size to 0x7fffff00, giving
- ** 255 bytes of overhead. SQLite itself will never use anything near
- ** this amount. The only way to reach the limit is with sqlite3_malloc() */
- p = 0;
- }else if( sqlite3GlobalConfig.bMemstat ){
- sqlite3_mutex_enter(mem0.mutex);
- mallocWithAlarm((int)n, &p);
- sqlite3_mutex_leave(mem0.mutex);
- }else{
- p = sqlite3GlobalConfig.m.xMalloc((int)n);
- }
- assert( EIGHT_BYTE_ALIGNMENT(p) ); /* IMP: R-11148-40995 */
- return p;
-}
-
-/*
-** This version of the memory allocation is for use by the application.
-** First make sure the memory subsystem is initialized, then do the
-** allocation.
-*/
-SQLITE_API void *sqlite3_malloc(int n){
-#ifndef SQLITE_OMIT_AUTOINIT
- if( sqlite3_initialize() ) return 0;
-#endif
- return n<=0 ? 0 : sqlite3Malloc(n);
-}
-SQLITE_API void *sqlite3_malloc64(sqlite3_uint64 n){
-#ifndef SQLITE_OMIT_AUTOINIT
- if( sqlite3_initialize() ) return 0;
-#endif
- return sqlite3Malloc(n);
-}
-
-/*
-** TRUE if p is a lookaside memory allocation from db
-*/
-#ifndef SQLITE_OMIT_LOOKASIDE
-static int isLookaside(sqlite3 *db, void *p){
- return SQLITE_WITHIN(p, db->lookaside.pStart, db->lookaside.pEnd);
-}
-#else
-#define isLookaside(A,B) 0
-#endif
-
-/*
-** Return the size of a memory allocation previously obtained from
-** sqlite3Malloc() or sqlite3_malloc().
-*/
-SQLITE_PRIVATE int sqlite3MallocSize(void *p){
- assert( sqlite3MemdebugHasType(p, MEMTYPE_HEAP) );
- return sqlite3GlobalConfig.m.xSize(p);
-}
-SQLITE_PRIVATE int sqlite3DbMallocSize(sqlite3 *db, void *p){
- assert( p!=0 );
- if( db==0 || !isLookaside(db,p) ){
-#ifdef SQLITE_DEBUG
- if( db==0 ){
- assert( sqlite3MemdebugNoType(p, (u8)~MEMTYPE_HEAP) );
- assert( sqlite3MemdebugHasType(p, MEMTYPE_HEAP) );
- }else{
- assert( sqlite3MemdebugHasType(p, (MEMTYPE_LOOKASIDE|MEMTYPE_HEAP)) );
- assert( sqlite3MemdebugNoType(p, (u8)~(MEMTYPE_LOOKASIDE|MEMTYPE_HEAP)) );
- }
-#endif
- return sqlite3GlobalConfig.m.xSize(p);
- }else{
- assert( sqlite3_mutex_held(db->mutex) );
- return db->lookaside.sz;
- }
-}
-SQLITE_API sqlite3_uint64 sqlite3_msize(void *p){
- assert( sqlite3MemdebugNoType(p, (u8)~MEMTYPE_HEAP) );
- assert( sqlite3MemdebugHasType(p, MEMTYPE_HEAP) );
- return p ? sqlite3GlobalConfig.m.xSize(p) : 0;
-}
-
-/*
-** Free memory previously obtained from sqlite3Malloc().
-*/
-SQLITE_API void sqlite3_free(void *p){
- if( p==0 ) return; /* IMP: R-49053-54554 */
- assert( sqlite3MemdebugHasType(p, MEMTYPE_HEAP) );
- assert( sqlite3MemdebugNoType(p, (u8)~MEMTYPE_HEAP) );
- if( sqlite3GlobalConfig.bMemstat ){
- sqlite3_mutex_enter(mem0.mutex);
- sqlite3StatusDown(SQLITE_STATUS_MEMORY_USED, sqlite3MallocSize(p));
- sqlite3StatusDown(SQLITE_STATUS_MALLOC_COUNT, 1);
- sqlite3GlobalConfig.m.xFree(p);
- sqlite3_mutex_leave(mem0.mutex);
- }else{
- sqlite3GlobalConfig.m.xFree(p);
- }
-}
-
-/*
-** Add the size of memory allocation "p" to the count in
-** *db->pnBytesFreed.
-*/
-static SQLITE_NOINLINE void measureAllocationSize(sqlite3 *db, void *p){
- *db->pnBytesFreed += sqlite3DbMallocSize(db,p);
-}
-
-/*
-** Free memory that might be associated with a particular database
-** connection. Calling sqlite3DbFree(D,X) for X==0 is a harmless no-op.
-** The sqlite3DbFreeNN(D,X) version requires that X be non-NULL.
-*/
-SQLITE_PRIVATE void sqlite3DbFreeNN(sqlite3 *db, void *p){
- assert( db==0 || sqlite3_mutex_held(db->mutex) );
- assert( p!=0 );
- if( db ){
- if( db->pnBytesFreed ){
- measureAllocationSize(db, p);
- return;
- }
- if( isLookaside(db, p) ){
- LookasideSlot *pBuf = (LookasideSlot*)p;
-#ifdef SQLITE_DEBUG
- /* Trash all content in the buffer being freed */
- memset(p, 0xaa, db->lookaside.sz);
-#endif
- pBuf->pNext = db->lookaside.pFree;
- db->lookaside.pFree = pBuf;
- return;
- }
- }
- assert( sqlite3MemdebugHasType(p, (MEMTYPE_LOOKASIDE|MEMTYPE_HEAP)) );
- assert( sqlite3MemdebugNoType(p, (u8)~(MEMTYPE_LOOKASIDE|MEMTYPE_HEAP)) );
- assert( db!=0 || sqlite3MemdebugNoType(p, MEMTYPE_LOOKASIDE) );
- sqlite3MemdebugSetType(p, MEMTYPE_HEAP);
- sqlite3_free(p);
-}
-SQLITE_PRIVATE void sqlite3DbFree(sqlite3 *db, void *p){
- assert( db==0 || sqlite3_mutex_held(db->mutex) );
- if( p ) sqlite3DbFreeNN(db, p);
-}
-
-/*
-** Change the size of an existing memory allocation
-*/
-SQLITE_PRIVATE void *sqlite3Realloc(void *pOld, u64 nBytes){
- int nOld, nNew, nDiff;
- void *pNew;
- assert( sqlite3MemdebugHasType(pOld, MEMTYPE_HEAP) );
- assert( sqlite3MemdebugNoType(pOld, (u8)~MEMTYPE_HEAP) );
- if( pOld==0 ){
- return sqlite3Malloc(nBytes); /* IMP: R-04300-56712 */
- }
- if( nBytes==0 ){
- sqlite3_free(pOld); /* IMP: R-26507-47431 */
- return 0;
- }
- if( nBytes>=0x7fffff00 ){
- /* The 0x7ffff00 limit term is explained in comments on sqlite3Malloc() */
- return 0;
- }
- nOld = sqlite3MallocSize(pOld);
- /* IMPLEMENTATION-OF: R-46199-30249 SQLite guarantees that the second
- ** argument to xRealloc is always a value returned by a prior call to
- ** xRoundup. */
- nNew = sqlite3GlobalConfig.m.xRoundup((int)nBytes);
- if( nOld==nNew ){
- pNew = pOld;
- }else if( sqlite3GlobalConfig.bMemstat ){
- sqlite3_mutex_enter(mem0.mutex);
- sqlite3StatusHighwater(SQLITE_STATUS_MALLOC_SIZE, (int)nBytes);
- nDiff = nNew - nOld;
- if( nDiff>0 && sqlite3StatusValue(SQLITE_STATUS_MEMORY_USED) >=
- mem0.alarmThreshold-nDiff ){
- sqlite3MallocAlarm(nDiff);
- }
- pNew = sqlite3GlobalConfig.m.xRealloc(pOld, nNew);
- if( pNew==0 && mem0.alarmThreshold>0 ){
- sqlite3MallocAlarm((int)nBytes);
- pNew = sqlite3GlobalConfig.m.xRealloc(pOld, nNew);
- }
- if( pNew ){
- nNew = sqlite3MallocSize(pNew);
- sqlite3StatusUp(SQLITE_STATUS_MEMORY_USED, nNew-nOld);
- }
- sqlite3_mutex_leave(mem0.mutex);
- }else{
- pNew = sqlite3GlobalConfig.m.xRealloc(pOld, nNew);
- }
- assert( EIGHT_BYTE_ALIGNMENT(pNew) ); /* IMP: R-11148-40995 */
- return pNew;
-}
-
-/*
-** The public interface to sqlite3Realloc. Make sure that the memory
-** subsystem is initialized prior to invoking sqliteRealloc.
-*/
-SQLITE_API void *sqlite3_realloc(void *pOld, int n){
-#ifndef SQLITE_OMIT_AUTOINIT
- if( sqlite3_initialize() ) return 0;
-#endif
- if( n<0 ) n = 0; /* IMP: R-26507-47431 */
- return sqlite3Realloc(pOld, n);
-}
-SQLITE_API void *sqlite3_realloc64(void *pOld, sqlite3_uint64 n){
-#ifndef SQLITE_OMIT_AUTOINIT
- if( sqlite3_initialize() ) return 0;
-#endif
- return sqlite3Realloc(pOld, n);
-}
-
-
-/*
-** Allocate and zero memory.
-*/
-SQLITE_PRIVATE void *sqlite3MallocZero(u64 n){
- void *p = sqlite3Malloc(n);
- if( p ){
- memset(p, 0, (size_t)n);
- }
- return p;
-}
-
-/*
-** Allocate and zero memory. If the allocation fails, make
-** the mallocFailed flag in the connection pointer.
-*/
-SQLITE_PRIVATE void *sqlite3DbMallocZero(sqlite3 *db, u64 n){
- void *p;
- testcase( db==0 );
- p = sqlite3DbMallocRaw(db, n);
- if( p ) memset(p, 0, (size_t)n);
- return p;
-}
-
-
-/* Finish the work of sqlite3DbMallocRawNN for the unusual and
-** slower case when the allocation cannot be fulfilled using lookaside.
-*/
-static SQLITE_NOINLINE void *dbMallocRawFinish(sqlite3 *db, u64 n){
- void *p;
- assert( db!=0 );
- p = sqlite3Malloc(n);
- if( !p ) sqlite3OomFault(db);
- sqlite3MemdebugSetType(p,
- (db->lookaside.bDisable==0) ? MEMTYPE_LOOKASIDE : MEMTYPE_HEAP);
- return p;
-}
-
-/*
-** Allocate memory, either lookaside (if possible) or heap.
-** If the allocation fails, set the mallocFailed flag in
-** the connection pointer.
-**
-** If db!=0 and db->mallocFailed is true (indicating a prior malloc
-** failure on the same database connection) then always return 0.
-** Hence for a particular database connection, once malloc starts
-** failing, it fails consistently until mallocFailed is reset.
-** This is an important assumption. There are many places in the
-** code that do things like this:
-**
-** int *a = (int*)sqlite3DbMallocRaw(db, 100);
-** int *b = (int*)sqlite3DbMallocRaw(db, 200);
-** if( b ) a[10] = 9;
-**
-** In other words, if a subsequent malloc (ex: "b") worked, it is assumed
-** that all prior mallocs (ex: "a") worked too.
-**
-** The sqlite3MallocRawNN() variant guarantees that the "db" parameter is
-** not a NULL pointer.
-*/
-SQLITE_PRIVATE void *sqlite3DbMallocRaw(sqlite3 *db, u64 n){
- void *p;
- if( db ) return sqlite3DbMallocRawNN(db, n);
- p = sqlite3Malloc(n);
- sqlite3MemdebugSetType(p, MEMTYPE_HEAP);
- return p;
-}
-SQLITE_PRIVATE void *sqlite3DbMallocRawNN(sqlite3 *db, u64 n){
-#ifndef SQLITE_OMIT_LOOKASIDE
- LookasideSlot *pBuf;
- assert( db!=0 );
- assert( sqlite3_mutex_held(db->mutex) );
- assert( db->pnBytesFreed==0 );
- if( db->lookaside.bDisable==0 ){
- assert( db->mallocFailed==0 );
- if( n>db->lookaside.sz ){
- db->lookaside.anStat[1]++;
- }else if( (pBuf = db->lookaside.pFree)!=0 ){
- db->lookaside.pFree = pBuf->pNext;
- db->lookaside.anStat[0]++;
- return (void*)pBuf;
- }else if( (pBuf = db->lookaside.pInit)!=0 ){
- db->lookaside.pInit = pBuf->pNext;
- db->lookaside.anStat[0]++;
- return (void*)pBuf;
- }else{
- db->lookaside.anStat[2]++;
- }
- }else if( db->mallocFailed ){
- return 0;
- }
-#else
- assert( db!=0 );
- assert( sqlite3_mutex_held(db->mutex) );
- assert( db->pnBytesFreed==0 );
- if( db->mallocFailed ){
- return 0;
- }
-#endif
- return dbMallocRawFinish(db, n);
-}
-
-/* Forward declaration */
-static SQLITE_NOINLINE void *dbReallocFinish(sqlite3 *db, void *p, u64 n);
-
-/*
-** Resize the block of memory pointed to by p to n bytes. If the
-** resize fails, set the mallocFailed flag in the connection object.
-*/
-SQLITE_PRIVATE void *sqlite3DbRealloc(sqlite3 *db, void *p, u64 n){
- assert( db!=0 );
- if( p==0 ) return sqlite3DbMallocRawNN(db, n);
- assert( sqlite3_mutex_held(db->mutex) );
- if( isLookaside(db,p) && n<=db->lookaside.sz ) return p;
- return dbReallocFinish(db, p, n);
-}
-static SQLITE_NOINLINE void *dbReallocFinish(sqlite3 *db, void *p, u64 n){
- void *pNew = 0;
- assert( db!=0 );
- assert( p!=0 );
- if( db->mallocFailed==0 ){
- if( isLookaside(db, p) ){
- pNew = sqlite3DbMallocRawNN(db, n);
- if( pNew ){
- memcpy(pNew, p, db->lookaside.sz);
- sqlite3DbFree(db, p);
- }
- }else{
- assert( sqlite3MemdebugHasType(p, (MEMTYPE_LOOKASIDE|MEMTYPE_HEAP)) );
- assert( sqlite3MemdebugNoType(p, (u8)~(MEMTYPE_LOOKASIDE|MEMTYPE_HEAP)) );
- sqlite3MemdebugSetType(p, MEMTYPE_HEAP);
- pNew = sqlite3_realloc64(p, n);
- if( !pNew ){
- sqlite3OomFault(db);
- }
- sqlite3MemdebugSetType(pNew,
- (db->lookaside.bDisable==0 ? MEMTYPE_LOOKASIDE : MEMTYPE_HEAP));
- }
- }
- return pNew;
-}
-
-/*
-** Attempt to reallocate p. If the reallocation fails, then free p
-** and set the mallocFailed flag in the database connection.
-*/
-SQLITE_PRIVATE void *sqlite3DbReallocOrFree(sqlite3 *db, void *p, u64 n){
- void *pNew;
- pNew = sqlite3DbRealloc(db, p, n);
- if( !pNew ){
- sqlite3DbFree(db, p);
- }
- return pNew;
-}
-
-/*
-** Make a copy of a string in memory obtained from sqliteMalloc(). These
-** functions call sqlite3MallocRaw() directly instead of sqliteMalloc(). This
-** is because when memory debugging is turned on, these two functions are
-** called via macros that record the current file and line number in the
-** ThreadData structure.
-*/
-SQLITE_PRIVATE char *sqlite3DbStrDup(sqlite3 *db, const char *z){
- char *zNew;
- size_t n;
- if( z==0 ){
- return 0;
- }
- n = strlen(z) + 1;
- zNew = sqlite3DbMallocRaw(db, n);
- if( zNew ){
- memcpy(zNew, z, n);
- }
- return zNew;
-}
-SQLITE_PRIVATE char *sqlite3DbStrNDup(sqlite3 *db, const char *z, u64 n){
- char *zNew;
- assert( db!=0 );
- if( z==0 ){
- return 0;
- }
- assert( (n&0x7fffffff)==n );
- zNew = sqlite3DbMallocRawNN(db, n+1);
- if( zNew ){
- memcpy(zNew, z, (size_t)n);
- zNew[n] = 0;
- }
- return zNew;
-}
-
-/*
-** The text between zStart and zEnd represents a phrase within a larger
-** SQL statement. Make a copy of this phrase in space obtained form
-** sqlite3DbMalloc(). Omit leading and trailing whitespace.
-*/
-SQLITE_PRIVATE char *sqlite3DbSpanDup(sqlite3 *db, const char *zStart, const char *zEnd){
- int n;
- while( sqlite3Isspace(zStart[0]) ) zStart++;
- n = (int)(zEnd - zStart);
- while( ALWAYS(n>0) && sqlite3Isspace(zStart[n-1]) ) n--;
- return sqlite3DbStrNDup(db, zStart, n);
-}
-
-/*
-** Free any prior content in *pz and replace it with a copy of zNew.
-*/
-SQLITE_PRIVATE void sqlite3SetString(char **pz, sqlite3 *db, const char *zNew){
- sqlite3DbFree(db, *pz);
- *pz = sqlite3DbStrDup(db, zNew);
-}
-
-/*
-** Call this routine to record the fact that an OOM (out-of-memory) error
-** has happened. This routine will set db->mallocFailed, and also
-** temporarily disable the lookaside memory allocator and interrupt
-** any running VDBEs.
-*/
-SQLITE_PRIVATE void sqlite3OomFault(sqlite3 *db){
- if( db->mallocFailed==0 && db->bBenignMalloc==0 ){
- db->mallocFailed = 1;
- if( db->nVdbeExec>0 ){
- db->u1.isInterrupted = 1;
- }
- db->lookaside.bDisable++;
- }
-}
-
-/*
-** This routine reactivates the memory allocator and clears the
-** db->mallocFailed flag as necessary.
-**
-** The memory allocator is not restarted if there are running
-** VDBEs.
-*/
-SQLITE_PRIVATE void sqlite3OomClear(sqlite3 *db){
- if( db->mallocFailed && db->nVdbeExec==0 ){
- db->mallocFailed = 0;
- db->u1.isInterrupted = 0;
- assert( db->lookaside.bDisable>0 );
- db->lookaside.bDisable--;
- }
-}
-
-/*
-** Take actions at the end of an API call to indicate an OOM error
-*/
-static SQLITE_NOINLINE int apiOomError(sqlite3 *db){
- sqlite3OomClear(db);
- sqlite3Error(db, SQLITE_NOMEM);
- return SQLITE_NOMEM_BKPT;
-}
-
-/*
-** This function must be called before exiting any API function (i.e.
-** returning control to the user) that has called sqlite3_malloc or
-** sqlite3_realloc.
-**
-** The returned value is normally a copy of the second argument to this
-** function. However, if a malloc() failure has occurred since the previous
-** invocation SQLITE_NOMEM is returned instead.
-**
-** If an OOM as occurred, then the connection error-code (the value
-** returned by sqlite3_errcode()) is set to SQLITE_NOMEM.
-*/
-SQLITE_PRIVATE int sqlite3ApiExit(sqlite3* db, int rc){
- /* If the db handle must hold the connection handle mutex here.
- ** Otherwise the read (and possible write) of db->mallocFailed
- ** is unsafe, as is the call to sqlite3Error().
- */
- assert( db!=0 );
- assert( sqlite3_mutex_held(db->mutex) );
- if( db->mallocFailed || rc==SQLITE_IOERR_NOMEM ){
- return apiOomError(db);
- }
- return rc & db->errMask;
-}
-
-/************** End of malloc.c **********************************************/
-/************** Begin file printf.c ******************************************/
-/*
-** The "printf" code that follows dates from the 1980's. It is in
-** the public domain.
-**
-**************************************************************************
-**
-** This file contains code for a set of "printf"-like routines. These
-** routines format strings much like the printf() from the standard C
-** library, though the implementation here has enhancements to support
-** SQLite.
-*/
-/* #include "sqliteInt.h" */
-
-/*
-** Conversion types fall into various categories as defined by the
-** following enumeration.
-*/
-#define etRADIX 0 /* non-decimal integer types. %x %o */
-#define etFLOAT 1 /* Floating point. %f */
-#define etEXP 2 /* Exponentional notation. %e and %E */
-#define etGENERIC 3 /* Floating or exponential, depending on exponent. %g */
-#define etSIZE 4 /* Return number of characters processed so far. %n */
-#define etSTRING 5 /* Strings. %s */
-#define etDYNSTRING 6 /* Dynamically allocated strings. %z */
-#define etPERCENT 7 /* Percent symbol. %% */
-#define etCHARX 8 /* Characters. %c */
-/* The rest are extensions, not normally found in printf() */
-#define etSQLESCAPE 9 /* Strings with '\'' doubled. %q */
-#define etSQLESCAPE2 10 /* Strings with '\'' doubled and enclosed in '',
- NULL pointers replaced by SQL NULL. %Q */
-#define etTOKEN 11 /* a pointer to a Token structure */
-#define etSRCLIST 12 /* a pointer to a SrcList */
-#define etPOINTER 13 /* The %p conversion */
-#define etSQLESCAPE3 14 /* %w -> Strings with '\"' doubled */
-#define etORDINAL 15 /* %r -> 1st, 2nd, 3rd, 4th, etc. English only */
-#define etDECIMAL 16 /* %d or %u, but not %x, %o */
-
-#define etINVALID 17 /* Any unrecognized conversion type */
-
-
-/*
-** An "etByte" is an 8-bit unsigned value.
-*/
-typedef unsigned char etByte;
-
-/*
-** Each builtin conversion character (ex: the 'd' in "%d") is described
-** by an instance of the following structure
-*/
-typedef struct et_info { /* Information about each format field */
- char fmttype; /* The format field code letter */
- etByte base; /* The base for radix conversion */
- etByte flags; /* One or more of FLAG_ constants below */
- etByte type; /* Conversion paradigm */
- etByte charset; /* Offset into aDigits[] of the digits string */
- etByte prefix; /* Offset into aPrefix[] of the prefix string */
-} et_info;
-
-/*
-** Allowed values for et_info.flags
-*/
-#define FLAG_SIGNED 1 /* True if the value to convert is signed */
-#define FLAG_STRING 4 /* Allow infinite precision */
-
-
-/*
-** The following table is searched linearly, so it is good to put the
-** most frequently used conversion types first.
-*/
-static const char aDigits[] = "0123456789ABCDEF0123456789abcdef";
-static const char aPrefix[] = "-x0\000X0";
-static const et_info fmtinfo[] = {
- { 'd', 10, 1, etDECIMAL, 0, 0 },
- { 's', 0, 4, etSTRING, 0, 0 },
- { 'g', 0, 1, etGENERIC, 30, 0 },
- { 'z', 0, 4, etDYNSTRING, 0, 0 },
- { 'q', 0, 4, etSQLESCAPE, 0, 0 },
- { 'Q', 0, 4, etSQLESCAPE2, 0, 0 },
- { 'w', 0, 4, etSQLESCAPE3, 0, 0 },
- { 'c', 0, 0, etCHARX, 0, 0 },
- { 'o', 8, 0, etRADIX, 0, 2 },
- { 'u', 10, 0, etDECIMAL, 0, 0 },
- { 'x', 16, 0, etRADIX, 16, 1 },
- { 'X', 16, 0, etRADIX, 0, 4 },
-#ifndef SQLITE_OMIT_FLOATING_POINT
- { 'f', 0, 1, etFLOAT, 0, 0 },
- { 'e', 0, 1, etEXP, 30, 0 },
- { 'E', 0, 1, etEXP, 14, 0 },
- { 'G', 0, 1, etGENERIC, 14, 0 },
-#endif
- { 'i', 10, 1, etDECIMAL, 0, 0 },
- { 'n', 0, 0, etSIZE, 0, 0 },
- { '%', 0, 0, etPERCENT, 0, 0 },
- { 'p', 16, 0, etPOINTER, 0, 1 },
-
- /* All the rest are undocumented and are for internal use only */
- { 'T', 0, 0, etTOKEN, 0, 0 },
- { 'S', 0, 0, etSRCLIST, 0, 0 },
- { 'r', 10, 1, etORDINAL, 0, 0 },
-};
-
-/*
-** If SQLITE_OMIT_FLOATING_POINT is defined, then none of the floating point
-** conversions will work.
-*/
-#ifndef SQLITE_OMIT_FLOATING_POINT
-/*
-** "*val" is a double such that 0.1 <= *val < 10.0
-** Return the ascii code for the leading digit of *val, then
-** multiply "*val" by 10.0 to renormalize.
-**
-** Example:
-** input: *val = 3.14159
-** output: *val = 1.4159 function return = '3'
-**
-** The counter *cnt is incremented each time. After counter exceeds
-** 16 (the number of significant digits in a 64-bit float) '0' is
-** always returned.
-*/
-static char et_getdigit(LONGDOUBLE_TYPE *val, int *cnt){
- int digit;
- LONGDOUBLE_TYPE d;
- if( (*cnt)<=0 ) return '0';
- (*cnt)--;
- digit = (int)*val;
- d = digit;
- digit += '0';
- *val = (*val - d)*10.0;
- return (char)digit;
-}
-#endif /* SQLITE_OMIT_FLOATING_POINT */
-
-/*
-** Set the StrAccum object to an error mode.
-*/
-static void setStrAccumError(StrAccum *p, u8 eError){
- assert( eError==SQLITE_NOMEM || eError==SQLITE_TOOBIG );
- p->accError = eError;
- p->nAlloc = 0;
-}
-
-/*
-** Extra argument values from a PrintfArguments object
-*/
-static sqlite3_int64 getIntArg(PrintfArguments *p){
- if( p->nArg<=p->nUsed ) return 0;
- return sqlite3_value_int64(p->apArg[p->nUsed++]);
-}
-static double getDoubleArg(PrintfArguments *p){
- if( p->nArg<=p->nUsed ) return 0.0;
- return sqlite3_value_double(p->apArg[p->nUsed++]);
-}
-static char *getTextArg(PrintfArguments *p){
- if( p->nArg<=p->nUsed ) return 0;
- return (char*)sqlite3_value_text(p->apArg[p->nUsed++]);
-}
-
-
-/*
-** On machines with a small stack size, you can redefine the
-** SQLITE_PRINT_BUF_SIZE to be something smaller, if desired.
-*/
-#ifndef SQLITE_PRINT_BUF_SIZE
-# define SQLITE_PRINT_BUF_SIZE 70
-#endif
-#define etBUFSIZE SQLITE_PRINT_BUF_SIZE /* Size of the output buffer */
-
-/*
-** Render a string given by "fmt" into the StrAccum object.
-*/
-SQLITE_API void sqlite3_str_vappendf(
- sqlite3_str *pAccum, /* Accumulate results here */
- const char *fmt, /* Format string */
- va_list ap /* arguments */
-){
- int c; /* Next character in the format string */
- char *bufpt; /* Pointer to the conversion buffer */
- int precision; /* Precision of the current field */
- int length; /* Length of the field */
- int idx; /* A general purpose loop counter */
- int width; /* Width of the current field */
- etByte flag_leftjustify; /* True if "-" flag is present */
- etByte flag_prefix; /* '+' or ' ' or 0 for prefix */
- etByte flag_alternateform; /* True if "#" flag is present */
- etByte flag_altform2; /* True if "!" flag is present */
- etByte flag_zeropad; /* True if field width constant starts with zero */
- etByte flag_long; /* 1 for the "l" flag, 2 for "ll", 0 by default */
- etByte done; /* Loop termination flag */
- etByte cThousand; /* Thousands separator for %d and %u */
- etByte xtype = etINVALID; /* Conversion paradigm */
- u8 bArgList; /* True for SQLITE_PRINTF_SQLFUNC */
- char prefix; /* Prefix character. "+" or "-" or " " or '\0'. */
- sqlite_uint64 longvalue; /* Value for integer types */
- LONGDOUBLE_TYPE realvalue; /* Value for real types */
- const et_info *infop; /* Pointer to the appropriate info structure */
- char *zOut; /* Rendering buffer */
- int nOut; /* Size of the rendering buffer */
- char *zExtra = 0; /* Malloced memory used by some conversion */
-#ifndef SQLITE_OMIT_FLOATING_POINT
- int exp, e2; /* exponent of real numbers */
- int nsd; /* Number of significant digits returned */
- double rounder; /* Used for rounding floating point values */
- etByte flag_dp; /* True if decimal point should be shown */
- etByte flag_rtz; /* True if trailing zeros should be removed */
-#endif
- PrintfArguments *pArgList = 0; /* Arguments for SQLITE_PRINTF_SQLFUNC */
- char buf[etBUFSIZE]; /* Conversion buffer */
-
- /* pAccum never starts out with an empty buffer that was obtained from
- ** malloc(). This precondition is required by the mprintf("%z...")
- ** optimization. */
- assert( pAccum->nChar>0 || (pAccum->printfFlags&SQLITE_PRINTF_MALLOCED)==0 );
-
- bufpt = 0;
- if( (pAccum->printfFlags & SQLITE_PRINTF_SQLFUNC)!=0 ){
- pArgList = va_arg(ap, PrintfArguments*);
- bArgList = 1;
- }else{
- bArgList = 0;
- }
- for(; (c=(*fmt))!=0; ++fmt){
- if( c!='%' ){
- bufpt = (char *)fmt;
-#if HAVE_STRCHRNUL
- fmt = strchrnul(fmt, '%');
-#else
- do{ fmt++; }while( *fmt && *fmt != '%' );
-#endif
- sqlite3_str_append(pAccum, bufpt, (int)(fmt - bufpt));
- if( *fmt==0 ) break;
- }
- if( (c=(*++fmt))==0 ){
- sqlite3_str_append(pAccum, "%", 1);
- break;
- }
- /* Find out what flags are present */
- flag_leftjustify = flag_prefix = cThousand =
- flag_alternateform = flag_altform2 = flag_zeropad = 0;
- done = 0;
- do{
- switch( c ){
- case '-': flag_leftjustify = 1; break;
- case '+': flag_prefix = '+'; break;
- case ' ': flag_prefix = ' '; break;
- case '#': flag_alternateform = 1; break;
- case '!': flag_altform2 = 1; break;
- case '0': flag_zeropad = 1; break;
- case ',': cThousand = ','; break;
- default: done = 1; break;
- }
- }while( !done && (c=(*++fmt))!=0 );
- /* Get the field width */
- if( c=='*' ){
- if( bArgList ){
- width = (int)getIntArg(pArgList);
- }else{
- width = va_arg(ap,int);
- }
- if( width<0 ){
- flag_leftjustify = 1;
- width = width >= -2147483647 ? -width : 0;
- }
- c = *++fmt;
- }else{
- unsigned wx = 0;
- while( c>='0' && c<='9' ){
- wx = wx*10 + c - '0';
- c = *++fmt;
- }
- testcase( wx>0x7fffffff );
- width = wx & 0x7fffffff;
- }
- assert( width>=0 );
-#ifdef SQLITE_PRINTF_PRECISION_LIMIT
- if( width>SQLITE_PRINTF_PRECISION_LIMIT ){
- width = SQLITE_PRINTF_PRECISION_LIMIT;
- }
-#endif
-
- /* Get the precision */
- if( c=='.' ){
- c = *++fmt;
- if( c=='*' ){
- if( bArgList ){
- precision = (int)getIntArg(pArgList);
- }else{
- precision = va_arg(ap,int);
- }
- c = *++fmt;
- if( precision<0 ){
- precision = precision >= -2147483647 ? -precision : -1;
- }
- }else{
- unsigned px = 0;
- while( c>='0' && c<='9' ){
- px = px*10 + c - '0';
- c = *++fmt;
- }
- testcase( px>0x7fffffff );
- precision = px & 0x7fffffff;
- }
- }else{
- precision = -1;
- }
- assert( precision>=(-1) );
-#ifdef SQLITE_PRINTF_PRECISION_LIMIT
- if( precision>SQLITE_PRINTF_PRECISION_LIMIT ){
- precision = SQLITE_PRINTF_PRECISION_LIMIT;
- }
-#endif
-
-
- /* Get the conversion type modifier */
- if( c=='l' ){
- flag_long = 1;
- c = *++fmt;
- if( c=='l' ){
- flag_long = 2;
- c = *++fmt;
- }
- }else{
- flag_long = 0;
- }
- /* Fetch the info entry for the field */
- infop = &fmtinfo[0];
- xtype = etINVALID;
- for(idx=0; idxtype;
- break;
- }
- }
-
- /*
- ** At this point, variables are initialized as follows:
- **
- ** flag_alternateform TRUE if a '#' is present.
- ** flag_altform2 TRUE if a '!' is present.
- ** flag_prefix '+' or ' ' or zero
- ** flag_leftjustify TRUE if a '-' is present or if the
- ** field width was negative.
- ** flag_zeropad TRUE if the width began with 0.
- ** flag_long 1 for "l", 2 for "ll"
- ** width The specified field width. This is
- ** always non-negative. Zero is the default.
- ** precision The specified precision. The default
- ** is -1.
- ** xtype The class of the conversion.
- ** infop Pointer to the appropriate info struct.
- */
- switch( xtype ){
- case etPOINTER:
- flag_long = sizeof(char*)==sizeof(i64) ? 2 :
- sizeof(char*)==sizeof(long int) ? 1 : 0;
- /* Fall through into the next case */
- case etORDINAL:
- case etRADIX:
- cThousand = 0;
- /* Fall through into the next case */
- case etDECIMAL:
- if( infop->flags & FLAG_SIGNED ){
- i64 v;
- if( bArgList ){
- v = getIntArg(pArgList);
- }else if( flag_long ){
- if( flag_long==2 ){
- v = va_arg(ap,i64) ;
- }else{
- v = va_arg(ap,long int);
- }
- }else{
- v = va_arg(ap,int);
- }
- if( v<0 ){
- if( v==SMALLEST_INT64 ){
- longvalue = ((u64)1)<<63;
- }else{
- longvalue = -v;
- }
- prefix = '-';
- }else{
- longvalue = v;
- prefix = flag_prefix;
- }
- }else{
- if( bArgList ){
- longvalue = (u64)getIntArg(pArgList);
- }else if( flag_long ){
- if( flag_long==2 ){
- longvalue = va_arg(ap,u64);
- }else{
- longvalue = va_arg(ap,unsigned long int);
- }
- }else{
- longvalue = va_arg(ap,unsigned int);
- }
- prefix = 0;
- }
- if( longvalue==0 ) flag_alternateform = 0;
- if( flag_zeropad && precision=4 || (longvalue/10)%10==1 ){
- x = 0;
- }
- *(--bufpt) = zOrd[x*2+1];
- *(--bufpt) = zOrd[x*2];
- }
- {
- const char *cset = &aDigits[infop->charset];
- u8 base = infop->base;
- do{ /* Convert to ascii */
- *(--bufpt) = cset[longvalue%base];
- longvalue = longvalue/base;
- }while( longvalue>0 );
- }
- length = (int)(&zOut[nOut-1]-bufpt);
- while( precision>length ){
- *(--bufpt) = '0'; /* Zero pad */
- length++;
- }
- if( cThousand ){
- int nn = (length - 1)/3; /* Number of "," to insert */
- int ix = (length - 1)%3 + 1;
- bufpt -= nn;
- for(idx=0; nn>0; idx++){
- bufpt[idx] = bufpt[idx+nn];
- ix--;
- if( ix==0 ){
- bufpt[++idx] = cThousand;
- nn--;
- ix = 3;
- }
- }
- }
- if( prefix ) *(--bufpt) = prefix; /* Add sign */
- if( flag_alternateform && infop->prefix ){ /* Add "0" or "0x" */
- const char *pre;
- char x;
- pre = &aPrefix[infop->prefix];
- for(; (x=(*pre))!=0; pre++) *(--bufpt) = x;
- }
- length = (int)(&zOut[nOut-1]-bufpt);
- break;
- case etFLOAT:
- case etEXP:
- case etGENERIC:
- if( bArgList ){
- realvalue = getDoubleArg(pArgList);
- }else{
- realvalue = va_arg(ap,double);
- }
-#ifdef SQLITE_OMIT_FLOATING_POINT
- length = 0;
-#else
- if( precision<0 ) precision = 6; /* Set default precision */
- if( realvalue<0.0 ){
- realvalue = -realvalue;
- prefix = '-';
- }else{
- prefix = flag_prefix;
- }
- if( xtype==etGENERIC && precision>0 ) precision--;
- testcase( precision>0xfff );
- for(idx=precision&0xfff, rounder=0.5; idx>0; idx--, rounder*=0.1){}
- if( xtype==etFLOAT ) realvalue += rounder;
- /* Normalize realvalue to within 10.0 > realvalue >= 1.0 */
- exp = 0;
- if( sqlite3IsNaN((double)realvalue) ){
- bufpt = "NaN";
- length = 3;
- break;
- }
- if( realvalue>0.0 ){
- LONGDOUBLE_TYPE scale = 1.0;
- while( realvalue>=1e100*scale && exp<=350 ){ scale *= 1e100;exp+=100;}
- while( realvalue>=1e10*scale && exp<=350 ){ scale *= 1e10; exp+=10; }
- while( realvalue>=10.0*scale && exp<=350 ){ scale *= 10.0; exp++; }
- realvalue /= scale;
- while( realvalue<1e-8 ){ realvalue *= 1e8; exp-=8; }
- while( realvalue<1.0 ){ realvalue *= 10.0; exp--; }
- if( exp>350 ){
- bufpt = buf;
- buf[0] = prefix;
- memcpy(buf+(prefix!=0),"Inf",4);
- length = 3+(prefix!=0);
- break;
- }
- }
- bufpt = buf;
- /*
- ** If the field type is etGENERIC, then convert to either etEXP
- ** or etFLOAT, as appropriate.
- */
- if( xtype!=etFLOAT ){
- realvalue += rounder;
- if( realvalue>=10.0 ){ realvalue *= 0.1; exp++; }
- }
- if( xtype==etGENERIC ){
- flag_rtz = !flag_alternateform;
- if( exp<-4 || exp>precision ){
- xtype = etEXP;
- }else{
- precision = precision - exp;
- xtype = etFLOAT;
- }
- }else{
- flag_rtz = flag_altform2;
- }
- if( xtype==etEXP ){
- e2 = 0;
- }else{
- e2 = exp;
- }
- if( MAX(e2,0)+(i64)precision+(i64)width > etBUFSIZE - 15 ){
- bufpt = zExtra
- = sqlite3Malloc( MAX(e2,0)+(i64)precision+(i64)width+15 );
- if( bufpt==0 ){
- setStrAccumError(pAccum, SQLITE_NOMEM);
- return;
- }
- }
- zOut = bufpt;
- nsd = 16 + flag_altform2*10;
- flag_dp = (precision>0 ?1:0) | flag_alternateform | flag_altform2;
- /* The sign in front of the number */
- if( prefix ){
- *(bufpt++) = prefix;
- }
- /* Digits prior to the decimal point */
- if( e2<0 ){
- *(bufpt++) = '0';
- }else{
- for(; e2>=0; e2--){
- *(bufpt++) = et_getdigit(&realvalue,&nsd);
- }
- }
- /* The decimal point */
- if( flag_dp ){
- *(bufpt++) = '.';
- }
- /* "0" digits after the decimal point but before the first
- ** significant digit of the number */
- for(e2++; e2<0; precision--, e2++){
- assert( precision>0 );
- *(bufpt++) = '0';
- }
- /* Significant digits after the decimal point */
- while( (precision--)>0 ){
- *(bufpt++) = et_getdigit(&realvalue,&nsd);
- }
- /* Remove trailing zeros and the "." if no digits follow the "." */
- if( flag_rtz && flag_dp ){
- while( bufpt[-1]=='0' ) *(--bufpt) = 0;
- assert( bufpt>zOut );
- if( bufpt[-1]=='.' ){
- if( flag_altform2 ){
- *(bufpt++) = '0';
- }else{
- *(--bufpt) = 0;
- }
- }
- }
- /* Add the "eNNN" suffix */
- if( xtype==etEXP ){
- *(bufpt++) = aDigits[infop->charset];
- if( exp<0 ){
- *(bufpt++) = '-'; exp = -exp;
- }else{
- *(bufpt++) = '+';
- }
- if( exp>=100 ){
- *(bufpt++) = (char)((exp/100)+'0'); /* 100's digit */
- exp %= 100;
- }
- *(bufpt++) = (char)(exp/10+'0'); /* 10's digit */
- *(bufpt++) = (char)(exp%10+'0'); /* 1's digit */
- }
- *bufpt = 0;
-
- /* The converted number is in buf[] and zero terminated. Output it.
- ** Note that the number is in the usual order, not reversed as with
- ** integer conversions. */
- length = (int)(bufpt-zOut);
- bufpt = zOut;
-
- /* Special case: Add leading zeros if the flag_zeropad flag is
- ** set and we are not left justified */
- if( flag_zeropad && !flag_leftjustify && length < width){
- int i;
- int nPad = width - length;
- for(i=width; i>=nPad; i--){
- bufpt[i] = bufpt[i-nPad];
- }
- i = prefix!=0;
- while( nPad-- ) bufpt[i++] = '0';
- length = width;
- }
-#endif /* !defined(SQLITE_OMIT_FLOATING_POINT) */
- break;
- case etSIZE:
- if( !bArgList ){
- *(va_arg(ap,int*)) = pAccum->nChar;
- }
- length = width = 0;
- break;
- case etPERCENT:
- buf[0] = '%';
- bufpt = buf;
- length = 1;
- break;
- case etCHARX:
- if( bArgList ){
- bufpt = getTextArg(pArgList);
- length = 1;
- if( bufpt ){
- buf[0] = c = *(bufpt++);
- if( (c&0xc0)==0xc0 ){
- while( length<4 && (bufpt[0]&0xc0)==0x80 ){
- buf[length++] = *(bufpt++);
- }
- }
- }else{
- buf[0] = 0;
- }
- }else{
- unsigned int ch = va_arg(ap,unsigned int);
- if( ch<0x00080 ){
- buf[0] = ch & 0xff;
- length = 1;
- }else if( ch<0x00800 ){
- buf[0] = 0xc0 + (u8)((ch>>6)&0x1f);
- buf[1] = 0x80 + (u8)(ch & 0x3f);
- length = 2;
- }else if( ch<0x10000 ){
- buf[0] = 0xe0 + (u8)((ch>>12)&0x0f);
- buf[1] = 0x80 + (u8)((ch>>6) & 0x3f);
- buf[2] = 0x80 + (u8)(ch & 0x3f);
- length = 3;
- }else{
- buf[0] = 0xf0 + (u8)((ch>>18) & 0x07);
- buf[1] = 0x80 + (u8)((ch>>12) & 0x3f);
- buf[2] = 0x80 + (u8)((ch>>6) & 0x3f);
- buf[3] = 0x80 + (u8)(ch & 0x3f);
- length = 4;
- }
- }
- if( precision>1 ){
- width -= precision-1;
- if( width>1 && !flag_leftjustify ){
- sqlite3_str_appendchar(pAccum, width-1, ' ');
- width = 0;
- }
- while( precision-- > 1 ){
- sqlite3_str_append(pAccum, buf, length);
- }
- }
- bufpt = buf;
- flag_altform2 = 1;
- goto adjust_width_for_utf8;
- case etSTRING:
- case etDYNSTRING:
- if( bArgList ){
- bufpt = getTextArg(pArgList);
- xtype = etSTRING;
- }else{
- bufpt = va_arg(ap,char*);
- }
- if( bufpt==0 ){
- bufpt = "";
- }else if( xtype==etDYNSTRING ){
- if( pAccum->nChar==0
- && pAccum->mxAlloc
- && width==0
- && precision<0
- && pAccum->accError==0
- ){
- /* Special optimization for sqlite3_mprintf("%z..."):
- ** Extend an existing memory allocation rather than creating
- ** a new one. */
- assert( (pAccum->printfFlags&SQLITE_PRINTF_MALLOCED)==0 );
- pAccum->zText = bufpt;
- pAccum->nAlloc = sqlite3DbMallocSize(pAccum->db, bufpt);
- pAccum->nChar = 0x7fffffff & (int)strlen(bufpt);
- pAccum->printfFlags |= SQLITE_PRINTF_MALLOCED;
- length = 0;
- break;
- }
- zExtra = bufpt;
- }
- if( precision>=0 ){
- if( flag_altform2 ){
- /* Set length to the number of bytes needed in order to display
- ** precision characters */
- unsigned char *z = (unsigned char*)bufpt;
- while( precision-- > 0 && z[0] ){
- SQLITE_SKIP_UTF8(z);
- }
- length = (int)(z - (unsigned char*)bufpt);
- }else{
- for(length=0; length0 ){
- /* Adjust width to account for extra bytes in UTF-8 characters */
- int ii = length - 1;
- while( ii>=0 ) if( (bufpt[ii--] & 0xc0)==0x80 ) width++;
- }
- break;
- case etSQLESCAPE: /* %q: Escape ' characters */
- case etSQLESCAPE2: /* %Q: Escape ' and enclose in '...' */
- case etSQLESCAPE3: { /* %w: Escape " characters */
- int i, j, k, n, isnull;
- int needQuote;
- char ch;
- char q = ((xtype==etSQLESCAPE3)?'"':'\''); /* Quote character */
- char *escarg;
-
- if( bArgList ){
- escarg = getTextArg(pArgList);
- }else{
- escarg = va_arg(ap,char*);
- }
- isnull = escarg==0;
- if( isnull ) escarg = (xtype==etSQLESCAPE2 ? "NULL" : "(NULL)");
- /* For %q, %Q, and %w, the precision is the number of byte (or
- ** characters if the ! flags is present) to use from the input.
- ** Because of the extra quoting characters inserted, the number
- ** of output characters may be larger than the precision.
- */
- k = precision;
- for(i=n=0; k!=0 && (ch=escarg[i])!=0; i++, k--){
- if( ch==q ) n++;
- if( flag_altform2 && (ch&0xc0)==0xc0 ){
- while( (escarg[i+1]&0xc0)==0x80 ){ i++; }
- }
- }
- needQuote = !isnull && xtype==etSQLESCAPE2;
- n += i + 3;
- if( n>etBUFSIZE ){
- bufpt = zExtra = sqlite3Malloc( n );
- if( bufpt==0 ){
- setStrAccumError(pAccum, SQLITE_NOMEM);
- return;
- }
- }else{
- bufpt = buf;
- }
- j = 0;
- if( needQuote ) bufpt[j++] = q;
- k = i;
- for(i=0; iprintfFlags & SQLITE_PRINTF_INTERNAL)==0 ) return;
- pToken = va_arg(ap, Token*);
- assert( bArgList==0 );
- if( pToken && pToken->n ){
- sqlite3_str_append(pAccum, (const char*)pToken->z, pToken->n);
- }
- length = width = 0;
- break;
- }
- case etSRCLIST: {
- SrcList *pSrc;
- int k;
- struct SrcList_item *pItem;
- if( (pAccum->printfFlags & SQLITE_PRINTF_INTERNAL)==0 ) return;
- pSrc = va_arg(ap, SrcList*);
- k = va_arg(ap, int);
- pItem = &pSrc->a[k];
- assert( bArgList==0 );
- assert( k>=0 && knSrc );
- if( pItem->zDatabase ){
- sqlite3_str_appendall(pAccum, pItem->zDatabase);
- sqlite3_str_append(pAccum, ".", 1);
- }
- sqlite3_str_appendall(pAccum, pItem->zName);
- length = width = 0;
- break;
- }
- default: {
- assert( xtype==etINVALID );
- return;
- }
- }/* End switch over the format type */
- /*
- ** The text of the conversion is pointed to by "bufpt" and is
- ** "length" characters long. The field width is "width". Do
- ** the output. Both length and width are in bytes, not characters,
- ** at this point. If the "!" flag was present on string conversions
- ** indicating that width and precision should be expressed in characters,
- ** then the values have been translated prior to reaching this point.
- */
- width -= length;
- if( width>0 ){
- if( !flag_leftjustify ) sqlite3_str_appendchar(pAccum, width, ' ');
- sqlite3_str_append(pAccum, bufpt, length);
- if( flag_leftjustify ) sqlite3_str_appendchar(pAccum, width, ' ');
- }else{
- sqlite3_str_append(pAccum, bufpt, length);
- }
-
- if( zExtra ){
- sqlite3DbFree(pAccum->db, zExtra);
- zExtra = 0;
- }
- }/* End for loop over the format string */
-} /* End of function */
-
-/*
-** Enlarge the memory allocation on a StrAccum object so that it is
-** able to accept at least N more bytes of text.
-**
-** Return the number of bytes of text that StrAccum is able to accept
-** after the attempted enlargement. The value returned might be zero.
-*/
-static int sqlite3StrAccumEnlarge(StrAccum *p, int N){
- char *zNew;
- assert( p->nChar+(i64)N >= p->nAlloc ); /* Only called if really needed */
- if( p->accError ){
- testcase(p->accError==SQLITE_TOOBIG);
- testcase(p->accError==SQLITE_NOMEM);
- return 0;
- }
- if( p->mxAlloc==0 ){
- N = p->nAlloc - p->nChar - 1;
- setStrAccumError(p, SQLITE_TOOBIG);
- return N;
- }else{
- char *zOld = isMalloced(p) ? p->zText : 0;
- i64 szNew = p->nChar;
- szNew += N + 1;
- if( szNew+p->nChar<=p->mxAlloc ){
- /* Force exponential buffer size growth as long as it does not overflow,
- ** to avoid having to call this routine too often */
- szNew += p->nChar;
- }
- if( szNew > p->mxAlloc ){
- sqlite3_str_reset(p);
- setStrAccumError(p, SQLITE_TOOBIG);
- return 0;
- }else{
- p->nAlloc = (int)szNew;
- }
- if( p->db ){
- zNew = sqlite3DbRealloc(p->db, zOld, p->nAlloc);
- }else{
- zNew = sqlite3_realloc64(zOld, p->nAlloc);
- }
- if( zNew ){
- assert( p->zText!=0 || p->nChar==0 );
- if( !isMalloced(p) && p->nChar>0 ) memcpy(zNew, p->zText, p->nChar);
- p->zText = zNew;
- p->nAlloc = sqlite3DbMallocSize(p->db, zNew);
- p->printfFlags |= SQLITE_PRINTF_MALLOCED;
- }else{
- sqlite3_str_reset(p);
- setStrAccumError(p, SQLITE_NOMEM);
- return 0;
- }
- }
- return N;
-}
-
-/*
-** Append N copies of character c to the given string buffer.
-*/
-SQLITE_API void sqlite3_str_appendchar(sqlite3_str *p, int N, char c){
- testcase( p->nChar + (i64)N > 0x7fffffff );
- if( p->nChar+(i64)N >= p->nAlloc && (N = sqlite3StrAccumEnlarge(p, N))<=0 ){
- return;
- }
- while( (N--)>0 ) p->zText[p->nChar++] = c;
-}
-
-/*
-** The StrAccum "p" is not large enough to accept N new bytes of z[].
-** So enlarge if first, then do the append.
-**
-** This is a helper routine to sqlite3_str_append() that does special-case
-** work (enlarging the buffer) using tail recursion, so that the
-** sqlite3_str_append() routine can use fast calling semantics.
-*/
-static void SQLITE_NOINLINE enlargeAndAppend(StrAccum *p, const char *z, int N){
- N = sqlite3StrAccumEnlarge(p, N);
- if( N>0 ){
- memcpy(&p->zText[p->nChar], z, N);
- p->nChar += N;
- }
-}
-
-/*
-** Append N bytes of text from z to the StrAccum object. Increase the
-** size of the memory allocation for StrAccum if necessary.
-*/
-SQLITE_API void sqlite3_str_append(sqlite3_str *p, const char *z, int N){
- assert( z!=0 || N==0 );
- assert( p->zText!=0 || p->nChar==0 || p->accError );
- assert( N>=0 );
- assert( p->accError==0 || p->nAlloc==0 );
- if( p->nChar+N >= p->nAlloc ){
- enlargeAndAppend(p,z,N);
- }else if( N ){
- assert( p->zText );
- p->nChar += N;
- memcpy(&p->zText[p->nChar-N], z, N);
- }
-}
-
-/*
-** Append the complete text of zero-terminated string z[] to the p string.
-*/
-SQLITE_API void sqlite3_str_appendall(sqlite3_str *p, const char *z){
- sqlite3_str_append(p, z, sqlite3Strlen30(z));
-}
-
-
-/*
-** Finish off a string by making sure it is zero-terminated.
-** Return a pointer to the resulting string. Return a NULL
-** pointer if any kind of error was encountered.
-*/
-static SQLITE_NOINLINE char *strAccumFinishRealloc(StrAccum *p){
- char *zText;
- assert( p->mxAlloc>0 && !isMalloced(p) );
- zText = sqlite3DbMallocRaw(p->db, p->nChar+1 );
- if( zText ){
- memcpy(zText, p->zText, p->nChar+1);
- p->printfFlags |= SQLITE_PRINTF_MALLOCED;
- }else{
- setStrAccumError(p, SQLITE_NOMEM);
- }
- p->zText = zText;
- return zText;
-}
-SQLITE_PRIVATE char *sqlite3StrAccumFinish(StrAccum *p){
- if( p->zText ){
- p->zText[p->nChar] = 0;
- if( p->mxAlloc>0 && !isMalloced(p) ){
- return strAccumFinishRealloc(p);
- }
- }
- return p->zText;
-}
-
-/*
-** This singleton is an sqlite3_str object that is returned if
-** sqlite3_malloc() fails to provide space for a real one. This
-** sqlite3_str object accepts no new text and always returns
-** an SQLITE_NOMEM error.
-*/
-static sqlite3_str sqlite3OomStr = {
- 0, 0, 0, 0, 0, SQLITE_NOMEM, 0
-};
-
-/* Finalize a string created using sqlite3_str_new().
-*/
-SQLITE_API char *sqlite3_str_finish(sqlite3_str *p){
- char *z;
- if( p!=0 && p!=&sqlite3OomStr ){
- z = sqlite3StrAccumFinish(p);
- sqlite3_free(p);
- }else{
- z = 0;
- }
- return z;
-}
-
-/* Return any error code associated with p */
-SQLITE_API int sqlite3_str_errcode(sqlite3_str *p){
- return p ? p->accError : SQLITE_NOMEM;
-}
-
-/* Return the current length of p in bytes */
-SQLITE_API int sqlite3_str_length(sqlite3_str *p){
- return p ? p->nChar : 0;
-}
-
-/* Return the current value for p */
-SQLITE_API char *sqlite3_str_value(sqlite3_str *p){
- if( p==0 || p->nChar==0 ) return 0;
- p->zText[p->nChar] = 0;
- return p->zText;
-}
-
-/*
-** Reset an StrAccum string. Reclaim all malloced memory.
-*/
-SQLITE_API void sqlite3_str_reset(StrAccum *p){
- if( isMalloced(p) ){
- sqlite3DbFree(p->db, p->zText);
- p->printfFlags &= ~SQLITE_PRINTF_MALLOCED;
- }
- p->nAlloc = 0;
- p->nChar = 0;
- p->zText = 0;
-}
-
-/*
-** Initialize a string accumulator.
-**
-** p: The accumulator to be initialized.
-** db: Pointer to a database connection. May be NULL. Lookaside
-** memory is used if not NULL. db->mallocFailed is set appropriately
-** when not NULL.
-** zBase: An initial buffer. May be NULL in which case the initial buffer
-** is malloced.
-** n: Size of zBase in bytes. If total space requirements never exceed
-** n then no memory allocations ever occur.
-** mx: Maximum number of bytes to accumulate. If mx==0 then no memory
-** allocations will ever occur.
-*/
-SQLITE_PRIVATE void sqlite3StrAccumInit(StrAccum *p, sqlite3 *db, char *zBase, int n, int mx){
- p->zText = zBase;
- p->db = db;
- p->nAlloc = n;
- p->mxAlloc = mx;
- p->nChar = 0;
- p->accError = 0;
- p->printfFlags = 0;
-}
-
-/* Allocate and initialize a new dynamic string object */
-SQLITE_API sqlite3_str *sqlite3_str_new(sqlite3 *db){
- sqlite3_str *p = sqlite3_malloc64(sizeof(*p));
- if( p ){
- sqlite3StrAccumInit(p, 0, 0, 0,
- db ? db->aLimit[SQLITE_LIMIT_LENGTH] : SQLITE_MAX_LENGTH);
- }else{
- p = &sqlite3OomStr;
- }
- return p;
-}
-
-/*
-** Print into memory obtained from sqliteMalloc(). Use the internal
-** %-conversion extensions.
-*/
-SQLITE_PRIVATE char *sqlite3VMPrintf(sqlite3 *db, const char *zFormat, va_list ap){
- char *z;
- char zBase[SQLITE_PRINT_BUF_SIZE];
- StrAccum acc;
- assert( db!=0 );
- sqlite3StrAccumInit(&acc, db, zBase, sizeof(zBase),
- db->aLimit[SQLITE_LIMIT_LENGTH]);
- acc.printfFlags = SQLITE_PRINTF_INTERNAL;
- sqlite3_str_vappendf(&acc, zFormat, ap);
- z = sqlite3StrAccumFinish(&acc);
- if( acc.accError==SQLITE_NOMEM ){
- sqlite3OomFault(db);
- }
- return z;
-}
-
-/*
-** Print into memory obtained from sqliteMalloc(). Use the internal
-** %-conversion extensions.
-*/
-SQLITE_PRIVATE char *sqlite3MPrintf(sqlite3 *db, const char *zFormat, ...){
- va_list ap;
- char *z;
- va_start(ap, zFormat);
- z = sqlite3VMPrintf(db, zFormat, ap);
- va_end(ap);
- return z;
-}
-
-/*
-** Print into memory obtained from sqlite3_malloc(). Omit the internal
-** %-conversion extensions.
-*/
-SQLITE_API char *sqlite3_vmprintf(const char *zFormat, va_list ap){
- char *z;
- char zBase[SQLITE_PRINT_BUF_SIZE];
- StrAccum acc;
-
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( zFormat==0 ){
- (void)SQLITE_MISUSE_BKPT;
- return 0;
- }
-#endif
-#ifndef SQLITE_OMIT_AUTOINIT
- if( sqlite3_initialize() ) return 0;
-#endif
- sqlite3StrAccumInit(&acc, 0, zBase, sizeof(zBase), SQLITE_MAX_LENGTH);
- sqlite3_str_vappendf(&acc, zFormat, ap);
- z = sqlite3StrAccumFinish(&acc);
- return z;
-}
-
-/*
-** Print into memory obtained from sqlite3_malloc()(). Omit the internal
-** %-conversion extensions.
-*/
-SQLITE_API char *sqlite3_mprintf(const char *zFormat, ...){
- va_list ap;
- char *z;
-#ifndef SQLITE_OMIT_AUTOINIT
- if( sqlite3_initialize() ) return 0;
-#endif
- va_start(ap, zFormat);
- z = sqlite3_vmprintf(zFormat, ap);
- va_end(ap);
- return z;
-}
-
-/*
-** sqlite3_snprintf() works like snprintf() except that it ignores the
-** current locale settings. This is important for SQLite because we
-** are not able to use a "," as the decimal point in place of "." as
-** specified by some locales.
-**
-** Oops: The first two arguments of sqlite3_snprintf() are backwards
-** from the snprintf() standard. Unfortunately, it is too late to change
-** this without breaking compatibility, so we just have to live with the
-** mistake.
-**
-** sqlite3_vsnprintf() is the varargs version.
-*/
-SQLITE_API char *sqlite3_vsnprintf(int n, char *zBuf, const char *zFormat, va_list ap){
- StrAccum acc;
- if( n<=0 ) return zBuf;
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( zBuf==0 || zFormat==0 ) {
- (void)SQLITE_MISUSE_BKPT;
- if( zBuf ) zBuf[0] = 0;
- return zBuf;
- }
-#endif
- sqlite3StrAccumInit(&acc, 0, zBuf, n, 0);
- sqlite3_str_vappendf(&acc, zFormat, ap);
- zBuf[acc.nChar] = 0;
- return zBuf;
-}
-SQLITE_API char *sqlite3_snprintf(int n, char *zBuf, const char *zFormat, ...){
- char *z;
- va_list ap;
- va_start(ap,zFormat);
- z = sqlite3_vsnprintf(n, zBuf, zFormat, ap);
- va_end(ap);
- return z;
-}
-
-/*
-** This is the routine that actually formats the sqlite3_log() message.
-** We house it in a separate routine from sqlite3_log() to avoid using
-** stack space on small-stack systems when logging is disabled.
-**
-** sqlite3_log() must render into a static buffer. It cannot dynamically
-** allocate memory because it might be called while the memory allocator
-** mutex is held.
-**
-** sqlite3_str_vappendf() might ask for *temporary* memory allocations for
-** certain format characters (%q) or for very large precisions or widths.
-** Care must be taken that any sqlite3_log() calls that occur while the
-** memory mutex is held do not use these mechanisms.
-*/
-static void renderLogMsg(int iErrCode, const char *zFormat, va_list ap){
- StrAccum acc; /* String accumulator */
- char zMsg[SQLITE_PRINT_BUF_SIZE*3]; /* Complete log message */
-
- sqlite3StrAccumInit(&acc, 0, zMsg, sizeof(zMsg), 0);
- sqlite3_str_vappendf(&acc, zFormat, ap);
- sqlite3GlobalConfig.xLog(sqlite3GlobalConfig.pLogArg, iErrCode,
- sqlite3StrAccumFinish(&acc));
-}
-
-/*
-** Format and write a message to the log if logging is enabled.
-*/
-SQLITE_API void sqlite3_log(int iErrCode, const char *zFormat, ...){
- va_list ap; /* Vararg list */
- if( sqlite3GlobalConfig.xLog ){
- va_start(ap, zFormat);
- renderLogMsg(iErrCode, zFormat, ap);
- va_end(ap);
- }
-}
-
-#if defined(SQLITE_DEBUG) || defined(SQLITE_HAVE_OS_TRACE)
-/*
-** A version of printf() that understands %lld. Used for debugging.
-** The printf() built into some versions of windows does not understand %lld
-** and segfaults if you give it a long long int.
-*/
-SQLITE_PRIVATE void sqlite3DebugPrintf(const char *zFormat, ...){
- va_list ap;
- StrAccum acc;
- char zBuf[500];
- sqlite3StrAccumInit(&acc, 0, zBuf, sizeof(zBuf), 0);
- va_start(ap,zFormat);
- sqlite3_str_vappendf(&acc, zFormat, ap);
- va_end(ap);
- sqlite3StrAccumFinish(&acc);
-#ifdef SQLITE_OS_TRACE_PROC
- {
- extern void SQLITE_OS_TRACE_PROC(const char *zBuf, int nBuf);
- SQLITE_OS_TRACE_PROC(zBuf, sizeof(zBuf));
- }
-#else
- fprintf(stdout,"%s", zBuf);
- fflush(stdout);
-#endif
-}
-#endif
-
-
-/*
-** variable-argument wrapper around sqlite3_str_vappendf(). The bFlags argument
-** can contain the bit SQLITE_PRINTF_INTERNAL enable internal formats.
-*/
-SQLITE_API void sqlite3_str_appendf(StrAccum *p, const char *zFormat, ...){
- va_list ap;
- va_start(ap,zFormat);
- sqlite3_str_vappendf(p, zFormat, ap);
- va_end(ap);
-}
-
-/************** End of printf.c **********************************************/
-/************** Begin file treeview.c ****************************************/
-/*
-** 2015-06-08
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-**
-** This file contains C code to implement the TreeView debugging routines.
-** These routines print a parse tree to standard output for debugging and
-** analysis.
-**
-** The interfaces in this file is only available when compiling
-** with SQLITE_DEBUG.
-*/
-/* #include "sqliteInt.h" */
-#ifdef SQLITE_DEBUG
-
-/*
-** Add a new subitem to the tree. The moreToFollow flag indicates that this
-** is not the last item in the tree.
-*/
-static TreeView *sqlite3TreeViewPush(TreeView *p, u8 moreToFollow){
- if( p==0 ){
- p = sqlite3_malloc64( sizeof(*p) );
- if( p==0 ) return 0;
- memset(p, 0, sizeof(*p));
- }else{
- p->iLevel++;
- }
- assert( moreToFollow==0 || moreToFollow==1 );
- if( p->iLevelbLine) ) p->bLine[p->iLevel] = moreToFollow;
- return p;
-}
-
-/*
-** Finished with one layer of the tree
-*/
-static void sqlite3TreeViewPop(TreeView *p){
- if( p==0 ) return;
- p->iLevel--;
- if( p->iLevel<0 ) sqlite3_free(p);
-}
-
-/*
-** Generate a single line of output for the tree, with a prefix that contains
-** all the appropriate tree lines
-*/
-static void sqlite3TreeViewLine(TreeView *p, const char *zFormat, ...){
- va_list ap;
- int i;
- StrAccum acc;
- char zBuf[500];
- sqlite3StrAccumInit(&acc, 0, zBuf, sizeof(zBuf), 0);
- if( p ){
- for(i=0; iiLevel && ibLine)-1; i++){
- sqlite3_str_append(&acc, p->bLine[i] ? "| " : " ", 4);
- }
- sqlite3_str_append(&acc, p->bLine[i] ? "|-- " : "'-- ", 4);
- }
- if( zFormat!=0 ){
- va_start(ap, zFormat);
- sqlite3_str_vappendf(&acc, zFormat, ap);
- va_end(ap);
- assert( acc.nChar>0 );
- sqlite3_str_append(&acc, "\n", 1);
- }
- sqlite3StrAccumFinish(&acc);
- fprintf(stdout,"%s", zBuf);
- fflush(stdout);
-}
-
-/*
-** Shorthand for starting a new tree item that consists of a single label
-*/
-static void sqlite3TreeViewItem(TreeView *p, const char *zLabel,u8 moreFollows){
- p = sqlite3TreeViewPush(p, moreFollows);
- sqlite3TreeViewLine(p, "%s", zLabel);
-}
-
-/*
-** Generate a human-readable description of a WITH clause.
-*/
-SQLITE_PRIVATE void sqlite3TreeViewWith(TreeView *pView, const With *pWith, u8 moreToFollow){
- int i;
- if( pWith==0 ) return;
- if( pWith->nCte==0 ) return;
- if( pWith->pOuter ){
- sqlite3TreeViewLine(pView, "WITH (0x%p, pOuter=0x%p)",pWith,pWith->pOuter);
- }else{
- sqlite3TreeViewLine(pView, "WITH (0x%p)", pWith);
- }
- if( pWith->nCte>0 ){
- pView = sqlite3TreeViewPush(pView, 1);
- for(i=0; inCte; i++){
- StrAccum x;
- char zLine[1000];
- const struct Cte *pCte = &pWith->a[i];
- sqlite3StrAccumInit(&x, 0, zLine, sizeof(zLine), 0);
- sqlite3_str_appendf(&x, "%s", pCte->zName);
- if( pCte->pCols && pCte->pCols->nExpr>0 ){
- char cSep = '(';
- int j;
- for(j=0; jpCols->nExpr; j++){
- sqlite3_str_appendf(&x, "%c%s", cSep, pCte->pCols->a[j].zName);
- cSep = ',';
- }
- sqlite3_str_appendf(&x, ")");
- }
- sqlite3_str_appendf(&x, " AS");
- sqlite3StrAccumFinish(&x);
- sqlite3TreeViewItem(pView, zLine, inCte-1);
- sqlite3TreeViewSelect(pView, pCte->pSelect, 0);
- sqlite3TreeViewPop(pView);
- }
- sqlite3TreeViewPop(pView);
- }
-}
-
-
-/*
-** Generate a human-readable description of a Select object.
-*/
-SQLITE_PRIVATE void sqlite3TreeViewSelect(TreeView *pView, const Select *p, u8 moreToFollow){
- int n = 0;
- int cnt = 0;
- if( p==0 ){
- sqlite3TreeViewLine(pView, "nil-SELECT");
- return;
- }
- pView = sqlite3TreeViewPush(pView, moreToFollow);
- if( p->pWith ){
- sqlite3TreeViewWith(pView, p->pWith, 1);
- cnt = 1;
- sqlite3TreeViewPush(pView, 1);
- }
- do{
- sqlite3TreeViewLine(pView,
- "SELECT%s%s (%u/%p) selFlags=0x%x nSelectRow=%d",
- ((p->selFlags & SF_Distinct) ? " DISTINCT" : ""),
- ((p->selFlags & SF_Aggregate) ? " agg_flag" : ""),
- p->selId, p, p->selFlags,
- (int)p->nSelectRow
- );
- if( cnt++ ) sqlite3TreeViewPop(pView);
- if( p->pPrior ){
- n = 1000;
- }else{
- n = 0;
- if( p->pSrc && p->pSrc->nSrc ) n++;
- if( p->pWhere ) n++;
- if( p->pGroupBy ) n++;
- if( p->pHaving ) n++;
- if( p->pOrderBy ) n++;
- if( p->pLimit ) n++;
-#ifndef SQLITE_OMIT_WINDOWFUNC
- if( p->pWin ) n++;
- if( p->pWinDefn ) n++;
-#endif
- }
- sqlite3TreeViewExprList(pView, p->pEList, (n--)>0, "result-set");
-#ifndef SQLITE_OMIT_WINDOWFUNC
- if( p->pWin ){
- Window *pX;
- pView = sqlite3TreeViewPush(pView, (n--)>0);
- sqlite3TreeViewLine(pView, "window-functions");
- for(pX=p->pWin; pX; pX=pX->pNextWin){
- sqlite3TreeViewWinFunc(pView, pX, pX->pNextWin!=0);
- }
- sqlite3TreeViewPop(pView);
- }
-#endif
- if( p->pSrc && p->pSrc->nSrc ){
- int i;
- pView = sqlite3TreeViewPush(pView, (n--)>0);
- sqlite3TreeViewLine(pView, "FROM");
- for(i=0; ipSrc->nSrc; i++){
- struct SrcList_item *pItem = &p->pSrc->a[i];
- StrAccum x;
- char zLine[100];
- sqlite3StrAccumInit(&x, 0, zLine, sizeof(zLine), 0);
- sqlite3_str_appendf(&x, "{%d,*}", pItem->iCursor);
- if( pItem->zDatabase ){
- sqlite3_str_appendf(&x, " %s.%s", pItem->zDatabase, pItem->zName);
- }else if( pItem->zName ){
- sqlite3_str_appendf(&x, " %s", pItem->zName);
- }
- if( pItem->pTab ){
- sqlite3_str_appendf(&x, " tabname=%Q", pItem->pTab->zName);
- }
- if( pItem->zAlias ){
- sqlite3_str_appendf(&x, " (AS %s)", pItem->zAlias);
- }
- if( pItem->fg.jointype & JT_LEFT ){
- sqlite3_str_appendf(&x, " LEFT-JOIN");
- }
- sqlite3StrAccumFinish(&x);
- sqlite3TreeViewItem(pView, zLine, ipSrc->nSrc-1);
- if( pItem->pSelect ){
- sqlite3TreeViewSelect(pView, pItem->pSelect, 0);
- }
- if( pItem->fg.isTabFunc ){
- sqlite3TreeViewExprList(pView, pItem->u1.pFuncArg, 0, "func-args:");
- }
- sqlite3TreeViewPop(pView);
- }
- sqlite3TreeViewPop(pView);
- }
- if( p->pWhere ){
- sqlite3TreeViewItem(pView, "WHERE", (n--)>0);
- sqlite3TreeViewExpr(pView, p->pWhere, 0);
- sqlite3TreeViewPop(pView);
- }
- if( p->pGroupBy ){
- sqlite3TreeViewExprList(pView, p->pGroupBy, (n--)>0, "GROUPBY");
- }
- if( p->pHaving ){
- sqlite3TreeViewItem(pView, "HAVING", (n--)>0);
- sqlite3TreeViewExpr(pView, p->pHaving, 0);
- sqlite3TreeViewPop(pView);
- }
-#ifndef SQLITE_OMIT_WINDOWFUNC
- if( p->pWinDefn ){
- Window *pX;
- sqlite3TreeViewItem(pView, "WINDOW", (n--)>0);
- for(pX=p->pWinDefn; pX; pX=pX->pNextWin){
- sqlite3TreeViewWindow(pView, pX, pX->pNextWin!=0);
- }
- sqlite3TreeViewPop(pView);
- }
-#endif
- if( p->pOrderBy ){
- sqlite3TreeViewExprList(pView, p->pOrderBy, (n--)>0, "ORDERBY");
- }
- if( p->pLimit ){
- sqlite3TreeViewItem(pView, "LIMIT", (n--)>0);
- sqlite3TreeViewExpr(pView, p->pLimit->pLeft, p->pLimit->pRight!=0);
- if( p->pLimit->pRight ){
- sqlite3TreeViewItem(pView, "OFFSET", (n--)>0);
- sqlite3TreeViewExpr(pView, p->pLimit->pRight, 0);
- sqlite3TreeViewPop(pView);
- }
- sqlite3TreeViewPop(pView);
- }
- if( p->pPrior ){
- const char *zOp = "UNION";
- switch( p->op ){
- case TK_ALL: zOp = "UNION ALL"; break;
- case TK_INTERSECT: zOp = "INTERSECT"; break;
- case TK_EXCEPT: zOp = "EXCEPT"; break;
- }
- sqlite3TreeViewItem(pView, zOp, 1);
- }
- p = p->pPrior;
- }while( p!=0 );
- sqlite3TreeViewPop(pView);
-}
-
-#ifndef SQLITE_OMIT_WINDOWFUNC
-/*
-** Generate a description of starting or stopping bounds
-*/
-SQLITE_PRIVATE void sqlite3TreeViewBound(
- TreeView *pView, /* View context */
- u8 eBound, /* UNBOUNDED, CURRENT, PRECEDING, FOLLOWING */
- Expr *pExpr, /* Value for PRECEDING or FOLLOWING */
- u8 moreToFollow /* True if more to follow */
-){
- switch( eBound ){
- case TK_UNBOUNDED: {
- sqlite3TreeViewItem(pView, "UNBOUNDED", moreToFollow);
- sqlite3TreeViewPop(pView);
- break;
- }
- case TK_CURRENT: {
- sqlite3TreeViewItem(pView, "CURRENT", moreToFollow);
- sqlite3TreeViewPop(pView);
- break;
- }
- case TK_PRECEDING: {
- sqlite3TreeViewItem(pView, "PRECEDING", moreToFollow);
- sqlite3TreeViewExpr(pView, pExpr, 0);
- sqlite3TreeViewPop(pView);
- break;
- }
- case TK_FOLLOWING: {
- sqlite3TreeViewItem(pView, "FOLLOWING", moreToFollow);
- sqlite3TreeViewExpr(pView, pExpr, 0);
- sqlite3TreeViewPop(pView);
- break;
- }
- }
-}
-#endif /* SQLITE_OMIT_WINDOWFUNC */
-
-#ifndef SQLITE_OMIT_WINDOWFUNC
-/*
-** Generate a human-readable explanation for a Window object
-*/
-SQLITE_PRIVATE void sqlite3TreeViewWindow(TreeView *pView, const Window *pWin, u8 more){
- pView = sqlite3TreeViewPush(pView, more);
- if( pWin->zName ){
- sqlite3TreeViewLine(pView, "OVER %s", pWin->zName);
- }else{
- sqlite3TreeViewLine(pView, "OVER");
- }
- if( pWin->pPartition ){
- sqlite3TreeViewExprList(pView, pWin->pPartition, 1, "PARTITION-BY");
- }
- if( pWin->pOrderBy ){
- sqlite3TreeViewExprList(pView, pWin->pOrderBy, 1, "ORDER-BY");
- }
- if( pWin->eType ){
- sqlite3TreeViewItem(pView, pWin->eType==TK_RANGE ? "RANGE" : "ROWS", 0);
- sqlite3TreeViewBound(pView, pWin->eStart, pWin->pStart, 1);
- sqlite3TreeViewBound(pView, pWin->eEnd, pWin->pEnd, 0);
- sqlite3TreeViewPop(pView);
- }
- sqlite3TreeViewPop(pView);
-}
-#endif /* SQLITE_OMIT_WINDOWFUNC */
-
-#ifndef SQLITE_OMIT_WINDOWFUNC
-/*
-** Generate a human-readable explanation for a Window Function object
-*/
-SQLITE_PRIVATE void sqlite3TreeViewWinFunc(TreeView *pView, const Window *pWin, u8 more){
- pView = sqlite3TreeViewPush(pView, more);
- sqlite3TreeViewLine(pView, "WINFUNC %s(%d)",
- pWin->pFunc->zName, pWin->pFunc->nArg);
- sqlite3TreeViewWindow(pView, pWin, 0);
- sqlite3TreeViewPop(pView);
-}
-#endif /* SQLITE_OMIT_WINDOWFUNC */
-
-/*
-** Generate a human-readable explanation of an expression tree.
-*/
-SQLITE_PRIVATE void sqlite3TreeViewExpr(TreeView *pView, const Expr *pExpr, u8 moreToFollow){
- const char *zBinOp = 0; /* Binary operator */
- const char *zUniOp = 0; /* Unary operator */
- char zFlgs[60];
- pView = sqlite3TreeViewPush(pView, moreToFollow);
- if( pExpr==0 ){
- sqlite3TreeViewLine(pView, "nil");
- sqlite3TreeViewPop(pView);
- return;
- }
- if( pExpr->flags ){
- if( ExprHasProperty(pExpr, EP_FromJoin) ){
- sqlite3_snprintf(sizeof(zFlgs),zFlgs," flags=0x%x iRJT=%d",
- pExpr->flags, pExpr->iRightJoinTable);
- }else{
- sqlite3_snprintf(sizeof(zFlgs),zFlgs," flags=0x%x",pExpr->flags);
- }
- }else{
- zFlgs[0] = 0;
- }
- switch( pExpr->op ){
- case TK_AGG_COLUMN: {
- sqlite3TreeViewLine(pView, "AGG{%d:%d}%s",
- pExpr->iTable, pExpr->iColumn, zFlgs);
- break;
- }
- case TK_COLUMN: {
- if( pExpr->iTable<0 ){
- /* This only happens when coding check constraints */
- sqlite3TreeViewLine(pView, "COLUMN(%d)%s", pExpr->iColumn, zFlgs);
- }else{
- sqlite3TreeViewLine(pView, "{%d:%d}%s",
- pExpr->iTable, pExpr->iColumn, zFlgs);
- }
- if( ExprHasProperty(pExpr, EP_FixedCol) ){
- sqlite3TreeViewExpr(pView, pExpr->pLeft, 0);
- }
- break;
- }
- case TK_INTEGER: {
- if( pExpr->flags & EP_IntValue ){
- sqlite3TreeViewLine(pView, "%d", pExpr->u.iValue);
- }else{
- sqlite3TreeViewLine(pView, "%s", pExpr->u.zToken);
- }
- break;
- }
-#ifndef SQLITE_OMIT_FLOATING_POINT
- case TK_FLOAT: {
- sqlite3TreeViewLine(pView,"%s", pExpr->u.zToken);
- break;
- }
-#endif
- case TK_STRING: {
- sqlite3TreeViewLine(pView,"%Q", pExpr->u.zToken);
- break;
- }
- case TK_NULL: {
- sqlite3TreeViewLine(pView,"NULL");
- break;
- }
- case TK_TRUEFALSE: {
- sqlite3TreeViewLine(pView,
- sqlite3ExprTruthValue(pExpr) ? "TRUE" : "FALSE");
- break;
- }
-#ifndef SQLITE_OMIT_BLOB_LITERAL
- case TK_BLOB: {
- sqlite3TreeViewLine(pView,"%s", pExpr->u.zToken);
- break;
- }
-#endif
- case TK_VARIABLE: {
- sqlite3TreeViewLine(pView,"VARIABLE(%s,%d)",
- pExpr->u.zToken, pExpr->iColumn);
- break;
- }
- case TK_REGISTER: {
- sqlite3TreeViewLine(pView,"REGISTER(%d)", pExpr->iTable);
- break;
- }
- case TK_ID: {
- sqlite3TreeViewLine(pView,"ID \"%w\"", pExpr->u.zToken);
- break;
- }
-#ifndef SQLITE_OMIT_CAST
- case TK_CAST: {
- /* Expressions of the form: CAST(pLeft AS token) */
- sqlite3TreeViewLine(pView,"CAST %Q", pExpr->u.zToken);
- sqlite3TreeViewExpr(pView, pExpr->pLeft, 0);
- break;
- }
-#endif /* SQLITE_OMIT_CAST */
- case TK_LT: zBinOp = "LT"; break;
- case TK_LE: zBinOp = "LE"; break;
- case TK_GT: zBinOp = "GT"; break;
- case TK_GE: zBinOp = "GE"; break;
- case TK_NE: zBinOp = "NE"; break;
- case TK_EQ: zBinOp = "EQ"; break;
- case TK_IS: zBinOp = "IS"; break;
- case TK_ISNOT: zBinOp = "ISNOT"; break;
- case TK_AND: zBinOp = "AND"; break;
- case TK_OR: zBinOp = "OR"; break;
- case TK_PLUS: zBinOp = "ADD"; break;
- case TK_STAR: zBinOp = "MUL"; break;
- case TK_MINUS: zBinOp = "SUB"; break;
- case TK_REM: zBinOp = "REM"; break;
- case TK_BITAND: zBinOp = "BITAND"; break;
- case TK_BITOR: zBinOp = "BITOR"; break;
- case TK_SLASH: zBinOp = "DIV"; break;
- case TK_LSHIFT: zBinOp = "LSHIFT"; break;
- case TK_RSHIFT: zBinOp = "RSHIFT"; break;
- case TK_CONCAT: zBinOp = "CONCAT"; break;
- case TK_DOT: zBinOp = "DOT"; break;
-
- case TK_UMINUS: zUniOp = "UMINUS"; break;
- case TK_UPLUS: zUniOp = "UPLUS"; break;
- case TK_BITNOT: zUniOp = "BITNOT"; break;
- case TK_NOT: zUniOp = "NOT"; break;
- case TK_ISNULL: zUniOp = "ISNULL"; break;
- case TK_NOTNULL: zUniOp = "NOTNULL"; break;
-
- case TK_TRUTH: {
- int x;
- const char *azOp[] = {
- "IS-FALSE", "IS-TRUE", "IS-NOT-FALSE", "IS-NOT-TRUE"
- };
- assert( pExpr->op2==TK_IS || pExpr->op2==TK_ISNOT );
- assert( pExpr->pRight );
- assert( pExpr->pRight->op==TK_TRUEFALSE );
- x = (pExpr->op2==TK_ISNOT)*2 + sqlite3ExprTruthValue(pExpr->pRight);
- zUniOp = azOp[x];
- break;
- }
-
- case TK_SPAN: {
- sqlite3TreeViewLine(pView, "SPAN %Q", pExpr->u.zToken);
- sqlite3TreeViewExpr(pView, pExpr->pLeft, 0);
- break;
- }
-
- case TK_COLLATE: {
- sqlite3TreeViewLine(pView, "COLLATE %Q", pExpr->u.zToken);
- sqlite3TreeViewExpr(pView, pExpr->pLeft, 0);
- break;
- }
-
- case TK_AGG_FUNCTION:
- case TK_FUNCTION: {
- ExprList *pFarg; /* List of function arguments */
- Window *pWin;
- if( ExprHasProperty(pExpr, EP_TokenOnly) ){
- pFarg = 0;
- pWin = 0;
- }else{
- pFarg = pExpr->x.pList;
-#ifndef SQLITE_OMIT_WINDOWFUNC
- pWin = pExpr->pWin;
-#else
- pWin = 0;
-#endif
- }
- if( pExpr->op==TK_AGG_FUNCTION ){
- sqlite3TreeViewLine(pView, "AGG_FUNCTION%d %Q",
- pExpr->op2, pExpr->u.zToken);
- }else{
- sqlite3TreeViewLine(pView, "FUNCTION %Q", pExpr->u.zToken);
- }
- if( pFarg ){
- sqlite3TreeViewExprList(pView, pFarg, pWin!=0, 0);
- }
-#ifndef SQLITE_OMIT_WINDOWFUNC
- if( pWin ){
- sqlite3TreeViewWindow(pView, pWin, 0);
- }
-#endif
- break;
- }
-#ifndef SQLITE_OMIT_SUBQUERY
- case TK_EXISTS: {
- sqlite3TreeViewLine(pView, "EXISTS-expr flags=0x%x", pExpr->flags);
- sqlite3TreeViewSelect(pView, pExpr->x.pSelect, 0);
- break;
- }
- case TK_SELECT: {
- sqlite3TreeViewLine(pView, "SELECT-expr flags=0x%x", pExpr->flags);
- sqlite3TreeViewSelect(pView, pExpr->x.pSelect, 0);
- break;
- }
- case TK_IN: {
- sqlite3TreeViewLine(pView, "IN flags=0x%x", pExpr->flags);
- sqlite3TreeViewExpr(pView, pExpr->pLeft, 1);
- if( ExprHasProperty(pExpr, EP_xIsSelect) ){
- sqlite3TreeViewSelect(pView, pExpr->x.pSelect, 0);
- }else{
- sqlite3TreeViewExprList(pView, pExpr->x.pList, 0, 0);
- }
- break;
- }
-#endif /* SQLITE_OMIT_SUBQUERY */
-
- /*
- ** x BETWEEN y AND z
- **
- ** This is equivalent to
- **
- ** x>=y AND x<=z
- **
- ** X is stored in pExpr->pLeft.
- ** Y is stored in pExpr->pList->a[0].pExpr.
- ** Z is stored in pExpr->pList->a[1].pExpr.
- */
- case TK_BETWEEN: {
- Expr *pX = pExpr->pLeft;
- Expr *pY = pExpr->x.pList->a[0].pExpr;
- Expr *pZ = pExpr->x.pList->a[1].pExpr;
- sqlite3TreeViewLine(pView, "BETWEEN");
- sqlite3TreeViewExpr(pView, pX, 1);
- sqlite3TreeViewExpr(pView, pY, 1);
- sqlite3TreeViewExpr(pView, pZ, 0);
- break;
- }
- case TK_TRIGGER: {
- /* If the opcode is TK_TRIGGER, then the expression is a reference
- ** to a column in the new.* or old.* pseudo-tables available to
- ** trigger programs. In this case Expr.iTable is set to 1 for the
- ** new.* pseudo-table, or 0 for the old.* pseudo-table. Expr.iColumn
- ** is set to the column of the pseudo-table to read, or to -1 to
- ** read the rowid field.
- */
- sqlite3TreeViewLine(pView, "%s(%d)",
- pExpr->iTable ? "NEW" : "OLD", pExpr->iColumn);
- break;
- }
- case TK_CASE: {
- sqlite3TreeViewLine(pView, "CASE");
- sqlite3TreeViewExpr(pView, pExpr->pLeft, 1);
- sqlite3TreeViewExprList(pView, pExpr->x.pList, 0, 0);
- break;
- }
-#ifndef SQLITE_OMIT_TRIGGER
- case TK_RAISE: {
- const char *zType = "unk";
- switch( pExpr->affinity ){
- case OE_Rollback: zType = "rollback"; break;
- case OE_Abort: zType = "abort"; break;
- case OE_Fail: zType = "fail"; break;
- case OE_Ignore: zType = "ignore"; break;
- }
- sqlite3TreeViewLine(pView, "RAISE %s(%Q)", zType, pExpr->u.zToken);
- break;
- }
-#endif
- case TK_MATCH: {
- sqlite3TreeViewLine(pView, "MATCH {%d:%d}%s",
- pExpr->iTable, pExpr->iColumn, zFlgs);
- sqlite3TreeViewExpr(pView, pExpr->pRight, 0);
- break;
- }
- case TK_VECTOR: {
- sqlite3TreeViewBareExprList(pView, pExpr->x.pList, "VECTOR");
- break;
- }
- case TK_SELECT_COLUMN: {
- sqlite3TreeViewLine(pView, "SELECT-COLUMN %d", pExpr->iColumn);
- sqlite3TreeViewSelect(pView, pExpr->pLeft->x.pSelect, 0);
- break;
- }
- case TK_IF_NULL_ROW: {
- sqlite3TreeViewLine(pView, "IF-NULL-ROW %d", pExpr->iTable);
- sqlite3TreeViewExpr(pView, pExpr->pLeft, 0);
- break;
- }
- default: {
- sqlite3TreeViewLine(pView, "op=%d", pExpr->op);
- break;
- }
- }
- if( zBinOp ){
- sqlite3TreeViewLine(pView, "%s%s", zBinOp, zFlgs);
- sqlite3TreeViewExpr(pView, pExpr->pLeft, 1);
- sqlite3TreeViewExpr(pView, pExpr->pRight, 0);
- }else if( zUniOp ){
- sqlite3TreeViewLine(pView, "%s%s", zUniOp, zFlgs);
- sqlite3TreeViewExpr(pView, pExpr->pLeft, 0);
- }
- sqlite3TreeViewPop(pView);
-}
-
-
-/*
-** Generate a human-readable explanation of an expression list.
-*/
-SQLITE_PRIVATE void sqlite3TreeViewBareExprList(
- TreeView *pView,
- const ExprList *pList,
- const char *zLabel
-){
- if( zLabel==0 || zLabel[0]==0 ) zLabel = "LIST";
- if( pList==0 ){
- sqlite3TreeViewLine(pView, "%s (empty)", zLabel);
- }else{
- int i;
- sqlite3TreeViewLine(pView, "%s", zLabel);
- for(i=0; inExpr; i++){
- int j = pList->a[i].u.x.iOrderByCol;
- char *zName = pList->a[i].zName;
- int moreToFollow = inExpr - 1;
- if( j || zName ){
- sqlite3TreeViewPush(pView, moreToFollow);
- moreToFollow = 0;
- sqlite3TreeViewLine(pView, 0);
- if( zName ){
- fprintf(stdout, "AS %s ", zName);
- }
- if( j ){
- fprintf(stdout, "iOrderByCol=%d", j);
- }
- fprintf(stdout, "\n");
- fflush(stdout);
- }
- sqlite3TreeViewExpr(pView, pList->a[i].pExpr, moreToFollow);
- if( j || zName ){
- sqlite3TreeViewPop(pView);
- }
- }
- }
-}
-SQLITE_PRIVATE void sqlite3TreeViewExprList(
- TreeView *pView,
- const ExprList *pList,
- u8 moreToFollow,
- const char *zLabel
-){
- pView = sqlite3TreeViewPush(pView, moreToFollow);
- sqlite3TreeViewBareExprList(pView, pList, zLabel);
- sqlite3TreeViewPop(pView);
-}
-
-#endif /* SQLITE_DEBUG */
-
-/************** End of treeview.c ********************************************/
-/************** Begin file random.c ******************************************/
-/*
-** 2001 September 15
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** This file contains code to implement a pseudo-random number
-** generator (PRNG) for SQLite.
-**
-** Random numbers are used by some of the database backends in order
-** to generate random integer keys for tables or random filenames.
-*/
-/* #include "sqliteInt.h" */
-
-
-/* All threads share a single random number generator.
-** This structure is the current state of the generator.
-*/
-static SQLITE_WSD struct sqlite3PrngType {
- unsigned char isInit; /* True if initialized */
- unsigned char i, j; /* State variables */
- unsigned char s[256]; /* State variables */
-} sqlite3Prng;
-
-/*
-** Return N random bytes.
-*/
-SQLITE_API void sqlite3_randomness(int N, void *pBuf){
- unsigned char t;
- unsigned char *zBuf = pBuf;
-
- /* The "wsdPrng" macro will resolve to the pseudo-random number generator
- ** state vector. If writable static data is unsupported on the target,
- ** we have to locate the state vector at run-time. In the more common
- ** case where writable static data is supported, wsdPrng can refer directly
- ** to the "sqlite3Prng" state vector declared above.
- */
-#ifdef SQLITE_OMIT_WSD
- struct sqlite3PrngType *p = &GLOBAL(struct sqlite3PrngType, sqlite3Prng);
-# define wsdPrng p[0]
-#else
-# define wsdPrng sqlite3Prng
-#endif
-
-#if SQLITE_THREADSAFE
- sqlite3_mutex *mutex;
-#endif
-
-#ifndef SQLITE_OMIT_AUTOINIT
- if( sqlite3_initialize() ) return;
-#endif
-
-#if SQLITE_THREADSAFE
- mutex = sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_PRNG);
-#endif
-
- sqlite3_mutex_enter(mutex);
- if( N<=0 || pBuf==0 ){
- wsdPrng.isInit = 0;
- sqlite3_mutex_leave(mutex);
- return;
- }
-
- /* Initialize the state of the random number generator once,
- ** the first time this routine is called. The seed value does
- ** not need to contain a lot of randomness since we are not
- ** trying to do secure encryption or anything like that...
- **
- ** Nothing in this file or anywhere else in SQLite does any kind of
- ** encryption. The RC4 algorithm is being used as a PRNG (pseudo-random
- ** number generator) not as an encryption device.
- */
- if( !wsdPrng.isInit ){
- int i;
- char k[256];
- wsdPrng.j = 0;
- wsdPrng.i = 0;
- sqlite3OsRandomness(sqlite3_vfs_find(0), 256, k);
- for(i=0; i<256; i++){
- wsdPrng.s[i] = (u8)i;
- }
- for(i=0; i<256; i++){
- wsdPrng.j += wsdPrng.s[i] + k[i];
- t = wsdPrng.s[wsdPrng.j];
- wsdPrng.s[wsdPrng.j] = wsdPrng.s[i];
- wsdPrng.s[i] = t;
- }
- wsdPrng.isInit = 1;
- }
-
- assert( N>0 );
- do{
- wsdPrng.i++;
- t = wsdPrng.s[wsdPrng.i];
- wsdPrng.j += t;
- wsdPrng.s[wsdPrng.i] = wsdPrng.s[wsdPrng.j];
- wsdPrng.s[wsdPrng.j] = t;
- t += wsdPrng.s[wsdPrng.i];
- *(zBuf++) = wsdPrng.s[t];
- }while( --N );
- sqlite3_mutex_leave(mutex);
-}
-
-#ifndef SQLITE_UNTESTABLE
-/*
-** For testing purposes, we sometimes want to preserve the state of
-** PRNG and restore the PRNG to its saved state at a later time, or
-** to reset the PRNG to its initial state. These routines accomplish
-** those tasks.
-**
-** The sqlite3_test_control() interface calls these routines to
-** control the PRNG.
-*/
-static SQLITE_WSD struct sqlite3PrngType sqlite3SavedPrng;
-SQLITE_PRIVATE void sqlite3PrngSaveState(void){
- memcpy(
- &GLOBAL(struct sqlite3PrngType, sqlite3SavedPrng),
- &GLOBAL(struct sqlite3PrngType, sqlite3Prng),
- sizeof(sqlite3Prng)
- );
-}
-SQLITE_PRIVATE void sqlite3PrngRestoreState(void){
- memcpy(
- &GLOBAL(struct sqlite3PrngType, sqlite3Prng),
- &GLOBAL(struct sqlite3PrngType, sqlite3SavedPrng),
- sizeof(sqlite3Prng)
- );
-}
-#endif /* SQLITE_UNTESTABLE */
-
-/************** End of random.c **********************************************/
-/************** Begin file threads.c *****************************************/
-/*
-** 2012 July 21
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This file presents a simple cross-platform threading interface for
-** use internally by SQLite.
-**
-** A "thread" can be created using sqlite3ThreadCreate(). This thread
-** runs independently of its creator until it is joined using
-** sqlite3ThreadJoin(), at which point it terminates.
-**
-** Threads do not have to be real. It could be that the work of the
-** "thread" is done by the main thread at either the sqlite3ThreadCreate()
-** or sqlite3ThreadJoin() call. This is, in fact, what happens in
-** single threaded systems. Nothing in SQLite requires multiple threads.
-** This interface exists so that applications that want to take advantage
-** of multiple cores can do so, while also allowing applications to stay
-** single-threaded if desired.
-*/
-/* #include "sqliteInt.h" */
-#if SQLITE_OS_WIN
-/* # include "os_win.h" */
-#endif
-
-#if SQLITE_MAX_WORKER_THREADS>0
-
-/********************************* Unix Pthreads ****************************/
-#if SQLITE_OS_UNIX && defined(SQLITE_MUTEX_PTHREADS) && SQLITE_THREADSAFE>0
-
-#define SQLITE_THREADS_IMPLEMENTED 1 /* Prevent the single-thread code below */
-/* #include */
-
-/* A running thread */
-struct SQLiteThread {
- pthread_t tid; /* Thread ID */
- int done; /* Set to true when thread finishes */
- void *pOut; /* Result returned by the thread */
- void *(*xTask)(void*); /* The thread routine */
- void *pIn; /* Argument to the thread */
-};
-
-/* Create a new thread */
-SQLITE_PRIVATE int sqlite3ThreadCreate(
- SQLiteThread **ppThread, /* OUT: Write the thread object here */
- void *(*xTask)(void*), /* Routine to run in a separate thread */
- void *pIn /* Argument passed into xTask() */
-){
- SQLiteThread *p;
- int rc;
-
- assert( ppThread!=0 );
- assert( xTask!=0 );
- /* This routine is never used in single-threaded mode */
- assert( sqlite3GlobalConfig.bCoreMutex!=0 );
-
- *ppThread = 0;
- p = sqlite3Malloc(sizeof(*p));
- if( p==0 ) return SQLITE_NOMEM_BKPT;
- memset(p, 0, sizeof(*p));
- p->xTask = xTask;
- p->pIn = pIn;
- /* If the SQLITE_TESTCTRL_FAULT_INSTALL callback is registered to a
- ** function that returns SQLITE_ERROR when passed the argument 200, that
- ** forces worker threads to run sequentially and deterministically
- ** for testing purposes. */
- if( sqlite3FaultSim(200) ){
- rc = 1;
- }else{
- rc = pthread_create(&p->tid, 0, xTask, pIn);
- }
- if( rc ){
- p->done = 1;
- p->pOut = xTask(pIn);
- }
- *ppThread = p;
- return SQLITE_OK;
-}
-
-/* Get the results of the thread */
-SQLITE_PRIVATE int sqlite3ThreadJoin(SQLiteThread *p, void **ppOut){
- int rc;
-
- assert( ppOut!=0 );
- if( NEVER(p==0) ) return SQLITE_NOMEM_BKPT;
- if( p->done ){
- *ppOut = p->pOut;
- rc = SQLITE_OK;
- }else{
- rc = pthread_join(p->tid, ppOut) ? SQLITE_ERROR : SQLITE_OK;
- }
- sqlite3_free(p);
- return rc;
-}
-
-#endif /* SQLITE_OS_UNIX && defined(SQLITE_MUTEX_PTHREADS) */
-/******************************** End Unix Pthreads *************************/
-
-
-/********************************* Win32 Threads ****************************/
-#if SQLITE_OS_WIN_THREADS
-
-#define SQLITE_THREADS_IMPLEMENTED 1 /* Prevent the single-thread code below */
-#include
-
-/* A running thread */
-struct SQLiteThread {
- void *tid; /* The thread handle */
- unsigned id; /* The thread identifier */
- void *(*xTask)(void*); /* The routine to run as a thread */
- void *pIn; /* Argument to xTask */
- void *pResult; /* Result of xTask */
-};
-
-/* Thread procedure Win32 compatibility shim */
-static unsigned __stdcall sqlite3ThreadProc(
- void *pArg /* IN: Pointer to the SQLiteThread structure */
-){
- SQLiteThread *p = (SQLiteThread *)pArg;
-
- assert( p!=0 );
-#if 0
- /*
- ** This assert appears to trigger spuriously on certain
- ** versions of Windows, possibly due to _beginthreadex()
- ** and/or CreateThread() not fully setting their thread
- ** ID parameter before starting the thread.
- */
- assert( p->id==GetCurrentThreadId() );
-#endif
- assert( p->xTask!=0 );
- p->pResult = p->xTask(p->pIn);
-
- _endthreadex(0);
- return 0; /* NOT REACHED */
-}
-
-/* Create a new thread */
-SQLITE_PRIVATE int sqlite3ThreadCreate(
- SQLiteThread **ppThread, /* OUT: Write the thread object here */
- void *(*xTask)(void*), /* Routine to run in a separate thread */
- void *pIn /* Argument passed into xTask() */
-){
- SQLiteThread *p;
-
- assert( ppThread!=0 );
- assert( xTask!=0 );
- *ppThread = 0;
- p = sqlite3Malloc(sizeof(*p));
- if( p==0 ) return SQLITE_NOMEM_BKPT;
- /* If the SQLITE_TESTCTRL_FAULT_INSTALL callback is registered to a
- ** function that returns SQLITE_ERROR when passed the argument 200, that
- ** forces worker threads to run sequentially and deterministically
- ** (via the sqlite3FaultSim() term of the conditional) for testing
- ** purposes. */
- if( sqlite3GlobalConfig.bCoreMutex==0 || sqlite3FaultSim(200) ){
- memset(p, 0, sizeof(*p));
- }else{
- p->xTask = xTask;
- p->pIn = pIn;
- p->tid = (void*)_beginthreadex(0, 0, sqlite3ThreadProc, p, 0, &p->id);
- if( p->tid==0 ){
- memset(p, 0, sizeof(*p));
- }
- }
- if( p->xTask==0 ){
- p->id = GetCurrentThreadId();
- p->pResult = xTask(pIn);
- }
- *ppThread = p;
- return SQLITE_OK;
-}
-
-SQLITE_PRIVATE DWORD sqlite3Win32Wait(HANDLE hObject); /* os_win.c */
-
-/* Get the results of the thread */
-SQLITE_PRIVATE int sqlite3ThreadJoin(SQLiteThread *p, void **ppOut){
- DWORD rc;
- BOOL bRc;
-
- assert( ppOut!=0 );
- if( NEVER(p==0) ) return SQLITE_NOMEM_BKPT;
- if( p->xTask==0 ){
- /* assert( p->id==GetCurrentThreadId() ); */
- rc = WAIT_OBJECT_0;
- assert( p->tid==0 );
- }else{
- assert( p->id!=0 && p->id!=GetCurrentThreadId() );
- rc = sqlite3Win32Wait((HANDLE)p->tid);
- assert( rc!=WAIT_IO_COMPLETION );
- bRc = CloseHandle((HANDLE)p->tid);
- assert( bRc );
- }
- if( rc==WAIT_OBJECT_0 ) *ppOut = p->pResult;
- sqlite3_free(p);
- return (rc==WAIT_OBJECT_0) ? SQLITE_OK : SQLITE_ERROR;
-}
-
-#endif /* SQLITE_OS_WIN_THREADS */
-/******************************** End Win32 Threads *************************/
-
-
-/********************************* Single-Threaded **************************/
-#ifndef SQLITE_THREADS_IMPLEMENTED
-/*
-** This implementation does not actually create a new thread. It does the
-** work of the thread in the main thread, when either the thread is created
-** or when it is joined
-*/
-
-/* A running thread */
-struct SQLiteThread {
- void *(*xTask)(void*); /* The routine to run as a thread */
- void *pIn; /* Argument to xTask */
- void *pResult; /* Result of xTask */
-};
-
-/* Create a new thread */
-SQLITE_PRIVATE int sqlite3ThreadCreate(
- SQLiteThread **ppThread, /* OUT: Write the thread object here */
- void *(*xTask)(void*), /* Routine to run in a separate thread */
- void *pIn /* Argument passed into xTask() */
-){
- SQLiteThread *p;
-
- assert( ppThread!=0 );
- assert( xTask!=0 );
- *ppThread = 0;
- p = sqlite3Malloc(sizeof(*p));
- if( p==0 ) return SQLITE_NOMEM_BKPT;
- if( (SQLITE_PTR_TO_INT(p)/17)&1 ){
- p->xTask = xTask;
- p->pIn = pIn;
- }else{
- p->xTask = 0;
- p->pResult = xTask(pIn);
- }
- *ppThread = p;
- return SQLITE_OK;
-}
-
-/* Get the results of the thread */
-SQLITE_PRIVATE int sqlite3ThreadJoin(SQLiteThread *p, void **ppOut){
-
- assert( ppOut!=0 );
- if( NEVER(p==0) ) return SQLITE_NOMEM_BKPT;
- if( p->xTask ){
- *ppOut = p->xTask(p->pIn);
- }else{
- *ppOut = p->pResult;
- }
- sqlite3_free(p);
-
-#if defined(SQLITE_TEST)
- {
- void *pTstAlloc = sqlite3Malloc(10);
- if (!pTstAlloc) return SQLITE_NOMEM_BKPT;
- sqlite3_free(pTstAlloc);
- }
-#endif
-
- return SQLITE_OK;
-}
-
-#endif /* !defined(SQLITE_THREADS_IMPLEMENTED) */
-/****************************** End Single-Threaded *************************/
-#endif /* SQLITE_MAX_WORKER_THREADS>0 */
-
-/************** End of threads.c *********************************************/
-/************** Begin file utf.c *********************************************/
-/*
-** 2004 April 13
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** This file contains routines used to translate between UTF-8,
-** UTF-16, UTF-16BE, and UTF-16LE.
-**
-** Notes on UTF-8:
-**
-** Byte-0 Byte-1 Byte-2 Byte-3 Value
-** 0xxxxxxx 00000000 00000000 0xxxxxxx
-** 110yyyyy 10xxxxxx 00000000 00000yyy yyxxxxxx
-** 1110zzzz 10yyyyyy 10xxxxxx 00000000 zzzzyyyy yyxxxxxx
-** 11110uuu 10uuzzzz 10yyyyyy 10xxxxxx 000uuuuu zzzzyyyy yyxxxxxx
-**
-**
-** Notes on UTF-16: (with wwww+1==uuuuu)
-**
-** Word-0 Word-1 Value
-** 110110ww wwzzzzyy 110111yy yyxxxxxx 000uuuuu zzzzyyyy yyxxxxxx
-** zzzzyyyy yyxxxxxx 00000000 zzzzyyyy yyxxxxxx
-**
-**
-** BOM or Byte Order Mark:
-** 0xff 0xfe little-endian utf-16 follows
-** 0xfe 0xff big-endian utf-16 follows
-**
-*/
-/* #include "sqliteInt.h" */
-/* #include */
-/* #include "vdbeInt.h" */
-
-#if !defined(SQLITE_AMALGAMATION) && SQLITE_BYTEORDER==0
-/*
-** The following constant value is used by the SQLITE_BIGENDIAN and
-** SQLITE_LITTLEENDIAN macros.
-*/
-SQLITE_PRIVATE const int sqlite3one = 1;
-#endif /* SQLITE_AMALGAMATION && SQLITE_BYTEORDER==0 */
-
-/*
-** This lookup table is used to help decode the first byte of
-** a multi-byte UTF8 character.
-*/
-static const unsigned char sqlite3Utf8Trans1[] = {
- 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
- 0x08, 0x09, 0x0a, 0x0b, 0x0c, 0x0d, 0x0e, 0x0f,
- 0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17,
- 0x18, 0x19, 0x1a, 0x1b, 0x1c, 0x1d, 0x1e, 0x1f,
- 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
- 0x08, 0x09, 0x0a, 0x0b, 0x0c, 0x0d, 0x0e, 0x0f,
- 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
- 0x00, 0x01, 0x02, 0x03, 0x00, 0x01, 0x00, 0x00,
-};
-
-
-#define WRITE_UTF8(zOut, c) { \
- if( c<0x00080 ){ \
- *zOut++ = (u8)(c&0xFF); \
- } \
- else if( c<0x00800 ){ \
- *zOut++ = 0xC0 + (u8)((c>>6)&0x1F); \
- *zOut++ = 0x80 + (u8)(c & 0x3F); \
- } \
- else if( c<0x10000 ){ \
- *zOut++ = 0xE0 + (u8)((c>>12)&0x0F); \
- *zOut++ = 0x80 + (u8)((c>>6) & 0x3F); \
- *zOut++ = 0x80 + (u8)(c & 0x3F); \
- }else{ \
- *zOut++ = 0xF0 + (u8)((c>>18) & 0x07); \
- *zOut++ = 0x80 + (u8)((c>>12) & 0x3F); \
- *zOut++ = 0x80 + (u8)((c>>6) & 0x3F); \
- *zOut++ = 0x80 + (u8)(c & 0x3F); \
- } \
-}
-
-#define WRITE_UTF16LE(zOut, c) { \
- if( c<=0xFFFF ){ \
- *zOut++ = (u8)(c&0x00FF); \
- *zOut++ = (u8)((c>>8)&0x00FF); \
- }else{ \
- *zOut++ = (u8)(((c>>10)&0x003F) + (((c-0x10000)>>10)&0x00C0)); \
- *zOut++ = (u8)(0x00D8 + (((c-0x10000)>>18)&0x03)); \
- *zOut++ = (u8)(c&0x00FF); \
- *zOut++ = (u8)(0x00DC + ((c>>8)&0x03)); \
- } \
-}
-
-#define WRITE_UTF16BE(zOut, c) { \
- if( c<=0xFFFF ){ \
- *zOut++ = (u8)((c>>8)&0x00FF); \
- *zOut++ = (u8)(c&0x00FF); \
- }else{ \
- *zOut++ = (u8)(0x00D8 + (((c-0x10000)>>18)&0x03)); \
- *zOut++ = (u8)(((c>>10)&0x003F) + (((c-0x10000)>>10)&0x00C0)); \
- *zOut++ = (u8)(0x00DC + ((c>>8)&0x03)); \
- *zOut++ = (u8)(c&0x00FF); \
- } \
-}
-
-#define READ_UTF16LE(zIn, TERM, c){ \
- c = (*zIn++); \
- c += ((*zIn++)<<8); \
- if( c>=0xD800 && c<0xE000 && TERM ){ \
- int c2 = (*zIn++); \
- c2 += ((*zIn++)<<8); \
- c = (c2&0x03FF) + ((c&0x003F)<<10) + (((c&0x03C0)+0x0040)<<10); \
- } \
-}
-
-#define READ_UTF16BE(zIn, TERM, c){ \
- c = ((*zIn++)<<8); \
- c += (*zIn++); \
- if( c>=0xD800 && c<0xE000 && TERM ){ \
- int c2 = ((*zIn++)<<8); \
- c2 += (*zIn++); \
- c = (c2&0x03FF) + ((c&0x003F)<<10) + (((c&0x03C0)+0x0040)<<10); \
- } \
-}
-
-/*
-** Translate a single UTF-8 character. Return the unicode value.
-**
-** During translation, assume that the byte that zTerm points
-** is a 0x00.
-**
-** Write a pointer to the next unread byte back into *pzNext.
-**
-** Notes On Invalid UTF-8:
-**
-** * This routine never allows a 7-bit character (0x00 through 0x7f) to
-** be encoded as a multi-byte character. Any multi-byte character that
-** attempts to encode a value between 0x00 and 0x7f is rendered as 0xfffd.
-**
-** * This routine never allows a UTF16 surrogate value to be encoded.
-** If a multi-byte character attempts to encode a value between
-** 0xd800 and 0xe000 then it is rendered as 0xfffd.
-**
-** * Bytes in the range of 0x80 through 0xbf which occur as the first
-** byte of a character are interpreted as single-byte characters
-** and rendered as themselves even though they are technically
-** invalid characters.
-**
-** * This routine accepts over-length UTF8 encodings
-** for unicode values 0x80 and greater. It does not change over-length
-** encodings to 0xfffd as some systems recommend.
-*/
-#define READ_UTF8(zIn, zTerm, c) \
- c = *(zIn++); \
- if( c>=0xc0 ){ \
- c = sqlite3Utf8Trans1[c-0xc0]; \
- while( zIn!=zTerm && (*zIn & 0xc0)==0x80 ){ \
- c = (c<<6) + (0x3f & *(zIn++)); \
- } \
- if( c<0x80 \
- || (c&0xFFFFF800)==0xD800 \
- || (c&0xFFFFFFFE)==0xFFFE ){ c = 0xFFFD; } \
- }
-SQLITE_PRIVATE u32 sqlite3Utf8Read(
- const unsigned char **pz /* Pointer to string from which to read char */
-){
- unsigned int c;
-
- /* Same as READ_UTF8() above but without the zTerm parameter.
- ** For this routine, we assume the UTF8 string is always zero-terminated.
- */
- c = *((*pz)++);
- if( c>=0xc0 ){
- c = sqlite3Utf8Trans1[c-0xc0];
- while( (*(*pz) & 0xc0)==0x80 ){
- c = (c<<6) + (0x3f & *((*pz)++));
- }
- if( c<0x80
- || (c&0xFFFFF800)==0xD800
- || (c&0xFFFFFFFE)==0xFFFE ){ c = 0xFFFD; }
- }
- return c;
-}
-
-
-
-
-/*
-** If the TRANSLATE_TRACE macro is defined, the value of each Mem is
-** printed on stderr on the way into and out of sqlite3VdbeMemTranslate().
-*/
-/* #define TRANSLATE_TRACE 1 */
-
-#ifndef SQLITE_OMIT_UTF16
-/*
-** This routine transforms the internal text encoding used by pMem to
-** desiredEnc. It is an error if the string is already of the desired
-** encoding, or if *pMem does not contain a string value.
-*/
-SQLITE_PRIVATE SQLITE_NOINLINE int sqlite3VdbeMemTranslate(Mem *pMem, u8 desiredEnc){
- int len; /* Maximum length of output string in bytes */
- unsigned char *zOut; /* Output buffer */
- unsigned char *zIn; /* Input iterator */
- unsigned char *zTerm; /* End of input */
- unsigned char *z; /* Output iterator */
- unsigned int c;
-
- assert( pMem->db==0 || sqlite3_mutex_held(pMem->db->mutex) );
- assert( pMem->flags&MEM_Str );
- assert( pMem->enc!=desiredEnc );
- assert( pMem->enc!=0 );
- assert( pMem->n>=0 );
-
-#if defined(TRANSLATE_TRACE) && defined(SQLITE_DEBUG)
- {
- char zBuf[100];
- sqlite3VdbeMemPrettyPrint(pMem, zBuf);
- fprintf(stderr, "INPUT: %s\n", zBuf);
- }
-#endif
-
- /* If the translation is between UTF-16 little and big endian, then
- ** all that is required is to swap the byte order. This case is handled
- ** differently from the others.
- */
- if( pMem->enc!=SQLITE_UTF8 && desiredEnc!=SQLITE_UTF8 ){
- u8 temp;
- int rc;
- rc = sqlite3VdbeMemMakeWriteable(pMem);
- if( rc!=SQLITE_OK ){
- assert( rc==SQLITE_NOMEM );
- return SQLITE_NOMEM_BKPT;
- }
- zIn = (u8*)pMem->z;
- zTerm = &zIn[pMem->n&~1];
- while( zInenc = desiredEnc;
- goto translate_out;
- }
-
- /* Set len to the maximum number of bytes required in the output buffer. */
- if( desiredEnc==SQLITE_UTF8 ){
- /* When converting from UTF-16, the maximum growth results from
- ** translating a 2-byte character to a 4-byte UTF-8 character.
- ** A single byte is required for the output string
- ** nul-terminator.
- */
- pMem->n &= ~1;
- len = pMem->n * 2 + 1;
- }else{
- /* When converting from UTF-8 to UTF-16 the maximum growth is caused
- ** when a 1-byte UTF-8 character is translated into a 2-byte UTF-16
- ** character. Two bytes are required in the output buffer for the
- ** nul-terminator.
- */
- len = pMem->n * 2 + 2;
- }
-
- /* Set zIn to point at the start of the input buffer and zTerm to point 1
- ** byte past the end.
- **
- ** Variable zOut is set to point at the output buffer, space obtained
- ** from sqlite3_malloc().
- */
- zIn = (u8*)pMem->z;
- zTerm = &zIn[pMem->n];
- zOut = sqlite3DbMallocRaw(pMem->db, len);
- if( !zOut ){
- return SQLITE_NOMEM_BKPT;
- }
- z = zOut;
-
- if( pMem->enc==SQLITE_UTF8 ){
- if( desiredEnc==SQLITE_UTF16LE ){
- /* UTF-8 -> UTF-16 Little-endian */
- while( zIn UTF-16 Big-endian */
- while( zInn = (int)(z - zOut);
- *z++ = 0;
- }else{
- assert( desiredEnc==SQLITE_UTF8 );
- if( pMem->enc==SQLITE_UTF16LE ){
- /* UTF-16 Little-endian -> UTF-8 */
- while( zIn UTF-8 */
- while( zInn = (int)(z - zOut);
- }
- *z = 0;
- assert( (pMem->n+(desiredEnc==SQLITE_UTF8?1:2))<=len );
-
- c = pMem->flags;
- sqlite3VdbeMemRelease(pMem);
- pMem->flags = MEM_Str|MEM_Term|(c&(MEM_AffMask|MEM_Subtype));
- pMem->enc = desiredEnc;
- pMem->z = (char*)zOut;
- pMem->zMalloc = pMem->z;
- pMem->szMalloc = sqlite3DbMallocSize(pMem->db, pMem->z);
-
-translate_out:
-#if defined(TRANSLATE_TRACE) && defined(SQLITE_DEBUG)
- {
- char zBuf[100];
- sqlite3VdbeMemPrettyPrint(pMem, zBuf);
- fprintf(stderr, "OUTPUT: %s\n", zBuf);
- }
-#endif
- return SQLITE_OK;
-}
-#endif /* SQLITE_OMIT_UTF16 */
-
-#ifndef SQLITE_OMIT_UTF16
-/*
-** This routine checks for a byte-order mark at the beginning of the
-** UTF-16 string stored in *pMem. If one is present, it is removed and
-** the encoding of the Mem adjusted. This routine does not do any
-** byte-swapping, it just sets Mem.enc appropriately.
-**
-** The allocation (static, dynamic etc.) and encoding of the Mem may be
-** changed by this function.
-*/
-SQLITE_PRIVATE int sqlite3VdbeMemHandleBom(Mem *pMem){
- int rc = SQLITE_OK;
- u8 bom = 0;
-
- assert( pMem->n>=0 );
- if( pMem->n>1 ){
- u8 b1 = *(u8 *)pMem->z;
- u8 b2 = *(((u8 *)pMem->z) + 1);
- if( b1==0xFE && b2==0xFF ){
- bom = SQLITE_UTF16BE;
- }
- if( b1==0xFF && b2==0xFE ){
- bom = SQLITE_UTF16LE;
- }
- }
-
- if( bom ){
- rc = sqlite3VdbeMemMakeWriteable(pMem);
- if( rc==SQLITE_OK ){
- pMem->n -= 2;
- memmove(pMem->z, &pMem->z[2], pMem->n);
- pMem->z[pMem->n] = '\0';
- pMem->z[pMem->n+1] = '\0';
- pMem->flags |= MEM_Term;
- pMem->enc = bom;
- }
- }
- return rc;
-}
-#endif /* SQLITE_OMIT_UTF16 */
-
-/*
-** pZ is a UTF-8 encoded unicode string. If nByte is less than zero,
-** return the number of unicode characters in pZ up to (but not including)
-** the first 0x00 byte. If nByte is not less than zero, return the
-** number of unicode characters in the first nByte of pZ (or up to
-** the first 0x00, whichever comes first).
-*/
-SQLITE_PRIVATE int sqlite3Utf8CharLen(const char *zIn, int nByte){
- int r = 0;
- const u8 *z = (const u8*)zIn;
- const u8 *zTerm;
- if( nByte>=0 ){
- zTerm = &z[nByte];
- }else{
- zTerm = (const u8*)(-1);
- }
- assert( z<=zTerm );
- while( *z!=0 && zmallocFailed ){
- sqlite3VdbeMemRelease(&m);
- m.z = 0;
- }
- assert( (m.flags & MEM_Term)!=0 || db->mallocFailed );
- assert( (m.flags & MEM_Str)!=0 || db->mallocFailed );
- assert( m.z || db->mallocFailed );
- return m.z;
-}
-
-/*
-** zIn is a UTF-16 encoded unicode string at least nChar characters long.
-** Return the number of bytes in the first nChar unicode characters
-** in pZ. nChar must be non-negative.
-*/
-SQLITE_PRIVATE int sqlite3Utf16ByteLen(const void *zIn, int nChar){
- int c;
- unsigned char const *z = zIn;
- int n = 0;
-
- if( SQLITE_UTF16NATIVE==SQLITE_UTF16BE ){
- while( n0 && n<=4 );
- z[0] = 0;
- z = zBuf;
- c = sqlite3Utf8Read((const u8**)&z);
- t = i;
- if( i>=0xD800 && i<=0xDFFF ) t = 0xFFFD;
- if( (i&0xFFFFFFFE)==0xFFFE ) t = 0xFFFD;
- assert( c==t );
- assert( (z-zBuf)==n );
- }
- for(i=0; i<0x00110000; i++){
- if( i>=0xD800 && i<0xE000 ) continue;
- z = zBuf;
- WRITE_UTF16LE(z, i);
- n = (int)(z-zBuf);
- assert( n>0 && n<=4 );
- z[0] = 0;
- z = zBuf;
- READ_UTF16LE(z, 1, c);
- assert( c==i );
- assert( (z-zBuf)==n );
- }
- for(i=0; i<0x00110000; i++){
- if( i>=0xD800 && i<0xE000 ) continue;
- z = zBuf;
- WRITE_UTF16BE(z, i);
- n = (int)(z-zBuf);
- assert( n>0 && n<=4 );
- z[0] = 0;
- z = zBuf;
- READ_UTF16BE(z, 1, c);
- assert( c==i );
- assert( (z-zBuf)==n );
- }
-}
-#endif /* SQLITE_TEST */
-#endif /* SQLITE_OMIT_UTF16 */
-
-/************** End of utf.c *************************************************/
-/************** Begin file util.c ********************************************/
-/*
-** 2001 September 15
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-*************************************************************************
-** Utility functions used throughout sqlite.
-**
-** This file contains functions for allocating memory, comparing
-** strings, and stuff like that.
-**
-*/
-/* #include "sqliteInt.h" */
-/* #include */
-#if HAVE_ISNAN || SQLITE_HAVE_ISNAN
-# include
-#endif
-
-/*
-** Routine needed to support the testcase() macro.
-*/
-#ifdef SQLITE_COVERAGE_TEST
-SQLITE_PRIVATE void sqlite3Coverage(int x){
- static unsigned dummy = 0;
- dummy += (unsigned)x;
-}
-#endif
-
-/*
-** Give a callback to the test harness that can be used to simulate faults
-** in places where it is difficult or expensive to do so purely by means
-** of inputs.
-**
-** The intent of the integer argument is to let the fault simulator know
-** which of multiple sqlite3FaultSim() calls has been hit.
-**
-** Return whatever integer value the test callback returns, or return
-** SQLITE_OK if no test callback is installed.
-*/
-#ifndef SQLITE_UNTESTABLE
-SQLITE_PRIVATE int sqlite3FaultSim(int iTest){
- int (*xCallback)(int) = sqlite3GlobalConfig.xTestCallback;
- return xCallback ? xCallback(iTest) : SQLITE_OK;
-}
-#endif
-
-#ifndef SQLITE_OMIT_FLOATING_POINT
-/*
-** Return true if the floating point value is Not a Number (NaN).
-**
-** Use the math library isnan() function if compiled with SQLITE_HAVE_ISNAN.
-** Otherwise, we have our own implementation that works on most systems.
-*/
-SQLITE_PRIVATE int sqlite3IsNaN(double x){
- int rc; /* The value return */
-#if !SQLITE_HAVE_ISNAN && !HAVE_ISNAN
- /*
- ** Systems that support the isnan() library function should probably
- ** make use of it by compiling with -DSQLITE_HAVE_ISNAN. But we have
- ** found that many systems do not have a working isnan() function so
- ** this implementation is provided as an alternative.
- **
- ** This NaN test sometimes fails if compiled on GCC with -ffast-math.
- ** On the other hand, the use of -ffast-math comes with the following
- ** warning:
- **
- ** This option [-ffast-math] should never be turned on by any
- ** -O option since it can result in incorrect output for programs
- ** which depend on an exact implementation of IEEE or ISO
- ** rules/specifications for math functions.
- **
- ** Under MSVC, this NaN test may fail if compiled with a floating-
- ** point precision mode other than /fp:precise. From the MSDN
- ** documentation:
- **
- ** The compiler [with /fp:precise] will properly handle comparisons
- ** involving NaN. For example, x != x evaluates to true if x is NaN
- ** ...
- */
-#ifdef __FAST_MATH__
-# error SQLite will not work correctly with the -ffast-math option of GCC.
-#endif
- volatile double y = x;
- volatile double z = y;
- rc = (y!=z);
-#else /* if HAVE_ISNAN */
- rc = isnan(x);
-#endif /* HAVE_ISNAN */
- testcase( rc );
- return rc;
-}
-#endif /* SQLITE_OMIT_FLOATING_POINT */
-
-/*
-** Compute a string length that is limited to what can be stored in
-** lower 30 bits of a 32-bit signed integer.
-**
-** The value returned will never be negative. Nor will it ever be greater
-** than the actual length of the string. For very long strings (greater
-** than 1GiB) the value returned might be less than the true string length.
-*/
-SQLITE_PRIVATE int sqlite3Strlen30(const char *z){
- if( z==0 ) return 0;
- return 0x3fffffff & (int)strlen(z);
-}
-
-/*
-** Return the declared type of a column. Or return zDflt if the column
-** has no declared type.
-**
-** The column type is an extra string stored after the zero-terminator on
-** the column name if and only if the COLFLAG_HASTYPE flag is set.
-*/
-SQLITE_PRIVATE char *sqlite3ColumnType(Column *pCol, char *zDflt){
- if( (pCol->colFlags & COLFLAG_HASTYPE)==0 ) return zDflt;
- return pCol->zName + strlen(pCol->zName) + 1;
-}
-
-/*
-** Helper function for sqlite3Error() - called rarely. Broken out into
-** a separate routine to avoid unnecessary register saves on entry to
-** sqlite3Error().
-*/
-static SQLITE_NOINLINE void sqlite3ErrorFinish(sqlite3 *db, int err_code){
- if( db->pErr ) sqlite3ValueSetNull(db->pErr);
- sqlite3SystemError(db, err_code);
-}
-
-/*
-** Set the current error code to err_code and clear any prior error message.
-** Also set iSysErrno (by calling sqlite3System) if the err_code indicates
-** that would be appropriate.
-*/
-SQLITE_PRIVATE void sqlite3Error(sqlite3 *db, int err_code){
- assert( db!=0 );
- db->errCode = err_code;
- if( err_code || db->pErr ) sqlite3ErrorFinish(db, err_code);
-}
-
-/*
-** Load the sqlite3.iSysErrno field if that is an appropriate thing
-** to do based on the SQLite error code in rc.
-*/
-SQLITE_PRIVATE void sqlite3SystemError(sqlite3 *db, int rc){
- if( rc==SQLITE_IOERR_NOMEM ) return;
- rc &= 0xff;
- if( rc==SQLITE_CANTOPEN || rc==SQLITE_IOERR ){
- db->iSysErrno = sqlite3OsGetLastError(db->pVfs);
- }
-}
-
-/*
-** Set the most recent error code and error string for the sqlite
-** handle "db". The error code is set to "err_code".
-**
-** If it is not NULL, string zFormat specifies the format of the
-** error string in the style of the printf functions: The following
-** format characters are allowed:
-**
-** %s Insert a string
-** %z A string that should be freed after use
-** %d Insert an integer
-** %T Insert a token
-** %S Insert the first element of a SrcList
-**
-** zFormat and any string tokens that follow it are assumed to be
-** encoded in UTF-8.
-**
-** To clear the most recent error for sqlite handle "db", sqlite3Error
-** should be called with err_code set to SQLITE_OK and zFormat set
-** to NULL.
-*/
-SQLITE_PRIVATE void sqlite3ErrorWithMsg(sqlite3 *db, int err_code, const char *zFormat, ...){
- assert( db!=0 );
- db->errCode = err_code;
- sqlite3SystemError(db, err_code);
- if( zFormat==0 ){
- sqlite3Error(db, err_code);
- }else if( db->pErr || (db->pErr = sqlite3ValueNew(db))!=0 ){
- char *z;
- va_list ap;
- va_start(ap, zFormat);
- z = sqlite3VMPrintf(db, zFormat, ap);
- va_end(ap);
- sqlite3ValueSetStr(db->pErr, -1, z, SQLITE_UTF8, SQLITE_DYNAMIC);
- }
-}
-
-/*
-** Add an error message to pParse->zErrMsg and increment pParse->nErr.
-** The following formatting characters are allowed:
-**
-** %s Insert a string
-** %z A string that should be freed after use
-** %d Insert an integer
-** %T Insert a token
-** %S Insert the first element of a SrcList
-**
-** This function should be used to report any error that occurs while
-** compiling an SQL statement (i.e. within sqlite3_prepare()). The
-** last thing the sqlite3_prepare() function does is copy the error
-** stored by this function into the database handle using sqlite3Error().
-** Functions sqlite3Error() or sqlite3ErrorWithMsg() should be used
-** during statement execution (sqlite3_step() etc.).
-*/
-SQLITE_PRIVATE void sqlite3ErrorMsg(Parse *pParse, const char *zFormat, ...){
- char *zMsg;
- va_list ap;
- sqlite3 *db = pParse->db;
- va_start(ap, zFormat);
- zMsg = sqlite3VMPrintf(db, zFormat, ap);
- va_end(ap);
- if( db->suppressErr ){
- sqlite3DbFree(db, zMsg);
- }else{
- pParse->nErr++;
- sqlite3DbFree(db, pParse->zErrMsg);
- pParse->zErrMsg = zMsg;
- pParse->rc = SQLITE_ERROR;
- }
-}
-
-/*
-** Convert an SQL-style quoted string into a normal string by removing
-** the quote characters. The conversion is done in-place. If the
-** input does not begin with a quote character, then this routine
-** is a no-op.
-**
-** The input string must be zero-terminated. A new zero-terminator
-** is added to the dequoted string.
-**
-** The return value is -1 if no dequoting occurs or the length of the
-** dequoted string, exclusive of the zero terminator, if dequoting does
-** occur.
-**
-** 2002-Feb-14: This routine is extended to remove MS-Access style
-** brackets from around identifiers. For example: "[a-b-c]" becomes
-** "a-b-c".
-*/
-SQLITE_PRIVATE void sqlite3Dequote(char *z){
- char quote;
- int i, j;
- if( z==0 ) return;
- quote = z[0];
- if( !sqlite3Isquote(quote) ) return;
- if( quote=='[' ) quote = ']';
- for(i=1, j=0;; i++){
- assert( z[i] );
- if( z[i]==quote ){
- if( z[i+1]==quote ){
- z[j++] = quote;
- i++;
- }else{
- break;
- }
- }else{
- z[j++] = z[i];
- }
- }
- z[j] = 0;
-}
-
-/*
-** Generate a Token object from a string
-*/
-SQLITE_PRIVATE void sqlite3TokenInit(Token *p, char *z){
- p->z = z;
- p->n = sqlite3Strlen30(z);
-}
-
-/* Convenient short-hand */
-#define UpperToLower sqlite3UpperToLower
-
-/*
-** Some systems have stricmp(). Others have strcasecmp(). Because
-** there is no consistency, we will define our own.
-**
-** IMPLEMENTATION-OF: R-30243-02494 The sqlite3_stricmp() and
-** sqlite3_strnicmp() APIs allow applications and extensions to compare
-** the contents of two buffers containing UTF-8 strings in a
-** case-independent fashion, using the same definition of "case
-** independence" that SQLite uses internally when comparing identifiers.
-*/
-SQLITE_API int sqlite3_stricmp(const char *zLeft, const char *zRight){
- if( zLeft==0 ){
- return zRight ? -1 : 0;
- }else if( zRight==0 ){
- return 1;
- }
- return sqlite3StrICmp(zLeft, zRight);
-}
-SQLITE_PRIVATE int sqlite3StrICmp(const char *zLeft, const char *zRight){
- unsigned char *a, *b;
- int c;
- a = (unsigned char *)zLeft;
- b = (unsigned char *)zRight;
- for(;;){
- c = (int)UpperToLower[*a] - (int)UpperToLower[*b];
- if( c || *a==0 ) break;
- a++;
- b++;
- }
- return c;
-}
-SQLITE_API int sqlite3_strnicmp(const char *zLeft, const char *zRight, int N){
- register unsigned char *a, *b;
- if( zLeft==0 ){
- return zRight ? -1 : 0;
- }else if( zRight==0 ){
- return 1;
- }
- a = (unsigned char *)zLeft;
- b = (unsigned char *)zRight;
- while( N-- > 0 && *a!=0 && UpperToLower[*a]==UpperToLower[*b]){ a++; b++; }
- return N<0 ? 0 : UpperToLower[*a] - UpperToLower[*b];
-}
-
-/*
-** Compute 10 to the E-th power. Examples: E==1 results in 10.
-** E==2 results in 100. E==50 results in 1.0e50.
-**
-** This routine only works for values of E between 1 and 341.
-*/
-static LONGDOUBLE_TYPE sqlite3Pow10(int E){
-#if defined(_MSC_VER)
- static const LONGDOUBLE_TYPE x[] = {
- 1.0e+001,
- 1.0e+002,
- 1.0e+004,
- 1.0e+008,
- 1.0e+016,
- 1.0e+032,
- 1.0e+064,
- 1.0e+128,
- 1.0e+256
- };
- LONGDOUBLE_TYPE r = 1.0;
- int i;
- assert( E>=0 && E<=307 );
- for(i=0; E!=0; i++, E >>=1){
- if( E & 1 ) r *= x[i];
- }
- return r;
-#else
- LONGDOUBLE_TYPE x = 10.0;
- LONGDOUBLE_TYPE r = 1.0;
- while(1){
- if( E & 1 ) r *= x;
- E >>= 1;
- if( E==0 ) break;
- x *= x;
- }
- return r;
-#endif
-}
-
-/*
-** The string z[] is an text representation of a real number.
-** Convert this string to a double and write it into *pResult.
-**
-** The string z[] is length bytes in length (bytes, not characters) and
-** uses the encoding enc. The string is not necessarily zero-terminated.
-**
-** Return TRUE if the result is a valid real number (or integer) and FALSE
-** if the string is empty or contains extraneous text. Valid numbers
-** are in one of these formats:
-**
-** [+-]digits[E[+-]digits]
-** [+-]digits.[digits][E[+-]digits]
-** [+-].digits[E[+-]digits]
-**
-** Leading and trailing whitespace is ignored for the purpose of determining
-** validity.
-**
-** If some prefix of the input string is a valid number, this routine
-** returns FALSE but it still converts the prefix and writes the result
-** into *pResult.
-*/
-SQLITE_PRIVATE int sqlite3AtoF(const char *z, double *pResult, int length, u8 enc){
-#ifndef SQLITE_OMIT_FLOATING_POINT
- int incr;
- const char *zEnd = z + length;
- /* sign * significand * (10 ^ (esign * exponent)) */
- int sign = 1; /* sign of significand */
- i64 s = 0; /* significand */
- int d = 0; /* adjust exponent for shifting decimal point */
- int esign = 1; /* sign of exponent */
- int e = 0; /* exponent */
- int eValid = 1; /* True exponent is either not used or is well-formed */
- double result;
- int nDigits = 0;
- int nonNum = 0; /* True if input contains UTF16 with high byte non-zero */
-
- assert( enc==SQLITE_UTF8 || enc==SQLITE_UTF16LE || enc==SQLITE_UTF16BE );
- *pResult = 0.0; /* Default return value, in case of an error */
-
- if( enc==SQLITE_UTF8 ){
- incr = 1;
- }else{
- int i;
- incr = 2;
- assert( SQLITE_UTF16LE==2 && SQLITE_UTF16BE==3 );
- for(i=3-enc; i=zEnd ) return 0;
-
- /* get sign of significand */
- if( *z=='-' ){
- sign = -1;
- z+=incr;
- }else if( *z=='+' ){
- z+=incr;
- }
-
- /* copy max significant digits to significand */
- while( z=zEnd ) goto do_atof_calc;
-
- /* if decimal point is present */
- if( *z=='.' ){
- z+=incr;
- /* copy digits from after decimal to significand
- ** (decrease exponent by d to shift decimal right) */
- while( z=zEnd ) goto do_atof_calc;
-
- /* if exponent is present */
- if( *z=='e' || *z=='E' ){
- z+=incr;
- eValid = 0;
-
- /* This branch is needed to avoid a (harmless) buffer overread. The
- ** special comment alerts the mutation tester that the correct answer
- ** is obtained even if the branch is omitted */
- if( z>=zEnd ) goto do_atof_calc; /*PREVENTS-HARMLESS-OVERREAD*/
-
- /* get sign of exponent */
- if( *z=='-' ){
- esign = -1;
- z+=incr;
- }else if( *z=='+' ){
- z+=incr;
- }
- /* copy digits to exponent */
- while( z0 ){ /*OPTIMIZATION-IF-TRUE*/
- if( esign>0 ){
- if( s>=(LARGEST_INT64/10) ) break; /*OPTIMIZATION-IF-FALSE*/
- s *= 10;
- }else{
- if( s%10!=0 ) break; /*OPTIMIZATION-IF-FALSE*/
- s /= 10;
- }
- e--;
- }
-
- /* adjust the sign of significand */
- s = sign<0 ? -s : s;
-
- if( e==0 ){ /*OPTIMIZATION-IF-TRUE*/
- result = (double)s;
- }else{
- /* attempt to handle extremely small/large numbers better */
- if( e>307 ){ /*OPTIMIZATION-IF-TRUE*/
- if( e<342 ){ /*OPTIMIZATION-IF-TRUE*/
- LONGDOUBLE_TYPE scale = sqlite3Pow10(e-308);
- if( esign<0 ){
- result = s / scale;
- result /= 1.0e+308;
- }else{
- result = s * scale;
- result *= 1.0e+308;
- }
- }else{ assert( e>=342 );
- if( esign<0 ){
- result = 0.0*s;
- }else{
-#ifdef INFINITY
- result = INFINITY*s;
-#else
- result = 1e308*1e308*s; /* Infinity */
-#endif
- }
- }
- }else{
- LONGDOUBLE_TYPE scale = sqlite3Pow10(e);
- if( esign<0 ){
- result = s / scale;
- }else{
- result = s * scale;
- }
- }
- }
- }
-
- /* store the result */
- *pResult = result;
-
- /* return true if number and no extra non-whitespace chracters after */
- return z==zEnd && nDigits>0 && eValid && nonNum==0;
-#else
- return !sqlite3Atoi64(z, pResult, length, enc);
-#endif /* SQLITE_OMIT_FLOATING_POINT */
-}
-
-/*
-** Compare the 19-character string zNum against the text representation
-** value 2^63: 9223372036854775808. Return negative, zero, or positive
-** if zNum is less than, equal to, or greater than the string.
-** Note that zNum must contain exactly 19 characters.
-**
-** Unlike memcmp() this routine is guaranteed to return the difference
-** in the values of the last digit if the only difference is in the
-** last digit. So, for example,
-**
-** compare2pow63("9223372036854775800", 1)
-**
-** will return -8.
-*/
-static int compare2pow63(const char *zNum, int incr){
- int c = 0;
- int i;
- /* 012345678901234567 */
- const char *pow63 = "922337203685477580";
- for(i=0; c==0 && i<18; i++){
- c = (zNum[i*incr]-pow63[i])*10;
- }
- if( c==0 ){
- c = zNum[18*incr] - '8';
- testcase( c==(-1) );
- testcase( c==0 );
- testcase( c==(+1) );
- }
- return c;
-}
-
-/*
-** Convert zNum to a 64-bit signed integer. zNum must be decimal. This
-** routine does *not* accept hexadecimal notation.
-**
-** Returns:
-**
-** 0 Successful transformation. Fits in a 64-bit signed integer.
-** 1 Excess non-space text after the integer value
-** 2 Integer too large for a 64-bit signed integer or is malformed
-** 3 Special case of 9223372036854775808
-**
-** length is the number of bytes in the string (bytes, not characters).
-** The string is not necessarily zero-terminated. The encoding is
-** given by enc.
-*/
-SQLITE_PRIVATE int sqlite3Atoi64(const char *zNum, i64 *pNum, int length, u8 enc){
- int incr;
- u64 u = 0;
- int neg = 0; /* assume positive */
- int i;
- int c = 0;
- int nonNum = 0; /* True if input contains UTF16 with high byte non-zero */
- int rc; /* Baseline return code */
- const char *zStart;
- const char *zEnd = zNum + length;
- assert( enc==SQLITE_UTF8 || enc==SQLITE_UTF16LE || enc==SQLITE_UTF16BE );
- if( enc==SQLITE_UTF8 ){
- incr = 1;
- }else{
- incr = 2;
- assert( SQLITE_UTF16LE==2 && SQLITE_UTF16BE==3 );
- for(i=3-enc; i='0' && c<='9'; i+=incr){
- u = u*10 + c - '0';
- }
- testcase( i==18*incr );
- testcase( i==19*incr );
- testcase( i==20*incr );
- if( u>LARGEST_INT64 ){
- /* This test and assignment is needed only to suppress UB warnings
- ** from clang and -fsanitize=undefined. This test and assignment make
- ** the code a little larger and slower, and no harm comes from omitting
- ** them, but we must appaise the undefined-behavior pharisees. */
- *pNum = neg ? SMALLEST_INT64 : LARGEST_INT64;
- }else if( neg ){
- *pNum = -(i64)u;
- }else{
- *pNum = (i64)u;
- }
- rc = 0;
- if( (i==0 && zStart==zNum) /* No digits */
- || nonNum /* UTF16 with high-order bytes non-zero */
- ){
- rc = 1;
- }else if( &zNum[i]19*incr ? 1 : compare2pow63(zNum, incr);
- if( c<0 ){
- /* zNum is less than 9223372036854775808 so it fits */
- assert( u<=LARGEST_INT64 );
- return rc;
- }else{
- *pNum = neg ? SMALLEST_INT64 : LARGEST_INT64;
- if( c>0 ){
- /* zNum is greater than 9223372036854775808 so it overflows */
- return 2;
- }else{
- /* zNum is exactly 9223372036854775808. Fits if negative. The
- ** special case 2 overflow if positive */
- assert( u-1==LARGEST_INT64 );
- return neg ? rc : 3;
- }
- }
- }
-}
-
-/*
-** Transform a UTF-8 integer literal, in either decimal or hexadecimal,
-** into a 64-bit signed integer. This routine accepts hexadecimal literals,
-** whereas sqlite3Atoi64() does not.
-**
-** Returns:
-**
-** 0 Successful transformation. Fits in a 64-bit signed integer.
-** 1 Excess text after the integer value
-** 2 Integer too large for a 64-bit signed integer or is malformed
-** 3 Special case of 9223372036854775808
-*/
-SQLITE_PRIVATE int sqlite3DecOrHexToI64(const char *z, i64 *pOut){
-#ifndef SQLITE_OMIT_HEX_INTEGER
- if( z[0]=='0'
- && (z[1]=='x' || z[1]=='X')
- ){
- u64 u = 0;
- int i, k;
- for(i=2; z[i]=='0'; i++){}
- for(k=i; sqlite3Isxdigit(z[k]); k++){
- u = u*16 + sqlite3HexToInt(z[k]);
- }
- memcpy(pOut, &u, 8);
- return (z[k]==0 && k-i<=16) ? 0 : 2;
- }else
-#endif /* SQLITE_OMIT_HEX_INTEGER */
- {
- return sqlite3Atoi64(z, pOut, sqlite3Strlen30(z), SQLITE_UTF8);
- }
-}
-
-/*
-** If zNum represents an integer that will fit in 32-bits, then set
-** *pValue to that integer and return true. Otherwise return false.
-**
-** This routine accepts both decimal and hexadecimal notation for integers.
-**
-** Any non-numeric characters that following zNum are ignored.
-** This is different from sqlite3Atoi64() which requires the
-** input number to be zero-terminated.
-*/
-SQLITE_PRIVATE int sqlite3GetInt32(const char *zNum, int *pValue){
- sqlite_int64 v = 0;
- int i, c;
- int neg = 0;
- if( zNum[0]=='-' ){
- neg = 1;
- zNum++;
- }else if( zNum[0]=='+' ){
- zNum++;
- }
-#ifndef SQLITE_OMIT_HEX_INTEGER
- else if( zNum[0]=='0'
- && (zNum[1]=='x' || zNum[1]=='X')
- && sqlite3Isxdigit(zNum[2])
- ){
- u32 u = 0;
- zNum += 2;
- while( zNum[0]=='0' ) zNum++;
- for(i=0; sqlite3Isxdigit(zNum[i]) && i<8; i++){
- u = u*16 + sqlite3HexToInt(zNum[i]);
- }
- if( (u&0x80000000)==0 && sqlite3Isxdigit(zNum[i])==0 ){
- memcpy(pValue, &u, 4);
- return 1;
- }else{
- return 0;
- }
- }
-#endif
- if( !sqlite3Isdigit(zNum[0]) ) return 0;
- while( zNum[0]=='0' ) zNum++;
- for(i=0; i<11 && (c = zNum[i] - '0')>=0 && c<=9; i++){
- v = v*10 + c;
- }
-
- /* The longest decimal representation of a 32 bit integer is 10 digits:
- **
- ** 1234567890
- ** 2^31 -> 2147483648
- */
- testcase( i==10 );
- if( i>10 ){
- return 0;
- }
- testcase( v-neg==2147483647 );
- if( v-neg>2147483647 ){
- return 0;
- }
- if( neg ){
- v = -v;
- }
- *pValue = (int)v;
- return 1;
-}
-
-/*
-** Return a 32-bit integer value extracted from a string. If the
-** string is not an integer, just return 0.
-*/
-SQLITE_PRIVATE int sqlite3Atoi(const char *z){
- int x = 0;
- if( z ) sqlite3GetInt32(z, &x);
- return x;
-}
-
-/*
-** The variable-length integer encoding is as follows:
-**
-** KEY:
-** A = 0xxxxxxx 7 bits of data and one flag bit
-** B = 1xxxxxxx 7 bits of data and one flag bit
-** C = xxxxxxxx 8 bits of data
-**
-** 7 bits - A
-** 14 bits - BA
-** 21 bits - BBA
-** 28 bits - BBBA
-** 35 bits - BBBBA
-** 42 bits - BBBBBA
-** 49 bits - BBBBBBA
-** 56 bits - BBBBBBBA
-** 64 bits - BBBBBBBBC
-*/
-
-/*
-** Write a 64-bit variable-length integer to memory starting at p[0].
-** The length of data write will be between 1 and 9 bytes. The number
-** of bytes written is returned.
-**
-** A variable-length integer consists of the lower 7 bits of each byte
-** for all bytes that have the 8th bit set and one byte with the 8th
-** bit clear. Except, if we get to the 9th byte, it stores the full
-** 8 bits and is the last byte.
-*/
-static int SQLITE_NOINLINE putVarint64(unsigned char *p, u64 v){
- int i, j, n;
- u8 buf[10];
- if( v & (((u64)0xff000000)<<32) ){
- p[8] = (u8)v;
- v >>= 8;
- for(i=7; i>=0; i--){
- p[i] = (u8)((v & 0x7f) | 0x80);
- v >>= 7;
- }
- return 9;
- }
- n = 0;
- do{
- buf[n++] = (u8)((v & 0x7f) | 0x80);
- v >>= 7;
- }while( v!=0 );
- buf[0] &= 0x7f;
- assert( n<=9 );
- for(i=0, j=n-1; j>=0; j--, i++){
- p[i] = buf[j];
- }
- return n;
-}
-SQLITE_PRIVATE int sqlite3PutVarint(unsigned char *p, u64 v){
- if( v<=0x7f ){
- p[0] = v&0x7f;
- return 1;
- }
- if( v<=0x3fff ){
- p[0] = ((v>>7)&0x7f)|0x80;
- p[1] = v&0x7f;
- return 2;
- }
- return putVarint64(p,v);
-}
-
-/*
-** Bitmasks used by sqlite3GetVarint(). These precomputed constants
-** are defined here rather than simply putting the constant expressions
-** inline in order to work around bugs in the RVT compiler.
-**
-** SLOT_2_0 A mask for (0x7f<<14) | 0x7f
-**
-** SLOT_4_2_0 A mask for (0x7f<<28) | SLOT_2_0
-*/
-#define SLOT_2_0 0x001fc07f
-#define SLOT_4_2_0 0xf01fc07f
-
-
-/*
-** Read a 64-bit variable-length integer from memory starting at p[0].
-** Return the number of bytes read. The value is stored in *v.
-*/
-SQLITE_PRIVATE u8 sqlite3GetVarint(const unsigned char *p, u64 *v){
- u32 a,b,s;
-
- a = *p;
- /* a: p0 (unmasked) */
- if (!(a&0x80))
- {
- *v = a;
- return 1;
- }
-
- p++;
- b = *p;
- /* b: p1 (unmasked) */
- if (!(b&0x80))
- {
- a &= 0x7f;
- a = a<<7;
- a |= b;
- *v = a;
- return 2;
- }
-
- /* Verify that constants are precomputed correctly */
- assert( SLOT_2_0 == ((0x7f<<14) | (0x7f)) );
- assert( SLOT_4_2_0 == ((0xfU<<28) | (0x7f<<14) | (0x7f)) );
-
- p++;
- a = a<<14;
- a |= *p;
- /* a: p0<<14 | p2 (unmasked) */
- if (!(a&0x80))
- {
- a &= SLOT_2_0;
- b &= 0x7f;
- b = b<<7;
- a |= b;
- *v = a;
- return 3;
- }
-
- /* CSE1 from below */
- a &= SLOT_2_0;
- p++;
- b = b<<14;
- b |= *p;
- /* b: p1<<14 | p3 (unmasked) */
- if (!(b&0x80))
- {
- b &= SLOT_2_0;
- /* moved CSE1 up */
- /* a &= (0x7f<<14)|(0x7f); */
- a = a<<7;
- a |= b;
- *v = a;
- return 4;
- }
-
- /* a: p0<<14 | p2 (masked) */
- /* b: p1<<14 | p3 (unmasked) */
- /* 1:save off p0<<21 | p1<<14 | p2<<7 | p3 (masked) */
- /* moved CSE1 up */
- /* a &= (0x7f<<14)|(0x7f); */
- b &= SLOT_2_0;
- s = a;
- /* s: p0<<14 | p2 (masked) */
-
- p++;
- a = a<<14;
- a |= *p;
- /* a: p0<<28 | p2<<14 | p4 (unmasked) */
- if (!(a&0x80))
- {
- /* we can skip these cause they were (effectively) done above
- ** while calculating s */
- /* a &= (0x7f<<28)|(0x7f<<14)|(0x7f); */
- /* b &= (0x7f<<14)|(0x7f); */
- b = b<<7;
- a |= b;
- s = s>>18;
- *v = ((u64)s)<<32 | a;
- return 5;
- }
-
- /* 2:save off p0<<21 | p1<<14 | p2<<7 | p3 (masked) */
- s = s<<7;
- s |= b;
- /* s: p0<<21 | p1<<14 | p2<<7 | p3 (masked) */
-
- p++;
- b = b<<14;
- b |= *p;
- /* b: p1<<28 | p3<<14 | p5 (unmasked) */
- if (!(b&0x80))
- {
- /* we can skip this cause it was (effectively) done above in calc'ing s */
- /* b &= (0x7f<<28)|(0x7f<<14)|(0x7f); */
- a &= SLOT_2_0;
- a = a<<7;
- a |= b;
- s = s>>18;
- *v = ((u64)s)<<32 | a;
- return 6;
- }
-
- p++;
- a = a<<14;
- a |= *p;
- /* a: p2<<28 | p4<<14 | p6 (unmasked) */
- if (!(a&0x80))
- {
- a &= SLOT_4_2_0;
- b &= SLOT_2_0;
- b = b<<7;
- a |= b;
- s = s>>11;
- *v = ((u64)s)<<32 | a;
- return 7;
- }
-
- /* CSE2 from below */
- a &= SLOT_2_0;
- p++;
- b = b<<14;
- b |= *p;
- /* b: p3<<28 | p5<<14 | p7 (unmasked) */
- if (!(b&0x80))
- {
- b &= SLOT_4_2_0;
- /* moved CSE2 up */
- /* a &= (0x7f<<14)|(0x7f); */
- a = a<<7;
- a |= b;
- s = s>>4;
- *v = ((u64)s)<<32 | a;
- return 8;
- }
-
- p++;
- a = a<<15;
- a |= *p;
- /* a: p4<<29 | p6<<15 | p8 (unmasked) */
-
- /* moved CSE2 up */
- /* a &= (0x7f<<29)|(0x7f<<15)|(0xff); */
- b &= SLOT_2_0;
- b = b<<8;
- a |= b;
-
- s = s<<4;
- b = p[-4];
- b &= 0x7f;
- b = b>>3;
- s |= b;
-
- *v = ((u64)s)<<32 | a;
-
- return 9;
-}
-
-/*
-** Read a 32-bit variable-length integer from memory starting at p[0].
-** Return the number of bytes read. The value is stored in *v.
-**
-** If the varint stored in p[0] is larger than can fit in a 32-bit unsigned
-** integer, then set *v to 0xffffffff.
-**
-** A MACRO version, getVarint32, is provided which inlines the
-** single-byte case. All code should use the MACRO version as
-** this function assumes the single-byte case has already been handled.
-*/
-SQLITE_PRIVATE u8 sqlite3GetVarint32(const unsigned char *p, u32 *v){
- u32 a,b;
-
- /* The 1-byte case. Overwhelmingly the most common. Handled inline
- ** by the getVarin32() macro */
- a = *p;
- /* a: p0 (unmasked) */
-#ifndef getVarint32
- if (!(a&0x80))
- {
- /* Values between 0 and 127 */
- *v = a;
- return 1;
- }
-#endif
-
- /* The 2-byte case */
- p++;
- b = *p;
- /* b: p1 (unmasked) */
- if (!(b&0x80))
- {
- /* Values between 128 and 16383 */
- a &= 0x7f;
- a = a<<7;
- *v = a | b;
- return 2;
- }
-
- /* The 3-byte case */
- p++;
- a = a<<14;
- a |= *p;
- /* a: p0<<14 | p2 (unmasked) */
- if (!(a&0x80))
- {
- /* Values between 16384 and 2097151 */
- a &= (0x7f<<14)|(0x7f);
- b &= 0x7f;
- b = b<<7;
- *v = a | b;
- return 3;
- }
-
- /* A 32-bit varint is used to store size information in btrees.
- ** Objects are rarely larger than 2MiB limit of a 3-byte varint.
- ** A 3-byte varint is sufficient, for example, to record the size
- ** of a 1048569-byte BLOB or string.
- **
- ** We only unroll the first 1-, 2-, and 3- byte cases. The very
- ** rare larger cases can be handled by the slower 64-bit varint
- ** routine.
- */
-#if 1
- {
- u64 v64;
- u8 n;
-
- p -= 2;
- n = sqlite3GetVarint(p, &v64);
- assert( n>3 && n<=9 );
- if( (v64 & SQLITE_MAX_U32)!=v64 ){
- *v = 0xffffffff;
- }else{
- *v = (u32)v64;
- }
- return n;
- }
-
-#else
- /* For following code (kept for historical record only) shows an
- ** unrolling for the 3- and 4-byte varint cases. This code is
- ** slightly faster, but it is also larger and much harder to test.
- */
- p++;
- b = b<<14;
- b |= *p;
- /* b: p1<<14 | p3 (unmasked) */
- if (!(b&0x80))
- {
- /* Values between 2097152 and 268435455 */
- b &= (0x7f<<14)|(0x7f);
- a &= (0x7f<<14)|(0x7f);
- a = a<<7;
- *v = a | b;
- return 4;
- }
-
- p++;
- a = a<<14;
- a |= *p;
- /* a: p0<<28 | p2<<14 | p4 (unmasked) */
- if (!(a&0x80))
- {
- /* Values between 268435456 and 34359738367 */
- a &= SLOT_4_2_0;
- b &= SLOT_4_2_0;
- b = b<<7;
- *v = a | b;
- return 5;
- }
-
- /* We can only reach this point when reading a corrupt database
- ** file. In that case we are not in any hurry. Use the (relatively
- ** slow) general-purpose sqlite3GetVarint() routine to extract the
- ** value. */
- {
- u64 v64;
- u8 n;
-
- p -= 4;
- n = sqlite3GetVarint(p, &v64);
- assert( n>5 && n<=9 );
- *v = (u32)v64;
- return n;
- }
-#endif
-}
-
-/*
-** Return the number of bytes that will be needed to store the given
-** 64-bit integer.
-*/
-SQLITE_PRIVATE int sqlite3VarintLen(u64 v){
- int i;
- for(i=1; (v >>= 7)!=0; i++){ assert( i<10 ); }
- return i;
-}
-
-
-/*
-** Read or write a four-byte big-endian integer value.
-*/
-SQLITE_PRIVATE u32 sqlite3Get4byte(const u8 *p){
-#if SQLITE_BYTEORDER==4321
- u32 x;
- memcpy(&x,p,4);
- return x;
-#elif SQLITE_BYTEORDER==1234 && GCC_VERSION>=4003000
- u32 x;
- memcpy(&x,p,4);
- return __builtin_bswap32(x);
-#elif SQLITE_BYTEORDER==1234 && MSVC_VERSION>=1300
- u32 x;
- memcpy(&x,p,4);
- return _byteswap_ulong(x);
-#else
- testcase( p[0]&0x80 );
- return ((unsigned)p[0]<<24) | (p[1]<<16) | (p[2]<<8) | p[3];
-#endif
-}
-SQLITE_PRIVATE void sqlite3Put4byte(unsigned char *p, u32 v){
-#if SQLITE_BYTEORDER==4321
- memcpy(p,&v,4);
-#elif SQLITE_BYTEORDER==1234 && GCC_VERSION>=4003000
- u32 x = __builtin_bswap32(v);
- memcpy(p,&x,4);
-#elif SQLITE_BYTEORDER==1234 && MSVC_VERSION>=1300
- u32 x = _byteswap_ulong(v);
- memcpy(p,&x,4);
-#else
- p[0] = (u8)(v>>24);
- p[1] = (u8)(v>>16);
- p[2] = (u8)(v>>8);
- p[3] = (u8)v;
-#endif
-}
-
-
-
-/*
-** Translate a single byte of Hex into an integer.
-** This routine only works if h really is a valid hexadecimal
-** character: 0..9a..fA..F
-*/
-SQLITE_PRIVATE u8 sqlite3HexToInt(int h){
- assert( (h>='0' && h<='9') || (h>='a' && h<='f') || (h>='A' && h<='F') );
-#ifdef SQLITE_ASCII
- h += 9*(1&(h>>6));
-#endif
-#ifdef SQLITE_EBCDIC
- h += 9*(1&~(h>>4));
-#endif
- return (u8)(h & 0xf);
-}
-
-#if !defined(SQLITE_OMIT_BLOB_LITERAL) || defined(SQLITE_HAS_CODEC)
-/*
-** Convert a BLOB literal of the form "x'hhhhhh'" into its binary
-** value. Return a pointer to its binary value. Space to hold the
-** binary value has been obtained from malloc and must be freed by
-** the calling routine.
-*/
-SQLITE_PRIVATE void *sqlite3HexToBlob(sqlite3 *db, const char *z, int n){
- char *zBlob;
- int i;
-
- zBlob = (char *)sqlite3DbMallocRawNN(db, n/2 + 1);
- n--;
- if( zBlob ){
- for(i=0; imagic;
- if( magic!=SQLITE_MAGIC_OPEN ){
- if( sqlite3SafetyCheckSickOrOk(db) ){
- testcase( sqlite3GlobalConfig.xLog!=0 );
- logBadConnection("unopened");
- }
- return 0;
- }else{
- return 1;
- }
-}
-SQLITE_PRIVATE int sqlite3SafetyCheckSickOrOk(sqlite3 *db){
- u32 magic;
- magic = db->magic;
- if( magic!=SQLITE_MAGIC_SICK &&
- magic!=SQLITE_MAGIC_OPEN &&
- magic!=SQLITE_MAGIC_BUSY ){
- testcase( sqlite3GlobalConfig.xLog!=0 );
- logBadConnection("invalid");
- return 0;
- }else{
- return 1;
- }
-}
-
-/*
-** Attempt to add, substract, or multiply the 64-bit signed value iB against
-** the other 64-bit signed integer at *pA and store the result in *pA.
-** Return 0 on success. Or if the operation would have resulted in an
-** overflow, leave *pA unchanged and return 1.
-*/
-SQLITE_PRIVATE int sqlite3AddInt64(i64 *pA, i64 iB){
-#if GCC_VERSION>=5004000 && !defined(__INTEL_COMPILER)
- return __builtin_add_overflow(*pA, iB, pA);
-#else
- i64 iA = *pA;
- testcase( iA==0 ); testcase( iA==1 );
- testcase( iB==-1 ); testcase( iB==0 );
- if( iB>=0 ){
- testcase( iA>0 && LARGEST_INT64 - iA == iB );
- testcase( iA>0 && LARGEST_INT64 - iA == iB - 1 );
- if( iA>0 && LARGEST_INT64 - iA < iB ) return 1;
- }else{
- testcase( iA<0 && -(iA + LARGEST_INT64) == iB + 1 );
- testcase( iA<0 && -(iA + LARGEST_INT64) == iB + 2 );
- if( iA<0 && -(iA + LARGEST_INT64) > iB + 1 ) return 1;
- }
- *pA += iB;
- return 0;
-#endif
-}
-SQLITE_PRIVATE int sqlite3SubInt64(i64 *pA, i64 iB){
-#if GCC_VERSION>=5004000 && !defined(__INTEL_COMPILER)
- return __builtin_sub_overflow(*pA, iB, pA);
-#else
- testcase( iB==SMALLEST_INT64+1 );
- if( iB==SMALLEST_INT64 ){
- testcase( (*pA)==(-1) ); testcase( (*pA)==0 );
- if( (*pA)>=0 ) return 1;
- *pA -= iB;
- return 0;
- }else{
- return sqlite3AddInt64(pA, -iB);
- }
-#endif
-}
-SQLITE_PRIVATE int sqlite3MulInt64(i64 *pA, i64 iB){
-#if GCC_VERSION>=5004000 && !defined(__INTEL_COMPILER)
- return __builtin_mul_overflow(*pA, iB, pA);
-#else
- i64 iA = *pA;
- if( iB>0 ){
- if( iA>LARGEST_INT64/iB ) return 1;
- if( iA0 ){
- if( iBLARGEST_INT64/-iB ) return 1;
- }
- }
- *pA = iA*iB;
- return 0;
-#endif
-}
-
-/*
-** Compute the absolute value of a 32-bit signed integer, of possible. Or
-** if the integer has a value of -2147483648, return +2147483647
-*/
-SQLITE_PRIVATE int sqlite3AbsInt32(int x){
- if( x>=0 ) return x;
- if( x==(int)0x80000000 ) return 0x7fffffff;
- return -x;
-}
-
-#ifdef SQLITE_ENABLE_8_3_NAMES
-/*
-** If SQLITE_ENABLE_8_3_NAMES is set at compile-time and if the database
-** filename in zBaseFilename is a URI with the "8_3_names=1" parameter and
-** if filename in z[] has a suffix (a.k.a. "extension") that is longer than
-** three characters, then shorten the suffix on z[] to be the last three
-** characters of the original suffix.
-**
-** If SQLITE_ENABLE_8_3_NAMES is set to 2 at compile-time, then always
-** do the suffix shortening regardless of URI parameter.
-**
-** Examples:
-**
-** test.db-journal => test.nal
-** test.db-wal => test.wal
-** test.db-shm => test.shm
-** test.db-mj7f3319fa => test.9fa
-*/
-SQLITE_PRIVATE void sqlite3FileSuffix3(const char *zBaseFilename, char *z){
-#if SQLITE_ENABLE_8_3_NAMES<2
- if( sqlite3_uri_boolean(zBaseFilename, "8_3_names", 0) )
-#endif
- {
- int i, sz;
- sz = sqlite3Strlen30(z);
- for(i=sz-1; i>0 && z[i]!='/' && z[i]!='.'; i--){}
- if( z[i]=='.' && ALWAYS(sz>i+4) ) memmove(&z[i+1], &z[sz-3], 4);
- }
-}
-#endif
-
-/*
-** Find (an approximate) sum of two LogEst values. This computation is
-** not a simple "+" operator because LogEst is stored as a logarithmic
-** value.
-**
-*/
-SQLITE_PRIVATE LogEst sqlite3LogEstAdd(LogEst a, LogEst b){
- static const unsigned char x[] = {
- 10, 10, /* 0,1 */
- 9, 9, /* 2,3 */
- 8, 8, /* 4,5 */
- 7, 7, 7, /* 6,7,8 */
- 6, 6, 6, /* 9,10,11 */
- 5, 5, 5, /* 12-14 */
- 4, 4, 4, 4, /* 15-18 */
- 3, 3, 3, 3, 3, 3, /* 19-24 */
- 2, 2, 2, 2, 2, 2, 2, /* 25-31 */
- };
- if( a>=b ){
- if( a>b+49 ) return a;
- if( a>b+31 ) return a+1;
- return a+x[a-b];
- }else{
- if( b>a+49 ) return b;
- if( b>a+31 ) return b+1;
- return b+x[b-a];
- }
-}
-
-/*
-** Convert an integer into a LogEst. In other words, compute an
-** approximation for 10*log2(x).
-*/
-SQLITE_PRIVATE LogEst sqlite3LogEst(u64 x){
- static LogEst a[] = { 0, 2, 3, 5, 6, 7, 8, 9 };
- LogEst y = 40;
- if( x<8 ){
- if( x<2 ) return 0;
- while( x<8 ){ y -= 10; x <<= 1; }
- }else{
-#if GCC_VERSION>=5004000
- int i = 60 - __builtin_clzll(x);
- y += i*10;
- x >>= i;
-#else
- while( x>255 ){ y += 40; x >>= 4; } /*OPTIMIZATION-IF-TRUE*/
- while( x>15 ){ y += 10; x >>= 1; }
-#endif
- }
- return a[x&7] + y - 10;
-}
-
-#ifndef SQLITE_OMIT_VIRTUALTABLE
-/*
-** Convert a double into a LogEst
-** In other words, compute an approximation for 10*log2(x).
-*/
-SQLITE_PRIVATE LogEst sqlite3LogEstFromDouble(double x){
- u64 a;
- LogEst e;
- assert( sizeof(x)==8 && sizeof(a)==8 );
- if( x<=1 ) return 0;
- if( x<=2000000000 ) return sqlite3LogEst((u64)x);
- memcpy(&a, &x, 8);
- e = (a>>52) - 1022;
- return e*10;
-}
-#endif /* SQLITE_OMIT_VIRTUALTABLE */
-
-#if defined(SQLITE_ENABLE_STMT_SCANSTATUS) || \
- defined(SQLITE_ENABLE_STAT3_OR_STAT4) || \
- defined(SQLITE_EXPLAIN_ESTIMATED_ROWS)
-/*
-** Convert a LogEst into an integer.
-**
-** Note that this routine is only used when one or more of various
-** non-standard compile-time options is enabled.
-*/
-SQLITE_PRIVATE u64 sqlite3LogEstToInt(LogEst x){
- u64 n;
- n = x%10;
- x /= 10;
- if( n>=5 ) n -= 2;
- else if( n>=1 ) n -= 1;
-#if defined(SQLITE_ENABLE_STMT_SCANSTATUS) || \
- defined(SQLITE_EXPLAIN_ESTIMATED_ROWS)
- if( x>60 ) return (u64)LARGEST_INT64;
-#else
- /* If only SQLITE_ENABLE_STAT3_OR_STAT4 is on, then the largest input
- ** possible to this routine is 310, resulting in a maximum x of 31 */
- assert( x<=60 );
-#endif
- return x>=3 ? (n+8)<<(x-3) : (n+8)>>(3-x);
-}
-#endif /* defined SCANSTAT or STAT4 or ESTIMATED_ROWS */
-
-/*
-** Add a new name/number pair to a VList. This might require that the
-** VList object be reallocated, so return the new VList. If an OOM
-** error occurs, the original VList returned and the
-** db->mallocFailed flag is set.
-**
-** A VList is really just an array of integers. To destroy a VList,
-** simply pass it to sqlite3DbFree().
-**
-** The first integer is the number of integers allocated for the whole
-** VList. The second integer is the number of integers actually used.
-** Each name/number pair is encoded by subsequent groups of 3 or more
-** integers.
-**
-** Each name/number pair starts with two integers which are the numeric
-** value for the pair and the size of the name/number pair, respectively.
-** The text name overlays one or more following integers. The text name
-** is always zero-terminated.
-**
-** Conceptually:
-**
-** struct VList {
-** int nAlloc; // Number of allocated slots
-** int nUsed; // Number of used slots
-** struct VListEntry {
-** int iValue; // Value for this entry
-** int nSlot; // Slots used by this entry
-** // ... variable name goes here
-** } a[0];
-** }
-**
-** During code generation, pointers to the variable names within the
-** VList are taken. When that happens, nAlloc is set to zero as an
-** indication that the VList may never again be enlarged, since the
-** accompanying realloc() would invalidate the pointers.
-*/
-SQLITE_PRIVATE VList *sqlite3VListAdd(
- sqlite3 *db, /* The database connection used for malloc() */
- VList *pIn, /* The input VList. Might be NULL */
- const char *zName, /* Name of symbol to add */
- int nName, /* Bytes of text in zName */
- int iVal /* Value to associate with zName */
-){
- int nInt; /* number of sizeof(int) objects needed for zName */
- char *z; /* Pointer to where zName will be stored */
- int i; /* Index in pIn[] where zName is stored */
-
- nInt = nName/4 + 3;
- assert( pIn==0 || pIn[0]>=3 ); /* Verify ok to add new elements */
- if( pIn==0 || pIn[1]+nInt > pIn[0] ){
- /* Enlarge the allocation */
- int nAlloc = (pIn ? pIn[0]*2 : 10) + nInt;
- VList *pOut = sqlite3DbRealloc(db, pIn, nAlloc*sizeof(int));
- if( pOut==0 ) return pIn;
- if( pIn==0 ) pOut[1] = 2;
- pIn = pOut;
- pIn[0] = nAlloc;
- }
- i = pIn[1];
- pIn[i] = iVal;
- pIn[i+1] = nInt;
- z = (char*)&pIn[i+2];
- pIn[1] = i+nInt;
- assert( pIn[1]<=pIn[0] );
- memcpy(z, zName, nName);
- z[nName] = 0;
- return pIn;
-}
-
-/*
-** Return a pointer to the name of a variable in the given VList that
-** has the value iVal. Or return a NULL if there is no such variable in
-** the list
-*/
-SQLITE_PRIVATE const char *sqlite3VListNumToName(VList *pIn, int iVal){
- int i, mx;
- if( pIn==0 ) return 0;
- mx = pIn[1];
- i = 2;
- do{
- if( pIn[i]==iVal ) return (char*)&pIn[i+2];
- i += pIn[i+1];
- }while( i */
-
-/* Turn bulk memory into a hash table object by initializing the
-** fields of the Hash structure.
-**
-** "pNew" is a pointer to the hash table that is to be initialized.
-*/
-SQLITE_PRIVATE void sqlite3HashInit(Hash *pNew){
- assert( pNew!=0 );
- pNew->first = 0;
- pNew->count = 0;
- pNew->htsize = 0;
- pNew->ht = 0;
-}
-
-/* Remove all entries from a hash table. Reclaim all memory.
-** Call this routine to delete a hash table or to reset a hash table
-** to the empty state.
-*/
-SQLITE_PRIVATE void sqlite3HashClear(Hash *pH){
- HashElem *elem; /* For looping over all elements of the table */
-
- assert( pH!=0 );
- elem = pH->first;
- pH->first = 0;
- sqlite3_free(pH->ht);
- pH->ht = 0;
- pH->htsize = 0;
- while( elem ){
- HashElem *next_elem = elem->next;
- sqlite3_free(elem);
- elem = next_elem;
- }
- pH->count = 0;
-}
-
-/*
-** The hashing function.
-*/
-static unsigned int strHash(const char *z){
- unsigned int h = 0;
- unsigned char c;
- while( (c = (unsigned char)*z++)!=0 ){ /*OPTIMIZATION-IF-TRUE*/
- /* Knuth multiplicative hashing. (Sorting & Searching, p. 510).
- ** 0x9e3779b1 is 2654435761 which is the closest prime number to
- ** (2**32)*golden_ratio, where golden_ratio = (sqrt(5) - 1)/2. */
- h += sqlite3UpperToLower[c];
- h *= 0x9e3779b1;
- }
- return h;
-}
-
-
-/* Link pNew element into the hash table pH. If pEntry!=0 then also
-** insert pNew into the pEntry hash bucket.
-*/
-static void insertElement(
- Hash *pH, /* The complete hash table */
- struct _ht *pEntry, /* The entry into which pNew is inserted */
- HashElem *pNew /* The element to be inserted */
-){
- HashElem *pHead; /* First element already in pEntry */
- if( pEntry ){
- pHead = pEntry->count ? pEntry->chain : 0;
- pEntry->count++;
- pEntry->chain = pNew;
- }else{
- pHead = 0;
- }
- if( pHead ){
- pNew->next = pHead;
- pNew->prev = pHead->prev;
- if( pHead->prev ){ pHead->prev->next = pNew; }
- else { pH->first = pNew; }
- pHead->prev = pNew;
- }else{
- pNew->next = pH->first;
- if( pH->first ){ pH->first->prev = pNew; }
- pNew->prev = 0;
- pH->first = pNew;
- }
-}
-
-
-/* Resize the hash table so that it cantains "new_size" buckets.
-**
-** The hash table might fail to resize if sqlite3_malloc() fails or
-** if the new size is the same as the prior size.
-** Return TRUE if the resize occurs and false if not.
-*/
-static int rehash(Hash *pH, unsigned int new_size){
- struct _ht *new_ht; /* The new hash table */
- HashElem *elem, *next_elem; /* For looping over existing elements */
-
-#if SQLITE_MALLOC_SOFT_LIMIT>0
- if( new_size*sizeof(struct _ht)>SQLITE_MALLOC_SOFT_LIMIT ){
- new_size = SQLITE_MALLOC_SOFT_LIMIT/sizeof(struct _ht);
- }
- if( new_size==pH->htsize ) return 0;
-#endif
-
- /* The inability to allocates space for a larger hash table is
- ** a performance hit but it is not a fatal error. So mark the
- ** allocation as a benign. Use sqlite3Malloc()/memset(0) instead of
- ** sqlite3MallocZero() to make the allocation, as sqlite3MallocZero()
- ** only zeroes the requested number of bytes whereas this module will
- ** use the actual amount of space allocated for the hash table (which
- ** may be larger than the requested amount).
- */
- sqlite3BeginBenignMalloc();
- new_ht = (struct _ht *)sqlite3Malloc( new_size*sizeof(struct _ht) );
- sqlite3EndBenignMalloc();
-
- if( new_ht==0 ) return 0;
- sqlite3_free(pH->ht);
- pH->ht = new_ht;
- pH->htsize = new_size = sqlite3MallocSize(new_ht)/sizeof(struct _ht);
- memset(new_ht, 0, new_size*sizeof(struct _ht));
- for(elem=pH->first, pH->first=0; elem; elem = next_elem){
- unsigned int h = strHash(elem->pKey) % new_size;
- next_elem = elem->next;
- insertElement(pH, &new_ht[h], elem);
- }
- return 1;
-}
-
-/* This function (for internal use only) locates an element in an
-** hash table that matches the given key. If no element is found,
-** a pointer to a static null element with HashElem.data==0 is returned.
-** If pH is not NULL, then the hash for this key is written to *pH.
-*/
-static HashElem *findElementWithHash(
- const Hash *pH, /* The pH to be searched */
- const char *pKey, /* The key we are searching for */
- unsigned int *pHash /* Write the hash value here */
-){
- HashElem *elem; /* Used to loop thru the element list */
- int count; /* Number of elements left to test */
- unsigned int h; /* The computed hash */
- static HashElem nullElement = { 0, 0, 0, 0 };
-
- if( pH->ht ){ /*OPTIMIZATION-IF-TRUE*/
- struct _ht *pEntry;
- h = strHash(pKey) % pH->htsize;
- pEntry = &pH->ht[h];
- elem = pEntry->chain;
- count = pEntry->count;
- }else{
- h = 0;
- elem = pH->first;
- count = pH->count;
- }
- if( pHash ) *pHash = h;
- while( count-- ){
- assert( elem!=0 );
- if( sqlite3StrICmp(elem->pKey,pKey)==0 ){
- return elem;
- }
- elem = elem->next;
- }
- return &nullElement;
-}
-
-/* Remove a single entry from the hash table given a pointer to that
-** element and a hash on the element's key.
-*/
-static void removeElementGivenHash(
- Hash *pH, /* The pH containing "elem" */
- HashElem* elem, /* The element to be removed from the pH */
- unsigned int h /* Hash value for the element */
-){
- struct _ht *pEntry;
- if( elem->prev ){
- elem->prev->next = elem->next;
- }else{
- pH->first = elem->next;
- }
- if( elem->next ){
- elem->next->prev = elem->prev;
- }
- if( pH->ht ){
- pEntry = &pH->ht[h];
- if( pEntry->chain==elem ){
- pEntry->chain = elem->next;
- }
- pEntry->count--;
- assert( pEntry->count>=0 );
- }
- sqlite3_free( elem );
- pH->count--;
- if( pH->count==0 ){
- assert( pH->first==0 );
- assert( pH->count==0 );
- sqlite3HashClear(pH);
- }
-}
-
-/* Attempt to locate an element of the hash table pH with a key
-** that matches pKey. Return the data for this element if it is
-** found, or NULL if there is no match.
-*/
-SQLITE_PRIVATE void *sqlite3HashFind(const Hash *pH, const char *pKey){
- assert( pH!=0 );
- assert( pKey!=0 );
- return findElementWithHash(pH, pKey, 0)->data;
-}
-
-/* Insert an element into the hash table pH. The key is pKey
-** and the data is "data".
-**
-** If no element exists with a matching key, then a new
-** element is created and NULL is returned.
-**
-** If another element already exists with the same key, then the
-** new data replaces the old data and the old data is returned.
-** The key is not copied in this instance. If a malloc fails, then
-** the new data is returned and the hash table is unchanged.
-**
-** If the "data" parameter to this function is NULL, then the
-** element corresponding to "key" is removed from the hash table.
-*/
-SQLITE_PRIVATE void *sqlite3HashInsert(Hash *pH, const char *pKey, void *data){
- unsigned int h; /* the hash of the key modulo hash table size */
- HashElem *elem; /* Used to loop thru the element list */
- HashElem *new_elem; /* New element added to the pH */
-
- assert( pH!=0 );
- assert( pKey!=0 );
- elem = findElementWithHash(pH,pKey,&h);
- if( elem->data ){
- void *old_data = elem->data;
- if( data==0 ){
- removeElementGivenHash(pH,elem,h);
- }else{
- elem->data = data;
- elem->pKey = pKey;
- }
- return old_data;
- }
- if( data==0 ) return 0;
- new_elem = (HashElem*)sqlite3Malloc( sizeof(HashElem) );
- if( new_elem==0 ) return data;
- new_elem->pKey = pKey;
- new_elem->data = data;
- pH->count++;
- if( pH->count>=10 && pH->count > 2*pH->htsize ){
- if( rehash(pH, pH->count*2) ){
- assert( pH->htsize>0 );
- h = strHash(pKey) % pH->htsize;
- }
- }
- insertElement(pH, pH->ht ? &pH->ht[h] : 0, new_elem);
- return 0;
-}
-
-/************** End of hash.c ************************************************/
-/************** Begin file opcodes.c *****************************************/
-/* Automatically generated. Do not edit */
-/* See the tool/mkopcodec.tcl script for details. */
-#if !defined(SQLITE_OMIT_EXPLAIN) \
- || defined(VDBE_PROFILE) \
- || defined(SQLITE_DEBUG)
-#if defined(SQLITE_ENABLE_EXPLAIN_COMMENTS) || defined(SQLITE_DEBUG)
-# define OpHelp(X) "\0" X
-#else
-# define OpHelp(X)
-#endif
-SQLITE_PRIVATE const char *sqlite3OpcodeName(int i){
- static const char *const azName[] = {
- /* 0 */ "Savepoint" OpHelp(""),
- /* 1 */ "AutoCommit" OpHelp(""),
- /* 2 */ "Transaction" OpHelp(""),
- /* 3 */ "SorterNext" OpHelp(""),
- /* 4 */ "Prev" OpHelp(""),
- /* 5 */ "Next" OpHelp(""),
- /* 6 */ "Checkpoint" OpHelp(""),
- /* 7 */ "JournalMode" OpHelp(""),
- /* 8 */ "Vacuum" OpHelp(""),
- /* 9 */ "VFilter" OpHelp("iplan=r[P3] zplan='P4'"),
- /* 10 */ "VUpdate" OpHelp("data=r[P3@P2]"),
- /* 11 */ "Goto" OpHelp(""),
- /* 12 */ "Gosub" OpHelp(""),
- /* 13 */ "InitCoroutine" OpHelp(""),
- /* 14 */ "Yield" OpHelp(""),
- /* 15 */ "MustBeInt" OpHelp(""),
- /* 16 */ "Jump" OpHelp(""),
- /* 17 */ "Once" OpHelp(""),
- /* 18 */ "If" OpHelp(""),
- /* 19 */ "Not" OpHelp("r[P2]= !r[P1]"),
- /* 20 */ "IfNot" OpHelp(""),
- /* 21 */ "IfNullRow" OpHelp("if P1.nullRow then r[P3]=NULL, goto P2"),
- /* 22 */ "SeekLT" OpHelp("key=r[P3@P4]"),
- /* 23 */ "SeekLE" OpHelp("key=r[P3@P4]"),
- /* 24 */ "SeekGE" OpHelp("key=r[P3@P4]"),
- /* 25 */ "SeekGT" OpHelp("key=r[P3@P4]"),
- /* 26 */ "IfNoHope" OpHelp("key=r[P3@P4]"),
- /* 27 */ "NoConflict" OpHelp("key=r[P3@P4]"),
- /* 28 */ "NotFound" OpHelp("key=r[P3@P4]"),
- /* 29 */ "Found" OpHelp("key=r[P3@P4]"),
- /* 30 */ "SeekRowid" OpHelp("intkey=r[P3]"),
- /* 31 */ "NotExists" OpHelp("intkey=r[P3]"),
- /* 32 */ "Last" OpHelp(""),
- /* 33 */ "IfSmaller" OpHelp(""),
- /* 34 */ "SorterSort" OpHelp(""),
- /* 35 */ "Sort" OpHelp(""),
- /* 36 */ "Rewind" OpHelp(""),
- /* 37 */ "IdxLE" OpHelp("key=r[P3@P4]"),
- /* 38 */ "IdxGT" OpHelp("key=r[P3@P4]"),
- /* 39 */ "IdxLT" OpHelp("key=r[P3@P4]"),
- /* 40 */ "IdxGE" OpHelp("key=r[P3@P4]"),
- /* 41 */ "RowSetRead" OpHelp("r[P3]=rowset(P1)"),
- /* 42 */ "RowSetTest" OpHelp("if r[P3] in rowset(P1) goto P2"),
- /* 43 */ "Or" OpHelp("r[P3]=(r[P1] || r[P2])"),
- /* 44 */ "And" OpHelp("r[P3]=(r[P1] && r[P2])"),
- /* 45 */ "Program" OpHelp(""),
- /* 46 */ "FkIfZero" OpHelp("if fkctr[P1]==0 goto P2"),
- /* 47 */ "IfPos" OpHelp("if r[P1]>0 then r[P1]-=P3, goto P2"),
- /* 48 */ "IfNotZero" OpHelp("if r[P1]!=0 then r[P1]--, goto P2"),
- /* 49 */ "DecrJumpZero" OpHelp("if (--r[P1])==0 goto P2"),
- /* 50 */ "IsNull" OpHelp("if r[P1]==NULL goto P2"),
- /* 51 */ "NotNull" OpHelp("if r[P1]!=NULL goto P2"),
- /* 52 */ "Ne" OpHelp("IF r[P3]!=r[P1]"),
- /* 53 */ "Eq" OpHelp("IF r[P3]==r[P1]"),
- /* 54 */ "Gt" OpHelp("IF r[P3]>r[P1]"),
- /* 55 */ "Le" OpHelp("IF r[P3]<=r[P1]"),
- /* 56 */ "Lt" OpHelp("IF r[P3]=r[P1]"),
- /* 58 */ "ElseNotEq" OpHelp(""),
- /* 59 */ "IncrVacuum" OpHelp(""),
- /* 60 */ "VNext" OpHelp(""),
- /* 61 */ "Init" OpHelp("Start at P2"),
- /* 62 */ "PureFunc0" OpHelp(""),
- /* 63 */ "Function0" OpHelp("r[P3]=func(r[P2@P5])"),
- /* 64 */ "PureFunc" OpHelp(""),
- /* 65 */ "Function" OpHelp("r[P3]=func(r[P2@P5])"),
- /* 66 */ "Return" OpHelp(""),
- /* 67 */ "EndCoroutine" OpHelp(""),
- /* 68 */ "HaltIfNull" OpHelp("if r[P3]=null halt"),
- /* 69 */ "Halt" OpHelp(""),
- /* 70 */ "Integer" OpHelp("r[P2]=P1"),
- /* 71 */ "Int64" OpHelp("r[P2]=P4"),
- /* 72 */ "String" OpHelp("r[P2]='P4' (len=P1)"),
- /* 73 */ "Null" OpHelp("r[P2..P3]=NULL"),
- /* 74 */ "SoftNull" OpHelp("r[P1]=NULL"),
- /* 75 */ "Blob" OpHelp("r[P2]=P4 (len=P1)"),
- /* 76 */ "Variable" OpHelp("r[P2]=parameter(P1,P4)"),
- /* 77 */ "Move" OpHelp("r[P2@P3]=r[P1@P3]"),
- /* 78 */ "Copy" OpHelp("r[P2@P3+1]=r[P1@P3+1]"),
- /* 79 */ "SCopy" OpHelp("r[P2]=r[P1]"),
- /* 80 */ "IntCopy" OpHelp("r[P2]=r[P1]"),
- /* 81 */ "ResultRow" OpHelp("output=r[P1@P2]"),
- /* 82 */ "CollSeq" OpHelp(""),
- /* 83 */ "AddImm" OpHelp("r[P1]=r[P1]+P2"),
- /* 84 */ "RealAffinity" OpHelp(""),
- /* 85 */ "Cast" OpHelp("affinity(r[P1])"),
- /* 86 */ "Permutation" OpHelp(""),
- /* 87 */ "Compare" OpHelp("r[P1@P3] <-> r[P2@P3]"),
- /* 88 */ "IsTrue" OpHelp("r[P2] = coalesce(r[P1]==TRUE,P3) ^ P4"),
- /* 89 */ "Offset" OpHelp("r[P3] = sqlite_offset(P1)"),
- /* 90 */ "Column" OpHelp("r[P3]=PX"),
- /* 91 */ "Affinity" OpHelp("affinity(r[P1@P2])"),
- /* 92 */ "BitAnd" OpHelp("r[P3]=r[P1]&r[P2]"),
- /* 93 */ "BitOr" OpHelp("r[P3]=r[P1]|r[P2]"),
- /* 94 */ "ShiftLeft" OpHelp("r[P3]=r[P2]<>r[P1]"),
- /* 96 */ "Add" OpHelp("r[P3]=r[P1]+r[P2]"),
- /* 97 */ "Subtract" OpHelp("r[P3]=r[P2]-r[P1]"),
- /* 98 */ "Multiply" OpHelp("r[P3]=r[P1]*r[P2]"),
- /* 99 */ "Divide" OpHelp("r[P3]=r[P2]/r[P1]"),
- /* 100 */ "Remainder" OpHelp("r[P3]=r[P2]%r[P1]"),
- /* 101 */ "Concat" OpHelp("r[P3]=r[P2]+r[P1]"),
- /* 102 */ "MakeRecord" OpHelp("r[P3]=mkrec(r[P1@P2])"),
- /* 103 */ "BitNot" OpHelp("r[P2]= ~r[P1]"),
- /* 104 */ "Count" OpHelp("r[P2]=count()"),
- /* 105 */ "ReadCookie" OpHelp(""),
- /* 106 */ "String8" OpHelp("r[P2]='P4'"),
- /* 107 */ "SetCookie" OpHelp(""),
- /* 108 */ "ReopenIdx" OpHelp("root=P2 iDb=P3"),
- /* 109 */ "OpenRead" OpHelp("root=P2 iDb=P3"),
- /* 110 */ "OpenWrite" OpHelp("root=P2 iDb=P3"),
- /* 111 */ "OpenDup" OpHelp(""),
- /* 112 */ "OpenAutoindex" OpHelp("nColumn=P2"),
- /* 113 */ "OpenEphemeral" OpHelp("nColumn=P2"),
- /* 114 */ "SorterOpen" OpHelp(""),
- /* 115 */ "SequenceTest" OpHelp("if( cursor[P1].ctr++ ) pc = P2"),
- /* 116 */ "OpenPseudo" OpHelp("P3 columns in r[P2]"),
- /* 117 */ "Close" OpHelp(""),
- /* 118 */ "ColumnsUsed" OpHelp(""),
- /* 119 */ "SeekHit" OpHelp("seekHit=P2"),
- /* 120 */ "Sequence" OpHelp("r[P2]=cursor[P1].ctr++"),
- /* 121 */ "NewRowid" OpHelp("r[P2]=rowid"),
- /* 122 */ "Insert" OpHelp("intkey=r[P3] data=r[P2]"),
- /* 123 */ "InsertInt" OpHelp("intkey=P3 data=r[P2]"),
- /* 124 */ "Delete" OpHelp(""),
- /* 125 */ "ResetCount" OpHelp(""),
- /* 126 */ "SorterCompare" OpHelp("if key(P1)!=trim(r[P3],P4) goto P2"),
- /* 127 */ "SorterData" OpHelp("r[P2]=data"),
- /* 128 */ "RowData" OpHelp("r[P2]=data"),
- /* 129 */ "Rowid" OpHelp("r[P2]=rowid"),
- /* 130 */ "NullRow" OpHelp(""),
- /* 131 */ "SeekEnd" OpHelp(""),
- /* 132 */ "SorterInsert" OpHelp("key=r[P2]"),
- /* 133 */ "IdxInsert" OpHelp("key=r[P2]"),
- /* 134 */ "IdxDelete" OpHelp("key=r[P2@P3]"),
- /* 135 */ "DeferredSeek" OpHelp("Move P3 to P1.rowid if needed"),
- /* 136 */ "IdxRowid" OpHelp("r[P2]=rowid"),
- /* 137 */ "Destroy" OpHelp(""),
- /* 138 */ "Clear" OpHelp(""),
- /* 139 */ "ResetSorter" OpHelp(""),
- /* 140 */ "CreateBtree" OpHelp("r[P2]=root iDb=P1 flags=P3"),
- /* 141 */ "Real" OpHelp("r[P2]=P4"),
- /* 142 */ "SqlExec" OpHelp(""),
- /* 143 */ "ParseSchema" OpHelp(""),
- /* 144 */ "LoadAnalysis" OpHelp(""),
- /* 145 */ "DropTable" OpHelp(""),
- /* 146 */ "DropIndex" OpHelp(""),
- /* 147 */ "DropTrigger" OpHelp(""),
- /* 148 */ "IntegrityCk" OpHelp(""),
- /* 149 */ "RowSetAdd" OpHelp("rowset(P1)=r[P2]"),
- /* 150 */ "Param" OpHelp(""),
- /* 151 */ "FkCounter" OpHelp("fkctr[P1]+=P2"),
- /* 152 */ "MemMax" OpHelp("r[P1]=max(r[P1],r[P2])"),
- /* 153 */ "OffsetLimit" OpHelp("if r[P1]>0 then r[P2]=r[P1]+max(0,r[P3]) else r[P2]=(-1)"),
- /* 154 */ "AggInverse" OpHelp("accum=r[P3] inverse(r[P2@P5])"),
- /* 155 */ "AggStep" OpHelp("accum=r[P3] step(r[P2@P5])"),
- /* 156 */ "AggStep1" OpHelp("accum=r[P3] step(r[P2@P5])"),
- /* 157 */ "AggValue" OpHelp("r[P3]=value N=P2"),
- /* 158 */ "AggFinal" OpHelp("accum=r[P1] N=P2"),
- /* 159 */ "Expire" OpHelp(""),
- /* 160 */ "TableLock" OpHelp("iDb=P1 root=P2 write=P3"),
- /* 161 */ "VBegin" OpHelp(""),
- /* 162 */ "VCreate" OpHelp(""),
- /* 163 */ "VDestroy" OpHelp(""),
- /* 164 */ "VOpen" OpHelp(""),
- /* 165 */ "VColumn" OpHelp("r[P3]=vcolumn(P2)"),
- /* 166 */ "VRename" OpHelp(""),
- /* 167 */ "Pagecount" OpHelp(""),
- /* 168 */ "MaxPgcnt" OpHelp(""),
- /* 169 */ "Trace" OpHelp(""),
- /* 170 */ "CursorHint" OpHelp(""),
- /* 171 */ "Noop" OpHelp(""),
- /* 172 */ "Explain" OpHelp(""),
- /* 173 */ "Abortable" OpHelp(""),
- };
- return azName[i];
-}
-#endif
-
-/************** End of opcodes.c *********************************************/
-/************** Begin file os_unix.c *****************************************/
-/*
-** 2004 May 22
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This file contains the VFS implementation for unix-like operating systems
-** include Linux, MacOSX, *BSD, QNX, VxWorks, AIX, HPUX, and others.
-**
-** There are actually several different VFS implementations in this file.
-** The differences are in the way that file locking is done. The default
-** implementation uses Posix Advisory Locks. Alternative implementations
-** use flock(), dot-files, various proprietary locking schemas, or simply
-** skip locking all together.
-**
-** This source file is organized into divisions where the logic for various
-** subfunctions is contained within the appropriate division. PLEASE
-** KEEP THE STRUCTURE OF THIS FILE INTACT. New code should be placed
-** in the correct division and should be clearly labeled.
-**
-** The layout of divisions is as follows:
-**
-** * General-purpose declarations and utility functions.
-** * Unique file ID logic used by VxWorks.
-** * Various locking primitive implementations (all except proxy locking):
-** + for Posix Advisory Locks
-** + for no-op locks
-** + for dot-file locks
-** + for flock() locking
-** + for named semaphore locks (VxWorks only)
-** + for AFP filesystem locks (MacOSX only)
-** * sqlite3_file methods not associated with locking.
-** * Definitions of sqlite3_io_methods objects for all locking
-** methods plus "finder" functions for each locking method.
-** * sqlite3_vfs method implementations.
-** * Locking primitives for the proxy uber-locking-method. (MacOSX only)
-** * Definitions of sqlite3_vfs objects for all locking methods
-** plus implementations of sqlite3_os_init() and sqlite3_os_end().
-*/
-/* #include "sqliteInt.h" */
-#if SQLITE_OS_UNIX /* This file is used on unix only */
-
-/*
-** There are various methods for file locking used for concurrency
-** control:
-**
-** 1. POSIX locking (the default),
-** 2. No locking,
-** 3. Dot-file locking,
-** 4. flock() locking,
-** 5. AFP locking (OSX only),
-** 6. Named POSIX semaphores (VXWorks only),
-** 7. proxy locking. (OSX only)
-**
-** Styles 4, 5, and 7 are only available of SQLITE_ENABLE_LOCKING_STYLE
-** is defined to 1. The SQLITE_ENABLE_LOCKING_STYLE also enables automatic
-** selection of the appropriate locking style based on the filesystem
-** where the database is located.
-*/
-#if !defined(SQLITE_ENABLE_LOCKING_STYLE)
-# if defined(__APPLE__)
-# define SQLITE_ENABLE_LOCKING_STYLE 1
-# else
-# define SQLITE_ENABLE_LOCKING_STYLE 0
-# endif
-#endif
-
-/* Use pread() and pwrite() if they are available */
-#if defined(__APPLE__)
-# define HAVE_PREAD 1
-# define HAVE_PWRITE 1
-#endif
-#if defined(HAVE_PREAD64) && defined(HAVE_PWRITE64)
-# undef USE_PREAD
-# define USE_PREAD64 1
-#elif defined(HAVE_PREAD) && defined(HAVE_PWRITE)
-# undef USE_PREAD64
-# define USE_PREAD 1
-#endif
-
-/*
-** standard include files.
-*/
-#include
-#include
-#include
-#include
-#include
-/* #include */
-#include
-#include
-#if !defined(SQLITE_OMIT_WAL) || SQLITE_MAX_MMAP_SIZE>0
-# include
-#endif
-
-#if SQLITE_ENABLE_LOCKING_STYLE
-/* # include */
-# include
-# include
-#endif /* SQLITE_ENABLE_LOCKING_STYLE */
-
-#if defined(__APPLE__) && ((__MAC_OS_X_VERSION_MIN_REQUIRED > 1050) || \
- (__IPHONE_OS_VERSION_MIN_REQUIRED > 2000))
-# if (!defined(TARGET_OS_EMBEDDED) || (TARGET_OS_EMBEDDED==0)) \
- && (!defined(TARGET_IPHONE_SIMULATOR) || (TARGET_IPHONE_SIMULATOR==0))
-# define HAVE_GETHOSTUUID 1
-# else
-# warning "gethostuuid() is disabled."
-# endif
-#endif
-
-
-#if OS_VXWORKS
-/* # include */
-# include
-# include
-#endif /* OS_VXWORKS */
-
-#if defined(__APPLE__) || SQLITE_ENABLE_LOCKING_STYLE
-# include
-#endif
-
-#ifdef HAVE_UTIME
-# include
-#endif
-
-/*
-** Allowed values of unixFile.fsFlags
-*/
-#define SQLITE_FSFLAGS_IS_MSDOS 0x1
-
-/*
-** If we are to be thread-safe, include the pthreads header and define
-** the SQLITE_UNIX_THREADS macro.
-*/
-#if SQLITE_THREADSAFE
-/* # include */
-# define SQLITE_UNIX_THREADS 1
-#endif
-
-/*
-** Default permissions when creating a new file
-*/
-#ifndef SQLITE_DEFAULT_FILE_PERMISSIONS
-# define SQLITE_DEFAULT_FILE_PERMISSIONS 0644
-#endif
-
-/*
-** Default permissions when creating auto proxy dir
-*/
-#ifndef SQLITE_DEFAULT_PROXYDIR_PERMISSIONS
-# define SQLITE_DEFAULT_PROXYDIR_PERMISSIONS 0755
-#endif
-
-/*
-** Maximum supported path-length.
-*/
-#define MAX_PATHNAME 512
-
-/*
-** Maximum supported symbolic links
-*/
-#define SQLITE_MAX_SYMLINKS 100
-
-/* Always cast the getpid() return type for compatibility with
-** kernel modules in VxWorks. */
-#define osGetpid(X) (pid_t)getpid()
-
-/*
-** Only set the lastErrno if the error code is a real error and not
-** a normal expected return code of SQLITE_BUSY or SQLITE_OK
-*/
-#define IS_LOCK_ERROR(x) ((x != SQLITE_OK) && (x != SQLITE_BUSY))
-
-/* Forward references */
-typedef struct unixShm unixShm; /* Connection shared memory */
-typedef struct unixShmNode unixShmNode; /* Shared memory instance */
-typedef struct unixInodeInfo unixInodeInfo; /* An i-node */
-typedef struct UnixUnusedFd UnixUnusedFd; /* An unused file descriptor */
-
-/*
-** Sometimes, after a file handle is closed by SQLite, the file descriptor
-** cannot be closed immediately. In these cases, instances of the following
-** structure are used to store the file descriptor while waiting for an
-** opportunity to either close or reuse it.
-*/
-struct UnixUnusedFd {
- int fd; /* File descriptor to close */
- int flags; /* Flags this file descriptor was opened with */
- UnixUnusedFd *pNext; /* Next unused file descriptor on same file */
-};
-
-/*
-** The unixFile structure is subclass of sqlite3_file specific to the unix
-** VFS implementations.
-*/
-typedef struct unixFile unixFile;
-struct unixFile {
- sqlite3_io_methods const *pMethod; /* Always the first entry */
- sqlite3_vfs *pVfs; /* The VFS that created this unixFile */
- unixInodeInfo *pInode; /* Info about locks on this inode */
- int h; /* The file descriptor */
- unsigned char eFileLock; /* The type of lock held on this fd */
- unsigned short int ctrlFlags; /* Behavioral bits. UNIXFILE_* flags */
- int lastErrno; /* The unix errno from last I/O error */
- void *lockingContext; /* Locking style specific state */
- UnixUnusedFd *pPreallocatedUnused; /* Pre-allocated UnixUnusedFd */
- const char *zPath; /* Name of the file */
- unixShm *pShm; /* Shared memory segment information */
- int szChunk; /* Configured by FCNTL_CHUNK_SIZE */
-#if SQLITE_MAX_MMAP_SIZE>0
- int nFetchOut; /* Number of outstanding xFetch refs */
- sqlite3_int64 mmapSize; /* Usable size of mapping at pMapRegion */
- sqlite3_int64 mmapSizeActual; /* Actual size of mapping at pMapRegion */
- sqlite3_int64 mmapSizeMax; /* Configured FCNTL_MMAP_SIZE value */
- void *pMapRegion; /* Memory mapped region */
-#endif
- int sectorSize; /* Device sector size */
- int deviceCharacteristics; /* Precomputed device characteristics */
-#if SQLITE_ENABLE_LOCKING_STYLE
- int openFlags; /* The flags specified at open() */
-#endif
-#if SQLITE_ENABLE_LOCKING_STYLE || defined(__APPLE__)
- unsigned fsFlags; /* cached details from statfs() */
-#endif
-#ifdef SQLITE_ENABLE_SETLK_TIMEOUT
- unsigned iBusyTimeout; /* Wait this many millisec on locks */
-#endif
-#if OS_VXWORKS
- struct vxworksFileId *pId; /* Unique file ID */
-#endif
-#ifdef SQLITE_DEBUG
- /* The next group of variables are used to track whether or not the
- ** transaction counter in bytes 24-27 of database files are updated
- ** whenever any part of the database changes. An assertion fault will
- ** occur if a file is updated without also updating the transaction
- ** counter. This test is made to avoid new problems similar to the
- ** one described by ticket #3584.
- */
- unsigned char transCntrChng; /* True if the transaction counter changed */
- unsigned char dbUpdate; /* True if any part of database file changed */
- unsigned char inNormalWrite; /* True if in a normal write operation */
-
-#endif
-
-#ifdef SQLITE_TEST
- /* In test mode, increase the size of this structure a bit so that
- ** it is larger than the struct CrashFile defined in test6.c.
- */
- char aPadding[32];
-#endif
-};
-
-/* This variable holds the process id (pid) from when the xRandomness()
-** method was called. If xOpen() is called from a different process id,
-** indicating that a fork() has occurred, the PRNG will be reset.
-*/
-static pid_t randomnessPid = 0;
-
-/*
-** Allowed values for the unixFile.ctrlFlags bitmask:
-*/
-#define UNIXFILE_EXCL 0x01 /* Connections from one process only */
-#define UNIXFILE_RDONLY 0x02 /* Connection is read only */
-#define UNIXFILE_PERSIST_WAL 0x04 /* Persistent WAL mode */
-#ifndef SQLITE_DISABLE_DIRSYNC
-# define UNIXFILE_DIRSYNC 0x08 /* Directory sync needed */
-#else
-# define UNIXFILE_DIRSYNC 0x00
-#endif
-#define UNIXFILE_PSOW 0x10 /* SQLITE_IOCAP_POWERSAFE_OVERWRITE */
-#define UNIXFILE_DELETE 0x20 /* Delete on close */
-#define UNIXFILE_URI 0x40 /* Filename might have query parameters */
-#define UNIXFILE_NOLOCK 0x80 /* Do no file locking */
-
-/*
-** Include code that is common to all os_*.c files
-*/
-/************** Include os_common.h in the middle of os_unix.c ***************/
-/************** Begin file os_common.h ***************************************/
-/*
-** 2004 May 22
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This file contains macros and a little bit of code that is common to
-** all of the platform-specific files (os_*.c) and is #included into those
-** files.
-**
-** This file should be #included by the os_*.c files only. It is not a
-** general purpose header file.
-*/
-#ifndef _OS_COMMON_H_
-#define _OS_COMMON_H_
-
-/*
-** At least two bugs have slipped in because we changed the MEMORY_DEBUG
-** macro to SQLITE_DEBUG and some older makefiles have not yet made the
-** switch. The following code should catch this problem at compile-time.
-*/
-#ifdef MEMORY_DEBUG
-# error "The MEMORY_DEBUG macro is obsolete. Use SQLITE_DEBUG instead."
-#endif
-
-/*
-** Macros for performance tracing. Normally turned off. Only works
-** on i486 hardware.
-*/
-#ifdef SQLITE_PERFORMANCE_TRACE
-
-/*
-** hwtime.h contains inline assembler code for implementing
-** high-performance timing routines.
-*/
-/************** Include hwtime.h in the middle of os_common.h ****************/
-/************** Begin file hwtime.h ******************************************/
-/*
-** 2008 May 27
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This file contains inline asm code for retrieving "high-performance"
-** counters for x86 class CPUs.
-*/
-#ifndef SQLITE_HWTIME_H
-#define SQLITE_HWTIME_H
-
-/*
-** The following routine only works on pentium-class (or newer) processors.
-** It uses the RDTSC opcode to read the cycle count value out of the
-** processor and returns that value. This can be used for high-res
-** profiling.
-*/
-#if (defined(__GNUC__) || defined(_MSC_VER)) && \
- (defined(i386) || defined(__i386__) || defined(_M_IX86))
-
- #if defined(__GNUC__)
-
- __inline__ sqlite_uint64 sqlite3Hwtime(void){
- unsigned int lo, hi;
- __asm__ __volatile__ ("rdtsc" : "=a" (lo), "=d" (hi));
- return (sqlite_uint64)hi << 32 | lo;
- }
-
- #elif defined(_MSC_VER)
-
- __declspec(naked) __inline sqlite_uint64 __cdecl sqlite3Hwtime(void){
- __asm {
- rdtsc
- ret ; return value at EDX:EAX
- }
- }
-
- #endif
-
-#elif (defined(__GNUC__) && defined(__x86_64__))
-
- __inline__ sqlite_uint64 sqlite3Hwtime(void){
- unsigned long val;
- __asm__ __volatile__ ("rdtsc" : "=A" (val));
- return val;
- }
-
-#elif (defined(__GNUC__) && defined(__ppc__))
-
- __inline__ sqlite_uint64 sqlite3Hwtime(void){
- unsigned long long retval;
- unsigned long junk;
- __asm__ __volatile__ ("\n\
- 1: mftbu %1\n\
- mftb %L0\n\
- mftbu %0\n\
- cmpw %0,%1\n\
- bne 1b"
- : "=r" (retval), "=r" (junk));
- return retval;
- }
-
-#else
-
- #error Need implementation of sqlite3Hwtime() for your platform.
-
- /*
- ** To compile without implementing sqlite3Hwtime() for your platform,
- ** you can remove the above #error and use the following
- ** stub function. You will lose timing support for many
- ** of the debugging and testing utilities, but it should at
- ** least compile and run.
- */
-SQLITE_PRIVATE sqlite_uint64 sqlite3Hwtime(void){ return ((sqlite_uint64)0); }
-
-#endif
-
-#endif /* !defined(SQLITE_HWTIME_H) */
-
-/************** End of hwtime.h **********************************************/
-/************** Continuing where we left off in os_common.h ******************/
-
-static sqlite_uint64 g_start;
-static sqlite_uint64 g_elapsed;
-#define TIMER_START g_start=sqlite3Hwtime()
-#define TIMER_END g_elapsed=sqlite3Hwtime()-g_start
-#define TIMER_ELAPSED g_elapsed
-#else
-#define TIMER_START
-#define TIMER_END
-#define TIMER_ELAPSED ((sqlite_uint64)0)
-#endif
-
-/*
-** If we compile with the SQLITE_TEST macro set, then the following block
-** of code will give us the ability to simulate a disk I/O error. This
-** is used for testing the I/O recovery logic.
-*/
-#if defined(SQLITE_TEST)
-SQLITE_API extern int sqlite3_io_error_hit;
-SQLITE_API extern int sqlite3_io_error_hardhit;
-SQLITE_API extern int sqlite3_io_error_pending;
-SQLITE_API extern int sqlite3_io_error_persist;
-SQLITE_API extern int sqlite3_io_error_benign;
-SQLITE_API extern int sqlite3_diskfull_pending;
-SQLITE_API extern int sqlite3_diskfull;
-#define SimulateIOErrorBenign(X) sqlite3_io_error_benign=(X)
-#define SimulateIOError(CODE) \
- if( (sqlite3_io_error_persist && sqlite3_io_error_hit) \
- || sqlite3_io_error_pending-- == 1 ) \
- { local_ioerr(); CODE; }
-static void local_ioerr(){
- IOTRACE(("IOERR\n"));
- sqlite3_io_error_hit++;
- if( !sqlite3_io_error_benign ) sqlite3_io_error_hardhit++;
-}
-#define SimulateDiskfullError(CODE) \
- if( sqlite3_diskfull_pending ){ \
- if( sqlite3_diskfull_pending == 1 ){ \
- local_ioerr(); \
- sqlite3_diskfull = 1; \
- sqlite3_io_error_hit = 1; \
- CODE; \
- }else{ \
- sqlite3_diskfull_pending--; \
- } \
- }
-#else
-#define SimulateIOErrorBenign(X)
-#define SimulateIOError(A)
-#define SimulateDiskfullError(A)
-#endif /* defined(SQLITE_TEST) */
-
-/*
-** When testing, keep a count of the number of open files.
-*/
-#if defined(SQLITE_TEST)
-SQLITE_API extern int sqlite3_open_file_count;
-#define OpenCounter(X) sqlite3_open_file_count+=(X)
-#else
-#define OpenCounter(X)
-#endif /* defined(SQLITE_TEST) */
-
-#endif /* !defined(_OS_COMMON_H_) */
-
-/************** End of os_common.h *******************************************/
-/************** Continuing where we left off in os_unix.c ********************/
-
-/*
-** Define various macros that are missing from some systems.
-*/
-#ifndef O_LARGEFILE
-# define O_LARGEFILE 0
-#endif
-#ifdef SQLITE_DISABLE_LFS
-# undef O_LARGEFILE
-# define O_LARGEFILE 0
-#endif
-#ifndef O_NOFOLLOW
-# define O_NOFOLLOW 0
-#endif
-#ifndef O_BINARY
-# define O_BINARY 0
-#endif
-
-/*
-** The threadid macro resolves to the thread-id or to 0. Used for
-** testing and debugging only.
-*/
-#if SQLITE_THREADSAFE
-#define threadid pthread_self()
-#else
-#define threadid 0
-#endif
-
-/*
-** HAVE_MREMAP defaults to true on Linux and false everywhere else.
-*/
-#if !defined(HAVE_MREMAP)
-# if defined(__linux__) && defined(_GNU_SOURCE)
-# define HAVE_MREMAP 1
-# else
-# define HAVE_MREMAP 0
-# endif
-#endif
-
-/*
-** Explicitly call the 64-bit version of lseek() on Android. Otherwise, lseek()
-** is the 32-bit version, even if _FILE_OFFSET_BITS=64 is defined.
-*/
-#ifdef __ANDROID__
-# define lseek lseek64
-#endif
-
-#ifdef __linux__
-/*
-** Linux-specific IOCTL magic numbers used for controlling F2FS
-*/
-#define F2FS_IOCTL_MAGIC 0xf5
-#define F2FS_IOC_START_ATOMIC_WRITE _IO(F2FS_IOCTL_MAGIC, 1)
-#define F2FS_IOC_COMMIT_ATOMIC_WRITE _IO(F2FS_IOCTL_MAGIC, 2)
-#define F2FS_IOC_START_VOLATILE_WRITE _IO(F2FS_IOCTL_MAGIC, 3)
-#define F2FS_IOC_ABORT_VOLATILE_WRITE _IO(F2FS_IOCTL_MAGIC, 5)
-#define F2FS_IOC_GET_FEATURES _IOR(F2FS_IOCTL_MAGIC, 12, u32)
-#define F2FS_FEATURE_ATOMIC_WRITE 0x0004
-#endif /* __linux__ */
-
-
-/*
-** Different Unix systems declare open() in different ways. Same use
-** open(const char*,int,mode_t). Others use open(const char*,int,...).
-** The difference is important when using a pointer to the function.
-**
-** The safest way to deal with the problem is to always use this wrapper
-** which always has the same well-defined interface.
-*/
-static int posixOpen(const char *zFile, int flags, int mode){
- return open(zFile, flags, mode);
-}
-
-/* Forward reference */
-static int openDirectory(const char*, int*);
-static int unixGetpagesize(void);
-
-/*
-** Many system calls are accessed through pointer-to-functions so that
-** they may be overridden at runtime to facilitate fault injection during
-** testing and sandboxing. The following array holds the names and pointers
-** to all overrideable system calls.
-*/
-static struct unix_syscall {
- const char *zName; /* Name of the system call */
- sqlite3_syscall_ptr pCurrent; /* Current value of the system call */
- sqlite3_syscall_ptr pDefault; /* Default value */
-} aSyscall[] = {
- { "open", (sqlite3_syscall_ptr)posixOpen, 0 },
-#define osOpen ((int(*)(const char*,int,int))aSyscall[0].pCurrent)
-
- { "close", (sqlite3_syscall_ptr)close, 0 },
-#define osClose ((int(*)(int))aSyscall[1].pCurrent)
-
- { "access", (sqlite3_syscall_ptr)access, 0 },
-#define osAccess ((int(*)(const char*,int))aSyscall[2].pCurrent)
-
- { "getcwd", (sqlite3_syscall_ptr)getcwd, 0 },
-#define osGetcwd ((char*(*)(char*,size_t))aSyscall[3].pCurrent)
-
- { "stat", (sqlite3_syscall_ptr)stat, 0 },
-#define osStat ((int(*)(const char*,struct stat*))aSyscall[4].pCurrent)
-
-/*
-** The DJGPP compiler environment looks mostly like Unix, but it
-** lacks the fcntl() system call. So redefine fcntl() to be something
-** that always succeeds. This means that locking does not occur under
-** DJGPP. But it is DOS - what did you expect?
-*/
-#ifdef __DJGPP__
- { "fstat", 0, 0 },
-#define osFstat(a,b,c) 0
-#else
- { "fstat", (sqlite3_syscall_ptr)fstat, 0 },
-#define osFstat ((int(*)(int,struct stat*))aSyscall[5].pCurrent)
-#endif
-
- { "ftruncate", (sqlite3_syscall_ptr)ftruncate, 0 },
-#define osFtruncate ((int(*)(int,off_t))aSyscall[6].pCurrent)
-
- { "fcntl", (sqlite3_syscall_ptr)fcntl, 0 },
-#define osFcntl ((int(*)(int,int,...))aSyscall[7].pCurrent)
-
- { "read", (sqlite3_syscall_ptr)read, 0 },
-#define osRead ((ssize_t(*)(int,void*,size_t))aSyscall[8].pCurrent)
-
-#if defined(USE_PREAD) || SQLITE_ENABLE_LOCKING_STYLE
- { "pread", (sqlite3_syscall_ptr)pread, 0 },
-#else
- { "pread", (sqlite3_syscall_ptr)0, 0 },
-#endif
-#define osPread ((ssize_t(*)(int,void*,size_t,off_t))aSyscall[9].pCurrent)
-
-#if defined(USE_PREAD64)
- { "pread64", (sqlite3_syscall_ptr)pread64, 0 },
-#else
- { "pread64", (sqlite3_syscall_ptr)0, 0 },
-#endif
-#define osPread64 ((ssize_t(*)(int,void*,size_t,off64_t))aSyscall[10].pCurrent)
-
- { "write", (sqlite3_syscall_ptr)write, 0 },
-#define osWrite ((ssize_t(*)(int,const void*,size_t))aSyscall[11].pCurrent)
-
-#if defined(USE_PREAD) || SQLITE_ENABLE_LOCKING_STYLE
- { "pwrite", (sqlite3_syscall_ptr)pwrite, 0 },
-#else
- { "pwrite", (sqlite3_syscall_ptr)0, 0 },
-#endif
-#define osPwrite ((ssize_t(*)(int,const void*,size_t,off_t))\
- aSyscall[12].pCurrent)
-
-#if defined(USE_PREAD64)
- { "pwrite64", (sqlite3_syscall_ptr)pwrite64, 0 },
-#else
- { "pwrite64", (sqlite3_syscall_ptr)0, 0 },
-#endif
-#define osPwrite64 ((ssize_t(*)(int,const void*,size_t,off64_t))\
- aSyscall[13].pCurrent)
-
- { "fchmod", (sqlite3_syscall_ptr)fchmod, 0 },
-#define osFchmod ((int(*)(int,mode_t))aSyscall[14].pCurrent)
-
-#if defined(HAVE_POSIX_FALLOCATE) && HAVE_POSIX_FALLOCATE
- { "fallocate", (sqlite3_syscall_ptr)posix_fallocate, 0 },
-#else
- { "fallocate", (sqlite3_syscall_ptr)0, 0 },
-#endif
-#define osFallocate ((int(*)(int,off_t,off_t))aSyscall[15].pCurrent)
-
- { "unlink", (sqlite3_syscall_ptr)unlink, 0 },
-#define osUnlink ((int(*)(const char*))aSyscall[16].pCurrent)
-
- { "openDirectory", (sqlite3_syscall_ptr)openDirectory, 0 },
-#define osOpenDirectory ((int(*)(const char*,int*))aSyscall[17].pCurrent)
-
- { "mkdir", (sqlite3_syscall_ptr)mkdir, 0 },
-#define osMkdir ((int(*)(const char*,mode_t))aSyscall[18].pCurrent)
-
- { "rmdir", (sqlite3_syscall_ptr)rmdir, 0 },
-#define osRmdir ((int(*)(const char*))aSyscall[19].pCurrent)
-
-#if defined(HAVE_FCHOWN)
- { "fchown", (sqlite3_syscall_ptr)fchown, 0 },
-#else
- { "fchown", (sqlite3_syscall_ptr)0, 0 },
-#endif
-#define osFchown ((int(*)(int,uid_t,gid_t))aSyscall[20].pCurrent)
-
-#if defined(HAVE_FCHOWN)
- { "geteuid", (sqlite3_syscall_ptr)geteuid, 0 },
-#else
- { "geteuid", (sqlite3_syscall_ptr)0, 0 },
-#endif
-#define osGeteuid ((uid_t(*)(void))aSyscall[21].pCurrent)
-
-#if !defined(SQLITE_OMIT_WAL) || SQLITE_MAX_MMAP_SIZE>0
- { "mmap", (sqlite3_syscall_ptr)mmap, 0 },
-#else
- { "mmap", (sqlite3_syscall_ptr)0, 0 },
-#endif
-#define osMmap ((void*(*)(void*,size_t,int,int,int,off_t))aSyscall[22].pCurrent)
-
-#if !defined(SQLITE_OMIT_WAL) || SQLITE_MAX_MMAP_SIZE>0
- { "munmap", (sqlite3_syscall_ptr)munmap, 0 },
-#else
- { "munmap", (sqlite3_syscall_ptr)0, 0 },
-#endif
-#define osMunmap ((int(*)(void*,size_t))aSyscall[23].pCurrent)
-
-#if HAVE_MREMAP && (!defined(SQLITE_OMIT_WAL) || SQLITE_MAX_MMAP_SIZE>0)
- { "mremap", (sqlite3_syscall_ptr)mremap, 0 },
-#else
- { "mremap", (sqlite3_syscall_ptr)0, 0 },
-#endif
-#define osMremap ((void*(*)(void*,size_t,size_t,int,...))aSyscall[24].pCurrent)
-
-#if !defined(SQLITE_OMIT_WAL) || SQLITE_MAX_MMAP_SIZE>0
- { "getpagesize", (sqlite3_syscall_ptr)unixGetpagesize, 0 },
-#else
- { "getpagesize", (sqlite3_syscall_ptr)0, 0 },
-#endif
-#define osGetpagesize ((int(*)(void))aSyscall[25].pCurrent)
-
-#if defined(HAVE_READLINK)
- { "readlink", (sqlite3_syscall_ptr)readlink, 0 },
-#else
- { "readlink", (sqlite3_syscall_ptr)0, 0 },
-#endif
-#define osReadlink ((ssize_t(*)(const char*,char*,size_t))aSyscall[26].pCurrent)
-
-#if defined(HAVE_LSTAT)
- { "lstat", (sqlite3_syscall_ptr)lstat, 0 },
-#else
- { "lstat", (sqlite3_syscall_ptr)0, 0 },
-#endif
-#define osLstat ((int(*)(const char*,struct stat*))aSyscall[27].pCurrent)
-
-#if defined(__linux__) && defined(SQLITE_ENABLE_BATCH_ATOMIC_WRITE)
-# ifdef __ANDROID__
- { "ioctl", (sqlite3_syscall_ptr)(int(*)(int, int, ...))ioctl, 0 },
-# else
- { "ioctl", (sqlite3_syscall_ptr)ioctl, 0 },
-# endif
-#else
- { "ioctl", (sqlite3_syscall_ptr)0, 0 },
-#endif
-#define osIoctl ((int(*)(int,int,...))aSyscall[28].pCurrent)
-
-}; /* End of the overrideable system calls */
-
-
-/*
-** On some systems, calls to fchown() will trigger a message in a security
-** log if they come from non-root processes. So avoid calling fchown() if
-** we are not running as root.
-*/
-static int robustFchown(int fd, uid_t uid, gid_t gid){
-#if defined(HAVE_FCHOWN)
- return osGeteuid() ? 0 : osFchown(fd,uid,gid);
-#else
- return 0;
-#endif
-}
-
-/*
-** This is the xSetSystemCall() method of sqlite3_vfs for all of the
-** "unix" VFSes. Return SQLITE_OK opon successfully updating the
-** system call pointer, or SQLITE_NOTFOUND if there is no configurable
-** system call named zName.
-*/
-static int unixSetSystemCall(
- sqlite3_vfs *pNotUsed, /* The VFS pointer. Not used */
- const char *zName, /* Name of system call to override */
- sqlite3_syscall_ptr pNewFunc /* Pointer to new system call value */
-){
- unsigned int i;
- int rc = SQLITE_NOTFOUND;
-
- UNUSED_PARAMETER(pNotUsed);
- if( zName==0 ){
- /* If no zName is given, restore all system calls to their default
- ** settings and return NULL
- */
- rc = SQLITE_OK;
- for(i=0; i=SQLITE_MINIMUM_FILE_DESCRIPTOR ) break;
- osClose(fd);
- sqlite3_log(SQLITE_WARNING,
- "attempt to open \"%s\" as file descriptor %d", z, fd);
- fd = -1;
- if( osOpen("/dev/null", f, m)<0 ) break;
- }
- if( fd>=0 ){
- if( m!=0 ){
- struct stat statbuf;
- if( osFstat(fd, &statbuf)==0
- && statbuf.st_size==0
- && (statbuf.st_mode&0777)!=m
- ){
- osFchmod(fd, m);
- }
- }
-#if defined(FD_CLOEXEC) && (!defined(O_CLOEXEC) || O_CLOEXEC==0)
- osFcntl(fd, F_SETFD, osFcntl(fd, F_GETFD, 0) | FD_CLOEXEC);
-#endif
- }
- return fd;
-}
-
-/*
-** Helper functions to obtain and relinquish the global mutex. The
-** global mutex is used to protect the unixInodeInfo and
-** vxworksFileId objects used by this file, all of which may be
-** shared by multiple threads.
-**
-** Function unixMutexHeld() is used to assert() that the global mutex
-** is held when required. This function is only used as part of assert()
-** statements. e.g.
-**
-** unixEnterMutex()
-** assert( unixMutexHeld() );
-** unixEnterLeave()
-**
-** To prevent deadlock, the global unixBigLock must must be acquired
-** before the unixInodeInfo.pLockMutex mutex, if both are held. It is
-** OK to get the pLockMutex without holding unixBigLock first, but if
-** that happens, the unixBigLock mutex must not be acquired until after
-** pLockMutex is released.
-**
-** OK: enter(unixBigLock), enter(pLockInfo)
-** OK: enter(unixBigLock)
-** OK: enter(pLockInfo)
-** ERROR: enter(pLockInfo), enter(unixBigLock)
-*/
-static sqlite3_mutex *unixBigLock = 0;
-static void unixEnterMutex(void){
- assert( sqlite3_mutex_notheld(unixBigLock) ); /* Not a recursive mutex */
- sqlite3_mutex_enter(unixBigLock);
-}
-static void unixLeaveMutex(void){
- assert( sqlite3_mutex_held(unixBigLock) );
- sqlite3_mutex_leave(unixBigLock);
-}
-#ifdef SQLITE_DEBUG
-static int unixMutexHeld(void) {
- return sqlite3_mutex_held(unixBigLock);
-}
-#endif
-
-
-#ifdef SQLITE_HAVE_OS_TRACE
-/*
-** Helper function for printing out trace information from debugging
-** binaries. This returns the string representation of the supplied
-** integer lock-type.
-*/
-static const char *azFileLock(int eFileLock){
- switch( eFileLock ){
- case NO_LOCK: return "NONE";
- case SHARED_LOCK: return "SHARED";
- case RESERVED_LOCK: return "RESERVED";
- case PENDING_LOCK: return "PENDING";
- case EXCLUSIVE_LOCK: return "EXCLUSIVE";
- }
- return "ERROR";
-}
-#endif
-
-#ifdef SQLITE_LOCK_TRACE
-/*
-** Print out information about all locking operations.
-**
-** This routine is used for troubleshooting locks on multithreaded
-** platforms. Enable by compiling with the -DSQLITE_LOCK_TRACE
-** command-line option on the compiler. This code is normally
-** turned off.
-*/
-static int lockTrace(int fd, int op, struct flock *p){
- char *zOpName, *zType;
- int s;
- int savedErrno;
- if( op==F_GETLK ){
- zOpName = "GETLK";
- }else if( op==F_SETLK ){
- zOpName = "SETLK";
- }else{
- s = osFcntl(fd, op, p);
- sqlite3DebugPrintf("fcntl unknown %d %d %d\n", fd, op, s);
- return s;
- }
- if( p->l_type==F_RDLCK ){
- zType = "RDLCK";
- }else if( p->l_type==F_WRLCK ){
- zType = "WRLCK";
- }else if( p->l_type==F_UNLCK ){
- zType = "UNLCK";
- }else{
- assert( 0 );
- }
- assert( p->l_whence==SEEK_SET );
- s = osFcntl(fd, op, p);
- savedErrno = errno;
- sqlite3DebugPrintf("fcntl %d %d %s %s %d %d %d %d\n",
- threadid, fd, zOpName, zType, (int)p->l_start, (int)p->l_len,
- (int)p->l_pid, s);
- if( s==(-1) && op==F_SETLK && (p->l_type==F_RDLCK || p->l_type==F_WRLCK) ){
- struct flock l2;
- l2 = *p;
- osFcntl(fd, F_GETLK, &l2);
- if( l2.l_type==F_RDLCK ){
- zType = "RDLCK";
- }else if( l2.l_type==F_WRLCK ){
- zType = "WRLCK";
- }else if( l2.l_type==F_UNLCK ){
- zType = "UNLCK";
- }else{
- assert( 0 );
- }
- sqlite3DebugPrintf("fcntl-failure-reason: %s %d %d %d\n",
- zType, (int)l2.l_start, (int)l2.l_len, (int)l2.l_pid);
- }
- errno = savedErrno;
- return s;
-}
-#undef osFcntl
-#define osFcntl lockTrace
-#endif /* SQLITE_LOCK_TRACE */
-
-/*
-** Retry ftruncate() calls that fail due to EINTR
-**
-** All calls to ftruncate() within this file should be made through
-** this wrapper. On the Android platform, bypassing the logic below
-** could lead to a corrupt database.
-*/
-static int robust_ftruncate(int h, sqlite3_int64 sz){
- int rc;
-#ifdef __ANDROID__
- /* On Android, ftruncate() always uses 32-bit offsets, even if
- ** _FILE_OFFSET_BITS=64 is defined. This means it is unsafe to attempt to
- ** truncate a file to any size larger than 2GiB. Silently ignore any
- ** such attempts. */
- if( sz>(sqlite3_int64)0x7FFFFFFF ){
- rc = SQLITE_OK;
- }else
-#endif
- do{ rc = osFtruncate(h,sz); }while( rc<0 && errno==EINTR );
- return rc;
-}
-
-/*
-** This routine translates a standard POSIX errno code into something
-** useful to the clients of the sqlite3 functions. Specifically, it is
-** intended to translate a variety of "try again" errors into SQLITE_BUSY
-** and a variety of "please close the file descriptor NOW" errors into
-** SQLITE_IOERR
-**
-** Errors during initialization of locks, or file system support for locks,
-** should handle ENOLCK, ENOTSUP, EOPNOTSUPP separately.
-*/
-static int sqliteErrorFromPosixError(int posixError, int sqliteIOErr) {
- assert( (sqliteIOErr == SQLITE_IOERR_LOCK) ||
- (sqliteIOErr == SQLITE_IOERR_UNLOCK) ||
- (sqliteIOErr == SQLITE_IOERR_RDLOCK) ||
- (sqliteIOErr == SQLITE_IOERR_CHECKRESERVEDLOCK) );
- switch (posixError) {
- case EACCES:
- case EAGAIN:
- case ETIMEDOUT:
- case EBUSY:
- case EINTR:
- case ENOLCK:
- /* random NFS retry error, unless during file system support
- * introspection, in which it actually means what it says */
- return SQLITE_BUSY;
-
- case EPERM:
- return SQLITE_PERM;
-
- default:
- return sqliteIOErr;
- }
-}
-
-
-/******************************************************************************
-****************** Begin Unique File ID Utility Used By VxWorks ***************
-**
-** On most versions of unix, we can get a unique ID for a file by concatenating
-** the device number and the inode number. But this does not work on VxWorks.
-** On VxWorks, a unique file id must be based on the canonical filename.
-**
-** A pointer to an instance of the following structure can be used as a
-** unique file ID in VxWorks. Each instance of this structure contains
-** a copy of the canonical filename. There is also a reference count.
-** The structure is reclaimed when the number of pointers to it drops to
-** zero.
-**
-** There are never very many files open at one time and lookups are not
-** a performance-critical path, so it is sufficient to put these
-** structures on a linked list.
-*/
-struct vxworksFileId {
- struct vxworksFileId *pNext; /* Next in a list of them all */
- int nRef; /* Number of references to this one */
- int nName; /* Length of the zCanonicalName[] string */
- char *zCanonicalName; /* Canonical filename */
-};
-
-#if OS_VXWORKS
-/*
-** All unique filenames are held on a linked list headed by this
-** variable:
-*/
-static struct vxworksFileId *vxworksFileList = 0;
-
-/*
-** Simplify a filename into its canonical form
-** by making the following changes:
-**
-** * removing any trailing and duplicate /
-** * convert /./ into just /
-** * convert /A/../ where A is any simple name into just /
-**
-** Changes are made in-place. Return the new name length.
-**
-** The original filename is in z[0..n-1]. Return the number of
-** characters in the simplified name.
-*/
-static int vxworksSimplifyName(char *z, int n){
- int i, j;
- while( n>1 && z[n-1]=='/' ){ n--; }
- for(i=j=0; i0 && z[j-1]!='/' ){ j--; }
- if( j>0 ){ j--; }
- i += 2;
- continue;
- }
- }
- z[j++] = z[i];
- }
- z[j] = 0;
- return j;
-}
-
-/*
-** Find a unique file ID for the given absolute pathname. Return
-** a pointer to the vxworksFileId object. This pointer is the unique
-** file ID.
-**
-** The nRef field of the vxworksFileId object is incremented before
-** the object is returned. A new vxworksFileId object is created
-** and added to the global list if necessary.
-**
-** If a memory allocation error occurs, return NULL.
-*/
-static struct vxworksFileId *vxworksFindFileId(const char *zAbsoluteName){
- struct vxworksFileId *pNew; /* search key and new file ID */
- struct vxworksFileId *pCandidate; /* For looping over existing file IDs */
- int n; /* Length of zAbsoluteName string */
-
- assert( zAbsoluteName[0]=='/' );
- n = (int)strlen(zAbsoluteName);
- pNew = sqlite3_malloc64( sizeof(*pNew) + (n+1) );
- if( pNew==0 ) return 0;
- pNew->zCanonicalName = (char*)&pNew[1];
- memcpy(pNew->zCanonicalName, zAbsoluteName, n+1);
- n = vxworksSimplifyName(pNew->zCanonicalName, n);
-
- /* Search for an existing entry that matching the canonical name.
- ** If found, increment the reference count and return a pointer to
- ** the existing file ID.
- */
- unixEnterMutex();
- for(pCandidate=vxworksFileList; pCandidate; pCandidate=pCandidate->pNext){
- if( pCandidate->nName==n
- && memcmp(pCandidate->zCanonicalName, pNew->zCanonicalName, n)==0
- ){
- sqlite3_free(pNew);
- pCandidate->nRef++;
- unixLeaveMutex();
- return pCandidate;
- }
- }
-
- /* No match was found. We will make a new file ID */
- pNew->nRef = 1;
- pNew->nName = n;
- pNew->pNext = vxworksFileList;
- vxworksFileList = pNew;
- unixLeaveMutex();
- return pNew;
-}
-
-/*
-** Decrement the reference count on a vxworksFileId object. Free
-** the object when the reference count reaches zero.
-*/
-static void vxworksReleaseFileId(struct vxworksFileId *pId){
- unixEnterMutex();
- assert( pId->nRef>0 );
- pId->nRef--;
- if( pId->nRef==0 ){
- struct vxworksFileId **pp;
- for(pp=&vxworksFileList; *pp && *pp!=pId; pp = &((*pp)->pNext)){}
- assert( *pp==pId );
- *pp = pId->pNext;
- sqlite3_free(pId);
- }
- unixLeaveMutex();
-}
-#endif /* OS_VXWORKS */
-/*************** End of Unique File ID Utility Used By VxWorks ****************
-******************************************************************************/
-
-
-/******************************************************************************
-*************************** Posix Advisory Locking ****************************
-**
-** POSIX advisory locks are broken by design. ANSI STD 1003.1 (1996)
-** section 6.5.2.2 lines 483 through 490 specify that when a process
-** sets or clears a lock, that operation overrides any prior locks set
-** by the same process. It does not explicitly say so, but this implies
-** that it overrides locks set by the same process using a different
-** file descriptor. Consider this test case:
-**
-** int fd1 = open("./file1", O_RDWR|O_CREAT, 0644);
-** int fd2 = open("./file2", O_RDWR|O_CREAT, 0644);
-**
-** Suppose ./file1 and ./file2 are really the same file (because
-** one is a hard or symbolic link to the other) then if you set
-** an exclusive lock on fd1, then try to get an exclusive lock
-** on fd2, it works. I would have expected the second lock to
-** fail since there was already a lock on the file due to fd1.
-** But not so. Since both locks came from the same process, the
-** second overrides the first, even though they were on different
-** file descriptors opened on different file names.
-**
-** This means that we cannot use POSIX locks to synchronize file access
-** among competing threads of the same process. POSIX locks will work fine
-** to synchronize access for threads in separate processes, but not
-** threads within the same process.
-**
-** To work around the problem, SQLite has to manage file locks internally
-** on its own. Whenever a new database is opened, we have to find the
-** specific inode of the database file (the inode is determined by the
-** st_dev and st_ino fields of the stat structure that fstat() fills in)
-** and check for locks already existing on that inode. When locks are
-** created or removed, we have to look at our own internal record of the
-** locks to see if another thread has previously set a lock on that same
-** inode.
-**
-** (Aside: The use of inode numbers as unique IDs does not work on VxWorks.
-** For VxWorks, we have to use the alternative unique ID system based on
-** canonical filename and implemented in the previous division.)
-**
-** The sqlite3_file structure for POSIX is no longer just an integer file
-** descriptor. It is now a structure that holds the integer file
-** descriptor and a pointer to a structure that describes the internal
-** locks on the corresponding inode. There is one locking structure
-** per inode, so if the same inode is opened twice, both unixFile structures
-** point to the same locking structure. The locking structure keeps
-** a reference count (so we will know when to delete it) and a "cnt"
-** field that tells us its internal lock status. cnt==0 means the
-** file is unlocked. cnt==-1 means the file has an exclusive lock.
-** cnt>0 means there are cnt shared locks on the file.
-**
-** Any attempt to lock or unlock a file first checks the locking
-** structure. The fcntl() system call is only invoked to set a
-** POSIX lock if the internal lock structure transitions between
-** a locked and an unlocked state.
-**
-** But wait: there are yet more problems with POSIX advisory locks.
-**
-** If you close a file descriptor that points to a file that has locks,
-** all locks on that file that are owned by the current process are
-** released. To work around this problem, each unixInodeInfo object
-** maintains a count of the number of pending locks on tha inode.
-** When an attempt is made to close an unixFile, if there are
-** other unixFile open on the same inode that are holding locks, the call
-** to close() the file descriptor is deferred until all of the locks clear.
-** The unixInodeInfo structure keeps a list of file descriptors that need to
-** be closed and that list is walked (and cleared) when the last lock
-** clears.
-**
-** Yet another problem: LinuxThreads do not play well with posix locks.
-**
-** Many older versions of linux use the LinuxThreads library which is
-** not posix compliant. Under LinuxThreads, a lock created by thread
-** A cannot be modified or overridden by a different thread B.
-** Only thread A can modify the lock. Locking behavior is correct
-** if the appliation uses the newer Native Posix Thread Library (NPTL)
-** on linux - with NPTL a lock created by thread A can override locks
-** in thread B. But there is no way to know at compile-time which
-** threading library is being used. So there is no way to know at
-** compile-time whether or not thread A can override locks on thread B.
-** One has to do a run-time check to discover the behavior of the
-** current process.
-**
-** SQLite used to support LinuxThreads. But support for LinuxThreads
-** was dropped beginning with version 3.7.0. SQLite will still work with
-** LinuxThreads provided that (1) there is no more than one connection
-** per database file in the same process and (2) database connections
-** do not move across threads.
-*/
-
-/*
-** An instance of the following structure serves as the key used
-** to locate a particular unixInodeInfo object.
-*/
-struct unixFileId {
- dev_t dev; /* Device number */
-#if OS_VXWORKS
- struct vxworksFileId *pId; /* Unique file ID for vxworks. */
-#else
- /* We are told that some versions of Android contain a bug that
- ** sizes ino_t at only 32-bits instead of 64-bits. (See
- ** https://android-review.googlesource.com/#/c/115351/3/dist/sqlite3.c)
- ** To work around this, always allocate 64-bits for the inode number.
- ** On small machines that only have 32-bit inodes, this wastes 4 bytes,
- ** but that should not be a big deal. */
- /* WAS: ino_t ino; */
- u64 ino; /* Inode number */
-#endif
-};
-
-/*
-** An instance of the following structure is allocated for each open
-** inode. Or, on LinuxThreads, there is one of these structures for
-** each inode opened by each thread.
-**
-** A single inode can have multiple file descriptors, so each unixFile
-** structure contains a pointer to an instance of this object and this
-** object keeps a count of the number of unixFile pointing to it.
-**
-** Mutex rules:
-**
-** (1) Only the pLockMutex mutex must be held in order to read or write
-** any of the locking fields:
-** nShared, nLock, eFileLock, bProcessLock, pUnused
-**
-** (2) When nRef>0, then the following fields are unchanging and can
-** be read (but not written) without holding any mutex:
-** fileId, pLockMutex
-**
-** (3) With the exceptions above, all the fields may only be read
-** or written while holding the global unixBigLock mutex.
-**
-** Deadlock prevention: The global unixBigLock mutex may not
-** be acquired while holding the pLockMutex mutex. If both unixBigLock
-** and pLockMutex are needed, then unixBigLock must be acquired first.
-*/
-struct unixInodeInfo {
- struct unixFileId fileId; /* The lookup key */
- sqlite3_mutex *pLockMutex; /* Hold this mutex for... */
- int nShared; /* Number of SHARED locks held */
- int nLock; /* Number of outstanding file locks */
- unsigned char eFileLock; /* One of SHARED_LOCK, RESERVED_LOCK etc. */
- unsigned char bProcessLock; /* An exclusive process lock is held */
- UnixUnusedFd *pUnused; /* Unused file descriptors to close */
- int nRef; /* Number of pointers to this structure */
- unixShmNode *pShmNode; /* Shared memory associated with this inode */
- unixInodeInfo *pNext; /* List of all unixInodeInfo objects */
- unixInodeInfo *pPrev; /* .... doubly linked */
-#if SQLITE_ENABLE_LOCKING_STYLE
- unsigned long long sharedByte; /* for AFP simulated shared lock */
-#endif
-#if OS_VXWORKS
- sem_t *pSem; /* Named POSIX semaphore */
- char aSemName[MAX_PATHNAME+2]; /* Name of that semaphore */
-#endif
-};
-
-/*
-** A lists of all unixInodeInfo objects.
-*/
-static unixInodeInfo *inodeList = 0; /* All unixInodeInfo objects */
-
-#ifdef SQLITE_DEBUG
-/*
-** True if the inode mutex is held, or not. Used only within assert()
-** to help verify correct mutex usage.
-*/
-int unixFileMutexHeld(unixFile *pFile){
- assert( pFile->pInode );
- return sqlite3_mutex_held(pFile->pInode->pLockMutex);
-}
-int unixFileMutexNotheld(unixFile *pFile){
- assert( pFile->pInode );
- return sqlite3_mutex_notheld(pFile->pInode->pLockMutex);
-}
-#endif
-
-/*
-**
-** This function - unixLogErrorAtLine(), is only ever called via the macro
-** unixLogError().
-**
-** It is invoked after an error occurs in an OS function and errno has been
-** set. It logs a message using sqlite3_log() containing the current value of
-** errno and, if possible, the human-readable equivalent from strerror() or
-** strerror_r().
-**
-** The first argument passed to the macro should be the error code that
-** will be returned to SQLite (e.g. SQLITE_IOERR_DELETE, SQLITE_CANTOPEN).
-** The two subsequent arguments should be the name of the OS function that
-** failed (e.g. "unlink", "open") and the associated file-system path,
-** if any.
-*/
-#define unixLogError(a,b,c) unixLogErrorAtLine(a,b,c,__LINE__)
-static int unixLogErrorAtLine(
- int errcode, /* SQLite error code */
- const char *zFunc, /* Name of OS function that failed */
- const char *zPath, /* File path associated with error */
- int iLine /* Source line number where error occurred */
-){
- char *zErr; /* Message from strerror() or equivalent */
- int iErrno = errno; /* Saved syscall error number */
-
- /* If this is not a threadsafe build (SQLITE_THREADSAFE==0), then use
- ** the strerror() function to obtain the human-readable error message
- ** equivalent to errno. Otherwise, use strerror_r().
- */
-#if SQLITE_THREADSAFE && defined(HAVE_STRERROR_R)
- char aErr[80];
- memset(aErr, 0, sizeof(aErr));
- zErr = aErr;
-
- /* If STRERROR_R_CHAR_P (set by autoconf scripts) or __USE_GNU is defined,
- ** assume that the system provides the GNU version of strerror_r() that
- ** returns a pointer to a buffer containing the error message. That pointer
- ** may point to aErr[], or it may point to some static storage somewhere.
- ** Otherwise, assume that the system provides the POSIX version of
- ** strerror_r(), which always writes an error message into aErr[].
- **
- ** If the code incorrectly assumes that it is the POSIX version that is
- ** available, the error message will often be an empty string. Not a
- ** huge problem. Incorrectly concluding that the GNU version is available
- ** could lead to a segfault though.
- */
-#if defined(STRERROR_R_CHAR_P) || defined(__USE_GNU)
- zErr =
-# endif
- strerror_r(iErrno, aErr, sizeof(aErr)-1);
-
-#elif SQLITE_THREADSAFE
- /* This is a threadsafe build, but strerror_r() is not available. */
- zErr = "";
-#else
- /* Non-threadsafe build, use strerror(). */
- zErr = strerror(iErrno);
-#endif
-
- if( zPath==0 ) zPath = "";
- sqlite3_log(errcode,
- "os_unix.c:%d: (%d) %s(%s) - %s",
- iLine, iErrno, zFunc, zPath, zErr
- );
-
- return errcode;
-}
-
-/*
-** Close a file descriptor.
-**
-** We assume that close() almost always works, since it is only in a
-** very sick application or on a very sick platform that it might fail.
-** If it does fail, simply leak the file descriptor, but do log the
-** error.
-**
-** Note that it is not safe to retry close() after EINTR since the
-** file descriptor might have already been reused by another thread.
-** So we don't even try to recover from an EINTR. Just log the error
-** and move on.
-*/
-static void robust_close(unixFile *pFile, int h, int lineno){
- if( osClose(h) ){
- unixLogErrorAtLine(SQLITE_IOERR_CLOSE, "close",
- pFile ? pFile->zPath : 0, lineno);
- }
-}
-
-/*
-** Set the pFile->lastErrno. Do this in a subroutine as that provides
-** a convenient place to set a breakpoint.
-*/
-static void storeLastErrno(unixFile *pFile, int error){
- pFile->lastErrno = error;
-}
-
-/*
-** Close all file descriptors accumuated in the unixInodeInfo->pUnused list.
-*/
-static void closePendingFds(unixFile *pFile){
- unixInodeInfo *pInode = pFile->pInode;
- UnixUnusedFd *p;
- UnixUnusedFd *pNext;
- assert( unixFileMutexHeld(pFile) );
- for(p=pInode->pUnused; p; p=pNext){
- pNext = p->pNext;
- robust_close(pFile, p->fd, __LINE__);
- sqlite3_free(p);
- }
- pInode->pUnused = 0;
-}
-
-/*
-** Release a unixInodeInfo structure previously allocated by findInodeInfo().
-**
-** The mutex entered using the unixEnterMutex() function must be held
-** when this function is called.
-*/
-static void releaseInodeInfo(unixFile *pFile){
- unixInodeInfo *pInode = pFile->pInode;
- assert( unixMutexHeld() );
- assert( unixFileMutexNotheld(pFile) );
- if( ALWAYS(pInode) ){
- pInode->nRef--;
- if( pInode->nRef==0 ){
- assert( pInode->pShmNode==0 );
- sqlite3_mutex_enter(pInode->pLockMutex);
- closePendingFds(pFile);
- sqlite3_mutex_leave(pInode->pLockMutex);
- if( pInode->pPrev ){
- assert( pInode->pPrev->pNext==pInode );
- pInode->pPrev->pNext = pInode->pNext;
- }else{
- assert( inodeList==pInode );
- inodeList = pInode->pNext;
- }
- if( pInode->pNext ){
- assert( pInode->pNext->pPrev==pInode );
- pInode->pNext->pPrev = pInode->pPrev;
- }
- sqlite3_mutex_free(pInode->pLockMutex);
- sqlite3_free(pInode);
- }
- }
-}
-
-/*
-** Given a file descriptor, locate the unixInodeInfo object that
-** describes that file descriptor. Create a new one if necessary. The
-** return value might be uninitialized if an error occurs.
-**
-** The mutex entered using the unixEnterMutex() function must be held
-** when this function is called.
-**
-** Return an appropriate error code.
-*/
-static int findInodeInfo(
- unixFile *pFile, /* Unix file with file desc used in the key */
- unixInodeInfo **ppInode /* Return the unixInodeInfo object here */
-){
- int rc; /* System call return code */
- int fd; /* The file descriptor for pFile */
- struct unixFileId fileId; /* Lookup key for the unixInodeInfo */
- struct stat statbuf; /* Low-level file information */
- unixInodeInfo *pInode = 0; /* Candidate unixInodeInfo object */
-
- assert( unixMutexHeld() );
-
- /* Get low-level information about the file that we can used to
- ** create a unique name for the file.
- */
- fd = pFile->h;
- rc = osFstat(fd, &statbuf);
- if( rc!=0 ){
- storeLastErrno(pFile, errno);
-#if defined(EOVERFLOW) && defined(SQLITE_DISABLE_LFS)
- if( pFile->lastErrno==EOVERFLOW ) return SQLITE_NOLFS;
-#endif
- return SQLITE_IOERR;
- }
-
-#ifdef __APPLE__
- /* On OS X on an msdos filesystem, the inode number is reported
- ** incorrectly for zero-size files. See ticket #3260. To work
- ** around this problem (we consider it a bug in OS X, not SQLite)
- ** we always increase the file size to 1 by writing a single byte
- ** prior to accessing the inode number. The one byte written is
- ** an ASCII 'S' character which also happens to be the first byte
- ** in the header of every SQLite database. In this way, if there
- ** is a race condition such that another thread has already populated
- ** the first page of the database, no damage is done.
- */
- if( statbuf.st_size==0 && (pFile->fsFlags & SQLITE_FSFLAGS_IS_MSDOS)!=0 ){
- do{ rc = osWrite(fd, "S", 1); }while( rc<0 && errno==EINTR );
- if( rc!=1 ){
- storeLastErrno(pFile, errno);
- return SQLITE_IOERR;
- }
- rc = osFstat(fd, &statbuf);
- if( rc!=0 ){
- storeLastErrno(pFile, errno);
- return SQLITE_IOERR;
- }
- }
-#endif
-
- memset(&fileId, 0, sizeof(fileId));
- fileId.dev = statbuf.st_dev;
-#if OS_VXWORKS
- fileId.pId = pFile->pId;
-#else
- fileId.ino = (u64)statbuf.st_ino;
-#endif
- pInode = inodeList;
- while( pInode && memcmp(&fileId, &pInode->fileId, sizeof(fileId)) ){
- pInode = pInode->pNext;
- }
- if( pInode==0 ){
- pInode = sqlite3_malloc64( sizeof(*pInode) );
- if( pInode==0 ){
- return SQLITE_NOMEM_BKPT;
- }
- memset(pInode, 0, sizeof(*pInode));
- memcpy(&pInode->fileId, &fileId, sizeof(fileId));
- if( sqlite3GlobalConfig.bCoreMutex ){
- pInode->pLockMutex = sqlite3_mutex_alloc(SQLITE_MUTEX_FAST);
- if( pInode->pLockMutex==0 ){
- sqlite3_free(pInode);
- return SQLITE_NOMEM_BKPT;
- }
- }
- pInode->nRef = 1;
- pInode->pNext = inodeList;
- pInode->pPrev = 0;
- if( inodeList ) inodeList->pPrev = pInode;
- inodeList = pInode;
- }else{
- pInode->nRef++;
- }
- *ppInode = pInode;
- return SQLITE_OK;
-}
-
-/*
-** Return TRUE if pFile has been renamed or unlinked since it was first opened.
-*/
-static int fileHasMoved(unixFile *pFile){
-#if OS_VXWORKS
- return pFile->pInode!=0 && pFile->pId!=pFile->pInode->fileId.pId;
-#else
- struct stat buf;
- return pFile->pInode!=0 &&
- (osStat(pFile->zPath, &buf)!=0
- || (u64)buf.st_ino!=pFile->pInode->fileId.ino);
-#endif
-}
-
-
-/*
-** Check a unixFile that is a database. Verify the following:
-**
-** (1) There is exactly one hard link on the file
-** (2) The file is not a symbolic link
-** (3) The file has not been renamed or unlinked
-**
-** Issue sqlite3_log(SQLITE_WARNING,...) messages if anything is not right.
-*/
-static void verifyDbFile(unixFile *pFile){
- struct stat buf;
- int rc;
-
- /* These verifications occurs for the main database only */
- if( pFile->ctrlFlags & UNIXFILE_NOLOCK ) return;
-
- rc = osFstat(pFile->h, &buf);
- if( rc!=0 ){
- sqlite3_log(SQLITE_WARNING, "cannot fstat db file %s", pFile->zPath);
- return;
- }
- if( buf.st_nlink==0 ){
- sqlite3_log(SQLITE_WARNING, "file unlinked while open: %s", pFile->zPath);
- return;
- }
- if( buf.st_nlink>1 ){
- sqlite3_log(SQLITE_WARNING, "multiple links to file: %s", pFile->zPath);
- return;
- }
- if( fileHasMoved(pFile) ){
- sqlite3_log(SQLITE_WARNING, "file renamed while open: %s", pFile->zPath);
- return;
- }
-}
-
-
-/*
-** This routine checks if there is a RESERVED lock held on the specified
-** file by this or any other process. If such a lock is held, set *pResOut
-** to a non-zero value otherwise *pResOut is set to zero. The return value
-** is set to SQLITE_OK unless an I/O error occurs during lock checking.
-*/
-static int unixCheckReservedLock(sqlite3_file *id, int *pResOut){
- int rc = SQLITE_OK;
- int reserved = 0;
- unixFile *pFile = (unixFile*)id;
-
- SimulateIOError( return SQLITE_IOERR_CHECKRESERVEDLOCK; );
-
- assert( pFile );
- assert( pFile->eFileLock<=SHARED_LOCK );
- sqlite3_mutex_enter(pFile->pInode->pLockMutex);
-
- /* Check if a thread in this process holds such a lock */
- if( pFile->pInode->eFileLock>SHARED_LOCK ){
- reserved = 1;
- }
-
- /* Otherwise see if some other process holds it.
- */
-#ifndef __DJGPP__
- if( !reserved && !pFile->pInode->bProcessLock ){
- struct flock lock;
- lock.l_whence = SEEK_SET;
- lock.l_start = RESERVED_BYTE;
- lock.l_len = 1;
- lock.l_type = F_WRLCK;
- if( osFcntl(pFile->h, F_GETLK, &lock) ){
- rc = SQLITE_IOERR_CHECKRESERVEDLOCK;
- storeLastErrno(pFile, errno);
- } else if( lock.l_type!=F_UNLCK ){
- reserved = 1;
- }
- }
-#endif
-
- sqlite3_mutex_leave(pFile->pInode->pLockMutex);
- OSTRACE(("TEST WR-LOCK %d %d %d (unix)\n", pFile->h, rc, reserved));
-
- *pResOut = reserved;
- return rc;
-}
-
-/*
-** Set a posix-advisory-lock.
-**
-** There are two versions of this routine. If compiled with
-** SQLITE_ENABLE_SETLK_TIMEOUT then the routine has an extra parameter
-** which is a pointer to a unixFile. If the unixFile->iBusyTimeout
-** value is set, then it is the number of milliseconds to wait before
-** failing the lock. The iBusyTimeout value is always reset back to
-** zero on each call.
-**
-** If SQLITE_ENABLE_SETLK_TIMEOUT is not defined, then do a non-blocking
-** attempt to set the lock.
-*/
-#ifndef SQLITE_ENABLE_SETLK_TIMEOUT
-# define osSetPosixAdvisoryLock(h,x,t) osFcntl(h,F_SETLK,x)
-#else
-static int osSetPosixAdvisoryLock(
- int h, /* The file descriptor on which to take the lock */
- struct flock *pLock, /* The description of the lock */
- unixFile *pFile /* Structure holding timeout value */
-){
- int rc = osFcntl(h,F_SETLK,pLock);
- while( rc<0 && pFile->iBusyTimeout>0 ){
- /* On systems that support some kind of blocking file lock with a timeout,
- ** make appropriate changes here to invoke that blocking file lock. On
- ** generic posix, however, there is no such API. So we simply try the
- ** lock once every millisecond until either the timeout expires, or until
- ** the lock is obtained. */
- usleep(1000);
- rc = osFcntl(h,F_SETLK,pLock);
- pFile->iBusyTimeout--;
- }
- return rc;
-}
-#endif /* SQLITE_ENABLE_SETLK_TIMEOUT */
-
-
-/*
-** Attempt to set a system-lock on the file pFile. The lock is
-** described by pLock.
-**
-** If the pFile was opened read/write from unix-excl, then the only lock
-** ever obtained is an exclusive lock, and it is obtained exactly once
-** the first time any lock is attempted. All subsequent system locking
-** operations become no-ops. Locking operations still happen internally,
-** in order to coordinate access between separate database connections
-** within this process, but all of that is handled in memory and the
-** operating system does not participate.
-**
-** This function is a pass-through to fcntl(F_SETLK) if pFile is using
-** any VFS other than "unix-excl" or if pFile is opened on "unix-excl"
-** and is read-only.
-**
-** Zero is returned if the call completes successfully, or -1 if a call
-** to fcntl() fails. In this case, errno is set appropriately (by fcntl()).
-*/
-static int unixFileLock(unixFile *pFile, struct flock *pLock){
- int rc;
- unixInodeInfo *pInode = pFile->pInode;
- assert( pInode!=0 );
- assert( sqlite3_mutex_held(pInode->pLockMutex) );
- if( (pFile->ctrlFlags & (UNIXFILE_EXCL|UNIXFILE_RDONLY))==UNIXFILE_EXCL ){
- if( pInode->bProcessLock==0 ){
- struct flock lock;
- assert( pInode->nLock==0 );
- lock.l_whence = SEEK_SET;
- lock.l_start = SHARED_FIRST;
- lock.l_len = SHARED_SIZE;
- lock.l_type = F_WRLCK;
- rc = osSetPosixAdvisoryLock(pFile->h, &lock, pFile);
- if( rc<0 ) return rc;
- pInode->bProcessLock = 1;
- pInode->nLock++;
- }else{
- rc = 0;
- }
- }else{
- rc = osSetPosixAdvisoryLock(pFile->h, pLock, pFile);
- }
- return rc;
-}
-
-/*
-** Lock the file with the lock specified by parameter eFileLock - one
-** of the following:
-**
-** (1) SHARED_LOCK
-** (2) RESERVED_LOCK
-** (3) PENDING_LOCK
-** (4) EXCLUSIVE_LOCK
-**
-** Sometimes when requesting one lock state, additional lock states
-** are inserted in between. The locking might fail on one of the later
-** transitions leaving the lock state different from what it started but
-** still short of its goal. The following chart shows the allowed
-** transitions and the inserted intermediate states:
-**
-** UNLOCKED -> SHARED
-** SHARED -> RESERVED
-** SHARED -> (PENDING) -> EXCLUSIVE
-** RESERVED -> (PENDING) -> EXCLUSIVE
-** PENDING -> EXCLUSIVE
-**
-** This routine will only increase a lock. Use the sqlite3OsUnlock()
-** routine to lower a locking level.
-*/
-static int unixLock(sqlite3_file *id, int eFileLock){
- /* The following describes the implementation of the various locks and
- ** lock transitions in terms of the POSIX advisory shared and exclusive
- ** lock primitives (called read-locks and write-locks below, to avoid
- ** confusion with SQLite lock names). The algorithms are complicated
- ** slightly in order to be compatible with Windows95 systems simultaneously
- ** accessing the same database file, in case that is ever required.
- **
- ** Symbols defined in os.h indentify the 'pending byte' and the 'reserved
- ** byte', each single bytes at well known offsets, and the 'shared byte
- ** range', a range of 510 bytes at a well known offset.
- **
- ** To obtain a SHARED lock, a read-lock is obtained on the 'pending
- ** byte'. If this is successful, 'shared byte range' is read-locked
- ** and the lock on the 'pending byte' released. (Legacy note: When
- ** SQLite was first developed, Windows95 systems were still very common,
- ** and Widnows95 lacks a shared-lock capability. So on Windows95, a
- ** single randomly selected by from the 'shared byte range' is locked.
- ** Windows95 is now pretty much extinct, but this work-around for the
- ** lack of shared-locks on Windows95 lives on, for backwards
- ** compatibility.)
- **
- ** A process may only obtain a RESERVED lock after it has a SHARED lock.
- ** A RESERVED lock is implemented by grabbing a write-lock on the
- ** 'reserved byte'.
- **
- ** A process may only obtain a PENDING lock after it has obtained a
- ** SHARED lock. A PENDING lock is implemented by obtaining a write-lock
- ** on the 'pending byte'. This ensures that no new SHARED locks can be
- ** obtained, but existing SHARED locks are allowed to persist. A process
- ** does not have to obtain a RESERVED lock on the way to a PENDING lock.
- ** This property is used by the algorithm for rolling back a journal file
- ** after a crash.
- **
- ** An EXCLUSIVE lock, obtained after a PENDING lock is held, is
- ** implemented by obtaining a write-lock on the entire 'shared byte
- ** range'. Since all other locks require a read-lock on one of the bytes
- ** within this range, this ensures that no other locks are held on the
- ** database.
- */
- int rc = SQLITE_OK;
- unixFile *pFile = (unixFile*)id;
- unixInodeInfo *pInode;
- struct flock lock;
- int tErrno = 0;
-
- assert( pFile );
- OSTRACE(("LOCK %d %s was %s(%s,%d) pid=%d (unix)\n", pFile->h,
- azFileLock(eFileLock), azFileLock(pFile->eFileLock),
- azFileLock(pFile->pInode->eFileLock), pFile->pInode->nShared,
- osGetpid(0)));
-
- /* If there is already a lock of this type or more restrictive on the
- ** unixFile, do nothing. Don't use the end_lock: exit path, as
- ** unixEnterMutex() hasn't been called yet.
- */
- if( pFile->eFileLock>=eFileLock ){
- OSTRACE(("LOCK %d %s ok (already held) (unix)\n", pFile->h,
- azFileLock(eFileLock)));
- return SQLITE_OK;
- }
-
- /* Make sure the locking sequence is correct.
- ** (1) We never move from unlocked to anything higher than shared lock.
- ** (2) SQLite never explicitly requests a pendig lock.
- ** (3) A shared lock is always held when a reserve lock is requested.
- */
- assert( pFile->eFileLock!=NO_LOCK || eFileLock==SHARED_LOCK );
- assert( eFileLock!=PENDING_LOCK );
- assert( eFileLock!=RESERVED_LOCK || pFile->eFileLock==SHARED_LOCK );
-
- /* This mutex is needed because pFile->pInode is shared across threads
- */
- pInode = pFile->pInode;
- sqlite3_mutex_enter(pInode->pLockMutex);
-
- /* If some thread using this PID has a lock via a different unixFile*
- ** handle that precludes the requested lock, return BUSY.
- */
- if( (pFile->eFileLock!=pInode->eFileLock &&
- (pInode->eFileLock>=PENDING_LOCK || eFileLock>SHARED_LOCK))
- ){
- rc = SQLITE_BUSY;
- goto end_lock;
- }
-
- /* If a SHARED lock is requested, and some thread using this PID already
- ** has a SHARED or RESERVED lock, then increment reference counts and
- ** return SQLITE_OK.
- */
- if( eFileLock==SHARED_LOCK &&
- (pInode->eFileLock==SHARED_LOCK || pInode->eFileLock==RESERVED_LOCK) ){
- assert( eFileLock==SHARED_LOCK );
- assert( pFile->eFileLock==0 );
- assert( pInode->nShared>0 );
- pFile->eFileLock = SHARED_LOCK;
- pInode->nShared++;
- pInode->nLock++;
- goto end_lock;
- }
-
-
- /* A PENDING lock is needed before acquiring a SHARED lock and before
- ** acquiring an EXCLUSIVE lock. For the SHARED lock, the PENDING will
- ** be released.
- */
- lock.l_len = 1L;
- lock.l_whence = SEEK_SET;
- if( eFileLock==SHARED_LOCK
- || (eFileLock==EXCLUSIVE_LOCK && pFile->eFileLocknShared==0 );
- assert( pInode->eFileLock==0 );
- assert( rc==SQLITE_OK );
-
- /* Now get the read-lock */
- lock.l_start = SHARED_FIRST;
- lock.l_len = SHARED_SIZE;
- if( unixFileLock(pFile, &lock) ){
- tErrno = errno;
- rc = sqliteErrorFromPosixError(tErrno, SQLITE_IOERR_LOCK);
- }
-
- /* Drop the temporary PENDING lock */
- lock.l_start = PENDING_BYTE;
- lock.l_len = 1L;
- lock.l_type = F_UNLCK;
- if( unixFileLock(pFile, &lock) && rc==SQLITE_OK ){
- /* This could happen with a network mount */
- tErrno = errno;
- rc = SQLITE_IOERR_UNLOCK;
- }
-
- if( rc ){
- if( rc!=SQLITE_BUSY ){
- storeLastErrno(pFile, tErrno);
- }
- goto end_lock;
- }else{
- pFile->eFileLock = SHARED_LOCK;
- pInode->nLock++;
- pInode->nShared = 1;
- }
- }else if( eFileLock==EXCLUSIVE_LOCK && pInode->nShared>1 ){
- /* We are trying for an exclusive lock but another thread in this
- ** same process is still holding a shared lock. */
- rc = SQLITE_BUSY;
- }else{
- /* The request was for a RESERVED or EXCLUSIVE lock. It is
- ** assumed that there is a SHARED or greater lock on the file
- ** already.
- */
- assert( 0!=pFile->eFileLock );
- lock.l_type = F_WRLCK;
-
- assert( eFileLock==RESERVED_LOCK || eFileLock==EXCLUSIVE_LOCK );
- if( eFileLock==RESERVED_LOCK ){
- lock.l_start = RESERVED_BYTE;
- lock.l_len = 1L;
- }else{
- lock.l_start = SHARED_FIRST;
- lock.l_len = SHARED_SIZE;
- }
-
- if( unixFileLock(pFile, &lock) ){
- tErrno = errno;
- rc = sqliteErrorFromPosixError(tErrno, SQLITE_IOERR_LOCK);
- if( rc!=SQLITE_BUSY ){
- storeLastErrno(pFile, tErrno);
- }
- }
- }
-
-
-#ifdef SQLITE_DEBUG
- /* Set up the transaction-counter change checking flags when
- ** transitioning from a SHARED to a RESERVED lock. The change
- ** from SHARED to RESERVED marks the beginning of a normal
- ** write operation (not a hot journal rollback).
- */
- if( rc==SQLITE_OK
- && pFile->eFileLock<=SHARED_LOCK
- && eFileLock==RESERVED_LOCK
- ){
- pFile->transCntrChng = 0;
- pFile->dbUpdate = 0;
- pFile->inNormalWrite = 1;
- }
-#endif
-
-
- if( rc==SQLITE_OK ){
- pFile->eFileLock = eFileLock;
- pInode->eFileLock = eFileLock;
- }else if( eFileLock==EXCLUSIVE_LOCK ){
- pFile->eFileLock = PENDING_LOCK;
- pInode->eFileLock = PENDING_LOCK;
- }
-
-end_lock:
- sqlite3_mutex_leave(pInode->pLockMutex);
- OSTRACE(("LOCK %d %s %s (unix)\n", pFile->h, azFileLock(eFileLock),
- rc==SQLITE_OK ? "ok" : "failed"));
- return rc;
-}
-
-/*
-** Add the file descriptor used by file handle pFile to the corresponding
-** pUnused list.
-*/
-static void setPendingFd(unixFile *pFile){
- unixInodeInfo *pInode = pFile->pInode;
- UnixUnusedFd *p = pFile->pPreallocatedUnused;
- assert( unixFileMutexHeld(pFile) );
- p->pNext = pInode->pUnused;
- pInode->pUnused = p;
- pFile->h = -1;
- pFile->pPreallocatedUnused = 0;
-}
-
-/*
-** Lower the locking level on file descriptor pFile to eFileLock. eFileLock
-** must be either NO_LOCK or SHARED_LOCK.
-**
-** If the locking level of the file descriptor is already at or below
-** the requested locking level, this routine is a no-op.
-**
-** If handleNFSUnlock is true, then on downgrading an EXCLUSIVE_LOCK to SHARED
-** the byte range is divided into 2 parts and the first part is unlocked then
-** set to a read lock, then the other part is simply unlocked. This works
-** around a bug in BSD NFS lockd (also seen on MacOSX 10.3+) that fails to
-** remove the write lock on a region when a read lock is set.
-*/
-static int posixUnlock(sqlite3_file *id, int eFileLock, int handleNFSUnlock){
- unixFile *pFile = (unixFile*)id;
- unixInodeInfo *pInode;
- struct flock lock;
- int rc = SQLITE_OK;
-
- assert( pFile );
- OSTRACE(("UNLOCK %d %d was %d(%d,%d) pid=%d (unix)\n", pFile->h, eFileLock,
- pFile->eFileLock, pFile->pInode->eFileLock, pFile->pInode->nShared,
- osGetpid(0)));
-
- assert( eFileLock<=SHARED_LOCK );
- if( pFile->eFileLock<=eFileLock ){
- return SQLITE_OK;
- }
- pInode = pFile->pInode;
- sqlite3_mutex_enter(pInode->pLockMutex);
- assert( pInode->nShared!=0 );
- if( pFile->eFileLock>SHARED_LOCK ){
- assert( pInode->eFileLock==pFile->eFileLock );
-
-#ifdef SQLITE_DEBUG
- /* When reducing a lock such that other processes can start
- ** reading the database file again, make sure that the
- ** transaction counter was updated if any part of the database
- ** file changed. If the transaction counter is not updated,
- ** other connections to the same file might not realize that
- ** the file has changed and hence might not know to flush their
- ** cache. The use of a stale cache can lead to database corruption.
- */
- pFile->inNormalWrite = 0;
-#endif
-
- /* downgrading to a shared lock on NFS involves clearing the write lock
- ** before establishing the readlock - to avoid a race condition we downgrade
- ** the lock in 2 blocks, so that part of the range will be covered by a
- ** write lock until the rest is covered by a read lock:
- ** 1: [WWWWW]
- ** 2: [....W]
- ** 3: [RRRRW]
- ** 4: [RRRR.]
- */
- if( eFileLock==SHARED_LOCK ){
-#if !defined(__APPLE__) || !SQLITE_ENABLE_LOCKING_STYLE
- (void)handleNFSUnlock;
- assert( handleNFSUnlock==0 );
-#endif
-#if defined(__APPLE__) && SQLITE_ENABLE_LOCKING_STYLE
- if( handleNFSUnlock ){
- int tErrno; /* Error code from system call errors */
- off_t divSize = SHARED_SIZE - 1;
-
- lock.l_type = F_UNLCK;
- lock.l_whence = SEEK_SET;
- lock.l_start = SHARED_FIRST;
- lock.l_len = divSize;
- if( unixFileLock(pFile, &lock)==(-1) ){
- tErrno = errno;
- rc = SQLITE_IOERR_UNLOCK;
- storeLastErrno(pFile, tErrno);
- goto end_unlock;
- }
- lock.l_type = F_RDLCK;
- lock.l_whence = SEEK_SET;
- lock.l_start = SHARED_FIRST;
- lock.l_len = divSize;
- if( unixFileLock(pFile, &lock)==(-1) ){
- tErrno = errno;
- rc = sqliteErrorFromPosixError(tErrno, SQLITE_IOERR_RDLOCK);
- if( IS_LOCK_ERROR(rc) ){
- storeLastErrno(pFile, tErrno);
- }
- goto end_unlock;
- }
- lock.l_type = F_UNLCK;
- lock.l_whence = SEEK_SET;
- lock.l_start = SHARED_FIRST+divSize;
- lock.l_len = SHARED_SIZE-divSize;
- if( unixFileLock(pFile, &lock)==(-1) ){
- tErrno = errno;
- rc = SQLITE_IOERR_UNLOCK;
- storeLastErrno(pFile, tErrno);
- goto end_unlock;
- }
- }else
-#endif /* defined(__APPLE__) && SQLITE_ENABLE_LOCKING_STYLE */
- {
- lock.l_type = F_RDLCK;
- lock.l_whence = SEEK_SET;
- lock.l_start = SHARED_FIRST;
- lock.l_len = SHARED_SIZE;
- if( unixFileLock(pFile, &lock) ){
- /* In theory, the call to unixFileLock() cannot fail because another
- ** process is holding an incompatible lock. If it does, this
- ** indicates that the other process is not following the locking
- ** protocol. If this happens, return SQLITE_IOERR_RDLOCK. Returning
- ** SQLITE_BUSY would confuse the upper layer (in practice it causes
- ** an assert to fail). */
- rc = SQLITE_IOERR_RDLOCK;
- storeLastErrno(pFile, errno);
- goto end_unlock;
- }
- }
- }
- lock.l_type = F_UNLCK;
- lock.l_whence = SEEK_SET;
- lock.l_start = PENDING_BYTE;
- lock.l_len = 2L; assert( PENDING_BYTE+1==RESERVED_BYTE );
- if( unixFileLock(pFile, &lock)==0 ){
- pInode->eFileLock = SHARED_LOCK;
- }else{
- rc = SQLITE_IOERR_UNLOCK;
- storeLastErrno(pFile, errno);
- goto end_unlock;
- }
- }
- if( eFileLock==NO_LOCK ){
- /* Decrement the shared lock counter. Release the lock using an
- ** OS call only when all threads in this same process have released
- ** the lock.
- */
- pInode->nShared--;
- if( pInode->nShared==0 ){
- lock.l_type = F_UNLCK;
- lock.l_whence = SEEK_SET;
- lock.l_start = lock.l_len = 0L;
- if( unixFileLock(pFile, &lock)==0 ){
- pInode->eFileLock = NO_LOCK;
- }else{
- rc = SQLITE_IOERR_UNLOCK;
- storeLastErrno(pFile, errno);
- pInode->eFileLock = NO_LOCK;
- pFile->eFileLock = NO_LOCK;
- }
- }
-
- /* Decrement the count of locks against this same file. When the
- ** count reaches zero, close any other file descriptors whose close
- ** was deferred because of outstanding locks.
- */
- pInode->nLock--;
- assert( pInode->nLock>=0 );
- if( pInode->nLock==0 ) closePendingFds(pFile);
- }
-
-end_unlock:
- sqlite3_mutex_leave(pInode->pLockMutex);
- if( rc==SQLITE_OK ){
- pFile->eFileLock = eFileLock;
- }
- return rc;
-}
-
-/*
-** Lower the locking level on file descriptor pFile to eFileLock. eFileLock
-** must be either NO_LOCK or SHARED_LOCK.
-**
-** If the locking level of the file descriptor is already at or below
-** the requested locking level, this routine is a no-op.
-*/
-static int unixUnlock(sqlite3_file *id, int eFileLock){
-#if SQLITE_MAX_MMAP_SIZE>0
- assert( eFileLock==SHARED_LOCK || ((unixFile *)id)->nFetchOut==0 );
-#endif
- return posixUnlock(id, eFileLock, 0);
-}
-
-#if SQLITE_MAX_MMAP_SIZE>0
-static int unixMapfile(unixFile *pFd, i64 nByte);
-static void unixUnmapfile(unixFile *pFd);
-#endif
-
-/*
-** This function performs the parts of the "close file" operation
-** common to all locking schemes. It closes the directory and file
-** handles, if they are valid, and sets all fields of the unixFile
-** structure to 0.
-**
-** It is *not* necessary to hold the mutex when this routine is called,
-** even on VxWorks. A mutex will be acquired on VxWorks by the
-** vxworksReleaseFileId() routine.
-*/
-static int closeUnixFile(sqlite3_file *id){
- unixFile *pFile = (unixFile*)id;
-#if SQLITE_MAX_MMAP_SIZE>0
- unixUnmapfile(pFile);
-#endif
- if( pFile->h>=0 ){
- robust_close(pFile, pFile->h, __LINE__);
- pFile->h = -1;
- }
-#if OS_VXWORKS
- if( pFile->pId ){
- if( pFile->ctrlFlags & UNIXFILE_DELETE ){
- osUnlink(pFile->pId->zCanonicalName);
- }
- vxworksReleaseFileId(pFile->pId);
- pFile->pId = 0;
- }
-#endif
-#ifdef SQLITE_UNLINK_AFTER_CLOSE
- if( pFile->ctrlFlags & UNIXFILE_DELETE ){
- osUnlink(pFile->zPath);
- sqlite3_free(*(char**)&pFile->zPath);
- pFile->zPath = 0;
- }
-#endif
- OSTRACE(("CLOSE %-3d\n", pFile->h));
- OpenCounter(-1);
- sqlite3_free(pFile->pPreallocatedUnused);
- memset(pFile, 0, sizeof(unixFile));
- return SQLITE_OK;
-}
-
-/*
-** Close a file.
-*/
-static int unixClose(sqlite3_file *id){
- int rc = SQLITE_OK;
- unixFile *pFile = (unixFile *)id;
- unixInodeInfo *pInode = pFile->pInode;
-
- assert( pInode!=0 );
- verifyDbFile(pFile);
- unixUnlock(id, NO_LOCK);
- assert( unixFileMutexNotheld(pFile) );
- unixEnterMutex();
-
- /* unixFile.pInode is always valid here. Otherwise, a different close
- ** routine (e.g. nolockClose()) would be called instead.
- */
- assert( pFile->pInode->nLock>0 || pFile->pInode->bProcessLock==0 );
- sqlite3_mutex_enter(pInode->pLockMutex);
- if( pInode->nLock ){
- /* If there are outstanding locks, do not actually close the file just
- ** yet because that would clear those locks. Instead, add the file
- ** descriptor to pInode->pUnused list. It will be automatically closed
- ** when the last lock is cleared.
- */
- setPendingFd(pFile);
- }
- sqlite3_mutex_leave(pInode->pLockMutex);
- releaseInodeInfo(pFile);
- rc = closeUnixFile(id);
- unixLeaveMutex();
- return rc;
-}
-
-/************** End of the posix advisory lock implementation *****************
-******************************************************************************/
-
-/******************************************************************************
-****************************** No-op Locking **********************************
-**
-** Of the various locking implementations available, this is by far the
-** simplest: locking is ignored. No attempt is made to lock the database
-** file for reading or writing.
-**
-** This locking mode is appropriate for use on read-only databases
-** (ex: databases that are burned into CD-ROM, for example.) It can
-** also be used if the application employs some external mechanism to
-** prevent simultaneous access of the same database by two or more
-** database connections. But there is a serious risk of database
-** corruption if this locking mode is used in situations where multiple
-** database connections are accessing the same database file at the same
-** time and one or more of those connections are writing.
-*/
-
-static int nolockCheckReservedLock(sqlite3_file *NotUsed, int *pResOut){
- UNUSED_PARAMETER(NotUsed);
- *pResOut = 0;
- return SQLITE_OK;
-}
-static int nolockLock(sqlite3_file *NotUsed, int NotUsed2){
- UNUSED_PARAMETER2(NotUsed, NotUsed2);
- return SQLITE_OK;
-}
-static int nolockUnlock(sqlite3_file *NotUsed, int NotUsed2){
- UNUSED_PARAMETER2(NotUsed, NotUsed2);
- return SQLITE_OK;
-}
-
-/*
-** Close the file.
-*/
-static int nolockClose(sqlite3_file *id) {
- return closeUnixFile(id);
-}
-
-/******************* End of the no-op lock implementation *********************
-******************************************************************************/
-
-/******************************************************************************
-************************* Begin dot-file Locking ******************************
-**
-** The dotfile locking implementation uses the existence of separate lock
-** files (really a directory) to control access to the database. This works
-** on just about every filesystem imaginable. But there are serious downsides:
-**
-** (1) There is zero concurrency. A single reader blocks all other
-** connections from reading or writing the database.
-**
-** (2) An application crash or power loss can leave stale lock files
-** sitting around that need to be cleared manually.
-**
-** Nevertheless, a dotlock is an appropriate locking mode for use if no
-** other locking strategy is available.
-**
-** Dotfile locking works by creating a subdirectory in the same directory as
-** the database and with the same name but with a ".lock" extension added.
-** The existence of a lock directory implies an EXCLUSIVE lock. All other
-** lock types (SHARED, RESERVED, PENDING) are mapped into EXCLUSIVE.
-*/
-
-/*
-** The file suffix added to the data base filename in order to create the
-** lock directory.
-*/
-#define DOTLOCK_SUFFIX ".lock"
-
-/*
-** This routine checks if there is a RESERVED lock held on the specified
-** file by this or any other process. If such a lock is held, set *pResOut
-** to a non-zero value otherwise *pResOut is set to zero. The return value
-** is set to SQLITE_OK unless an I/O error occurs during lock checking.
-**
-** In dotfile locking, either a lock exists or it does not. So in this
-** variation of CheckReservedLock(), *pResOut is set to true if any lock
-** is held on the file and false if the file is unlocked.
-*/
-static int dotlockCheckReservedLock(sqlite3_file *id, int *pResOut) {
- int rc = SQLITE_OK;
- int reserved = 0;
- unixFile *pFile = (unixFile*)id;
-
- SimulateIOError( return SQLITE_IOERR_CHECKRESERVEDLOCK; );
-
- assert( pFile );
- reserved = osAccess((const char*)pFile->lockingContext, 0)==0;
- OSTRACE(("TEST WR-LOCK %d %d %d (dotlock)\n", pFile->h, rc, reserved));
- *pResOut = reserved;
- return rc;
-}
-
-/*
-** Lock the file with the lock specified by parameter eFileLock - one
-** of the following:
-**
-** (1) SHARED_LOCK
-** (2) RESERVED_LOCK
-** (3) PENDING_LOCK
-** (4) EXCLUSIVE_LOCK
-**
-** Sometimes when requesting one lock state, additional lock states
-** are inserted in between. The locking might fail on one of the later
-** transitions leaving the lock state different from what it started but
-** still short of its goal. The following chart shows the allowed
-** transitions and the inserted intermediate states:
-**
-** UNLOCKED -> SHARED
-** SHARED -> RESERVED
-** SHARED -> (PENDING) -> EXCLUSIVE
-** RESERVED -> (PENDING) -> EXCLUSIVE
-** PENDING -> EXCLUSIVE
-**
-** This routine will only increase a lock. Use the sqlite3OsUnlock()
-** routine to lower a locking level.
-**
-** With dotfile locking, we really only support state (4): EXCLUSIVE.
-** But we track the other locking levels internally.
-*/
-static int dotlockLock(sqlite3_file *id, int eFileLock) {
- unixFile *pFile = (unixFile*)id;
- char *zLockFile = (char *)pFile->lockingContext;
- int rc = SQLITE_OK;
-
-
- /* If we have any lock, then the lock file already exists. All we have
- ** to do is adjust our internal record of the lock level.
- */
- if( pFile->eFileLock > NO_LOCK ){
- pFile->eFileLock = eFileLock;
- /* Always update the timestamp on the old file */
-#ifdef HAVE_UTIME
- utime(zLockFile, NULL);
-#else
- utimes(zLockFile, NULL);
-#endif
- return SQLITE_OK;
- }
-
- /* grab an exclusive lock */
- rc = osMkdir(zLockFile, 0777);
- if( rc<0 ){
- /* failed to open/create the lock directory */
- int tErrno = errno;
- if( EEXIST == tErrno ){
- rc = SQLITE_BUSY;
- } else {
- rc = sqliteErrorFromPosixError(tErrno, SQLITE_IOERR_LOCK);
- if( rc!=SQLITE_BUSY ){
- storeLastErrno(pFile, tErrno);
- }
- }
- return rc;
- }
-
- /* got it, set the type and return ok */
- pFile->eFileLock = eFileLock;
- return rc;
-}
-
-/*
-** Lower the locking level on file descriptor pFile to eFileLock. eFileLock
-** must be either NO_LOCK or SHARED_LOCK.
-**
-** If the locking level of the file descriptor is already at or below
-** the requested locking level, this routine is a no-op.
-**
-** When the locking level reaches NO_LOCK, delete the lock file.
-*/
-static int dotlockUnlock(sqlite3_file *id, int eFileLock) {
- unixFile *pFile = (unixFile*)id;
- char *zLockFile = (char *)pFile->lockingContext;
- int rc;
-
- assert( pFile );
- OSTRACE(("UNLOCK %d %d was %d pid=%d (dotlock)\n", pFile->h, eFileLock,
- pFile->eFileLock, osGetpid(0)));
- assert( eFileLock<=SHARED_LOCK );
-
- /* no-op if possible */
- if( pFile->eFileLock==eFileLock ){
- return SQLITE_OK;
- }
-
- /* To downgrade to shared, simply update our internal notion of the
- ** lock state. No need to mess with the file on disk.
- */
- if( eFileLock==SHARED_LOCK ){
- pFile->eFileLock = SHARED_LOCK;
- return SQLITE_OK;
- }
-
- /* To fully unlock the database, delete the lock file */
- assert( eFileLock==NO_LOCK );
- rc = osRmdir(zLockFile);
- if( rc<0 ){
- int tErrno = errno;
- if( tErrno==ENOENT ){
- rc = SQLITE_OK;
- }else{
- rc = SQLITE_IOERR_UNLOCK;
- storeLastErrno(pFile, tErrno);
- }
- return rc;
- }
- pFile->eFileLock = NO_LOCK;
- return SQLITE_OK;
-}
-
-/*
-** Close a file. Make sure the lock has been released before closing.
-*/
-static int dotlockClose(sqlite3_file *id) {
- unixFile *pFile = (unixFile*)id;
- assert( id!=0 );
- dotlockUnlock(id, NO_LOCK);
- sqlite3_free(pFile->lockingContext);
- return closeUnixFile(id);
-}
-/****************** End of the dot-file lock implementation *******************
-******************************************************************************/
-
-/******************************************************************************
-************************** Begin flock Locking ********************************
-**
-** Use the flock() system call to do file locking.
-**
-** flock() locking is like dot-file locking in that the various
-** fine-grain locking levels supported by SQLite are collapsed into
-** a single exclusive lock. In other words, SHARED, RESERVED, and
-** PENDING locks are the same thing as an EXCLUSIVE lock. SQLite
-** still works when you do this, but concurrency is reduced since
-** only a single process can be reading the database at a time.
-**
-** Omit this section if SQLITE_ENABLE_LOCKING_STYLE is turned off
-*/
-#if SQLITE_ENABLE_LOCKING_STYLE
-
-/*
-** Retry flock() calls that fail with EINTR
-*/
-#ifdef EINTR
-static int robust_flock(int fd, int op){
- int rc;
- do{ rc = flock(fd,op); }while( rc<0 && errno==EINTR );
- return rc;
-}
-#else
-# define robust_flock(a,b) flock(a,b)
-#endif
-
-
-/*
-** This routine checks if there is a RESERVED lock held on the specified
-** file by this or any other process. If such a lock is held, set *pResOut
-** to a non-zero value otherwise *pResOut is set to zero. The return value
-** is set to SQLITE_OK unless an I/O error occurs during lock checking.
-*/
-static int flockCheckReservedLock(sqlite3_file *id, int *pResOut){
- int rc = SQLITE_OK;
- int reserved = 0;
- unixFile *pFile = (unixFile*)id;
-
- SimulateIOError( return SQLITE_IOERR_CHECKRESERVEDLOCK; );
-
- assert( pFile );
-
- /* Check if a thread in this process holds such a lock */
- if( pFile->eFileLock>SHARED_LOCK ){
- reserved = 1;
- }
-
- /* Otherwise see if some other process holds it. */
- if( !reserved ){
- /* attempt to get the lock */
- int lrc = robust_flock(pFile->h, LOCK_EX | LOCK_NB);
- if( !lrc ){
- /* got the lock, unlock it */
- lrc = robust_flock(pFile->h, LOCK_UN);
- if ( lrc ) {
- int tErrno = errno;
- /* unlock failed with an error */
- lrc = SQLITE_IOERR_UNLOCK;
- storeLastErrno(pFile, tErrno);
- rc = lrc;
- }
- } else {
- int tErrno = errno;
- reserved = 1;
- /* someone else might have it reserved */
- lrc = sqliteErrorFromPosixError(tErrno, SQLITE_IOERR_LOCK);
- if( IS_LOCK_ERROR(lrc) ){
- storeLastErrno(pFile, tErrno);
- rc = lrc;
- }
- }
- }
- OSTRACE(("TEST WR-LOCK %d %d %d (flock)\n", pFile->h, rc, reserved));
-
-#ifdef SQLITE_IGNORE_FLOCK_LOCK_ERRORS
- if( (rc & 0xff) == SQLITE_IOERR ){
- rc = SQLITE_OK;
- reserved=1;
- }
-#endif /* SQLITE_IGNORE_FLOCK_LOCK_ERRORS */
- *pResOut = reserved;
- return rc;
-}
-
-/*
-** Lock the file with the lock specified by parameter eFileLock - one
-** of the following:
-**
-** (1) SHARED_LOCK
-** (2) RESERVED_LOCK
-** (3) PENDING_LOCK
-** (4) EXCLUSIVE_LOCK
-**
-** Sometimes when requesting one lock state, additional lock states
-** are inserted in between. The locking might fail on one of the later
-** transitions leaving the lock state different from what it started but
-** still short of its goal. The following chart shows the allowed
-** transitions and the inserted intermediate states:
-**
-** UNLOCKED -> SHARED
-** SHARED -> RESERVED
-** SHARED -> (PENDING) -> EXCLUSIVE
-** RESERVED -> (PENDING) -> EXCLUSIVE
-** PENDING -> EXCLUSIVE
-**
-** flock() only really support EXCLUSIVE locks. We track intermediate
-** lock states in the sqlite3_file structure, but all locks SHARED or
-** above are really EXCLUSIVE locks and exclude all other processes from
-** access the file.
-**
-** This routine will only increase a lock. Use the sqlite3OsUnlock()
-** routine to lower a locking level.
-*/
-static int flockLock(sqlite3_file *id, int eFileLock) {
- int rc = SQLITE_OK;
- unixFile *pFile = (unixFile*)id;
-
- assert( pFile );
-
- /* if we already have a lock, it is exclusive.
- ** Just adjust level and punt on outta here. */
- if (pFile->eFileLock > NO_LOCK) {
- pFile->eFileLock = eFileLock;
- return SQLITE_OK;
- }
-
- /* grab an exclusive lock */
-
- if (robust_flock(pFile->h, LOCK_EX | LOCK_NB)) {
- int tErrno = errno;
- /* didn't get, must be busy */
- rc = sqliteErrorFromPosixError(tErrno, SQLITE_IOERR_LOCK);
- if( IS_LOCK_ERROR(rc) ){
- storeLastErrno(pFile, tErrno);
- }
- } else {
- /* got it, set the type and return ok */
- pFile->eFileLock = eFileLock;
- }
- OSTRACE(("LOCK %d %s %s (flock)\n", pFile->h, azFileLock(eFileLock),
- rc==SQLITE_OK ? "ok" : "failed"));
-#ifdef SQLITE_IGNORE_FLOCK_LOCK_ERRORS
- if( (rc & 0xff) == SQLITE_IOERR ){
- rc = SQLITE_BUSY;
- }
-#endif /* SQLITE_IGNORE_FLOCK_LOCK_ERRORS */
- return rc;
-}
-
-
-/*
-** Lower the locking level on file descriptor pFile to eFileLock. eFileLock
-** must be either NO_LOCK or SHARED_LOCK.
-**
-** If the locking level of the file descriptor is already at or below
-** the requested locking level, this routine is a no-op.
-*/
-static int flockUnlock(sqlite3_file *id, int eFileLock) {
- unixFile *pFile = (unixFile*)id;
-
- assert( pFile );
- OSTRACE(("UNLOCK %d %d was %d pid=%d (flock)\n", pFile->h, eFileLock,
- pFile->eFileLock, osGetpid(0)));
- assert( eFileLock<=SHARED_LOCK );
-
- /* no-op if possible */
- if( pFile->eFileLock==eFileLock ){
- return SQLITE_OK;
- }
-
- /* shared can just be set because we always have an exclusive */
- if (eFileLock==SHARED_LOCK) {
- pFile->eFileLock = eFileLock;
- return SQLITE_OK;
- }
-
- /* no, really, unlock. */
- if( robust_flock(pFile->h, LOCK_UN) ){
-#ifdef SQLITE_IGNORE_FLOCK_LOCK_ERRORS
- return SQLITE_OK;
-#endif /* SQLITE_IGNORE_FLOCK_LOCK_ERRORS */
- return SQLITE_IOERR_UNLOCK;
- }else{
- pFile->eFileLock = NO_LOCK;
- return SQLITE_OK;
- }
-}
-
-/*
-** Close a file.
-*/
-static int flockClose(sqlite3_file *id) {
- assert( id!=0 );
- flockUnlock(id, NO_LOCK);
- return closeUnixFile(id);
-}
-
-#endif /* SQLITE_ENABLE_LOCKING_STYLE && !OS_VXWORK */
-
-/******************* End of the flock lock implementation *********************
-******************************************************************************/
-
-/******************************************************************************
-************************ Begin Named Semaphore Locking ************************
-**
-** Named semaphore locking is only supported on VxWorks.
-**
-** Semaphore locking is like dot-lock and flock in that it really only
-** supports EXCLUSIVE locking. Only a single process can read or write
-** the database file at a time. This reduces potential concurrency, but
-** makes the lock implementation much easier.
-*/
-#if OS_VXWORKS
-
-/*
-** This routine checks if there is a RESERVED lock held on the specified
-** file by this or any other process. If such a lock is held, set *pResOut
-** to a non-zero value otherwise *pResOut is set to zero. The return value
-** is set to SQLITE_OK unless an I/O error occurs during lock checking.
-*/
-static int semXCheckReservedLock(sqlite3_file *id, int *pResOut) {
- int rc = SQLITE_OK;
- int reserved = 0;
- unixFile *pFile = (unixFile*)id;
-
- SimulateIOError( return SQLITE_IOERR_CHECKRESERVEDLOCK; );
-
- assert( pFile );
-
- /* Check if a thread in this process holds such a lock */
- if( pFile->eFileLock>SHARED_LOCK ){
- reserved = 1;
- }
-
- /* Otherwise see if some other process holds it. */
- if( !reserved ){
- sem_t *pSem = pFile->pInode->pSem;
-
- if( sem_trywait(pSem)==-1 ){
- int tErrno = errno;
- if( EAGAIN != tErrno ){
- rc = sqliteErrorFromPosixError(tErrno, SQLITE_IOERR_CHECKRESERVEDLOCK);
- storeLastErrno(pFile, tErrno);
- } else {
- /* someone else has the lock when we are in NO_LOCK */
- reserved = (pFile->eFileLock < SHARED_LOCK);
- }
- }else{
- /* we could have it if we want it */
- sem_post(pSem);
- }
- }
- OSTRACE(("TEST WR-LOCK %d %d %d (sem)\n", pFile->h, rc, reserved));
-
- *pResOut = reserved;
- return rc;
-}
-
-/*
-** Lock the file with the lock specified by parameter eFileLock - one
-** of the following:
-**
-** (1) SHARED_LOCK
-** (2) RESERVED_LOCK
-** (3) PENDING_LOCK
-** (4) EXCLUSIVE_LOCK
-**
-** Sometimes when requesting one lock state, additional lock states
-** are inserted in between. The locking might fail on one of the later
-** transitions leaving the lock state different from what it started but
-** still short of its goal. The following chart shows the allowed
-** transitions and the inserted intermediate states:
-**
-** UNLOCKED -> SHARED
-** SHARED -> RESERVED
-** SHARED -> (PENDING) -> EXCLUSIVE
-** RESERVED -> (PENDING) -> EXCLUSIVE
-** PENDING -> EXCLUSIVE
-**
-** Semaphore locks only really support EXCLUSIVE locks. We track intermediate
-** lock states in the sqlite3_file structure, but all locks SHARED or
-** above are really EXCLUSIVE locks and exclude all other processes from
-** access the file.
-**
-** This routine will only increase a lock. Use the sqlite3OsUnlock()
-** routine to lower a locking level.
-*/
-static int semXLock(sqlite3_file *id, int eFileLock) {
- unixFile *pFile = (unixFile*)id;
- sem_t *pSem = pFile->pInode->pSem;
- int rc = SQLITE_OK;
-
- /* if we already have a lock, it is exclusive.
- ** Just adjust level and punt on outta here. */
- if (pFile->eFileLock > NO_LOCK) {
- pFile->eFileLock = eFileLock;
- rc = SQLITE_OK;
- goto sem_end_lock;
- }
-
- /* lock semaphore now but bail out when already locked. */
- if( sem_trywait(pSem)==-1 ){
- rc = SQLITE_BUSY;
- goto sem_end_lock;
- }
-
- /* got it, set the type and return ok */
- pFile->eFileLock = eFileLock;
-
- sem_end_lock:
- return rc;
-}
-
-/*
-** Lower the locking level on file descriptor pFile to eFileLock. eFileLock
-** must be either NO_LOCK or SHARED_LOCK.
-**
-** If the locking level of the file descriptor is already at or below
-** the requested locking level, this routine is a no-op.
-*/
-static int semXUnlock(sqlite3_file *id, int eFileLock) {
- unixFile *pFile = (unixFile*)id;
- sem_t *pSem = pFile->pInode->pSem;
-
- assert( pFile );
- assert( pSem );
- OSTRACE(("UNLOCK %d %d was %d pid=%d (sem)\n", pFile->h, eFileLock,
- pFile->eFileLock, osGetpid(0)));
- assert( eFileLock<=SHARED_LOCK );
-
- /* no-op if possible */
- if( pFile->eFileLock==eFileLock ){
- return SQLITE_OK;
- }
-
- /* shared can just be set because we always have an exclusive */
- if (eFileLock==SHARED_LOCK) {
- pFile->eFileLock = eFileLock;
- return SQLITE_OK;
- }
-
- /* no, really unlock. */
- if ( sem_post(pSem)==-1 ) {
- int rc, tErrno = errno;
- rc = sqliteErrorFromPosixError(tErrno, SQLITE_IOERR_UNLOCK);
- if( IS_LOCK_ERROR(rc) ){
- storeLastErrno(pFile, tErrno);
- }
- return rc;
- }
- pFile->eFileLock = NO_LOCK;
- return SQLITE_OK;
-}
-
-/*
- ** Close a file.
- */
-static int semXClose(sqlite3_file *id) {
- if( id ){
- unixFile *pFile = (unixFile*)id;
- semXUnlock(id, NO_LOCK);
- assert( pFile );
- assert( unixFileMutexNotheld(pFile) );
- unixEnterMutex();
- releaseInodeInfo(pFile);
- unixLeaveMutex();
- closeUnixFile(id);
- }
- return SQLITE_OK;
-}
-
-#endif /* OS_VXWORKS */
-/*
-** Named semaphore locking is only available on VxWorks.
-**
-*************** End of the named semaphore lock implementation ****************
-******************************************************************************/
-
-
-/******************************************************************************
-*************************** Begin AFP Locking *********************************
-**
-** AFP is the Apple Filing Protocol. AFP is a network filesystem found
-** on Apple Macintosh computers - both OS9 and OSX.
-**
-** Third-party implementations of AFP are available. But this code here
-** only works on OSX.
-*/
-
-#if defined(__APPLE__) && SQLITE_ENABLE_LOCKING_STYLE
-/*
-** The afpLockingContext structure contains all afp lock specific state
-*/
-typedef struct afpLockingContext afpLockingContext;
-struct afpLockingContext {
- int reserved;
- const char *dbPath; /* Name of the open file */
-};
-
-struct ByteRangeLockPB2
-{
- unsigned long long offset; /* offset to first byte to lock */
- unsigned long long length; /* nbr of bytes to lock */
- unsigned long long retRangeStart; /* nbr of 1st byte locked if successful */
- unsigned char unLockFlag; /* 1 = unlock, 0 = lock */
- unsigned char startEndFlag; /* 1=rel to end of fork, 0=rel to start */
- int fd; /* file desc to assoc this lock with */
-};
-
-#define afpfsByteRangeLock2FSCTL _IOWR('z', 23, struct ByteRangeLockPB2)
-
-/*
-** This is a utility for setting or clearing a bit-range lock on an
-** AFP filesystem.
-**
-** Return SQLITE_OK on success, SQLITE_BUSY on failure.
-*/
-static int afpSetLock(
- const char *path, /* Name of the file to be locked or unlocked */
- unixFile *pFile, /* Open file descriptor on path */
- unsigned long long offset, /* First byte to be locked */
- unsigned long long length, /* Number of bytes to lock */
- int setLockFlag /* True to set lock. False to clear lock */
-){
- struct ByteRangeLockPB2 pb;
- int err;
-
- pb.unLockFlag = setLockFlag ? 0 : 1;
- pb.startEndFlag = 0;
- pb.offset = offset;
- pb.length = length;
- pb.fd = pFile->h;
-
- OSTRACE(("AFPSETLOCK [%s] for %d%s in range %llx:%llx\n",
- (setLockFlag?"ON":"OFF"), pFile->h, (pb.fd==-1?"[testval-1]":""),
- offset, length));
- err = fsctl(path, afpfsByteRangeLock2FSCTL, &pb, 0);
- if ( err==-1 ) {
- int rc;
- int tErrno = errno;
- OSTRACE(("AFPSETLOCK failed to fsctl() '%s' %d %s\n",
- path, tErrno, strerror(tErrno)));
-#ifdef SQLITE_IGNORE_AFP_LOCK_ERRORS
- rc = SQLITE_BUSY;
-#else
- rc = sqliteErrorFromPosixError(tErrno,
- setLockFlag ? SQLITE_IOERR_LOCK : SQLITE_IOERR_UNLOCK);
-#endif /* SQLITE_IGNORE_AFP_LOCK_ERRORS */
- if( IS_LOCK_ERROR(rc) ){
- storeLastErrno(pFile, tErrno);
- }
- return rc;
- } else {
- return SQLITE_OK;
- }
-}
-
-/*
-** This routine checks if there is a RESERVED lock held on the specified
-** file by this or any other process. If such a lock is held, set *pResOut
-** to a non-zero value otherwise *pResOut is set to zero. The return value
-** is set to SQLITE_OK unless an I/O error occurs during lock checking.
-*/
-static int afpCheckReservedLock(sqlite3_file *id, int *pResOut){
- int rc = SQLITE_OK;
- int reserved = 0;
- unixFile *pFile = (unixFile*)id;
- afpLockingContext *context;
-
- SimulateIOError( return SQLITE_IOERR_CHECKRESERVEDLOCK; );
-
- assert( pFile );
- context = (afpLockingContext *) pFile->lockingContext;
- if( context->reserved ){
- *pResOut = 1;
- return SQLITE_OK;
- }
- sqlite3_mutex_enter(pFile->pInode->pLockMutex);
- /* Check if a thread in this process holds such a lock */
- if( pFile->pInode->eFileLock>SHARED_LOCK ){
- reserved = 1;
- }
-
- /* Otherwise see if some other process holds it.
- */
- if( !reserved ){
- /* lock the RESERVED byte */
- int lrc = afpSetLock(context->dbPath, pFile, RESERVED_BYTE, 1,1);
- if( SQLITE_OK==lrc ){
- /* if we succeeded in taking the reserved lock, unlock it to restore
- ** the original state */
- lrc = afpSetLock(context->dbPath, pFile, RESERVED_BYTE, 1, 0);
- } else {
- /* if we failed to get the lock then someone else must have it */
- reserved = 1;
- }
- if( IS_LOCK_ERROR(lrc) ){
- rc=lrc;
- }
- }
-
- sqlite3_mutex_leave(pFile->pInode->pLockMutex);
- OSTRACE(("TEST WR-LOCK %d %d %d (afp)\n", pFile->h, rc, reserved));
-
- *pResOut = reserved;
- return rc;
-}
-
-/*
-** Lock the file with the lock specified by parameter eFileLock - one
-** of the following:
-**
-** (1) SHARED_LOCK
-** (2) RESERVED_LOCK
-** (3) PENDING_LOCK
-** (4) EXCLUSIVE_LOCK
-**
-** Sometimes when requesting one lock state, additional lock states
-** are inserted in between. The locking might fail on one of the later
-** transitions leaving the lock state different from what it started but
-** still short of its goal. The following chart shows the allowed
-** transitions and the inserted intermediate states:
-**
-** UNLOCKED -> SHARED
-** SHARED -> RESERVED
-** SHARED -> (PENDING) -> EXCLUSIVE
-** RESERVED -> (PENDING) -> EXCLUSIVE
-** PENDING -> EXCLUSIVE
-**
-** This routine will only increase a lock. Use the sqlite3OsUnlock()
-** routine to lower a locking level.
-*/
-static int afpLock(sqlite3_file *id, int eFileLock){
- int rc = SQLITE_OK;
- unixFile *pFile = (unixFile*)id;
- unixInodeInfo *pInode = pFile->pInode;
- afpLockingContext *context = (afpLockingContext *) pFile->lockingContext;
-
- assert( pFile );
- OSTRACE(("LOCK %d %s was %s(%s,%d) pid=%d (afp)\n", pFile->h,
- azFileLock(eFileLock), azFileLock(pFile->eFileLock),
- azFileLock(pInode->eFileLock), pInode->nShared , osGetpid(0)));
-
- /* If there is already a lock of this type or more restrictive on the
- ** unixFile, do nothing. Don't use the afp_end_lock: exit path, as
- ** unixEnterMutex() hasn't been called yet.
- */
- if( pFile->eFileLock>=eFileLock ){
- OSTRACE(("LOCK %d %s ok (already held) (afp)\n", pFile->h,
- azFileLock(eFileLock)));
- return SQLITE_OK;
- }
-
- /* Make sure the locking sequence is correct
- ** (1) We never move from unlocked to anything higher than shared lock.
- ** (2) SQLite never explicitly requests a pendig lock.
- ** (3) A shared lock is always held when a reserve lock is requested.
- */
- assert( pFile->eFileLock!=NO_LOCK || eFileLock==SHARED_LOCK );
- assert( eFileLock!=PENDING_LOCK );
- assert( eFileLock!=RESERVED_LOCK || pFile->eFileLock==SHARED_LOCK );
-
- /* This mutex is needed because pFile->pInode is shared across threads
- */
- pInode = pFile->pInode;
- sqlite3_mutex_enter(pInode->pLockMutex);
-
- /* If some thread using this PID has a lock via a different unixFile*
- ** handle that precludes the requested lock, return BUSY.
- */
- if( (pFile->eFileLock!=pInode->eFileLock &&
- (pInode->eFileLock>=PENDING_LOCK || eFileLock>SHARED_LOCK))
- ){
- rc = SQLITE_BUSY;
- goto afp_end_lock;
- }
-
- /* If a SHARED lock is requested, and some thread using this PID already
- ** has a SHARED or RESERVED lock, then increment reference counts and
- ** return SQLITE_OK.
- */
- if( eFileLock==SHARED_LOCK &&
- (pInode->eFileLock==SHARED_LOCK || pInode->eFileLock==RESERVED_LOCK) ){
- assert( eFileLock==SHARED_LOCK );
- assert( pFile->eFileLock==0 );
- assert( pInode->nShared>0 );
- pFile->eFileLock = SHARED_LOCK;
- pInode->nShared++;
- pInode->nLock++;
- goto afp_end_lock;
- }
-
- /* A PENDING lock is needed before acquiring a SHARED lock and before
- ** acquiring an EXCLUSIVE lock. For the SHARED lock, the PENDING will
- ** be released.
- */
- if( eFileLock==SHARED_LOCK
- || (eFileLock==EXCLUSIVE_LOCK && pFile->eFileLockdbPath, pFile, PENDING_BYTE, 1, 1);
- if (failed) {
- rc = failed;
- goto afp_end_lock;
- }
- }
-
- /* If control gets to this point, then actually go ahead and make
- ** operating system calls for the specified lock.
- */
- if( eFileLock==SHARED_LOCK ){
- int lrc1, lrc2, lrc1Errno = 0;
- long lk, mask;
-
- assert( pInode->nShared==0 );
- assert( pInode->eFileLock==0 );
-
- mask = (sizeof(long)==8) ? LARGEST_INT64 : 0x7fffffff;
- /* Now get the read-lock SHARED_LOCK */
- /* note that the quality of the randomness doesn't matter that much */
- lk = random();
- pInode->sharedByte = (lk & mask)%(SHARED_SIZE - 1);
- lrc1 = afpSetLock(context->dbPath, pFile,
- SHARED_FIRST+pInode->sharedByte, 1, 1);
- if( IS_LOCK_ERROR(lrc1) ){
- lrc1Errno = pFile->lastErrno;
- }
- /* Drop the temporary PENDING lock */
- lrc2 = afpSetLock(context->dbPath, pFile, PENDING_BYTE, 1, 0);
-
- if( IS_LOCK_ERROR(lrc1) ) {
- storeLastErrno(pFile, lrc1Errno);
- rc = lrc1;
- goto afp_end_lock;
- } else if( IS_LOCK_ERROR(lrc2) ){
- rc = lrc2;
- goto afp_end_lock;
- } else if( lrc1 != SQLITE_OK ) {
- rc = lrc1;
- } else {
- pFile->eFileLock = SHARED_LOCK;
- pInode->nLock++;
- pInode->nShared = 1;
- }
- }else if( eFileLock==EXCLUSIVE_LOCK && pInode->nShared>1 ){
- /* We are trying for an exclusive lock but another thread in this
- ** same process is still holding a shared lock. */
- rc = SQLITE_BUSY;
- }else{
- /* The request was for a RESERVED or EXCLUSIVE lock. It is
- ** assumed that there is a SHARED or greater lock on the file
- ** already.
- */
- int failed = 0;
- assert( 0!=pFile->eFileLock );
- if (eFileLock >= RESERVED_LOCK && pFile->eFileLock < RESERVED_LOCK) {
- /* Acquire a RESERVED lock */
- failed = afpSetLock(context->dbPath, pFile, RESERVED_BYTE, 1,1);
- if( !failed ){
- context->reserved = 1;
- }
- }
- if (!failed && eFileLock == EXCLUSIVE_LOCK) {
- /* Acquire an EXCLUSIVE lock */
-
- /* Remove the shared lock before trying the range. we'll need to
- ** reestablish the shared lock if we can't get the afpUnlock
- */
- if( !(failed = afpSetLock(context->dbPath, pFile, SHARED_FIRST +
- pInode->sharedByte, 1, 0)) ){
- int failed2 = SQLITE_OK;
- /* now attemmpt to get the exclusive lock range */
- failed = afpSetLock(context->dbPath, pFile, SHARED_FIRST,
- SHARED_SIZE, 1);
- if( failed && (failed2 = afpSetLock(context->dbPath, pFile,
- SHARED_FIRST + pInode->sharedByte, 1, 1)) ){
- /* Can't reestablish the shared lock. Sqlite can't deal, this is
- ** a critical I/O error
- */
- rc = ((failed & 0xff) == SQLITE_IOERR) ? failed2 :
- SQLITE_IOERR_LOCK;
- goto afp_end_lock;
- }
- }else{
- rc = failed;
- }
- }
- if( failed ){
- rc = failed;
- }
- }
-
- if( rc==SQLITE_OK ){
- pFile->eFileLock = eFileLock;
- pInode->eFileLock = eFileLock;
- }else if( eFileLock==EXCLUSIVE_LOCK ){
- pFile->eFileLock = PENDING_LOCK;
- pInode->eFileLock = PENDING_LOCK;
- }
-
-afp_end_lock:
- sqlite3_mutex_leave(pInode->pLockMutex);
- OSTRACE(("LOCK %d %s %s (afp)\n", pFile->h, azFileLock(eFileLock),
- rc==SQLITE_OK ? "ok" : "failed"));
- return rc;
-}
-
-/*
-** Lower the locking level on file descriptor pFile to eFileLock. eFileLock
-** must be either NO_LOCK or SHARED_LOCK.
-**
-** If the locking level of the file descriptor is already at or below
-** the requested locking level, this routine is a no-op.
-*/
-static int afpUnlock(sqlite3_file *id, int eFileLock) {
- int rc = SQLITE_OK;
- unixFile *pFile = (unixFile*)id;
- unixInodeInfo *pInode;
- afpLockingContext *context = (afpLockingContext *) pFile->lockingContext;
- int skipShared = 0;
-#ifdef SQLITE_TEST
- int h = pFile->h;
-#endif
-
- assert( pFile );
- OSTRACE(("UNLOCK %d %d was %d(%d,%d) pid=%d (afp)\n", pFile->h, eFileLock,
- pFile->eFileLock, pFile->pInode->eFileLock, pFile->pInode->nShared,
- osGetpid(0)));
-
- assert( eFileLock<=SHARED_LOCK );
- if( pFile->eFileLock<=eFileLock ){
- return SQLITE_OK;
- }
- pInode = pFile->pInode;
- sqlite3_mutex_enter(pInode->pLockMutex);
- assert( pInode->nShared!=0 );
- if( pFile->eFileLock>SHARED_LOCK ){
- assert( pInode->eFileLock==pFile->eFileLock );
- SimulateIOErrorBenign(1);
- SimulateIOError( h=(-1) )
- SimulateIOErrorBenign(0);
-
-#ifdef SQLITE_DEBUG
- /* When reducing a lock such that other processes can start
- ** reading the database file again, make sure that the
- ** transaction counter was updated if any part of the database
- ** file changed. If the transaction counter is not updated,
- ** other connections to the same file might not realize that
- ** the file has changed and hence might not know to flush their
- ** cache. The use of a stale cache can lead to database corruption.
- */
- assert( pFile->inNormalWrite==0
- || pFile->dbUpdate==0
- || pFile->transCntrChng==1 );
- pFile->inNormalWrite = 0;
-#endif
-
- if( pFile->eFileLock==EXCLUSIVE_LOCK ){
- rc = afpSetLock(context->dbPath, pFile, SHARED_FIRST, SHARED_SIZE, 0);
- if( rc==SQLITE_OK && (eFileLock==SHARED_LOCK || pInode->nShared>1) ){
- /* only re-establish the shared lock if necessary */
- int sharedLockByte = SHARED_FIRST+pInode->sharedByte;
- rc = afpSetLock(context->dbPath, pFile, sharedLockByte, 1, 1);
- } else {
- skipShared = 1;
- }
- }
- if( rc==SQLITE_OK && pFile->eFileLock>=PENDING_LOCK ){
- rc = afpSetLock(context->dbPath, pFile, PENDING_BYTE, 1, 0);
- }
- if( rc==SQLITE_OK && pFile->eFileLock>=RESERVED_LOCK && context->reserved ){
- rc = afpSetLock(context->dbPath, pFile, RESERVED_BYTE, 1, 0);
- if( !rc ){
- context->reserved = 0;
- }
- }
- if( rc==SQLITE_OK && (eFileLock==SHARED_LOCK || pInode->nShared>1)){
- pInode->eFileLock = SHARED_LOCK;
- }
- }
- if( rc==SQLITE_OK && eFileLock==NO_LOCK ){
-
- /* Decrement the shared lock counter. Release the lock using an
- ** OS call only when all threads in this same process have released
- ** the lock.
- */
- unsigned long long sharedLockByte = SHARED_FIRST+pInode->sharedByte;
- pInode->nShared--;
- if( pInode->nShared==0 ){
- SimulateIOErrorBenign(1);
- SimulateIOError( h=(-1) )
- SimulateIOErrorBenign(0);
- if( !skipShared ){
- rc = afpSetLock(context->dbPath, pFile, sharedLockByte, 1, 0);
- }
- if( !rc ){
- pInode->eFileLock = NO_LOCK;
- pFile->eFileLock = NO_LOCK;
- }
- }
- if( rc==SQLITE_OK ){
- pInode->nLock--;
- assert( pInode->nLock>=0 );
- if( pInode->nLock==0 ) closePendingFds(pFile);
- }
- }
-
- sqlite3_mutex_leave(pInode->pLockMutex);
- if( rc==SQLITE_OK ){
- pFile->eFileLock = eFileLock;
- }
- return rc;
-}
-
-/*
-** Close a file & cleanup AFP specific locking context
-*/
-static int afpClose(sqlite3_file *id) {
- int rc = SQLITE_OK;
- unixFile *pFile = (unixFile*)id;
- assert( id!=0 );
- afpUnlock(id, NO_LOCK);
- assert( unixFileMutexNotheld(pFile) );
- unixEnterMutex();
- if( pFile->pInode ){
- unixInodeInfo *pInode = pFile->pInode;
- sqlite3_mutex_enter(pInode->pLockMutex);
- if( pInode->nLock ){
- /* If there are outstanding locks, do not actually close the file just
- ** yet because that would clear those locks. Instead, add the file
- ** descriptor to pInode->aPending. It will be automatically closed when
- ** the last lock is cleared.
- */
- setPendingFd(pFile);
- }
- sqlite3_mutex_leave(pInode->pLockMutex);
- }
- releaseInodeInfo(pFile);
- sqlite3_free(pFile->lockingContext);
- rc = closeUnixFile(id);
- unixLeaveMutex();
- return rc;
-}
-
-#endif /* defined(__APPLE__) && SQLITE_ENABLE_LOCKING_STYLE */
-/*
-** The code above is the AFP lock implementation. The code is specific
-** to MacOSX and does not work on other unix platforms. No alternative
-** is available. If you don't compile for a mac, then the "unix-afp"
-** VFS is not available.
-**
-********************* End of the AFP lock implementation **********************
-******************************************************************************/
-
-/******************************************************************************
-*************************** Begin NFS Locking ********************************/
-
-#if defined(__APPLE__) && SQLITE_ENABLE_LOCKING_STYLE
-/*
- ** Lower the locking level on file descriptor pFile to eFileLock. eFileLock
- ** must be either NO_LOCK or SHARED_LOCK.
- **
- ** If the locking level of the file descriptor is already at or below
- ** the requested locking level, this routine is a no-op.
- */
-static int nfsUnlock(sqlite3_file *id, int eFileLock){
- return posixUnlock(id, eFileLock, 1);
-}
-
-#endif /* defined(__APPLE__) && SQLITE_ENABLE_LOCKING_STYLE */
-/*
-** The code above is the NFS lock implementation. The code is specific
-** to MacOSX and does not work on other unix platforms. No alternative
-** is available.
-**
-********************* End of the NFS lock implementation **********************
-******************************************************************************/
-
-/******************************************************************************
-**************** Non-locking sqlite3_file methods *****************************
-**
-** The next division contains implementations for all methods of the
-** sqlite3_file object other than the locking methods. The locking
-** methods were defined in divisions above (one locking method per
-** division). Those methods that are common to all locking modes
-** are gather together into this division.
-*/
-
-/*
-** Seek to the offset passed as the second argument, then read cnt
-** bytes into pBuf. Return the number of bytes actually read.
-**
-** NB: If you define USE_PREAD or USE_PREAD64, then it might also
-** be necessary to define _XOPEN_SOURCE to be 500. This varies from
-** one system to another. Since SQLite does not define USE_PREAD
-** in any form by default, we will not attempt to define _XOPEN_SOURCE.
-** See tickets #2741 and #2681.
-**
-** To avoid stomping the errno value on a failed read the lastErrno value
-** is set before returning.
-*/
-static int seekAndRead(unixFile *id, sqlite3_int64 offset, void *pBuf, int cnt){
- int got;
- int prior = 0;
-#if (!defined(USE_PREAD) && !defined(USE_PREAD64))
- i64 newOffset;
-#endif
- TIMER_START;
- assert( cnt==(cnt&0x1ffff) );
- assert( id->h>2 );
- do{
-#if defined(USE_PREAD)
- got = osPread(id->h, pBuf, cnt, offset);
- SimulateIOError( got = -1 );
-#elif defined(USE_PREAD64)
- got = osPread64(id->h, pBuf, cnt, offset);
- SimulateIOError( got = -1 );
-#else
- newOffset = lseek(id->h, offset, SEEK_SET);
- SimulateIOError( newOffset = -1 );
- if( newOffset<0 ){
- storeLastErrno((unixFile*)id, errno);
- return -1;
- }
- got = osRead(id->h, pBuf, cnt);
-#endif
- if( got==cnt ) break;
- if( got<0 ){
- if( errno==EINTR ){ got = 1; continue; }
- prior = 0;
- storeLastErrno((unixFile*)id, errno);
- break;
- }else if( got>0 ){
- cnt -= got;
- offset += got;
- prior += got;
- pBuf = (void*)(got + (char*)pBuf);
- }
- }while( got>0 );
- TIMER_END;
- OSTRACE(("READ %-3d %5d %7lld %llu\n",
- id->h, got+prior, offset-prior, TIMER_ELAPSED));
- return got+prior;
-}
-
-/*
-** Read data from a file into a buffer. Return SQLITE_OK if all
-** bytes were read successfully and SQLITE_IOERR if anything goes
-** wrong.
-*/
-static int unixRead(
- sqlite3_file *id,
- void *pBuf,
- int amt,
- sqlite3_int64 offset
-){
- unixFile *pFile = (unixFile *)id;
- int got;
- assert( id );
- assert( offset>=0 );
- assert( amt>0 );
-
- /* If this is a database file (not a journal, master-journal or temp
- ** file), the bytes in the locking range should never be read or written. */
-#if 0
- assert( pFile->pPreallocatedUnused==0
- || offset>=PENDING_BYTE+512
- || offset+amt<=PENDING_BYTE
- );
-#endif
-
-#if SQLITE_MAX_MMAP_SIZE>0
- /* Deal with as much of this read request as possible by transfering
- ** data from the memory mapping using memcpy(). */
- if( offsetmmapSize ){
- if( offset+amt <= pFile->mmapSize ){
- memcpy(pBuf, &((u8 *)(pFile->pMapRegion))[offset], amt);
- return SQLITE_OK;
- }else{
- int nCopy = pFile->mmapSize - offset;
- memcpy(pBuf, &((u8 *)(pFile->pMapRegion))[offset], nCopy);
- pBuf = &((u8 *)pBuf)[nCopy];
- amt -= nCopy;
- offset += nCopy;
- }
- }
-#endif
-
- got = seekAndRead(pFile, offset, pBuf, amt);
- if( got==amt ){
- return SQLITE_OK;
- }else if( got<0 ){
- /* lastErrno set by seekAndRead */
- return SQLITE_IOERR_READ;
- }else{
- storeLastErrno(pFile, 0); /* not a system error */
- /* Unread parts of the buffer must be zero-filled */
- memset(&((char*)pBuf)[got], 0, amt-got);
- return SQLITE_IOERR_SHORT_READ;
- }
-}
-
-/*
-** Attempt to seek the file-descriptor passed as the first argument to
-** absolute offset iOff, then attempt to write nBuf bytes of data from
-** pBuf to it. If an error occurs, return -1 and set *piErrno. Otherwise,
-** return the actual number of bytes written (which may be less than
-** nBuf).
-*/
-static int seekAndWriteFd(
- int fd, /* File descriptor to write to */
- i64 iOff, /* File offset to begin writing at */
- const void *pBuf, /* Copy data from this buffer to the file */
- int nBuf, /* Size of buffer pBuf in bytes */
- int *piErrno /* OUT: Error number if error occurs */
-){
- int rc = 0; /* Value returned by system call */
-
- assert( nBuf==(nBuf&0x1ffff) );
- assert( fd>2 );
- assert( piErrno!=0 );
- nBuf &= 0x1ffff;
- TIMER_START;
-
-#if defined(USE_PREAD)
- do{ rc = (int)osPwrite(fd, pBuf, nBuf, iOff); }while( rc<0 && errno==EINTR );
-#elif defined(USE_PREAD64)
- do{ rc = (int)osPwrite64(fd, pBuf, nBuf, iOff);}while( rc<0 && errno==EINTR);
-#else
- do{
- i64 iSeek = lseek(fd, iOff, SEEK_SET);
- SimulateIOError( iSeek = -1 );
- if( iSeek<0 ){
- rc = -1;
- break;
- }
- rc = osWrite(fd, pBuf, nBuf);
- }while( rc<0 && errno==EINTR );
-#endif
-
- TIMER_END;
- OSTRACE(("WRITE %-3d %5d %7lld %llu\n", fd, rc, iOff, TIMER_ELAPSED));
-
- if( rc<0 ) *piErrno = errno;
- return rc;
-}
-
-
-/*
-** Seek to the offset in id->offset then read cnt bytes into pBuf.
-** Return the number of bytes actually read. Update the offset.
-**
-** To avoid stomping the errno value on a failed write the lastErrno value
-** is set before returning.
-*/
-static int seekAndWrite(unixFile *id, i64 offset, const void *pBuf, int cnt){
- return seekAndWriteFd(id->h, offset, pBuf, cnt, &id->lastErrno);
-}
-
-
-/*
-** Write data from a buffer into a file. Return SQLITE_OK on success
-** or some other error code on failure.
-*/
-static int unixWrite(
- sqlite3_file *id,
- const void *pBuf,
- int amt,
- sqlite3_int64 offset
-){
- unixFile *pFile = (unixFile*)id;
- int wrote = 0;
- assert( id );
- assert( amt>0 );
-
- /* If this is a database file (not a journal, master-journal or temp
- ** file), the bytes in the locking range should never be read or written. */
-#if 0
- assert( pFile->pPreallocatedUnused==0
- || offset>=PENDING_BYTE+512
- || offset+amt<=PENDING_BYTE
- );
-#endif
-
-#ifdef SQLITE_DEBUG
- /* If we are doing a normal write to a database file (as opposed to
- ** doing a hot-journal rollback or a write to some file other than a
- ** normal database file) then record the fact that the database
- ** has changed. If the transaction counter is modified, record that
- ** fact too.
- */
- if( pFile->inNormalWrite ){
- pFile->dbUpdate = 1; /* The database has been modified */
- if( offset<=24 && offset+amt>=27 ){
- int rc;
- char oldCntr[4];
- SimulateIOErrorBenign(1);
- rc = seekAndRead(pFile, 24, oldCntr, 4);
- SimulateIOErrorBenign(0);
- if( rc!=4 || memcmp(oldCntr, &((char*)pBuf)[24-offset], 4)!=0 ){
- pFile->transCntrChng = 1; /* The transaction counter has changed */
- }
- }
- }
-#endif
-
-#if defined(SQLITE_MMAP_READWRITE) && SQLITE_MAX_MMAP_SIZE>0
- /* Deal with as much of this write request as possible by transfering
- ** data from the memory mapping using memcpy(). */
- if( offsetmmapSize ){
- if( offset+amt <= pFile->mmapSize ){
- memcpy(&((u8 *)(pFile->pMapRegion))[offset], pBuf, amt);
- return SQLITE_OK;
- }else{
- int nCopy = pFile->mmapSize - offset;
- memcpy(&((u8 *)(pFile->pMapRegion))[offset], pBuf, nCopy);
- pBuf = &((u8 *)pBuf)[nCopy];
- amt -= nCopy;
- offset += nCopy;
- }
- }
-#endif
-
- while( (wrote = seekAndWrite(pFile, offset, pBuf, amt))0 ){
- amt -= wrote;
- offset += wrote;
- pBuf = &((char*)pBuf)[wrote];
- }
- SimulateIOError(( wrote=(-1), amt=1 ));
- SimulateDiskfullError(( wrote=0, amt=1 ));
-
- if( amt>wrote ){
- if( wrote<0 && pFile->lastErrno!=ENOSPC ){
- /* lastErrno set by seekAndWrite */
- return SQLITE_IOERR_WRITE;
- }else{
- storeLastErrno(pFile, 0); /* not a system error */
- return SQLITE_FULL;
- }
- }
-
- return SQLITE_OK;
-}
-
-#ifdef SQLITE_TEST
-/*
-** Count the number of fullsyncs and normal syncs. This is used to test
-** that syncs and fullsyncs are occurring at the right times.
-*/
-SQLITE_API int sqlite3_sync_count = 0;
-SQLITE_API int sqlite3_fullsync_count = 0;
-#endif
-
-/*
-** We do not trust systems to provide a working fdatasync(). Some do.
-** Others do no. To be safe, we will stick with the (slightly slower)
-** fsync(). If you know that your system does support fdatasync() correctly,
-** then simply compile with -Dfdatasync=fdatasync or -DHAVE_FDATASYNC
-*/
-#if !defined(fdatasync) && !HAVE_FDATASYNC
-# define fdatasync fsync
-#endif
-
-/*
-** Define HAVE_FULLFSYNC to 0 or 1 depending on whether or not
-** the F_FULLFSYNC macro is defined. F_FULLFSYNC is currently
-** only available on Mac OS X. But that could change.
-*/
-#ifdef F_FULLFSYNC
-# define HAVE_FULLFSYNC 1
-#else
-# define HAVE_FULLFSYNC 0
-#endif
-
-
-/*
-** The fsync() system call does not work as advertised on many
-** unix systems. The following procedure is an attempt to make
-** it work better.
-**
-** The SQLITE_NO_SYNC macro disables all fsync()s. This is useful
-** for testing when we want to run through the test suite quickly.
-** You are strongly advised *not* to deploy with SQLITE_NO_SYNC
-** enabled, however, since with SQLITE_NO_SYNC enabled, an OS crash
-** or power failure will likely corrupt the database file.
-**
-** SQLite sets the dataOnly flag if the size of the file is unchanged.
-** The idea behind dataOnly is that it should only write the file content
-** to disk, not the inode. We only set dataOnly if the file size is
-** unchanged since the file size is part of the inode. However,
-** Ted Ts'o tells us that fdatasync() will also write the inode if the
-** file size has changed. The only real difference between fdatasync()
-** and fsync(), Ted tells us, is that fdatasync() will not flush the
-** inode if the mtime or owner or other inode attributes have changed.
-** We only care about the file size, not the other file attributes, so
-** as far as SQLite is concerned, an fdatasync() is always adequate.
-** So, we always use fdatasync() if it is available, regardless of
-** the value of the dataOnly flag.
-*/
-static int full_fsync(int fd, int fullSync, int dataOnly){
- int rc;
-
- /* The following "ifdef/elif/else/" block has the same structure as
- ** the one below. It is replicated here solely to avoid cluttering
- ** up the real code with the UNUSED_PARAMETER() macros.
- */
-#ifdef SQLITE_NO_SYNC
- UNUSED_PARAMETER(fd);
- UNUSED_PARAMETER(fullSync);
- UNUSED_PARAMETER(dataOnly);
-#elif HAVE_FULLFSYNC
- UNUSED_PARAMETER(dataOnly);
-#else
- UNUSED_PARAMETER(fullSync);
- UNUSED_PARAMETER(dataOnly);
-#endif
-
- /* Record the number of times that we do a normal fsync() and
- ** FULLSYNC. This is used during testing to verify that this procedure
- ** gets called with the correct arguments.
- */
-#ifdef SQLITE_TEST
- if( fullSync ) sqlite3_fullsync_count++;
- sqlite3_sync_count++;
-#endif
-
- /* If we compiled with the SQLITE_NO_SYNC flag, then syncing is a
- ** no-op. But go ahead and call fstat() to validate the file
- ** descriptor as we need a method to provoke a failure during
- ** coverate testing.
- */
-#ifdef SQLITE_NO_SYNC
- {
- struct stat buf;
- rc = osFstat(fd, &buf);
- }
-#elif HAVE_FULLFSYNC
- if( fullSync ){
- rc = osFcntl(fd, F_FULLFSYNC, 0);
- }else{
- rc = 1;
- }
- /* If the FULLFSYNC failed, fall back to attempting an fsync().
- ** It shouldn't be possible for fullfsync to fail on the local
- ** file system (on OSX), so failure indicates that FULLFSYNC
- ** isn't supported for this file system. So, attempt an fsync
- ** and (for now) ignore the overhead of a superfluous fcntl call.
- ** It'd be better to detect fullfsync support once and avoid
- ** the fcntl call every time sync is called.
- */
- if( rc ) rc = fsync(fd);
-
-#elif defined(__APPLE__)
- /* fdatasync() on HFS+ doesn't yet flush the file size if it changed correctly
- ** so currently we default to the macro that redefines fdatasync to fsync
- */
- rc = fsync(fd);
-#else
- rc = fdatasync(fd);
-#if OS_VXWORKS
- if( rc==-1 && errno==ENOTSUP ){
- rc = fsync(fd);
- }
-#endif /* OS_VXWORKS */
-#endif /* ifdef SQLITE_NO_SYNC elif HAVE_FULLFSYNC */
-
- if( OS_VXWORKS && rc!= -1 ){
- rc = 0;
- }
- return rc;
-}
-
-/*
-** Open a file descriptor to the directory containing file zFilename.
-** If successful, *pFd is set to the opened file descriptor and
-** SQLITE_OK is returned. If an error occurs, either SQLITE_NOMEM
-** or SQLITE_CANTOPEN is returned and *pFd is set to an undefined
-** value.
-**
-** The directory file descriptor is used for only one thing - to
-** fsync() a directory to make sure file creation and deletion events
-** are flushed to disk. Such fsyncs are not needed on newer
-** journaling filesystems, but are required on older filesystems.
-**
-** This routine can be overridden using the xSetSysCall interface.
-** The ability to override this routine was added in support of the
-** chromium sandbox. Opening a directory is a security risk (we are
-** told) so making it overrideable allows the chromium sandbox to
-** replace this routine with a harmless no-op. To make this routine
-** a no-op, replace it with a stub that returns SQLITE_OK but leaves
-** *pFd set to a negative number.
-**
-** If SQLITE_OK is returned, the caller is responsible for closing
-** the file descriptor *pFd using close().
-*/
-static int openDirectory(const char *zFilename, int *pFd){
- int ii;
- int fd = -1;
- char zDirname[MAX_PATHNAME+1];
-
- sqlite3_snprintf(MAX_PATHNAME, zDirname, "%s", zFilename);
- for(ii=(int)strlen(zDirname); ii>0 && zDirname[ii]!='/'; ii--);
- if( ii>0 ){
- zDirname[ii] = '\0';
- }else{
- if( zDirname[0]!='/' ) zDirname[0] = '.';
- zDirname[1] = 0;
- }
- fd = robust_open(zDirname, O_RDONLY|O_BINARY, 0);
- if( fd>=0 ){
- OSTRACE(("OPENDIR %-3d %s\n", fd, zDirname));
- }
- *pFd = fd;
- if( fd>=0 ) return SQLITE_OK;
- return unixLogError(SQLITE_CANTOPEN_BKPT, "openDirectory", zDirname);
-}
-
-/*
-** Make sure all writes to a particular file are committed to disk.
-**
-** If dataOnly==0 then both the file itself and its metadata (file
-** size, access time, etc) are synced. If dataOnly!=0 then only the
-** file data is synced.
-**
-** Under Unix, also make sure that the directory entry for the file
-** has been created by fsync-ing the directory that contains the file.
-** If we do not do this and we encounter a power failure, the directory
-** entry for the journal might not exist after we reboot. The next
-** SQLite to access the file will not know that the journal exists (because
-** the directory entry for the journal was never created) and the transaction
-** will not roll back - possibly leading to database corruption.
-*/
-static int unixSync(sqlite3_file *id, int flags){
- int rc;
- unixFile *pFile = (unixFile*)id;
-
- int isDataOnly = (flags&SQLITE_SYNC_DATAONLY);
- int isFullsync = (flags&0x0F)==SQLITE_SYNC_FULL;
-
- /* Check that one of SQLITE_SYNC_NORMAL or FULL was passed */
- assert((flags&0x0F)==SQLITE_SYNC_NORMAL
- || (flags&0x0F)==SQLITE_SYNC_FULL
- );
-
- /* Unix cannot, but some systems may return SQLITE_FULL from here. This
- ** line is to test that doing so does not cause any problems.
- */
- SimulateDiskfullError( return SQLITE_FULL );
-
- assert( pFile );
- OSTRACE(("SYNC %-3d\n", pFile->h));
- rc = full_fsync(pFile->h, isFullsync, isDataOnly);
- SimulateIOError( rc=1 );
- if( rc ){
- storeLastErrno(pFile, errno);
- return unixLogError(SQLITE_IOERR_FSYNC, "full_fsync", pFile->zPath);
- }
-
- /* Also fsync the directory containing the file if the DIRSYNC flag
- ** is set. This is a one-time occurrence. Many systems (examples: AIX)
- ** are unable to fsync a directory, so ignore errors on the fsync.
- */
- if( pFile->ctrlFlags & UNIXFILE_DIRSYNC ){
- int dirfd;
- OSTRACE(("DIRSYNC %s (have_fullfsync=%d fullsync=%d)\n", pFile->zPath,
- HAVE_FULLFSYNC, isFullsync));
- rc = osOpenDirectory(pFile->zPath, &dirfd);
- if( rc==SQLITE_OK ){
- full_fsync(dirfd, 0, 0);
- robust_close(pFile, dirfd, __LINE__);
- }else{
- assert( rc==SQLITE_CANTOPEN );
- rc = SQLITE_OK;
- }
- pFile->ctrlFlags &= ~UNIXFILE_DIRSYNC;
- }
- return rc;
-}
-
-/*
-** Truncate an open file to a specified size
-*/
-static int unixTruncate(sqlite3_file *id, i64 nByte){
- unixFile *pFile = (unixFile *)id;
- int rc;
- assert( pFile );
- SimulateIOError( return SQLITE_IOERR_TRUNCATE );
-
- /* If the user has configured a chunk-size for this file, truncate the
- ** file so that it consists of an integer number of chunks (i.e. the
- ** actual file size after the operation may be larger than the requested
- ** size).
- */
- if( pFile->szChunk>0 ){
- nByte = ((nByte + pFile->szChunk - 1)/pFile->szChunk) * pFile->szChunk;
- }
-
- rc = robust_ftruncate(pFile->h, nByte);
- if( rc ){
- storeLastErrno(pFile, errno);
- return unixLogError(SQLITE_IOERR_TRUNCATE, "ftruncate", pFile->zPath);
- }else{
-#ifdef SQLITE_DEBUG
- /* If we are doing a normal write to a database file (as opposed to
- ** doing a hot-journal rollback or a write to some file other than a
- ** normal database file) and we truncate the file to zero length,
- ** that effectively updates the change counter. This might happen
- ** when restoring a database using the backup API from a zero-length
- ** source.
- */
- if( pFile->inNormalWrite && nByte==0 ){
- pFile->transCntrChng = 1;
- }
-#endif
-
-#if SQLITE_MAX_MMAP_SIZE>0
- /* If the file was just truncated to a size smaller than the currently
- ** mapped region, reduce the effective mapping size as well. SQLite will
- ** use read() and write() to access data beyond this point from now on.
- */
- if( nBytemmapSize ){
- pFile->mmapSize = nByte;
- }
-#endif
-
- return SQLITE_OK;
- }
-}
-
-/*
-** Determine the current size of a file in bytes
-*/
-static int unixFileSize(sqlite3_file *id, i64 *pSize){
- int rc;
- struct stat buf;
- assert( id );
- rc = osFstat(((unixFile*)id)->h, &buf);
- SimulateIOError( rc=1 );
- if( rc!=0 ){
- storeLastErrno((unixFile*)id, errno);
- return SQLITE_IOERR_FSTAT;
- }
- *pSize = buf.st_size;
-
- /* When opening a zero-size database, the findInodeInfo() procedure
- ** writes a single byte into that file in order to work around a bug
- ** in the OS-X msdos filesystem. In order to avoid problems with upper
- ** layers, we need to report this file size as zero even though it is
- ** really 1. Ticket #3260.
- */
- if( *pSize==1 ) *pSize = 0;
-
-
- return SQLITE_OK;
-}
-
-#if SQLITE_ENABLE_LOCKING_STYLE && defined(__APPLE__)
-/*
-** Handler for proxy-locking file-control verbs. Defined below in the
-** proxying locking division.
-*/
-static int proxyFileControl(sqlite3_file*,int,void*);
-#endif
-
-/*
-** This function is called to handle the SQLITE_FCNTL_SIZE_HINT
-** file-control operation. Enlarge the database to nBytes in size
-** (rounded up to the next chunk-size). If the database is already
-** nBytes or larger, this routine is a no-op.
-*/
-static int fcntlSizeHint(unixFile *pFile, i64 nByte){
- if( pFile->szChunk>0 ){
- i64 nSize; /* Required file size */
- struct stat buf; /* Used to hold return values of fstat() */
-
- if( osFstat(pFile->h, &buf) ){
- return SQLITE_IOERR_FSTAT;
- }
-
- nSize = ((nByte+pFile->szChunk-1) / pFile->szChunk) * pFile->szChunk;
- if( nSize>(i64)buf.st_size ){
-
-#if defined(HAVE_POSIX_FALLOCATE) && HAVE_POSIX_FALLOCATE
- /* The code below is handling the return value of osFallocate()
- ** correctly. posix_fallocate() is defined to "returns zero on success,
- ** or an error number on failure". See the manpage for details. */
- int err;
- do{
- err = osFallocate(pFile->h, buf.st_size, nSize-buf.st_size);
- }while( err==EINTR );
- if( err && err!=EINVAL ) return SQLITE_IOERR_WRITE;
-#else
- /* If the OS does not have posix_fallocate(), fake it. Write a
- ** single byte to the last byte in each block that falls entirely
- ** within the extended region. Then, if required, a single byte
- ** at offset (nSize-1), to set the size of the file correctly.
- ** This is a similar technique to that used by glibc on systems
- ** that do not have a real fallocate() call.
- */
- int nBlk = buf.st_blksize; /* File-system block size */
- int nWrite = 0; /* Number of bytes written by seekAndWrite */
- i64 iWrite; /* Next offset to write to */
-
- iWrite = (buf.st_size/nBlk)*nBlk + nBlk - 1;
- assert( iWrite>=buf.st_size );
- assert( ((iWrite+1)%nBlk)==0 );
- for(/*no-op*/; iWrite=nSize ) iWrite = nSize - 1;
- nWrite = seekAndWrite(pFile, iWrite, "", 1);
- if( nWrite!=1 ) return SQLITE_IOERR_WRITE;
- }
-#endif
- }
- }
-
-#if SQLITE_MAX_MMAP_SIZE>0
- if( pFile->mmapSizeMax>0 && nByte>pFile->mmapSize ){
- int rc;
- if( pFile->szChunk<=0 ){
- if( robust_ftruncate(pFile->h, nByte) ){
- storeLastErrno(pFile, errno);
- return unixLogError(SQLITE_IOERR_TRUNCATE, "ftruncate", pFile->zPath);
- }
- }
-
- rc = unixMapfile(pFile, nByte);
- return rc;
- }
-#endif
-
- return SQLITE_OK;
-}
-
-/*
-** If *pArg is initially negative then this is a query. Set *pArg to
-** 1 or 0 depending on whether or not bit mask of pFile->ctrlFlags is set.
-**
-** If *pArg is 0 or 1, then clear or set the mask bit of pFile->ctrlFlags.
-*/
-static void unixModeBit(unixFile *pFile, unsigned char mask, int *pArg){
- if( *pArg<0 ){
- *pArg = (pFile->ctrlFlags & mask)!=0;
- }else if( (*pArg)==0 ){
- pFile->ctrlFlags &= ~mask;
- }else{
- pFile->ctrlFlags |= mask;
- }
-}
-
-/* Forward declaration */
-static int unixGetTempname(int nBuf, char *zBuf);
-
-/*
-** Information and control of an open file handle.
-*/
-static int unixFileControl(sqlite3_file *id, int op, void *pArg){
- unixFile *pFile = (unixFile*)id;
- switch( op ){
-#if defined(__linux__) && defined(SQLITE_ENABLE_BATCH_ATOMIC_WRITE)
- case SQLITE_FCNTL_BEGIN_ATOMIC_WRITE: {
- int rc = osIoctl(pFile->h, F2FS_IOC_START_ATOMIC_WRITE);
- return rc ? SQLITE_IOERR_BEGIN_ATOMIC : SQLITE_OK;
- }
- case SQLITE_FCNTL_COMMIT_ATOMIC_WRITE: {
- int rc = osIoctl(pFile->h, F2FS_IOC_COMMIT_ATOMIC_WRITE);
- return rc ? SQLITE_IOERR_COMMIT_ATOMIC : SQLITE_OK;
- }
- case SQLITE_FCNTL_ROLLBACK_ATOMIC_WRITE: {
- int rc = osIoctl(pFile->h, F2FS_IOC_ABORT_VOLATILE_WRITE);
- return rc ? SQLITE_IOERR_ROLLBACK_ATOMIC : SQLITE_OK;
- }
-#endif /* __linux__ && SQLITE_ENABLE_BATCH_ATOMIC_WRITE */
-
- case SQLITE_FCNTL_LOCKSTATE: {
- *(int*)pArg = pFile->eFileLock;
- return SQLITE_OK;
- }
- case SQLITE_FCNTL_LAST_ERRNO: {
- *(int*)pArg = pFile->lastErrno;
- return SQLITE_OK;
- }
- case SQLITE_FCNTL_CHUNK_SIZE: {
- pFile->szChunk = *(int *)pArg;
- return SQLITE_OK;
- }
- case SQLITE_FCNTL_SIZE_HINT: {
- int rc;
- SimulateIOErrorBenign(1);
- rc = fcntlSizeHint(pFile, *(i64 *)pArg);
- SimulateIOErrorBenign(0);
- return rc;
- }
- case SQLITE_FCNTL_PERSIST_WAL: {
- unixModeBit(pFile, UNIXFILE_PERSIST_WAL, (int*)pArg);
- return SQLITE_OK;
- }
- case SQLITE_FCNTL_POWERSAFE_OVERWRITE: {
- unixModeBit(pFile, UNIXFILE_PSOW, (int*)pArg);
- return SQLITE_OK;
- }
- case SQLITE_FCNTL_VFSNAME: {
- *(char**)pArg = sqlite3_mprintf("%s", pFile->pVfs->zName);
- return SQLITE_OK;
- }
- case SQLITE_FCNTL_TEMPFILENAME: {
- char *zTFile = sqlite3_malloc64( pFile->pVfs->mxPathname );
- if( zTFile ){
- unixGetTempname(pFile->pVfs->mxPathname, zTFile);
- *(char**)pArg = zTFile;
- }
- return SQLITE_OK;
- }
- case SQLITE_FCNTL_HAS_MOVED: {
- *(int*)pArg = fileHasMoved(pFile);
- return SQLITE_OK;
- }
-#ifdef SQLITE_ENABLE_SETLK_TIMEOUT
- case SQLITE_FCNTL_LOCK_TIMEOUT: {
- pFile->iBusyTimeout = *(int*)pArg;
- return SQLITE_OK;
- }
-#endif
-#if SQLITE_MAX_MMAP_SIZE>0
- case SQLITE_FCNTL_MMAP_SIZE: {
- i64 newLimit = *(i64*)pArg;
- int rc = SQLITE_OK;
- if( newLimit>sqlite3GlobalConfig.mxMmap ){
- newLimit = sqlite3GlobalConfig.mxMmap;
- }
-
- /* The value of newLimit may be eventually cast to (size_t) and passed
- ** to mmap(). Restrict its value to 2GB if (size_t) is not at least a
- ** 64-bit type. */
- if( newLimit>0 && sizeof(size_t)<8 ){
- newLimit = (newLimit & 0x7FFFFFFF);
- }
-
- *(i64*)pArg = pFile->mmapSizeMax;
- if( newLimit>=0 && newLimit!=pFile->mmapSizeMax && pFile->nFetchOut==0 ){
- pFile->mmapSizeMax = newLimit;
- if( pFile->mmapSize>0 ){
- unixUnmapfile(pFile);
- rc = unixMapfile(pFile, -1);
- }
- }
- return rc;
- }
-#endif
-#ifdef SQLITE_DEBUG
- /* The pager calls this method to signal that it has done
- ** a rollback and that the database is therefore unchanged and
- ** it hence it is OK for the transaction change counter to be
- ** unchanged.
- */
- case SQLITE_FCNTL_DB_UNCHANGED: {
- ((unixFile*)id)->dbUpdate = 0;
- return SQLITE_OK;
- }
-#endif
-#if SQLITE_ENABLE_LOCKING_STYLE && defined(__APPLE__)
- case SQLITE_FCNTL_SET_LOCKPROXYFILE:
- case SQLITE_FCNTL_GET_LOCKPROXYFILE: {
- return proxyFileControl(id,op,pArg);
- }
-#endif /* SQLITE_ENABLE_LOCKING_STYLE && defined(__APPLE__) */
- }
- return SQLITE_NOTFOUND;
-}
-
-/*
-** If pFd->sectorSize is non-zero when this function is called, it is a
-** no-op. Otherwise, the values of pFd->sectorSize and
-** pFd->deviceCharacteristics are set according to the file-system
-** characteristics.
-**
-** There are two versions of this function. One for QNX and one for all
-** other systems.
-*/
-#ifndef __QNXNTO__
-static void setDeviceCharacteristics(unixFile *pFd){
- assert( pFd->deviceCharacteristics==0 || pFd->sectorSize!=0 );
- if( pFd->sectorSize==0 ){
-#if defined(__linux__) && defined(SQLITE_ENABLE_BATCH_ATOMIC_WRITE)
- int res;
- u32 f = 0;
-
- /* Check for support for F2FS atomic batch writes. */
- res = osIoctl(pFd->h, F2FS_IOC_GET_FEATURES, &f);
- if( res==0 && (f & F2FS_FEATURE_ATOMIC_WRITE) ){
- pFd->deviceCharacteristics = SQLITE_IOCAP_BATCH_ATOMIC;
- }
-#endif /* __linux__ && SQLITE_ENABLE_BATCH_ATOMIC_WRITE */
-
- /* Set the POWERSAFE_OVERWRITE flag if requested. */
- if( pFd->ctrlFlags & UNIXFILE_PSOW ){
- pFd->deviceCharacteristics |= SQLITE_IOCAP_POWERSAFE_OVERWRITE;
- }
-
- pFd->sectorSize = SQLITE_DEFAULT_SECTOR_SIZE;
- }
-}
-#else
-#include
-#include
-static void setDeviceCharacteristics(unixFile *pFile){
- if( pFile->sectorSize == 0 ){
- struct statvfs fsInfo;
-
- /* Set defaults for non-supported filesystems */
- pFile->sectorSize = SQLITE_DEFAULT_SECTOR_SIZE;
- pFile->deviceCharacteristics = 0;
- if( fstatvfs(pFile->h, &fsInfo) == -1 ) {
- return;
- }
-
- if( !strcmp(fsInfo.f_basetype, "tmp") ) {
- pFile->sectorSize = fsInfo.f_bsize;
- pFile->deviceCharacteristics =
- SQLITE_IOCAP_ATOMIC4K | /* All ram filesystem writes are atomic */
- SQLITE_IOCAP_SAFE_APPEND | /* growing the file does not occur until
- ** the write succeeds */
- SQLITE_IOCAP_SEQUENTIAL | /* The ram filesystem has no write behind
- ** so it is ordered */
- 0;
- }else if( strstr(fsInfo.f_basetype, "etfs") ){
- pFile->sectorSize = fsInfo.f_bsize;
- pFile->deviceCharacteristics =
- /* etfs cluster size writes are atomic */
- (pFile->sectorSize / 512 * SQLITE_IOCAP_ATOMIC512) |
- SQLITE_IOCAP_SAFE_APPEND | /* growing the file does not occur until
- ** the write succeeds */
- SQLITE_IOCAP_SEQUENTIAL | /* The ram filesystem has no write behind
- ** so it is ordered */
- 0;
- }else if( !strcmp(fsInfo.f_basetype, "qnx6") ){
- pFile->sectorSize = fsInfo.f_bsize;
- pFile->deviceCharacteristics =
- SQLITE_IOCAP_ATOMIC | /* All filesystem writes are atomic */
- SQLITE_IOCAP_SAFE_APPEND | /* growing the file does not occur until
- ** the write succeeds */
- SQLITE_IOCAP_SEQUENTIAL | /* The ram filesystem has no write behind
- ** so it is ordered */
- 0;
- }else if( !strcmp(fsInfo.f_basetype, "qnx4") ){
- pFile->sectorSize = fsInfo.f_bsize;
- pFile->deviceCharacteristics =
- /* full bitset of atomics from max sector size and smaller */
- ((pFile->sectorSize / 512 * SQLITE_IOCAP_ATOMIC512) << 1) - 2 |
- SQLITE_IOCAP_SEQUENTIAL | /* The ram filesystem has no write behind
- ** so it is ordered */
- 0;
- }else if( strstr(fsInfo.f_basetype, "dos") ){
- pFile->sectorSize = fsInfo.f_bsize;
- pFile->deviceCharacteristics =
- /* full bitset of atomics from max sector size and smaller */
- ((pFile->sectorSize / 512 * SQLITE_IOCAP_ATOMIC512) << 1) - 2 |
- SQLITE_IOCAP_SEQUENTIAL | /* The ram filesystem has no write behind
- ** so it is ordered */
- 0;
- }else{
- pFile->deviceCharacteristics =
- SQLITE_IOCAP_ATOMIC512 | /* blocks are atomic */
- SQLITE_IOCAP_SAFE_APPEND | /* growing the file does not occur until
- ** the write succeeds */
- 0;
- }
- }
- /* Last chance verification. If the sector size isn't a multiple of 512
- ** then it isn't valid.*/
- if( pFile->sectorSize % 512 != 0 ){
- pFile->deviceCharacteristics = 0;
- pFile->sectorSize = SQLITE_DEFAULT_SECTOR_SIZE;
- }
-}
-#endif
-
-/*
-** Return the sector size in bytes of the underlying block device for
-** the specified file. This is almost always 512 bytes, but may be
-** larger for some devices.
-**
-** SQLite code assumes this function cannot fail. It also assumes that
-** if two files are created in the same file-system directory (i.e.
-** a database and its journal file) that the sector size will be the
-** same for both.
-*/
-static int unixSectorSize(sqlite3_file *id){
- unixFile *pFd = (unixFile*)id;
- setDeviceCharacteristics(pFd);
- return pFd->sectorSize;
-}
-
-/*
-** Return the device characteristics for the file.
-**
-** This VFS is set up to return SQLITE_IOCAP_POWERSAFE_OVERWRITE by default.
-** However, that choice is controversial since technically the underlying
-** file system does not always provide powersafe overwrites. (In other
-** words, after a power-loss event, parts of the file that were never
-** written might end up being altered.) However, non-PSOW behavior is very,
-** very rare. And asserting PSOW makes a large reduction in the amount
-** of required I/O for journaling, since a lot of padding is eliminated.
-** Hence, while POWERSAFE_OVERWRITE is on by default, there is a file-control
-** available to turn it off and URI query parameter available to turn it off.
-*/
-static int unixDeviceCharacteristics(sqlite3_file *id){
- unixFile *pFd = (unixFile*)id;
- setDeviceCharacteristics(pFd);
- return pFd->deviceCharacteristics;
-}
-
-#if !defined(SQLITE_OMIT_WAL) || SQLITE_MAX_MMAP_SIZE>0
-
-/*
-** Return the system page size.
-**
-** This function should not be called directly by other code in this file.
-** Instead, it should be called via macro osGetpagesize().
-*/
-static int unixGetpagesize(void){
-#if OS_VXWORKS
- return 1024;
-#elif defined(_BSD_SOURCE)
- return getpagesize();
-#else
- return (int)sysconf(_SC_PAGESIZE);
-#endif
-}
-
-#endif /* !defined(SQLITE_OMIT_WAL) || SQLITE_MAX_MMAP_SIZE>0 */
-
-#ifndef SQLITE_OMIT_WAL
-
-/*
-** Object used to represent an shared memory buffer.
-**
-** When multiple threads all reference the same wal-index, each thread
-** has its own unixShm object, but they all point to a single instance
-** of this unixShmNode object. In other words, each wal-index is opened
-** only once per process.
-**
-** Each unixShmNode object is connected to a single unixInodeInfo object.
-** We could coalesce this object into unixInodeInfo, but that would mean
-** every open file that does not use shared memory (in other words, most
-** open files) would have to carry around this extra information. So
-** the unixInodeInfo object contains a pointer to this unixShmNode object
-** and the unixShmNode object is created only when needed.
-**
-** unixMutexHeld() must be true when creating or destroying
-** this object or while reading or writing the following fields:
-**
-** nRef
-**
-** The following fields are read-only after the object is created:
-**
-** fid
-** zFilename
-**
-** Either unixShmNode.mutex must be held or unixShmNode.nRef==0 and
-** unixMutexHeld() is true when reading or writing any other field
-** in this structure.
-*/
-struct unixShmNode {
- unixInodeInfo *pInode; /* unixInodeInfo that owns this SHM node */
- sqlite3_mutex *mutex; /* Mutex to access this object */
- char *zFilename; /* Name of the mmapped file */
- int h; /* Open file descriptor */
- int szRegion; /* Size of shared-memory regions */
- u16 nRegion; /* Size of array apRegion */
- u8 isReadonly; /* True if read-only */
- u8 isUnlocked; /* True if no DMS lock held */
- char **apRegion; /* Array of mapped shared-memory regions */
- int nRef; /* Number of unixShm objects pointing to this */
- unixShm *pFirst; /* All unixShm objects pointing to this */
-#ifdef SQLITE_DEBUG
- u8 exclMask; /* Mask of exclusive locks held */
- u8 sharedMask; /* Mask of shared locks held */
- u8 nextShmId; /* Next available unixShm.id value */
-#endif
-};
-
-/*
-** Structure used internally by this VFS to record the state of an
-** open shared memory connection.
-**
-** The following fields are initialized when this object is created and
-** are read-only thereafter:
-**
-** unixShm.pFile
-** unixShm.id
-**
-** All other fields are read/write. The unixShm.pFile->mutex must be held
-** while accessing any read/write fields.
-*/
-struct unixShm {
- unixShmNode *pShmNode; /* The underlying unixShmNode object */
- unixShm *pNext; /* Next unixShm with the same unixShmNode */
- u8 hasMutex; /* True if holding the unixShmNode mutex */
- u8 id; /* Id of this connection within its unixShmNode */
- u16 sharedMask; /* Mask of shared locks held */
- u16 exclMask; /* Mask of exclusive locks held */
-};
-
-/*
-** Constants used for locking
-*/
-#define UNIX_SHM_BASE ((22+SQLITE_SHM_NLOCK)*4) /* first lock byte */
-#define UNIX_SHM_DMS (UNIX_SHM_BASE+SQLITE_SHM_NLOCK) /* deadman switch */
-
-/*
-** Apply posix advisory locks for all bytes from ofst through ofst+n-1.
-**
-** Locks block if the mask is exactly UNIX_SHM_C and are non-blocking
-** otherwise.
-*/
-static int unixShmSystemLock(
- unixFile *pFile, /* Open connection to the WAL file */
- int lockType, /* F_UNLCK, F_RDLCK, or F_WRLCK */
- int ofst, /* First byte of the locking range */
- int n /* Number of bytes to lock */
-){
- unixShmNode *pShmNode; /* Apply locks to this open shared-memory segment */
- struct flock f; /* The posix advisory locking structure */
- int rc = SQLITE_OK; /* Result code form fcntl() */
-
- /* Access to the unixShmNode object is serialized by the caller */
- pShmNode = pFile->pInode->pShmNode;
- assert( pShmNode->nRef==0 || sqlite3_mutex_held(pShmNode->mutex) );
-
- /* Shared locks never span more than one byte */
- assert( n==1 || lockType!=F_RDLCK );
-
- /* Locks are within range */
- assert( n>=1 && n<=SQLITE_SHM_NLOCK );
-
- if( pShmNode->h>=0 ){
- /* Initialize the locking parameters */
- f.l_type = lockType;
- f.l_whence = SEEK_SET;
- f.l_start = ofst;
- f.l_len = n;
- rc = osSetPosixAdvisoryLock(pShmNode->h, &f, pFile);
- rc = (rc!=(-1)) ? SQLITE_OK : SQLITE_BUSY;
- }
-
- /* Update the global lock state and do debug tracing */
-#ifdef SQLITE_DEBUG
- { u16 mask;
- OSTRACE(("SHM-LOCK "));
- mask = ofst>31 ? 0xffff : (1<<(ofst+n)) - (1<exclMask &= ~mask;
- pShmNode->sharedMask &= ~mask;
- }else if( lockType==F_RDLCK ){
- OSTRACE(("read-lock %d ok", ofst));
- pShmNode->exclMask &= ~mask;
- pShmNode->sharedMask |= mask;
- }else{
- assert( lockType==F_WRLCK );
- OSTRACE(("write-lock %d ok", ofst));
- pShmNode->exclMask |= mask;
- pShmNode->sharedMask &= ~mask;
- }
- }else{
- if( lockType==F_UNLCK ){
- OSTRACE(("unlock %d failed", ofst));
- }else if( lockType==F_RDLCK ){
- OSTRACE(("read-lock failed"));
- }else{
- assert( lockType==F_WRLCK );
- OSTRACE(("write-lock %d failed", ofst));
- }
- }
- OSTRACE((" - afterwards %03x,%03x\n",
- pShmNode->sharedMask, pShmNode->exclMask));
- }
-#endif
-
- return rc;
-}
-
-/*
-** Return the minimum number of 32KB shm regions that should be mapped at
-** a time, assuming that each mapping must be an integer multiple of the
-** current system page-size.
-**
-** Usually, this is 1. The exception seems to be systems that are configured
-** to use 64KB pages - in this case each mapping must cover at least two
-** shm regions.
-*/
-static int unixShmRegionPerMap(void){
- int shmsz = 32*1024; /* SHM region size */
- int pgsz = osGetpagesize(); /* System page size */
- assert( ((pgsz-1)&pgsz)==0 ); /* Page size must be a power of 2 */
- if( pgszpInode->pShmNode;
- assert( unixMutexHeld() );
- if( p && ALWAYS(p->nRef==0) ){
- int nShmPerMap = unixShmRegionPerMap();
- int i;
- assert( p->pInode==pFd->pInode );
- sqlite3_mutex_free(p->mutex);
- for(i=0; inRegion; i+=nShmPerMap){
- if( p->h>=0 ){
- osMunmap(p->apRegion[i], p->szRegion);
- }else{
- sqlite3_free(p->apRegion[i]);
- }
- }
- sqlite3_free(p->apRegion);
- if( p->h>=0 ){
- robust_close(pFd, p->h, __LINE__);
- p->h = -1;
- }
- p->pInode->pShmNode = 0;
- sqlite3_free(p);
- }
-}
-
-/*
-** The DMS lock has not yet been taken on shm file pShmNode. Attempt to
-** take it now. Return SQLITE_OK if successful, or an SQLite error
-** code otherwise.
-**
-** If the DMS cannot be locked because this is a readonly_shm=1
-** connection and no other process already holds a lock, return
-** SQLITE_READONLY_CANTINIT and set pShmNode->isUnlocked=1.
-*/
-static int unixLockSharedMemory(unixFile *pDbFd, unixShmNode *pShmNode){
- struct flock lock;
- int rc = SQLITE_OK;
-
- /* Use F_GETLK to determine the locks other processes are holding
- ** on the DMS byte. If it indicates that another process is holding
- ** a SHARED lock, then this process may also take a SHARED lock
- ** and proceed with opening the *-shm file.
- **
- ** Or, if no other process is holding any lock, then this process
- ** is the first to open it. In this case take an EXCLUSIVE lock on the
- ** DMS byte and truncate the *-shm file to zero bytes in size. Then
- ** downgrade to a SHARED lock on the DMS byte.
- **
- ** If another process is holding an EXCLUSIVE lock on the DMS byte,
- ** return SQLITE_BUSY to the caller (it will try again). An earlier
- ** version of this code attempted the SHARED lock at this point. But
- ** this introduced a subtle race condition: if the process holding
- ** EXCLUSIVE failed just before truncating the *-shm file, then this
- ** process might open and use the *-shm file without truncating it.
- ** And if the *-shm file has been corrupted by a power failure or
- ** system crash, the database itself may also become corrupt. */
- lock.l_whence = SEEK_SET;
- lock.l_start = UNIX_SHM_DMS;
- lock.l_len = 1;
- lock.l_type = F_WRLCK;
- if( osFcntl(pShmNode->h, F_GETLK, &lock)!=0 ) {
- rc = SQLITE_IOERR_LOCK;
- }else if( lock.l_type==F_UNLCK ){
- if( pShmNode->isReadonly ){
- pShmNode->isUnlocked = 1;
- rc = SQLITE_READONLY_CANTINIT;
- }else{
- rc = unixShmSystemLock(pDbFd, F_WRLCK, UNIX_SHM_DMS, 1);
- if( rc==SQLITE_OK && robust_ftruncate(pShmNode->h, 0) ){
- rc = unixLogError(SQLITE_IOERR_SHMOPEN,"ftruncate",pShmNode->zFilename);
- }
- }
- }else if( lock.l_type==F_WRLCK ){
- rc = SQLITE_BUSY;
- }
-
- if( rc==SQLITE_OK ){
- assert( lock.l_type==F_UNLCK || lock.l_type==F_RDLCK );
- rc = unixShmSystemLock(pDbFd, F_RDLCK, UNIX_SHM_DMS, 1);
- }
- return rc;
-}
-
-/*
-** Open a shared-memory area associated with open database file pDbFd.
-** This particular implementation uses mmapped files.
-**
-** The file used to implement shared-memory is in the same directory
-** as the open database file and has the same name as the open database
-** file with the "-shm" suffix added. For example, if the database file
-** is "/home/user1/config.db" then the file that is created and mmapped
-** for shared memory will be called "/home/user1/config.db-shm".
-**
-** Another approach to is to use files in /dev/shm or /dev/tmp or an
-** some other tmpfs mount. But if a file in a different directory
-** from the database file is used, then differing access permissions
-** or a chroot() might cause two different processes on the same
-** database to end up using different files for shared memory -
-** meaning that their memory would not really be shared - resulting
-** in database corruption. Nevertheless, this tmpfs file usage
-** can be enabled at compile-time using -DSQLITE_SHM_DIRECTORY="/dev/shm"
-** or the equivalent. The use of the SQLITE_SHM_DIRECTORY compile-time
-** option results in an incompatible build of SQLite; builds of SQLite
-** that with differing SQLITE_SHM_DIRECTORY settings attempt to use the
-** same database file at the same time, database corruption will likely
-** result. The SQLITE_SHM_DIRECTORY compile-time option is considered
-** "unsupported" and may go away in a future SQLite release.
-**
-** When opening a new shared-memory file, if no other instances of that
-** file are currently open, in this process or in other processes, then
-** the file must be truncated to zero length or have its header cleared.
-**
-** If the original database file (pDbFd) is using the "unix-excl" VFS
-** that means that an exclusive lock is held on the database file and
-** that no other processes are able to read or write the database. In
-** that case, we do not really need shared memory. No shared memory
-** file is created. The shared memory will be simulated with heap memory.
-*/
-static int unixOpenSharedMemory(unixFile *pDbFd){
- struct unixShm *p = 0; /* The connection to be opened */
- struct unixShmNode *pShmNode; /* The underlying mmapped file */
- int rc = SQLITE_OK; /* Result code */
- unixInodeInfo *pInode; /* The inode of fd */
- char *zShm; /* Name of the file used for SHM */
- int nShmFilename; /* Size of the SHM filename in bytes */
-
- /* Allocate space for the new unixShm object. */
- p = sqlite3_malloc64( sizeof(*p) );
- if( p==0 ) return SQLITE_NOMEM_BKPT;
- memset(p, 0, sizeof(*p));
- assert( pDbFd->pShm==0 );
-
- /* Check to see if a unixShmNode object already exists. Reuse an existing
- ** one if present. Create a new one if necessary.
- */
- assert( unixFileMutexNotheld(pDbFd) );
- unixEnterMutex();
- pInode = pDbFd->pInode;
- pShmNode = pInode->pShmNode;
- if( pShmNode==0 ){
- struct stat sStat; /* fstat() info for database file */
-#ifndef SQLITE_SHM_DIRECTORY
- const char *zBasePath = pDbFd->zPath;
-#endif
-
- /* Call fstat() to figure out the permissions on the database file. If
- ** a new *-shm file is created, an attempt will be made to create it
- ** with the same permissions.
- */
- if( osFstat(pDbFd->h, &sStat) ){
- rc = SQLITE_IOERR_FSTAT;
- goto shm_open_err;
- }
-
-#ifdef SQLITE_SHM_DIRECTORY
- nShmFilename = sizeof(SQLITE_SHM_DIRECTORY) + 31;
-#else
- nShmFilename = 6 + (int)strlen(zBasePath);
-#endif
- pShmNode = sqlite3_malloc64( sizeof(*pShmNode) + nShmFilename );
- if( pShmNode==0 ){
- rc = SQLITE_NOMEM_BKPT;
- goto shm_open_err;
- }
- memset(pShmNode, 0, sizeof(*pShmNode)+nShmFilename);
- zShm = pShmNode->zFilename = (char*)&pShmNode[1];
-#ifdef SQLITE_SHM_DIRECTORY
- sqlite3_snprintf(nShmFilename, zShm,
- SQLITE_SHM_DIRECTORY "/sqlite-shm-%x-%x",
- (u32)sStat.st_ino, (u32)sStat.st_dev);
-#else
- sqlite3_snprintf(nShmFilename, zShm, "%s-shm", zBasePath);
- sqlite3FileSuffix3(pDbFd->zPath, zShm);
-#endif
- pShmNode->h = -1;
- pDbFd->pInode->pShmNode = pShmNode;
- pShmNode->pInode = pDbFd->pInode;
- if( sqlite3GlobalConfig.bCoreMutex ){
- pShmNode->mutex = sqlite3_mutex_alloc(SQLITE_MUTEX_FAST);
- if( pShmNode->mutex==0 ){
- rc = SQLITE_NOMEM_BKPT;
- goto shm_open_err;
- }
- }
-
- if( pInode->bProcessLock==0 ){
- if( 0==sqlite3_uri_boolean(pDbFd->zPath, "readonly_shm", 0) ){
- pShmNode->h = robust_open(zShm, O_RDWR|O_CREAT, (sStat.st_mode&0777));
- }
- if( pShmNode->h<0 ){
- pShmNode->h = robust_open(zShm, O_RDONLY, (sStat.st_mode&0777));
- if( pShmNode->h<0 ){
- rc = unixLogError(SQLITE_CANTOPEN_BKPT, "open", zShm);
- goto shm_open_err;
- }
- pShmNode->isReadonly = 1;
- }
-
- /* If this process is running as root, make sure that the SHM file
- ** is owned by the same user that owns the original database. Otherwise,
- ** the original owner will not be able to connect.
- */
- robustFchown(pShmNode->h, sStat.st_uid, sStat.st_gid);
-
- rc = unixLockSharedMemory(pDbFd, pShmNode);
- if( rc!=SQLITE_OK && rc!=SQLITE_READONLY_CANTINIT ) goto shm_open_err;
- }
- }
-
- /* Make the new connection a child of the unixShmNode */
- p->pShmNode = pShmNode;
-#ifdef SQLITE_DEBUG
- p->id = pShmNode->nextShmId++;
-#endif
- pShmNode->nRef++;
- pDbFd->pShm = p;
- unixLeaveMutex();
-
- /* The reference count on pShmNode has already been incremented under
- ** the cover of the unixEnterMutex() mutex and the pointer from the
- ** new (struct unixShm) object to the pShmNode has been set. All that is
- ** left to do is to link the new object into the linked list starting
- ** at pShmNode->pFirst. This must be done while holding the pShmNode->mutex
- ** mutex.
- */
- sqlite3_mutex_enter(pShmNode->mutex);
- p->pNext = pShmNode->pFirst;
- pShmNode->pFirst = p;
- sqlite3_mutex_leave(pShmNode->mutex);
- return rc;
-
- /* Jump here on any error */
-shm_open_err:
- unixShmPurge(pDbFd); /* This call frees pShmNode if required */
- sqlite3_free(p);
- unixLeaveMutex();
- return rc;
-}
-
-/*
-** This function is called to obtain a pointer to region iRegion of the
-** shared-memory associated with the database file fd. Shared-memory regions
-** are numbered starting from zero. Each shared-memory region is szRegion
-** bytes in size.
-**
-** If an error occurs, an error code is returned and *pp is set to NULL.
-**
-** Otherwise, if the bExtend parameter is 0 and the requested shared-memory
-** region has not been allocated (by any client, including one running in a
-** separate process), then *pp is set to NULL and SQLITE_OK returned. If
-** bExtend is non-zero and the requested shared-memory region has not yet
-** been allocated, it is allocated by this function.
-**
-** If the shared-memory region has already been allocated or is allocated by
-** this call as described above, then it is mapped into this processes
-** address space (if it is not already), *pp is set to point to the mapped
-** memory and SQLITE_OK returned.
-*/
-static int unixShmMap(
- sqlite3_file *fd, /* Handle open on database file */
- int iRegion, /* Region to retrieve */
- int szRegion, /* Size of regions */
- int bExtend, /* True to extend file if necessary */
- void volatile **pp /* OUT: Mapped memory */
-){
- unixFile *pDbFd = (unixFile*)fd;
- unixShm *p;
- unixShmNode *pShmNode;
- int rc = SQLITE_OK;
- int nShmPerMap = unixShmRegionPerMap();
- int nReqRegion;
-
- /* If the shared-memory file has not yet been opened, open it now. */
- if( pDbFd->pShm==0 ){
- rc = unixOpenSharedMemory(pDbFd);
- if( rc!=SQLITE_OK ) return rc;
- }
-
- p = pDbFd->pShm;
- pShmNode = p->pShmNode;
- sqlite3_mutex_enter(pShmNode->mutex);
- if( pShmNode->isUnlocked ){
- rc = unixLockSharedMemory(pDbFd, pShmNode);
- if( rc!=SQLITE_OK ) goto shmpage_out;
- pShmNode->isUnlocked = 0;
- }
- assert( szRegion==pShmNode->szRegion || pShmNode->nRegion==0 );
- assert( pShmNode->pInode==pDbFd->pInode );
- assert( pShmNode->h>=0 || pDbFd->pInode->bProcessLock==1 );
- assert( pShmNode->h<0 || pDbFd->pInode->bProcessLock==0 );
-
- /* Minimum number of regions required to be mapped. */
- nReqRegion = ((iRegion+nShmPerMap) / nShmPerMap) * nShmPerMap;
-
- if( pShmNode->nRegionszRegion = szRegion;
-
- if( pShmNode->h>=0 ){
- /* The requested region is not mapped into this processes address space.
- ** Check to see if it has been allocated (i.e. if the wal-index file is
- ** large enough to contain the requested region).
- */
- if( osFstat(pShmNode->h, &sStat) ){
- rc = SQLITE_IOERR_SHMSIZE;
- goto shmpage_out;
- }
-
- if( sStat.st_sizeh, iPg*pgsz + pgsz-1, "", 1, &x)!=1 ){
- const char *zFile = pShmNode->zFilename;
- rc = unixLogError(SQLITE_IOERR_SHMSIZE, "write", zFile);
- goto shmpage_out;
- }
- }
- }
- }
- }
-
- /* Map the requested memory region into this processes address space. */
- apNew = (char **)sqlite3_realloc(
- pShmNode->apRegion, nReqRegion*sizeof(char *)
- );
- if( !apNew ){
- rc = SQLITE_IOERR_NOMEM_BKPT;
- goto shmpage_out;
- }
- pShmNode->apRegion = apNew;
- while( pShmNode->nRegionh>=0 ){
- pMem = osMmap(0, nMap,
- pShmNode->isReadonly ? PROT_READ : PROT_READ|PROT_WRITE,
- MAP_SHARED, pShmNode->h, szRegion*(i64)pShmNode->nRegion
- );
- if( pMem==MAP_FAILED ){
- rc = unixLogError(SQLITE_IOERR_SHMMAP, "mmap", pShmNode->zFilename);
- goto shmpage_out;
- }
- }else{
- pMem = sqlite3_malloc64(szRegion);
- if( pMem==0 ){
- rc = SQLITE_NOMEM_BKPT;
- goto shmpage_out;
- }
- memset(pMem, 0, szRegion);
- }
-
- for(i=0; iapRegion[pShmNode->nRegion+i] = &((char*)pMem)[szRegion*i];
- }
- pShmNode->nRegion += nShmPerMap;
- }
- }
-
-shmpage_out:
- if( pShmNode->nRegion>iRegion ){
- *pp = pShmNode->apRegion[iRegion];
- }else{
- *pp = 0;
- }
- if( pShmNode->isReadonly && rc==SQLITE_OK ) rc = SQLITE_READONLY;
- sqlite3_mutex_leave(pShmNode->mutex);
- return rc;
-}
-
-/*
-** Change the lock state for a shared-memory segment.
-**
-** Note that the relationship between SHAREd and EXCLUSIVE locks is a little
-** different here than in posix. In xShmLock(), one can go from unlocked
-** to shared and back or from unlocked to exclusive and back. But one may
-** not go from shared to exclusive or from exclusive to shared.
-*/
-static int unixShmLock(
- sqlite3_file *fd, /* Database file holding the shared memory */
- int ofst, /* First lock to acquire or release */
- int n, /* Number of locks to acquire or release */
- int flags /* What to do with the lock */
-){
- unixFile *pDbFd = (unixFile*)fd; /* Connection holding shared memory */
- unixShm *p = pDbFd->pShm; /* The shared memory being locked */
- unixShm *pX; /* For looping over all siblings */
- unixShmNode *pShmNode = p->pShmNode; /* The underlying file iNode */
- int rc = SQLITE_OK; /* Result code */
- u16 mask; /* Mask of locks to take or release */
-
- assert( pShmNode==pDbFd->pInode->pShmNode );
- assert( pShmNode->pInode==pDbFd->pInode );
- assert( ofst>=0 && ofst+n<=SQLITE_SHM_NLOCK );
- assert( n>=1 );
- assert( flags==(SQLITE_SHM_LOCK | SQLITE_SHM_SHARED)
- || flags==(SQLITE_SHM_LOCK | SQLITE_SHM_EXCLUSIVE)
- || flags==(SQLITE_SHM_UNLOCK | SQLITE_SHM_SHARED)
- || flags==(SQLITE_SHM_UNLOCK | SQLITE_SHM_EXCLUSIVE) );
- assert( n==1 || (flags & SQLITE_SHM_EXCLUSIVE)!=0 );
- assert( pShmNode->h>=0 || pDbFd->pInode->bProcessLock==1 );
- assert( pShmNode->h<0 || pDbFd->pInode->bProcessLock==0 );
-
- mask = (1<<(ofst+n)) - (1<1 || mask==(1<mutex);
- if( flags & SQLITE_SHM_UNLOCK ){
- u16 allMask = 0; /* Mask of locks held by siblings */
-
- /* See if any siblings hold this same lock */
- for(pX=pShmNode->pFirst; pX; pX=pX->pNext){
- if( pX==p ) continue;
- assert( (pX->exclMask & (p->exclMask|p->sharedMask))==0 );
- allMask |= pX->sharedMask;
- }
-
- /* Unlock the system-level locks */
- if( (mask & allMask)==0 ){
- rc = unixShmSystemLock(pDbFd, F_UNLCK, ofst+UNIX_SHM_BASE, n);
- }else{
- rc = SQLITE_OK;
- }
-
- /* Undo the local locks */
- if( rc==SQLITE_OK ){
- p->exclMask &= ~mask;
- p->sharedMask &= ~mask;
- }
- }else if( flags & SQLITE_SHM_SHARED ){
- u16 allShared = 0; /* Union of locks held by connections other than "p" */
-
- /* Find out which shared locks are already held by sibling connections.
- ** If any sibling already holds an exclusive lock, go ahead and return
- ** SQLITE_BUSY.
- */
- for(pX=pShmNode->pFirst; pX; pX=pX->pNext){
- if( (pX->exclMask & mask)!=0 ){
- rc = SQLITE_BUSY;
- break;
- }
- allShared |= pX->sharedMask;
- }
-
- /* Get shared locks at the system level, if necessary */
- if( rc==SQLITE_OK ){
- if( (allShared & mask)==0 ){
- rc = unixShmSystemLock(pDbFd, F_RDLCK, ofst+UNIX_SHM_BASE, n);
- }else{
- rc = SQLITE_OK;
- }
- }
-
- /* Get the local shared locks */
- if( rc==SQLITE_OK ){
- p->sharedMask |= mask;
- }
- }else{
- /* Make sure no sibling connections hold locks that will block this
- ** lock. If any do, return SQLITE_BUSY right away.
- */
- for(pX=pShmNode->pFirst; pX; pX=pX->pNext){
- if( (pX->exclMask & mask)!=0 || (pX->sharedMask & mask)!=0 ){
- rc = SQLITE_BUSY;
- break;
- }
- }
-
- /* Get the exclusive locks at the system level. Then if successful
- ** also mark the local connection as being locked.
- */
- if( rc==SQLITE_OK ){
- rc = unixShmSystemLock(pDbFd, F_WRLCK, ofst+UNIX_SHM_BASE, n);
- if( rc==SQLITE_OK ){
- assert( (p->sharedMask & mask)==0 );
- p->exclMask |= mask;
- }
- }
- }
- sqlite3_mutex_leave(pShmNode->mutex);
- OSTRACE(("SHM-LOCK shmid-%d, pid-%d got %03x,%03x\n",
- p->id, osGetpid(0), p->sharedMask, p->exclMask));
- return rc;
-}
-
-/*
-** Implement a memory barrier or memory fence on shared memory.
-**
-** All loads and stores begun before the barrier must complete before
-** any load or store begun after the barrier.
-*/
-static void unixShmBarrier(
- sqlite3_file *fd /* Database file holding the shared memory */
-){
- UNUSED_PARAMETER(fd);
- sqlite3MemoryBarrier(); /* compiler-defined memory barrier */
- assert( fd->pMethods->xLock==nolockLock
- || unixFileMutexNotheld((unixFile*)fd)
- );
- unixEnterMutex(); /* Also mutex, for redundancy */
- unixLeaveMutex();
-}
-
-/*
-** Close a connection to shared-memory. Delete the underlying
-** storage if deleteFlag is true.
-**
-** If there is no shared memory associated with the connection then this
-** routine is a harmless no-op.
-*/
-static int unixShmUnmap(
- sqlite3_file *fd, /* The underlying database file */
- int deleteFlag /* Delete shared-memory if true */
-){
- unixShm *p; /* The connection to be closed */
- unixShmNode *pShmNode; /* The underlying shared-memory file */
- unixShm **pp; /* For looping over sibling connections */
- unixFile *pDbFd; /* The underlying database file */
-
- pDbFd = (unixFile*)fd;
- p = pDbFd->pShm;
- if( p==0 ) return SQLITE_OK;
- pShmNode = p->pShmNode;
-
- assert( pShmNode==pDbFd->pInode->pShmNode );
- assert( pShmNode->pInode==pDbFd->pInode );
-
- /* Remove connection p from the set of connections associated
- ** with pShmNode */
- sqlite3_mutex_enter(pShmNode->mutex);
- for(pp=&pShmNode->pFirst; (*pp)!=p; pp = &(*pp)->pNext){}
- *pp = p->pNext;
-
- /* Free the connection p */
- sqlite3_free(p);
- pDbFd->pShm = 0;
- sqlite3_mutex_leave(pShmNode->mutex);
-
- /* If pShmNode->nRef has reached 0, then close the underlying
- ** shared-memory file, too */
- assert( unixFileMutexNotheld(pDbFd) );
- unixEnterMutex();
- assert( pShmNode->nRef>0 );
- pShmNode->nRef--;
- if( pShmNode->nRef==0 ){
- if( deleteFlag && pShmNode->h>=0 ){
- osUnlink(pShmNode->zFilename);
- }
- unixShmPurge(pDbFd);
- }
- unixLeaveMutex();
-
- return SQLITE_OK;
-}
-
-
-#else
-# define unixShmMap 0
-# define unixShmLock 0
-# define unixShmBarrier 0
-# define unixShmUnmap 0
-#endif /* #ifndef SQLITE_OMIT_WAL */
-
-#if SQLITE_MAX_MMAP_SIZE>0
-/*
-** If it is currently memory mapped, unmap file pFd.
-*/
-static void unixUnmapfile(unixFile *pFd){
- assert( pFd->nFetchOut==0 );
- if( pFd->pMapRegion ){
- osMunmap(pFd->pMapRegion, pFd->mmapSizeActual);
- pFd->pMapRegion = 0;
- pFd->mmapSize = 0;
- pFd->mmapSizeActual = 0;
- }
-}
-
-/*
-** Attempt to set the size of the memory mapping maintained by file
-** descriptor pFd to nNew bytes. Any existing mapping is discarded.
-**
-** If successful, this function sets the following variables:
-**
-** unixFile.pMapRegion
-** unixFile.mmapSize
-** unixFile.mmapSizeActual
-**
-** If unsuccessful, an error message is logged via sqlite3_log() and
-** the three variables above are zeroed. In this case SQLite should
-** continue accessing the database using the xRead() and xWrite()
-** methods.
-*/
-static void unixRemapfile(
- unixFile *pFd, /* File descriptor object */
- i64 nNew /* Required mapping size */
-){
- const char *zErr = "mmap";
- int h = pFd->h; /* File descriptor open on db file */
- u8 *pOrig = (u8 *)pFd->pMapRegion; /* Pointer to current file mapping */
- i64 nOrig = pFd->mmapSizeActual; /* Size of pOrig region in bytes */
- u8 *pNew = 0; /* Location of new mapping */
- int flags = PROT_READ; /* Flags to pass to mmap() */
-
- assert( pFd->nFetchOut==0 );
- assert( nNew>pFd->mmapSize );
- assert( nNew<=pFd->mmapSizeMax );
- assert( nNew>0 );
- assert( pFd->mmapSizeActual>=pFd->mmapSize );
- assert( MAP_FAILED!=0 );
-
-#ifdef SQLITE_MMAP_READWRITE
- if( (pFd->ctrlFlags & UNIXFILE_RDONLY)==0 ) flags |= PROT_WRITE;
-#endif
-
- if( pOrig ){
-#if HAVE_MREMAP
- i64 nReuse = pFd->mmapSize;
-#else
- const int szSyspage = osGetpagesize();
- i64 nReuse = (pFd->mmapSize & ~(szSyspage-1));
-#endif
- u8 *pReq = &pOrig[nReuse];
-
- /* Unmap any pages of the existing mapping that cannot be reused. */
- if( nReuse!=nOrig ){
- osMunmap(pReq, nOrig-nReuse);
- }
-
-#if HAVE_MREMAP
- pNew = osMremap(pOrig, nReuse, nNew, MREMAP_MAYMOVE);
- zErr = "mremap";
-#else
- pNew = osMmap(pReq, nNew-nReuse, flags, MAP_SHARED, h, nReuse);
- if( pNew!=MAP_FAILED ){
- if( pNew!=pReq ){
- osMunmap(pNew, nNew - nReuse);
- pNew = 0;
- }else{
- pNew = pOrig;
- }
- }
-#endif
-
- /* The attempt to extend the existing mapping failed. Free it. */
- if( pNew==MAP_FAILED || pNew==0 ){
- osMunmap(pOrig, nReuse);
- }
- }
-
- /* If pNew is still NULL, try to create an entirely new mapping. */
- if( pNew==0 ){
- pNew = osMmap(0, nNew, flags, MAP_SHARED, h, 0);
- }
-
- if( pNew==MAP_FAILED ){
- pNew = 0;
- nNew = 0;
- unixLogError(SQLITE_OK, zErr, pFd->zPath);
-
- /* If the mmap() above failed, assume that all subsequent mmap() calls
- ** will probably fail too. Fall back to using xRead/xWrite exclusively
- ** in this case. */
- pFd->mmapSizeMax = 0;
- }
- pFd->pMapRegion = (void *)pNew;
- pFd->mmapSize = pFd->mmapSizeActual = nNew;
-}
-
-/*
-** Memory map or remap the file opened by file-descriptor pFd (if the file
-** is already mapped, the existing mapping is replaced by the new). Or, if
-** there already exists a mapping for this file, and there are still
-** outstanding xFetch() references to it, this function is a no-op.
-**
-** If parameter nByte is non-negative, then it is the requested size of
-** the mapping to create. Otherwise, if nByte is less than zero, then the
-** requested size is the size of the file on disk. The actual size of the
-** created mapping is either the requested size or the value configured
-** using SQLITE_FCNTL_MMAP_LIMIT, whichever is smaller.
-**
-** SQLITE_OK is returned if no error occurs (even if the mapping is not
-** recreated as a result of outstanding references) or an SQLite error
-** code otherwise.
-*/
-static int unixMapfile(unixFile *pFd, i64 nMap){
- assert( nMap>=0 || pFd->nFetchOut==0 );
- assert( nMap>0 || (pFd->mmapSize==0 && pFd->pMapRegion==0) );
- if( pFd->nFetchOut>0 ) return SQLITE_OK;
-
- if( nMap<0 ){
- struct stat statbuf; /* Low-level file information */
- if( osFstat(pFd->h, &statbuf) ){
- return SQLITE_IOERR_FSTAT;
- }
- nMap = statbuf.st_size;
- }
- if( nMap>pFd->mmapSizeMax ){
- nMap = pFd->mmapSizeMax;
- }
-
- assert( nMap>0 || (pFd->mmapSize==0 && pFd->pMapRegion==0) );
- if( nMap!=pFd->mmapSize ){
- unixRemapfile(pFd, nMap);
- }
-
- return SQLITE_OK;
-}
-#endif /* SQLITE_MAX_MMAP_SIZE>0 */
-
-/*
-** If possible, return a pointer to a mapping of file fd starting at offset
-** iOff. The mapping must be valid for at least nAmt bytes.
-**
-** If such a pointer can be obtained, store it in *pp and return SQLITE_OK.
-** Or, if one cannot but no error occurs, set *pp to 0 and return SQLITE_OK.
-** Finally, if an error does occur, return an SQLite error code. The final
-** value of *pp is undefined in this case.
-**
-** If this function does return a pointer, the caller must eventually
-** release the reference by calling unixUnfetch().
-*/
-static int unixFetch(sqlite3_file *fd, i64 iOff, int nAmt, void **pp){
-#if SQLITE_MAX_MMAP_SIZE>0
- unixFile *pFd = (unixFile *)fd; /* The underlying database file */
-#endif
- *pp = 0;
-
-#if SQLITE_MAX_MMAP_SIZE>0
- if( pFd->mmapSizeMax>0 ){
- if( pFd->pMapRegion==0 ){
- int rc = unixMapfile(pFd, -1);
- if( rc!=SQLITE_OK ) return rc;
- }
- if( pFd->mmapSize >= iOff+nAmt ){
- *pp = &((u8 *)pFd->pMapRegion)[iOff];
- pFd->nFetchOut++;
- }
- }
-#endif
- return SQLITE_OK;
-}
-
-/*
-** If the third argument is non-NULL, then this function releases a
-** reference obtained by an earlier call to unixFetch(). The second
-** argument passed to this function must be the same as the corresponding
-** argument that was passed to the unixFetch() invocation.
-**
-** Or, if the third argument is NULL, then this function is being called
-** to inform the VFS layer that, according to POSIX, any existing mapping
-** may now be invalid and should be unmapped.
-*/
-static int unixUnfetch(sqlite3_file *fd, i64 iOff, void *p){
-#if SQLITE_MAX_MMAP_SIZE>0
- unixFile *pFd = (unixFile *)fd; /* The underlying database file */
- UNUSED_PARAMETER(iOff);
-
- /* If p==0 (unmap the entire file) then there must be no outstanding
- ** xFetch references. Or, if p!=0 (meaning it is an xFetch reference),
- ** then there must be at least one outstanding. */
- assert( (p==0)==(pFd->nFetchOut==0) );
-
- /* If p!=0, it must match the iOff value. */
- assert( p==0 || p==&((u8 *)pFd->pMapRegion)[iOff] );
-
- if( p ){
- pFd->nFetchOut--;
- }else{
- unixUnmapfile(pFd);
- }
-
- assert( pFd->nFetchOut>=0 );
-#else
- UNUSED_PARAMETER(fd);
- UNUSED_PARAMETER(p);
- UNUSED_PARAMETER(iOff);
-#endif
- return SQLITE_OK;
-}
-
-/*
-** Here ends the implementation of all sqlite3_file methods.
-**
-********************** End sqlite3_file Methods *******************************
-******************************************************************************/
-
-/*
-** This division contains definitions of sqlite3_io_methods objects that
-** implement various file locking strategies. It also contains definitions
-** of "finder" functions. A finder-function is used to locate the appropriate
-** sqlite3_io_methods object for a particular database file. The pAppData
-** field of the sqlite3_vfs VFS objects are initialized to be pointers to
-** the correct finder-function for that VFS.
-**
-** Most finder functions return a pointer to a fixed sqlite3_io_methods
-** object. The only interesting finder-function is autolockIoFinder, which
-** looks at the filesystem type and tries to guess the best locking
-** strategy from that.
-**
-** For finder-function F, two objects are created:
-**
-** (1) The real finder-function named "FImpt()".
-**
-** (2) A constant pointer to this function named just "F".
-**
-**
-** A pointer to the F pointer is used as the pAppData value for VFS
-** objects. We have to do this instead of letting pAppData point
-** directly at the finder-function since C90 rules prevent a void*
-** from be cast into a function pointer.
-**
-**
-** Each instance of this macro generates two objects:
-**
-** * A constant sqlite3_io_methods object call METHOD that has locking
-** methods CLOSE, LOCK, UNLOCK, CKRESLOCK.
-**
-** * An I/O method finder function called FINDER that returns a pointer
-** to the METHOD object in the previous bullet.
-*/
-#define IOMETHODS(FINDER,METHOD,VERSION,CLOSE,LOCK,UNLOCK,CKLOCK,SHMMAP) \
-static const sqlite3_io_methods METHOD = { \
- VERSION, /* iVersion */ \
- CLOSE, /* xClose */ \
- unixRead, /* xRead */ \
- unixWrite, /* xWrite */ \
- unixTruncate, /* xTruncate */ \
- unixSync, /* xSync */ \
- unixFileSize, /* xFileSize */ \
- LOCK, /* xLock */ \
- UNLOCK, /* xUnlock */ \
- CKLOCK, /* xCheckReservedLock */ \
- unixFileControl, /* xFileControl */ \
- unixSectorSize, /* xSectorSize */ \
- unixDeviceCharacteristics, /* xDeviceCapabilities */ \
- SHMMAP, /* xShmMap */ \
- unixShmLock, /* xShmLock */ \
- unixShmBarrier, /* xShmBarrier */ \
- unixShmUnmap, /* xShmUnmap */ \
- unixFetch, /* xFetch */ \
- unixUnfetch, /* xUnfetch */ \
-}; \
-static const sqlite3_io_methods *FINDER##Impl(const char *z, unixFile *p){ \
- UNUSED_PARAMETER(z); UNUSED_PARAMETER(p); \
- return &METHOD; \
-} \
-static const sqlite3_io_methods *(*const FINDER)(const char*,unixFile *p) \
- = FINDER##Impl;
-
-/*
-** Here are all of the sqlite3_io_methods objects for each of the
-** locking strategies. Functions that return pointers to these methods
-** are also created.
-*/
-IOMETHODS(
- posixIoFinder, /* Finder function name */
- posixIoMethods, /* sqlite3_io_methods object name */
- 3, /* shared memory and mmap are enabled */
- unixClose, /* xClose method */
- unixLock, /* xLock method */
- unixUnlock, /* xUnlock method */
- unixCheckReservedLock, /* xCheckReservedLock method */
- unixShmMap /* xShmMap method */
-)
-IOMETHODS(
- nolockIoFinder, /* Finder function name */
- nolockIoMethods, /* sqlite3_io_methods object name */
- 3, /* shared memory and mmap are enabled */
- nolockClose, /* xClose method */
- nolockLock, /* xLock method */
- nolockUnlock, /* xUnlock method */
- nolockCheckReservedLock, /* xCheckReservedLock method */
- 0 /* xShmMap method */
-)
-IOMETHODS(
- dotlockIoFinder, /* Finder function name */
- dotlockIoMethods, /* sqlite3_io_methods object name */
- 1, /* shared memory is disabled */
- dotlockClose, /* xClose method */
- dotlockLock, /* xLock method */
- dotlockUnlock, /* xUnlock method */
- dotlockCheckReservedLock, /* xCheckReservedLock method */
- 0 /* xShmMap method */
-)
-
-#if SQLITE_ENABLE_LOCKING_STYLE
-IOMETHODS(
- flockIoFinder, /* Finder function name */
- flockIoMethods, /* sqlite3_io_methods object name */
- 1, /* shared memory is disabled */
- flockClose, /* xClose method */
- flockLock, /* xLock method */
- flockUnlock, /* xUnlock method */
- flockCheckReservedLock, /* xCheckReservedLock method */
- 0 /* xShmMap method */
-)
-#endif
-
-#if OS_VXWORKS
-IOMETHODS(
- semIoFinder, /* Finder function name */
- semIoMethods, /* sqlite3_io_methods object name */
- 1, /* shared memory is disabled */
- semXClose, /* xClose method */
- semXLock, /* xLock method */
- semXUnlock, /* xUnlock method */
- semXCheckReservedLock, /* xCheckReservedLock method */
- 0 /* xShmMap method */
-)
-#endif
-
-#if defined(__APPLE__) && SQLITE_ENABLE_LOCKING_STYLE
-IOMETHODS(
- afpIoFinder, /* Finder function name */
- afpIoMethods, /* sqlite3_io_methods object name */
- 1, /* shared memory is disabled */
- afpClose, /* xClose method */
- afpLock, /* xLock method */
- afpUnlock, /* xUnlock method */
- afpCheckReservedLock, /* xCheckReservedLock method */
- 0 /* xShmMap method */
-)
-#endif
-
-/*
-** The proxy locking method is a "super-method" in the sense that it
-** opens secondary file descriptors for the conch and lock files and
-** it uses proxy, dot-file, AFP, and flock() locking methods on those
-** secondary files. For this reason, the division that implements
-** proxy locking is located much further down in the file. But we need
-** to go ahead and define the sqlite3_io_methods and finder function
-** for proxy locking here. So we forward declare the I/O methods.
-*/
-#if defined(__APPLE__) && SQLITE_ENABLE_LOCKING_STYLE
-static int proxyClose(sqlite3_file*);
-static int proxyLock(sqlite3_file*, int);
-static int proxyUnlock(sqlite3_file*, int);
-static int proxyCheckReservedLock(sqlite3_file*, int*);
-IOMETHODS(
- proxyIoFinder, /* Finder function name */
- proxyIoMethods, /* sqlite3_io_methods object name */
- 1, /* shared memory is disabled */
- proxyClose, /* xClose method */
- proxyLock, /* xLock method */
- proxyUnlock, /* xUnlock method */
- proxyCheckReservedLock, /* xCheckReservedLock method */
- 0 /* xShmMap method */
-)
-#endif
-
-/* nfs lockd on OSX 10.3+ doesn't clear write locks when a read lock is set */
-#if defined(__APPLE__) && SQLITE_ENABLE_LOCKING_STYLE
-IOMETHODS(
- nfsIoFinder, /* Finder function name */
- nfsIoMethods, /* sqlite3_io_methods object name */
- 1, /* shared memory is disabled */
- unixClose, /* xClose method */
- unixLock, /* xLock method */
- nfsUnlock, /* xUnlock method */
- unixCheckReservedLock, /* xCheckReservedLock method */
- 0 /* xShmMap method */
-)
-#endif
-
-#if defined(__APPLE__) && SQLITE_ENABLE_LOCKING_STYLE
-/*
-** This "finder" function attempts to determine the best locking strategy
-** for the database file "filePath". It then returns the sqlite3_io_methods
-** object that implements that strategy.
-**
-** This is for MacOSX only.
-*/
-static const sqlite3_io_methods *autolockIoFinderImpl(
- const char *filePath, /* name of the database file */
- unixFile *pNew /* open file object for the database file */
-){
- static const struct Mapping {
- const char *zFilesystem; /* Filesystem type name */
- const sqlite3_io_methods *pMethods; /* Appropriate locking method */
- } aMap[] = {
- { "hfs", &posixIoMethods },
- { "ufs", &posixIoMethods },
- { "afpfs", &afpIoMethods },
- { "smbfs", &afpIoMethods },
- { "webdav", &nolockIoMethods },
- { 0, 0 }
- };
- int i;
- struct statfs fsInfo;
- struct flock lockInfo;
-
- if( !filePath ){
- /* If filePath==NULL that means we are dealing with a transient file
- ** that does not need to be locked. */
- return &nolockIoMethods;
- }
- if( statfs(filePath, &fsInfo) != -1 ){
- if( fsInfo.f_flags & MNT_RDONLY ){
- return &nolockIoMethods;
- }
- for(i=0; aMap[i].zFilesystem; i++){
- if( strcmp(fsInfo.f_fstypename, aMap[i].zFilesystem)==0 ){
- return aMap[i].pMethods;
- }
- }
- }
-
- /* Default case. Handles, amongst others, "nfs".
- ** Test byte-range lock using fcntl(). If the call succeeds,
- ** assume that the file-system supports POSIX style locks.
- */
- lockInfo.l_len = 1;
- lockInfo.l_start = 0;
- lockInfo.l_whence = SEEK_SET;
- lockInfo.l_type = F_RDLCK;
- if( osFcntl(pNew->h, F_GETLK, &lockInfo)!=-1 ) {
- if( strcmp(fsInfo.f_fstypename, "nfs")==0 ){
- return &nfsIoMethods;
- } else {
- return &posixIoMethods;
- }
- }else{
- return &dotlockIoMethods;
- }
-}
-static const sqlite3_io_methods
- *(*const autolockIoFinder)(const char*,unixFile*) = autolockIoFinderImpl;
-
-#endif /* defined(__APPLE__) && SQLITE_ENABLE_LOCKING_STYLE */
-
-#if OS_VXWORKS
-/*
-** This "finder" function for VxWorks checks to see if posix advisory
-** locking works. If it does, then that is what is used. If it does not
-** work, then fallback to named semaphore locking.
-*/
-static const sqlite3_io_methods *vxworksIoFinderImpl(
- const char *filePath, /* name of the database file */
- unixFile *pNew /* the open file object */
-){
- struct flock lockInfo;
-
- if( !filePath ){
- /* If filePath==NULL that means we are dealing with a transient file
- ** that does not need to be locked. */
- return &nolockIoMethods;
- }
-
- /* Test if fcntl() is supported and use POSIX style locks.
- ** Otherwise fall back to the named semaphore method.
- */
- lockInfo.l_len = 1;
- lockInfo.l_start = 0;
- lockInfo.l_whence = SEEK_SET;
- lockInfo.l_type = F_RDLCK;
- if( osFcntl(pNew->h, F_GETLK, &lockInfo)!=-1 ) {
- return &posixIoMethods;
- }else{
- return &semIoMethods;
- }
-}
-static const sqlite3_io_methods
- *(*const vxworksIoFinder)(const char*,unixFile*) = vxworksIoFinderImpl;
-
-#endif /* OS_VXWORKS */
-
-/*
-** An abstract type for a pointer to an IO method finder function:
-*/
-typedef const sqlite3_io_methods *(*finder_type)(const char*,unixFile*);
-
-
-/****************************************************************************
-**************************** sqlite3_vfs methods ****************************
-**
-** This division contains the implementation of methods on the
-** sqlite3_vfs object.
-*/
-
-/*
-** Initialize the contents of the unixFile structure pointed to by pId.
-*/
-static int fillInUnixFile(
- sqlite3_vfs *pVfs, /* Pointer to vfs object */
- int h, /* Open file descriptor of file being opened */
- sqlite3_file *pId, /* Write to the unixFile structure here */
- const char *zFilename, /* Name of the file being opened */
- int ctrlFlags /* Zero or more UNIXFILE_* values */
-){
- const sqlite3_io_methods *pLockingStyle;
- unixFile *pNew = (unixFile *)pId;
- int rc = SQLITE_OK;
-
- assert( pNew->pInode==NULL );
-
- /* No locking occurs in temporary files */
- assert( zFilename!=0 || (ctrlFlags & UNIXFILE_NOLOCK)!=0 );
-
- OSTRACE(("OPEN %-3d %s\n", h, zFilename));
- pNew->h = h;
- pNew->pVfs = pVfs;
- pNew->zPath = zFilename;
- pNew->ctrlFlags = (u8)ctrlFlags;
-#if SQLITE_MAX_MMAP_SIZE>0
- pNew->mmapSizeMax = sqlite3GlobalConfig.szMmap;
-#endif
- if( sqlite3_uri_boolean(((ctrlFlags & UNIXFILE_URI) ? zFilename : 0),
- "psow", SQLITE_POWERSAFE_OVERWRITE) ){
- pNew->ctrlFlags |= UNIXFILE_PSOW;
- }
- if( strcmp(pVfs->zName,"unix-excl")==0 ){
- pNew->ctrlFlags |= UNIXFILE_EXCL;
- }
-
-#if OS_VXWORKS
- pNew->pId = vxworksFindFileId(zFilename);
- if( pNew->pId==0 ){
- ctrlFlags |= UNIXFILE_NOLOCK;
- rc = SQLITE_NOMEM_BKPT;
- }
-#endif
-
- if( ctrlFlags & UNIXFILE_NOLOCK ){
- pLockingStyle = &nolockIoMethods;
- }else{
- pLockingStyle = (**(finder_type*)pVfs->pAppData)(zFilename, pNew);
-#if SQLITE_ENABLE_LOCKING_STYLE
- /* Cache zFilename in the locking context (AFP and dotlock override) for
- ** proxyLock activation is possible (remote proxy is based on db name)
- ** zFilename remains valid until file is closed, to support */
- pNew->lockingContext = (void*)zFilename;
-#endif
- }
-
- if( pLockingStyle == &posixIoMethods
-#if defined(__APPLE__) && SQLITE_ENABLE_LOCKING_STYLE
- || pLockingStyle == &nfsIoMethods
-#endif
- ){
- unixEnterMutex();
- rc = findInodeInfo(pNew, &pNew->pInode);
- if( rc!=SQLITE_OK ){
- /* If an error occurred in findInodeInfo(), close the file descriptor
- ** immediately, before releasing the mutex. findInodeInfo() may fail
- ** in two scenarios:
- **
- ** (a) A call to fstat() failed.
- ** (b) A malloc failed.
- **
- ** Scenario (b) may only occur if the process is holding no other
- ** file descriptors open on the same file. If there were other file
- ** descriptors on this file, then no malloc would be required by
- ** findInodeInfo(). If this is the case, it is quite safe to close
- ** handle h - as it is guaranteed that no posix locks will be released
- ** by doing so.
- **
- ** If scenario (a) caused the error then things are not so safe. The
- ** implicit assumption here is that if fstat() fails, things are in
- ** such bad shape that dropping a lock or two doesn't matter much.
- */
- robust_close(pNew, h, __LINE__);
- h = -1;
- }
- unixLeaveMutex();
- }
-
-#if SQLITE_ENABLE_LOCKING_STYLE && defined(__APPLE__)
- else if( pLockingStyle == &afpIoMethods ){
- /* AFP locking uses the file path so it needs to be included in
- ** the afpLockingContext.
- */
- afpLockingContext *pCtx;
- pNew->lockingContext = pCtx = sqlite3_malloc64( sizeof(*pCtx) );
- if( pCtx==0 ){
- rc = SQLITE_NOMEM_BKPT;
- }else{
- /* NB: zFilename exists and remains valid until the file is closed
- ** according to requirement F11141. So we do not need to make a
- ** copy of the filename. */
- pCtx->dbPath = zFilename;
- pCtx->reserved = 0;
- srandomdev();
- unixEnterMutex();
- rc = findInodeInfo(pNew, &pNew->pInode);
- if( rc!=SQLITE_OK ){
- sqlite3_free(pNew->lockingContext);
- robust_close(pNew, h, __LINE__);
- h = -1;
- }
- unixLeaveMutex();
- }
- }
-#endif
-
- else if( pLockingStyle == &dotlockIoMethods ){
- /* Dotfile locking uses the file path so it needs to be included in
- ** the dotlockLockingContext
- */
- char *zLockFile;
- int nFilename;
- assert( zFilename!=0 );
- nFilename = (int)strlen(zFilename) + 6;
- zLockFile = (char *)sqlite3_malloc64(nFilename);
- if( zLockFile==0 ){
- rc = SQLITE_NOMEM_BKPT;
- }else{
- sqlite3_snprintf(nFilename, zLockFile, "%s" DOTLOCK_SUFFIX, zFilename);
- }
- pNew->lockingContext = zLockFile;
- }
-
-#if OS_VXWORKS
- else if( pLockingStyle == &semIoMethods ){
- /* Named semaphore locking uses the file path so it needs to be
- ** included in the semLockingContext
- */
- unixEnterMutex();
- rc = findInodeInfo(pNew, &pNew->pInode);
- if( (rc==SQLITE_OK) && (pNew->pInode->pSem==NULL) ){
- char *zSemName = pNew->pInode->aSemName;
- int n;
- sqlite3_snprintf(MAX_PATHNAME, zSemName, "/%s.sem",
- pNew->pId->zCanonicalName);
- for( n=1; zSemName[n]; n++ )
- if( zSemName[n]=='/' ) zSemName[n] = '_';
- pNew->pInode->pSem = sem_open(zSemName, O_CREAT, 0666, 1);
- if( pNew->pInode->pSem == SEM_FAILED ){
- rc = SQLITE_NOMEM_BKPT;
- pNew->pInode->aSemName[0] = '\0';
- }
- }
- unixLeaveMutex();
- }
-#endif
-
- storeLastErrno(pNew, 0);
-#if OS_VXWORKS
- if( rc!=SQLITE_OK ){
- if( h>=0 ) robust_close(pNew, h, __LINE__);
- h = -1;
- osUnlink(zFilename);
- pNew->ctrlFlags |= UNIXFILE_DELETE;
- }
-#endif
- if( rc!=SQLITE_OK ){
- if( h>=0 ) robust_close(pNew, h, __LINE__);
- }else{
- pNew->pMethod = pLockingStyle;
- OpenCounter(+1);
- verifyDbFile(pNew);
- }
- return rc;
-}
-
-/*
-** Return the name of a directory in which to put temporary files.
-** If no suitable temporary file directory can be found, return NULL.
-*/
-static const char *unixTempFileDir(void){
- static const char *azDirs[] = {
- 0,
- 0,
- "/var/tmp",
- "/usr/tmp",
- "/tmp",
- "."
- };
- unsigned int i = 0;
- struct stat buf;
- const char *zDir = sqlite3_temp_directory;
-
- if( !azDirs[0] ) azDirs[0] = getenv("SQLITE_TMPDIR");
- if( !azDirs[1] ) azDirs[1] = getenv("TMPDIR");
- while(1){
- if( zDir!=0
- && osStat(zDir, &buf)==0
- && S_ISDIR(buf.st_mode)
- && osAccess(zDir, 03)==0
- ){
- return zDir;
- }
- if( i>=sizeof(azDirs)/sizeof(azDirs[0]) ) break;
- zDir = azDirs[i++];
- }
- return 0;
-}
-
-/*
-** Create a temporary file name in zBuf. zBuf must be allocated
-** by the calling process and must be big enough to hold at least
-** pVfs->mxPathname bytes.
-*/
-static int unixGetTempname(int nBuf, char *zBuf){
- const char *zDir;
- int iLimit = 0;
-
- /* It's odd to simulate an io-error here, but really this is just
- ** using the io-error infrastructure to test that SQLite handles this
- ** function failing.
- */
- zBuf[0] = 0;
- SimulateIOError( return SQLITE_IOERR );
-
- zDir = unixTempFileDir();
- if( zDir==0 ) return SQLITE_IOERR_GETTEMPPATH;
- do{
- u64 r;
- sqlite3_randomness(sizeof(r), &r);
- assert( nBuf>2 );
- zBuf[nBuf-2] = 0;
- sqlite3_snprintf(nBuf, zBuf, "%s/"SQLITE_TEMP_FILE_PREFIX"%llx%c",
- zDir, r, 0);
- if( zBuf[nBuf-2]!=0 || (iLimit++)>10 ) return SQLITE_ERROR;
- }while( osAccess(zBuf,0)==0 );
- return SQLITE_OK;
-}
-
-#if SQLITE_ENABLE_LOCKING_STYLE && defined(__APPLE__)
-/*
-** Routine to transform a unixFile into a proxy-locking unixFile.
-** Implementation in the proxy-lock division, but used by unixOpen()
-** if SQLITE_PREFER_PROXY_LOCKING is defined.
-*/
-static int proxyTransformUnixFile(unixFile*, const char*);
-#endif
-
-/*
-** Search for an unused file descriptor that was opened on the database
-** file (not a journal or master-journal file) identified by pathname
-** zPath with SQLITE_OPEN_XXX flags matching those passed as the second
-** argument to this function.
-**
-** Such a file descriptor may exist if a database connection was closed
-** but the associated file descriptor could not be closed because some
-** other file descriptor open on the same file is holding a file-lock.
-** Refer to comments in the unixClose() function and the lengthy comment
-** describing "Posix Advisory Locking" at the start of this file for
-** further details. Also, ticket #4018.
-**
-** If a suitable file descriptor is found, then it is returned. If no
-** such file descriptor is located, -1 is returned.
-*/
-static UnixUnusedFd *findReusableFd(const char *zPath, int flags){
- UnixUnusedFd *pUnused = 0;
-
- /* Do not search for an unused file descriptor on vxworks. Not because
- ** vxworks would not benefit from the change (it might, we're not sure),
- ** but because no way to test it is currently available. It is better
- ** not to risk breaking vxworks support for the sake of such an obscure
- ** feature. */
-#if !OS_VXWORKS
- struct stat sStat; /* Results of stat() call */
-
- unixEnterMutex();
-
- /* A stat() call may fail for various reasons. If this happens, it is
- ** almost certain that an open() call on the same path will also fail.
- ** For this reason, if an error occurs in the stat() call here, it is
- ** ignored and -1 is returned. The caller will try to open a new file
- ** descriptor on the same path, fail, and return an error to SQLite.
- **
- ** Even if a subsequent open() call does succeed, the consequences of
- ** not searching for a reusable file descriptor are not dire. */
- if( inodeList!=0 && 0==osStat(zPath, &sStat) ){
- unixInodeInfo *pInode;
-
- pInode = inodeList;
- while( pInode && (pInode->fileId.dev!=sStat.st_dev
- || pInode->fileId.ino!=(u64)sStat.st_ino) ){
- pInode = pInode->pNext;
- }
- if( pInode ){
- UnixUnusedFd **pp;
- assert( sqlite3_mutex_notheld(pInode->pLockMutex) );
- sqlite3_mutex_enter(pInode->pLockMutex);
- for(pp=&pInode->pUnused; *pp && (*pp)->flags!=flags; pp=&((*pp)->pNext));
- pUnused = *pp;
- if( pUnused ){
- *pp = pUnused->pNext;
- }
- sqlite3_mutex_leave(pInode->pLockMutex);
- }
- }
- unixLeaveMutex();
-#endif /* if !OS_VXWORKS */
- return pUnused;
-}
-
-/*
-** Find the mode, uid and gid of file zFile.
-*/
-static int getFileMode(
- const char *zFile, /* File name */
- mode_t *pMode, /* OUT: Permissions of zFile */
- uid_t *pUid, /* OUT: uid of zFile. */
- gid_t *pGid /* OUT: gid of zFile. */
-){
- struct stat sStat; /* Output of stat() on database file */
- int rc = SQLITE_OK;
- if( 0==osStat(zFile, &sStat) ){
- *pMode = sStat.st_mode & 0777;
- *pUid = sStat.st_uid;
- *pGid = sStat.st_gid;
- }else{
- rc = SQLITE_IOERR_FSTAT;
- }
- return rc;
-}
-
-/*
-** This function is called by unixOpen() to determine the unix permissions
-** to create new files with. If no error occurs, then SQLITE_OK is returned
-** and a value suitable for passing as the third argument to open(2) is
-** written to *pMode. If an IO error occurs, an SQLite error code is
-** returned and the value of *pMode is not modified.
-**
-** In most cases, this routine sets *pMode to 0, which will become
-** an indication to robust_open() to create the file using
-** SQLITE_DEFAULT_FILE_PERMISSIONS adjusted by the umask.
-** But if the file being opened is a WAL or regular journal file, then
-** this function queries the file-system for the permissions on the
-** corresponding database file and sets *pMode to this value. Whenever
-** possible, WAL and journal files are created using the same permissions
-** as the associated database file.
-**
-** If the SQLITE_ENABLE_8_3_NAMES option is enabled, then the
-** original filename is unavailable. But 8_3_NAMES is only used for
-** FAT filesystems and permissions do not matter there, so just use
-** the default permissions.
-*/
-static int findCreateFileMode(
- const char *zPath, /* Path of file (possibly) being created */
- int flags, /* Flags passed as 4th argument to xOpen() */
- mode_t *pMode, /* OUT: Permissions to open file with */
- uid_t *pUid, /* OUT: uid to set on the file */
- gid_t *pGid /* OUT: gid to set on the file */
-){
- int rc = SQLITE_OK; /* Return Code */
- *pMode = 0;
- *pUid = 0;
- *pGid = 0;
- if( flags & (SQLITE_OPEN_WAL|SQLITE_OPEN_MAIN_JOURNAL) ){
- char zDb[MAX_PATHNAME+1]; /* Database file path */
- int nDb; /* Number of valid bytes in zDb */
-
- /* zPath is a path to a WAL or journal file. The following block derives
- ** the path to the associated database file from zPath. This block handles
- ** the following naming conventions:
- **
- ** "-journal"
- ** "-wal"
- ** "-journalNN"
- ** "-walNN"
- **
- ** where NN is a decimal number. The NN naming schemes are
- ** used by the test_multiplex.c module.
- */
- nDb = sqlite3Strlen30(zPath) - 1;
- while( zPath[nDb]!='-' ){
- /* In normal operation, the journal file name will always contain
- ** a '-' character. However in 8+3 filename mode, or if a corrupt
- ** rollback journal specifies a master journal with a goofy name, then
- ** the '-' might be missing. */
- if( nDb==0 || zPath[nDb]=='.' ) return SQLITE_OK;
- nDb--;
- }
- memcpy(zDb, zPath, nDb);
- zDb[nDb] = '\0';
-
- rc = getFileMode(zDb, pMode, pUid, pGid);
- }else if( flags & SQLITE_OPEN_DELETEONCLOSE ){
- *pMode = 0600;
- }else if( flags & SQLITE_OPEN_URI ){
- /* If this is a main database file and the file was opened using a URI
- ** filename, check for the "modeof" parameter. If present, interpret
- ** its value as a filename and try to copy the mode, uid and gid from
- ** that file. */
- const char *z = sqlite3_uri_parameter(zPath, "modeof");
- if( z ){
- rc = getFileMode(z, pMode, pUid, pGid);
- }
- }
- return rc;
-}
-
-/*
-** Open the file zPath.
-**
-** Previously, the SQLite OS layer used three functions in place of this
-** one:
-**
-** sqlite3OsOpenReadWrite();
-** sqlite3OsOpenReadOnly();
-** sqlite3OsOpenExclusive();
-**
-** These calls correspond to the following combinations of flags:
-**
-** ReadWrite() -> (READWRITE | CREATE)
-** ReadOnly() -> (READONLY)
-** OpenExclusive() -> (READWRITE | CREATE | EXCLUSIVE)
-**
-** The old OpenExclusive() accepted a boolean argument - "delFlag". If
-** true, the file was configured to be automatically deleted when the
-** file handle closed. To achieve the same effect using this new
-** interface, add the DELETEONCLOSE flag to those specified above for
-** OpenExclusive().
-*/
-static int unixOpen(
- sqlite3_vfs *pVfs, /* The VFS for which this is the xOpen method */
- const char *zPath, /* Pathname of file to be opened */
- sqlite3_file *pFile, /* The file descriptor to be filled in */
- int flags, /* Input flags to control the opening */
- int *pOutFlags /* Output flags returned to SQLite core */
-){
- unixFile *p = (unixFile *)pFile;
- int fd = -1; /* File descriptor returned by open() */
- int openFlags = 0; /* Flags to pass to open() */
- int eType = flags&0xFFFFFF00; /* Type of file to open */
- int noLock; /* True to omit locking primitives */
- int rc = SQLITE_OK; /* Function Return Code */
- int ctrlFlags = 0; /* UNIXFILE_* flags */
-
- int isExclusive = (flags & SQLITE_OPEN_EXCLUSIVE);
- int isDelete = (flags & SQLITE_OPEN_DELETEONCLOSE);
- int isCreate = (flags & SQLITE_OPEN_CREATE);
- int isReadonly = (flags & SQLITE_OPEN_READONLY);
- int isReadWrite = (flags & SQLITE_OPEN_READWRITE);
-#if SQLITE_ENABLE_LOCKING_STYLE
- int isAutoProxy = (flags & SQLITE_OPEN_AUTOPROXY);
-#endif
-#if defined(__APPLE__) || SQLITE_ENABLE_LOCKING_STYLE
- struct statfs fsInfo;
-#endif
-
- /* If creating a master or main-file journal, this function will open
- ** a file-descriptor on the directory too. The first time unixSync()
- ** is called the directory file descriptor will be fsync()ed and close()d.
- */
- int isNewJrnl = (isCreate && (
- eType==SQLITE_OPEN_MASTER_JOURNAL
- || eType==SQLITE_OPEN_MAIN_JOURNAL
- || eType==SQLITE_OPEN_WAL
- ));
-
- /* If argument zPath is a NULL pointer, this function is required to open
- ** a temporary file. Use this buffer to store the file name in.
- */
- char zTmpname[MAX_PATHNAME+2];
- const char *zName = zPath;
-
- /* Check the following statements are true:
- **
- ** (a) Exactly one of the READWRITE and READONLY flags must be set, and
- ** (b) if CREATE is set, then READWRITE must also be set, and
- ** (c) if EXCLUSIVE is set, then CREATE must also be set.
- ** (d) if DELETEONCLOSE is set, then CREATE must also be set.
- */
- assert((isReadonly==0 || isReadWrite==0) && (isReadWrite || isReadonly));
- assert(isCreate==0 || isReadWrite);
- assert(isExclusive==0 || isCreate);
- assert(isDelete==0 || isCreate);
-
- /* The main DB, main journal, WAL file and master journal are never
- ** automatically deleted. Nor are they ever temporary files. */
- assert( (!isDelete && zName) || eType!=SQLITE_OPEN_MAIN_DB );
- assert( (!isDelete && zName) || eType!=SQLITE_OPEN_MAIN_JOURNAL );
- assert( (!isDelete && zName) || eType!=SQLITE_OPEN_MASTER_JOURNAL );
- assert( (!isDelete && zName) || eType!=SQLITE_OPEN_WAL );
-
- /* Assert that the upper layer has set one of the "file-type" flags. */
- assert( eType==SQLITE_OPEN_MAIN_DB || eType==SQLITE_OPEN_TEMP_DB
- || eType==SQLITE_OPEN_MAIN_JOURNAL || eType==SQLITE_OPEN_TEMP_JOURNAL
- || eType==SQLITE_OPEN_SUBJOURNAL || eType==SQLITE_OPEN_MASTER_JOURNAL
- || eType==SQLITE_OPEN_TRANSIENT_DB || eType==SQLITE_OPEN_WAL
- );
-
- /* Detect a pid change and reset the PRNG. There is a race condition
- ** here such that two or more threads all trying to open databases at
- ** the same instant might all reset the PRNG. But multiple resets
- ** are harmless.
- */
- if( randomnessPid!=osGetpid(0) ){
- randomnessPid = osGetpid(0);
- sqlite3_randomness(0,0);
- }
- memset(p, 0, sizeof(unixFile));
-
- if( eType==SQLITE_OPEN_MAIN_DB ){
- UnixUnusedFd *pUnused;
- pUnused = findReusableFd(zName, flags);
- if( pUnused ){
- fd = pUnused->fd;
- }else{
- pUnused = sqlite3_malloc64(sizeof(*pUnused));
- if( !pUnused ){
- return SQLITE_NOMEM_BKPT;
- }
- }
- p->pPreallocatedUnused = pUnused;
-
- /* Database filenames are double-zero terminated if they are not
- ** URIs with parameters. Hence, they can always be passed into
- ** sqlite3_uri_parameter(). */
- assert( (flags & SQLITE_OPEN_URI) || zName[strlen(zName)+1]==0 );
-
- }else if( !zName ){
- /* If zName is NULL, the upper layer is requesting a temp file. */
- assert(isDelete && !isNewJrnl);
- rc = unixGetTempname(pVfs->mxPathname, zTmpname);
- if( rc!=SQLITE_OK ){
- return rc;
- }
- zName = zTmpname;
-
- /* Generated temporary filenames are always double-zero terminated
- ** for use by sqlite3_uri_parameter(). */
- assert( zName[strlen(zName)+1]==0 );
- }
-
- /* Determine the value of the flags parameter passed to POSIX function
- ** open(). These must be calculated even if open() is not called, as
- ** they may be stored as part of the file handle and used by the
- ** 'conch file' locking functions later on. */
- if( isReadonly ) openFlags |= O_RDONLY;
- if( isReadWrite ) openFlags |= O_RDWR;
- if( isCreate ) openFlags |= O_CREAT;
- if( isExclusive ) openFlags |= (O_EXCL|O_NOFOLLOW);
- openFlags |= (O_LARGEFILE|O_BINARY);
-
- if( fd<0 ){
- mode_t openMode; /* Permissions to create file with */
- uid_t uid; /* Userid for the file */
- gid_t gid; /* Groupid for the file */
- rc = findCreateFileMode(zName, flags, &openMode, &uid, &gid);
- if( rc!=SQLITE_OK ){
- assert( !p->pPreallocatedUnused );
- assert( eType==SQLITE_OPEN_WAL || eType==SQLITE_OPEN_MAIN_JOURNAL );
- return rc;
- }
- fd = robust_open(zName, openFlags, openMode);
- OSTRACE(("OPENX %-3d %s 0%o\n", fd, zName, openFlags));
- assert( !isExclusive || (openFlags & O_CREAT)!=0 );
- if( fd<0 ){
- if( isNewJrnl && errno==EACCES && osAccess(zName, F_OK) ){
- /* If unable to create a journal because the directory is not
- ** writable, change the error code to indicate that. */
- rc = SQLITE_READONLY_DIRECTORY;
- }else if( errno!=EISDIR && isReadWrite ){
- /* Failed to open the file for read/write access. Try read-only. */
- flags &= ~(SQLITE_OPEN_READWRITE|SQLITE_OPEN_CREATE);
- openFlags &= ~(O_RDWR|O_CREAT);
- flags |= SQLITE_OPEN_READONLY;
- openFlags |= O_RDONLY;
- isReadonly = 1;
- fd = robust_open(zName, openFlags, openMode);
- }
- }
- if( fd<0 ){
- int rc2 = unixLogError(SQLITE_CANTOPEN_BKPT, "open", zName);
- if( rc==SQLITE_OK ) rc = rc2;
- goto open_finished;
- }
-
- /* If this process is running as root and if creating a new rollback
- ** journal or WAL file, set the ownership of the journal or WAL to be
- ** the same as the original database.
- */
- if( flags & (SQLITE_OPEN_WAL|SQLITE_OPEN_MAIN_JOURNAL) ){
- robustFchown(fd, uid, gid);
- }
- }
- assert( fd>=0 );
- if( pOutFlags ){
- *pOutFlags = flags;
- }
-
- if( p->pPreallocatedUnused ){
- p->pPreallocatedUnused->fd = fd;
- p->pPreallocatedUnused->flags = flags;
- }
-
- if( isDelete ){
-#if OS_VXWORKS
- zPath = zName;
-#elif defined(SQLITE_UNLINK_AFTER_CLOSE)
- zPath = sqlite3_mprintf("%s", zName);
- if( zPath==0 ){
- robust_close(p, fd, __LINE__);
- return SQLITE_NOMEM_BKPT;
- }
-#else
- osUnlink(zName);
-#endif
- }
-#if SQLITE_ENABLE_LOCKING_STYLE
- else{
- p->openFlags = openFlags;
- }
-#endif
-
-#if defined(__APPLE__) || SQLITE_ENABLE_LOCKING_STYLE
- if( fstatfs(fd, &fsInfo) == -1 ){
- storeLastErrno(p, errno);
- robust_close(p, fd, __LINE__);
- return SQLITE_IOERR_ACCESS;
- }
- if (0 == strncmp("msdos", fsInfo.f_fstypename, 5)) {
- ((unixFile*)pFile)->fsFlags |= SQLITE_FSFLAGS_IS_MSDOS;
- }
- if (0 == strncmp("exfat", fsInfo.f_fstypename, 5)) {
- ((unixFile*)pFile)->fsFlags |= SQLITE_FSFLAGS_IS_MSDOS;
- }
-#endif
-
- /* Set up appropriate ctrlFlags */
- if( isDelete ) ctrlFlags |= UNIXFILE_DELETE;
- if( isReadonly ) ctrlFlags |= UNIXFILE_RDONLY;
- noLock = eType!=SQLITE_OPEN_MAIN_DB;
- if( noLock ) ctrlFlags |= UNIXFILE_NOLOCK;
- if( isNewJrnl ) ctrlFlags |= UNIXFILE_DIRSYNC;
- if( flags & SQLITE_OPEN_URI ) ctrlFlags |= UNIXFILE_URI;
-
-#if SQLITE_ENABLE_LOCKING_STYLE
-#if SQLITE_PREFER_PROXY_LOCKING
- isAutoProxy = 1;
-#endif
- if( isAutoProxy && (zPath!=NULL) && (!noLock) && pVfs->xOpen ){
- char *envforce = getenv("SQLITE_FORCE_PROXY_LOCKING");
- int useProxy = 0;
-
- /* SQLITE_FORCE_PROXY_LOCKING==1 means force always use proxy, 0 means
- ** never use proxy, NULL means use proxy for non-local files only. */
- if( envforce!=NULL ){
- useProxy = atoi(envforce)>0;
- }else{
- useProxy = !(fsInfo.f_flags&MNT_LOCAL);
- }
- if( useProxy ){
- rc = fillInUnixFile(pVfs, fd, pFile, zPath, ctrlFlags);
- if( rc==SQLITE_OK ){
- rc = proxyTransformUnixFile((unixFile*)pFile, ":auto:");
- if( rc!=SQLITE_OK ){
- /* Use unixClose to clean up the resources added in fillInUnixFile
- ** and clear all the structure's references. Specifically,
- ** pFile->pMethods will be NULL so sqlite3OsClose will be a no-op
- */
- unixClose(pFile);
- return rc;
- }
- }
- goto open_finished;
- }
- }
-#endif
-
- assert( zPath==0 || zPath[0]=='/'
- || eType==SQLITE_OPEN_MASTER_JOURNAL || eType==SQLITE_OPEN_MAIN_JOURNAL
- );
- rc = fillInUnixFile(pVfs, fd, pFile, zPath, ctrlFlags);
-
-open_finished:
- if( rc!=SQLITE_OK ){
- sqlite3_free(p->pPreallocatedUnused);
- }
- return rc;
-}
-
-
-/*
-** Delete the file at zPath. If the dirSync argument is true, fsync()
-** the directory after deleting the file.
-*/
-static int unixDelete(
- sqlite3_vfs *NotUsed, /* VFS containing this as the xDelete method */
- const char *zPath, /* Name of file to be deleted */
- int dirSync /* If true, fsync() directory after deleting file */
-){
- int rc = SQLITE_OK;
- UNUSED_PARAMETER(NotUsed);
- SimulateIOError(return SQLITE_IOERR_DELETE);
- if( osUnlink(zPath)==(-1) ){
- if( errno==ENOENT
-#if OS_VXWORKS
- || osAccess(zPath,0)!=0
-#endif
- ){
- rc = SQLITE_IOERR_DELETE_NOENT;
- }else{
- rc = unixLogError(SQLITE_IOERR_DELETE, "unlink", zPath);
- }
- return rc;
- }
-#ifndef SQLITE_DISABLE_DIRSYNC
- if( (dirSync & 1)!=0 ){
- int fd;
- rc = osOpenDirectory(zPath, &fd);
- if( rc==SQLITE_OK ){
- if( full_fsync(fd,0,0) ){
- rc = unixLogError(SQLITE_IOERR_DIR_FSYNC, "fsync", zPath);
- }
- robust_close(0, fd, __LINE__);
- }else{
- assert( rc==SQLITE_CANTOPEN );
- rc = SQLITE_OK;
- }
- }
-#endif
- return rc;
-}
-
-/*
-** Test the existence of or access permissions of file zPath. The
-** test performed depends on the value of flags:
-**
-** SQLITE_ACCESS_EXISTS: Return 1 if the file exists
-** SQLITE_ACCESS_READWRITE: Return 1 if the file is read and writable.
-** SQLITE_ACCESS_READONLY: Return 1 if the file is readable.
-**
-** Otherwise return 0.
-*/
-static int unixAccess(
- sqlite3_vfs *NotUsed, /* The VFS containing this xAccess method */
- const char *zPath, /* Path of the file to examine */
- int flags, /* What do we want to learn about the zPath file? */
- int *pResOut /* Write result boolean here */
-){
- UNUSED_PARAMETER(NotUsed);
- SimulateIOError( return SQLITE_IOERR_ACCESS; );
- assert( pResOut!=0 );
-
- /* The spec says there are three possible values for flags. But only
- ** two of them are actually used */
- assert( flags==SQLITE_ACCESS_EXISTS || flags==SQLITE_ACCESS_READWRITE );
-
- if( flags==SQLITE_ACCESS_EXISTS ){
- struct stat buf;
- *pResOut = (0==osStat(zPath, &buf) && buf.st_size>0);
- }else{
- *pResOut = osAccess(zPath, W_OK|R_OK)==0;
- }
- return SQLITE_OK;
-}
-
-/*
-**
-*/
-static int mkFullPathname(
- const char *zPath, /* Input path */
- char *zOut, /* Output buffer */
- int nOut /* Allocated size of buffer zOut */
-){
- int nPath = sqlite3Strlen30(zPath);
- int iOff = 0;
- if( zPath[0]!='/' ){
- if( osGetcwd(zOut, nOut-2)==0 ){
- return unixLogError(SQLITE_CANTOPEN_BKPT, "getcwd", zPath);
- }
- iOff = sqlite3Strlen30(zOut);
- zOut[iOff++] = '/';
- }
- if( (iOff+nPath+1)>nOut ){
- /* SQLite assumes that xFullPathname() nul-terminates the output buffer
- ** even if it returns an error. */
- zOut[iOff] = '\0';
- return SQLITE_CANTOPEN_BKPT;
- }
- sqlite3_snprintf(nOut-iOff, &zOut[iOff], "%s", zPath);
- return SQLITE_OK;
-}
-
-/*
-** Turn a relative pathname into a full pathname. The relative path
-** is stored as a nul-terminated string in the buffer pointed to by
-** zPath.
-**
-** zOut points to a buffer of at least sqlite3_vfs.mxPathname bytes
-** (in this case, MAX_PATHNAME bytes). The full-path is written to
-** this buffer before returning.
-*/
-static int unixFullPathname(
- sqlite3_vfs *pVfs, /* Pointer to vfs object */
- const char *zPath, /* Possibly relative input path */
- int nOut, /* Size of output buffer in bytes */
- char *zOut /* Output buffer */
-){
-#if !defined(HAVE_READLINK) || !defined(HAVE_LSTAT)
- return mkFullPathname(zPath, zOut, nOut);
-#else
- int rc = SQLITE_OK;
- int nByte;
- int nLink = 1; /* Number of symbolic links followed so far */
- const char *zIn = zPath; /* Input path for each iteration of loop */
- char *zDel = 0;
-
- assert( pVfs->mxPathname==MAX_PATHNAME );
- UNUSED_PARAMETER(pVfs);
-
- /* It's odd to simulate an io-error here, but really this is just
- ** using the io-error infrastructure to test that SQLite handles this
- ** function failing. This function could fail if, for example, the
- ** current working directory has been unlinked.
- */
- SimulateIOError( return SQLITE_ERROR );
-
- do {
-
- /* Call stat() on path zIn. Set bLink to true if the path is a symbolic
- ** link, or false otherwise. */
- int bLink = 0;
- struct stat buf;
- if( osLstat(zIn, &buf)!=0 ){
- if( errno!=ENOENT ){
- rc = unixLogError(SQLITE_CANTOPEN_BKPT, "lstat", zIn);
- }
- }else{
- bLink = S_ISLNK(buf.st_mode);
- }
-
- if( bLink ){
- if( zDel==0 ){
- zDel = sqlite3_malloc(nOut);
- if( zDel==0 ) rc = SQLITE_NOMEM_BKPT;
- }else if( ++nLink>SQLITE_MAX_SYMLINKS ){
- rc = SQLITE_CANTOPEN_BKPT;
- }
-
- if( rc==SQLITE_OK ){
- nByte = osReadlink(zIn, zDel, nOut-1);
- if( nByte<0 ){
- rc = unixLogError(SQLITE_CANTOPEN_BKPT, "readlink", zIn);
- }else{
- if( zDel[0]!='/' ){
- int n;
- for(n = sqlite3Strlen30(zIn); n>0 && zIn[n-1]!='/'; n--);
- if( nByte+n+1>nOut ){
- rc = SQLITE_CANTOPEN_BKPT;
- }else{
- memmove(&zDel[n], zDel, nByte+1);
- memcpy(zDel, zIn, n);
- nByte += n;
- }
- }
- zDel[nByte] = '\0';
- }
- }
-
- zIn = zDel;
- }
-
- assert( rc!=SQLITE_OK || zIn!=zOut || zIn[0]=='/' );
- if( rc==SQLITE_OK && zIn!=zOut ){
- rc = mkFullPathname(zIn, zOut, nOut);
- }
- if( bLink==0 ) break;
- zIn = zOut;
- }while( rc==SQLITE_OK );
-
- sqlite3_free(zDel);
- return rc;
-#endif /* HAVE_READLINK && HAVE_LSTAT */
-}
-
-
-#ifndef SQLITE_OMIT_LOAD_EXTENSION
-/*
-** Interfaces for opening a shared library, finding entry points
-** within the shared library, and closing the shared library.
-*/
-#include
-static void *unixDlOpen(sqlite3_vfs *NotUsed, const char *zFilename){
- UNUSED_PARAMETER(NotUsed);
- return dlopen(zFilename, RTLD_NOW | RTLD_GLOBAL);
-}
-
-/*
-** SQLite calls this function immediately after a call to unixDlSym() or
-** unixDlOpen() fails (returns a null pointer). If a more detailed error
-** message is available, it is written to zBufOut. If no error message
-** is available, zBufOut is left unmodified and SQLite uses a default
-** error message.
-*/
-static void unixDlError(sqlite3_vfs *NotUsed, int nBuf, char *zBufOut){
- const char *zErr;
- UNUSED_PARAMETER(NotUsed);
- unixEnterMutex();
- zErr = dlerror();
- if( zErr ){
- sqlite3_snprintf(nBuf, zBufOut, "%s", zErr);
- }
- unixLeaveMutex();
-}
-static void (*unixDlSym(sqlite3_vfs *NotUsed, void *p, const char*zSym))(void){
- /*
- ** GCC with -pedantic-errors says that C90 does not allow a void* to be
- ** cast into a pointer to a function. And yet the library dlsym() routine
- ** returns a void* which is really a pointer to a function. So how do we
- ** use dlsym() with -pedantic-errors?
- **
- ** Variable x below is defined to be a pointer to a function taking
- ** parameters void* and const char* and returning a pointer to a function.
- ** We initialize x by assigning it a pointer to the dlsym() function.
- ** (That assignment requires a cast.) Then we call the function that
- ** x points to.
- **
- ** This work-around is unlikely to work correctly on any system where
- ** you really cannot cast a function pointer into void*. But then, on the
- ** other hand, dlsym() will not work on such a system either, so we have
- ** not really lost anything.
- */
- void (*(*x)(void*,const char*))(void);
- UNUSED_PARAMETER(NotUsed);
- x = (void(*(*)(void*,const char*))(void))dlsym;
- return (*x)(p, zSym);
-}
-static void unixDlClose(sqlite3_vfs *NotUsed, void *pHandle){
- UNUSED_PARAMETER(NotUsed);
- dlclose(pHandle);
-}
-#else /* if SQLITE_OMIT_LOAD_EXTENSION is defined: */
- #define unixDlOpen 0
- #define unixDlError 0
- #define unixDlSym 0
- #define unixDlClose 0
-#endif
-
-/*
-** Write nBuf bytes of random data to the supplied buffer zBuf.
-*/
-static int unixRandomness(sqlite3_vfs *NotUsed, int nBuf, char *zBuf){
- UNUSED_PARAMETER(NotUsed);
- assert((size_t)nBuf>=(sizeof(time_t)+sizeof(int)));
-
- /* We have to initialize zBuf to prevent valgrind from reporting
- ** errors. The reports issued by valgrind are incorrect - we would
- ** prefer that the randomness be increased by making use of the
- ** uninitialized space in zBuf - but valgrind errors tend to worry
- ** some users. Rather than argue, it seems easier just to initialize
- ** the whole array and silence valgrind, even if that means less randomness
- ** in the random seed.
- **
- ** When testing, initializing zBuf[] to zero is all we do. That means
- ** that we always use the same random number sequence. This makes the
- ** tests repeatable.
- */
- memset(zBuf, 0, nBuf);
- randomnessPid = osGetpid(0);
-#if !defined(SQLITE_TEST) && !defined(SQLITE_OMIT_RANDOMNESS)
- {
- int fd, got;
- fd = robust_open("/dev/urandom", O_RDONLY, 0);
- if( fd<0 ){
- time_t t;
- time(&t);
- memcpy(zBuf, &t, sizeof(t));
- memcpy(&zBuf[sizeof(t)], &randomnessPid, sizeof(randomnessPid));
- assert( sizeof(t)+sizeof(randomnessPid)<=(size_t)nBuf );
- nBuf = sizeof(t) + sizeof(randomnessPid);
- }else{
- do{ got = osRead(fd, zBuf, nBuf); }while( got<0 && errno==EINTR );
- robust_close(0, fd, __LINE__);
- }
- }
-#endif
- return nBuf;
-}
-
-
-/*
-** Sleep for a little while. Return the amount of time slept.
-** The argument is the number of microseconds we want to sleep.
-** The return value is the number of microseconds of sleep actually
-** requested from the underlying operating system, a number which
-** might be greater than or equal to the argument, but not less
-** than the argument.
-*/
-static int unixSleep(sqlite3_vfs *NotUsed, int microseconds){
-#if OS_VXWORKS
- struct timespec sp;
-
- sp.tv_sec = microseconds / 1000000;
- sp.tv_nsec = (microseconds % 1000000) * 1000;
- nanosleep(&sp, NULL);
- UNUSED_PARAMETER(NotUsed);
- return microseconds;
-#elif defined(HAVE_USLEEP) && HAVE_USLEEP
- usleep(microseconds);
- UNUSED_PARAMETER(NotUsed);
- return microseconds;
-#else
- int seconds = (microseconds+999999)/1000000;
- sleep(seconds);
- UNUSED_PARAMETER(NotUsed);
- return seconds*1000000;
-#endif
-}
-
-/*
-** The following variable, if set to a non-zero value, is interpreted as
-** the number of seconds since 1970 and is used to set the result of
-** sqlite3OsCurrentTime() during testing.
-*/
-#ifdef SQLITE_TEST
-SQLITE_API int sqlite3_current_time = 0; /* Fake system time in seconds since 1970. */
-#endif
-
-/*
-** Find the current time (in Universal Coordinated Time). Write into *piNow
-** the current time and date as a Julian Day number times 86_400_000. In
-** other words, write into *piNow the number of milliseconds since the Julian
-** epoch of noon in Greenwich on November 24, 4714 B.C according to the
-** proleptic Gregorian calendar.
-**
-** On success, return SQLITE_OK. Return SQLITE_ERROR if the time and date
-** cannot be found.
-*/
-static int unixCurrentTimeInt64(sqlite3_vfs *NotUsed, sqlite3_int64 *piNow){
- static const sqlite3_int64 unixEpoch = 24405875*(sqlite3_int64)8640000;
- int rc = SQLITE_OK;
-#if defined(NO_GETTOD)
- time_t t;
- time(&t);
- *piNow = ((sqlite3_int64)t)*1000 + unixEpoch;
-#elif OS_VXWORKS
- struct timespec sNow;
- clock_gettime(CLOCK_REALTIME, &sNow);
- *piNow = unixEpoch + 1000*(sqlite3_int64)sNow.tv_sec + sNow.tv_nsec/1000000;
-#else
- struct timeval sNow;
- (void)gettimeofday(&sNow, 0); /* Cannot fail given valid arguments */
- *piNow = unixEpoch + 1000*(sqlite3_int64)sNow.tv_sec + sNow.tv_usec/1000;
-#endif
-
-#ifdef SQLITE_TEST
- if( sqlite3_current_time ){
- *piNow = 1000*(sqlite3_int64)sqlite3_current_time + unixEpoch;
- }
-#endif
- UNUSED_PARAMETER(NotUsed);
- return rc;
-}
-
-#ifndef SQLITE_OMIT_DEPRECATED
-/*
-** Find the current time (in Universal Coordinated Time). Write the
-** current time and date as a Julian Day number into *prNow and
-** return 0. Return 1 if the time and date cannot be found.
-*/
-static int unixCurrentTime(sqlite3_vfs *NotUsed, double *prNow){
- sqlite3_int64 i = 0;
- int rc;
- UNUSED_PARAMETER(NotUsed);
- rc = unixCurrentTimeInt64(0, &i);
- *prNow = i/86400000.0;
- return rc;
-}
-#else
-# define unixCurrentTime 0
-#endif
-
-/*
-** The xGetLastError() method is designed to return a better
-** low-level error message when operating-system problems come up
-** during SQLite operation. Only the integer return code is currently
-** used.
-*/
-static int unixGetLastError(sqlite3_vfs *NotUsed, int NotUsed2, char *NotUsed3){
- UNUSED_PARAMETER(NotUsed);
- UNUSED_PARAMETER(NotUsed2);
- UNUSED_PARAMETER(NotUsed3);
- return errno;
-}
-
-
-/*
-************************ End of sqlite3_vfs methods ***************************
-******************************************************************************/
-
-/******************************************************************************
-************************** Begin Proxy Locking ********************************
-**
-** Proxy locking is a "uber-locking-method" in this sense: It uses the
-** other locking methods on secondary lock files. Proxy locking is a
-** meta-layer over top of the primitive locking implemented above. For
-** this reason, the division that implements of proxy locking is deferred
-** until late in the file (here) after all of the other I/O methods have
-** been defined - so that the primitive locking methods are available
-** as services to help with the implementation of proxy locking.
-**
-****
-**
-** The default locking schemes in SQLite use byte-range locks on the
-** database file to coordinate safe, concurrent access by multiple readers
-** and writers [http://sqlite.org/lockingv3.html]. The five file locking
-** states (UNLOCKED, PENDING, SHARED, RESERVED, EXCLUSIVE) are implemented
-** as POSIX read & write locks over fixed set of locations (via fsctl),
-** on AFP and SMB only exclusive byte-range locks are available via fsctl
-** with _IOWR('z', 23, struct ByteRangeLockPB2) to track the same 5 states.
-** To simulate a F_RDLCK on the shared range, on AFP a randomly selected
-** address in the shared range is taken for a SHARED lock, the entire
-** shared range is taken for an EXCLUSIVE lock):
-**
-** PENDING_BYTE 0x40000000
-** RESERVED_BYTE 0x40000001
-** SHARED_RANGE 0x40000002 -> 0x40000200
-**
-** This works well on the local file system, but shows a nearly 100x
-** slowdown in read performance on AFP because the AFP client disables
-** the read cache when byte-range locks are present. Enabling the read
-** cache exposes a cache coherency problem that is present on all OS X
-** supported network file systems. NFS and AFP both observe the
-** close-to-open semantics for ensuring cache coherency
-** [http://nfs.sourceforge.net/#faq_a8], which does not effectively
-** address the requirements for concurrent database access by multiple
-** readers and writers
-** [http://www.nabble.com/SQLite-on-NFS-cache-coherency-td15655701.html].
-**
-** To address the performance and cache coherency issues, proxy file locking
-** changes the way database access is controlled by limiting access to a
-** single host at a time and moving file locks off of the database file
-** and onto a proxy file on the local file system.
-**
-**
-** Using proxy locks
-** -----------------
-**
-** C APIs
-**
-** sqlite3_file_control(db, dbname, SQLITE_FCNTL_SET_LOCKPROXYFILE,
-** | ":auto:");
-** sqlite3_file_control(db, dbname, SQLITE_FCNTL_GET_LOCKPROXYFILE,
-** &);
-**
-**
-** SQL pragmas
-**
-** PRAGMA [database.]lock_proxy_file= | :auto:
-** PRAGMA [database.]lock_proxy_file
-**
-** Specifying ":auto:" means that if there is a conch file with a matching
-** host ID in it, the proxy path in the conch file will be used, otherwise
-** a proxy path based on the user's temp dir
-** (via confstr(_CS_DARWIN_USER_TEMP_DIR,...)) will be used and the
-** actual proxy file name is generated from the name and path of the
-** database file. For example:
-**
-** For database path "/Users/me/foo.db"
-** The lock path will be "/sqliteplocks/_Users_me_foo.db:auto:")
-**
-** Once a lock proxy is configured for a database connection, it can not
-** be removed, however it may be switched to a different proxy path via
-** the above APIs (assuming the conch file is not being held by another
-** connection or process).
-**
-**
-** How proxy locking works
-** -----------------------
-**
-** Proxy file locking relies primarily on two new supporting files:
-**
-** * conch file to limit access to the database file to a single host
-** at a time
-**
-** * proxy file to act as a proxy for the advisory locks normally
-** taken on the database
-**
-** The conch file - to use a proxy file, sqlite must first "hold the conch"
-** by taking an sqlite-style shared lock on the conch file, reading the
-** contents and comparing the host's unique host ID (see below) and lock
-** proxy path against the values stored in the conch. The conch file is
-** stored in the same directory as the database file and the file name
-** is patterned after the database file name as ".-conch".
-** If the conch file does not exist, or its contents do not match the
-** host ID and/or proxy path, then the lock is escalated to an exclusive
-** lock and the conch file contents is updated with the host ID and proxy
-** path and the lock is downgraded to a shared lock again. If the conch
-** is held by another process (with a shared lock), the exclusive lock
-** will fail and SQLITE_BUSY is returned.
-**
-** The proxy file - a single-byte file used for all advisory file locks
-** normally taken on the database file. This allows for safe sharing
-** of the database file for multiple readers and writers on the same
-** host (the conch ensures that they all use the same local lock file).
-**
-** Requesting the lock proxy does not immediately take the conch, it is
-** only taken when the first request to lock database file is made.
-** This matches the semantics of the traditional locking behavior, where
-** opening a connection to a database file does not take a lock on it.
-** The shared lock and an open file descriptor are maintained until
-** the connection to the database is closed.
-**
-** The proxy file and the lock file are never deleted so they only need
-** to be created the first time they are used.
-**
-** Configuration options
-** ---------------------
-**
-** SQLITE_PREFER_PROXY_LOCKING
-**
-** Database files accessed on non-local file systems are
-** automatically configured for proxy locking, lock files are
-** named automatically using the same logic as
-** PRAGMA lock_proxy_file=":auto:"
-**
-** SQLITE_PROXY_DEBUG
-**
-** Enables the logging of error messages during host id file
-** retrieval and creation
-**
-** LOCKPROXYDIR
-**
-** Overrides the default directory used for lock proxy files that
-** are named automatically via the ":auto:" setting
-**
-** SQLITE_DEFAULT_PROXYDIR_PERMISSIONS
-**
-** Permissions to use when creating a directory for storing the
-** lock proxy files, only used when LOCKPROXYDIR is not set.
-**
-**
-** As mentioned above, when compiled with SQLITE_PREFER_PROXY_LOCKING,
-** setting the environment variable SQLITE_FORCE_PROXY_LOCKING to 1 will
-** force proxy locking to be used for every database file opened, and 0
-** will force automatic proxy locking to be disabled for all database
-** files (explicitly calling the SQLITE_FCNTL_SET_LOCKPROXYFILE pragma or
-** sqlite_file_control API is not affected by SQLITE_FORCE_PROXY_LOCKING).
-*/
-
-/*
-** Proxy locking is only available on MacOSX
-*/
-#if defined(__APPLE__) && SQLITE_ENABLE_LOCKING_STYLE
-
-/*
-** The proxyLockingContext has the path and file structures for the remote
-** and local proxy files in it
-*/
-typedef struct proxyLockingContext proxyLockingContext;
-struct proxyLockingContext {
- unixFile *conchFile; /* Open conch file */
- char *conchFilePath; /* Name of the conch file */
- unixFile *lockProxy; /* Open proxy lock file */
- char *lockProxyPath; /* Name of the proxy lock file */
- char *dbPath; /* Name of the open file */
- int conchHeld; /* 1 if the conch is held, -1 if lockless */
- int nFails; /* Number of conch taking failures */
- void *oldLockingContext; /* Original lockingcontext to restore on close */
- sqlite3_io_methods const *pOldMethod; /* Original I/O methods for close */
-};
-
-/*
-** The proxy lock file path for the database at dbPath is written into lPath,
-** which must point to valid, writable memory large enough for a maxLen length
-** file path.
-*/
-static int proxyGetLockPath(const char *dbPath, char *lPath, size_t maxLen){
- int len;
- int dbLen;
- int i;
-
-#ifdef LOCKPROXYDIR
- len = strlcpy(lPath, LOCKPROXYDIR, maxLen);
-#else
-# ifdef _CS_DARWIN_USER_TEMP_DIR
- {
- if( !confstr(_CS_DARWIN_USER_TEMP_DIR, lPath, maxLen) ){
- OSTRACE(("GETLOCKPATH failed %s errno=%d pid=%d\n",
- lPath, errno, osGetpid(0)));
- return SQLITE_IOERR_LOCK;
- }
- len = strlcat(lPath, "sqliteplocks", maxLen);
- }
-# else
- len = strlcpy(lPath, "/tmp/", maxLen);
-# endif
-#endif
-
- if( lPath[len-1]!='/' ){
- len = strlcat(lPath, "/", maxLen);
- }
-
- /* transform the db path to a unique cache name */
- dbLen = (int)strlen(dbPath);
- for( i=0; i 0) ){
- /* only mkdir if leaf dir != "." or "/" or ".." */
- if( i-start>2 || (i-start==1 && buf[start] != '.' && buf[start] != '/')
- || (i-start==2 && buf[start] != '.' && buf[start+1] != '.') ){
- buf[i]='\0';
- if( osMkdir(buf, SQLITE_DEFAULT_PROXYDIR_PERMISSIONS) ){
- int err=errno;
- if( err!=EEXIST ) {
- OSTRACE(("CREATELOCKPATH FAILED creating %s, "
- "'%s' proxy lock path=%s pid=%d\n",
- buf, strerror(err), lockPath, osGetpid(0)));
- return err;
- }
- }
- }
- start=i+1;
- }
- buf[i] = lockPath[i];
- }
- OSTRACE(("CREATELOCKPATH proxy lock path=%s pid=%d\n",lockPath,osGetpid(0)));
- return 0;
-}
-
-/*
-** Create a new VFS file descriptor (stored in memory obtained from
-** sqlite3_malloc) and open the file named "path" in the file descriptor.
-**
-** The caller is responsible not only for closing the file descriptor
-** but also for freeing the memory associated with the file descriptor.
-*/
-static int proxyCreateUnixFile(
- const char *path, /* path for the new unixFile */
- unixFile **ppFile, /* unixFile created and returned by ref */
- int islockfile /* if non zero missing dirs will be created */
-) {
- int fd = -1;
- unixFile *pNew;
- int rc = SQLITE_OK;
- int openFlags = O_RDWR | O_CREAT;
- sqlite3_vfs dummyVfs;
- int terrno = 0;
- UnixUnusedFd *pUnused = NULL;
-
- /* 1. first try to open/create the file
- ** 2. if that fails, and this is a lock file (not-conch), try creating
- ** the parent directories and then try again.
- ** 3. if that fails, try to open the file read-only
- ** otherwise return BUSY (if lock file) or CANTOPEN for the conch file
- */
- pUnused = findReusableFd(path, openFlags);
- if( pUnused ){
- fd = pUnused->fd;
- }else{
- pUnused = sqlite3_malloc64(sizeof(*pUnused));
- if( !pUnused ){
- return SQLITE_NOMEM_BKPT;
- }
- }
- if( fd<0 ){
- fd = robust_open(path, openFlags, 0);
- terrno = errno;
- if( fd<0 && errno==ENOENT && islockfile ){
- if( proxyCreateLockPath(path) == SQLITE_OK ){
- fd = robust_open(path, openFlags, 0);
- }
- }
- }
- if( fd<0 ){
- openFlags = O_RDONLY;
- fd = robust_open(path, openFlags, 0);
- terrno = errno;
- }
- if( fd<0 ){
- if( islockfile ){
- return SQLITE_BUSY;
- }
- switch (terrno) {
- case EACCES:
- return SQLITE_PERM;
- case EIO:
- return SQLITE_IOERR_LOCK; /* even though it is the conch */
- default:
- return SQLITE_CANTOPEN_BKPT;
- }
- }
-
- pNew = (unixFile *)sqlite3_malloc64(sizeof(*pNew));
- if( pNew==NULL ){
- rc = SQLITE_NOMEM_BKPT;
- goto end_create_proxy;
- }
- memset(pNew, 0, sizeof(unixFile));
- pNew->openFlags = openFlags;
- memset(&dummyVfs, 0, sizeof(dummyVfs));
- dummyVfs.pAppData = (void*)&autolockIoFinder;
- dummyVfs.zName = "dummy";
- pUnused->fd = fd;
- pUnused->flags = openFlags;
- pNew->pPreallocatedUnused = pUnused;
-
- rc = fillInUnixFile(&dummyVfs, fd, (sqlite3_file*)pNew, path, 0);
- if( rc==SQLITE_OK ){
- *ppFile = pNew;
- return SQLITE_OK;
- }
-end_create_proxy:
- robust_close(pNew, fd, __LINE__);
- sqlite3_free(pNew);
- sqlite3_free(pUnused);
- return rc;
-}
-
-#ifdef SQLITE_TEST
-/* simulate multiple hosts by creating unique hostid file paths */
-SQLITE_API int sqlite3_hostid_num = 0;
-#endif
-
-#define PROXY_HOSTIDLEN 16 /* conch file host id length */
-
-#ifdef HAVE_GETHOSTUUID
-/* Not always defined in the headers as it ought to be */
-extern int gethostuuid(uuid_t id, const struct timespec *wait);
-#endif
-
-/* get the host ID via gethostuuid(), pHostID must point to PROXY_HOSTIDLEN
-** bytes of writable memory.
-*/
-static int proxyGetHostID(unsigned char *pHostID, int *pError){
- assert(PROXY_HOSTIDLEN == sizeof(uuid_t));
- memset(pHostID, 0, PROXY_HOSTIDLEN);
-#ifdef HAVE_GETHOSTUUID
- {
- struct timespec timeout = {1, 0}; /* 1 sec timeout */
- if( gethostuuid(pHostID, &timeout) ){
- int err = errno;
- if( pError ){
- *pError = err;
- }
- return SQLITE_IOERR;
- }
- }
-#else
- UNUSED_PARAMETER(pError);
-#endif
-#ifdef SQLITE_TEST
- /* simulate multiple hosts by creating unique hostid file paths */
- if( sqlite3_hostid_num != 0){
- pHostID[0] = (char)(pHostID[0] + (char)(sqlite3_hostid_num & 0xFF));
- }
-#endif
-
- return SQLITE_OK;
-}
-
-/* The conch file contains the header, host id and lock file path
- */
-#define PROXY_CONCHVERSION 2 /* 1-byte header, 16-byte host id, path */
-#define PROXY_HEADERLEN 1 /* conch file header length */
-#define PROXY_PATHINDEX (PROXY_HEADERLEN+PROXY_HOSTIDLEN)
-#define PROXY_MAXCONCHLEN (PROXY_HEADERLEN+PROXY_HOSTIDLEN+MAXPATHLEN)
-
-/*
-** Takes an open conch file, copies the contents to a new path and then moves
-** it back. The newly created file's file descriptor is assigned to the
-** conch file structure and finally the original conch file descriptor is
-** closed. Returns zero if successful.
-*/
-static int proxyBreakConchLock(unixFile *pFile, uuid_t myHostID){
- proxyLockingContext *pCtx = (proxyLockingContext *)pFile->lockingContext;
- unixFile *conchFile = pCtx->conchFile;
- char tPath[MAXPATHLEN];
- char buf[PROXY_MAXCONCHLEN];
- char *cPath = pCtx->conchFilePath;
- size_t readLen = 0;
- size_t pathLen = 0;
- char errmsg[64] = "";
- int fd = -1;
- int rc = -1;
- UNUSED_PARAMETER(myHostID);
-
- /* create a new path by replace the trailing '-conch' with '-break' */
- pathLen = strlcpy(tPath, cPath, MAXPATHLEN);
- if( pathLen>MAXPATHLEN || pathLen<6 ||
- (strlcpy(&tPath[pathLen-5], "break", 6) != 5) ){
- sqlite3_snprintf(sizeof(errmsg),errmsg,"path error (len %d)",(int)pathLen);
- goto end_breaklock;
- }
- /* read the conch content */
- readLen = osPread(conchFile->h, buf, PROXY_MAXCONCHLEN, 0);
- if( readLenh, __LINE__);
- conchFile->h = fd;
- conchFile->openFlags = O_RDWR | O_CREAT;
-
-end_breaklock:
- if( rc ){
- if( fd>=0 ){
- osUnlink(tPath);
- robust_close(pFile, fd, __LINE__);
- }
- fprintf(stderr, "failed to break stale lock on %s, %s\n", cPath, errmsg);
- }
- return rc;
-}
-
-/* Take the requested lock on the conch file and break a stale lock if the
-** host id matches.
-*/
-static int proxyConchLock(unixFile *pFile, uuid_t myHostID, int lockType){
- proxyLockingContext *pCtx = (proxyLockingContext *)pFile->lockingContext;
- unixFile *conchFile = pCtx->conchFile;
- int rc = SQLITE_OK;
- int nTries = 0;
- struct timespec conchModTime;
-
- memset(&conchModTime, 0, sizeof(conchModTime));
- do {
- rc = conchFile->pMethod->xLock((sqlite3_file*)conchFile, lockType);
- nTries ++;
- if( rc==SQLITE_BUSY ){
- /* If the lock failed (busy):
- * 1st try: get the mod time of the conch, wait 0.5s and try again.
- * 2nd try: fail if the mod time changed or host id is different, wait
- * 10 sec and try again
- * 3rd try: break the lock unless the mod time has changed.
- */
- struct stat buf;
- if( osFstat(conchFile->h, &buf) ){
- storeLastErrno(pFile, errno);
- return SQLITE_IOERR_LOCK;
- }
-
- if( nTries==1 ){
- conchModTime = buf.st_mtimespec;
- usleep(500000); /* wait 0.5 sec and try the lock again*/
- continue;
- }
-
- assert( nTries>1 );
- if( conchModTime.tv_sec != buf.st_mtimespec.tv_sec ||
- conchModTime.tv_nsec != buf.st_mtimespec.tv_nsec ){
- return SQLITE_BUSY;
- }
-
- if( nTries==2 ){
- char tBuf[PROXY_MAXCONCHLEN];
- int len = osPread(conchFile->h, tBuf, PROXY_MAXCONCHLEN, 0);
- if( len<0 ){
- storeLastErrno(pFile, errno);
- return SQLITE_IOERR_LOCK;
- }
- if( len>PROXY_PATHINDEX && tBuf[0]==(char)PROXY_CONCHVERSION){
- /* don't break the lock if the host id doesn't match */
- if( 0!=memcmp(&tBuf[PROXY_HEADERLEN], myHostID, PROXY_HOSTIDLEN) ){
- return SQLITE_BUSY;
- }
- }else{
- /* don't break the lock on short read or a version mismatch */
- return SQLITE_BUSY;
- }
- usleep(10000000); /* wait 10 sec and try the lock again */
- continue;
- }
-
- assert( nTries==3 );
- if( 0==proxyBreakConchLock(pFile, myHostID) ){
- rc = SQLITE_OK;
- if( lockType==EXCLUSIVE_LOCK ){
- rc = conchFile->pMethod->xLock((sqlite3_file*)conchFile, SHARED_LOCK);
- }
- if( !rc ){
- rc = conchFile->pMethod->xLock((sqlite3_file*)conchFile, lockType);
- }
- }
- }
- } while( rc==SQLITE_BUSY && nTries<3 );
-
- return rc;
-}
-
-/* Takes the conch by taking a shared lock and read the contents conch, if
-** lockPath is non-NULL, the host ID and lock file path must match. A NULL
-** lockPath means that the lockPath in the conch file will be used if the
-** host IDs match, or a new lock path will be generated automatically
-** and written to the conch file.
-*/
-static int proxyTakeConch(unixFile *pFile){
- proxyLockingContext *pCtx = (proxyLockingContext *)pFile->lockingContext;
-
- if( pCtx->conchHeld!=0 ){
- return SQLITE_OK;
- }else{
- unixFile *conchFile = pCtx->conchFile;
- uuid_t myHostID;
- int pError = 0;
- char readBuf[PROXY_MAXCONCHLEN];
- char lockPath[MAXPATHLEN];
- char *tempLockPath = NULL;
- int rc = SQLITE_OK;
- int createConch = 0;
- int hostIdMatch = 0;
- int readLen = 0;
- int tryOldLockPath = 0;
- int forceNewLockPath = 0;
-
- OSTRACE(("TAKECONCH %d for %s pid=%d\n", conchFile->h,
- (pCtx->lockProxyPath ? pCtx->lockProxyPath : ":auto:"),
- osGetpid(0)));
-
- rc = proxyGetHostID(myHostID, &pError);
- if( (rc&0xff)==SQLITE_IOERR ){
- storeLastErrno(pFile, pError);
- goto end_takeconch;
- }
- rc = proxyConchLock(pFile, myHostID, SHARED_LOCK);
- if( rc!=SQLITE_OK ){
- goto end_takeconch;
- }
- /* read the existing conch file */
- readLen = seekAndRead((unixFile*)conchFile, 0, readBuf, PROXY_MAXCONCHLEN);
- if( readLen<0 ){
- /* I/O error: lastErrno set by seekAndRead */
- storeLastErrno(pFile, conchFile->lastErrno);
- rc = SQLITE_IOERR_READ;
- goto end_takeconch;
- }else if( readLen<=(PROXY_HEADERLEN+PROXY_HOSTIDLEN) ||
- readBuf[0]!=(char)PROXY_CONCHVERSION ){
- /* a short read or version format mismatch means we need to create a new
- ** conch file.
- */
- createConch = 1;
- }
- /* if the host id matches and the lock path already exists in the conch
- ** we'll try to use the path there, if we can't open that path, we'll
- ** retry with a new auto-generated path
- */
- do { /* in case we need to try again for an :auto: named lock file */
-
- if( !createConch && !forceNewLockPath ){
- hostIdMatch = !memcmp(&readBuf[PROXY_HEADERLEN], myHostID,
- PROXY_HOSTIDLEN);
- /* if the conch has data compare the contents */
- if( !pCtx->lockProxyPath ){
- /* for auto-named local lock file, just check the host ID and we'll
- ** use the local lock file path that's already in there
- */
- if( hostIdMatch ){
- size_t pathLen = (readLen - PROXY_PATHINDEX);
-
- if( pathLen>=MAXPATHLEN ){
- pathLen=MAXPATHLEN-1;
- }
- memcpy(lockPath, &readBuf[PROXY_PATHINDEX], pathLen);
- lockPath[pathLen] = 0;
- tempLockPath = lockPath;
- tryOldLockPath = 1;
- /* create a copy of the lock path if the conch is taken */
- goto end_takeconch;
- }
- }else if( hostIdMatch
- && !strncmp(pCtx->lockProxyPath, &readBuf[PROXY_PATHINDEX],
- readLen-PROXY_PATHINDEX)
- ){
- /* conch host and lock path match */
- goto end_takeconch;
- }
- }
-
- /* if the conch isn't writable and doesn't match, we can't take it */
- if( (conchFile->openFlags&O_RDWR) == 0 ){
- rc = SQLITE_BUSY;
- goto end_takeconch;
- }
-
- /* either the conch didn't match or we need to create a new one */
- if( !pCtx->lockProxyPath ){
- proxyGetLockPath(pCtx->dbPath, lockPath, MAXPATHLEN);
- tempLockPath = lockPath;
- /* create a copy of the lock path _only_ if the conch is taken */
- }
-
- /* update conch with host and path (this will fail if other process
- ** has a shared lock already), if the host id matches, use the big
- ** stick.
- */
- futimes(conchFile->h, NULL);
- if( hostIdMatch && !createConch ){
- if( conchFile->pInode && conchFile->pInode->nShared>1 ){
- /* We are trying for an exclusive lock but another thread in this
- ** same process is still holding a shared lock. */
- rc = SQLITE_BUSY;
- } else {
- rc = proxyConchLock(pFile, myHostID, EXCLUSIVE_LOCK);
- }
- }else{
- rc = proxyConchLock(pFile, myHostID, EXCLUSIVE_LOCK);
- }
- if( rc==SQLITE_OK ){
- char writeBuffer[PROXY_MAXCONCHLEN];
- int writeSize = 0;
-
- writeBuffer[0] = (char)PROXY_CONCHVERSION;
- memcpy(&writeBuffer[PROXY_HEADERLEN], myHostID, PROXY_HOSTIDLEN);
- if( pCtx->lockProxyPath!=NULL ){
- strlcpy(&writeBuffer[PROXY_PATHINDEX], pCtx->lockProxyPath,
- MAXPATHLEN);
- }else{
- strlcpy(&writeBuffer[PROXY_PATHINDEX], tempLockPath, MAXPATHLEN);
- }
- writeSize = PROXY_PATHINDEX + strlen(&writeBuffer[PROXY_PATHINDEX]);
- robust_ftruncate(conchFile->h, writeSize);
- rc = unixWrite((sqlite3_file *)conchFile, writeBuffer, writeSize, 0);
- full_fsync(conchFile->h,0,0);
- /* If we created a new conch file (not just updated the contents of a
- ** valid conch file), try to match the permissions of the database
- */
- if( rc==SQLITE_OK && createConch ){
- struct stat buf;
- int err = osFstat(pFile->h, &buf);
- if( err==0 ){
- mode_t cmode = buf.st_mode&(S_IRUSR|S_IWUSR | S_IRGRP|S_IWGRP |
- S_IROTH|S_IWOTH);
- /* try to match the database file R/W permissions, ignore failure */
-#ifndef SQLITE_PROXY_DEBUG
- osFchmod(conchFile->h, cmode);
-#else
- do{
- rc = osFchmod(conchFile->h, cmode);
- }while( rc==(-1) && errno==EINTR );
- if( rc!=0 ){
- int code = errno;
- fprintf(stderr, "fchmod %o FAILED with %d %s\n",
- cmode, code, strerror(code));
- } else {
- fprintf(stderr, "fchmod %o SUCCEDED\n",cmode);
- }
- }else{
- int code = errno;
- fprintf(stderr, "STAT FAILED[%d] with %d %s\n",
- err, code, strerror(code));
-#endif
- }
- }
- }
- conchFile->pMethod->xUnlock((sqlite3_file*)conchFile, SHARED_LOCK);
-
- end_takeconch:
- OSTRACE(("TRANSPROXY: CLOSE %d\n", pFile->h));
- if( rc==SQLITE_OK && pFile->openFlags ){
- int fd;
- if( pFile->h>=0 ){
- robust_close(pFile, pFile->h, __LINE__);
- }
- pFile->h = -1;
- fd = robust_open(pCtx->dbPath, pFile->openFlags, 0);
- OSTRACE(("TRANSPROXY: OPEN %d\n", fd));
- if( fd>=0 ){
- pFile->h = fd;
- }else{
- rc=SQLITE_CANTOPEN_BKPT; /* SQLITE_BUSY? proxyTakeConch called
- during locking */
- }
- }
- if( rc==SQLITE_OK && !pCtx->lockProxy ){
- char *path = tempLockPath ? tempLockPath : pCtx->lockProxyPath;
- rc = proxyCreateUnixFile(path, &pCtx->lockProxy, 1);
- if( rc!=SQLITE_OK && rc!=SQLITE_NOMEM && tryOldLockPath ){
- /* we couldn't create the proxy lock file with the old lock file path
- ** so try again via auto-naming
- */
- forceNewLockPath = 1;
- tryOldLockPath = 0;
- continue; /* go back to the do {} while start point, try again */
- }
- }
- if( rc==SQLITE_OK ){
- /* Need to make a copy of path if we extracted the value
- ** from the conch file or the path was allocated on the stack
- */
- if( tempLockPath ){
- pCtx->lockProxyPath = sqlite3DbStrDup(0, tempLockPath);
- if( !pCtx->lockProxyPath ){
- rc = SQLITE_NOMEM_BKPT;
- }
- }
- }
- if( rc==SQLITE_OK ){
- pCtx->conchHeld = 1;
-
- if( pCtx->lockProxy->pMethod == &afpIoMethods ){
- afpLockingContext *afpCtx;
- afpCtx = (afpLockingContext *)pCtx->lockProxy->lockingContext;
- afpCtx->dbPath = pCtx->lockProxyPath;
- }
- } else {
- conchFile->pMethod->xUnlock((sqlite3_file*)conchFile, NO_LOCK);
- }
- OSTRACE(("TAKECONCH %d %s\n", conchFile->h,
- rc==SQLITE_OK?"ok":"failed"));
- return rc;
- } while (1); /* in case we need to retry the :auto: lock file -
- ** we should never get here except via the 'continue' call. */
- }
-}
-
-/*
-** If pFile holds a lock on a conch file, then release that lock.
-*/
-static int proxyReleaseConch(unixFile *pFile){
- int rc = SQLITE_OK; /* Subroutine return code */
- proxyLockingContext *pCtx; /* The locking context for the proxy lock */
- unixFile *conchFile; /* Name of the conch file */
-
- pCtx = (proxyLockingContext *)pFile->lockingContext;
- conchFile = pCtx->conchFile;
- OSTRACE(("RELEASECONCH %d for %s pid=%d\n", conchFile->h,
- (pCtx->lockProxyPath ? pCtx->lockProxyPath : ":auto:"),
- osGetpid(0)));
- if( pCtx->conchHeld>0 ){
- rc = conchFile->pMethod->xUnlock((sqlite3_file*)conchFile, NO_LOCK);
- }
- pCtx->conchHeld = 0;
- OSTRACE(("RELEASECONCH %d %s\n", conchFile->h,
- (rc==SQLITE_OK ? "ok" : "failed")));
- return rc;
-}
-
-/*
-** Given the name of a database file, compute the name of its conch file.
-** Store the conch filename in memory obtained from sqlite3_malloc64().
-** Make *pConchPath point to the new name. Return SQLITE_OK on success
-** or SQLITE_NOMEM if unable to obtain memory.
-**
-** The caller is responsible for ensuring that the allocated memory
-** space is eventually freed.
-**
-** *pConchPath is set to NULL if a memory allocation error occurs.
-*/
-static int proxyCreateConchPathname(char *dbPath, char **pConchPath){
- int i; /* Loop counter */
- int len = (int)strlen(dbPath); /* Length of database filename - dbPath */
- char *conchPath; /* buffer in which to construct conch name */
-
- /* Allocate space for the conch filename and initialize the name to
- ** the name of the original database file. */
- *pConchPath = conchPath = (char *)sqlite3_malloc64(len + 8);
- if( conchPath==0 ){
- return SQLITE_NOMEM_BKPT;
- }
- memcpy(conchPath, dbPath, len+1);
-
- /* now insert a "." before the last / character */
- for( i=(len-1); i>=0; i-- ){
- if( conchPath[i]=='/' ){
- i++;
- break;
- }
- }
- conchPath[i]='.';
- while ( ilockingContext;
- char *oldPath = pCtx->lockProxyPath;
- int rc = SQLITE_OK;
-
- if( pFile->eFileLock!=NO_LOCK ){
- return SQLITE_BUSY;
- }
-
- /* nothing to do if the path is NULL, :auto: or matches the existing path */
- if( !path || path[0]=='\0' || !strcmp(path, ":auto:") ||
- (oldPath && !strncmp(oldPath, path, MAXPATHLEN)) ){
- return SQLITE_OK;
- }else{
- unixFile *lockProxy = pCtx->lockProxy;
- pCtx->lockProxy=NULL;
- pCtx->conchHeld = 0;
- if( lockProxy!=NULL ){
- rc=lockProxy->pMethod->xClose((sqlite3_file *)lockProxy);
- if( rc ) return rc;
- sqlite3_free(lockProxy);
- }
- sqlite3_free(oldPath);
- pCtx->lockProxyPath = sqlite3DbStrDup(0, path);
- }
-
- return rc;
-}
-
-/*
-** pFile is a file that has been opened by a prior xOpen call. dbPath
-** is a string buffer at least MAXPATHLEN+1 characters in size.
-**
-** This routine find the filename associated with pFile and writes it
-** int dbPath.
-*/
-static int proxyGetDbPathForUnixFile(unixFile *pFile, char *dbPath){
-#if defined(__APPLE__)
- if( pFile->pMethod == &afpIoMethods ){
- /* afp style keeps a reference to the db path in the filePath field
- ** of the struct */
- assert( (int)strlen((char*)pFile->lockingContext)<=MAXPATHLEN );
- strlcpy(dbPath, ((afpLockingContext *)pFile->lockingContext)->dbPath,
- MAXPATHLEN);
- } else
-#endif
- if( pFile->pMethod == &dotlockIoMethods ){
- /* dot lock style uses the locking context to store the dot lock
- ** file path */
- int len = strlen((char *)pFile->lockingContext) - strlen(DOTLOCK_SUFFIX);
- memcpy(dbPath, (char *)pFile->lockingContext, len + 1);
- }else{
- /* all other styles use the locking context to store the db file path */
- assert( strlen((char*)pFile->lockingContext)<=MAXPATHLEN );
- strlcpy(dbPath, (char *)pFile->lockingContext, MAXPATHLEN);
- }
- return SQLITE_OK;
-}
-
-/*
-** Takes an already filled in unix file and alters it so all file locking
-** will be performed on the local proxy lock file. The following fields
-** are preserved in the locking context so that they can be restored and
-** the unix structure properly cleaned up at close time:
-** ->lockingContext
-** ->pMethod
-*/
-static int proxyTransformUnixFile(unixFile *pFile, const char *path) {
- proxyLockingContext *pCtx;
- char dbPath[MAXPATHLEN+1]; /* Name of the database file */
- char *lockPath=NULL;
- int rc = SQLITE_OK;
-
- if( pFile->eFileLock!=NO_LOCK ){
- return SQLITE_BUSY;
- }
- proxyGetDbPathForUnixFile(pFile, dbPath);
- if( !path || path[0]=='\0' || !strcmp(path, ":auto:") ){
- lockPath=NULL;
- }else{
- lockPath=(char *)path;
- }
-
- OSTRACE(("TRANSPROXY %d for %s pid=%d\n", pFile->h,
- (lockPath ? lockPath : ":auto:"), osGetpid(0)));
-
- pCtx = sqlite3_malloc64( sizeof(*pCtx) );
- if( pCtx==0 ){
- return SQLITE_NOMEM_BKPT;
- }
- memset(pCtx, 0, sizeof(*pCtx));
-
- rc = proxyCreateConchPathname(dbPath, &pCtx->conchFilePath);
- if( rc==SQLITE_OK ){
- rc = proxyCreateUnixFile(pCtx->conchFilePath, &pCtx->conchFile, 0);
- if( rc==SQLITE_CANTOPEN && ((pFile->openFlags&O_RDWR) == 0) ){
- /* if (a) the open flags are not O_RDWR, (b) the conch isn't there, and
- ** (c) the file system is read-only, then enable no-locking access.
- ** Ugh, since O_RDONLY==0x0000 we test for !O_RDWR since unixOpen asserts
- ** that openFlags will have only one of O_RDONLY or O_RDWR.
- */
- struct statfs fsInfo;
- struct stat conchInfo;
- int goLockless = 0;
-
- if( osStat(pCtx->conchFilePath, &conchInfo) == -1 ) {
- int err = errno;
- if( (err==ENOENT) && (statfs(dbPath, &fsInfo) != -1) ){
- goLockless = (fsInfo.f_flags&MNT_RDONLY) == MNT_RDONLY;
- }
- }
- if( goLockless ){
- pCtx->conchHeld = -1; /* read only FS/ lockless */
- rc = SQLITE_OK;
- }
- }
- }
- if( rc==SQLITE_OK && lockPath ){
- pCtx->lockProxyPath = sqlite3DbStrDup(0, lockPath);
- }
-
- if( rc==SQLITE_OK ){
- pCtx->dbPath = sqlite3DbStrDup(0, dbPath);
- if( pCtx->dbPath==NULL ){
- rc = SQLITE_NOMEM_BKPT;
- }
- }
- if( rc==SQLITE_OK ){
- /* all memory is allocated, proxys are created and assigned,
- ** switch the locking context and pMethod then return.
- */
- pCtx->oldLockingContext = pFile->lockingContext;
- pFile->lockingContext = pCtx;
- pCtx->pOldMethod = pFile->pMethod;
- pFile->pMethod = &proxyIoMethods;
- }else{
- if( pCtx->conchFile ){
- pCtx->conchFile->pMethod->xClose((sqlite3_file *)pCtx->conchFile);
- sqlite3_free(pCtx->conchFile);
- }
- sqlite3DbFree(0, pCtx->lockProxyPath);
- sqlite3_free(pCtx->conchFilePath);
- sqlite3_free(pCtx);
- }
- OSTRACE(("TRANSPROXY %d %s\n", pFile->h,
- (rc==SQLITE_OK ? "ok" : "failed")));
- return rc;
-}
-
-
-/*
-** This routine handles sqlite3_file_control() calls that are specific
-** to proxy locking.
-*/
-static int proxyFileControl(sqlite3_file *id, int op, void *pArg){
- switch( op ){
- case SQLITE_FCNTL_GET_LOCKPROXYFILE: {
- unixFile *pFile = (unixFile*)id;
- if( pFile->pMethod == &proxyIoMethods ){
- proxyLockingContext *pCtx = (proxyLockingContext*)pFile->lockingContext;
- proxyTakeConch(pFile);
- if( pCtx->lockProxyPath ){
- *(const char **)pArg = pCtx->lockProxyPath;
- }else{
- *(const char **)pArg = ":auto: (not held)";
- }
- } else {
- *(const char **)pArg = NULL;
- }
- return SQLITE_OK;
- }
- case SQLITE_FCNTL_SET_LOCKPROXYFILE: {
- unixFile *pFile = (unixFile*)id;
- int rc = SQLITE_OK;
- int isProxyStyle = (pFile->pMethod == &proxyIoMethods);
- if( pArg==NULL || (const char *)pArg==0 ){
- if( isProxyStyle ){
- /* turn off proxy locking - not supported. If support is added for
- ** switching proxy locking mode off then it will need to fail if
- ** the journal mode is WAL mode.
- */
- rc = SQLITE_ERROR /*SQLITE_PROTOCOL? SQLITE_MISUSE?*/;
- }else{
- /* turn off proxy locking - already off - NOOP */
- rc = SQLITE_OK;
- }
- }else{
- const char *proxyPath = (const char *)pArg;
- if( isProxyStyle ){
- proxyLockingContext *pCtx =
- (proxyLockingContext*)pFile->lockingContext;
- if( !strcmp(pArg, ":auto:")
- || (pCtx->lockProxyPath &&
- !strncmp(pCtx->lockProxyPath, proxyPath, MAXPATHLEN))
- ){
- rc = SQLITE_OK;
- }else{
- rc = switchLockProxyPath(pFile, proxyPath);
- }
- }else{
- /* turn on proxy file locking */
- rc = proxyTransformUnixFile(pFile, proxyPath);
- }
- }
- return rc;
- }
- default: {
- assert( 0 ); /* The call assures that only valid opcodes are sent */
- }
- }
- /*NOTREACHED*/
- return SQLITE_ERROR;
-}
-
-/*
-** Within this division (the proxying locking implementation) the procedures
-** above this point are all utilities. The lock-related methods of the
-** proxy-locking sqlite3_io_method object follow.
-*/
-
-
-/*
-** This routine checks if there is a RESERVED lock held on the specified
-** file by this or any other process. If such a lock is held, set *pResOut
-** to a non-zero value otherwise *pResOut is set to zero. The return value
-** is set to SQLITE_OK unless an I/O error occurs during lock checking.
-*/
-static int proxyCheckReservedLock(sqlite3_file *id, int *pResOut) {
- unixFile *pFile = (unixFile*)id;
- int rc = proxyTakeConch(pFile);
- if( rc==SQLITE_OK ){
- proxyLockingContext *pCtx = (proxyLockingContext *)pFile->lockingContext;
- if( pCtx->conchHeld>0 ){
- unixFile *proxy = pCtx->lockProxy;
- return proxy->pMethod->xCheckReservedLock((sqlite3_file*)proxy, pResOut);
- }else{ /* conchHeld < 0 is lockless */
- pResOut=0;
- }
- }
- return rc;
-}
-
-/*
-** Lock the file with the lock specified by parameter eFileLock - one
-** of the following:
-**
-** (1) SHARED_LOCK
-** (2) RESERVED_LOCK
-** (3) PENDING_LOCK
-** (4) EXCLUSIVE_LOCK
-**
-** Sometimes when requesting one lock state, additional lock states
-** are inserted in between. The locking might fail on one of the later
-** transitions leaving the lock state different from what it started but
-** still short of its goal. The following chart shows the allowed
-** transitions and the inserted intermediate states:
-**
-** UNLOCKED -> SHARED
-** SHARED -> RESERVED
-** SHARED -> (PENDING) -> EXCLUSIVE
-** RESERVED -> (PENDING) -> EXCLUSIVE
-** PENDING -> EXCLUSIVE
-**
-** This routine will only increase a lock. Use the sqlite3OsUnlock()
-** routine to lower a locking level.
-*/
-static int proxyLock(sqlite3_file *id, int eFileLock) {
- unixFile *pFile = (unixFile*)id;
- int rc = proxyTakeConch(pFile);
- if( rc==SQLITE_OK ){
- proxyLockingContext *pCtx = (proxyLockingContext *)pFile->lockingContext;
- if( pCtx->conchHeld>0 ){
- unixFile *proxy = pCtx->lockProxy;
- rc = proxy->pMethod->xLock((sqlite3_file*)proxy, eFileLock);
- pFile->eFileLock = proxy->eFileLock;
- }else{
- /* conchHeld < 0 is lockless */
- }
- }
- return rc;
-}
-
-
-/*
-** Lower the locking level on file descriptor pFile to eFileLock. eFileLock
-** must be either NO_LOCK or SHARED_LOCK.
-**
-** If the locking level of the file descriptor is already at or below
-** the requested locking level, this routine is a no-op.
-*/
-static int proxyUnlock(sqlite3_file *id, int eFileLock) {
- unixFile *pFile = (unixFile*)id;
- int rc = proxyTakeConch(pFile);
- if( rc==SQLITE_OK ){
- proxyLockingContext *pCtx = (proxyLockingContext *)pFile->lockingContext;
- if( pCtx->conchHeld>0 ){
- unixFile *proxy = pCtx->lockProxy;
- rc = proxy->pMethod->xUnlock((sqlite3_file*)proxy, eFileLock);
- pFile->eFileLock = proxy->eFileLock;
- }else{
- /* conchHeld < 0 is lockless */
- }
- }
- return rc;
-}
-
-/*
-** Close a file that uses proxy locks.
-*/
-static int proxyClose(sqlite3_file *id) {
- if( ALWAYS(id) ){
- unixFile *pFile = (unixFile*)id;
- proxyLockingContext *pCtx = (proxyLockingContext *)pFile->lockingContext;
- unixFile *lockProxy = pCtx->lockProxy;
- unixFile *conchFile = pCtx->conchFile;
- int rc = SQLITE_OK;
-
- if( lockProxy ){
- rc = lockProxy->pMethod->xUnlock((sqlite3_file*)lockProxy, NO_LOCK);
- if( rc ) return rc;
- rc = lockProxy->pMethod->xClose((sqlite3_file*)lockProxy);
- if( rc ) return rc;
- sqlite3_free(lockProxy);
- pCtx->lockProxy = 0;
- }
- if( conchFile ){
- if( pCtx->conchHeld ){
- rc = proxyReleaseConch(pFile);
- if( rc ) return rc;
- }
- rc = conchFile->pMethod->xClose((sqlite3_file*)conchFile);
- if( rc ) return rc;
- sqlite3_free(conchFile);
- }
- sqlite3DbFree(0, pCtx->lockProxyPath);
- sqlite3_free(pCtx->conchFilePath);
- sqlite3DbFree(0, pCtx->dbPath);
- /* restore the original locking context and pMethod then close it */
- pFile->lockingContext = pCtx->oldLockingContext;
- pFile->pMethod = pCtx->pOldMethod;
- sqlite3_free(pCtx);
- return pFile->pMethod->xClose(id);
- }
- return SQLITE_OK;
-}
-
-
-
-#endif /* defined(__APPLE__) && SQLITE_ENABLE_LOCKING_STYLE */
-/*
-** The proxy locking style is intended for use with AFP filesystems.
-** And since AFP is only supported on MacOSX, the proxy locking is also
-** restricted to MacOSX.
-**
-**
-******************* End of the proxy lock implementation **********************
-******************************************************************************/
-
-/*
-** Initialize the operating system interface.
-**
-** This routine registers all VFS implementations for unix-like operating
-** systems. This routine, and the sqlite3_os_end() routine that follows,
-** should be the only routines in this file that are visible from other
-** files.
-**
-** This routine is called once during SQLite initialization and by a
-** single thread. The memory allocation and mutex subsystems have not
-** necessarily been initialized when this routine is called, and so they
-** should not be used.
-*/
-SQLITE_API int sqlite3_os_init(void){
- /*
- ** The following macro defines an initializer for an sqlite3_vfs object.
- ** The name of the VFS is NAME. The pAppData is a pointer to a pointer
- ** to the "finder" function. (pAppData is a pointer to a pointer because
- ** silly C90 rules prohibit a void* from being cast to a function pointer
- ** and so we have to go through the intermediate pointer to avoid problems
- ** when compiling with -pedantic-errors on GCC.)
- **
- ** The FINDER parameter to this macro is the name of the pointer to the
- ** finder-function. The finder-function returns a pointer to the
- ** sqlite_io_methods object that implements the desired locking
- ** behaviors. See the division above that contains the IOMETHODS
- ** macro for addition information on finder-functions.
- **
- ** Most finders simply return a pointer to a fixed sqlite3_io_methods
- ** object. But the "autolockIoFinder" available on MacOSX does a little
- ** more than that; it looks at the filesystem type that hosts the
- ** database file and tries to choose an locking method appropriate for
- ** that filesystem time.
- */
- #define UNIXVFS(VFSNAME, FINDER) { \
- 3, /* iVersion */ \
- sizeof(unixFile), /* szOsFile */ \
- MAX_PATHNAME, /* mxPathname */ \
- 0, /* pNext */ \
- VFSNAME, /* zName */ \
- (void*)&FINDER, /* pAppData */ \
- unixOpen, /* xOpen */ \
- unixDelete, /* xDelete */ \
- unixAccess, /* xAccess */ \
- unixFullPathname, /* xFullPathname */ \
- unixDlOpen, /* xDlOpen */ \
- unixDlError, /* xDlError */ \
- unixDlSym, /* xDlSym */ \
- unixDlClose, /* xDlClose */ \
- unixRandomness, /* xRandomness */ \
- unixSleep, /* xSleep */ \
- unixCurrentTime, /* xCurrentTime */ \
- unixGetLastError, /* xGetLastError */ \
- unixCurrentTimeInt64, /* xCurrentTimeInt64 */ \
- unixSetSystemCall, /* xSetSystemCall */ \
- unixGetSystemCall, /* xGetSystemCall */ \
- unixNextSystemCall, /* xNextSystemCall */ \
- }
-
- /*
- ** All default VFSes for unix are contained in the following array.
- **
- ** Note that the sqlite3_vfs.pNext field of the VFS object is modified
- ** by the SQLite core when the VFS is registered. So the following
- ** array cannot be const.
- */
- static sqlite3_vfs aVfs[] = {
-#if SQLITE_ENABLE_LOCKING_STYLE && defined(__APPLE__)
- UNIXVFS("unix", autolockIoFinder ),
-#elif OS_VXWORKS
- UNIXVFS("unix", vxworksIoFinder ),
-#else
- UNIXVFS("unix", posixIoFinder ),
-#endif
- UNIXVFS("unix-none", nolockIoFinder ),
- UNIXVFS("unix-dotfile", dotlockIoFinder ),
- UNIXVFS("unix-excl", posixIoFinder ),
-#if OS_VXWORKS
- UNIXVFS("unix-namedsem", semIoFinder ),
-#endif
-#if SQLITE_ENABLE_LOCKING_STYLE || OS_VXWORKS
- UNIXVFS("unix-posix", posixIoFinder ),
-#endif
-#if SQLITE_ENABLE_LOCKING_STYLE
- UNIXVFS("unix-flock", flockIoFinder ),
-#endif
-#if SQLITE_ENABLE_LOCKING_STYLE && defined(__APPLE__)
- UNIXVFS("unix-afp", afpIoFinder ),
- UNIXVFS("unix-nfs", nfsIoFinder ),
- UNIXVFS("unix-proxy", proxyIoFinder ),
-#endif
- };
- unsigned int i; /* Loop counter */
-
- /* Double-check that the aSyscall[] array has been constructed
- ** correctly. See ticket [bb3a86e890c8e96ab] */
- assert( ArraySize(aSyscall)==29 );
-
- /* Register all VFSes defined in the aVfs[] array */
- for(i=0; i<(sizeof(aVfs)/sizeof(sqlite3_vfs)); i++){
- sqlite3_vfs_register(&aVfs[i], i==0);
- }
- unixBigLock = sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_VFS1);
- return SQLITE_OK;
-}
-
-/*
-** Shutdown the operating system interface.
-**
-** Some operating systems might need to do some cleanup in this routine,
-** to release dynamically allocated objects. But not on unix.
-** This routine is a no-op for unix.
-*/
-SQLITE_API int sqlite3_os_end(void){
- unixBigLock = 0;
- return SQLITE_OK;
-}
-
-#endif /* SQLITE_OS_UNIX */
-
-/************** End of os_unix.c *********************************************/
-/************** Begin file os_win.c ******************************************/
-/*
-** 2004 May 22
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This file contains code that is specific to Windows.
-*/
-/* #include "sqliteInt.h" */
-#if SQLITE_OS_WIN /* This file is used for Windows only */
-
-/*
-** Include code that is common to all os_*.c files
-*/
-/************** Include os_common.h in the middle of os_win.c ****************/
-/************** Begin file os_common.h ***************************************/
-/*
-** 2004 May 22
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This file contains macros and a little bit of code that is common to
-** all of the platform-specific files (os_*.c) and is #included into those
-** files.
-**
-** This file should be #included by the os_*.c files only. It is not a
-** general purpose header file.
-*/
-#ifndef _OS_COMMON_H_
-#define _OS_COMMON_H_
-
-/*
-** At least two bugs have slipped in because we changed the MEMORY_DEBUG
-** macro to SQLITE_DEBUG and some older makefiles have not yet made the
-** switch. The following code should catch this problem at compile-time.
-*/
-#ifdef MEMORY_DEBUG
-# error "The MEMORY_DEBUG macro is obsolete. Use SQLITE_DEBUG instead."
-#endif
-
-/*
-** Macros for performance tracing. Normally turned off. Only works
-** on i486 hardware.
-*/
-#ifdef SQLITE_PERFORMANCE_TRACE
-
-/*
-** hwtime.h contains inline assembler code for implementing
-** high-performance timing routines.
-*/
-/************** Include hwtime.h in the middle of os_common.h ****************/
-/************** Begin file hwtime.h ******************************************/
-/*
-** 2008 May 27
-**
-** The author disclaims copyright to this source code. In place of
-** a legal notice, here is a blessing:
-**
-** May you do good and not evil.
-** May you find forgiveness for yourself and forgive others.
-** May you share freely, never taking more than you give.
-**
-******************************************************************************
-**
-** This file contains inline asm code for retrieving "high-performance"
-** counters for x86 class CPUs.
-*/
-#ifndef SQLITE_HWTIME_H
-#define SQLITE_HWTIME_H
-
-/*
-** The following routine only works on pentium-class (or newer) processors.
-** It uses the RDTSC opcode to read the cycle count value out of the
-** processor and returns that value. This can be used for high-res
-** profiling.
-*/
-#if (defined(__GNUC__) || defined(_MSC_VER)) && \
- (defined(i386) || defined(__i386__) || defined(_M_IX86))
-
- #if defined(__GNUC__)
-
- __inline__ sqlite_uint64 sqlite3Hwtime(void){
- unsigned int lo, hi;
- __asm__ __volatile__ ("rdtsc" : "=a" (lo), "=d" (hi));
- return (sqlite_uint64)hi << 32 | lo;
- }
-
- #elif defined(_MSC_VER)
-
- __declspec(naked) __inline sqlite_uint64 __cdecl sqlite3Hwtime(void){
- __asm {
- rdtsc
- ret ; return value at EDX:EAX
- }
- }
-
- #endif
-
-#elif (defined(__GNUC__) && defined(__x86_64__))
-
- __inline__ sqlite_uint64 sqlite3Hwtime(void){
- unsigned long val;
- __asm__ __volatile__ ("rdtsc" : "=A" (val));
- return val;
- }
-
-#elif (defined(__GNUC__) && defined(__ppc__))
-
- __inline__ sqlite_uint64 sqlite3Hwtime(void){
- unsigned long long retval;
- unsigned long junk;
- __asm__ __volatile__ ("\n\
- 1: mftbu %1\n\
- mftb %L0\n\
- mftbu %0\n\
- cmpw %0,%1\n\
- bne 1b"
- : "=r" (retval), "=r" (junk));
- return retval;
- }
-
-#else
-
- #error Need implementation of sqlite3Hwtime() for your platform.
-
- /*
- ** To compile without implementing sqlite3Hwtime() for your platform,
- ** you can remove the above #error and use the following
- ** stub function. You will lose timing support for many
- ** of the debugging and testing utilities, but it should at
- ** least compile and run.
- */
-SQLITE_PRIVATE sqlite_uint64 sqlite3Hwtime(void){ return ((sqlite_uint64)0); }
-
-#endif
-
-#endif /* !defined(SQLITE_HWTIME_H) */
-
-/************** End of hwtime.h **********************************************/
-/************** Continuing where we left off in os_common.h ******************/
-
-static sqlite_uint64 g_start;
-static sqlite_uint64 g_elapsed;
-#define TIMER_START g_start=sqlite3Hwtime()
-#define TIMER_END g_elapsed=sqlite3Hwtime()-g_start
-#define TIMER_ELAPSED g_elapsed
-#else
-#define TIMER_START
-#define TIMER_END
-#define TIMER_ELAPSED ((sqlite_uint64)0)
-#endif
-
-/*
-** If we compile with the SQLITE_TEST macro set, then the following block
-** of code will give us the ability to simulate a disk I/O error. This
-** is used for testing the I/O recovery logic.
-*/
-#if defined(SQLITE_TEST)
-SQLITE_API extern int sqlite3_io_error_hit;
-SQLITE_API extern int sqlite3_io_error_hardhit;
-SQLITE_API extern int sqlite3_io_error_pending;
-SQLITE_API extern int sqlite3_io_error_persist;
-SQLITE_API extern int sqlite3_io_error_benign;
-SQLITE_API extern int sqlite3_diskfull_pending;
-SQLITE_API extern int sqlite3_diskfull;
-#define SimulateIOErrorBenign(X) sqlite3_io_error_benign=(X)
-#define SimulateIOError(CODE) \
- if( (sqlite3_io_error_persist && sqlite3_io_error_hit) \
- || sqlite3_io_error_pending-- == 1 ) \
- { local_ioerr(); CODE; }
-static void local_ioerr(){
- IOTRACE(("IOERR\n"));
- sqlite3_io_error_hit++;
- if( !sqlite3_io_error_benign ) sqlite3_io_error_hardhit++;
-}
-#define SimulateDiskfullError(CODE) \
- if( sqlite3_diskfull_pending ){ \
- if( sqlite3_diskfull_pending == 1 ){ \
- local_ioerr(); \
- sqlite3_diskfull = 1; \
- sqlite3_io_error_hit = 1; \
- CODE; \
- }else{ \
- sqlite3_diskfull_pending--; \
- } \
- }
-#else
-#define SimulateIOErrorBenign(X)
-#define SimulateIOError(A)
-#define SimulateDiskfullError(A)
-#endif /* defined(SQLITE_TEST) */
-
-/*
-** When testing, keep a count of the number of open files.
-*/
-#if defined(SQLITE_TEST)
-SQLITE_API extern int sqlite3_open_file_count;
-#define OpenCounter(X) sqlite3_open_file_count+=(X)
-#else
-#define OpenCounter(X)
-#endif /* defined(SQLITE_TEST) */
-
-#endif /* !defined(_OS_COMMON_H_) */
-
-/************** End of os_common.h *******************************************/
-/************** Continuing where we left off in os_win.c *********************/
-
-/*
-** Include the header file for the Windows VFS.
-*/
-/* #include "os_win.h" */
-
-/*
-** Compiling and using WAL mode requires several APIs that are only
-** available in Windows platforms based on the NT kernel.
-*/
-#if !SQLITE_OS_WINNT && !defined(SQLITE_OMIT_WAL)
-# error "WAL mode requires support from the Windows NT kernel, compile\
- with SQLITE_OMIT_WAL."
-#endif
-
-#if !SQLITE_OS_WINNT && SQLITE_MAX_MMAP_SIZE>0
-# error "Memory mapped files require support from the Windows NT kernel,\
- compile with SQLITE_MAX_MMAP_SIZE=0."
-#endif
-
-/*
-** Are most of the Win32 ANSI APIs available (i.e. with certain exceptions
-** based on the sub-platform)?
-*/
-#if !SQLITE_OS_WINCE && !SQLITE_OS_WINRT && !defined(SQLITE_WIN32_NO_ANSI)
-# define SQLITE_WIN32_HAS_ANSI
-#endif
-
-/*
-** Are most of the Win32 Unicode APIs available (i.e. with certain exceptions
-** based on the sub-platform)?
-*/
-#if (SQLITE_OS_WINCE || SQLITE_OS_WINNT || SQLITE_OS_WINRT) && \
- !defined(SQLITE_WIN32_NO_WIDE)
-# define SQLITE_WIN32_HAS_WIDE
-#endif
-
-/*
-** Make sure at least one set of Win32 APIs is available.
-*/
-#if !defined(SQLITE_WIN32_HAS_ANSI) && !defined(SQLITE_WIN32_HAS_WIDE)
-# error "At least one of SQLITE_WIN32_HAS_ANSI and SQLITE_WIN32_HAS_WIDE\
- must be defined."
-#endif
-
-/*
-** Define the required Windows SDK version constants if they are not
-** already available.
-*/
-#ifndef NTDDI_WIN8
-# define NTDDI_WIN8 0x06020000
-#endif
-
-#ifndef NTDDI_WINBLUE
-# define NTDDI_WINBLUE 0x06030000
-#endif
-
-#ifndef NTDDI_WINTHRESHOLD
-# define NTDDI_WINTHRESHOLD 0x06040000
-#endif
-
-/*
-** Check to see if the GetVersionEx[AW] functions are deprecated on the
-** target system. GetVersionEx was first deprecated in Win8.1.
-*/
-#ifndef SQLITE_WIN32_GETVERSIONEX
-# if defined(NTDDI_VERSION) && NTDDI_VERSION >= NTDDI_WINBLUE
-# define SQLITE_WIN32_GETVERSIONEX 0 /* GetVersionEx() is deprecated */
-# else
-# define SQLITE_WIN32_GETVERSIONEX 1 /* GetVersionEx() is current */
-# endif
-#endif
-
-/*
-** Check to see if the CreateFileMappingA function is supported on the
-** target system. It is unavailable when using "mincore.lib" on Win10.
-** When compiling for Windows 10, always assume "mincore.lib" is in use.
-*/
-#ifndef SQLITE_WIN32_CREATEFILEMAPPINGA
-# if defined(NTDDI_VERSION) && NTDDI_VERSION >= NTDDI_WINTHRESHOLD
-# define SQLITE_WIN32_CREATEFILEMAPPINGA 0
-# else
-# define SQLITE_WIN32_CREATEFILEMAPPINGA 1
-# endif
-#endif
-
-/*
-** This constant should already be defined (in the "WinDef.h" SDK file).
-*/
-#ifndef MAX_PATH
-# define MAX_PATH (260)
-#endif
-
-/*
-** Maximum pathname length (in chars) for Win32. This should normally be
-** MAX_PATH.
-*/
-#ifndef SQLITE_WIN32_MAX_PATH_CHARS
-# define SQLITE_WIN32_MAX_PATH_CHARS (MAX_PATH)
-#endif
-
-/*
-** This constant should already be defined (in the "WinNT.h" SDK file).
-*/
-#ifndef UNICODE_STRING_MAX_CHARS
-# define UNICODE_STRING_MAX_CHARS (32767)
-#endif
-
-/*
-** Maximum pathname length (in chars) for WinNT. This should normally be
-** UNICODE_STRING_MAX_CHARS.
-*/
-#ifndef SQLITE_WINNT_MAX_PATH_CHARS
-# define SQLITE_WINNT_MAX_PATH_CHARS (UNICODE_STRING_MAX_CHARS)
-#endif
-
-/*
-** Maximum pathname length (in bytes) for Win32. The MAX_PATH macro is in
-** characters, so we allocate 4 bytes per character assuming worst-case of
-** 4-bytes-per-character for UTF8.
-*/
-#ifndef SQLITE_WIN32_MAX_PATH_BYTES
-# define SQLITE_WIN32_MAX_PATH_BYTES (SQLITE_WIN32_MAX_PATH_CHARS*4)
-#endif
-
-/*
-** Maximum pathname length (in bytes) for WinNT. This should normally be
-** UNICODE_STRING_MAX_CHARS * sizeof(WCHAR).
-*/
-#ifndef SQLITE_WINNT_MAX_PATH_BYTES
-# define SQLITE_WINNT_MAX_PATH_BYTES \
- (sizeof(WCHAR) * SQLITE_WINNT_MAX_PATH_CHARS)
-#endif
-
-/*
-** Maximum error message length (in chars) for WinRT.
-*/
-#ifndef SQLITE_WIN32_MAX_ERRMSG_CHARS
-# define SQLITE_WIN32_MAX_ERRMSG_CHARS (1024)
-#endif
-
-/*
-** Returns non-zero if the character should be treated as a directory
-** separator.
-*/
-#ifndef winIsDirSep
-# define winIsDirSep(a) (((a) == '/') || ((a) == '\\'))
-#endif
-
-/*
-** This macro is used when a local variable is set to a value that is
-** [sometimes] not used by the code (e.g. via conditional compilation).
-*/
-#ifndef UNUSED_VARIABLE_VALUE
-# define UNUSED_VARIABLE_VALUE(x) (void)(x)
-#endif
-
-/*
-** Returns the character that should be used as the directory separator.
-*/
-#ifndef winGetDirSep
-# define winGetDirSep() '\\'
-#endif
-
-/*
-** Do we need to manually define the Win32 file mapping APIs for use with WAL
-** mode or memory mapped files (e.g. these APIs are available in the Windows
-** CE SDK; however, they are not present in the header file)?
-*/
-#if SQLITE_WIN32_FILEMAPPING_API && \
- (!defined(SQLITE_OMIT_WAL) || SQLITE_MAX_MMAP_SIZE>0)
-/*
-** Two of the file mapping APIs are different under WinRT. Figure out which
-** set we need.
-*/
-#if SQLITE_OS_WINRT
-WINBASEAPI HANDLE WINAPI CreateFileMappingFromApp(HANDLE, \
- LPSECURITY_ATTRIBUTES, ULONG, ULONG64, LPCWSTR);
-
-WINBASEAPI LPVOID WINAPI MapViewOfFileFromApp(HANDLE, ULONG, ULONG64, SIZE_T);
-#else
-#if defined(SQLITE_WIN32_HAS_ANSI)
-WINBASEAPI HANDLE WINAPI CreateFileMappingA(HANDLE, LPSECURITY_ATTRIBUTES, \
- DWORD, DWORD, DWORD, LPCSTR);
-#endif /* defined(SQLITE_WIN32_HAS_ANSI) */
-
-#if defined(SQLITE_WIN32_HAS_WIDE)
-WINBASEAPI HANDLE WINAPI CreateFileMappingW(HANDLE, LPSECURITY_ATTRIBUTES, \
- DWORD, DWORD, DWORD, LPCWSTR);
-#endif /* defined(SQLITE_WIN32_HAS_WIDE) */
-
-WINBASEAPI LPVOID WINAPI MapViewOfFile(HANDLE, DWORD, DWORD, DWORD, SIZE_T);
-#endif /* SQLITE_OS_WINRT */
-
-/*
-** These file mapping APIs are common to both Win32 and WinRT.
-*/
-
-WINBASEAPI BOOL WINAPI FlushViewOfFile(LPCVOID, SIZE_T);
-WINBASEAPI BOOL WINAPI UnmapViewOfFile(LPCVOID);
-#endif /* SQLITE_WIN32_FILEMAPPING_API */
-
-/*
-** Some Microsoft compilers lack this definition.
-*/
-#ifndef INVALID_FILE_ATTRIBUTES
-# define INVALID_FILE_ATTRIBUTES ((DWORD)-1)
-#endif
-
-#ifndef FILE_FLAG_MASK
-# define FILE_FLAG_MASK (0xFF3C0000)
-#endif
-
-#ifndef FILE_ATTRIBUTE_MASK
-# define FILE_ATTRIBUTE_MASK (0x0003FFF7)
-#endif
-
-#ifndef SQLITE_OMIT_WAL
-/* Forward references to structures used for WAL */
-typedef struct winShm winShm; /* A connection to shared-memory */
-typedef struct winShmNode winShmNode; /* A region of shared-memory */
-#endif
-
-/*
-** WinCE lacks native support for file locking so we have to fake it
-** with some code of our own.
-*/
-#if SQLITE_OS_WINCE
-typedef struct winceLock {
- int nReaders; /* Number of reader locks obtained */
- BOOL bPending; /* Indicates a pending lock has been obtained */
- BOOL bReserved; /* Indicates a reserved lock has been obtained */
- BOOL bExclusive; /* Indicates an exclusive lock has been obtained */
-} winceLock;
-#endif
-
-/*
-** The winFile structure is a subclass of sqlite3_file* specific to the win32
-** portability layer.
-*/
-typedef struct winFile winFile;
-struct winFile {
- const sqlite3_io_methods *pMethod; /*** Must be first ***/
- sqlite3_vfs *pVfs; /* The VFS used to open this file */
- HANDLE h; /* Handle for accessing the file */
- u8 locktype; /* Type of lock currently held on this file */
- short sharedLockByte; /* Randomly chosen byte used as a shared lock */
- u8 ctrlFlags; /* Flags. See WINFILE_* below */
- DWORD lastErrno; /* The Windows errno from the last I/O error */
-#ifndef SQLITE_OMIT_WAL
- winShm *pShm; /* Instance of shared memory on this file */
-#endif
- const char *zPath; /* Full pathname of this file */
- int szChunk; /* Chunk size configured by FCNTL_CHUNK_SIZE */
-#if SQLITE_OS_WINCE
- LPWSTR zDeleteOnClose; /* Name of file to delete when closing */
- HANDLE hMutex; /* Mutex used to control access to shared lock */
- HANDLE hShared; /* Shared memory segment used for locking */
- winceLock local; /* Locks obtained by this instance of winFile */
- winceLock *shared; /* Global shared lock memory for the file */
-#endif
-#if SQLITE_MAX_MMAP_SIZE>0
- int nFetchOut; /* Number of outstanding xFetch references */
- HANDLE hMap; /* Handle for accessing memory mapping */
- void *pMapRegion; /* Area memory mapped */
- sqlite3_int64 mmapSize; /* Usable size of mapped region */
- sqlite3_int64 mmapSizeActual; /* Actual size of mapped region */
- sqlite3_int64 mmapSizeMax; /* Configured FCNTL_MMAP_SIZE value */
-#endif
-};
-
-/*
-** The winVfsAppData structure is used for the pAppData member for all of the
-** Win32 VFS variants.
-*/
-typedef struct winVfsAppData winVfsAppData;
-struct winVfsAppData {
- const sqlite3_io_methods *pMethod; /* The file I/O methods to use. */
- void *pAppData; /* The extra pAppData, if any. */
- BOOL bNoLock; /* Non-zero if locking is disabled. */
-};
-
-/*
-** Allowed values for winFile.ctrlFlags
-*/
-#define WINFILE_RDONLY 0x02 /* Connection is read only */
-#define WINFILE_PERSIST_WAL 0x04 /* Persistent WAL mode */
-#define WINFILE_PSOW 0x10 /* SQLITE_IOCAP_POWERSAFE_OVERWRITE */
-
-/*
- * The size of the buffer used by sqlite3_win32_write_debug().
- */
-#ifndef SQLITE_WIN32_DBG_BUF_SIZE
-# define SQLITE_WIN32_DBG_BUF_SIZE ((int)(4096-sizeof(DWORD)))
-#endif
-
-/*
- * If compiled with SQLITE_WIN32_MALLOC on Windows, we will use the
- * various Win32 API heap functions instead of our own.
- */
-#ifdef SQLITE_WIN32_MALLOC
-
-/*
- * If this is non-zero, an isolated heap will be created by the native Win32
- * allocator subsystem; otherwise, the default process heap will be used. This
- * setting has no effect when compiling for WinRT. By default, this is enabled
- * and an isolated heap will be created to store all allocated data.
- *
- ******************************************************************************
- * WARNING: It is important to note that when this setting is non-zero and the
- * winMemShutdown function is called (e.g. by the sqlite3_shutdown
- * function), all data that was allocated using the isolated heap will
- * be freed immediately and any attempt to access any of that freed
- * data will almost certainly result in an immediate access violation.
- ******************************************************************************
- */
-#ifndef SQLITE_WIN32_HEAP_CREATE
-# define SQLITE_WIN32_HEAP_CREATE (TRUE)
-#endif
-
-/*
- * This is the maximum possible initial size of the Win32-specific heap, in
- * bytes.
- */
-#ifndef SQLITE_WIN32_HEAP_MAX_INIT_SIZE
-# define SQLITE_WIN32_HEAP_MAX_INIT_SIZE (4294967295U)
-#endif
-
-/*
- * This is the extra space for the initial size of the Win32-specific heap,
- * in bytes. This value may be zero.
- */
-#ifndef SQLITE_WIN32_HEAP_INIT_EXTRA
-# define SQLITE_WIN32_HEAP_INIT_EXTRA (4194304)
-#endif
-
-/*
- * Calculate the maximum legal cache size, in pages, based on the maximum
- * possible initial heap size and the default page size, setting aside the
- * needed extra space.
- */
-#ifndef SQLITE_WIN32_MAX_CACHE_SIZE
-# define SQLITE_WIN32_MAX_CACHE_SIZE (((SQLITE_WIN32_HEAP_MAX_INIT_SIZE) - \
- (SQLITE_WIN32_HEAP_INIT_EXTRA)) / \
- (SQLITE_DEFAULT_PAGE_SIZE))
-#endif
-
-/*
- * This is cache size used in the calculation of the initial size of the
- * Win32-specific heap. It cannot be negative.
- */
-#ifndef SQLITE_WIN32_CACHE_SIZE
-# if SQLITE_DEFAULT_CACHE_SIZE>=0
-# define SQLITE_WIN32_CACHE_SIZE (SQLITE_DEFAULT_CACHE_SIZE)
-# else
-# define SQLITE_WIN32_CACHE_SIZE (-(SQLITE_DEFAULT_CACHE_SIZE))
-# endif
-#endif
-
-/*
- * Make sure that the calculated cache size, in pages, cannot cause the
- * initial size of the Win32-specific heap to exceed the maximum amount
- * of memory that can be specified in the call to HeapCreate.
- */
-#if SQLITE_WIN32_CACHE_SIZE>SQLITE_WIN32_MAX_CACHE_SIZE
-# undef SQLITE_WIN32_CACHE_SIZE
-# define SQLITE_WIN32_CACHE_SIZE (2000)
-#endif
-
-/*
- * The initial size of the Win32-specific heap. This value may be zero.
- */
-#ifndef SQLITE_WIN32_HEAP_INIT_SIZE
-# define SQLITE_WIN32_HEAP_INIT_SIZE ((SQLITE_WIN32_CACHE_SIZE) * \
- (SQLITE_DEFAULT_PAGE_SIZE) + \
- (SQLITE_WIN32_HEAP_INIT_EXTRA))
-#endif
-
-/*
- * The maximum size of the Win32-specific heap. This value may be zero.
- */
-#ifndef SQLITE_WIN32_HEAP_MAX_SIZE
-# define SQLITE_WIN32_HEAP_MAX_SIZE (0)
-#endif
-
-/*
- * The extra flags to use in calls to the Win32 heap APIs. This value may be
- * zero for the default behavior.
- */
-#ifndef SQLITE_WIN32_HEAP_FLAGS
-# define SQLITE_WIN32_HEAP_FLAGS (0)
-#endif
-
-
-/*
-** The winMemData structure stores information required by the Win32-specific
-** sqlite3_mem_methods implementation.
-*/
-typedef struct winMemData winMemData;
-struct winMemData {
-#ifndef NDEBUG
- u32 magic1; /* Magic number to detect structure corruption. */
-#endif
- HANDLE hHeap; /* The handle to our heap. */
- BOOL bOwned; /* Do we own the heap (i.e. destroy it on shutdown)? */
-#ifndef NDEBUG
- u32 magic2; /* Magic number to detect structure corruption. */
-#endif
-};
-
-#ifndef NDEBUG
-#define WINMEM_MAGIC1 0x42b2830b
-#define WINMEM_MAGIC2 0xbd4d7cf4
-#endif
-
-static struct winMemData win_mem_data = {
-#ifndef NDEBUG
- WINMEM_MAGIC1,
-#endif
- NULL, FALSE
-#ifndef NDEBUG
- ,WINMEM_MAGIC2
-#endif
-};
-
-#ifndef NDEBUG
-#define winMemAssertMagic1() assert( win_mem_data.magic1==WINMEM_MAGIC1 )
-#define winMemAssertMagic2() assert( win_mem_data.magic2==WINMEM_MAGIC2 )
-#define winMemAssertMagic() winMemAssertMagic1(); winMemAssertMagic2();
-#else
-#define winMemAssertMagic()
-#endif
-
-#define winMemGetDataPtr() &win_mem_data
-#define winMemGetHeap() win_mem_data.hHeap
-#define winMemGetOwned() win_mem_data.bOwned
-
-static void *winMemMalloc(int nBytes);
-static void winMemFree(void *pPrior);
-static void *winMemRealloc(void *pPrior, int nBytes);
-static int winMemSize(void *p);
-static int winMemRoundup(int n);
-static int winMemInit(void *pAppData);
-static void winMemShutdown(void *pAppData);
-
-SQLITE_PRIVATE const sqlite3_mem_methods *sqlite3MemGetWin32(void);
-#endif /* SQLITE_WIN32_MALLOC */
-
-/*
-** The following variable is (normally) set once and never changes
-** thereafter. It records whether the operating system is Win9x
-** or WinNT.
-**
-** 0: Operating system unknown.
-** 1: Operating system is Win9x.
-** 2: Operating system is WinNT.
-**
-** In order to facilitate testing on a WinNT system, the test fixture
-** can manually set this value to 1 to emulate Win98 behavior.
-*/
-#ifdef SQLITE_TEST
-SQLITE_API LONG SQLITE_WIN32_VOLATILE sqlite3_os_type = 0;
-#else
-static LONG SQLITE_WIN32_VOLATILE sqlite3_os_type = 0;
-#endif
-
-#ifndef SYSCALL
-# define SYSCALL sqlite3_syscall_ptr
-#endif
-
-/*
-** This function is not available on Windows CE or WinRT.
- */
-
-#if SQLITE_OS_WINCE || SQLITE_OS_WINRT
-# define osAreFileApisANSI() 1
-#endif
-
-/*
-** Many system calls are accessed through pointer-to-functions so that
-** they may be overridden at runtime to facilitate fault injection during
-** testing and sandboxing. The following array holds the names and pointers
-** to all overrideable system calls.
-*/
-static struct win_syscall {
- const char *zName; /* Name of the system call */
- sqlite3_syscall_ptr pCurrent; /* Current value of the system call */
- sqlite3_syscall_ptr pDefault; /* Default value */
-} aSyscall[] = {
-#if !SQLITE_OS_WINCE && !SQLITE_OS_WINRT
- { "AreFileApisANSI", (SYSCALL)AreFileApisANSI, 0 },
-#else
- { "AreFileApisANSI", (SYSCALL)0, 0 },
-#endif
-
-#ifndef osAreFileApisANSI
-#define osAreFileApisANSI ((BOOL(WINAPI*)(VOID))aSyscall[0].pCurrent)
-#endif
-
-#if SQLITE_OS_WINCE && defined(SQLITE_WIN32_HAS_WIDE)
- { "CharLowerW", (SYSCALL)CharLowerW, 0 },
-#else
- { "CharLowerW", (SYSCALL)0, 0 },
-#endif
-
-#define osCharLowerW ((LPWSTR(WINAPI*)(LPWSTR))aSyscall[1].pCurrent)
-
-#if SQLITE_OS_WINCE && defined(SQLITE_WIN32_HAS_WIDE)
- { "CharUpperW", (SYSCALL)CharUpperW, 0 },
-#else
- { "CharUpperW", (SYSCALL)0, 0 },
-#endif
-
-#define osCharUpperW ((LPWSTR(WINAPI*)(LPWSTR))aSyscall[2].pCurrent)
-
- { "CloseHandle", (SYSCALL)CloseHandle, 0 },
-
-#define osCloseHandle ((BOOL(WINAPI*)(HANDLE))aSyscall[3].pCurrent)
-
-#if defined(SQLITE_WIN32_HAS_ANSI)
- { "CreateFileA", (SYSCALL)CreateFileA, 0 },
-#else
- { "CreateFileA", (SYSCALL)0, 0 },
-#endif
-
-#define osCreateFileA ((HANDLE(WINAPI*)(LPCSTR,DWORD,DWORD, \
- LPSECURITY_ATTRIBUTES,DWORD,DWORD,HANDLE))aSyscall[4].pCurrent)
-
-#if !SQLITE_OS_WINRT && defined(SQLITE_WIN32_HAS_WIDE)
- { "CreateFileW", (SYSCALL)CreateFileW, 0 },
-#else
- { "CreateFileW", (SYSCALL)0, 0 },
-#endif
-
-#define osCreateFileW ((HANDLE(WINAPI*)(LPCWSTR,DWORD,DWORD, \
- LPSECURITY_ATTRIBUTES,DWORD,DWORD,HANDLE))aSyscall[5].pCurrent)
-
-#if !SQLITE_OS_WINRT && defined(SQLITE_WIN32_HAS_ANSI) && \
- (!defined(SQLITE_OMIT_WAL) || SQLITE_MAX_MMAP_SIZE>0) && \
- SQLITE_WIN32_CREATEFILEMAPPINGA
- { "CreateFileMappingA", (SYSCALL)CreateFileMappingA, 0 },
-#else
- { "CreateFileMappingA", (SYSCALL)0, 0 },
-#endif
-
-#define osCreateFileMappingA ((HANDLE(WINAPI*)(HANDLE,LPSECURITY_ATTRIBUTES, \
- DWORD,DWORD,DWORD,LPCSTR))aSyscall[6].pCurrent)
-
-#if SQLITE_OS_WINCE || (!SQLITE_OS_WINRT && defined(SQLITE_WIN32_HAS_WIDE) && \
- (!defined(SQLITE_OMIT_WAL) || SQLITE_MAX_MMAP_SIZE>0))
- { "CreateFileMappingW", (SYSCALL)CreateFileMappingW, 0 },
-#else
- { "CreateFileMappingW", (SYSCALL)0, 0 },
-#endif
-
-#define osCreateFileMappingW ((HANDLE(WINAPI*)(HANDLE,LPSECURITY_ATTRIBUTES, \
- DWORD,DWORD,DWORD,LPCWSTR))aSyscall[7].pCurrent)
-
-#if !SQLITE_OS_WINRT && defined(SQLITE_WIN32_HAS_WIDE)
- { "CreateMutexW", (SYSCALL)CreateMutexW, 0 },
-#else
- { "CreateMutexW", (SYSCALL)0, 0 },
-#endif
-
-#define osCreateMutexW ((HANDLE(WINAPI*)(LPSECURITY_ATTRIBUTES,BOOL, \
- LPCWSTR))aSyscall[8].pCurrent)
-
-#if defined(SQLITE_WIN32_HAS_ANSI)
- { "DeleteFileA", (SYSCALL)DeleteFileA, 0 },
-#else
- { "DeleteFileA", (SYSCALL)0, 0 },
-#endif
-
-#define osDeleteFileA ((BOOL(WINAPI*)(LPCSTR))aSyscall[9].pCurrent)
-
-#if defined(SQLITE_WIN32_HAS_WIDE)
- { "DeleteFileW", (SYSCALL)DeleteFileW, 0 },
-#else
- { "DeleteFileW", (SYSCALL)0, 0 },
-#endif
-
-#define osDeleteFileW ((BOOL(WINAPI*)(LPCWSTR))aSyscall[10].pCurrent)
-
-#if SQLITE_OS_WINCE
- { "FileTimeToLocalFileTime", (SYSCALL)FileTimeToLocalFileTime, 0 },
-#else
- { "FileTimeToLocalFileTime", (SYSCALL)0, 0 },
-#endif
-
-#define osFileTimeToLocalFileTime ((BOOL(WINAPI*)(CONST FILETIME*, \
- LPFILETIME))aSyscall[11].pCurrent)
-
-#if SQLITE_OS_WINCE
- { "FileTimeToSystemTime", (SYSCALL)FileTimeToSystemTime, 0 },
-#else
- { "FileTimeToSystemTime", (SYSCALL)0, 0 },
-#endif
-
-#define osFileTimeToSystemTime ((BOOL(WINAPI*)(CONST FILETIME*, \
- LPSYSTEMTIME))aSyscall[12].pCurrent)
-
- { "FlushFileBuffers", (SYSCALL)FlushFileBuffers, 0 },
-
-#define osFlushFileBuffers ((BOOL(WINAPI*)(HANDLE))aSyscall[13].pCurrent)
-
-#if defined(SQLITE_WIN32_HAS_ANSI)
- { "FormatMessageA", (SYSCALL)FormatMessageA, 0 },
-#else
- { "FormatMessageA", (SYSCALL)0, 0 },
-#endif
-
-#define osFormatMessageA ((DWORD(WINAPI*)(DWORD,LPCVOID,DWORD,DWORD,LPSTR, \
- DWORD,va_list*))aSyscall[14].pCurrent)
-
-#if defined(SQLITE_WIN32_HAS_WIDE)
- { "FormatMessageW", (SYSCALL)FormatMessageW, 0 },
-#else
- { "FormatMessageW", (SYSCALL)0, 0 },
-#endif
-
-#define osFormatMessageW ((DWORD(WINAPI*)(DWORD,LPCVOID,DWORD,DWORD,LPWSTR, \
- DWORD,va_list*))aSyscall[15].pCurrent)
-
-#if !defined(SQLITE_OMIT_LOAD_EXTENSION)
- { "FreeLibrary", (SYSCALL)FreeLibrary, 0 },
-#else
- { "FreeLibrary", (SYSCALL)0, 0 },
-#endif
-
-#define osFreeLibrary ((BOOL(WINAPI*)(HMODULE))aSyscall[16].pCurrent)
-
- { "GetCurrentProcessId", (SYSCALL)GetCurrentProcessId, 0 },
-
-#define osGetCurrentProcessId ((DWORD(WINAPI*)(VOID))aSyscall[17].pCurrent)
-
-#if !SQLITE_OS_WINCE && defined(SQLITE_WIN32_HAS_ANSI)
- { "GetDiskFreeSpaceA", (SYSCALL)GetDiskFreeSpaceA, 0 },
-#else
- { "GetDiskFreeSpaceA", (SYSCALL)0, 0 },
-#endif
-
-#define osGetDiskFreeSpaceA ((BOOL(WINAPI*)(LPCSTR,LPDWORD,LPDWORD,LPDWORD, \
- LPDWORD))aSyscall[18].pCurrent)
-
-#if !SQLITE_OS_WINCE && !SQLITE_OS_WINRT && defined(SQLITE_WIN32_HAS_WIDE)
- { "GetDiskFreeSpaceW", (SYSCALL)GetDiskFreeSpaceW, 0 },
-#else
- { "GetDiskFreeSpaceW", (SYSCALL)0, 0 },
-#endif
-
-#define osGetDiskFreeSpaceW ((BOOL(WINAPI*)(LPCWSTR,LPDWORD,LPDWORD,LPDWORD, \
- LPDWORD))aSyscall[19].pCurrent)
-
-#if defined(SQLITE_WIN32_HAS_ANSI)
- { "GetFileAttributesA", (SYSCALL)GetFileAttributesA, 0 },
-#else
- { "GetFileAttributesA", (SYSCALL)0, 0 },
-#endif
-
-#define osGetFileAttributesA ((DWORD(WINAPI*)(LPCSTR))aSyscall[20].pCurrent)
-
-#if !SQLITE_OS_WINRT && defined(SQLITE_WIN32_HAS_WIDE)
- { "GetFileAttributesW", (SYSCALL)GetFileAttributesW, 0 },
-#else
- { "GetFileAttributesW", (SYSCALL)0, 0 },
-#endif
-
-#define osGetFileAttributesW ((DWORD(WINAPI*)(LPCWSTR))aSyscall[21].pCurrent)
-
-#if defined(SQLITE_WIN32_HAS_WIDE)
- { "GetFileAttributesExW", (SYSCALL)GetFileAttributesExW, 0 },
-#else
- { "GetFileAttributesExW", (SYSCALL)0, 0 },
-#endif
-
-#define osGetFileAttributesExW ((BOOL(WINAPI*)(LPCWSTR,GET_FILEEX_INFO_LEVELS, \
- LPVOID))aSyscall[22].pCurrent)
-
-#if !SQLITE_OS_WINRT
- { "GetFileSize", (SYSCALL)GetFileSize, 0 },
-#else
- { "GetFileSize", (SYSCALL)0, 0 },
-#endif
-
-#define osGetFileSize ((DWORD(WINAPI*)(HANDLE,LPDWORD))aSyscall[23].pCurrent)
-
-#if !SQLITE_OS_WINCE && defined(SQLITE_WIN32_HAS_ANSI)
- { "GetFullPathNameA", (SYSCALL)GetFullPathNameA, 0 },
-#else
- { "GetFullPathNameA", (SYSCALL)0, 0 },
-#endif
-
-#define osGetFullPathNameA ((DWORD(WINAPI*)(LPCSTR,DWORD,LPSTR, \
- LPSTR*))aSyscall[24].pCurrent)
-
-#if !SQLITE_OS_WINCE && !SQLITE_OS_WINRT && defined(SQLITE_WIN32_HAS_WIDE)
- { "GetFullPathNameW", (SYSCALL)GetFullPathNameW, 0 },
-#else
- { "GetFullPathNameW", (SYSCALL)0, 0 },
-#endif
-
-#define osGetFullPathNameW ((DWORD(WINAPI*)(LPCWSTR,DWORD,LPWSTR, \
- LPWSTR*))aSyscall[25].pCurrent)
-
- { "GetLastError", (SYSCALL)GetLastError, 0 },
-
-#define osGetLastError ((DWORD(WINAPI*)(VOID))aSyscall[26].pCurrent)
-
-#if !defined(SQLITE_OMIT_LOAD_EXTENSION)
-#if SQLITE_OS_WINCE
- /* The GetProcAddressA() routine is only available on Windows CE. */
- { "GetProcAddressA", (SYSCALL)GetProcAddressA, 0 },
-#else
- /* All other Windows platforms expect GetProcAddress() to take
- ** an ANSI string regardless of the _UNICODE setting */
- { "GetProcAddressA", (SYSCALL)GetProcAddress, 0 },
-#endif
-#else
- { "GetProcAddressA", (SYSCALL)0, 0 },
-#endif
-
-#define osGetProcAddressA ((FARPROC(WINAPI*)(HMODULE, \
- LPCSTR))aSyscall[27].pCurrent)
-
-#if !SQLITE_OS_WINRT
- { "GetSystemInfo", (SYSCALL)GetSystemInfo, 0 },
-#else
- { "GetSystemInfo", (SYSCALL)0, 0 },
-#endif
-
-#define osGetSystemInfo ((VOID(WINAPI*)(LPSYSTEM_INFO))aSyscall[28].pCurrent)
-
- { "GetSystemTime", (SYSCALL)GetSystemTime, 0 },
-
-#define osGetSystemTime ((VOID(WINAPI*)(LPSYSTEMTIME))aSyscall[29].pCurrent)
-
-#if !SQLITE_OS_WINCE
- { "GetSystemTimeAsFileTime", (SYSCALL)GetSystemTimeAsFileTime, 0 },
-#else
- { "GetSystemTimeAsFileTime", (SYSCALL)0, 0 },
-#endif
-
-#define osGetSystemTimeAsFileTime ((VOID(WINAPI*)( \
- LPFILETIME))aSyscall[30].pCurrent)
-
-#if defined(SQLITE_WIN32_HAS_ANSI)
- { "GetTempPathA", (SYSCALL)GetTempPathA, 0 },
-#else
- { "GetTempPathA", (SYSCALL)0, 0 },
-#endif
-
-#define osGetTempPathA ((DWORD(WINAPI*)(DWORD,LPSTR))aSyscall[31].pCurrent)
-
-#if !SQLITE_OS_WINRT && defined(SQLITE_WIN32_HAS_WIDE)
- { "GetTempPathW", (SYSCALL)GetTempPathW, 0 },
-#else
- { "GetTempPathW", (SYSCALL)0, 0 },
-#endif
-
-#define osGetTempPathW ((DWORD(WINAPI*)(DWORD,LPWSTR))aSyscall[32].pCurrent)
-
-#if !SQLITE_OS_WINRT
- { "GetTickCount", (SYSCALL)GetTickCount, 0 },
-#else
- { "GetTickCount", (SYSCALL)0, 0 },
-#endif
-
-#define osGetTickCount ((DWORD(WINAPI*)(VOID))aSyscall[33].pCurrent)
-
-#if defined(SQLITE_WIN32_HAS_ANSI) && SQLITE_WIN32_GETVERSIONEX
- { "GetVersionExA", (SYSCALL)GetVersionExA, 0 },
-#else
- { "GetVersionExA", (SYSCALL)0, 0 },
-#endif
-
-#define osGetVersionExA ((BOOL(WINAPI*)( \
- LPOSVERSIONINFOA))aSyscall[34].pCurrent)
-
-#if !SQLITE_OS_WINRT && defined(SQLITE_WIN32_HAS_WIDE) && \
- SQLITE_WIN32_GETVERSIONEX
- { "GetVersionExW", (SYSCALL)GetVersionExW, 0 },
-#else
- { "GetVersionExW", (SYSCALL)0, 0 },
-#endif
-
-#define osGetVersionExW ((BOOL(WINAPI*)( \
- LPOSVERSIONINFOW))aSyscall[35].pCurrent)
-
- { "HeapAlloc", (SYSCALL)HeapAlloc, 0 },
-
-#define osHeapAlloc ((LPVOID(WINAPI*)(HANDLE,DWORD, \
- SIZE_T))aSyscall[36].pCurrent)
-
-#if !SQLITE_OS_WINRT
- { "HeapCreate", (SYSCALL)HeapCreate, 0 },
-#else
- { "HeapCreate", (SYSCALL)0, 0 },
-#endif
-
-#define osHeapCreate ((HANDLE(WINAPI*)(DWORD,SIZE_T, \
- SIZE_T))aSyscall[37].pCurrent)
-
-#if !SQLITE_OS_WINRT
- { "HeapDestroy", (SYSCALL)HeapDestroy, 0 },
-#else
- { "HeapDestroy", (SYSCALL)0, 0 },
-#endif
-
-#define osHeapDestroy ((BOOL(WINAPI*)(HANDLE))aSyscall[38].pCurrent)
-
- { "HeapFree", (SYSCALL)HeapFree, 0 },
-
-#define osHeapFree ((BOOL(WINAPI*)(HANDLE,DWORD,LPVOID))aSyscall[39].pCurrent)
-
- { "HeapReAlloc", (SYSCALL)HeapReAlloc, 0 },
-
-#define osHeapReAlloc ((LPVOID(WINAPI*)(HANDLE,DWORD,LPVOID, \
- SIZE_T))aSyscall[40].pCurrent)
-
- { "HeapSize", (SYSCALL)HeapSize, 0 },
-
-#define osHeapSize ((SIZE_T(WINAPI*)(HANDLE,DWORD, \
- LPCVOID))aSyscall[41].pCurrent)
-
-#if !SQLITE_OS_WINRT
- { "HeapValidate", (SYSCALL)HeapValidate, 0 },
-#else
- { "HeapValidate", (SYSCALL)0, 0 },
-#endif
-
-#define osHeapValidate ((BOOL(WINAPI*)(HANDLE,DWORD, \
- LPCVOID))aSyscall[42].pCurrent)
-
-#if !SQLITE_OS_WINCE && !SQLITE_OS_WINRT
- { "HeapCompact", (SYSCALL)HeapCompact, 0 },
-#else
- { "HeapCompact", (SYSCALL)0, 0 },
-#endif
-
-#define osHeapCompact ((UINT(WINAPI*)(HANDLE,DWORD))aSyscall[43].pCurrent)
-
-#if defined(SQLITE_WIN32_HAS_ANSI) && !defined(SQLITE_OMIT_LOAD_EXTENSION)
- { "LoadLibraryA", (SYSCALL)LoadLibraryA, 0 },
-#else
- { "LoadLibraryA", (SYSCALL)0, 0 },
-#endif
-
-#define osLoadLibraryA ((HMODULE(WINAPI*)(LPCSTR))aSyscall[44].pCurrent)
-
-#if !SQLITE_OS_WINRT && defined(SQLITE_WIN32_HAS_WIDE) && \
- !defined(SQLITE_OMIT_LOAD_EXTENSION)
- { "LoadLibraryW", (SYSCALL)LoadLibraryW, 0 },
-#else
- { "LoadLibraryW", (SYSCALL)0, 0 },
-#endif
-
-#define osLoadLibraryW ((HMODULE(WINAPI*)(LPCWSTR))aSyscall[45].pCurrent)
-
-#if !SQLITE_OS_WINRT
- { "LocalFree", (SYSCALL)LocalFree, 0 },
-#else
- { "LocalFree", (SYSCALL)0, 0 },
-#endif
-
-#define osLocalFree ((HLOCAL(WINAPI*)(HLOCAL))aSyscall[46].pCurrent)
-
-#if !SQLITE_OS_WINCE && !SQLITE_OS_WINRT
- { "LockFile", (SYSCALL)LockFile, 0 },
-#else
- { "LockFile", (SYSCALL)0, 0 },
-#endif
-
-#ifndef osLockFile
-#define osLockFile ((BOOL(WINAPI*)(HANDLE,DWORD,DWORD,DWORD, \
- DWORD))aSyscall[47].pCurrent)
-#endif
-
-#if !SQLITE_OS_WINCE
- { "LockFileEx", (SYSCALL)LockFileEx, 0 },
-#else
- { "LockFileEx", (SYSCALL)0, 0 },
-#endif
-
-#ifndef osLockFileEx
-#define osLockFileEx ((BOOL(WINAPI*)(HANDLE,DWORD,DWORD,DWORD,DWORD, \
- LPOVERLAPPED))aSyscall[48].pCurrent)
-#endif
-
-#if SQLITE_OS_WINCE || (!SQLITE_OS_WINRT && \
- (!defined(SQLITE_OMIT_WAL) || SQLITE_MAX_MMAP_SIZE>0))
- { "MapViewOfFile", (SYSCALL)MapViewOfFile, 0 },
-#else
- { "MapViewOfFile", (SYSCALL)0, 0 },
-#endif
-
-#define osMapViewOfFile ((LPVOID(WINAPI*)(HANDLE,DWORD,DWORD,DWORD, \
- SIZE_T))aSyscall[49].pCurrent)
-
- { "MultiByteToWideChar", (SYSCALL)MultiByteToWideChar, 0 },
-
-#define osMultiByteToWideChar ((int(WINAPI*)(UINT,DWORD,LPCSTR,int,LPWSTR, \
- int))aSyscall[50].pCurrent)
-
- { "QueryPerformanceCounter", (SYSCALL)QueryPerformanceCounter, 0 },
-
-#define osQueryPerformanceCounter ((BOOL(WINAPI*)( \
- LARGE_INTEGER*))aSyscall[51].pCurrent)
-
- { "ReadFile", (SYSCALL)ReadFile, 0 },
-
-#define osReadFile ((BOOL(WINAPI*)(HANDLE,LPVOID,DWORD,LPDWORD, \
- LPOVERLAPPED))aSyscall[52].pCurrent)
-
- { "SetEndOfFile", (SYSCALL)SetEndOfFile, 0 },
-
-#define osSetEndOfFile ((BOOL(WINAPI*)(HANDLE))aSyscall[53].pCurrent)
-
-#if !SQLITE_OS_WINRT
- { "SetFilePointer", (SYSCALL)SetFilePointer, 0 },
-#else
- { "SetFilePointer", (SYSCALL)0, 0 },
-#endif
-
-#define osSetFilePointer ((DWORD(WINAPI*)(HANDLE,LONG,PLONG, \
- DWORD))aSyscall[54].pCurrent)
-
-#if !SQLITE_OS_WINRT
- { "Sleep", (SYSCALL)Sleep, 0 },
-#else
- { "Sleep", (SYSCALL)0, 0 },
-#endif
-
-#define osSleep ((VOID(WINAPI*)(DWORD))aSyscall[55].pCurrent)
-
- { "SystemTimeToFileTime", (SYSCALL)SystemTimeToFileTime, 0 },
-
-#define osSystemTimeToFileTime ((BOOL(WINAPI*)(CONST SYSTEMTIME*, \
- LPFILETIME))aSyscall[56].pCurrent)
-
-#if !SQLITE_OS_WINCE && !SQLITE_OS_WINRT
- { "UnlockFile", (SYSCALL)UnlockFile, 0 },
-#else
- { "UnlockFile", (SYSCALL)0, 0 },
-#endif
-
-#ifndef osUnlockFile
-#define osUnlockFile ((BOOL(WINAPI*)(HANDLE,DWORD,DWORD,DWORD, \
- DWORD))aSyscall[57].pCurrent)
-#endif
-
-#if !SQLITE_OS_WINCE
- { "UnlockFileEx", (SYSCALL)UnlockFileEx, 0 },
-#else
- { "UnlockFileEx", (SYSCALL)0, 0 },
-#endif
-
-#define osUnlockFileEx ((BOOL(WINAPI*)(HANDLE,DWORD,DWORD,DWORD, \
- LPOVERLAPPED))aSyscall[58].pCurrent)
-
-#if SQLITE_OS_WINCE || !defined(SQLITE_OMIT_WAL) || SQLITE_MAX_MMAP_SIZE>0
- { "UnmapViewOfFile", (SYSCALL)UnmapViewOfFile, 0 },
-#else
- { "UnmapViewOfFile", (SYSCALL)0, 0 },
-#endif
-
-#define osUnmapViewOfFile ((BOOL(WINAPI*)(LPCVOID))aSyscall[59].pCurrent)
-
- { "WideCharToMultiByte", (SYSCALL)WideCharToMultiByte, 0 },
-
-#define osWideCharToMultiByte ((int(WINAPI*)(UINT,DWORD,LPCWSTR,int,LPSTR,int, \
- LPCSTR,LPBOOL))aSyscall[60].pCurrent)
-
- { "WriteFile", (SYSCALL)WriteFile, 0 },
-
-#define osWriteFile ((BOOL(WINAPI*)(HANDLE,LPCVOID,DWORD,LPDWORD, \
- LPOVERLAPPED))aSyscall[61].pCurrent)
-
-#if SQLITE_OS_WINRT
- { "CreateEventExW", (SYSCALL)CreateEventExW, 0 },
-#else
- { "CreateEventExW", (SYSCALL)0, 0 },
-#endif
-
-#define osCreateEventExW ((HANDLE(WINAPI*)(LPSECURITY_ATTRIBUTES,LPCWSTR, \
- DWORD,DWORD))aSyscall[62].pCurrent)
-
-#if !SQLITE_OS_WINRT
- { "WaitForSingleObject", (SYSCALL)WaitForSingleObject, 0 },
-#else
- { "WaitForSingleObject", (SYSCALL)0, 0 },
-#endif
-
-#define osWaitForSingleObject ((DWORD(WINAPI*)(HANDLE, \
- DWORD))aSyscall[63].pCurrent)
-
-#if !SQLITE_OS_WINCE
- { "WaitForSingleObjectEx", (SYSCALL)WaitForSingleObjectEx, 0 },
-#else
- { "WaitForSingleObjectEx", (SYSCALL)0, 0 },
-#endif
-
-#define osWaitForSingleObjectEx ((DWORD(WINAPI*)(HANDLE,DWORD, \
- BOOL))aSyscall[64].pCurrent)
-
-#if SQLITE_OS_WINRT
- { "SetFilePointerEx", (SYSCALL)SetFilePointerEx, 0 },
-#else
- { "SetFilePointerEx", (SYSCALL)0, 0 },
-#endif
-
-#define osSetFilePointerEx ((BOOL(WINAPI*)(HANDLE,LARGE_INTEGER, \
- PLARGE_INTEGER,DWORD))aSyscall[65].pCurrent)
-
-#if SQLITE_OS_WINRT
- { "GetFileInformationByHandleEx", (SYSCALL)GetFileInformationByHandleEx, 0 },
-#else
- { "GetFileInformationByHandleEx", (SYSCALL)0, 0 },
-#endif
-
-#define osGetFileInformationByHandleEx ((BOOL(WINAPI*)(HANDLE, \
- FILE_INFO_BY_HANDLE_CLASS,LPVOID,DWORD))aSyscall[66].pCurrent)
-
-#if SQLITE_OS_WINRT && (!defined(SQLITE_OMIT_WAL) || SQLITE_MAX_MMAP_SIZE>0)
- { "MapViewOfFileFromApp", (SYSCALL)MapViewOfFileFromApp, 0 },
-#else
- { "MapViewOfFileFromApp", (SYSCALL)0, 0 },
-#endif
-
-#define osMapViewOfFileFromApp ((LPVOID(WINAPI*)(HANDLE,ULONG,ULONG64, \
- SIZE_T))aSyscall[67].pCurrent)
-
-#if SQLITE_OS_WINRT
- { "CreateFile2", (SYSCALL)CreateFile2, 0 },
-#else
- { "CreateFile2", (SYSCALL)0, 0 },
-#endif
-
-#define osCreateFile2 ((HANDLE(WINAPI*)(LPCWSTR,DWORD,DWORD,DWORD, \
- LPCREATEFILE2_EXTENDED_PARAMETERS))aSyscall[68].pCurrent)
-
-#if SQLITE_OS_WINRT && !defined(SQLITE_OMIT_LOAD_EXTENSION)
- { "LoadPackagedLibrary", (SYSCALL)LoadPackagedLibrary, 0 },
-#else
- { "LoadPackagedLibrary", (SYSCALL)0, 0 },
-#endif
-
-#define osLoadPackagedLibrary ((HMODULE(WINAPI*)(LPCWSTR, \
- DWORD))aSyscall[69].pCurrent)
-
-#if SQLITE_OS_WINRT
- { "GetTickCount64", (SYSCALL)GetTickCount64, 0 },
-#else
- { "GetTickCount64", (SYSCALL)0, 0 },
-#endif
-
-#define osGetTickCount64 ((ULONGLONG(WINAPI*)(VOID))aSyscall[70].pCurrent)
-
-#if SQLITE_OS_WINRT
- { "GetNativeSystemInfo", (SYSCALL)GetNativeSystemInfo, 0 },
-#else
- { "GetNativeSystemInfo", (SYSCALL)0, 0 },
-#endif
-
-#define osGetNativeSystemInfo ((VOID(WINAPI*)( \
- LPSYSTEM_INFO))aSyscall[71].pCurrent)
-
-#if defined(SQLITE_WIN32_HAS_ANSI)
- { "OutputDebugStringA", (SYSCALL)OutputDebugStringA, 0 },
-#else
- { "OutputDebugStringA", (SYSCALL)0, 0 },
-#endif
-
-#define osOutputDebugStringA ((VOID(WINAPI*)(LPCSTR))aSyscall[72].pCurrent)
-
-#if defined(SQLITE_WIN32_HAS_WIDE)
- { "OutputDebugStringW", (SYSCALL)OutputDebugStringW, 0 },
-#else
- { "OutputDebugStringW", (SYSCALL)0, 0 },
-#endif
-
-#define osOutputDebugStringW ((VOID(WINAPI*)(LPCWSTR))aSyscall[73].pCurrent)
-
- { "GetProcessHeap", (SYSCALL)GetProcessHeap, 0 },
-
-#define osGetProcessHeap ((HANDLE(WINAPI*)(VOID))aSyscall[74].pCurrent)
-
-#if SQLITE_OS_WINRT && (!defined(SQLITE_OMIT_WAL) || SQLITE_MAX_MMAP_SIZE>0)
- { "CreateFileMappingFromApp", (SYSCALL)CreateFileMappingFromApp, 0 },
-#else
- { "CreateFileMappingFromApp", (SYSCALL)0, 0 },
-#endif
-
-#define osCreateFileMappingFromApp ((HANDLE(WINAPI*)(HANDLE, \
- LPSECURITY_ATTRIBUTES,ULONG,ULONG64,LPCWSTR))aSyscall[75].pCurrent)
-
-/*
-** NOTE: On some sub-platforms, the InterlockedCompareExchange "function"
-** is really just a macro that uses a compiler intrinsic (e.g. x64).
-** So do not try to make this is into a redefinable interface.
-*/
-#if defined(InterlockedCompareExchange)
- { "InterlockedCompareExchange", (SYSCALL)0, 0 },
-
-#define osInterlockedCompareExchange InterlockedCompareExchange
-#else
- { "InterlockedCompareExchange", (SYSCALL)InterlockedCompareExchange, 0 },
-
-#define osInterlockedCompareExchange ((LONG(WINAPI*)(LONG \
- SQLITE_WIN32_VOLATILE*, LONG,LONG))aSyscall[76].pCurrent)
-#endif /* defined(InterlockedCompareExchange) */
-
-#if !SQLITE_OS_WINCE && !SQLITE_OS_WINRT && SQLITE_WIN32_USE_UUID
- { "UuidCreate", (SYSCALL)UuidCreate, 0 },
-#else
- { "UuidCreate", (SYSCALL)0, 0 },
-#endif
-
-#define osUuidCreate ((RPC_STATUS(RPC_ENTRY*)(UUID*))aSyscall[77].pCurrent)
-
-#if !SQLITE_OS_WINCE && !SQLITE_OS_WINRT && SQLITE_WIN32_USE_UUID
- { "UuidCreateSequential", (SYSCALL)UuidCreateSequential, 0 },
-#else
- { "UuidCreateSequential", (SYSCALL)0, 0 },
-#endif
-
-#define osUuidCreateSequential \
- ((RPC_STATUS(RPC_ENTRY*)(UUID*))aSyscall[78].pCurrent)
-
-#if !defined(SQLITE_NO_SYNC) && SQLITE_MAX_MMAP_SIZE>0
- { "FlushViewOfFile", (SYSCALL)FlushViewOfFile, 0 },
-#else
- { "FlushViewOfFile", (SYSCALL)0, 0 },
-#endif
-
-#define osFlushViewOfFile \
- ((BOOL(WINAPI*)(LPCVOID,SIZE_T))aSyscall[79].pCurrent)
-
-}; /* End of the overrideable system calls */
-
-/*
-** This is the xSetSystemCall() method of sqlite3_vfs for all of the
-** "win32" VFSes. Return SQLITE_OK opon successfully updating the
-** system call pointer, or SQLITE_NOTFOUND if there is no configurable
-** system call named zName.
-*/
-static int winSetSystemCall(
- sqlite3_vfs *pNotUsed, /* The VFS pointer. Not used */
- const char *zName, /* Name of system call to override */
- sqlite3_syscall_ptr pNewFunc /* Pointer to new system call value */
-){
- unsigned int i;
- int rc = SQLITE_NOTFOUND;
-
- UNUSED_PARAMETER(pNotUsed);
- if( zName==0 ){
- /* If no zName is given, restore all system calls to their default
- ** settings and return NULL
- */
- rc = SQLITE_OK;
- for(i=0; i0 ){
- memset(zDbgBuf, 0, SQLITE_WIN32_DBG_BUF_SIZE);
- memcpy(zDbgBuf, zBuf, nMin);
- osOutputDebugStringA(zDbgBuf);
- }else{
- osOutputDebugStringA(zBuf);
- }
-#elif defined(SQLITE_WIN32_HAS_WIDE)
- memset(zDbgBuf, 0, SQLITE_WIN32_DBG_BUF_SIZE);
- if ( osMultiByteToWideChar(
- osAreFileApisANSI() ? CP_ACP : CP_OEMCP, 0, zBuf,
- nMin, (LPWSTR)zDbgBuf, SQLITE_WIN32_DBG_BUF_SIZE/sizeof(WCHAR))<=0 ){
- return;
- }
- osOutputDebugStringW((LPCWSTR)zDbgBuf);
-#else
- if( nMin>0 ){
- memset(zDbgBuf, 0, SQLITE_WIN32_DBG_BUF_SIZE);
- memcpy(zDbgBuf, zBuf, nMin);
- fprintf(stderr, "%s", zDbgBuf);
- }else{
- fprintf(stderr, "%s", zBuf);
- }
-#endif
-}
-
-/*
-** The following routine suspends the current thread for at least ms
-** milliseconds. This is equivalent to the Win32 Sleep() interface.
-*/
-#if SQLITE_OS_WINRT
-static HANDLE sleepObj = NULL;
-#endif
-
-SQLITE_API void sqlite3_win32_sleep(DWORD milliseconds){
-#if SQLITE_OS_WINRT
- if ( sleepObj==NULL ){
- sleepObj = osCreateEventExW(NULL, NULL, CREATE_EVENT_MANUAL_RESET,
- SYNCHRONIZE);
- }
- assert( sleepObj!=NULL );
- osWaitForSingleObjectEx(sleepObj, milliseconds, FALSE);
-#else
- osSleep(milliseconds);
-#endif
-}
-
-#if SQLITE_MAX_WORKER_THREADS>0 && !SQLITE_OS_WINCE && !SQLITE_OS_WINRT && \
- SQLITE_THREADSAFE>0
-SQLITE_PRIVATE DWORD sqlite3Win32Wait(HANDLE hObject){
- DWORD rc;
- while( (rc = osWaitForSingleObjectEx(hObject, INFINITE,
- TRUE))==WAIT_IO_COMPLETION ){}
- return rc;
-}
-#endif
-
-/*
-** Return true (non-zero) if we are running under WinNT, Win2K, WinXP,
-** or WinCE. Return false (zero) for Win95, Win98, or WinME.
-**
-** Here is an interesting observation: Win95, Win98, and WinME lack
-** the LockFileEx() API. But we can still statically link against that
-** API as long as we don't call it when running Win95/98/ME. A call to
-** this routine is used to determine if the host is Win95/98/ME or
-** WinNT/2K/XP so that we will know whether or not we can safely call
-** the LockFileEx() API.
-*/
-
-#if !SQLITE_WIN32_GETVERSIONEX
-# define osIsNT() (1)
-#elif SQLITE_OS_WINCE || SQLITE_OS_WINRT || !defined(SQLITE_WIN32_HAS_ANSI)
-# define osIsNT() (1)
-#elif !defined(SQLITE_WIN32_HAS_WIDE)
-# define osIsNT() (0)
-#else
-# define osIsNT() ((sqlite3_os_type==2) || sqlite3_win32_is_nt())
-#endif
-
-/*
-** This function determines if the machine is running a version of Windows
-** based on the NT kernel.
-*/
-SQLITE_API int sqlite3_win32_is_nt(void){
-#if SQLITE_OS_WINRT
- /*
- ** NOTE: The WinRT sub-platform is always assumed to be based on the NT
- ** kernel.
- */
- return 1;
-#elif SQLITE_WIN32_GETVERSIONEX
- if( osInterlockedCompareExchange(&sqlite3_os_type, 0, 0)==0 ){
-#if defined(SQLITE_WIN32_HAS_ANSI)
- OSVERSIONINFOA sInfo;
- sInfo.dwOSVersionInfoSize = sizeof(sInfo);
- osGetVersionExA(&sInfo);
- osInterlockedCompareExchange(&sqlite3_os_type,
- (sInfo.dwPlatformId == VER_PLATFORM_WIN32_NT) ? 2 : 1, 0);
-#elif defined(SQLITE_WIN32_HAS_WIDE)
- OSVERSIONINFOW sInfo;
- sInfo.dwOSVersionInfoSize = sizeof(sInfo);
- osGetVersionExW(&sInfo);
- osInterlockedCompareExchange(&sqlite3_os_type,
- (sInfo.dwPlatformId == VER_PLATFORM_WIN32_NT) ? 2 : 1, 0);
-#endif
- }
- return osInterlockedCompareExchange(&sqlite3_os_type, 2, 2)==2;
-#elif SQLITE_TEST
- return osInterlockedCompareExchange(&sqlite3_os_type, 2, 2)==2;
-#else
- /*
- ** NOTE: All sub-platforms where the GetVersionEx[AW] functions are
- ** deprecated are always assumed to be based on the NT kernel.
- */
- return 1;
-#endif
-}
-
-#ifdef SQLITE_WIN32_MALLOC
-/*
-** Allocate nBytes of memory.
-*/
-static void *winMemMalloc(int nBytes){
- HANDLE hHeap;
- void *p;
-
- winMemAssertMagic();
- hHeap = winMemGetHeap();
- assert( hHeap!=0 );
- assert( hHeap!=INVALID_HANDLE_VALUE );
-#if !SQLITE_OS_WINRT && defined(SQLITE_WIN32_MALLOC_VALIDATE)
- assert( osHeapValidate(hHeap, SQLITE_WIN32_HEAP_FLAGS, NULL) );
-#endif
- assert( nBytes>=0 );
- p = osHeapAlloc(hHeap, SQLITE_WIN32_HEAP_FLAGS, (SIZE_T)nBytes);
- if( !p ){
- sqlite3_log(SQLITE_NOMEM, "failed to HeapAlloc %u bytes (%lu), heap=%p",
- nBytes, osGetLastError(), (void*)hHeap);
- }
- return p;
-}
-
-/*
-** Free memory.
-*/
-static void winMemFree(void *pPrior){
- HANDLE hHeap;
-
- winMemAssertMagic();
- hHeap = winMemGetHeap();
- assert( hHeap!=0 );
- assert( hHeap!=INVALID_HANDLE_VALUE );
-#if !SQLITE_OS_WINRT && defined(SQLITE_WIN32_MALLOC_VALIDATE)
- assert( osHeapValidate(hHeap, SQLITE_WIN32_HEAP_FLAGS, pPrior) );
-#endif
- if( !pPrior ) return; /* Passing NULL to HeapFree is undefined. */
- if( !osHeapFree(hHeap, SQLITE_WIN32_HEAP_FLAGS, pPrior) ){
- sqlite3_log(SQLITE_NOMEM, "failed to HeapFree block %p (%lu), heap=%p",
- pPrior, osGetLastError(), (void*)hHeap);
- }
-}
-
-/*
-** Change the size of an existing memory allocation
-*/
-static void *winMemRealloc(void *pPrior, int nBytes){
- HANDLE hHeap;
- void *p;
-
- winMemAssertMagic();
- hHeap = winMemGetHeap();
- assert( hHeap!=0 );
- assert( hHeap!=INVALID_HANDLE_VALUE );
-#if !SQLITE_OS_WINRT && defined(SQLITE_WIN32_MALLOC_VALIDATE)
- assert( osHeapValidate(hHeap, SQLITE_WIN32_HEAP_FLAGS, pPrior) );
-#endif
- assert( nBytes>=0 );
- if( !pPrior ){
- p = osHeapAlloc(hHeap, SQLITE_WIN32_HEAP_FLAGS, (SIZE_T)nBytes);
- }else{
- p = osHeapReAlloc(hHeap, SQLITE_WIN32_HEAP_FLAGS, pPrior, (SIZE_T)nBytes);
- }
- if( !p ){
- sqlite3_log(SQLITE_NOMEM, "failed to %s %u bytes (%lu), heap=%p",
- pPrior ? "HeapReAlloc" : "HeapAlloc", nBytes, osGetLastError(),
- (void*)hHeap);
- }
- return p;
-}
-
-/*
-** Return the size of an outstanding allocation, in bytes.
-*/
-static int winMemSize(void *p){
- HANDLE hHeap;
- SIZE_T n;
-
- winMemAssertMagic();
- hHeap = winMemGetHeap();
- assert( hHeap!=0 );
- assert( hHeap!=INVALID_HANDLE_VALUE );
-#if !SQLITE_OS_WINRT && defined(SQLITE_WIN32_MALLOC_VALIDATE)
- assert( osHeapValidate(hHeap, SQLITE_WIN32_HEAP_FLAGS, p) );
-#endif
- if( !p ) return 0;
- n = osHeapSize(hHeap, SQLITE_WIN32_HEAP_FLAGS, p);
- if( n==(SIZE_T)-1 ){
- sqlite3_log(SQLITE_NOMEM, "failed to HeapSize block %p (%lu), heap=%p",
- p, osGetLastError(), (void*)hHeap);
- return 0;
- }
- return (int)n;
-}
-
-/*
-** Round up a request size to the next valid allocation size.
-*/
-static int winMemRoundup(int n){
- return n;
-}
-
-/*
-** Initialize this module.
-*/
-static int winMemInit(void *pAppData){
- winMemData *pWinMemData = (winMemData *)pAppData;
-
- if( !pWinMemData ) return SQLITE_ERROR;
- assert( pWinMemData->magic1==WINMEM_MAGIC1 );
- assert( pWinMemData->magic2==WINMEM_MAGIC2 );
-
-#if !SQLITE_OS_WINRT && SQLITE_WIN32_HEAP_CREATE
- if( !pWinMemData->hHeap ){
- DWORD dwInitialSize = SQLITE_WIN32_HEAP_INIT_SIZE;
- DWORD dwMaximumSize = (DWORD)sqlite3GlobalConfig.nHeap;
- if( dwMaximumSize==0 ){
- dwMaximumSize = SQLITE_WIN32_HEAP_MAX_SIZE;
- }else if( dwInitialSize>dwMaximumSize ){
- dwInitialSize = dwMaximumSize;
- }
- pWinMemData->hHeap = osHeapCreate(SQLITE_WIN32_HEAP_FLAGS,
- dwInitialSize, dwMaximumSize);
- if( !pWinMemData->hHeap ){
- sqlite3_log(SQLITE_NOMEM,
- "failed to HeapCreate (%lu), flags=%u, initSize=%lu, maxSize=%lu",
- osGetLastError(), SQLITE_WIN32_HEAP_FLAGS, dwInitialSize,
- dwMaximumSize);
- return SQLITE_NOMEM_BKPT;
- }
- pWinMemData->bOwned = TRUE;
- assert( pWinMemData->bOwned );
- }
-#else
- pWinMemData->hHeap = osGetProcessHeap();
- if( !pWinMemData->hHeap ){
- sqlite3_log(SQLITE_NOMEM,
- "failed to GetProcessHeap (%lu)", osGetLastError());
- return SQLITE_NOMEM_BKPT;
- }
- pWinMemData->bOwned = FALSE;
- assert( !pWinMemData->bOwned );
-#endif
- assert( pWinMemData->hHeap!=0 );
- assert( pWinMemData->hHeap!=INVALID_HANDLE_VALUE );
-#if !SQLITE_OS_WINRT && defined(SQLITE_WIN32_MALLOC_VALIDATE)
- assert( osHeapValidate(pWinMemData->hHeap, SQLITE_WIN32_HEAP_FLAGS, NULL) );
-#endif
- return SQLITE_OK;
-}
-
-/*
-** Deinitialize this module.
-*/
-static void winMemShutdown(void *pAppData){
- winMemData *pWinMemData = (winMemData *)pAppData;
-
- if( !pWinMemData ) return;
- assert( pWinMemData->magic1==WINMEM_MAGIC1 );
- assert( pWinMemData->magic2==WINMEM_MAGIC2 );
-
- if( pWinMemData->hHeap ){
- assert( pWinMemData->hHeap!=INVALID_HANDLE_VALUE );
-#if !SQLITE_OS_WINRT && defined(SQLITE_WIN32_MALLOC_VALIDATE)
- assert( osHeapValidate(pWinMemData->hHeap, SQLITE_WIN32_HEAP_FLAGS, NULL) );
-#endif
- if( pWinMemData->bOwned ){
- if( !osHeapDestroy(pWinMemData->hHeap) ){
- sqlite3_log(SQLITE_NOMEM, "failed to HeapDestroy (%lu), heap=%p",
- osGetLastError(), (void*)pWinMemData->hHeap);
- }
- pWinMemData->bOwned = FALSE;
- }
- pWinMemData->hHeap = NULL;
- }
-}
-
-/*
-** Populate the low-level memory allocation function pointers in
-** sqlite3GlobalConfig.m with pointers to the routines in this file. The
-** arguments specify the block of memory to manage.
-**
-** This routine is only called by sqlite3_config(), and therefore
-** is not required to be threadsafe (it is not).
-*/
-SQLITE_PRIVATE const sqlite3_mem_methods *sqlite3MemGetWin32(void){
- static const sqlite3_mem_methods winMemMethods = {
- winMemMalloc,
- winMemFree,
- winMemRealloc,
- winMemSize,
- winMemRoundup,
- winMemInit,
- winMemShutdown,
- &win_mem_data
- };
- return &winMemMethods;
-}
-
-SQLITE_PRIVATE void sqlite3MemSetDefault(void){
- sqlite3_config(SQLITE_CONFIG_MALLOC, sqlite3MemGetWin32());
-}
-#endif /* SQLITE_WIN32_MALLOC */
-
-/*
-** Convert a UTF-8 string to Microsoft Unicode.
-**
-** Space to hold the returned string is obtained from sqlite3_malloc().
-*/
-static LPWSTR winUtf8ToUnicode(const char *zText){
- int nChar;
- LPWSTR zWideText;
-
- nChar = osMultiByteToWideChar(CP_UTF8, 0, zText, -1, NULL, 0);
- if( nChar==0 ){
- return 0;
- }
- zWideText = sqlite3MallocZero( nChar*sizeof(WCHAR) );
- if( zWideText==0 ){
- return 0;
- }
- nChar = osMultiByteToWideChar(CP_UTF8, 0, zText, -1, zWideText,
- nChar);
- if( nChar==0 ){
- sqlite3_free(zWideText);
- zWideText = 0;
- }
- return zWideText;
-}
-
-/*
-** Convert a Microsoft Unicode string to UTF-8.
-**
-** Space to hold the returned string is obtained from sqlite3_malloc().
-*/
-static char *winUnicodeToUtf8(LPCWSTR zWideText){
- int nByte;
- char *zText;
-
- nByte = osWideCharToMultiByte(CP_UTF8, 0, zWideText, -1, 0, 0, 0, 0);
- if( nByte == 0 ){
- return 0;
- }
- zText = sqlite3MallocZero( nByte );
- if( zText==0 ){
- return 0;
- }
- nByte = osWideCharToMultiByte(CP_UTF8, 0, zWideText, -1, zText, nByte,
- 0, 0);
- if( nByte == 0 ){
- sqlite3_free(zText);
- zText = 0;
- }
- return zText;
-}
-
-/*
-** Convert an ANSI string to Microsoft Unicode, using the ANSI or OEM
-** code page.
-**
-** Space to hold the returned string is obtained from sqlite3_malloc().
-*/
-static LPWSTR winMbcsToUnicode(const char *zText, int useAnsi){
- int nByte;
- LPWSTR zMbcsText;
- int codepage = useAnsi ? CP_ACP : CP_OEMCP;
-
- nByte = osMultiByteToWideChar(codepage, 0, zText, -1, NULL,
- 0)*sizeof(WCHAR);
- if( nByte==0 ){
- return 0;
- }
- zMbcsText = sqlite3MallocZero( nByte*sizeof(WCHAR) );
- if( zMbcsText==0 ){
- return 0;
- }
- nByte = osMultiByteToWideChar(codepage, 0, zText, -1, zMbcsText,
- nByte);
- if( nByte==0 ){
- sqlite3_free(zMbcsText);
- zMbcsText = 0;
- }
- return zMbcsText;
-}
-
-/*
-** Convert a Microsoft Unicode string to a multi-byte character string,
-** using the ANSI or OEM code page.
-**
-** Space to hold the returned string is obtained from sqlite3_malloc().
-*/
-static char *winUnicodeToMbcs(LPCWSTR zWideText, int useAnsi){
- int nByte;
- char *zText;
- int codepage = useAnsi ? CP_ACP : CP_OEMCP;
-
- nByte = osWideCharToMultiByte(codepage, 0, zWideText, -1, 0, 0, 0, 0);
- if( nByte == 0 ){
- return 0;
- }
- zText = sqlite3MallocZero( nByte );
- if( zText==0 ){
- return 0;
- }
- nByte = osWideCharToMultiByte(codepage, 0, zWideText, -1, zText,
- nByte, 0, 0);
- if( nByte == 0 ){
- sqlite3_free(zText);
- zText = 0;
- }
- return zText;
-}
-
-/*
-** Convert a multi-byte character string to UTF-8.
-**
-** Space to hold the returned string is obtained from sqlite3_malloc().
-*/
-static char *winMbcsToUtf8(const char *zText, int useAnsi){
- char *zTextUtf8;
- LPWSTR zTmpWide;
-
- zTmpWide = winMbcsToUnicode(zText, useAnsi);
- if( zTmpWide==0 ){
- return 0;
- }
- zTextUtf8 = winUnicodeToUtf8(zTmpWide);
- sqlite3_free(zTmpWide);
- return zTextUtf8;
-}
-
-/*
-** Convert a UTF-8 string to a multi-byte character string.
-**
-** Space to hold the returned string is obtained from sqlite3_malloc().
-*/
-static char *winUtf8ToMbcs(const char *zText, int useAnsi){
- char *zTextMbcs;
- LPWSTR zTmpWide;
-
- zTmpWide = winUtf8ToUnicode(zText);
- if( zTmpWide==0 ){
- return 0;
- }
- zTextMbcs = winUnicodeToMbcs(zTmpWide, useAnsi);
- sqlite3_free(zTmpWide);
- return zTextMbcs;
-}
-
-/*
-** This is a public wrapper for the winUtf8ToUnicode() function.
-*/
-SQLITE_API LPWSTR sqlite3_win32_utf8_to_unicode(const char *zText){
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( !zText ){
- (void)SQLITE_MISUSE_BKPT;
- return 0;
- }
-#endif
-#ifndef SQLITE_OMIT_AUTOINIT
- if( sqlite3_initialize() ) return 0;
-#endif
- return winUtf8ToUnicode(zText);
-}
-
-/*
-** This is a public wrapper for the winUnicodeToUtf8() function.
-*/
-SQLITE_API char *sqlite3_win32_unicode_to_utf8(LPCWSTR zWideText){
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( !zWideText ){
- (void)SQLITE_MISUSE_BKPT;
- return 0;
- }
-#endif
-#ifndef SQLITE_OMIT_AUTOINIT
- if( sqlite3_initialize() ) return 0;
-#endif
- return winUnicodeToUtf8(zWideText);
-}
-
-/*
-** This is a public wrapper for the winMbcsToUtf8() function.
-*/
-SQLITE_API char *sqlite3_win32_mbcs_to_utf8(const char *zText){
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( !zText ){
- (void)SQLITE_MISUSE_BKPT;
- return 0;
- }
-#endif
-#ifndef SQLITE_OMIT_AUTOINIT
- if( sqlite3_initialize() ) return 0;
-#endif
- return winMbcsToUtf8(zText, osAreFileApisANSI());
-}
-
-/*
-** This is a public wrapper for the winMbcsToUtf8() function.
-*/
-SQLITE_API char *sqlite3_win32_mbcs_to_utf8_v2(const char *zText, int useAnsi){
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( !zText ){
- (void)SQLITE_MISUSE_BKPT;
- return 0;
- }
-#endif
-#ifndef SQLITE_OMIT_AUTOINIT
- if( sqlite3_initialize() ) return 0;
-#endif
- return winMbcsToUtf8(zText, useAnsi);
-}
-
-/*
-** This is a public wrapper for the winUtf8ToMbcs() function.
-*/
-SQLITE_API char *sqlite3_win32_utf8_to_mbcs(const char *zText){
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( !zText ){
- (void)SQLITE_MISUSE_BKPT;
- return 0;
- }
-#endif
-#ifndef SQLITE_OMIT_AUTOINIT
- if( sqlite3_initialize() ) return 0;
-#endif
- return winUtf8ToMbcs(zText, osAreFileApisANSI());
-}
-
-/*
-** This is a public wrapper for the winUtf8ToMbcs() function.
-*/
-SQLITE_API char *sqlite3_win32_utf8_to_mbcs_v2(const char *zText, int useAnsi){
-#ifdef SQLITE_ENABLE_API_ARMOR
- if( !zText ){
- (void)SQLITE_MISUSE_BKPT;
- return 0;
- }
-#endif
-#ifndef SQLITE_OMIT_AUTOINIT
- if( sqlite3_initialize() ) return 0;
-#endif
- return winUtf8ToMbcs(zText, useAnsi);
-}
-
-/*
-** This function is the same as sqlite3_win32_set_directory (below); however,
-** it accepts a UTF-8 string.
-*/
-SQLITE_API int sqlite3_win32_set_directory8(
- unsigned long type, /* Identifier for directory being set or reset */
- const char *zValue /* New value for directory being set or reset */
-){
- char **ppDirectory = 0;
-#ifndef SQLITE_OMIT_AUTOINIT
- int rc = sqlite3_initialize();
- if( rc ) return rc;
-#endif
- if( type==SQLITE_WIN32_DATA_DIRECTORY_TYPE ){
- ppDirectory = &sqlite3_data_directory;
- }else if( type==SQLITE_WIN32_TEMP_DIRECTORY_TYPE ){
- ppDirectory = &sqlite3_temp_directory;
- }
- assert( !ppDirectory || type==SQLITE_WIN32_DATA_DIRECTORY_TYPE
- || type==SQLITE_WIN32_TEMP_DIRECTORY_TYPE
- );
- assert( !ppDirectory || sqlite3MemdebugHasType(*ppDirectory, MEMTYPE_HEAP) );
- if( ppDirectory ){
- char *zCopy = 0;
- if( zValue && zValue[0] ){
- zCopy = sqlite3_mprintf("%s", zValue);
- if ( zCopy==0 ){
- return SQLITE_NOMEM_BKPT;
- }
- }
- sqlite3_free(*ppDirectory);
- *ppDirectory = zCopy;
- return SQLITE_OK;
- }
- return SQLITE_ERROR;
-}
-
-/*
-** This function is the same as sqlite3_win32_set_directory (below); however,
-** it accepts a UTF-16 string.
-*/
-SQLITE_API int sqlite3_win32_set_directory16(
- unsigned long type, /* Identifier for directory being set or reset */
- const void *zValue /* New value for directory being set or reset */
-){
- int rc;
- char *zUtf8 = 0;
- if( zValue ){
- zUtf8 = sqlite3_win32_unicode_to_utf8(zValue);
- if( zUtf8==0 ) return SQLITE_NOMEM_BKPT;
- }
- rc = sqlite3_win32_set_directory8(type, zUtf8);
- if( zUtf8 ) sqlite3_free(zUtf8);
- return rc;
-}
-
-/*
-** This function sets the data directory or the temporary directory based on
-** the provided arguments. The type argument must be 1 in order to set the
-** data directory or 2 in order to set the temporary directory. The zValue
-** argument is the name of the directory to use. The return value will be
-** SQLITE_OK if successful.
-*/
-SQLITE_API int sqlite3_win32_set_directory(
- unsigned long type, /* Identifier for directory being set or reset */
- void *zValue /* New value for directory being set or reset */
-){
- return sqlite3_win32_set_directory16(type, zValue);
-}
-
-/*
-** The return value of winGetLastErrorMsg
-** is zero if the error message fits in the buffer, or non-zero
-** otherwise (if the message was truncated).
-*/
-static int winGetLastErrorMsg(DWORD lastErrno, int nBuf, char *zBuf){
- /* FormatMessage returns 0 on failure. Otherwise it
- ** returns the number of TCHARs written to the output
- ** buffer, excluding the terminating null char.
- */
- DWORD dwLen = 0;
- char *zOut = 0;
-
- if( osIsNT() ){
-#if SQLITE_OS_WINRT
- WCHAR zTempWide[SQLITE_WIN32_MAX_ERRMSG_CHARS+1];
- dwLen = osFormatMessageW(FORMAT_MESSAGE_FROM_SYSTEM |
- FORMAT_MESSAGE_IGNORE_INSERTS,
- NULL,
- lastErrno,
- 0,
- zTempWide,
- SQLITE_WIN32_MAX_ERRMSG_CHARS,
- 0);
-#else
- LPWSTR zTempWide = NULL;
- dwLen = osFormatMessageW(FORMAT_MESSAGE_ALLOCATE_BUFFER |
- FORMAT_MESSAGE_FROM_SYSTEM |
- FORMAT_MESSAGE_IGNORE_INSERTS,
- NULL,
- lastErrno,
- 0,
- (LPWSTR) &zTempWide,
- 0,
- 0);
-#endif
- if( dwLen > 0 ){
- /* allocate a buffer and convert to UTF8 */
- sqlite3BeginBenignMalloc();
- zOut = winUnicodeToUtf8(zTempWide);
- sqlite3EndBenignMalloc();
-#if !SQLITE_OS_WINRT
- /* free the system buffer allocated by FormatMessage */
- osLocalFree(zTempWide);
-#endif
- }
- }
-#ifdef SQLITE_WIN32_HAS_ANSI
- else{
- char *zTemp = NULL;
- dwLen = osFormatMessageA(FORMAT_MESSAGE_ALLOCATE_BUFFER |
- FORMAT_MESSAGE_FROM_SYSTEM |
- FORMAT_MESSAGE_IGNORE_INSERTS,
- NULL,
- lastErrno,
- 0,
- (LPSTR) &zTemp,
- 0,
- 0);
- if( dwLen > 0 ){
- /* allocate a buffer and convert to UTF8 */
- sqlite3BeginBenignMalloc();
- zOut = winMbcsToUtf8(zTemp, osAreFileApisANSI());
- sqlite3EndBenignMalloc();
- /* free the system buffer allocated by FormatMessage */
- osLocalFree(zTemp);
- }
- }
-#endif
- if( 0 == dwLen ){
- sqlite3_snprintf(nBuf, zBuf, "OsError 0x%lx (%lu)", lastErrno, lastErrno);
- }else{
- /* copy a maximum of nBuf chars to output buffer */
- sqlite3_snprintf(nBuf, zBuf, "%s", zOut);
- /* free the UTF8 buffer */
- sqlite3_free(zOut);
- }
- return 0;
-}
-
-/*
-**
-** This function - winLogErrorAtLine() - is only ever called via the macro
-** winLogError().
-**
-** This routine is invoked after an error occurs in an OS function.
-** It logs a message using sqlite3_log() containing the current value of
-** error code and, if possible, the human-readable equivalent from
-** FormatMessage.
-**
-** The first argument passed to the macro should be the error code that
-** will be returned to SQLite (e.g. SQLITE_IOERR_DELETE, SQLITE_CANTOPEN).
-** The two subsequent arguments should be the name of the OS function that
-** failed and the associated file-system path, if any.
-*/
-#define winLogError(a,b,c,d) winLogErrorAtLine(a,b,c,d,__LINE__)
-static int winLogErrorAtLine(
- int errcode, /* SQLite error code */
- DWORD lastErrno, /* Win32 last error */
- const char *zFunc, /* Name of OS function that failed */
- const char *zPath, /* File path associated with error */
- int iLine /* Source line number where error occurred */
-){
- char zMsg[500]; /* Human readable error text */
- int i; /* Loop counter */
-
- zMsg[0] = 0;
- winGetLastErrorMsg(lastErrno, sizeof(zMsg), zMsg);
- assert( errcode!=SQLITE_OK );
- if( zPath==0 ) zPath = "";
- for(i=0; zMsg[i] && zMsg[i]!='\r' && zMsg[i]!='\n'; i++){}
- zMsg[i] = 0;
- sqlite3_log(errcode,
- "os_win.c:%d: (%lu) %s(%s) - %s",
- iLine, lastErrno, zFunc, zPath, zMsg
- );
-
- return errcode;
-}
-
-/*
-** The number of times that a ReadFile(), WriteFile(), and DeleteFile()
-** will be retried following a locking error - probably caused by
-** antivirus software. Also the initial delay before the first retry.
-** The delay increases linearly with each retry.
-*/
-#ifndef SQLITE_WIN32_IOERR_RETRY
-# define SQLITE_WIN32_IOERR_RETRY 10
-#endif
-#ifndef SQLITE_WIN32_IOERR_RETRY_DELAY
-# define SQLITE_WIN32_IOERR_RETRY_DELAY 25
-#endif
-static int winIoerrRetry = SQLITE_WIN32_IOERR_RETRY;
-static int winIoerrRetryDelay = SQLITE_WIN32_IOERR_RETRY_DELAY;
-
-/*
-** The "winIoerrCanRetry1" macro is used to determine if a particular I/O
-** error code obtained via GetLastError() is eligible to be retried. It
-** must accept the error code DWORD as its only argument and should return
-** non-zero if the error code is transient in nature and the operation
-** responsible for generating the original error might succeed upon being
-** retried. The argument to this macro should be a variable.
-**
-** Additionally, a macro named "winIoerrCanRetry2" may be defined. If it
-** is defined, it will be consulted only when the macro "winIoerrCanRetry1"
-** returns zero. The "winIoerrCanRetry2" macro is completely optional and
-** may be used to include additional error codes in the set that should
-** result in the failing I/O operation being retried by the caller. If
-** defined, the "winIoerrCanRetry2" macro must exhibit external semantics
-** identical to those of the "winIoerrCanRetry1" macro.
-*/
-#if !defined(winIoerrCanRetry1)
-#define winIoerrCanRetry1(a) (((a)==ERROR_ACCESS_DENIED) || \
- ((a)==ERROR_SHARING_VIOLATION) || \
- ((a)==ERROR_LOCK_VIOLATION) || \
- ((a)==ERROR_DEV_NOT_EXIST) || \
- ((a)==ERROR_NETNAME_DELETED) || \
- ((a)==ERROR_SEM_TIMEOUT) || \
- ((a)==ERROR_NETWORK_UNREACHABLE))
-#endif
-
-/*
-** If a ReadFile() or WriteFile() error occurs, invoke this routine
-** to see if it should be retried. Return TRUE to retry. Return FALSE
-** to give up with an error.
-*/
-static int winRetryIoerr(int *pnRetry, DWORD *pError){
- DWORD e = osGetLastError();
- if( *pnRetry>=winIoerrRetry ){
- if( pError ){
- *pError = e;
- }
- return 0;
- }
- if( winIoerrCanRetry1(e) ){
- sqlite3_win32_sleep(winIoerrRetryDelay*(1+*pnRetry));
- ++*pnRetry;
- return 1;
- }
-#if defined(winIoerrCanRetry2)
- else if( winIoerrCanRetry2(e) ){
- sqlite3_win32_sleep(winIoerrRetryDelay*(1+*pnRetry));
- ++*pnRetry;
- return 1;
- }
-#endif
- if( pError ){
- *pError = e;
- }
- return 0;
-}
-
-/*
-** Log a I/O error retry episode.
-*/
-static void winLogIoerr(int nRetry, int lineno){
- if( nRetry ){
- sqlite3_log(SQLITE_NOTICE,
- "delayed %dms for lock/sharing conflict at line %d",
- winIoerrRetryDelay*nRetry*(nRetry+1)/2, lineno
- );
- }
-}
-
-/*
-** This #if does not rely on the SQLITE_OS_WINCE define because the
-** corresponding section in "date.c" cannot use it.
-*/
-#if !defined(SQLITE_OMIT_LOCALTIME) && defined(_WIN32_WCE) && \
- (!defined(SQLITE_MSVC_LOCALTIME_API) || !SQLITE_MSVC_LOCALTIME_API)
-/*
-** The MSVC CRT on Windows CE may not have a localtime() function.
-** So define a substitute.
-*/
-/* # include */
-struct tm *__cdecl localtime(const time_t *t)
-{
- static struct tm y;
- FILETIME uTm, lTm;
- SYSTEMTIME pTm;
- sqlite3_int64 t64;
- t64 = *t;
- t64 = (t64 + 11644473600)*10000000;
- uTm.dwLowDateTime = (DWORD)(t64 & 0xFFFFFFFF);
- uTm.dwHighDateTime= (DWORD)(t64 >> 32);
- osFileTimeToLocalFileTime(&uTm,&lTm);
- osFileTimeToSystemTime(&lTm,&pTm);
- y.tm_year = pTm.wYear - 1900;
- y.tm_mon = pTm.wMonth - 1;
- y.tm_wday = pTm.wDayOfWeek;
- y.tm_mday = pTm.wDay;
- y.tm_hour = pTm.wHour;
- y.tm_min = pTm.wMinute;
- y.tm_sec = pTm.wSecond;
- return &y;
-}
-#endif
-
-#if SQLITE_OS_WINCE
-/*************************************************************************
-** This section contains code for WinCE only.
-*/
-#define HANDLE_TO_WINFILE(a) (winFile*)&((char*)a)[-(int)offsetof(winFile,h)]
-
-/*
-** Acquire a lock on the handle h
-*/
-static void winceMutexAcquire(HANDLE h){
- DWORD dwErr;
- do {
- dwErr = osWaitForSingleObject(h, INFINITE);
- } while (dwErr != WAIT_OBJECT_0 && dwErr != WAIT_ABANDONED);
-}
-/*
-** Release a lock acquired by winceMutexAcquire()
-*/
-#define winceMutexRelease(h) ReleaseMutex(h)
-
-/*
-** Create the mutex and shared memory used for locking in the file
-** descriptor pFile
-*/
-static int winceCreateLock(const char *zFilename, winFile *pFile){
- LPWSTR zTok;
- LPWSTR zName;
- DWORD lastErrno;
- BOOL bLogged = FALSE;
- BOOL bInit = TRUE;
-
- zName = winUtf8ToUnicode(zFilename);
- if( zName==0 ){
- /* out of memory */
- return SQLITE_IOERR_NOMEM_BKPT;
- }
-
- /* Initialize the local lockdata */
- memset(&pFile->local, 0, sizeof(pFile->local));
-
- /* Replace the backslashes from the filename and lowercase it
- ** to derive a mutex name. */
- zTok = osCharLowerW(zName);
- for (;*zTok;zTok++){
- if (*zTok == '\\') *zTok = '_';
- }
-
- /* Create/open the named mutex */
- pFile->hMutex = osCreateMutexW(NULL, FALSE, zName);
- if (!pFile->hMutex){
- pFile->lastErrno = osGetLastError();
- sqlite3_free(zName);
- return winLogError(SQLITE_IOERR, pFile->lastErrno,
- "winceCreateLock1", zFilename);
- }
-
- /* Acquire the mutex before continuing */
- winceMutexAcquire(pFile->hMutex);
-
- /* Since the names of named mutexes, semaphores, file mappings etc are
- ** case-sensitive, take advantage of that by uppercasing the mutex name
- ** and using that as the shared filemapping name.
- */
- osCharUpperW(zName);
- pFile->hShared = osCreateFileMappingW(INVALID_HANDLE_VALUE, NULL,
- PAGE_READWRITE, 0, sizeof(winceLock),
- zName);
-
- /* Set a flag that indicates we're the first to create the memory so it
- ** must be zero-initialized */
- lastErrno = osGetLastError();
- if (lastErrno == ERROR_ALREADY_EXISTS){
- bInit = FALSE;
- }
-
- sqlite3_free(zName);
-
- /* If we succeeded in making the shared memory handle, map it. */
- if( pFile->hShared ){
- pFile->shared = (winceLock*)osMapViewOfFile(pFile->hShared,
- FILE_MAP_READ|FILE_MAP_WRITE, 0, 0, sizeof(winceLock));
- /* If mapping failed, close the shared memory handle and erase it */
- if( !pFile->shared ){
- pFile->lastErrno = osGetLastError();
- winLogError(SQLITE_IOERR, pFile->lastErrno,
- "winceCreateLock2", zFilename);
- bLogged = TRUE;
- osCloseHandle(pFile->hShared);
- pFile->hShared = NULL;
- }
- }
-
- /* If shared memory could not be created, then close the mutex and fail */
- if( pFile->hShared==NULL ){
- if( !bLogged ){
- pFile->lastErrno = lastErrno;
- winLogError(SQLITE_IOERR, pFile->lastErrno,
- "winceCreateLock3", zFilename);
- bLogged = TRUE;
- }
- winceMutexRelease(pFile->hMutex);
- osCloseHandle(pFile->hMutex);
- pFile->hMutex = NULL;
- return SQLITE_IOERR;
- }
-
- /* Initialize the shared memory if we're supposed to */
- if( bInit ){
- memset(pFile->shared, 0, sizeof(winceLock));
- }
-
- winceMutexRelease(pFile->hMutex);
- return SQLITE_OK;
-}
-
-/*
-** Destroy the part of winFile that deals with wince locks
-*/
-static void winceDestroyLock(winFile *pFile){
- if (pFile->hMutex){
- /* Acquire the mutex */
- winceMutexAcquire(pFile->hMutex);
-
- /* The following blocks should probably assert in debug mode, but they
- are to cleanup in case any locks remained open */
- if (pFile->local.nReaders){
- pFile->shared->nReaders --;
- }
- if (pFile->local.bReserved){
- pFile->shared->bReserved = FALSE;
- }
- if (pFile->local.bPending){
- pFile->shared->bPending = FALSE;
- }
- if (pFile->local.bExclusive){
- pFile->shared->bExclusive = FALSE;
- }
-
- /* De-reference and close our copy of the shared memory handle */
- osUnmapViewOfFile(pFile->shared);
- osCloseHandle(pFile->hShared);
-
- /* Done with the mutex */
- winceMutexRelease(pFile->hMutex);
- osCloseHandle(pFile->hMutex);
- pFile->hMutex = NULL;
- }
-}
-
-/*
-** An implementation of the LockFile() API of Windows for CE
-*/
-static BOOL winceLockFile(
- LPHANDLE phFile,
- DWORD dwFileOffsetLow,
- DWORD dwFileOffsetHigh,
- DWORD nNumberOfBytesToLockLow,
- DWORD nNumberOfBytesToLockHigh
-){
- winFile *pFile = HANDLE_TO_WINFILE(phFile);
- BOOL bReturn = FALSE;
-
- UNUSED_PARAMETER(dwFileOffsetHigh);
- UNUSED_PARAMETER(nNumberOfBytesToLockHigh);
-
- if (!pFile->hMutex) return TRUE;
- winceMutexAcquire(pFile->hMutex);
-
- /* Wanting an exclusive lock? */
- if (dwFileOffsetLow == (DWORD)SHARED_FIRST
- && nNumberOfBytesToLockLow == (DWORD)SHARED_SIZE){
- if (pFile->shared->nReaders == 0 && pFile->shared->bExclusive == 0){
- pFile->shared->bExclusive = TRUE;
- pFile->local.bExclusive = TRUE;
- bReturn = TRUE;
- }
- }
-
- /* Want a read-only lock? */
- else if (dwFileOffsetLow == (DWORD)SHARED_FIRST &&
- nNumberOfBytesToLockLow == 1){
- if (pFile->shared->bExclusive == 0){
- pFile->local.nReaders ++;
- if (pFile->local.nReaders == 1){
- pFile->shared->nReaders ++;
- }
- bReturn = TRUE;
- }
- }
-
- /* Want a pending lock? */
- else if (dwFileOffsetLow == (DWORD)PENDING_BYTE
- && nNumberOfBytesToLockLow == 1){
- /* If no pending lock has been acquired, then acquire it */
- if (pFile->shared->bPending == 0) {
- pFile->shared->bPending = TRUE;
- pFile->local.bPending = TRUE;
- bReturn = TRUE;
- }
- }
-
- /* Want a reserved lock? */
- else if (dwFileOffsetLow == (DWORD)RESERVED_BYTE
- && nNumberOfBytesToLockLow == 1){
- if (pFile->shared->bReserved == 0) {
- pFile->shared->bReserved = TRUE;
- pFile->local.bReserved = TRUE;
- bReturn = TRUE;
- }
- }
-
- winceMutexRelease(pFile->hMutex);
- return bReturn;
-}
-
-/*
-** An implementation of the UnlockFile API of Windows for CE
-*/
-static BOOL winceUnlockFile(
- LPHANDLE phFile,
- DWORD dwFileOffsetLow,
- DWORD dwFileOffsetHigh,
- DWORD nNumberOfBytesToUnlockLow,
- DWORD nNumberOfBytesToUnlockHigh
-){
- winFile *pFile = HANDLE_TO_WINFILE(phFile);
- BOOL bReturn = FALSE;
-
- UNUSED_PARAMETER(dwFileOffsetHigh);
- UNUSED_PARAMETER(nNumberOfBytesToUnlockHigh);
-
- if (!pFile->hMutex) return TRUE;
- winceMutexAcquire(pFile->hMutex);
-
- /* Releasing a reader lock or an exclusive lock */
- if (dwFileOffsetLow == (DWORD)SHARED_FIRST){
- /* Did we have an exclusive lock? */
- if (pFile->local.bExclusive){
- assert(nNumberOfBytesToUnlockLow == (DWORD)SHARED_SIZE);
- pFile->local.bExclusive = FALSE;
- pFile->shared->bExclusive = FALSE;
- bReturn = TRUE;
- }
-
- /* Did we just have a reader lock? */
- else if (pFile->local.nReaders){
- assert(nNumberOfBytesToUnlockLow == (DWORD)SHARED_SIZE
- || nNumberOfBytesToUnlockLow == 1);
- pFile->local.nReaders --;
- if (pFile->local.nReaders == 0)
- {
- pFile->shared->nReaders --;
- }
- bReturn = TRUE;
- }
- }
-
- /* Releasing a pending lock */
- else if (dwFileOffsetLow == (DWORD)PENDING_BYTE
- && nNumberOfBytesToUnlockLow == 1){
- if (pFile->local.bPending){
- pFile->local.bPending = FALSE;
- pFile->shared->bPending = FALSE;
- bReturn = TRUE;
- }
- }
- /* Releasing a reserved lock */
- else if (dwFileOffsetLow == (DWORD)RESERVED_BYTE
- && nNumberOfBytesToUnlockLow == 1){
- if (pFile->local.bReserved) {
- pFile->local.bReserved = FALSE;
- pFile->shared->bReserved = FALSE;
- bReturn = TRUE;
- }
- }
-
- winceMutexRelease(pFile->hMutex);
- return bReturn;
-}
-/*
-** End of the special code for wince
-*****************************************************************************/
-#endif /* SQLITE_OS_WINCE */
-
-/*
-** Lock a file region.
-*/
-static BOOL winLockFile(
- LPHANDLE phFile,
- DWORD flags,
- DWORD offsetLow,
- DWORD offsetHigh,
- DWORD numBytesLow,
- DWORD numBytesHigh
-){
-#if SQLITE_OS_WINCE
- /*
- ** NOTE: Windows CE is handled differently here due its lack of the Win32
- ** API LockFile.
- */
- return winceLockFile(phFile, offsetLow, offsetHigh,
- numBytesLow, numBytesHigh);
-#else
- if( osIsNT() ){
- OVERLAPPED ovlp;
- memset(&ovlp, 0, sizeof(OVERLAPPED));
- ovlp.Offset = offsetLow;
- ovlp.OffsetHigh = offsetHigh;
- return osLockFileEx(*phFile, flags, 0, numBytesLow, numBytesHigh, &ovlp);
- }else{
- return osLockFile(*phFile, offsetLow, offsetHigh, numBytesLow,
- numBytesHigh);
- }
-#endif
-}
-
-/*
-** Unlock a file region.
- */
-static BOOL winUnlockFile(
- LPHANDLE phFile,
- DWORD offsetLow,
- DWORD offsetHigh,
- DWORD numBytesLow,
- DWORD numBytesHigh
-){
-#if SQLITE_OS_WINCE
- /*
- ** NOTE: Windows CE is handled differently here due its lack of the Win32
- ** API UnlockFile.
- */
- return winceUnlockFile(phFile, offsetLow, offsetHigh,
- numBytesLow, numBytesHigh);
-#else
- if( osIsNT() ){
- OVERLAPPED ovlp;
- memset(&ovlp, 0, sizeof(OVERLAPPED));
- ovlp.Offset = offsetLow;
- ovlp.OffsetHigh = offsetHigh;
- return osUnlockFileEx(*phFile, 0, numBytesLow, numBytesHigh, &ovlp);
- }else{
- return osUnlockFile(*phFile, offsetLow, offsetHigh, numBytesLow,
- numBytesHigh);
- }
-#endif
-}
-
-/*****************************************************************************
-** The next group of routines implement the I/O methods specified
-** by the sqlite3_io_methods object.
-******************************************************************************/
-
-/*
-** Some Microsoft compilers lack this definition.
-*/
-#ifndef INVALID_SET_FILE_POINTER
-# define INVALID_SET_FILE_POINTER ((DWORD)-1)
-#endif
-
-/*
-** Move the current position of the file handle passed as the first
-** argument to offset iOffset within the file. If successful, return 0.
-** Otherwise, set pFile->lastErrno and return non-zero.
-*/
-static int winSeekFile(winFile *pFile, sqlite3_int64 iOffset){
-#if !SQLITE_OS_WINRT
- LONG upperBits; /* Most sig. 32 bits of new offset */
- LONG lowerBits; /* Least sig. 32 bits of new offset */
- DWORD dwRet; /* Value returned by SetFilePointer() */
- DWORD lastErrno; /* Value returned by GetLastError() */
-
- OSTRACE(("SEEK file=%p, offset=%lld\n", pFile->h, iOffset));
-
- upperBits = (LONG)((iOffset>>32) & 0x7fffffff);
- lowerBits = (LONG)(iOffset & 0xffffffff);
-
- /* API oddity: If successful, SetFilePointer() returns a dword
- ** containing the lower 32-bits of the new file-offset. Or, if it fails,
- ** it returns INVALID_SET_FILE_POINTER. However according to MSDN,
- ** INVALID_SET_FILE_POINTER may also be a valid new offset. So to determine
- ** whether an error has actually occurred, it is also necessary to call
- ** GetLastError().
- */
- dwRet = osSetFilePointer(pFile->h, lowerBits, &upperBits, FILE_BEGIN);
-
- if( (dwRet==INVALID_SET_FILE_POINTER
- && ((lastErrno = osGetLastError())!=NO_ERROR)) ){
- pFile->lastErrno = lastErrno;
- winLogError(SQLITE_IOERR_SEEK, pFile->lastErrno,
- "winSeekFile", pFile->zPath);
- OSTRACE(("SEEK file=%p, rc=SQLITE_IOERR_SEEK\n", pFile->h));
- return 1;
- }
-
- OSTRACE(("SEEK file=%p, rc=SQLITE_OK\n", pFile->h));
- return 0;
-#else
- /*
- ** Same as above, except that this implementation works for WinRT.
- */
-
- LARGE_INTEGER x; /* The new offset */
- BOOL bRet; /* Value returned by SetFilePointerEx() */
-
- x.QuadPart = iOffset;
- bRet = osSetFilePointerEx(pFile->h, x, 0, FILE_BEGIN);
-
- if(!bRet){
- pFile->lastErrno = osGetLastError();
- winLogError(SQLITE_IOERR_SEEK, pFile->lastErrno,
- "winSeekFile", pFile->zPath);
- OSTRACE(("SEEK file=%p, rc=SQLITE_IOERR_SEEK\n", pFile->h));
- return 1;
- }
-
- OSTRACE(("SEEK file=%p, rc=SQLITE_OK\n", pFile->h));
- return 0;
-#endif
-}
-
-#if SQLITE_MAX_MMAP_SIZE>0
-/* Forward references to VFS helper methods used for memory mapped files */
-static int winMapfile(winFile*, sqlite3_int64);
-static int winUnmapfile(winFile*);
-#endif
-
-/*
-** Close a file.
-**
-** It is reported that an attempt to close a handle might sometimes
-** fail. This is a very unreasonable result, but Windows is notorious
-** for being unreasonable so I do not doubt that it might happen. If
-** the close fails, we pause for 100 milliseconds and try again. As
-** many as MX_CLOSE_ATTEMPT attempts to close the handle are made before
-** giving up and returning an error.
-*/
-#define MX_CLOSE_ATTEMPT 3
-static int winClose(sqlite3_file *id){
- int rc, cnt = 0;
- winFile *pFile = (winFile*)id;
-
- assert( id!=0 );
-#ifndef SQLITE_OMIT_WAL
- assert( pFile->pShm==0 );
-#endif
- assert( pFile->h!=NULL && pFile->h!=INVALID_HANDLE_VALUE );
- OSTRACE(("CLOSE pid=%lu, pFile=%p, file=%p\n",
- osGetCurrentProcessId(), pFile, pFile->h));
-
-#if SQLITE_MAX_MMAP_SIZE>0
- winUnmapfile(pFile);
-#endif
-
- do{
- rc = osCloseHandle(pFile->h);
- /* SimulateIOError( rc=0; cnt=MX_CLOSE_ATTEMPT; ); */
- }while( rc==0 && ++cnt < MX_CLOSE_ATTEMPT && (sqlite3_win32_sleep(100), 1) );
-#if SQLITE_OS_WINCE
-#define WINCE_DELETION_ATTEMPTS 3
- {
- winVfsAppData *pAppData = (winVfsAppData*)pFile->pVfs->pAppData;
- if( pAppData==NULL || !pAppData->bNoLock ){
- winceDestroyLock(pFile);
- }
- }
- if( pFile->zDeleteOnClose ){
- int cnt = 0;
- while(
- osDeleteFileW(pFile->zDeleteOnClose)==0
- && osGetFileAttributesW(pFile->zDeleteOnClose)!=0xffffffff
- && cnt++ < WINCE_DELETION_ATTEMPTS
- ){
- sqlite3_win32_sleep(100); /* Wait a little before trying again */
- }
- sqlite3_free(pFile->zDeleteOnClose);
- }
-#endif
- if( rc ){
- pFile->h = NULL;
- }
- OpenCounter(-1);
- OSTRACE(("CLOSE pid=%lu, pFile=%p, file=%p, rc=%s\n",
- osGetCurrentProcessId(), pFile, pFile->h, rc ? "ok" : "failed"));
- return rc ? SQLITE_OK
- : winLogError(SQLITE_IOERR_CLOSE, osGetLastError(),
- "winClose", pFile->zPath);
-}
-
-/*
-** Read data from a file into a buffer. Return SQLITE_OK if all
-** bytes were read successfully and SQLITE_IOERR if anything goes
-** wrong.
-*/
-static int winRead(
- sqlite3_file *id, /* File to read from */
- void *pBuf, /* Write content into this buffer */
- int amt, /* Number of bytes to read */
- sqlite3_int64 offset /* Begin reading at this offset */
-){
-#if !SQLITE_OS_WINCE && !defined(SQLITE_WIN32_NO_OVERLAPPED)
- OVERLAPPED overlapped; /* The offset for ReadFile. */
-#endif
- winFile *pFile = (winFile*)id; /* file handle */
- DWORD nRead; /* Number of bytes actually read from file */
- int nRetry = 0; /* Number of retrys */
-
- assert( id!=0 );
- assert( amt>0 );
- assert( offset>=0 );
- SimulateIOError(return SQLITE_IOERR_READ);
- OSTRACE(("READ pid=%lu, pFile=%p, file=%p, buffer=%p, amount=%d, "
- "offset=%lld, lock=%d\n", osGetCurrentProcessId(), pFile,
- pFile->h, pBuf, amt, offset, pFile->locktype));
-
-#if SQLITE_MAX_MMAP_SIZE>0
- /* Deal with as much of this read request as possible by transfering
- ** data from the memory mapping using memcpy(). */
- if( offset