forked from mirror/gin
498 lines
15 KiB
Go
498 lines
15 KiB
Go
// Copyright 2014 Manu Martinez-Almeida. All rights reserved.
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// Use of this source code is governed by a MIT style
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// license that can be found in the LICENSE file.
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package gin
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import (
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"fmt"
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"html/template"
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"net"
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"net/http"
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"os"
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"path"
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"sync"
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"github.com/gin-gonic/gin/internal/bytesconv"
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"github.com/gin-gonic/gin/render"
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)
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const defaultMultipartMemory = 32 << 20 // 32 MB
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var (
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default404Body = []byte("404 page not found")
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default405Body = []byte("405 method not allowed")
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defaultAppEngine bool
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)
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// HandlerFunc defines the handler used by gin middleware as return value.
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type HandlerFunc func(*Context)
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// HandlersChain defines a HandlerFunc array.
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type HandlersChain []HandlerFunc
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// Last returns the last handler in the chain. ie. the last handler is the main one.
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func (c HandlersChain) Last() HandlerFunc {
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if length := len(c); length > 0 {
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return c[length-1]
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}
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return nil
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}
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// RouteInfo represents a request route's specification which contains method and path and its handler.
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type RouteInfo struct {
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Method string
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Path string
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Handler string
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HandlerFunc HandlerFunc
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}
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// RoutesInfo defines a RouteInfo array.
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type RoutesInfo []RouteInfo
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// Engine is the framework's instance, it contains the muxer, middleware and configuration settings.
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// Create an instance of Engine, by using New() or Default()
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type Engine struct {
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RouterGroup
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// Enables automatic redirection if the current route can't be matched but a
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// handler for the path with (without) the trailing slash exists.
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// For example if /foo/ is requested but a route only exists for /foo, the
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// client is redirected to /foo with http status code 301 for GET requests
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// and 307 for all other request methods.
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RedirectTrailingSlash bool
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// If enabled, the router tries to fix the current request path, if no
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// handle is registered for it.
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// First superfluous path elements like ../ or // are removed.
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// Afterwards the router does a case-insensitive lookup of the cleaned path.
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// If a handle can be found for this route, the router makes a redirection
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// to the corrected path with status code 301 for GET requests and 307 for
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// all other request methods.
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// For example /FOO and /..//Foo could be redirected to /foo.
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// RedirectTrailingSlash is independent of this option.
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RedirectFixedPath bool
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// If enabled, the router checks if another method is allowed for the
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// current route, if the current request can not be routed.
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// If this is the case, the request is answered with 'Method Not Allowed'
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// and HTTP status code 405.
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// If no other Method is allowed, the request is delegated to the NotFound
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// handler.
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HandleMethodNotAllowed bool
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ForwardedByClientIP bool
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// #726 #755 If enabled, it will thrust some headers starting with
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// 'X-AppEngine...' for better integration with that PaaS.
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AppEngine bool
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// If enabled, the url.RawPath will be used to find parameters.
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UseRawPath bool
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// If true, the path value will be unescaped.
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// If UseRawPath is false (by default), the UnescapePathValues effectively is true,
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// as url.Path gonna be used, which is already unescaped.
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UnescapePathValues bool
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// Value of 'maxMemory' param that is given to http.Request's ParseMultipartForm
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// method call.
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MaxMultipartMemory int64
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// RemoveExtraSlash a parameter can be parsed from the URL even with extra slashes.
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// See the PR #1817 and issue #1644
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RemoveExtraSlash bool
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delims render.Delims
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secureJsonPrefix string
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HTMLRender render.HTMLRender
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FuncMap template.FuncMap
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allNoRoute HandlersChain
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allNoMethod HandlersChain
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noRoute HandlersChain
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noMethod HandlersChain
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pool sync.Pool
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trees methodTrees
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}
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var _ IRouter = &Engine{}
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// New returns a new blank Engine instance without any middleware attached.
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// By default the configuration is:
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// - RedirectTrailingSlash: true
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// - RedirectFixedPath: false
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// - HandleMethodNotAllowed: false
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// - ForwardedByClientIP: true
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// - UseRawPath: false
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// - UnescapePathValues: true
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func New() *Engine {
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debugPrintWARNINGNew()
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engine := &Engine{
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RouterGroup: RouterGroup{
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Handlers: nil,
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basePath: "/",
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root: true,
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},
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FuncMap: template.FuncMap{},
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RedirectTrailingSlash: true,
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RedirectFixedPath: false,
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HandleMethodNotAllowed: false,
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ForwardedByClientIP: true,
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AppEngine: defaultAppEngine,
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UseRawPath: false,
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RemoveExtraSlash: false,
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UnescapePathValues: true,
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MaxMultipartMemory: defaultMultipartMemory,
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trees: make(methodTrees, 0, 9),
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delims: render.Delims{Left: "{{", Right: "}}"},
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secureJsonPrefix: "while(1);",
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}
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engine.RouterGroup.engine = engine
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engine.pool.New = func() interface{} {
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return engine.allocateContext()
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}
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return engine
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}
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// Default returns an Engine instance with the Logger and Recovery middleware already attached.
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func Default() *Engine {
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debugPrintWARNINGDefault()
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engine := New()
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engine.Use(Logger(), Recovery())
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return engine
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}
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func (engine *Engine) allocateContext() *Context {
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return &Context{engine: engine, KeysMutex: &sync.RWMutex{}}
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}
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// Delims sets template left and right delims and returns a Engine instance.
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func (engine *Engine) Delims(left, right string) *Engine {
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engine.delims = render.Delims{Left: left, Right: right}
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return engine
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}
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// SecureJsonPrefix sets the secureJsonPrefix used in Context.SecureJSON.
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func (engine *Engine) SecureJsonPrefix(prefix string) *Engine {
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engine.secureJsonPrefix = prefix
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return engine
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}
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// LoadHTMLGlob loads HTML files identified by glob pattern
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// and associates the result with HTML renderer.
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func (engine *Engine) LoadHTMLGlob(pattern string) {
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left := engine.delims.Left
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right := engine.delims.Right
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templ := template.Must(template.New("").Delims(left, right).Funcs(engine.FuncMap).ParseGlob(pattern))
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if IsDebugging() {
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debugPrintLoadTemplate(templ)
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engine.HTMLRender = render.HTMLDebug{Glob: pattern, FuncMap: engine.FuncMap, Delims: engine.delims}
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return
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}
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engine.SetHTMLTemplate(templ)
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}
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// LoadHTMLFiles loads a slice of HTML files
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// and associates the result with HTML renderer.
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func (engine *Engine) LoadHTMLFiles(files ...string) {
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if IsDebugging() {
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engine.HTMLRender = render.HTMLDebug{Files: files, FuncMap: engine.FuncMap, Delims: engine.delims}
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return
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}
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templ := template.Must(template.New("").Delims(engine.delims.Left, engine.delims.Right).Funcs(engine.FuncMap).ParseFiles(files...))
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engine.SetHTMLTemplate(templ)
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}
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// SetHTMLTemplate associate a template with HTML renderer.
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func (engine *Engine) SetHTMLTemplate(templ *template.Template) {
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if len(engine.trees) > 0 {
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debugPrintWARNINGSetHTMLTemplate()
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}
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engine.HTMLRender = render.HTMLProduction{Template: templ.Funcs(engine.FuncMap)}
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}
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// SetFuncMap sets the FuncMap used for template.FuncMap.
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func (engine *Engine) SetFuncMap(funcMap template.FuncMap) {
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engine.FuncMap = funcMap
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}
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// NoRoute adds handlers for NoRoute. It return a 404 code by default.
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func (engine *Engine) NoRoute(handlers ...HandlerFunc) {
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engine.noRoute = handlers
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engine.rebuild404Handlers()
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}
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// NoMethod sets the handlers called when... TODO.
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func (engine *Engine) NoMethod(handlers ...HandlerFunc) {
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engine.noMethod = handlers
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engine.rebuild405Handlers()
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}
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// Use attaches a global middleware to the router. ie. the middleware attached though Use() will be
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// included in the handlers chain for every single request. Even 404, 405, static files...
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// For example, this is the right place for a logger or error management middleware.
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func (engine *Engine) Use(middleware ...HandlerFunc) IRoutes {
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engine.RouterGroup.Use(middleware...)
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engine.rebuild404Handlers()
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engine.rebuild405Handlers()
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return engine
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}
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func (engine *Engine) rebuild404Handlers() {
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engine.allNoRoute = engine.combineHandlers(engine.noRoute)
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}
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func (engine *Engine) rebuild405Handlers() {
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engine.allNoMethod = engine.combineHandlers(engine.noMethod)
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}
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func (engine *Engine) addRoute(method, path string, handlers HandlersChain) {
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assert1(path[0] == '/', "path must begin with '/'")
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assert1(method != "", "HTTP method can not be empty")
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assert1(len(handlers) > 0, "there must be at least one handler")
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debugPrintRoute(method, path, handlers)
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root := engine.trees.get(method)
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if root == nil {
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root = new(node)
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root.fullPath = "/"
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engine.trees = append(engine.trees, methodTree{method: method, root: root})
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}
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root.addRoute(path, handlers)
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}
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// Routes returns a slice of registered routes, including some useful information, such as:
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// the http method, path and the handler name.
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func (engine *Engine) Routes() (routes RoutesInfo) {
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for _, tree := range engine.trees {
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routes = iterate("", tree.method, routes, tree.root)
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}
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return routes
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}
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func iterate(path, method string, routes RoutesInfo, root *node) RoutesInfo {
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path += root.path
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if len(root.handlers) > 0 {
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handlerFunc := root.handlers.Last()
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routes = append(routes, RouteInfo{
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Method: method,
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Path: path,
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Handler: nameOfFunction(handlerFunc),
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HandlerFunc: handlerFunc,
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})
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}
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for _, child := range root.children {
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routes = iterate(path, method, routes, child)
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}
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return routes
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}
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// Run attaches the router to a http.Server and starts listening and serving HTTP requests.
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// It is a shortcut for http.ListenAndServe(addr, router)
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// Note: this method will block the calling goroutine indefinitely unless an error happens.
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func (engine *Engine) Run(addr ...string) (err error) {
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defer func() { debugPrintError(err) }()
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address := resolveAddress(addr)
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debugPrint("Listening and serving HTTP on %s\n", address)
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err = http.ListenAndServe(address, engine)
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return
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}
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// RunTLS attaches the router to a http.Server and starts listening and serving HTTPS (secure) requests.
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// It is a shortcut for http.ListenAndServeTLS(addr, certFile, keyFile, router)
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// Note: this method will block the calling goroutine indefinitely unless an error happens.
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func (engine *Engine) RunTLS(addr, certFile, keyFile string) (err error) {
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debugPrint("Listening and serving HTTPS on %s\n", addr)
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defer func() { debugPrintError(err) }()
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err = http.ListenAndServeTLS(addr, certFile, keyFile, engine)
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return
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}
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// RunUnix attaches the router to a http.Server and starts listening and serving HTTP requests
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// through the specified unix socket (ie. a file).
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// Note: this method will block the calling goroutine indefinitely unless an error happens.
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func (engine *Engine) RunUnix(file string) (err error) {
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debugPrint("Listening and serving HTTP on unix:/%s", file)
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defer func() { debugPrintError(err) }()
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listener, err := net.Listen("unix", file)
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if err != nil {
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return
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}
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defer listener.Close()
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defer os.Remove(file)
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err = http.Serve(listener, engine)
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return
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}
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// RunFd attaches the router to a http.Server and starts listening and serving HTTP requests
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// through the specified file descriptor.
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// Note: this method will block the calling goroutine indefinitely unless an error happens.
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func (engine *Engine) RunFd(fd int) (err error) {
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debugPrint("Listening and serving HTTP on fd@%d", fd)
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defer func() { debugPrintError(err) }()
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f := os.NewFile(uintptr(fd), fmt.Sprintf("fd@%d", fd))
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listener, err := net.FileListener(f)
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if err != nil {
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return
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}
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defer listener.Close()
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err = engine.RunListener(listener)
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return
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}
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// RunListener attaches the router to a http.Server and starts listening and serving HTTP requests
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// through the specified net.Listener
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func (engine *Engine) RunListener(listener net.Listener) (err error) {
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debugPrint("Listening and serving HTTP on listener what's bind with address@%s", listener.Addr())
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defer func() { debugPrintError(err) }()
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err = http.Serve(listener, engine)
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return
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}
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// ServeHTTP conforms to the http.Handler interface.
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func (engine *Engine) ServeHTTP(w http.ResponseWriter, req *http.Request) {
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c := engine.pool.Get().(*Context)
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c.writermem.reset(w)
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c.Request = req
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c.reset()
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engine.handleHTTPRequest(c)
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engine.pool.Put(c)
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}
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// HandleContext re-enter a context that has been rewritten.
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// This can be done by setting c.Request.URL.Path to your new target.
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// Disclaimer: You can loop yourself to death with this, use wisely.
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func (engine *Engine) HandleContext(c *Context) {
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oldIndexValue := c.index
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c.reset()
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engine.handleHTTPRequest(c)
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c.index = oldIndexValue
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}
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func (engine *Engine) handleHTTPRequest(c *Context) {
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httpMethod := c.Request.Method
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rPath := c.Request.URL.Path
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unescape := false
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if engine.UseRawPath && len(c.Request.URL.RawPath) > 0 {
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rPath = c.Request.URL.RawPath
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unescape = engine.UnescapePathValues
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}
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if engine.RemoveExtraSlash {
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rPath = cleanPath(rPath)
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}
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// Find root of the tree for the given HTTP method
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t := engine.trees
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for i, tl := 0, len(t); i < tl; i++ {
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if t[i].method != httpMethod {
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continue
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}
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root := t[i].root
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// Find route in tree
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value := root.getValue(rPath, c.Params, unescape)
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if value.handlers != nil {
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c.handlers = value.handlers
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c.Params = value.params
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c.fullPath = value.fullPath
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c.Next()
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c.writermem.WriteHeaderNow()
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return
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}
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if httpMethod != "CONNECT" && rPath != "/" {
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if value.tsr && engine.RedirectTrailingSlash {
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redirectTrailingSlash(c)
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return
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}
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if engine.RedirectFixedPath && redirectFixedPath(c, root, engine.RedirectFixedPath) {
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return
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}
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}
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break
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}
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if engine.HandleMethodNotAllowed {
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for _, tree := range engine.trees {
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if tree.method == httpMethod {
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continue
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}
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if value := tree.root.getValue(rPath, nil, unescape); value.handlers != nil {
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c.handlers = engine.allNoMethod
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serveError(c, http.StatusMethodNotAllowed, default405Body)
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return
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}
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}
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}
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c.handlers = engine.allNoRoute
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serveError(c, http.StatusNotFound, default404Body)
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}
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var mimePlain = []string{MIMEPlain}
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func serveError(c *Context, code int, defaultMessage []byte) {
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c.writermem.status = code
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c.Next()
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if c.writermem.Written() {
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return
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}
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if c.writermem.Status() == code {
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c.writermem.Header()["Content-Type"] = mimePlain
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_, err := c.Writer.Write(defaultMessage)
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if err != nil {
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debugPrint("cannot write message to writer during serve error: %v", err)
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}
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return
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}
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c.writermem.WriteHeaderNow()
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}
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func redirectTrailingSlash(c *Context) {
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req := c.Request
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p := req.URL.Path
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if prefix := path.Clean(c.Request.Header.Get("X-Forwarded-Prefix")); prefix != "." {
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p = prefix + "/" + req.URL.Path
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}
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req.URL.Path = p + "/"
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if length := len(p); length > 1 && p[length-1] == '/' {
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req.URL.Path = p[:length-1]
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}
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redirectRequest(c)
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}
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func redirectFixedPath(c *Context, root *node, trailingSlash bool) bool {
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req := c.Request
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rPath := req.URL.Path
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if fixedPath, ok := root.findCaseInsensitivePath(cleanPath(rPath), trailingSlash); ok {
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req.URL.Path = bytesconv.BytesToString(fixedPath)
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redirectRequest(c)
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return true
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}
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return false
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}
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func redirectRequest(c *Context) {
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req := c.Request
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rPath := req.URL.Path
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rURL := req.URL.String()
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code := http.StatusMovedPermanently // Permanent redirect, request with GET method
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if req.Method != http.MethodGet {
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code = http.StatusTemporaryRedirect
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}
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debugPrint("redirecting request %d: %s --> %s", code, rPath, rURL)
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http.Redirect(c.Writer, req, rURL, code)
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c.writermem.WriteHeaderNow()
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}
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