mirror of
https://github.com/caddyserver/caddy.git
synced 2024-11-23 08:51:26 +08:00
312 lines
9.7 KiB
Go
312 lines
9.7 KiB
Go
// Copyright 2015 Matthew Holt and The Caddy Authors
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package caddyhttp
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import (
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"bytes"
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"encoding/json"
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"io"
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"net"
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"net/http"
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"path"
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"path/filepath"
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"strconv"
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"strings"
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"github.com/caddyserver/caddy/v2"
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"github.com/caddyserver/caddy/v2/caddyconfig/caddyfile"
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)
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func init() {
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caddy.RegisterModule(tlsPlaceholderWrapper{})
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}
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// RequestMatcher is a type that can match to a request.
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// A route matcher MUST NOT modify the request, with the
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// only exception being its context.
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type RequestMatcher interface {
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Match(*http.Request) bool
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}
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// Handler is like http.Handler except ServeHTTP may return an error.
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//
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// If any handler encounters an error, it should be returned for proper
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// handling. Return values should be propagated down the middleware chain
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// by returning it unchanged. Returned errors should not be re-wrapped
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// if they are already HandlerError values.
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type Handler interface {
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ServeHTTP(http.ResponseWriter, *http.Request) error
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}
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// HandlerFunc is a convenience type like http.HandlerFunc.
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type HandlerFunc func(http.ResponseWriter, *http.Request) error
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// ServeHTTP implements the Handler interface.
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func (f HandlerFunc) ServeHTTP(w http.ResponseWriter, r *http.Request) error {
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return f(w, r)
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}
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// Middleware chains one Handler to the next by being passed
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// the next Handler in the chain.
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type Middleware func(Handler) Handler
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// MiddlewareHandler is like Handler except it takes as a third
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// argument the next handler in the chain. The next handler will
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// never be nil, but may be a no-op handler if this is the last
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// handler in the chain. Handlers which act as middleware should
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// call the next handler's ServeHTTP method so as to propagate
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// the request down the chain properly. Handlers which act as
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// responders (content origins) need not invoke the next handler,
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// since the last handler in the chain should be the first to
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// write the response.
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type MiddlewareHandler interface {
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ServeHTTP(http.ResponseWriter, *http.Request, Handler) error
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}
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// emptyHandler is used as a no-op handler.
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var emptyHandler Handler = HandlerFunc(func(http.ResponseWriter, *http.Request) error { return nil })
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// An implicit suffix middleware that, if reached, sets the StatusCode to the
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// error stored in the ErrorCtxKey. This is to prevent situations where the
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// Error chain does not actually handle the error (for instance, it matches only
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// on some errors). See #3053
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var errorEmptyHandler Handler = HandlerFunc(func(w http.ResponseWriter, r *http.Request) error {
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httpError := r.Context().Value(ErrorCtxKey)
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if handlerError, ok := httpError.(HandlerError); ok {
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w.WriteHeader(handlerError.StatusCode)
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} else {
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w.WriteHeader(http.StatusInternalServerError)
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}
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return nil
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})
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// ResponseHandler pairs a response matcher with custom handling
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// logic. Either the status code can be changed to something else
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// while using the original response body, or, if a status code
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// is not set, it can execute a custom route list; this is useful
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// for executing handler routes based on the properties of an HTTP
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// response that has not been written out to the client yet.
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//
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// To use this type, provision it at module load time, then when
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// ready to use, match the response against its matcher; if it
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// matches (or doesn't have a matcher), change the status code on
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// the response if configured; otherwise invoke the routes by
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// calling `rh.Routes.Compile(next).ServeHTTP(rw, req)` (or similar).
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type ResponseHandler struct {
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// The response matcher for this handler. If empty/nil,
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// it always matches.
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Match *ResponseMatcher `json:"match,omitempty"`
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// To write the original response body but with a different
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// status code, set this field to the desired status code.
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// If set, this takes priority over routes.
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StatusCode WeakString `json:"status_code,omitempty"`
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// The list of HTTP routes to execute if no status code is
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// specified. If evaluated, the original response body
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// will not be written.
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Routes RouteList `json:"routes,omitempty"`
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}
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// Provision sets up the routse in rh.
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func (rh *ResponseHandler) Provision(ctx caddy.Context) error {
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if rh.Routes != nil {
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err := rh.Routes.Provision(ctx)
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if err != nil {
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return err
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}
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}
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return nil
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}
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// WeakString is a type that unmarshals any JSON value
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// as a string literal, with the following exceptions:
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//
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// 1. actual string values are decoded as strings; and
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// 2. null is decoded as empty string;
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//
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// and provides methods for getting the value as various
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// primitive types. However, using this type removes any
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// type safety as far as deserializing JSON is concerned.
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type WeakString string
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// UnmarshalJSON satisfies json.Unmarshaler according to
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// this type's documentation.
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func (ws *WeakString) UnmarshalJSON(b []byte) error {
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if len(b) == 0 {
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return io.EOF
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}
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if b[0] == byte('"') && b[len(b)-1] == byte('"') {
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var s string
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err := json.Unmarshal(b, &s)
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if err != nil {
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return err
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}
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*ws = WeakString(s)
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return nil
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}
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if bytes.Equal(b, []byte("null")) {
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return nil
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}
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*ws = WeakString(b)
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return nil
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}
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// MarshalJSON marshals was a boolean if true or false,
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// a number if an integer, or a string otherwise.
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func (ws WeakString) MarshalJSON() ([]byte, error) {
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if ws == "true" {
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return []byte("true"), nil
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}
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if ws == "false" {
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return []byte("false"), nil
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}
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if num, err := strconv.Atoi(string(ws)); err == nil {
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return json.Marshal(num)
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}
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return json.Marshal(string(ws))
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}
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// Int returns ws as an integer. If ws is not an
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// integer, 0 is returned.
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func (ws WeakString) Int() int {
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num, _ := strconv.Atoi(string(ws))
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return num
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}
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// Float64 returns ws as a float64. If ws is not a
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// float value, the zero value is returned.
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func (ws WeakString) Float64() float64 {
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num, _ := strconv.ParseFloat(string(ws), 64)
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return num
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}
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// Bool returns ws as a boolean. If ws is not a
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// boolean, false is returned.
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func (ws WeakString) Bool() bool {
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return string(ws) == "true"
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}
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// String returns ws as a string.
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func (ws WeakString) String() string {
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return string(ws)
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}
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// StatusCodeMatches returns true if a real HTTP status code matches
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// the configured status code, which may be either a real HTTP status
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// code or an integer representing a class of codes (e.g. 4 for all
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// 4xx statuses).
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func StatusCodeMatches(actual, configured int) bool {
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if actual == configured {
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return true
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}
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if configured < 100 &&
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actual >= configured*100 &&
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actual < (configured+1)*100 {
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return true
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}
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return false
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}
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// SanitizedPathJoin performs filepath.Join(root, reqPath) that
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// is safe against directory traversal attacks. It uses logic
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// similar to that in the Go standard library, specifically
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// in the implementation of http.Dir. The root is assumed to
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// be a trusted path, but reqPath is not; and the output will
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// never be outside of root. The resulting path can be used
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// with the local file system.
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func SanitizedPathJoin(root, reqPath string) string {
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if root == "" {
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root = "."
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}
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path := filepath.Join(root, path.Clean("/"+reqPath))
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// filepath.Join also cleans the path, and cleaning strips
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// the trailing slash, so we need to re-add it afterwards.
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// if the length is 1, then it's a path to the root,
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// and that should return ".", so we don't append the separator.
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if strings.HasSuffix(reqPath, "/") && len(reqPath) > 1 {
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path += separator
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}
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return path
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}
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// CleanPath cleans path p according to path.Clean(), but only
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// merges repeated slashes if collapseSlashes is true, and always
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// preserves trailing slashes.
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func CleanPath(p string, collapseSlashes bool) string {
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if collapseSlashes {
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return cleanPath(p)
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}
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// insert an invalid/impossible URI character into each two consecutive
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// slashes to expand empty path segments; then clean the path as usual,
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// and then remove the remaining temporary characters.
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const tmpCh = 0xff
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var sb strings.Builder
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for i, ch := range p {
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if ch == '/' && i > 0 && p[i-1] == '/' {
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sb.WriteByte(tmpCh)
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}
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sb.WriteRune(ch)
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}
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halfCleaned := cleanPath(sb.String())
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halfCleaned = strings.ReplaceAll(halfCleaned, string([]byte{tmpCh}), "")
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return halfCleaned
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}
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// cleanPath does path.Clean(p) but preserves any trailing slash.
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func cleanPath(p string) string {
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cleaned := path.Clean(p)
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if cleaned != "/" && strings.HasSuffix(p, "/") {
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cleaned = cleaned + "/"
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}
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return cleaned
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}
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// tlsPlaceholderWrapper is a no-op listener wrapper that marks
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// where the TLS listener should be in a chain of listener wrappers.
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// It should only be used if another listener wrapper must be placed
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// in front of the TLS handshake.
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type tlsPlaceholderWrapper struct{}
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func (tlsPlaceholderWrapper) CaddyModule() caddy.ModuleInfo {
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return caddy.ModuleInfo{
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ID: "caddy.listeners.tls",
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New: func() caddy.Module { return new(tlsPlaceholderWrapper) },
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}
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}
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func (tlsPlaceholderWrapper) WrapListener(ln net.Listener) net.Listener { return ln }
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func (tlsPlaceholderWrapper) UnmarshalCaddyfile(d *caddyfile.Dispenser) error { return nil }
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const (
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// DefaultHTTPPort is the default port for HTTP.
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DefaultHTTPPort = 80
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// DefaultHTTPSPort is the default port for HTTPS.
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DefaultHTTPSPort = 443
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)
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const separator = string(filepath.Separator)
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// Interface guard
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var _ caddy.ListenerWrapper = (*tlsPlaceholderWrapper)(nil)
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var _ caddyfile.Unmarshaler = (*tlsPlaceholderWrapper)(nil)
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