mirror of
https://github.com/autc04/Retro68.git
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317 lines
7.7 KiB
Go
317 lines
7.7 KiB
Go
// Copyright 2011 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// HTTP reverse proxy handler
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package httputil
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import (
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"io"
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"log"
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"net"
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"net/http"
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"net/url"
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"strings"
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"sync"
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"time"
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)
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// onExitFlushLoop is a callback set by tests to detect the state of the
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// flushLoop() goroutine.
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var onExitFlushLoop func()
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// ReverseProxy is an HTTP Handler that takes an incoming request and
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// sends it to another server, proxying the response back to the
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// client.
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type ReverseProxy struct {
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// Director must be a function which modifies
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// the request into a new request to be sent
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// using Transport. Its response is then copied
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// back to the original client unmodified.
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Director func(*http.Request)
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// The transport used to perform proxy requests.
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// If nil, http.DefaultTransport is used.
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Transport http.RoundTripper
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// FlushInterval specifies the flush interval
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// to flush to the client while copying the
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// response body.
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// If zero, no periodic flushing is done.
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FlushInterval time.Duration
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// ErrorLog specifies an optional logger for errors
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// that occur when attempting to proxy the request.
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// If nil, logging goes to os.Stderr via the log package's
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// standard logger.
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ErrorLog *log.Logger
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// BufferPool optionally specifies a buffer pool to
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// get byte slices for use by io.CopyBuffer when
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// copying HTTP response bodies.
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BufferPool BufferPool
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}
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// A BufferPool is an interface for getting and returning temporary
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// byte slices for use by io.CopyBuffer.
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type BufferPool interface {
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Get() []byte
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Put([]byte)
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}
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func singleJoiningSlash(a, b string) string {
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aslash := strings.HasSuffix(a, "/")
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bslash := strings.HasPrefix(b, "/")
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switch {
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case aslash && bslash:
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return a + b[1:]
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case !aslash && !bslash:
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return a + "/" + b
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}
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return a + b
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}
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// NewSingleHostReverseProxy returns a new ReverseProxy that routes
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// URLs to the scheme, host, and base path provided in target. If the
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// target's path is "/base" and the incoming request was for "/dir",
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// the target request will be for /base/dir.
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// NewSingleHostReverseProxy does not rewrite the Host header.
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// To rewrite Host headers, use ReverseProxy directly with a custom
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// Director policy.
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func NewSingleHostReverseProxy(target *url.URL) *ReverseProxy {
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targetQuery := target.RawQuery
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director := func(req *http.Request) {
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req.URL.Scheme = target.Scheme
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req.URL.Host = target.Host
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req.URL.Path = singleJoiningSlash(target.Path, req.URL.Path)
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if targetQuery == "" || req.URL.RawQuery == "" {
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req.URL.RawQuery = targetQuery + req.URL.RawQuery
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} else {
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req.URL.RawQuery = targetQuery + "&" + req.URL.RawQuery
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}
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}
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return &ReverseProxy{Director: director}
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}
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func copyHeader(dst, src http.Header) {
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for k, vv := range src {
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for _, v := range vv {
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dst.Add(k, v)
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}
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}
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}
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// Hop-by-hop headers. These are removed when sent to the backend.
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// http://www.w3.org/Protocols/rfc2616/rfc2616-sec13.html
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var hopHeaders = []string{
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"Connection",
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"Proxy-Connection", // non-standard but still sent by libcurl and rejected by e.g. google
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"Keep-Alive",
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"Proxy-Authenticate",
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"Proxy-Authorization",
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"Te", // canonicalized version of "TE"
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"Trailer", // not Trailers per URL above; http://www.rfc-editor.org/errata_search.php?eid=4522
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"Transfer-Encoding",
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"Upgrade",
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}
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type requestCanceler interface {
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CancelRequest(*http.Request)
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}
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type runOnFirstRead struct {
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io.Reader // optional; nil means empty body
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fn func() // Run before first Read, then set to nil
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}
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func (c *runOnFirstRead) Read(bs []byte) (int, error) {
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if c.fn != nil {
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c.fn()
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c.fn = nil
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}
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if c.Reader == nil {
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return 0, io.EOF
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}
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return c.Reader.Read(bs)
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}
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func (p *ReverseProxy) ServeHTTP(rw http.ResponseWriter, req *http.Request) {
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transport := p.Transport
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if transport == nil {
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transport = http.DefaultTransport
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}
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outreq := new(http.Request)
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*outreq = *req // includes shallow copies of maps, but okay
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if closeNotifier, ok := rw.(http.CloseNotifier); ok {
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if requestCanceler, ok := transport.(requestCanceler); ok {
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reqDone := make(chan struct{})
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defer close(reqDone)
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clientGone := closeNotifier.CloseNotify()
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outreq.Body = struct {
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io.Reader
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io.Closer
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}{
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Reader: &runOnFirstRead{
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Reader: outreq.Body,
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fn: func() {
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go func() {
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select {
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case <-clientGone:
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requestCanceler.CancelRequest(outreq)
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case <-reqDone:
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}
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}()
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},
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},
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Closer: outreq.Body,
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}
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}
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}
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p.Director(outreq)
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outreq.Proto = "HTTP/1.1"
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outreq.ProtoMajor = 1
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outreq.ProtoMinor = 1
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outreq.Close = false
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// Remove hop-by-hop headers to the backend. Especially
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// important is "Connection" because we want a persistent
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// connection, regardless of what the client sent to us. This
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// is modifying the same underlying map from req (shallow
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// copied above) so we only copy it if necessary.
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copiedHeaders := false
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for _, h := range hopHeaders {
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if outreq.Header.Get(h) != "" {
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if !copiedHeaders {
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outreq.Header = make(http.Header)
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copyHeader(outreq.Header, req.Header)
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copiedHeaders = true
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}
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outreq.Header.Del(h)
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}
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}
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if clientIP, _, err := net.SplitHostPort(req.RemoteAddr); err == nil {
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// If we aren't the first proxy retain prior
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// X-Forwarded-For information as a comma+space
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// separated list and fold multiple headers into one.
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if prior, ok := outreq.Header["X-Forwarded-For"]; ok {
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clientIP = strings.Join(prior, ", ") + ", " + clientIP
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}
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outreq.Header.Set("X-Forwarded-For", clientIP)
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}
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res, err := transport.RoundTrip(outreq)
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if err != nil {
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p.logf("http: proxy error: %v", err)
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rw.WriteHeader(http.StatusInternalServerError)
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return
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}
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for _, h := range hopHeaders {
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res.Header.Del(h)
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}
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copyHeader(rw.Header(), res.Header)
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// The "Trailer" header isn't included in the Transport's response,
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// at least for *http.Transport. Build it up from Trailer.
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if len(res.Trailer) > 0 {
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var trailerKeys []string
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for k := range res.Trailer {
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trailerKeys = append(trailerKeys, k)
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}
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rw.Header().Add("Trailer", strings.Join(trailerKeys, ", "))
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}
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rw.WriteHeader(res.StatusCode)
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if len(res.Trailer) > 0 {
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// Force chunking if we saw a response trailer.
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// This prevents net/http from calculating the length for short
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// bodies and adding a Content-Length.
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if fl, ok := rw.(http.Flusher); ok {
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fl.Flush()
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}
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}
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p.copyResponse(rw, res.Body)
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res.Body.Close() // close now, instead of defer, to populate res.Trailer
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copyHeader(rw.Header(), res.Trailer)
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}
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func (p *ReverseProxy) copyResponse(dst io.Writer, src io.Reader) {
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if p.FlushInterval != 0 {
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if wf, ok := dst.(writeFlusher); ok {
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mlw := &maxLatencyWriter{
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dst: wf,
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latency: p.FlushInterval,
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done: make(chan bool),
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}
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go mlw.flushLoop()
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defer mlw.stop()
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dst = mlw
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}
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}
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var buf []byte
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if p.BufferPool != nil {
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buf = p.BufferPool.Get()
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}
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io.CopyBuffer(dst, src, buf)
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if p.BufferPool != nil {
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p.BufferPool.Put(buf)
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}
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}
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func (p *ReverseProxy) logf(format string, args ...interface{}) {
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if p.ErrorLog != nil {
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p.ErrorLog.Printf(format, args...)
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} else {
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log.Printf(format, args...)
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}
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}
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type writeFlusher interface {
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io.Writer
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http.Flusher
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}
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type maxLatencyWriter struct {
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dst writeFlusher
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latency time.Duration
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lk sync.Mutex // protects Write + Flush
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done chan bool
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}
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func (m *maxLatencyWriter) Write(p []byte) (int, error) {
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m.lk.Lock()
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defer m.lk.Unlock()
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return m.dst.Write(p)
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}
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func (m *maxLatencyWriter) flushLoop() {
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t := time.NewTicker(m.latency)
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defer t.Stop()
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for {
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select {
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case <-m.done:
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if onExitFlushLoop != nil {
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onExitFlushLoop()
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}
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return
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case <-t.C:
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m.lk.Lock()
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m.dst.Flush()
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m.lk.Unlock()
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}
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}
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}
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func (m *maxLatencyWriter) stop() { m.done <- true }
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