mirror of https://github.com/XTLS/Xray-core
389 lines
11 KiB
Go
389 lines
11 KiB
Go
package splithttp
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import (
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"context"
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"crypto/tls"
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"io"
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gonet "net"
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"net/http"
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"strconv"
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"strings"
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"sync"
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"time"
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"github.com/quic-go/quic-go"
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"github.com/quic-go/quic-go/http3"
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"github.com/xtls/xray-core/common"
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"github.com/xtls/xray-core/common/errors"
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"github.com/xtls/xray-core/common/net"
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http_proto "github.com/xtls/xray-core/common/protocol/http"
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"github.com/xtls/xray-core/common/signal/done"
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"github.com/xtls/xray-core/transport/internet"
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"github.com/xtls/xray-core/transport/internet/stat"
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v2tls "github.com/xtls/xray-core/transport/internet/tls"
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"golang.org/x/net/http2"
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"golang.org/x/net/http2/h2c"
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)
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type requestHandler struct {
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config *Config
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host string
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path string
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ln *Listener
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sessionMu *sync.Mutex
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sessions sync.Map
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localAddr gonet.TCPAddr
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}
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type httpSession struct {
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uploadQueue *uploadQueue
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// for as long as the GET request is not opened by the client, this will be
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// open ("undone"), and the session may be expired within a certain TTL.
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// after the client connects, this becomes "done" and the session lives as
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// long as the GET request.
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isFullyConnected *done.Instance
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}
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func (h *requestHandler) maybeReapSession(isFullyConnected *done.Instance, sessionId string) {
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shouldReap := done.New()
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go func() {
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time.Sleep(30 * time.Second)
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shouldReap.Close()
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}()
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select {
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case <-isFullyConnected.Wait():
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return
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case <-shouldReap.Wait():
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h.sessions.Delete(sessionId)
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}
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}
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func (h *requestHandler) upsertSession(sessionId string) *httpSession {
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// fast path
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currentSessionAny, ok := h.sessions.Load(sessionId)
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if ok {
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return currentSessionAny.(*httpSession)
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}
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// slow path
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h.sessionMu.Lock()
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defer h.sessionMu.Unlock()
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currentSessionAny, ok = h.sessions.Load(sessionId)
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if ok {
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return currentSessionAny.(*httpSession)
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}
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s := &httpSession{
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uploadQueue: NewUploadQueue(int(h.ln.config.GetNormalizedScMaxConcurrentPosts().To)),
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isFullyConnected: done.New(),
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}
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h.sessions.Store(sessionId, s)
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go h.maybeReapSession(s.isFullyConnected, sessionId)
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return s
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}
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func (h *requestHandler) ServeHTTP(writer http.ResponseWriter, request *http.Request) {
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if len(h.host) > 0 && !internet.IsValidHTTPHost(request.Host, h.host) {
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errors.LogInfo(context.Background(), "failed to validate host, request:", request.Host, ", config:", h.host)
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writer.WriteHeader(http.StatusNotFound)
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return
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}
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if !strings.HasPrefix(request.URL.Path, h.path) {
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errors.LogInfo(context.Background(), "failed to validate path, request:", request.URL.Path, ", config:", h.path)
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writer.WriteHeader(http.StatusNotFound)
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return
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}
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sessionId := ""
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subpath := strings.Split(request.URL.Path[len(h.path):], "/")
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if len(subpath) > 0 {
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sessionId = subpath[0]
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}
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if sessionId == "" {
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errors.LogInfo(context.Background(), "no sessionid on request:", request.URL.Path)
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writer.WriteHeader(http.StatusBadRequest)
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return
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}
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forwardedAddrs := http_proto.ParseXForwardedFor(request.Header)
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remoteAddr, err := gonet.ResolveTCPAddr("tcp", request.RemoteAddr)
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if err != nil {
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remoteAddr = &gonet.TCPAddr{}
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}
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if len(forwardedAddrs) > 0 && forwardedAddrs[0].Family().IsIP() {
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remoteAddr = &net.TCPAddr{
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IP: forwardedAddrs[0].IP(),
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Port: int(0),
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}
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}
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currentSession := h.upsertSession(sessionId)
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scMaxEachPostBytes := int(h.ln.config.GetNormalizedScMaxEachPostBytes().To)
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responseOkPadding := h.ln.config.GetNormalizedResponseOkPadding()
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if request.Method == "POST" {
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seq := ""
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if len(subpath) > 1 {
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seq = subpath[1]
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}
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if seq == "" {
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errors.LogInfo(context.Background(), "no seq on request:", request.URL.Path)
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writer.WriteHeader(http.StatusBadRequest)
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return
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}
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payload, err := io.ReadAll(request.Body)
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if len(payload) > scMaxEachPostBytes {
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errors.LogInfo(context.Background(), "Too large upload. scMaxEachPostBytes is set to ", scMaxEachPostBytes, "but request had size ", len(payload), ". Adjust scMaxEachPostBytes on the server to be at least as large as client.")
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writer.WriteHeader(http.StatusRequestEntityTooLarge)
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return
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}
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if err != nil {
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errors.LogInfoInner(context.Background(), err, "failed to upload")
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writer.WriteHeader(http.StatusInternalServerError)
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return
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}
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seqInt, err := strconv.ParseUint(seq, 10, 64)
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if err != nil {
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errors.LogInfoInner(context.Background(), err, "failed to upload")
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writer.WriteHeader(http.StatusInternalServerError)
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return
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}
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err = currentSession.uploadQueue.Push(Packet{
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Payload: payload,
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Seq: seqInt,
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})
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if err != nil {
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errors.LogInfoInner(context.Background(), err, "failed to upload")
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writer.WriteHeader(http.StatusInternalServerError)
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return
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}
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writer.WriteHeader(http.StatusOK)
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} else if request.Method == "GET" {
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responseFlusher, ok := writer.(http.Flusher)
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if !ok {
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panic("expected http.ResponseWriter to be an http.Flusher")
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}
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// after GET is done, the connection is finished. disable automatic
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// session reaping, and handle it in defer
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currentSession.isFullyConnected.Close()
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defer h.sessions.Delete(sessionId)
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// magic header instructs nginx + apache to not buffer response body
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writer.Header().Set("X-Accel-Buffering", "no")
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if !h.config.NoSSEHeader {
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// magic header to make the HTTP middle box consider this as SSE to disable buffer
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writer.Header().Set("Content-Type", "text/event-stream")
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}
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writer.WriteHeader(http.StatusOK)
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// send a chunk immediately to enable CDN streaming.
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// many CDN buffer the response headers until the origin starts sending
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// the body, with no way to turn it off.
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padding := int(responseOkPadding.roll())
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for i := 0; i < padding; i++ {
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writer.Write([]byte("o"))
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}
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writer.Write([]byte("ok"))
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responseFlusher.Flush()
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downloadDone := done.New()
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conn := splitConn{
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writer: &httpResponseBodyWriter{
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responseWriter: writer,
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downloadDone: downloadDone,
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responseFlusher: responseFlusher,
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},
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reader: currentSession.uploadQueue,
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remoteAddr: remoteAddr,
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}
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h.ln.addConn(stat.Connection(&conn))
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// "A ResponseWriter may not be used after [Handler.ServeHTTP] has returned."
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<-downloadDone.Wait()
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} else {
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writer.WriteHeader(http.StatusMethodNotAllowed)
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}
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}
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type httpResponseBodyWriter struct {
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sync.Mutex
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responseWriter http.ResponseWriter
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responseFlusher http.Flusher
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downloadDone *done.Instance
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}
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func (c *httpResponseBodyWriter) Write(b []byte) (int, error) {
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c.Lock()
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defer c.Unlock()
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if c.downloadDone.Done() {
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return 0, io.ErrClosedPipe
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}
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n, err := c.responseWriter.Write(b)
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if err == nil {
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c.responseFlusher.Flush()
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}
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return n, err
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}
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func (c *httpResponseBodyWriter) Close() error {
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c.Lock()
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defer c.Unlock()
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c.downloadDone.Close()
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return nil
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}
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type Listener struct {
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sync.Mutex
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server http.Server
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h3server *http3.Server
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listener net.Listener
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h3listener *quic.EarlyListener
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config *Config
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addConn internet.ConnHandler
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isH3 bool
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}
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func ListenSH(ctx context.Context, address net.Address, port net.Port, streamSettings *internet.MemoryStreamConfig, addConn internet.ConnHandler) (internet.Listener, error) {
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l := &Listener{
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addConn: addConn,
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}
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shSettings := streamSettings.ProtocolSettings.(*Config)
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l.config = shSettings
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if l.config != nil {
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if streamSettings.SocketSettings == nil {
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streamSettings.SocketSettings = &internet.SocketConfig{}
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}
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}
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var listener net.Listener
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var err error
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var localAddr = gonet.TCPAddr{}
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handler := &requestHandler{
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config: shSettings,
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host: shSettings.Host,
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path: shSettings.GetNormalizedPath("", false),
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ln: l,
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sessionMu: &sync.Mutex{},
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sessions: sync.Map{},
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localAddr: localAddr,
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}
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tlsConfig := getTLSConfig(streamSettings)
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l.isH3 = len(tlsConfig.NextProtos) == 1 && tlsConfig.NextProtos[0] == "h3"
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if port == net.Port(0) { // unix
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listener, err = internet.ListenSystem(ctx, &net.UnixAddr{
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Name: address.Domain(),
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Net: "unix",
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}, streamSettings.SocketSettings)
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if err != nil {
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return nil, errors.New("failed to listen unix domain socket(for SH) on ", address).Base(err)
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}
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errors.LogInfo(ctx, "listening unix domain socket(for SH) on ", address)
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} else if l.isH3 { // quic
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Conn, err := internet.ListenSystemPacket(context.Background(), &net.UDPAddr{
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IP: address.IP(),
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Port: int(port),
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}, streamSettings.SocketSettings)
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if err != nil {
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return nil, errors.New("failed to listen UDP(for SH3) on ", address, ":", port).Base(err)
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}
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h3listener, err := quic.ListenEarly(Conn, tlsConfig, nil)
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if err != nil {
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return nil, errors.New("failed to listen QUIC(for SH3) on ", address, ":", port).Base(err)
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}
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l.h3listener = h3listener
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errors.LogInfo(ctx, "listening QUIC(for SH3) on ", address, ":", port)
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l.h3server = &http3.Server{
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Handler: handler,
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}
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go func() {
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if err := l.h3server.ServeListener(l.h3listener); err != nil {
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errors.LogWarningInner(ctx, err, "failed to serve http3 for splithttp")
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}
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}()
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} else { // tcp
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localAddr = gonet.TCPAddr{
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IP: address.IP(),
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Port: int(port),
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}
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listener, err = internet.ListenSystem(ctx, &net.TCPAddr{
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IP: address.IP(),
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Port: int(port),
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}, streamSettings.SocketSettings)
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if err != nil {
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return nil, errors.New("failed to listen TCP(for SH) on ", address, ":", port).Base(err)
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}
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errors.LogInfo(ctx, "listening TCP(for SH) on ", address, ":", port)
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}
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// tcp/unix (h1/h2)
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if listener != nil {
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if config := v2tls.ConfigFromStreamSettings(streamSettings); config != nil {
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if tlsConfig := config.GetTLSConfig(); tlsConfig != nil {
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listener = tls.NewListener(listener, tlsConfig)
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}
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}
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// h2cHandler can handle both plaintext HTTP/1.1 and h2c
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h2cHandler := h2c.NewHandler(handler, &http2.Server{})
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l.listener = listener
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l.server = http.Server{
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Handler: h2cHandler,
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ReadHeaderTimeout: time.Second * 4,
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MaxHeaderBytes: 8192,
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}
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go func() {
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if err := l.server.Serve(l.listener); err != nil {
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errors.LogWarningInner(ctx, err, "failed to serve http for splithttp")
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}
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}()
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}
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return l, err
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}
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// Addr implements net.Listener.Addr().
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func (ln *Listener) Addr() net.Addr {
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return ln.listener.Addr()
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}
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// Close implements net.Listener.Close().
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func (ln *Listener) Close() error {
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if ln.h3server != nil {
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if err := ln.h3server.Close(); err != nil {
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return err
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}
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} else if ln.listener != nil {
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return ln.listener.Close()
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}
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return errors.New("listener does not have an HTTP/3 server or a net.listener")
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}
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func getTLSConfig(streamSettings *internet.MemoryStreamConfig) *tls.Config {
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config := v2tls.ConfigFromStreamSettings(streamSettings)
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if config == nil {
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return &tls.Config{}
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}
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return config.GetTLSConfig()
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}
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func init() {
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common.Must(internet.RegisterTransportListener(protocolName, ListenSH))
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}
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