304 lines
8.3 KiB
Go
304 lines
8.3 KiB
Go
package connection
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import (
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"context"
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"fmt"
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"io"
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"net"
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"net/http"
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"runtime/debug"
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"strings"
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"sync"
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"github.com/pkg/errors"
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"github.com/rs/zerolog"
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"golang.org/x/net/http2"
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tunnelpogs "github.com/cloudflare/cloudflared/tunnelrpc/pogs"
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)
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// note: these constants are exported so we can reuse them in the edge-side code
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const (
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InternalUpgradeHeader = "Cf-Cloudflared-Proxy-Connection-Upgrade"
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InternalTCPProxySrcHeader = "Cf-Cloudflared-Proxy-Src"
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WebsocketUpgrade = "websocket"
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ControlStreamUpgrade = "control-stream"
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)
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var errEdgeConnectionClosed = fmt.Errorf("connection with edge closed")
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// HTTP2Connection represents a net.Conn that uses HTTP2 frames to proxy traffic from the edge to cloudflared on the
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// origin.
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type HTTP2Connection struct {
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conn net.Conn
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server *http2.Server
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configManager ConfigManager
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connOptions *tunnelpogs.ConnectionOptions
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observer *Observer
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connIndex uint8
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// newRPCClientFunc allows us to mock RPCs during testing
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newRPCClientFunc func(context.Context, io.ReadWriteCloser, *zerolog.Logger) NamedTunnelRPCClient
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log *zerolog.Logger
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activeRequestsWG sync.WaitGroup
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controlStreamHandler ControlStreamHandler
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stoppedGracefully bool
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controlStreamErr error // result of running control stream handler
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}
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// NewHTTP2Connection returns a new instance of HTTP2Connection.
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func NewHTTP2Connection(
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conn net.Conn,
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configManager ConfigManager,
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connOptions *tunnelpogs.ConnectionOptions,
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observer *Observer,
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connIndex uint8,
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controlStreamHandler ControlStreamHandler,
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log *zerolog.Logger,
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) *HTTP2Connection {
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return &HTTP2Connection{
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conn: conn,
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server: &http2.Server{
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MaxConcurrentStreams: MaxConcurrentStreams,
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},
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configManager: configManager,
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connOptions: connOptions,
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observer: observer,
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connIndex: connIndex,
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newRPCClientFunc: newRegistrationRPCClient,
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controlStreamHandler: controlStreamHandler,
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log: log,
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}
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}
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// Serve serves an HTTP2 server that the edge can talk to.
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func (c *HTTP2Connection) Serve(ctx context.Context) error {
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go func() {
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<-ctx.Done()
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c.close()
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}()
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c.server.ServeConn(c.conn, &http2.ServeConnOpts{
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Context: ctx,
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Handler: c,
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})
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switch {
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case c.controlStreamHandler.IsStopped():
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return nil
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case c.controlStreamErr != nil:
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return c.controlStreamErr
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default:
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c.observer.log.Info().Uint8(LogFieldConnIndex, c.connIndex).Msg("Lost connection with the edge")
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return errEdgeConnectionClosed
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}
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}
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func (c *HTTP2Connection) ServeHTTP(w http.ResponseWriter, r *http.Request) {
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c.activeRequestsWG.Add(1)
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defer c.activeRequestsWG.Done()
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connType := determineHTTP2Type(r)
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handleMissingRequestParts(connType, r)
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respWriter, err := NewHTTP2RespWriter(r, w, connType)
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if err != nil {
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c.observer.log.Error().Msg(err.Error())
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return
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}
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switch connType {
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case TypeControlStream:
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if err := c.controlStreamHandler.ServeControlStream(r.Context(), respWriter, c.connOptions); err != nil {
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c.controlStreamErr = err
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c.log.Error().Err(err)
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respWriter.WriteErrorResponse()
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}
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case TypeWebsocket, TypeHTTP:
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stripWebsocketUpgradeHeader(r)
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if err := c.configManager.GetOriginProxy().ProxyHTTP(respWriter, r, connType == TypeWebsocket); err != nil {
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err := fmt.Errorf("Failed to proxy HTTP: %w", err)
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c.log.Error().Err(err)
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respWriter.WriteErrorResponse()
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}
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case TypeTCP:
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host, err := getRequestHost(r)
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if err != nil {
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err := fmt.Errorf(`cloudflared received a warp-routing request with an empty host value: %w`, err)
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c.log.Error().Err(err)
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respWriter.WriteErrorResponse()
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}
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rws := NewHTTPResponseReadWriterAcker(respWriter, r)
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if err := c.configManager.GetOriginProxy().ProxyTCP(r.Context(), rws, &TCPRequest{
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Dest: host,
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CFRay: FindCfRayHeader(r),
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LBProbe: IsLBProbeRequest(r),
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}); err != nil {
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respWriter.WriteErrorResponse()
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}
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default:
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err := fmt.Errorf("Received unknown connection type: %s", connType)
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c.log.Error().Err(err)
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respWriter.WriteErrorResponse()
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}
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}
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func (c *HTTP2Connection) close() {
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// Wait for all serve HTTP handlers to return
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c.activeRequestsWG.Wait()
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c.conn.Close()
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}
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type http2RespWriter struct {
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r io.Reader
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w http.ResponseWriter
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flusher http.Flusher
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shouldFlush bool
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}
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func NewHTTP2RespWriter(r *http.Request, w http.ResponseWriter, connType Type) (*http2RespWriter, error) {
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flusher, isFlusher := w.(http.Flusher)
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if !isFlusher {
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respWriter := &http2RespWriter{
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r: r.Body,
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w: w,
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}
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respWriter.WriteErrorResponse()
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return nil, fmt.Errorf("%T doesn't implement http.Flusher", w)
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}
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return &http2RespWriter{
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r: r.Body,
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w: w,
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flusher: flusher,
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shouldFlush: connType.shouldFlush(),
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}, nil
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}
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func (rp *http2RespWriter) WriteRespHeaders(status int, header http.Header) error {
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dest := rp.w.Header()
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userHeaders := make(http.Header, len(header))
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for name, values := range header {
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// Since these are http2 headers, they're required to be lowercase
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h2name := strings.ToLower(name)
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if h2name == "content-length" {
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// This header has meaning in HTTP/2 and will be used by the edge,
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// so it should be sent *also* as an HTTP/2 response header.
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dest[name] = values
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}
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if !IsControlResponseHeader(h2name) || IsWebsocketClientHeader(h2name) {
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// User headers, on the other hand, must all be serialized so that
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// HTTP/2 header validation won't be applied to HTTP/1 header values
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userHeaders[name] = values
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}
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}
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// Perform user header serialization and set them in the single header
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dest.Set(CanonicalResponseUserHeaders, SerializeHeaders(userHeaders))
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rp.setResponseMetaHeader(responseMetaHeaderOrigin)
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// HTTP2 removes support for 101 Switching Protocols https://tools.ietf.org/html/rfc7540#section-8.1.1
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if status == http.StatusSwitchingProtocols {
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status = http.StatusOK
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}
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rp.w.WriteHeader(status)
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if IsServerSentEvent(header) {
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rp.shouldFlush = true
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}
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if rp.shouldFlush {
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rp.flusher.Flush()
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}
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return nil
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}
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func (rp *http2RespWriter) WriteErrorResponse() {
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rp.setResponseMetaHeader(responseMetaHeaderCfd)
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rp.w.WriteHeader(http.StatusBadGateway)
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}
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func (rp *http2RespWriter) setResponseMetaHeader(value string) {
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rp.w.Header().Set(CanonicalResponseMetaHeader, value)
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}
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func (rp *http2RespWriter) Read(p []byte) (n int, err error) {
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return rp.r.Read(p)
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}
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func (rp *http2RespWriter) Write(p []byte) (n int, err error) {
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defer func() {
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// Implementer of OriginClient should make sure it doesn't write to the connection after Proxy returns
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// Register a recover routine just in case.
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if r := recover(); r != nil {
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println(fmt.Sprintf("Recover from http2 response writer panic, error %s", debug.Stack()))
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}
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}()
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n, err = rp.w.Write(p)
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if err == nil && rp.shouldFlush {
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rp.flusher.Flush()
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}
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return n, err
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}
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func (rp *http2RespWriter) Close() error {
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return nil
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}
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func determineHTTP2Type(r *http.Request) Type {
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switch {
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case isWebsocketUpgrade(r):
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return TypeWebsocket
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case IsTCPStream(r):
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return TypeTCP
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case isControlStreamUpgrade(r):
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return TypeControlStream
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default:
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return TypeHTTP
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}
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}
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func handleMissingRequestParts(connType Type, r *http.Request) {
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if connType == TypeHTTP {
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// http library has no guarantees that we receive a filled URL. If not, then we fill it, as we reuse the request
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// for proxying. We use the same values as we used to in h2mux. For proxying they should not matter since we
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// control the dialer on every egress proxied.
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if len(r.URL.Scheme) == 0 {
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r.URL.Scheme = "http"
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}
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if len(r.URL.Host) == 0 {
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r.URL.Host = "localhost:8080"
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}
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}
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}
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func isControlStreamUpgrade(r *http.Request) bool {
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return r.Header.Get(InternalUpgradeHeader) == ControlStreamUpgrade
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}
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func isWebsocketUpgrade(r *http.Request) bool {
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return r.Header.Get(InternalUpgradeHeader) == WebsocketUpgrade
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}
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// IsTCPStream discerns if the connection request needs a tcp stream proxy.
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func IsTCPStream(r *http.Request) bool {
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return r.Header.Get(InternalTCPProxySrcHeader) != ""
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}
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func stripWebsocketUpgradeHeader(r *http.Request) {
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r.Header.Del(InternalUpgradeHeader)
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}
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// getRequestHost returns the host of the http.Request.
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func getRequestHost(r *http.Request) (string, error) {
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if r.Host != "" {
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return r.Host, nil
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}
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if r.URL != nil {
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return r.URL.Host, nil
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}
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return "", errors.New("host not set in incoming request")
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}
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