126 lines
3.5 KiB
Go
126 lines
3.5 KiB
Go
package ingress
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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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"net"
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"net/http"
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"github.com/cloudflare/cloudflared/ipaccess"
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"github.com/cloudflare/cloudflared/socks"
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"github.com/cloudflare/cloudflared/websocket"
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gws "github.com/gorilla/websocket"
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"github.com/rs/zerolog"
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)
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// OriginConnection is a way to stream to a service running on the user's origin.
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// Different concrete implementations will stream different protocols as long as they are io.ReadWriters.
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type OriginConnection interface {
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// Stream should generally be implemented as a bidirectional io.Copy.
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Stream(ctx context.Context, tunnelConn io.ReadWriter, log *zerolog.Logger)
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Close()
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}
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type streamHandlerFunc func(originConn io.ReadWriter, remoteConn net.Conn, log *zerolog.Logger)
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// Stream copies copy data to & from provided io.ReadWriters.
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func Stream(conn, backendConn io.ReadWriter, log *zerolog.Logger) {
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proxyDone := make(chan struct{}, 2)
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go func() {
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_, err := io.Copy(conn, backendConn)
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if err != nil {
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log.Debug().Msgf("conn to backendConn copy: %v", err)
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}
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proxyDone <- struct{}{}
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}()
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go func() {
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_, err := io.Copy(backendConn, conn)
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if err != nil {
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log.Debug().Msgf("backendConn to conn copy: %v", err)
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}
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proxyDone <- struct{}{}
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}()
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// If one side is done, we are done.
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<-proxyDone
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}
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// DefaultStreamHandler is an implementation of streamHandlerFunc that
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// performs a two way io.Copy between originConn and remoteConn.
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func DefaultStreamHandler(originConn io.ReadWriter, remoteConn net.Conn, log *zerolog.Logger) {
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Stream(originConn, remoteConn, log)
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}
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// tcpConnection is an OriginConnection that directly streams to raw TCP.
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type tcpConnection struct {
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conn net.Conn
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}
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func (tc *tcpConnection) Stream(ctx context.Context, tunnelConn io.ReadWriter, log *zerolog.Logger) {
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Stream(tunnelConn, tc.conn, log)
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}
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func (tc *tcpConnection) Close() {
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tc.conn.Close()
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}
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// tcpOverWSConnection is an OriginConnection that streams to TCP over WS.
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type tcpOverWSConnection struct {
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conn net.Conn
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streamHandler streamHandlerFunc
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}
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func (wc *tcpOverWSConnection) Stream(ctx context.Context, tunnelConn io.ReadWriter, log *zerolog.Logger) {
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wc.streamHandler(websocket.NewConn(ctx, tunnelConn, log), wc.conn, log)
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}
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func (wc *tcpOverWSConnection) Close() {
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wc.conn.Close()
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}
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// wsConnection is an OriginConnection that streams WS between eyeball and origin.
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type wsConnection struct {
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wsConn *gws.Conn
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resp *http.Response
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}
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func (wsc *wsConnection) Stream(ctx context.Context, tunnelConn io.ReadWriter, log *zerolog.Logger) {
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Stream(tunnelConn, wsc.wsConn.UnderlyingConn(), log)
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}
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func (wsc *wsConnection) Close() {
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wsc.resp.Body.Close()
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wsc.wsConn.Close()
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}
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func newWSConnection(clientTLSConfig *tls.Config, r *http.Request) (OriginConnection, *http.Response, error) {
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d := &gws.Dialer{
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TLSClientConfig: clientTLSConfig,
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}
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wsConn, resp, err := websocket.ClientConnect(r, d)
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if err != nil {
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return nil, nil, err
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}
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return &wsConnection{
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wsConn,
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resp,
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}, resp, nil
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}
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// socksProxyOverWSConnection is an OriginConnection that streams SOCKS connections over WS.
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// The connection to the origin happens inside the SOCKS code as the client specifies the origin
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// details in the packet.
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type socksProxyOverWSConnection struct {
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accessPolicy *ipaccess.Policy
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}
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func (sp *socksProxyOverWSConnection) Stream(ctx context.Context, tunnelConn io.ReadWriter, log *zerolog.Logger) {
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socks.StreamNetHandler(websocket.NewConn(ctx, tunnelConn, log), sp.accessPolicy, log)
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}
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func (sp *socksProxyOverWSConnection) Close() {
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}
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