mirror of
https://gitlab.torproject.org/tpo/anti-censorship/pluggable-transports/snowflake.git
synced 2025-10-14 14:11:23 -04:00
Include answer channel as part of the webRTCConn struct (#12)
This commit is contained in:
parent
e35687b587
commit
a1b7e01c54
2 changed files with 52 additions and 30 deletions
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@ -2,6 +2,7 @@ package main
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import (
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import (
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"bytes"
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"bytes"
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"github.com/keroserene/go-webrtc"
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. "github.com/smartystreets/goconvey/convey"
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. "github.com/smartystreets/goconvey/convey"
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"testing"
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"testing"
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)
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)
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@ -41,8 +42,9 @@ func TestConnect(t *testing.T) {
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Convey("Receive answer fails on nil answer", func() {
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Convey("Receive answer fails on nil answer", func() {
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c.reset = make(chan struct{})
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c.reset = make(chan struct{})
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c.answerChannel = make(chan *webrtc.SessionDescription)
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c.ReceiveAnswer()
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c.ReceiveAnswer()
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answerChannel <- nil
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c.answerChannel <- nil
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<-c.reset
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<-c.reset
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})
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})
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@ -28,7 +28,6 @@ var frontDomain string
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// When a connection handler starts, +1 is written to this channel; when it
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// When a connection handler starts, +1 is written to this channel; when it
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// ends, -1 is written.
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// ends, -1 is written.
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var handlerChan = make(chan int)
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var handlerChan = make(chan int)
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var answerChannel = make(chan *webrtc.SessionDescription)
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const (
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const (
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ReconnectTimeout = 5
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ReconnectTimeout = 5
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@ -37,7 +36,6 @@ const (
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func copyLoop(a, b net.Conn) {
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func copyLoop(a, b net.Conn) {
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var wg sync.WaitGroup
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var wg sync.WaitGroup
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wg.Add(2)
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wg.Add(2)
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go func() {
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go func() {
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io.Copy(b, a)
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io.Copy(b, a)
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wg.Done()
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wg.Done()
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@ -46,8 +44,8 @@ func copyLoop(a, b net.Conn) {
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io.Copy(a, b)
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io.Copy(a, b)
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wg.Done()
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wg.Done()
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}()
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}()
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wg.Wait()
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wg.Wait()
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log.Println("copy loop ended")
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}
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}
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// Interface that matches both webrc.DataChannel and for testing.
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// Interface that matches both webrc.DataChannel and for testing.
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@ -58,16 +56,17 @@ type SnowflakeChannel interface {
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// Implements net.Conn interface
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// Implements net.Conn interface
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type webRTCConn struct {
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type webRTCConn struct {
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config *webrtc.Configuration
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config *webrtc.Configuration
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pc *webrtc.PeerConnection
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pc *webrtc.PeerConnection
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snowflake SnowflakeChannel // Interface holding the WebRTC DataChannel.
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snowflake SnowflakeChannel // Interface holding the WebRTC DataChannel.
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broker *BrokerChannel
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broker *BrokerChannel
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offerChannel chan *webrtc.SessionDescription
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offerChannel chan *webrtc.SessionDescription
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errorChannel chan error
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answerChannel chan *webrtc.SessionDescription
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recvPipe *io.PipeReader
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errorChannel chan error
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writePipe *io.PipeWriter
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recvPipe *io.PipeReader
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buffer bytes.Buffer
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writePipe *io.PipeWriter
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reset chan struct{}
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buffer bytes.Buffer
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reset chan struct{}
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}
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}
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var webrtcRemote *webRTCConn
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var webrtcRemote *webRTCConn
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@ -164,6 +163,9 @@ func (c *webRTCConn) EstablishDataChannel() error {
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}
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}
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dc.OnOpen = func() {
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dc.OnOpen = func() {
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log.Println("WebRTC: DataChannel.OnOpen")
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log.Println("WebRTC: DataChannel.OnOpen")
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// if nil != c.snowflake {
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// panic("PeerConnection snowflake already exists.")
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// }
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// Flush the buffer, then enable datachannel.
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// Flush the buffer, then enable datachannel.
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// TODO: Make this more safe
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// TODO: Make this more safe
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dc.Send(c.buffer.Bytes())
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dc.Send(c.buffer.Bytes())
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@ -175,14 +177,18 @@ func (c *webRTCConn) EstablishDataChannel() error {
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// Disable the DataChannel as a write destination.
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// Disable the DataChannel as a write destination.
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// Future writes will go to the buffer until a new DataChannel is available.
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// Future writes will go to the buffer until a new DataChannel is available.
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log.Println("WebRTC: DataChannel.OnClose")
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log.Println("WebRTC: DataChannel.OnClose")
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c.snowflake = nil
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if nil != c.snowflake {
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c.reset <- struct{}{} // Attempt to negotiate a new datachannel..
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c.snowflake = nil
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// Only reset if this OnClose triggered
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c.Reset()
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}
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}
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}
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dc.OnMessage = func(msg []byte) {
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dc.OnMessage = func(msg []byte) {
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log.Printf("OnMessage <--- %d bytes", len(msg))
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log.Printf("OnMessage <--- %d bytes", len(msg))
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n, err := c.writePipe.Write(msg)
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n, err := c.writePipe.Write(msg)
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if err != nil {
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if err != nil {
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// TODO: Maybe shouldn't actually close.
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// TODO: Maybe shouldn't actually close.
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log.Println("Error writing to SOCKS pipe")
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c.writePipe.CloseWithError(err)
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c.writePipe.CloseWithError(err)
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}
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}
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if n != len(msg) {
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if n != len(msg) {
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@ -205,7 +211,7 @@ func (c *webRTCConn) SendOffer() error {
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log.Printf("----------------")
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log.Printf("----------------")
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return nil
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return nil
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}
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}
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// Use Broker...
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// Otherwise, use Broker.
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go func() {
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go func() {
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log.Println("Sending offer via BrokerChannel...\nTarget URL: ", brokerURL,
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log.Println("Sending offer via BrokerChannel...\nTarget URL: ", brokerURL,
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"\nFront URL: ", frontDomain)
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"\nFront URL: ", frontDomain)
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@ -214,7 +220,7 @@ func (c *webRTCConn) SendOffer() error {
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log.Printf("BrokerChannel error: %s", err)
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log.Printf("BrokerChannel error: %s", err)
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answer = nil
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answer = nil
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}
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}
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answerChannel <- answer
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c.answerChannel <- answer
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}()
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}()
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case err := <-c.errorChannel:
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case err := <-c.errorChannel:
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c.pc.Close()
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c.pc.Close()
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@ -225,11 +231,11 @@ func (c *webRTCConn) SendOffer() error {
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func (c *webRTCConn) ReceiveAnswer() {
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func (c *webRTCConn) ReceiveAnswer() {
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go func() {
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go func() {
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answer, ok := <-answerChannel
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answer, ok := <-c.answerChannel
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if !ok || nil == answer {
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if !ok || nil == answer {
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log.Printf("Failed to retrieve answer. Retrying in %d seconds", ReconnectTimeout)
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log.Printf("Failed to retrieve answer. Retrying in %d seconds", ReconnectTimeout)
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<-time.After(time.Second * ReconnectTimeout)
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<-time.After(time.Second * ReconnectTimeout)
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c.reset <- struct{}{}
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c.Reset()
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return
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return
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}
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}
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log.Printf("Received Answer:\n\n%s\n", answer.Sdp)
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log.Printf("Received Answer:\n\n%s\n", answer.Sdp)
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@ -247,6 +253,12 @@ func (c *webRTCConn) sendData(data []byte) {
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c.buffer.Write(data)
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c.buffer.Write(data)
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return
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return
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}
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}
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// Otherwise, flush buffer if necessary.
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for c.buffer.Len() > 0 {
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c.snowflake.Send(c.buffer.Bytes())
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log.Println("Flushed ", c.buffer.Len(), " bytes")
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c.buffer.Reset()
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}
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log.Printf("Write %d bytes --> WebRTC", len(data))
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log.Printf("Write %d bytes --> WebRTC", len(data))
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c.snowflake.Send(data)
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c.snowflake.Send(data)
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}
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}
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@ -256,18 +268,25 @@ func (c *webRTCConn) ConnectLoop() {
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for {
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for {
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log.Println("Establishing WebRTC connection...")
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log.Println("Establishing WebRTC connection...")
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// TODO: When go-webrtc is more stable, it's possible that a new
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// TODO: When go-webrtc is more stable, it's possible that a new
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// PeerConnection won't need to be recreated each time.
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// PeerConnection won't need to be re-prepared each time.
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// called once.
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c.PreparePeerConnection()
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c.PreparePeerConnection()
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c.EstablishDataChannel()
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err := c.EstablishDataChannel()
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c.SendOffer()
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if err == nil {
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c.ReceiveAnswer()
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c.SendOffer()
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c.ReceiveAnswer()
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<-c.reset
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<-c.reset
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log.Println(" --- snowflake connection reset ---")
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log.Println(" --- snowflake connection reset ---")
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}
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}
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}
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}
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}
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func (c *webRTCConn) Reset() {
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go func() {
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c.reset <- struct{}{} // Attempt to negotiate a new datachannel..
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log.Println("WebRTC resetting...")
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}()
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}
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// Initialize a WebRTC Connection.
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// Initialize a WebRTC Connection.
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func dialWebRTC(config *webrtc.Configuration, broker *BrokerChannel) (
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func dialWebRTC(config *webrtc.Configuration, broker *BrokerChannel) (
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*webRTCConn, error) {
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*webRTCConn, error) {
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@ -275,6 +294,7 @@ func dialWebRTC(config *webrtc.Configuration, broker *BrokerChannel) (
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connection.config = config
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connection.config = config
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connection.broker = broker
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connection.broker = broker
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connection.offerChannel = make(chan *webrtc.SessionDescription)
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connection.offerChannel = make(chan *webrtc.SessionDescription)
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connection.answerChannel = make(chan *webrtc.SessionDescription)
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connection.errorChannel = make(chan error)
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connection.errorChannel = make(chan error)
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connection.reset = make(chan struct{})
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connection.reset = make(chan struct{})
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// Pipes remain the same even when DataChannel gets switched.
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// Pipes remain the same even when DataChannel gets switched.
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@ -363,10 +383,10 @@ func readSignalingMessages(f *os.File) {
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log.Printf("ignoring invalid signal message %+q", msg)
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log.Printf("ignoring invalid signal message %+q", msg)
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continue
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continue
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}
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}
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answerChannel <- sdp
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webrtcRemote.answerChannel <- sdp
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}
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}
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log.Printf("close answerChannel")
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log.Printf("close answerChannel")
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close(answerChannel)
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close(webrtcRemote.answerChannel)
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if err := s.Err(); err != nil {
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if err := s.Err(); err != nil {
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log.Printf("signal FIFO: %s", err)
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log.Printf("signal FIFO: %s", err)
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}
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}
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