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158 lines
4.5 KiB
Go
158 lines
4.5 KiB
Go
// SPDX-FileCopyrightText: 2023 The Pion community <https://pion.ly>
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// SPDX-License-Identifier: MIT
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// data-channels-detach is an example that shows how you can detach a data channel. This allows direct access the underlying [pion/datachannel](https://github.com/pion/datachannel). This allows you to interact with the data channel using a more idiomatic API based on the `io.ReadWriteCloser` interface.
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package main
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import (
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"fmt"
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"io"
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"os"
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"time"
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"github.com/pion/webrtc/v4"
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"github.com/pion/webrtc/v4/examples/internal/signal"
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)
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const messageSize = 15
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func main() {
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// Since this behavior diverges from the WebRTC API it has to be
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// enabled using a settings engine. Mixing both detached and the
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// OnMessage DataChannel API is not supported.
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// Create a SettingEngine and enable Detach
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s := webrtc.SettingEngine{}
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s.DetachDataChannels()
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// Create an API object with the engine
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api := webrtc.NewAPI(webrtc.WithSettingEngine(s))
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// Everything below is the Pion WebRTC API! Thanks for using it ❤️.
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// Prepare the configuration
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config := webrtc.Configuration{
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ICEServers: []webrtc.ICEServer{
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{
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URLs: []string{"stun:stun.l.google.com:19302"},
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},
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},
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}
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// Create a new RTCPeerConnection using the API object
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peerConnection, err := api.NewPeerConnection(config)
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if err != nil {
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panic(err)
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}
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defer func() {
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if cErr := peerConnection.Close(); cErr != nil {
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fmt.Printf("cannot close peerConnection: %v\n", cErr)
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}
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}()
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// Set the handler for Peer connection state
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// This will notify you when the peer has connected/disconnected
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peerConnection.OnConnectionStateChange(func(s webrtc.PeerConnectionState) {
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fmt.Printf("Peer Connection State has changed: %s\n", s.String())
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if s == webrtc.PeerConnectionStateFailed {
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// Wait until PeerConnection has had no network activity for 30 seconds or another failure. It may be reconnected using an ICE Restart.
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// Use webrtc.PeerConnectionStateDisconnected if you are interested in detecting faster timeout.
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// Note that the PeerConnection may come back from PeerConnectionStateDisconnected.
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fmt.Println("Peer Connection has gone to failed exiting")
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os.Exit(0)
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}
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if s == webrtc.PeerConnectionStateClosed {
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// PeerConnection was explicitly closed. This usually happens from a DTLS CloseNotify
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fmt.Println("Peer Connection has gone to closed exiting")
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os.Exit(0)
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}
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})
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// Register data channel creation handling
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peerConnection.OnDataChannel(func(d *webrtc.DataChannel) {
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fmt.Printf("New DataChannel %s %d\n", d.Label(), d.ID())
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// Register channel opening handling
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d.OnOpen(func() {
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fmt.Printf("Data channel '%s'-'%d' open.\n", d.Label(), d.ID())
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// Detach the data channel
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raw, dErr := d.Detach()
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if dErr != nil {
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panic(dErr)
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}
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// Handle reading from the data channel
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go ReadLoop(raw)
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// Handle writing to the data channel
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go WriteLoop(raw)
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})
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})
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// Wait for the offer to be pasted
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offer := webrtc.SessionDescription{}
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signal.Decode(signal.MustReadStdin(), &offer)
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// Set the remote SessionDescription
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err = peerConnection.SetRemoteDescription(offer)
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if err != nil {
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panic(err)
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}
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// Create answer
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answer, err := peerConnection.CreateAnswer(nil)
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if err != nil {
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panic(err)
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}
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// Create channel that is blocked until ICE Gathering is complete
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gatherComplete := webrtc.GatheringCompletePromise(peerConnection)
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// Sets the LocalDescription, and starts our UDP listeners
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err = peerConnection.SetLocalDescription(answer)
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if err != nil {
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panic(err)
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}
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// Block until ICE Gathering is complete, disabling trickle ICE
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// we do this because we only can exchange one signaling message
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// in a production application you should exchange ICE Candidates via OnICECandidate
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<-gatherComplete
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// Output the answer in base64 so we can paste it in browser
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fmt.Println(signal.Encode(*peerConnection.LocalDescription()))
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// Block forever
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select {}
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}
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// ReadLoop shows how to read from the datachannel directly
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func ReadLoop(d io.Reader) {
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for {
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buffer := make([]byte, messageSize)
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n, err := d.Read(buffer)
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if err != nil {
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fmt.Println("Datachannel closed; Exit the readloop:", err)
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return
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}
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fmt.Printf("Message from DataChannel: %s\n", string(buffer[:n]))
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}
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}
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// WriteLoop shows how to write to the datachannel directly
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func WriteLoop(d io.Writer) {
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for range time.NewTicker(5 * time.Second).C {
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message := signal.RandSeq(messageSize)
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fmt.Printf("Sending %s \n", message)
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_, err := d.Write([]byte(message))
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if err != nil {
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panic(err)
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}
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}
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}
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