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https://github.com/m1k1o/neko.git
synced 2024-07-24 14:40:50 +12:00
fix webrtc client gathering, #259.
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0cebe465a2
commit
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@ -203,11 +203,12 @@ export abstract class BaseClient extends EventEmitter<BaseEvents> {
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return
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}
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this._peer = new RTCPeerConnection()
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if (lite !== true) {
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this._peer = new RTCPeerConnection({
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iceServers: servers,
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})
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} else {
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this._peer = new RTCPeerConnection()
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}
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this._peer.onconnectionstatechange = () => {
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@ -251,11 +252,28 @@ export abstract class BaseClient extends EventEmitter<BaseEvents> {
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this._peer.ontrack = this.onTrack.bind(this)
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this._peer.onicecandidate = (event: RTCPeerConnectionIceEvent) => {
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if (!event.candidate) {
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this.emit('debug', `sent all local ICE candidates`)
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return
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}
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const init = event.candidate.toJSON()
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this.emit('debug', `sending local ICE candidate`, init)
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this._ws!.send(
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JSON.stringify({
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event: EVENT.SIGNAL.CANDIDATE,
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data: JSON.stringify(init),
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}),
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)
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}
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this._peer.onnegotiationneeded = async () => {
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this.emit('warn', `negotiation is needed`)
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const d = await this._peer!.createOffer()
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this._peer!.setLocalDescription(d)
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await this._peer!.setLocalDescription(d)
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this._ws!.send(
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JSON.stringify({
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@ -277,10 +295,10 @@ export abstract class BaseClient extends EventEmitter<BaseEvents> {
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return
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}
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this._peer.setRemoteDescription({ type: 'offer', sdp })
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await this._peer.setRemoteDescription({ type: 'offer', sdp })
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for (const candidate of this._candidates) {
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this._peer.addIceCandidate(candidate)
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await this._peer.addIceCandidate(candidate)
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}
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this._candidates = []
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@ -310,7 +328,7 @@ export abstract class BaseClient extends EventEmitter<BaseEvents> {
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return
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}
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this._peer.setRemoteDescription({ type: 'answer', sdp })
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await this._peer.setRemoteDescription({ type: 'answer', sdp })
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}
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private async onMessage(e: MessageEvent) {
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@ -12,6 +12,7 @@
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- Fixed stereo problem in chromium-based browsers, where it was only as mono by adding `stereo=1` to opus SDP to clients answer.
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- Fixed keysym mapping for unknown keycodes, which was causing some key combinations to not work on some keyboards.
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- Fixed a bug where `max_fps=0` would lead to an invalid pipeline.
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- Fixed client side webrtc ICE gathering, so that neko can be used without exposed ports, only with STUN and TURN servers.
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### Misc
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- Updated to go 1.19 and Node 18, removed go-events as dependency (by @mbattista).
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@ -131,6 +131,17 @@ func (session *Session) SignalLocalAnswer(sdp string) error {
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})
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}
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func (session *Session) SignalLocalCandidate(data string) error {
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if session.socket == nil {
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return nil
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}
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session.peer.SetCandidate(data)
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return session.socket.Send(&message.SignalCandidate{
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Event: event.SIGNAL_CANDIDATE,
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Data: data,
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})
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}
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func (session *Session) SignalRemoteOffer(sdp string) error {
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if session.peer == nil {
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return nil
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@ -154,14 +165,12 @@ func (session *Session) SignalRemoteAnswer(sdp string) error {
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return session.peer.SetAnswer(sdp)
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}
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func (session *Session) SignalCandidate(data string) error {
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func (session *Session) SignalRemoteCandidate(data string) error {
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if session.socket == nil {
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return nil
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}
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return session.socket.Send(&message.SignalCandidate{
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Event: event.SIGNAL_CANDIDATE,
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Data: data,
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})
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session.logger.Info().Msg("signal update - RemoteCandidate")
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return session.peer.SetCandidate(data)
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}
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func (session *Session) destroy() error {
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@ -40,9 +40,10 @@ type Session interface {
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Send(v interface{}) error
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SignalLocalOffer(sdp string) error
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SignalLocalAnswer(sdp string) error
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SignalLocalCandidate(data string) error
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SignalRemoteOffer(sdp string) error
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SignalRemoteAnswer(sdp string) error
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SignalCandidate(data string) error
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SignalRemoteCandidate(data string) error
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}
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type SessionManager interface {
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@ -21,6 +21,7 @@ type Peer interface {
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CreateAnswer() (string, error)
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SetOffer(sdp string) error
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SetAnswer(sdp string) error
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SetCandidate(candidateString string) error
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WriteData(v interface{}) error
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Destroy() error
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}
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@ -1,6 +1,7 @@
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package webrtc
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import (
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"encoding/json"
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"sync"
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"github.com/pion/webrtc/v3"
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@ -49,6 +50,16 @@ func (peer *Peer) SetAnswer(sdp string) error {
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return peer.connection.SetRemoteDescription(webrtc.SessionDescription{SDP: sdp, Type: webrtc.SDPTypeAnswer})
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}
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func (peer *Peer) SetCandidate(candidateString string) error {
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var candidate webrtc.ICECandidateInit
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err := json.Unmarshal([]byte(candidateString), &candidate)
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if err != nil {
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return err
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}
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return peer.connection.AddICECandidate(candidate)
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}
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func (peer *Peer) WriteData(v interface{}) error {
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peer.mu.Lock()
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defer peer.mu.Unlock()
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@ -123,7 +123,6 @@ func (manager *WebRTCManager) initAPI() error {
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LoggerFactory: logger,
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}
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_ = settings.SetEphemeralUDPPortRange(manager.config.EphemeralMin, manager.config.EphemeralMax)
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settings.SetNAT1To1IPs(manager.config.NAT1To1IPs, webrtc.ICECandidateTypeHost)
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settings.SetICETimeouts(6*time.Second, 6*time.Second, 3*time.Second)
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settings.SetSRTPReplayProtectionWindow(512)
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@ -168,12 +167,15 @@ func (manager *WebRTCManager) initAPI() error {
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networkType = append(networkType, webrtc.NetworkTypeUDP4)
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manager.logger.Info().Int("port", manager.config.UDPMUX).Msg("using UDP MUX")
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} else if manager.config.EphemeralMax != 0 {
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_ = settings.SetEphemeralUDPPortRange(manager.config.EphemeralMin, manager.config.EphemeralMax)
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networkType = append(networkType,
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webrtc.NetworkTypeUDP4,
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webrtc.NetworkTypeUDP6,
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)
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}
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// Enable support for TCP and UDP ICE candidates
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if len(networkType) > 0 {
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settings.SetNetworkTypes(networkType)
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}
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settings.SetNetworkTypes(networkType)
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// Create MediaEngine with selected codecs
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engine := webrtc.MediaEngine{}
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@ -299,7 +301,7 @@ func (manager *WebRTCManager) CreatePeer(id string, session types.Session) (type
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return
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}
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if err := session.SignalCandidate(string(candidateString)); err != nil {
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if err := session.SignalLocalCandidate(string(candidateString)); err != nil {
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manager.logger.Warn().Err(err).Msg("sending SignalCandidate failed")
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return
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}
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@ -87,6 +87,12 @@ func (h *MessageHandler) Message(id string, raw []byte) error {
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utils.Unmarshal(payload, raw, func() error {
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return h.signalRemoteAnswer(id, session, payload)
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}), "%s failed", header.Event)
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case event.SIGNAL_CANDIDATE:
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payload := &message.SignalCandidate{}
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return errors.Wrapf(
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utils.Unmarshal(payload, raw, func() error {
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return h.signalRemoteCandidate(id, session, payload)
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}), "%s failed", header.Event)
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// Control Events
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case event.CONTROL_RELEASE:
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@ -45,3 +45,7 @@ func (h *MessageHandler) signalRemoteAnswer(id string, session types.Session, pa
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return nil
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}
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func (h *MessageHandler) signalRemoteCandidate(id string, session types.Session, payload *message.SignalCandidate) error {
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return session.SignalRemoteCandidate(payload.Data)
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}
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