733 lines
26 KiB
Go
733 lines
26 KiB
Go
//go:build js && wasm
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// +build js,wasm
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// Package webrtc implements the WebRTC 1.0 as defined in W3C WebRTC specification document.
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package webrtc
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import (
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"syscall/js"
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"github.com/pion/ice/v2"
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"github.com/pion/webrtc/v3/pkg/rtcerr"
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)
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// PeerConnection represents a WebRTC connection that establishes a
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// peer-to-peer communications with another PeerConnection instance in a
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// browser, or to another endpoint implementing the required protocols.
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type PeerConnection struct {
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// Pointer to the underlying JavaScript RTCPeerConnection object.
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underlying js.Value
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// Keep track of handlers/callbacks so we can call Release as required by the
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// syscall/js API. Initially nil.
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onSignalingStateChangeHandler *js.Func
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onDataChannelHandler *js.Func
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onNegotiationNeededHandler *js.Func
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onConnectionStateChangeHandler *js.Func
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onICEConnectionStateChangeHandler *js.Func
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onICECandidateHandler *js.Func
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onICEGatheringStateChangeHandler *js.Func
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// Used by GatheringCompletePromise
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onGatherCompleteHandler func()
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// A reference to the associated API state used by this connection
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api *API
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}
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// NewPeerConnection creates a peerconnection.
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func NewPeerConnection(configuration Configuration) (*PeerConnection, error) {
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api := NewAPI()
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return api.NewPeerConnection(configuration)
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}
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// NewPeerConnection creates a new PeerConnection with the provided configuration against the received API object
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func (api *API) NewPeerConnection(configuration Configuration) (_ *PeerConnection, err error) {
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defer func() {
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if e := recover(); e != nil {
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err = recoveryToError(e)
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}
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}()
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configMap := configurationToValue(configuration)
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underlying := js.Global().Get("window").Get("RTCPeerConnection").New(configMap)
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return &PeerConnection{
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underlying: underlying,
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api: api,
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}, nil
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}
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// JSValue returns the underlying PeerConnection
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func (pc *PeerConnection) JSValue() js.Value {
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return pc.underlying
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}
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// OnSignalingStateChange sets an event handler which is invoked when the
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// peer connection's signaling state changes
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func (pc *PeerConnection) OnSignalingStateChange(f func(SignalingState)) {
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if pc.onSignalingStateChangeHandler != nil {
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oldHandler := pc.onSignalingStateChangeHandler
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defer oldHandler.Release()
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}
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onSignalingStateChangeHandler := js.FuncOf(func(this js.Value, args []js.Value) interface{} {
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state := newSignalingState(args[0].String())
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go f(state)
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return js.Undefined()
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})
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pc.onSignalingStateChangeHandler = &onSignalingStateChangeHandler
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pc.underlying.Set("onsignalingstatechange", onSignalingStateChangeHandler)
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}
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// OnDataChannel sets an event handler which is invoked when a data
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// channel message arrives from a remote peer.
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func (pc *PeerConnection) OnDataChannel(f func(*DataChannel)) {
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if pc.onDataChannelHandler != nil {
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oldHandler := pc.onDataChannelHandler
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defer oldHandler.Release()
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}
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onDataChannelHandler := js.FuncOf(func(this js.Value, args []js.Value) interface{} {
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// pion/webrtc/projects/15
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// This reference to the underlying DataChannel doesn't know
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// about any other references to the same DataChannel. This might result in
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// memory leaks where we don't clean up handler functions. Could possibly fix
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// by keeping a mutex-protected list of all DataChannel references as a
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// property of this PeerConnection, but at the cost of additional overhead.
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dataChannel := &DataChannel{
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underlying: args[0].Get("channel"),
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api: pc.api,
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}
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go f(dataChannel)
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return js.Undefined()
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})
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pc.onDataChannelHandler = &onDataChannelHandler
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pc.underlying.Set("ondatachannel", onDataChannelHandler)
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}
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// OnNegotiationNeeded sets an event handler which is invoked when
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// a change has occurred which requires session negotiation
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func (pc *PeerConnection) OnNegotiationNeeded(f func()) {
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if pc.onNegotiationNeededHandler != nil {
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oldHandler := pc.onNegotiationNeededHandler
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defer oldHandler.Release()
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}
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onNegotiationNeededHandler := js.FuncOf(func(this js.Value, args []js.Value) interface{} {
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go f()
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return js.Undefined()
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})
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pc.onNegotiationNeededHandler = &onNegotiationNeededHandler
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pc.underlying.Set("onnegotiationneeded", onNegotiationNeededHandler)
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}
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// OnICEConnectionStateChange sets an event handler which is called
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// when an ICE connection state is changed.
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func (pc *PeerConnection) OnICEConnectionStateChange(f func(ICEConnectionState)) {
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if pc.onICEConnectionStateChangeHandler != nil {
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oldHandler := pc.onICEConnectionStateChangeHandler
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defer oldHandler.Release()
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}
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onICEConnectionStateChangeHandler := js.FuncOf(func(this js.Value, args []js.Value) interface{} {
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connectionState := NewICEConnectionState(pc.underlying.Get("iceConnectionState").String())
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go f(connectionState)
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return js.Undefined()
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})
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pc.onICEConnectionStateChangeHandler = &onICEConnectionStateChangeHandler
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pc.underlying.Set("oniceconnectionstatechange", onICEConnectionStateChangeHandler)
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}
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// OnConnectionStateChange sets an event handler which is called
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// when an PeerConnectionState is changed.
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func (pc *PeerConnection) OnConnectionStateChange(f func(PeerConnectionState)) {
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if pc.onConnectionStateChangeHandler != nil {
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oldHandler := pc.onConnectionStateChangeHandler
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defer oldHandler.Release()
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}
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onConnectionStateChangeHandler := js.FuncOf(func(this js.Value, args []js.Value) interface{} {
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connectionState := newPeerConnectionState(pc.underlying.Get("connectionState").String())
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go f(connectionState)
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return js.Undefined()
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})
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pc.onConnectionStateChangeHandler = &onConnectionStateChangeHandler
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pc.underlying.Set("onconnectionstatechange", onConnectionStateChangeHandler)
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}
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func (pc *PeerConnection) checkConfiguration(configuration Configuration) error {
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// https://www.w3.org/TR/webrtc/#dom-rtcpeerconnection-setconfiguration (step #2)
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if pc.ConnectionState() == PeerConnectionStateClosed {
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return &rtcerr.InvalidStateError{Err: ErrConnectionClosed}
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}
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existingConfig := pc.GetConfiguration()
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// https://www.w3.org/TR/webrtc/#set-the-configuration (step #3)
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if configuration.PeerIdentity != "" {
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if configuration.PeerIdentity != existingConfig.PeerIdentity {
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return &rtcerr.InvalidModificationError{Err: ErrModifyingPeerIdentity}
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}
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}
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// https://github.com/pion/webrtc/issues/513
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// https://www.w3.org/TR/webrtc/#set-the-configuration (step #4)
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// if len(configuration.Certificates) > 0 {
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// if len(configuration.Certificates) != len(existingConfiguration.Certificates) {
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// return &rtcerr.InvalidModificationError{Err: ErrModifyingCertificates}
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// }
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// for i, certificate := range configuration.Certificates {
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// if !pc.configuration.Certificates[i].Equals(certificate) {
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// return &rtcerr.InvalidModificationError{Err: ErrModifyingCertificates}
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// }
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// }
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// pc.configuration.Certificates = configuration.Certificates
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// }
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// https://www.w3.org/TR/webrtc/#set-the-configuration (step #5)
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if configuration.BundlePolicy != BundlePolicy(Unknown) {
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if configuration.BundlePolicy != existingConfig.BundlePolicy {
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return &rtcerr.InvalidModificationError{Err: ErrModifyingBundlePolicy}
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}
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}
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// https://www.w3.org/TR/webrtc/#set-the-configuration (step #6)
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if configuration.RTCPMuxPolicy != RTCPMuxPolicy(Unknown) {
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if configuration.RTCPMuxPolicy != existingConfig.RTCPMuxPolicy {
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return &rtcerr.InvalidModificationError{Err: ErrModifyingRTCPMuxPolicy}
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}
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}
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// https://www.w3.org/TR/webrtc/#set-the-configuration (step #7)
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if configuration.ICECandidatePoolSize != 0 {
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if configuration.ICECandidatePoolSize != existingConfig.ICECandidatePoolSize &&
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pc.LocalDescription() != nil {
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return &rtcerr.InvalidModificationError{Err: ErrModifyingICECandidatePoolSize}
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}
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}
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// https://www.w3.org/TR/webrtc/#set-the-configuration (step #11)
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if len(configuration.ICEServers) > 0 {
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// https://www.w3.org/TR/webrtc/#set-the-configuration (step #11.3)
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for _, server := range configuration.ICEServers {
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if _, err := server.validate(); err != nil {
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return err
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}
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}
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}
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return nil
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}
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// SetConfiguration updates the configuration of this PeerConnection object.
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func (pc *PeerConnection) SetConfiguration(configuration Configuration) (err error) {
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defer func() {
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if e := recover(); e != nil {
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err = recoveryToError(e)
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}
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}()
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if err := pc.checkConfiguration(configuration); err != nil {
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return err
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}
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configMap := configurationToValue(configuration)
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pc.underlying.Call("setConfiguration", configMap)
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return nil
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}
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// GetConfiguration returns a Configuration object representing the current
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// configuration of this PeerConnection object. The returned object is a
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// copy and direct mutation on it will not take affect until SetConfiguration
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// has been called with Configuration passed as its only argument.
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// https://www.w3.org/TR/webrtc/#dom-rtcpeerconnection-getconfiguration
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func (pc *PeerConnection) GetConfiguration() Configuration {
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return valueToConfiguration(pc.underlying.Call("getConfiguration"))
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}
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// CreateOffer starts the PeerConnection and generates the localDescription
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func (pc *PeerConnection) CreateOffer(options *OfferOptions) (_ SessionDescription, err error) {
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defer func() {
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if e := recover(); e != nil {
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err = recoveryToError(e)
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}
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}()
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promise := pc.underlying.Call("createOffer", offerOptionsToValue(options))
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desc, err := awaitPromise(promise)
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if err != nil {
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return SessionDescription{}, err
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}
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return *valueToSessionDescription(desc), nil
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}
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// CreateAnswer starts the PeerConnection and generates the localDescription
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func (pc *PeerConnection) CreateAnswer(options *AnswerOptions) (_ SessionDescription, err error) {
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defer func() {
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if e := recover(); e != nil {
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err = recoveryToError(e)
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}
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}()
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promise := pc.underlying.Call("createAnswer", answerOptionsToValue(options))
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desc, err := awaitPromise(promise)
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if err != nil {
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return SessionDescription{}, err
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}
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return *valueToSessionDescription(desc), nil
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}
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// SetLocalDescription sets the SessionDescription of the local peer
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func (pc *PeerConnection) SetLocalDescription(desc SessionDescription) (err error) {
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defer func() {
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if e := recover(); e != nil {
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err = recoveryToError(e)
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}
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}()
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promise := pc.underlying.Call("setLocalDescription", sessionDescriptionToValue(&desc))
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_, err = awaitPromise(promise)
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return err
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}
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// LocalDescription returns PendingLocalDescription if it is not null and
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// otherwise it returns CurrentLocalDescription. This property is used to
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// determine if setLocalDescription has already been called.
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// https://www.w3.org/TR/webrtc/#dom-rtcpeerconnection-localdescription
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func (pc *PeerConnection) LocalDescription() *SessionDescription {
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return valueToSessionDescription(pc.underlying.Get("localDescription"))
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}
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// SetRemoteDescription sets the SessionDescription of the remote peer
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func (pc *PeerConnection) SetRemoteDescription(desc SessionDescription) (err error) {
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defer func() {
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if e := recover(); e != nil {
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err = recoveryToError(e)
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}
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}()
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promise := pc.underlying.Call("setRemoteDescription", sessionDescriptionToValue(&desc))
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_, err = awaitPromise(promise)
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return err
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}
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// RemoteDescription returns PendingRemoteDescription if it is not null and
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// otherwise it returns CurrentRemoteDescription. This property is used to
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// determine if setRemoteDescription has already been called.
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// https://www.w3.org/TR/webrtc/#dom-rtcpeerconnection-remotedescription
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func (pc *PeerConnection) RemoteDescription() *SessionDescription {
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return valueToSessionDescription(pc.underlying.Get("remoteDescription"))
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}
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// AddICECandidate accepts an ICE candidate string and adds it
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// to the existing set of candidates
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func (pc *PeerConnection) AddICECandidate(candidate ICECandidateInit) (err error) {
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defer func() {
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if e := recover(); e != nil {
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err = recoveryToError(e)
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}
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}()
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promise := pc.underlying.Call("addIceCandidate", iceCandidateInitToValue(candidate))
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_, err = awaitPromise(promise)
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return err
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}
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// ICEConnectionState returns the ICE connection state of the
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// PeerConnection instance.
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func (pc *PeerConnection) ICEConnectionState() ICEConnectionState {
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return NewICEConnectionState(pc.underlying.Get("iceConnectionState").String())
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}
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// OnICECandidate sets an event handler which is invoked when a new ICE
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// candidate is found.
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func (pc *PeerConnection) OnICECandidate(f func(candidate *ICECandidate)) {
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if pc.onICECandidateHandler != nil {
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oldHandler := pc.onICECandidateHandler
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defer oldHandler.Release()
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}
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onICECandidateHandler := js.FuncOf(func(this js.Value, args []js.Value) interface{} {
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candidate := valueToICECandidate(args[0].Get("candidate"))
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if candidate == nil && pc.onGatherCompleteHandler != nil {
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go pc.onGatherCompleteHandler()
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}
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go f(candidate)
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return js.Undefined()
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})
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pc.onICECandidateHandler = &onICECandidateHandler
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pc.underlying.Set("onicecandidate", onICECandidateHandler)
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}
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// OnICEGatheringStateChange sets an event handler which is invoked when the
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// ICE candidate gathering state has changed.
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func (pc *PeerConnection) OnICEGatheringStateChange(f func()) {
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if pc.onICEGatheringStateChangeHandler != nil {
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oldHandler := pc.onICEGatheringStateChangeHandler
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defer oldHandler.Release()
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}
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onICEGatheringStateChangeHandler := js.FuncOf(func(this js.Value, args []js.Value) interface{} {
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go f()
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return js.Undefined()
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})
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pc.onICEGatheringStateChangeHandler = &onICEGatheringStateChangeHandler
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pc.underlying.Set("onicegatheringstatechange", onICEGatheringStateChangeHandler)
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}
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// CreateDataChannel creates a new DataChannel object with the given label
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// and optional DataChannelInit used to configure properties of the
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// underlying channel such as data reliability.
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func (pc *PeerConnection) CreateDataChannel(label string, options *DataChannelInit) (_ *DataChannel, err error) {
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defer func() {
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if e := recover(); e != nil {
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err = recoveryToError(e)
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}
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}()
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channel := pc.underlying.Call("createDataChannel", label, dataChannelInitToValue(options))
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return &DataChannel{
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underlying: channel,
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api: pc.api,
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}, nil
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}
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// SetIdentityProvider is used to configure an identity provider to generate identity assertions
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func (pc *PeerConnection) SetIdentityProvider(provider string) (err error) {
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defer func() {
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if e := recover(); e != nil {
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err = recoveryToError(e)
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}
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}()
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pc.underlying.Call("setIdentityProvider", provider)
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return nil
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}
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// Close ends the PeerConnection
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func (pc *PeerConnection) Close() (err error) {
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defer func() {
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if e := recover(); e != nil {
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err = recoveryToError(e)
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}
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}()
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pc.underlying.Call("close")
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// Release any handlers as required by the syscall/js API.
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if pc.onSignalingStateChangeHandler != nil {
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pc.onSignalingStateChangeHandler.Release()
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}
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if pc.onDataChannelHandler != nil {
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pc.onDataChannelHandler.Release()
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}
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if pc.onNegotiationNeededHandler != nil {
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pc.onNegotiationNeededHandler.Release()
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}
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if pc.onConnectionStateChangeHandler != nil {
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pc.onConnectionStateChangeHandler.Release()
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}
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if pc.onICEConnectionStateChangeHandler != nil {
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pc.onICEConnectionStateChangeHandler.Release()
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}
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if pc.onICECandidateHandler != nil {
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pc.onICECandidateHandler.Release()
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}
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if pc.onICEGatheringStateChangeHandler != nil {
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pc.onICEGatheringStateChangeHandler.Release()
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}
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return nil
|
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}
|
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|
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// CurrentLocalDescription represents the local description that was
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// successfully negotiated the last time the PeerConnection transitioned
|
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// into the stable state plus any local candidates that have been generated
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// by the ICEAgent since the offer or answer was created.
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func (pc *PeerConnection) CurrentLocalDescription() *SessionDescription {
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desc := pc.underlying.Get("currentLocalDescription")
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return valueToSessionDescription(desc)
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}
|
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|
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// PendingLocalDescription represents a local description that is in the
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// process of being negotiated plus any local candidates that have been
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// generated by the ICEAgent since the offer or answer was created. If the
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// PeerConnection is in the stable state, the value is null.
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func (pc *PeerConnection) PendingLocalDescription() *SessionDescription {
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desc := pc.underlying.Get("pendingLocalDescription")
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return valueToSessionDescription(desc)
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}
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|
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// CurrentRemoteDescription represents the last remote description that was
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// successfully negotiated the last time the PeerConnection transitioned
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// into the stable state plus any remote candidates that have been supplied
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// via AddICECandidate() since the offer or answer was created.
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func (pc *PeerConnection) CurrentRemoteDescription() *SessionDescription {
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desc := pc.underlying.Get("currentRemoteDescription")
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return valueToSessionDescription(desc)
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}
|
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|
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// PendingRemoteDescription represents a remote description that is in the
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// process of being negotiated, complete with any remote candidates that
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// have been supplied via AddICECandidate() since the offer or answer was
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// created. If the PeerConnection is in the stable state, the value is
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// null.
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func (pc *PeerConnection) PendingRemoteDescription() *SessionDescription {
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desc := pc.underlying.Get("pendingRemoteDescription")
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return valueToSessionDescription(desc)
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}
|
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|
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// SignalingState returns the signaling state of the PeerConnection instance.
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func (pc *PeerConnection) SignalingState() SignalingState {
|
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rawState := pc.underlying.Get("signalingState").String()
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return newSignalingState(rawState)
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}
|
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|
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// ICEGatheringState attribute the ICE gathering state of the PeerConnection
|
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// instance.
|
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func (pc *PeerConnection) ICEGatheringState() ICEGatheringState {
|
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rawState := pc.underlying.Get("iceGatheringState").String()
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return NewICEGatheringState(rawState)
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}
|
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|
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// ConnectionState attribute the connection state of the PeerConnection
|
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// instance.
|
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func (pc *PeerConnection) ConnectionState() PeerConnectionState {
|
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rawState := pc.underlying.Get("connectionState").String()
|
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return newPeerConnectionState(rawState)
|
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}
|
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|
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func (pc *PeerConnection) setGatherCompleteHandler(handler func()) {
|
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pc.onGatherCompleteHandler = handler
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|
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// If no onIceCandidate handler has been set provide an empty one
|
|
// otherwise our onGatherCompleteHandler will not be executed
|
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if pc.onICECandidateHandler == nil {
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pc.OnICECandidate(func(i *ICECandidate) {})
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}
|
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}
|
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|
|
// AddTransceiverFromKind Create a new RtpTransceiver and adds it to the set of transceivers.
|
|
func (pc *PeerConnection) AddTransceiverFromKind(kind RTPCodecType, init ...RTPTransceiverInit) (transceiver *RTPTransceiver, err error) {
|
|
defer func() {
|
|
if e := recover(); e != nil {
|
|
err = recoveryToError(e)
|
|
}
|
|
}()
|
|
|
|
if len(init) == 1 {
|
|
return &RTPTransceiver{
|
|
underlying: pc.underlying.Call("addTransceiver", kind.String(), rtpTransceiverInitInitToValue(init[0])),
|
|
}, err
|
|
}
|
|
|
|
return &RTPTransceiver{
|
|
underlying: pc.underlying.Call("addTransceiver", kind.String()),
|
|
}, err
|
|
}
|
|
|
|
// GetTransceivers returns the RtpTransceiver that are currently attached to this PeerConnection
|
|
func (pc *PeerConnection) GetTransceivers() (transceivers []*RTPTransceiver) {
|
|
rawTransceivers := pc.underlying.Call("getTransceivers")
|
|
transceivers = make([]*RTPTransceiver, rawTransceivers.Length())
|
|
|
|
for i := 0; i < rawTransceivers.Length(); i++ {
|
|
transceivers[i] = &RTPTransceiver{
|
|
underlying: rawTransceivers.Index(i),
|
|
}
|
|
}
|
|
|
|
return
|
|
}
|
|
|
|
// SCTP returns the SCTPTransport for this PeerConnection
|
|
//
|
|
// The SCTP transport over which SCTP data is sent and received. If SCTP has not been negotiated, the value is nil.
|
|
// https://www.w3.org/TR/webrtc/#attributes-15
|
|
func (pc *PeerConnection) SCTP() *SCTPTransport {
|
|
underlying := pc.underlying.Get("sctp")
|
|
if underlying.IsNull() || underlying.IsUndefined() {
|
|
return nil
|
|
}
|
|
|
|
return &SCTPTransport{
|
|
underlying: underlying,
|
|
}
|
|
}
|
|
|
|
// Converts a Configuration to js.Value so it can be passed
|
|
// through to the JavaScript WebRTC API. Any zero values are converted to
|
|
// js.Undefined(), which will result in the default value being used.
|
|
func configurationToValue(configuration Configuration) js.Value {
|
|
return js.ValueOf(map[string]interface{}{
|
|
"iceServers": iceServersToValue(configuration.ICEServers),
|
|
"iceTransportPolicy": stringEnumToValueOrUndefined(configuration.ICETransportPolicy.String()),
|
|
"bundlePolicy": stringEnumToValueOrUndefined(configuration.BundlePolicy.String()),
|
|
"rtcpMuxPolicy": stringEnumToValueOrUndefined(configuration.RTCPMuxPolicy.String()),
|
|
"peerIdentity": stringToValueOrUndefined(configuration.PeerIdentity),
|
|
"iceCandidatePoolSize": uint8ToValueOrUndefined(configuration.ICECandidatePoolSize),
|
|
|
|
// Note: Certificates are not currently supported.
|
|
// "certificates": configuration.Certificates,
|
|
})
|
|
}
|
|
|
|
func iceServersToValue(iceServers []ICEServer) js.Value {
|
|
if len(iceServers) == 0 {
|
|
return js.Undefined()
|
|
}
|
|
maps := make([]interface{}, len(iceServers))
|
|
for i, server := range iceServers {
|
|
maps[i] = iceServerToValue(server)
|
|
}
|
|
return js.ValueOf(maps)
|
|
}
|
|
|
|
func iceServerToValue(server ICEServer) js.Value {
|
|
return js.ValueOf(map[string]interface{}{
|
|
"urls": stringsToValue(server.URLs), // required
|
|
"username": stringToValueOrUndefined(server.Username),
|
|
// Note: credential and credentialType are not currently supported.
|
|
// "credential": interfaceToValueOrUndefined(server.Credential),
|
|
// "credentialType": stringEnumToValueOrUndefined(server.CredentialType.String()),
|
|
})
|
|
}
|
|
|
|
func valueToConfiguration(configValue js.Value) Configuration {
|
|
if configValue.IsNull() || configValue.IsUndefined() {
|
|
return Configuration{}
|
|
}
|
|
return Configuration{
|
|
ICEServers: valueToICEServers(configValue.Get("iceServers")),
|
|
ICETransportPolicy: NewICETransportPolicy(valueToStringOrZero(configValue.Get("iceTransportPolicy"))),
|
|
BundlePolicy: newBundlePolicy(valueToStringOrZero(configValue.Get("bundlePolicy"))),
|
|
RTCPMuxPolicy: newRTCPMuxPolicy(valueToStringOrZero(configValue.Get("rtcpMuxPolicy"))),
|
|
PeerIdentity: valueToStringOrZero(configValue.Get("peerIdentity")),
|
|
ICECandidatePoolSize: valueToUint8OrZero(configValue.Get("iceCandidatePoolSize")),
|
|
|
|
// Note: Certificates are not supported.
|
|
// Certificates []Certificate
|
|
}
|
|
}
|
|
|
|
func valueToICEServers(iceServersValue js.Value) []ICEServer {
|
|
if iceServersValue.IsNull() || iceServersValue.IsUndefined() {
|
|
return nil
|
|
}
|
|
iceServers := make([]ICEServer, iceServersValue.Length())
|
|
for i := 0; i < iceServersValue.Length(); i++ {
|
|
iceServers[i] = valueToICEServer(iceServersValue.Index(i))
|
|
}
|
|
return iceServers
|
|
}
|
|
|
|
func valueToICEServer(iceServerValue js.Value) ICEServer {
|
|
return ICEServer{
|
|
URLs: valueToStrings(iceServerValue.Get("urls")), // required
|
|
Username: valueToStringOrZero(iceServerValue.Get("username")),
|
|
// Note: Credential and CredentialType are not currently supported.
|
|
// Credential: iceServerValue.Get("credential"),
|
|
// CredentialType: newICECredentialType(valueToStringOrZero(iceServerValue.Get("credentialType"))),
|
|
}
|
|
}
|
|
|
|
func valueToICECandidate(val js.Value) *ICECandidate {
|
|
if val.IsNull() || val.IsUndefined() {
|
|
return nil
|
|
}
|
|
if val.Get("protocol").IsUndefined() && !val.Get("candidate").IsUndefined() {
|
|
// Missing some fields, assume it's Firefox and parse SDP candidate.
|
|
c, err := ice.UnmarshalCandidate(val.Get("candidate").String())
|
|
if err != nil {
|
|
return nil
|
|
}
|
|
|
|
iceCandidate, err := newICECandidateFromICE(c)
|
|
if err != nil {
|
|
return nil
|
|
}
|
|
|
|
return &iceCandidate
|
|
}
|
|
protocol, _ := NewICEProtocol(val.Get("protocol").String())
|
|
candidateType, _ := NewICECandidateType(val.Get("type").String())
|
|
return &ICECandidate{
|
|
Foundation: val.Get("foundation").String(),
|
|
Priority: valueToUint32OrZero(val.Get("priority")),
|
|
Address: val.Get("address").String(),
|
|
Protocol: protocol,
|
|
Port: valueToUint16OrZero(val.Get("port")),
|
|
Typ: candidateType,
|
|
Component: stringToComponentIDOrZero(val.Get("component").String()),
|
|
RelatedAddress: val.Get("relatedAddress").String(),
|
|
RelatedPort: valueToUint16OrZero(val.Get("relatedPort")),
|
|
}
|
|
}
|
|
|
|
func stringToComponentIDOrZero(val string) uint16 {
|
|
// See: https://developer.mozilla.org/en-US/docs/Web/API/RTCIceComponent
|
|
switch val {
|
|
case "rtp":
|
|
return 1
|
|
case "rtcp":
|
|
return 2
|
|
}
|
|
return 0
|
|
}
|
|
|
|
func sessionDescriptionToValue(desc *SessionDescription) js.Value {
|
|
if desc == nil {
|
|
return js.Undefined()
|
|
}
|
|
return js.ValueOf(map[string]interface{}{
|
|
"type": desc.Type.String(),
|
|
"sdp": desc.SDP,
|
|
})
|
|
}
|
|
|
|
func valueToSessionDescription(descValue js.Value) *SessionDescription {
|
|
if descValue.IsNull() || descValue.IsUndefined() {
|
|
return nil
|
|
}
|
|
return &SessionDescription{
|
|
Type: NewSDPType(descValue.Get("type").String()),
|
|
SDP: descValue.Get("sdp").String(),
|
|
}
|
|
}
|
|
|
|
func offerOptionsToValue(offerOptions *OfferOptions) js.Value {
|
|
if offerOptions == nil {
|
|
return js.Undefined()
|
|
}
|
|
return js.ValueOf(map[string]interface{}{
|
|
"iceRestart": offerOptions.ICERestart,
|
|
"voiceActivityDetection": offerOptions.VoiceActivityDetection,
|
|
})
|
|
}
|
|
|
|
func answerOptionsToValue(answerOptions *AnswerOptions) js.Value {
|
|
if answerOptions == nil {
|
|
return js.Undefined()
|
|
}
|
|
return js.ValueOf(map[string]interface{}{
|
|
"voiceActivityDetection": answerOptions.VoiceActivityDetection,
|
|
})
|
|
}
|
|
|
|
func iceCandidateInitToValue(candidate ICECandidateInit) js.Value {
|
|
return js.ValueOf(map[string]interface{}{
|
|
"candidate": candidate.Candidate,
|
|
"sdpMid": stringPointerToValue(candidate.SDPMid),
|
|
"sdpMLineIndex": uint16PointerToValue(candidate.SDPMLineIndex),
|
|
"usernameFragment": stringPointerToValue(candidate.UsernameFragment),
|
|
})
|
|
}
|
|
|
|
func dataChannelInitToValue(options *DataChannelInit) js.Value {
|
|
if options == nil {
|
|
return js.Undefined()
|
|
}
|
|
|
|
maxPacketLifeTime := uint16PointerToValue(options.MaxPacketLifeTime)
|
|
return js.ValueOf(map[string]interface{}{
|
|
"ordered": boolPointerToValue(options.Ordered),
|
|
"maxPacketLifeTime": maxPacketLifeTime,
|
|
// See https://bugs.chromium.org/p/chromium/issues/detail?id=696681
|
|
// Chrome calls this "maxRetransmitTime"
|
|
"maxRetransmitTime": maxPacketLifeTime,
|
|
"maxRetransmits": uint16PointerToValue(options.MaxRetransmits),
|
|
"protocol": stringPointerToValue(options.Protocol),
|
|
"negotiated": boolPointerToValue(options.Negotiated),
|
|
"id": uint16PointerToValue(options.ID),
|
|
})
|
|
}
|
|
|
|
func rtpTransceiverInitInitToValue(init RTPTransceiverInit) js.Value {
|
|
return js.ValueOf(map[string]interface{}{
|
|
"direction": init.Direction.String(),
|
|
})
|
|
}
|