mirror of
https://github.com/ianramzy/decentralized-video-chat.git
synced 2024-11-16 23:29:20 +08:00
247 lines
11 KiB
JavaScript
247 lines
11 KiB
JavaScript
if (!location.hash) {
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// Generate random room name if needed
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var adjectives = ["small", "big", "large", "smelly", "new", "happy", "shiny", "old", "clean", "nice", "bad", "cool", "hot", "cold", "warm", "hungry", "slow", "fast"]
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var nouns = ["dog", "bat", "wrench", "apple", "pear", "ghost", "cat", "wolf", "squid", "goat", "snail", "hat", "sock", "plum", "bear", "snake", "turtle", "horse","spoon","fork","spider","tree","chair","table"]
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var adjective = adjectives[Math.floor(Math.random() * adjectives.length)];
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var noun = nouns[Math.floor(Math.random() * nouns.length)];
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location.hash = adjective + noun
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}
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const roomHash = location.hash.substring(1);
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function logIt(message, error) {
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// console.log(message);
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// Add to logs on page
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// let logs = document.getElementById('logs');
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// let tmp = document.createElement('P');
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// tmp.innerText = message;
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// if (error) {
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// tmp.classList.add('error');
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// }
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// logs.appendChild(tmp);
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}
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// Create an object to save various objects to without polluting the global namespace.
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var VideoChat = {
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connected: false,
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willInitiateCall : false,
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localICECandidates: [],
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// Initialise our connection to the WebSocket.
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socket: io(),
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remoteVideo: document.getElementById('remote-video'),
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localVideo: document.getElementById('local-video'),
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// videoButton: document.getElementById('get-video'),
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// screenButton: document.getElementById('get-screen'),
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// callButton: document.getElementById('call'),
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// Call to getUserMedia (provided by adapter.js for cross browser compatibility)
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// asking for access to both the video and audio streams. If the request is
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// accepted callback to the onMediaStream function, otherwise callback to the
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// noMediaStream function.
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requestMediaStream: function (event) {
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console.log("requestMediaStream");
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navigator.mediaDevices
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.getUserMedia({video: true, audio: true})
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.then(stream => {
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VideoChat.onMediaStream(stream);
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})
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.catch(error => {
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VideoChat.noMediaStream(error);
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});
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},
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requestScreenStream: function (event) {
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navigator.mediaDevices
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.getDisplayMedia({video: true, audio: true})
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.then(stream => {
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VideoChat.onMediaStream(stream);
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})
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.catch(error => {
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VideoChat.noMediaStream(error);
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});
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},
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// The onMediaStream function receives the media stream as an argument.
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onMediaStream: function (stream) {
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console.log("onMediaStream");
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// VideoChat.localVideo.volume = 0; // Turn the volume down to 0 to avoid echoes.
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VideoChat.localStream = stream;
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// VideoChat.videoButton.setAttribute('disabled', 'disabled');
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// VideoChat.screenButton.setAttribute('disabled', 'disabled');
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// Add the stream as video's srcObject.
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VideoChat.localVideo.srcObject = stream;
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// Now we're ready to join the chat room.
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VideoChat.socket.emit('join', roomHash);
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// VideoChat.socket.on('roomtest', (passedRoom) => alert("youre in room: " + passedRoom));
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VideoChat.socket.on('temp', () => alert("temp called"));
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VideoChat.socket.on('full', VideoChat.chatRoomFull);
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VideoChat.socket.on('offer', VideoChat.onOffer);
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VideoChat.socket.on('ready', VideoChat.readyToCall);
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VideoChat.socket.on('willInitiateCall', () => VideoChat.willInitiateCall = true);
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},
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// There's not much to do in this demo if there is no media stream. So let's just stop.
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noMediaStream: function () {
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logIt('No media stream for us.');
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},
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chatRoomFull: function(){
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alert("Chat room is full. Check to make sure you don't have multiple open tabs");
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// VideoChat.socket.disconnect()
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// todo handle this better
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},
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// When we are ready to call, enable the Call button.
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readyToCall: function (event) {
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console.log("readyToCall");
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// VideoChat.callButton.removeAttribute('disabled');
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if (VideoChat.willInitiateCall) {
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VideoChat.startCall()
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}
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},
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// Set up a callback to run when we have the ephemeral token to use Twilio's TURN server.
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startCall: function (event) {
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console.log("startCall");
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logIt('>>> Sending token request...');
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VideoChat.socket.on('token', VideoChat.onToken(VideoChat.createOffer));
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VideoChat.socket.emit('token', roomHash);
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// VideoChat.callButton.disabled = true
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},
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// When we receive the ephemeral token back from the server.
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onToken: function (callback) {
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console.log("onToken");
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return function (token) {
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logIt('<<< Received token');
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// Set up a new RTCPeerConnection using the token's iceServers.
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VideoChat.peerConnection = new RTCPeerConnection({iceServers: token.iceServers});
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// Add the local video stream to the peerConnection.
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VideoChat.peerConnection.addStream(VideoChat.localStream);
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// Set up callbacks for the connection generating iceCandidates or
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// receiving the remote media stream.
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VideoChat.peerConnection.onicecandidate = VideoChat.onIceCandidate;
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VideoChat.peerConnection.onaddstream = VideoChat.onAddStream;
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// Set up listeners on the socket for candidates or answers being passed
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// over the socket connection.
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VideoChat.socket.on('candidate', VideoChat.onCandidate);
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VideoChat.socket.on('answer', VideoChat.onAnswer);
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callback();
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};
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},
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// When the peerConnection generates an ice candidate, send it over the socket
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// to the peer.
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onIceCandidate: function (event) {
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console.log("onIceCandidate");
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if (event.candidate) {
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logIt(`<<< Received local ICE candidate from STUN/TURN server (${event.candidate.address})`);
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if (VideoChat.connected) {
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logIt(`>>> Sending local ICE candidate (${event.candidate.address})`);
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VideoChat.socket.emit('candidate', JSON.stringify(event.candidate), roomHash);
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} else {
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// If we are not 'connected' to the other peer, we are buffering the local ICE candidates.
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// This most likely is happening on the "caller" side.
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// The peer may not have created the RTCPeerConnection yet, so we are waiting for the 'answer'
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// to arrive. This will signal that the peer is ready to receive signaling.
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VideoChat.localICECandidates.push(event.candidate);
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}
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}
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},
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// When receiving a candidate over the socket, turn it back into a real
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// RTCIceCandidate and add it to the peerConnection.
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onCandidate: function (candidate) {
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console.log("onCandidate");
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rtcCandidate = new RTCIceCandidate(JSON.parse(candidate));
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logIt(`<<< Received remote ICE candidate (${rtcCandidate.address} - ${rtcCandidate.relatedAddress})`);
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VideoChat.peerConnection.addIceCandidate(rtcCandidate);
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},
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// Create an offer that contains the media capabilities of the browser.
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createOffer: function () {
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console.log("createOffer");
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logIt('>>> Creating offer...');
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VideoChat.peerConnection.createOffer(
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function (offer) {
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// If the offer is created successfully, set it as the local description
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// and send it over the socket connection to initiate the peerConnection
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// on the other side.
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VideoChat.peerConnection.setLocalDescription(offer);
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VideoChat.socket.emit('offer', JSON.stringify(offer), roomHash);
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},
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function (err) {
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logIt("failed offer creation");
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logIt(err, true);
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}
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);
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},
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// Create an answer with the media capabilities that both browsers share.
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// This function is called with the offer from the originating browser, which
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// needs to be parsed into an RTCSessionDescription and added as the remote
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// description to the peerConnection object. Then the answer is created in the
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// same manner as the offer and sent over the socket.
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createAnswer: function (offer) {
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console.log("createAnswer");
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return function () {
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logIt('>>> Creating answer...');
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VideoChat.connected = true;
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rtcOffer = new RTCSessionDescription(JSON.parse(offer));
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VideoChat.peerConnection.setRemoteDescription(rtcOffer);
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VideoChat.peerConnection.createAnswer(
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function (answer) {
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VideoChat.peerConnection.setLocalDescription(answer);
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VideoChat.socket.emit('answer', JSON.stringify(answer), roomHash);
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},
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function (err) {
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logIt("Failed answer creation.");
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logIt(err, true);
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}
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);
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};
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},
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// When a browser receives an offer, set up a callback to be run when the
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// ephemeral token is returned from Twilio.
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onOffer: function (offer) {
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console.log("onOffer");
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logIt('<<< Received offer');
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VideoChat.socket.on('token', VideoChat.onToken(VideoChat.createAnswer(offer)));
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VideoChat.socket.emit('token', roomHash);
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},
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// When an answer is received, add it to the peerConnection as the remote
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// description.
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onAnswer: function (answer) {
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console.log("onAnswer");
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logIt('<<< Received answer');
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var rtcAnswer = new RTCSessionDescription(JSON.parse(answer));
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VideoChat.peerConnection.setRemoteDescription(rtcAnswer);
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VideoChat.connected = true;
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VideoChat.localICECandidates.forEach(candidate => {
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// The caller now knows that the callee is ready to accept new ICE candidates, so sending the buffer over
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logIt(`>>> Sending local ICE candidate (${candidate.address})`);
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VideoChat.socket.emit('candidate', JSON.stringify(candidate), roomHash);
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});
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// Reset the buffer of local ICE candidates. This is not really needed
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// in this specific client, but it's good practice
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VideoChat.localICECandidates = [];
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},
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// When the peerConnection receives the actual media stream from the other
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// browser, add it to the other video element on the page.
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onAddStream: function (event) {
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console.log("onAddStream");
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logIt('<<< Received new stream from remote. Adding it...');
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VideoChat.remoteVideo.srcObject = event.stream;
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}
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};
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// VideoChat.videoButton.addEventListener('click', VideoChat.requestMediaStream, false);
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// VideoChat.screenButton.addEventListener('click', VideoChat.requestScreenStream, false);
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// VideoChat.callButton.addEventListener('click', VideoChat.startCall, false);
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// auto get media
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// VideoChat.requestScreenStream();
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VideoChat.requestMediaStream();
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