241 lines
8.3 KiB
JavaScript
241 lines
8.3 KiB
JavaScript
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/**
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* Copyright (c) 2014 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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// LoopbackTest establish a one way loopback call between 2 peer connections
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// while continuously monitoring bandwidth stats. The idea is to use this as
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// a base for other future tests and to keep track of more than just bandwidth
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// stats.
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//
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// Usage:
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// var test = new LoopbackTest(stream, callDurationMs,
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// forceTurn, pcConstraints,
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// maxVideoBitrateKbps);
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// test.run(onDone);
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// function onDone() {
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// test.getResults(); // return stats recorded during the loopback test.
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// }
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//
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function LoopbackTest(
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stream,
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callDurationMs,
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forceTurn,
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pcConstraints,
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maxVideoBitrateKbps) {
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var pc1StatTracker;
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var pc2StatTracker;
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// In order to study effect of network (e.g. wifi) on peer connection one can
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// establish a loopback call and force it to go via a turn server. This way
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// the call won't switch to local addresses. That is achieved by filtering out
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// all non-relay ice candidades on both peers.
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function constrainTurnCandidates(pc) {
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var origAddIceCandidate = pc.addIceCandidate;
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pc.addIceCandidate = function (candidate, successCallback,
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failureCallback) {
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if (forceTurn && candidate.candidate.indexOf("typ relay ") == -1) {
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trace("Dropping non-turn candidate: " + candidate.candidate);
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successCallback();
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return;
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} else {
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origAddIceCandidate.call(this, candidate, successCallback,
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failureCallback);
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}
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}
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}
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// FEC makes it hard to study bwe estimation since there seems to be a spike
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// when it is enabled and disabled. Disable it for now. FEC issue tracked on:
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// https://code.google.com/p/webrtc/issues/detail?id=3050
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function constrainOfferToRemoveFec(pc) {
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var origCreateOffer = pc.createOffer;
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pc.createOffer = function (successCallback, failureCallback, options) {
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function filteredSuccessCallback(desc) {
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desc.sdp = desc.sdp.replace(/(m=video 1 [^\r]+)(116 117)(\r\n)/g,
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'$1\r\n');
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desc.sdp = desc.sdp.replace(/a=rtpmap:116 red\/90000\r\n/g, '');
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desc.sdp = desc.sdp.replace(/a=rtpmap:117 ulpfec\/90000\r\n/g, '');
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successCallback(desc);
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}
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origCreateOffer.call(this, filteredSuccessCallback, failureCallback,
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options);
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}
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}
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// Constraint max video bitrate by modifying the SDP when creating an answer.
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function constrainBitrateAnswer(pc) {
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var origCreateAnswer = pc.createAnswer;
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pc.createAnswer = function (successCallback, failureCallback, options) {
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function filteredSuccessCallback(desc) {
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if (maxVideoBitrateKbps) {
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desc.sdp = desc.sdp.replace(
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/a=mid:video\r\n/g,
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'a=mid:video\r\nb=AS:' + maxVideoBitrateKbps + '\r\n');
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}
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successCallback(desc);
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}
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origCreateAnswer.call(this, filteredSuccessCallback, failureCallback,
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options);
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}
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}
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// Run the actual LoopbackTest.
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this.run = function(doneCallback) {
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if (forceTurn) requestTurn(start, fail);
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else start();
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function start(turnServer) {
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var pcConfig = forceTurn ? { iceServers: [turnServer] } : null;
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console.log(pcConfig);
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var pc1 = new RTCPeerConnection(pcConfig, pcConstraints);
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constrainTurnCandidates(pc1);
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constrainOfferToRemoveFec(pc1);
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pc1StatTracker = new StatTracker(pc1, 50);
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pc1StatTracker.recordStat("EstimatedSendBitrate",
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"bweforvideo", "googAvailableSendBandwidth");
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pc1StatTracker.recordStat("TransmitBitrate",
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"bweforvideo", "googTransmitBitrate");
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pc1StatTracker.recordStat("TargetEncodeBitrate",
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"bweforvideo", "googTargetEncBitrate");
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pc1StatTracker.recordStat("ActualEncodedBitrate",
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"bweforvideo", "googActualEncBitrate");
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var pc2 = new RTCPeerConnection(pcConfig, pcConstraints);
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constrainTurnCandidates(pc2);
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constrainBitrateAnswer(pc2);
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pc2StatTracker = new StatTracker(pc2, 50);
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pc2StatTracker.recordStat("REMB",
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"bweforvideo", "googAvailableReceiveBandwidth");
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pc1.addStream(stream);
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var call = new Call(pc1, pc2);
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call.start();
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setTimeout(function () {
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call.stop();
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pc1StatTracker.stop();
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pc2StatTracker.stop();
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success();
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}, callDurationMs);
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}
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function success() {
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trace("Success");
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doneCallback();
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}
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function fail(msg) {
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trace("Fail: " + msg);
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doneCallback();
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}
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}
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// Returns a google visualization datatable with the recorded samples during
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// the loopback test.
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this.getResults = function () {
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return mergeDataTable(pc1StatTracker.dataTable(),
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pc2StatTracker.dataTable());
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}
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// Helper class to establish and manage a call between 2 peer connections.
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// Usage:
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// var c = new Call(pc1, pc2);
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// c.start();
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// c.stop();
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//
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function Call(pc1, pc2) {
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pc1.onicecandidate = applyIceCandidate.bind(pc2);
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pc2.onicecandidate = applyIceCandidate.bind(pc1);
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function applyIceCandidate(e) {
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if (e.candidate) {
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this.addIceCandidate(new RTCIceCandidate(e.candidate),
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onAddIceCandidateSuccess,
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onAddIceCandidateError);
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}
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}
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function onAddIceCandidateSuccess() {}
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function onAddIceCandidateError(error) {
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trace("Failed to add Ice Candidate: " + error.toString());
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}
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this.start = function() {
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pc1.createOffer(gotDescription1, onCreateSessionDescriptionError);
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function onCreateSessionDescriptionError(error) {
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trace('Failed to create session description: ' + error.toString());
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}
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function gotDescription1(desc){
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trace("Offer: " + desc.sdp);
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pc1.setLocalDescription(desc);
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pc2.setRemoteDescription(desc);
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// Since the "remote" side has no media stream we need
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// to pass in the right constraints in order for it to
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// accept the incoming offer of audio and video.
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pc2.createAnswer(gotDescription2, onCreateSessionDescriptionError);
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}
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function gotDescription2(desc){
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trace("Answer: " + desc.sdp);
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pc2.setLocalDescription(desc);
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pc1.setRemoteDescription(desc);
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}
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}
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this.stop = function() {
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pc1.close();
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pc2.close();
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}
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}
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// Request a turn server. This uses the same servers as apprtc.
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function requestTurn(successCallback, failureCallback) {
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var currentDomain = document.domain;
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if (currentDomain.search('localhost') === -1 &&
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currentDomain.search('webrtc.googlecode.com') === -1) {
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failureCallback("Domain not authorized for turn server: " +
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currentDomain);
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return;
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}
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// Get a turn server from computeengineondemand.appspot.com.
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var turnUrl = 'https://computeengineondemand.appspot.com/' +
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'turn?username=156547625762562&key=4080218913';
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var xmlhttp = new XMLHttpRequest();
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xmlhttp.onreadystatechange = onTurnResult;
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xmlhttp.open('GET', turnUrl, true);
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xmlhttp.send();
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function onTurnResult() {
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if (this.readyState !== 4) {
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return;
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}
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if (this.status === 200) {
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var turnServer = JSON.parse(xmlhttp.responseText);
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// Create turnUris using the polyfill (adapter.js).
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turnServer.uris = turnServer.uris.filter(
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function (e) { return e.search('transport=udp') != -1; }
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);
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var iceServers = createIceServers(turnServer.uris,
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turnServer.username,
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turnServer.password);
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if (iceServers !== null) {
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successCallback(iceServers);
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return;
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}
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}
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failureCallback("Failed to get a turn server.");
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}
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}
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}
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