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TraceablePeerConnection.js 115KB

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  1. import { getLogger } from '@jitsi/logger';
  2. import { Interop } from '@jitsi/sdp-interop';
  3. import transform from 'sdp-transform';
  4. import * as CodecMimeType from '../../service/RTC/CodecMimeType';
  5. import { MediaDirection } from '../../service/RTC/MediaDirection';
  6. import { MediaType } from '../../service/RTC/MediaType';
  7. import RTCEvents from '../../service/RTC/RTCEvents';
  8. import * as SignalingEvents from '../../service/RTC/SignalingEvents';
  9. import { getSourceIndexFromSourceName } from '../../service/RTC/SignalingLayer';
  10. import { VideoType } from '../../service/RTC/VideoType';
  11. import { SS_DEFAULT_FRAME_RATE } from '../RTC/ScreenObtainer';
  12. import browser from '../browser';
  13. import FeatureFlags from '../flags/FeatureFlags';
  14. import LocalSdpMunger from '../sdp/LocalSdpMunger';
  15. import RtxModifier from '../sdp/RtxModifier';
  16. import SDP from '../sdp/SDP';
  17. import SDPUtil from '../sdp/SDPUtil';
  18. import SdpConsistency from '../sdp/SdpConsistency';
  19. import SdpSimulcast from '../sdp/SdpSimulcast';
  20. import { SdpTransformWrap } from '../sdp/SdpTransformUtil';
  21. import * as GlobalOnErrorHandler from '../util/GlobalOnErrorHandler';
  22. import JitsiRemoteTrack from './JitsiRemoteTrack';
  23. import RTC from './RTC';
  24. import {
  25. HD_BITRATE,
  26. HD_SCALE_FACTOR,
  27. SIM_LAYER_RIDS,
  28. TPCUtils
  29. } from './TPCUtils';
  30. // FIXME SDP tools should end up in some kind of util module
  31. const logger = getLogger(__filename);
  32. const DEGRADATION_PREFERENCE_CAMERA = 'maintain-framerate';
  33. const DEGRADATION_PREFERENCE_DESKTOP = 'maintain-resolution';
  34. /* eslint-disable max-params */
  35. /**
  36. * Creates new instance of 'TraceablePeerConnection'.
  37. *
  38. * @param {RTC} rtc the instance of <tt>RTC</tt> service
  39. * @param {number} id the peer connection id assigned by the parent RTC module.
  40. * @param {SignalingLayer} signalingLayer the signaling layer instance
  41. * @param {object} pcConfig The {@code RTCConfiguration} to use for the WebRTC peer connection.
  42. * @param {object} constraints WebRTC 'PeerConnection' constraints
  43. * @param {boolean} isP2P indicates whether or not the new instance will be used in a peer to peer connection.
  44. * @param {object} options <tt>TracablePeerConnection</tt> config options.
  45. * @param {boolean} options.disableSimulcast if set to 'true' will disable the simulcast.
  46. * @param {boolean} options.disableRtx if set to 'true' will disable the RTX.
  47. * @param {string} options.disabledCodec the mime type of the code that should not be negotiated on the peerconnection.
  48. * @param {string} options.preferredCodec the mime type of the codec that needs to be made the preferred codec for the
  49. * peerconnection.
  50. * @param {boolean} options.startSilent If set to 'true' no audio will be sent or received.
  51. * @param {boolean} options.usesUnifiedPlan Indicates if the browser is running in unified plan mode.
  52. *
  53. * FIXME: initially the purpose of TraceablePeerConnection was to be able to
  54. * debug the peer connection. Since many other responsibilities have been added
  55. * it would make sense to extract a separate class from it and come up with
  56. * a more suitable name.
  57. *
  58. * @constructor
  59. */
  60. export default function TraceablePeerConnection(
  61. rtc,
  62. id,
  63. signalingLayer,
  64. pcConfig,
  65. constraints,
  66. isP2P,
  67. options) {
  68. /**
  69. * Indicates whether or not this peer connection instance is actively
  70. * sending/receiving audio media. When set to <tt>false</tt> the SDP audio
  71. * media direction will be adjusted to 'inactive' in order to suspend
  72. * the transmission.
  73. * @type {boolean}
  74. * @private
  75. */
  76. this.audioTransferActive = !(options.startSilent === true);
  77. /**
  78. * The DTMF sender instance used to send DTMF tones.
  79. *
  80. * @type {RTCDTMFSender|undefined}
  81. * @private
  82. */
  83. this._dtmfSender = undefined;
  84. /**
  85. * @typedef {Object} TouchToneRequest
  86. * @property {string} tones - The DTMF tones string as defined by
  87. * {@code RTCDTMFSender.insertDTMF}, 'tones' argument.
  88. * @property {number} duration - The amount of time in milliseconds that
  89. * each DTMF should last.
  90. * @property {string} interToneGap - The length of time in miliseconds to
  91. * wait between tones.
  92. */
  93. /**
  94. * TouchToneRequests which are waiting to be played. This queue is filled
  95. * if there are touch tones currently being played.
  96. *
  97. * @type {Array<TouchToneRequest>}
  98. * @private
  99. */
  100. this._dtmfTonesQueue = [];
  101. /**
  102. * Indicates whether or not this peer connection instance is actively
  103. * sending/receiving video media. When set to <tt>false</tt> the SDP video
  104. * media direction will be adjusted to 'inactive' in order to suspend
  105. * the transmission.
  106. * @type {boolean}
  107. * @private
  108. */
  109. this.videoTransferActive = true;
  110. /**
  111. * The parent instance of RTC service which created this
  112. * <tt>TracablePeerConnection</tt>.
  113. * @type {RTC}
  114. */
  115. this.rtc = rtc;
  116. /**
  117. * The peer connection identifier assigned by the RTC module.
  118. * @type {number}
  119. */
  120. this.id = id;
  121. /**
  122. * Indicates whether or not this instance is used in a peer to peer
  123. * connection.
  124. * @type {boolean}
  125. */
  126. this.isP2P = isP2P;
  127. /**
  128. * The map holds remote tracks associated with this peer connection. It maps user's JID to media type and a set of
  129. * remote tracks.
  130. * @type {Map<string, Map<MediaType, Set<JitsiRemoteTrack>>>}
  131. */
  132. this.remoteTracks = new Map();
  133. /**
  134. * A map which stores local tracks mapped by {@link JitsiLocalTrack.rtcId}
  135. * @type {Map<number, JitsiLocalTrack>}
  136. */
  137. this.localTracks = new Map();
  138. /**
  139. * Keeps tracks of the WebRTC <tt>MediaStream</tt>s that have been added to
  140. * the underlying WebRTC PeerConnection.
  141. * @type {Array}
  142. * @private
  143. */
  144. this._addedStreams = [];
  145. /**
  146. * @typedef {Object} TPCGroupInfo
  147. * @property {string} semantics the SSRC groups semantics
  148. * @property {Array<number>} ssrcs group's SSRCs in order where the first
  149. * one is group's primary SSRC, the second one is secondary (RTX) and so
  150. * on...
  151. */
  152. /**
  153. * @typedef {Object} TPCSSRCInfo
  154. * @property {Array<number>} ssrcs an array which holds all track's SSRCs
  155. * @property {Array<TPCGroupInfo>} groups an array stores all track's SSRC
  156. * groups
  157. */
  158. /**
  159. * Holds the info about local track's SSRCs mapped per their
  160. * {@link JitsiLocalTrack.rtcId}
  161. * @type {Map<number, TPCSSRCInfo>}
  162. */
  163. this.localSSRCs = new Map();
  164. /**
  165. * The set of remote SSRCs seen so far.
  166. * Distinguishes new SSRCs from those that have been remapped.
  167. */
  168. this.remoteSSRCs = new Set();
  169. /**
  170. * The local ICE username fragment for this session.
  171. */
  172. this.localUfrag = null;
  173. /**
  174. * The remote ICE username fragment for this session.
  175. */
  176. this.remoteUfrag = null;
  177. /**
  178. * The DTLS transport object for the PeerConnection.
  179. * Note: this assume only one shared transport exists because we bundled
  180. * all streams on the same underlying transport.
  181. */
  182. this._dtlsTransport = null;
  183. /**
  184. * The signaling layer which operates this peer connection.
  185. * @type {SignalingLayer}
  186. */
  187. this.signalingLayer = signalingLayer;
  188. // SignalingLayer listeners
  189. this._peerVideoTypeChanged = this._peerVideoTypeChanged.bind(this);
  190. this.signalingLayer.on(SignalingEvents.PEER_VIDEO_TYPE_CHANGED, this._peerVideoTypeChanged);
  191. this._peerMutedChanged = this._peerMutedChanged.bind(this);
  192. this.signalingLayer.on(SignalingEvents.PEER_MUTED_CHANGED, this._peerMutedChanged);
  193. this.options = options;
  194. // Setup SignalingLayer listeners for source-name based events.
  195. this.signalingLayer.on(SignalingEvents.SOURCE_MUTED_CHANGED,
  196. (sourceName, isMuted) => this._sourceMutedChanged(sourceName, isMuted));
  197. this.signalingLayer.on(SignalingEvents.SOURCE_VIDEO_TYPE_CHANGED,
  198. (sourceName, videoType) => this._sourceVideoTypeChanged(sourceName, videoType));
  199. // Make sure constraints is properly formatted in order to provide information about whether or not this
  200. // connection is P2P to rtcstats.
  201. const safeConstraints = constraints || {};
  202. safeConstraints.optional = safeConstraints.optional || [];
  203. // The `optional` parameter needs to be of type array, otherwise chrome will throw an error.
  204. // Firefox and Safari just ignore it.
  205. if (Array.isArray(safeConstraints.optional)) {
  206. safeConstraints.optional.push({ rtcStatsSFUP2P: this.isP2P });
  207. } else {
  208. logger.warn('Optional param is not an array, rtcstats p2p data is omitted.');
  209. }
  210. this.peerconnection = new RTCPeerConnection(pcConfig, safeConstraints);
  211. this.tpcUtils = new TPCUtils(this);
  212. this.updateLog = [];
  213. this.stats = {};
  214. this.statsinterval = null;
  215. /**
  216. * Flag used to indicate if low fps screenshare is desired.
  217. */
  218. this._capScreenshareBitrate = this.options.capScreenshareBitrate;
  219. /**
  220. * Flag used to indicate if the browser is running in unified plan mode.
  221. */
  222. this._usesUnifiedPlan = options.usesUnifiedPlan;
  223. /**
  224. * Codec preferences set for the peerconnection through config.js.
  225. */
  226. this.codecSettings = this.options.codecSettings;
  227. /**
  228. * Flag used to indicate if RTCRtpTransceiver#setCodecPreferences is to be used instead of SDP
  229. * munging for codec selection.
  230. */
  231. this._usesTransceiverCodecPreferences = browser.supportsCodecPreferences() && this._usesUnifiedPlan;
  232. this._usesTransceiverCodecPreferences
  233. && logger.info('Using RTCRtpTransceiver#setCodecPreferences for codec selection');
  234. // We currently need these flags only for FF and that's why we are updating them only for unified plan.
  235. if (this._usesUnifiedPlan) {
  236. /**
  237. * Indicates whether an audio track has ever been added to the peer connection.
  238. */
  239. this._hasHadAudioTrack = false;
  240. /**
  241. * Indicates whether a video track has ever been added to the peer connection.
  242. */
  243. this._hasHadVideoTrack = false;
  244. }
  245. /**
  246. * @type {number} The max number of stats to keep in this.stats. Limit to
  247. * 300 values, i.e. 5 minutes; set to 0 to disable
  248. */
  249. this.maxstats = options.maxstats;
  250. this.interop = new Interop();
  251. if (this._usesUnifiedPlan) {
  252. this.simulcast = new SdpSimulcast({ numOfLayers: SIM_LAYER_RIDS.length });
  253. } else {
  254. const Simulcast = require('@jitsi/sdp-simulcast');
  255. this.simulcast = new Simulcast(
  256. {
  257. numOfLayers: SIM_LAYER_RIDS.length,
  258. explodeRemoteSimulcast: false,
  259. usesUnifiedPlan: false
  260. });
  261. }
  262. this.sdpConsistency = new SdpConsistency(this.toString());
  263. /**
  264. * Munges local SDP provided to the Jingle Session in order to prevent from
  265. * sending SSRC updates on attach/detach and mute/unmute (for video).
  266. * @type {LocalSdpMunger}
  267. */
  268. this.localSdpMunger = new LocalSdpMunger(this, this.rtc.getLocalEndpointId());
  269. /**
  270. * TracablePeerConnection uses RTC's eventEmitter
  271. * @type {EventEmitter}
  272. */
  273. this.eventEmitter = rtc.eventEmitter;
  274. this.rtxModifier = new RtxModifier();
  275. /**
  276. * The height constraint applied on the video sender. The default value is 2160 (4K) when layer suspension is
  277. * explicitly disabled.
  278. */
  279. this._senderVideoMaxHeight = 2160;
  280. /**
  281. * The height constraints to be applied on the sender per local video source (source name as the key).
  282. * @type {Map<string, number>}
  283. */
  284. this._senderMaxHeights = new Map();
  285. /**
  286. * Holds the RTCRtpTransceiver mids that the local tracks are attached to, mapped per their
  287. * {@link JitsiLocalTrack.rtcId}.
  288. * @type {Map<string, string>}
  289. */
  290. this._localTrackTransceiverMids = new Map();
  291. // override as desired
  292. this.trace = (what, info) => {
  293. logger.debug(what, info);
  294. this.updateLog.push({
  295. time: new Date(),
  296. type: what,
  297. value: info || ''
  298. });
  299. };
  300. this.onicecandidate = null;
  301. this.peerconnection.onicecandidate = event => {
  302. this.trace(
  303. 'onicecandidate',
  304. JSON.stringify(event.candidate, null, ' '));
  305. if (this.onicecandidate !== null) {
  306. this.onicecandidate(event);
  307. }
  308. };
  309. // Use track events when browser is running in unified plan mode and stream events in plan-b mode.
  310. if (this._usesUnifiedPlan) {
  311. this.onTrack = evt => {
  312. const stream = evt.streams[0];
  313. this._remoteTrackAdded(stream, evt.track, evt.transceiver);
  314. stream.addEventListener('removetrack', e => {
  315. this._remoteTrackRemoved(stream, e.track);
  316. });
  317. };
  318. this.peerconnection.addEventListener('track', this.onTrack);
  319. } else {
  320. this.peerconnection.onaddstream = event => this._remoteStreamAdded(event.stream);
  321. this.peerconnection.onremovestream = event => this._remoteStreamRemoved(event.stream);
  322. }
  323. this.onsignalingstatechange = null;
  324. this.peerconnection.onsignalingstatechange = event => {
  325. this.trace('onsignalingstatechange', this.signalingState);
  326. if (this.onsignalingstatechange !== null) {
  327. this.onsignalingstatechange(event);
  328. }
  329. };
  330. this.oniceconnectionstatechange = null;
  331. this.peerconnection.oniceconnectionstatechange = event => {
  332. this.trace('oniceconnectionstatechange', this.iceConnectionState);
  333. if (this.oniceconnectionstatechange !== null) {
  334. this.oniceconnectionstatechange(event);
  335. }
  336. };
  337. this.onnegotiationneeded = null;
  338. this.peerconnection.onnegotiationneeded = event => {
  339. this.trace('onnegotiationneeded');
  340. if (this.onnegotiationneeded !== null) {
  341. this.onnegotiationneeded(event);
  342. }
  343. };
  344. this.onconnectionstatechange = null;
  345. this.peerconnection.onconnectionstatechange = event => {
  346. this.trace('onconnectionstatechange', this.connectionState);
  347. if (this.onconnectionstatechange !== null) {
  348. this.onconnectionstatechange(event);
  349. }
  350. };
  351. this.ondatachannel = null;
  352. this.peerconnection.ondatachannel = event => {
  353. this.trace('ondatachannel');
  354. if (this.ondatachannel !== null) {
  355. this.ondatachannel(event);
  356. }
  357. };
  358. if (this.maxstats) {
  359. this.statsinterval = window.setInterval(() => {
  360. this.getStats().then(stats => {
  361. if (typeof stats?.result === 'function') {
  362. const results = stats.result();
  363. for (let i = 0; i < results.length; ++i) {
  364. const res = results[i];
  365. res.names().forEach(name => {
  366. this._processStat(res, name, res.stat(name));
  367. });
  368. }
  369. } else {
  370. stats.forEach(r => this._processStat(r, '', r));
  371. }
  372. });
  373. }, 1000);
  374. }
  375. this._lastVideoSenderUpdatePromise = Promise.resolve();
  376. logger.info(`Create new ${this}`);
  377. }
  378. /* eslint-enable max-params */
  379. /**
  380. * Process stat and adds it to the array of stats we store.
  381. * @param report the current stats report.
  382. * @param name the name of the report, if available
  383. * @param statValue the value to add.
  384. * @private
  385. */
  386. TraceablePeerConnection.prototype._processStat
  387. = function(report, name, statValue) {
  388. const id = `${report.id}-${name}`;
  389. let s = this.stats[id];
  390. const now = new Date();
  391. if (!s) {
  392. this.stats[id] = s = {
  393. startTime: now,
  394. endTime: now,
  395. values: [],
  396. times: []
  397. };
  398. }
  399. s.values.push(statValue);
  400. s.times.push(now.getTime());
  401. if (s.values.length > this.maxstats) {
  402. s.values.shift();
  403. s.times.shift();
  404. }
  405. s.endTime = now;
  406. };
  407. /**
  408. * Returns a string representation of a SessionDescription object.
  409. */
  410. const dumpSDP = function(description) {
  411. if (typeof description === 'undefined' || description === null) {
  412. return '';
  413. }
  414. return `type: ${description.type}\r\n${description.sdp}`;
  415. };
  416. /**
  417. * Forwards the {@link peerconnection.iceConnectionState} state except that it
  418. * will convert "completed" into "connected" where both mean that the ICE has
  419. * succeeded and is up and running. We never see "completed" state for
  420. * the JVB connection, but it started appearing for the P2P one. This method
  421. * allows to adapt old logic to this new situation.
  422. * @return {string}
  423. */
  424. TraceablePeerConnection.prototype.getConnectionState = function() {
  425. const state = this.peerconnection.iceConnectionState;
  426. if (state === 'completed') {
  427. return 'connected';
  428. }
  429. return state;
  430. };
  431. /**
  432. * Obtains the media direction for given {@link MediaType}. The method takes
  433. * into account whether or not there are any local tracks for media and
  434. * the {@link audioTransferActive} and {@link videoTransferActive} flags.
  435. * @param {MediaType} mediaType
  436. * @param {boolean} isAddOperation whether the direction is to be calculated after a source-add action.
  437. * @return {string} one of the SDP direction constants ('sendrecv, 'recvonly'
  438. * etc.) which should be used when setting local description on the peer
  439. * connection.
  440. * @private
  441. */
  442. TraceablePeerConnection.prototype.getDesiredMediaDirection = function(mediaType, isAddOperation = false) {
  443. const hasLocalSource = this.hasAnyTracksOfType(mediaType);
  444. if (this._usesUnifiedPlan) {
  445. return isAddOperation
  446. ? hasLocalSource ? MediaDirection.SENDRECV : MediaDirection.SENDONLY
  447. : hasLocalSource ? MediaDirection.RECVONLY : MediaDirection.INACTIVE;
  448. }
  449. const mediaTransferActive = mediaType === MediaType.AUDIO ? this.audioTransferActive : this.videoTransferActive;
  450. if (mediaTransferActive) {
  451. return hasLocalSource ? MediaDirection.SENDRECV : MediaDirection.RECVONLY;
  452. }
  453. return MediaDirection.INACTIVE;
  454. };
  455. /**
  456. * Returns the MID of the m-line associated with the local desktop track (if it exists).
  457. *
  458. * @returns {Number|null}
  459. */
  460. TraceablePeerConnection.prototype._getDesktopTrackMid = function() {
  461. const desktopTrack = this.getLocalVideoTracks().find(track => track.getVideoType() === VideoType.DESKTOP);
  462. if (desktopTrack) {
  463. return Number(this._localTrackTransceiverMids.get(desktopTrack.rtcId));
  464. }
  465. return null;
  466. };
  467. /**
  468. * Returns the list of RTCRtpReceivers created for the source of the given media type associated with
  469. * the set of remote endpoints specified.
  470. * @param {Array<string>} endpoints list of the endpoints
  471. * @param {string} mediaType 'audio' or 'video'
  472. * @returns {Array<RTCRtpReceiver>} list of receivers created by the peerconnection.
  473. */
  474. TraceablePeerConnection.prototype._getReceiversByEndpointIds = function(endpoints, mediaType) {
  475. let remoteTracks = [];
  476. let receivers = [];
  477. for (const endpoint of endpoints) {
  478. remoteTracks = remoteTracks.concat(this.getRemoteTracks(endpoint, mediaType));
  479. }
  480. // Get the ids of the MediaStreamTracks associated with each of these remote tracks.
  481. const remoteTrackIds = remoteTracks.map(remote => remote.track?.id);
  482. receivers = this.peerconnection.getReceivers()
  483. .filter(receiver => receiver.track
  484. && receiver.track.kind === mediaType
  485. && remoteTrackIds.find(trackId => trackId === receiver.track.id));
  486. return receivers;
  487. };
  488. /**
  489. * Tells whether or not this TPC instance is using Simulcast.
  490. * @return {boolean} <tt>true</tt> if simulcast is enabled and active or
  491. * <tt>false</tt> if it's turned off.
  492. */
  493. TraceablePeerConnection.prototype.isSimulcastOn = function() {
  494. return !this.options.disableSimulcast;
  495. };
  496. /**
  497. * Handles {@link SignalingEvents.PEER_VIDEO_TYPE_CHANGED}
  498. * @param {string} endpointId the video owner's ID (MUC nickname)
  499. * @param {VideoType} videoType the new value
  500. * @private
  501. */
  502. TraceablePeerConnection.prototype._peerVideoTypeChanged = function(endpointId, videoType) {
  503. // Check if endpointId has a value to avoid action on random track
  504. if (!endpointId) {
  505. logger.error(`${this} No endpointID on peerVideoTypeChanged`);
  506. return;
  507. }
  508. const videoTrack = this.getRemoteTracks(endpointId, MediaType.VIDEO);
  509. if (videoTrack.length) {
  510. // NOTE 1 track per media type is assumed
  511. videoTrack[0]._setVideoType(videoType);
  512. }
  513. };
  514. /**
  515. * Handles remote track mute / unmute events.
  516. * @param {string} endpointId the track owner's identifier (MUC nickname)
  517. * @param {MediaType} mediaType "audio" or "video"
  518. * @param {boolean} isMuted the new mute state
  519. * @private
  520. */
  521. TraceablePeerConnection.prototype._peerMutedChanged = function(endpointId, mediaType, isMuted) {
  522. // Check if endpointId is a value to avoid doing action on all remote tracks
  523. if (!endpointId) {
  524. logger.error(`${this} On peerMuteChanged - no endpoint ID`);
  525. return;
  526. }
  527. const track = this.getRemoteTracks(endpointId, mediaType);
  528. if (track.length) {
  529. // NOTE 1 track per media type is assumed
  530. track[0].setMute(isMuted);
  531. }
  532. };
  533. /**
  534. * Handles remote source mute and unmute changed events.
  535. *
  536. * @param {string} sourceName - The name of the remote source.
  537. * @param {boolean} isMuted - The new mute state.
  538. */
  539. TraceablePeerConnection.prototype._sourceMutedChanged = function(sourceName, isMuted) {
  540. const track = this.getRemoteTracks().find(t => t.getSourceName() === sourceName);
  541. if (!track) {
  542. if (FeatureFlags.isSsrcRewritingSupported()) {
  543. logger.debug(`Remote track not found for source=${sourceName}, mute update failed!`);
  544. }
  545. return;
  546. }
  547. track.setMute(isMuted);
  548. };
  549. /**
  550. * Handles remote source videoType changed events.
  551. *
  552. * @param {string} sourceName - The name of the remote source.
  553. * @param {boolean} isMuted - The new value.
  554. */
  555. TraceablePeerConnection.prototype._sourceVideoTypeChanged = function(sourceName, videoType) {
  556. const track = this.getRemoteTracks().find(t => t.getSourceName() === sourceName);
  557. if (!track) {
  558. return;
  559. }
  560. track._setVideoType(videoType);
  561. };
  562. /**
  563. * Obtains audio levels of the remote audio tracks by getting the source information on the RTCRtpReceivers.
  564. * The information relevant to the ssrc is updated each time a RTP packet constaining the ssrc is received.
  565. * @param {Array<string>} speakerList list of endpoint ids for which audio levels are to be gathered.
  566. * @returns {Object} containing ssrc and audio level information as a key-value pair.
  567. */
  568. TraceablePeerConnection.prototype.getAudioLevels = function(speakerList = []) {
  569. const audioLevels = {};
  570. const audioReceivers = speakerList.length
  571. ? this._getReceiversByEndpointIds(speakerList, MediaType.AUDIO)
  572. : this.peerconnection.getReceivers()
  573. .filter(receiver => receiver.track && receiver.track.kind === MediaType.AUDIO && receiver.track.enabled);
  574. audioReceivers.forEach(remote => {
  575. const ssrc = remote.getSynchronizationSources();
  576. if (ssrc && ssrc.length) {
  577. // As per spec, this audiolevel is a value between 0..1 (linear), where 1.0
  578. // represents 0 dBov, 0 represents silence, and 0.5 represents approximately
  579. // 6 dBSPL change in the sound pressure level from 0 dBov.
  580. // https://www.w3.org/TR/webrtc/#dom-rtcrtpcontributingsource-audiolevel
  581. audioLevels[ssrc[0].source] = ssrc[0].audioLevel;
  582. }
  583. });
  584. return audioLevels;
  585. };
  586. /**
  587. * Obtains local tracks for given {@link MediaType}. If the <tt>mediaType</tt>
  588. * argument is omitted the list of all local tracks will be returned.
  589. * @param {MediaType} [mediaType]
  590. * @return {Array<JitsiLocalTrack>}
  591. */
  592. TraceablePeerConnection.prototype.getLocalTracks = function(mediaType) {
  593. let tracks = Array.from(this.localTracks.values());
  594. if (mediaType !== undefined) {
  595. tracks = tracks.filter(track => track.getType() === mediaType);
  596. }
  597. return tracks;
  598. };
  599. /**
  600. * Retrieves the local video tracks.
  601. *
  602. * @returns {Array<JitsiLocalTrack>} - local video tracks.
  603. */
  604. TraceablePeerConnection.prototype.getLocalVideoTracks = function() {
  605. return this.getLocalTracks(MediaType.VIDEO);
  606. };
  607. /**
  608. * Checks whether or not this {@link TraceablePeerConnection} instance contains any local tracks for given
  609. * <tt>mediaType</tt>.
  610. *
  611. * @param {MediaType} mediaType - The media type.
  612. * @return {boolean}
  613. */
  614. TraceablePeerConnection.prototype.hasAnyTracksOfType = function(mediaType) {
  615. if (!mediaType) {
  616. throw new Error('"mediaType" is required');
  617. }
  618. return this.getLocalTracks(mediaType).length > 0;
  619. };
  620. /**
  621. * Obtains all remote tracks currently known to this PeerConnection instance.
  622. *
  623. * @param {string} [endpointId] - The track owner's identifier (MUC nickname)
  624. * @param {MediaType} [mediaType] - The remote tracks will be filtered by their media type if this argument is
  625. * specified.
  626. * @return {Array<JitsiRemoteTrack>}
  627. */
  628. TraceablePeerConnection.prototype.getRemoteTracks = function(endpointId, mediaType) {
  629. let remoteTracks = [];
  630. const endpoints = endpointId ? [ endpointId ] : this.remoteTracks.keys();
  631. for (const endpoint of endpoints) {
  632. const endpointTracksByMediaType = this.remoteTracks.get(endpoint);
  633. if (endpointTracksByMediaType) {
  634. for (const trackMediaType of endpointTracksByMediaType.keys()) {
  635. // per media type filtering
  636. if (!mediaType || mediaType === trackMediaType) {
  637. remoteTracks = remoteTracks.concat(Array.from(endpointTracksByMediaType.get(trackMediaType)));
  638. }
  639. }
  640. }
  641. }
  642. return remoteTracks;
  643. };
  644. /**
  645. * Parses the remote description and returns the sdp lines of the sources associated with a remote participant.
  646. *
  647. * @param {string} id Endpoint id of the remote participant.
  648. * @returns {Array<string>} The sdp lines that have the ssrc information.
  649. */
  650. TraceablePeerConnection.prototype.getRemoteSourceInfoByParticipant = function(id) {
  651. const removeSsrcInfo = [];
  652. const remoteTracks = this.getRemoteTracks(id);
  653. if (!remoteTracks?.length) {
  654. return removeSsrcInfo;
  655. }
  656. const primarySsrcs = remoteTracks.map(track => track.getSSRC());
  657. const sdp = new SDP(this.remoteDescription.sdp);
  658. primarySsrcs.forEach((ssrc, idx) => {
  659. for (const media of sdp.media) {
  660. let lines = '';
  661. let ssrcLines = SDPUtil.findLines(media, `a=ssrc:${ssrc}`);
  662. if (ssrcLines.length) {
  663. if (!removeSsrcInfo[idx]) {
  664. removeSsrcInfo[idx] = '';
  665. }
  666. // Check if there are any FID groups present for the primary ssrc.
  667. const fidLines = SDPUtil.findLines(media, `a=ssrc-group:FID ${ssrc}`);
  668. if (fidLines.length) {
  669. const secondarySsrc = fidLines[0].split(' ')[2];
  670. lines += `${fidLines[0]}\r\n`;
  671. ssrcLines = ssrcLines.concat(SDPUtil.findLines(media, `a=ssrc:${secondarySsrc}`));
  672. }
  673. removeSsrcInfo[idx] += `${ssrcLines.join('\r\n')}\r\n`;
  674. removeSsrcInfo[idx] += lines;
  675. }
  676. }
  677. });
  678. return removeSsrcInfo;
  679. };
  680. /**
  681. * Returns the target bitrates configured for the local video source.
  682. *
  683. * @returns {Object}
  684. */
  685. TraceablePeerConnection.prototype.getTargetVideoBitrates = function() {
  686. const currentCodec = this.getConfiguredVideoCodec();
  687. return this.tpcUtils.videoBitrates[currentCodec.toUpperCase()] || this.tpcUtils.videoBitrates;
  688. };
  689. /**
  690. * Tries to find {@link JitsiTrack} for given SSRC number. It will search both
  691. * local and remote tracks bound to this instance.
  692. * @param {number} ssrc
  693. * @return {JitsiTrack|null}
  694. */
  695. TraceablePeerConnection.prototype.getTrackBySSRC = function(ssrc) {
  696. if (typeof ssrc !== 'number') {
  697. throw new Error(`SSRC ${ssrc} is not a number`);
  698. }
  699. for (const localTrack of this.localTracks.values()) {
  700. if (this.getLocalSSRC(localTrack) === ssrc) {
  701. return localTrack;
  702. }
  703. }
  704. for (const remoteTrack of this.getRemoteTracks()) {
  705. if (remoteTrack.getSSRC() === ssrc) {
  706. return remoteTrack;
  707. }
  708. }
  709. return null;
  710. };
  711. /**
  712. * Tries to find SSRC number for given {@link JitsiTrack} id. It will search
  713. * both local and remote tracks bound to this instance.
  714. * @param {string} id
  715. * @return {number|null}
  716. */
  717. TraceablePeerConnection.prototype.getSsrcByTrackId = function(id) {
  718. const findTrackById = track => track.getTrack().id === id;
  719. const localTrack = this.getLocalTracks().find(findTrackById);
  720. if (localTrack) {
  721. return this.getLocalSSRC(localTrack);
  722. }
  723. const remoteTrack = this.getRemoteTracks().find(findTrackById);
  724. if (remoteTrack) {
  725. return remoteTrack.getSSRC();
  726. }
  727. return null;
  728. };
  729. /**
  730. * Called when new remote MediaStream is added to the PeerConnection.
  731. * @param {MediaStream} stream the WebRTC MediaStream for remote participant
  732. */
  733. TraceablePeerConnection.prototype._remoteStreamAdded = function(stream) {
  734. const streamId = stream.id;
  735. // Do not create remote tracks for 'mixed' JVB SSRCs (used by JVB for RTCP termination).
  736. if (!RTC.isUserStreamById(streamId)) {
  737. return;
  738. }
  739. // Bind 'addtrack'/'removetrack' event handlers
  740. if (browser.isChromiumBased()) {
  741. stream.onaddtrack = event => {
  742. this._remoteTrackAdded(stream, event.track);
  743. };
  744. stream.onremovetrack = event => {
  745. this._remoteTrackRemoved(stream, event.track);
  746. };
  747. }
  748. // Call remoteTrackAdded for each track in the stream
  749. const streamAudioTracks = stream.getAudioTracks();
  750. for (const audioTrack of streamAudioTracks) {
  751. this._remoteTrackAdded(stream, audioTrack);
  752. }
  753. const streamVideoTracks = stream.getVideoTracks();
  754. for (const videoTrack of streamVideoTracks) {
  755. this._remoteTrackAdded(stream, videoTrack);
  756. }
  757. };
  758. /**
  759. * Called on "track added" and "stream added" PeerConnection events (because we
  760. * handle streams on per track basis). Finds the owner and the SSRC for
  761. * the track and passes that to ChatRoom for further processing.
  762. * @param {MediaStream} stream the WebRTC MediaStream instance which is
  763. * the parent of the track
  764. * @param {MediaStreamTrack} track the WebRTC MediaStreamTrack added for remote
  765. * participant.
  766. * @param {RTCRtpTransceiver} transceiver the WebRTC transceiver that is created
  767. * for the remote participant in unified plan.
  768. */
  769. TraceablePeerConnection.prototype._remoteTrackAdded = function(stream, track, transceiver = null) {
  770. const streamId = stream.id;
  771. const mediaType = track.kind;
  772. // Do not create remote tracks for 'mixed' JVB SSRCs (used by JVB for RTCP termination).
  773. if (!this.isP2P && !RTC.isUserStreamById(streamId)) {
  774. return;
  775. }
  776. logger.info(`${this} Received track event for remote stream[id=${streamId},type=${mediaType}]`);
  777. // look up an associated JID for a stream id
  778. if (!mediaType) {
  779. GlobalOnErrorHandler.callErrorHandler(
  780. new Error(`MediaType undefined for remote track, stream id: ${streamId}, track creation failed!`));
  781. return;
  782. }
  783. const remoteSDP = this._usesUnifiedPlan
  784. ? new SDP(this.peerconnection.remoteDescription.sdp)
  785. : new SDP(this.remoteDescription.sdp);
  786. let mediaLine;
  787. // In unified plan mode, find the matching mline using 'mid' or the 'msid' attr of the stream.
  788. if (this._usesUnifiedPlan) {
  789. if (transceiver?.mid) {
  790. const mid = transceiver.mid;
  791. mediaLine = remoteSDP.media.find(mls => SDPUtil.findLine(mls, `a=mid:${mid}`));
  792. } else {
  793. mediaLine = remoteSDP.media.find(mls => {
  794. const msid = SDPUtil.findLine(mls, 'a=msid:');
  795. return typeof msid === 'string' && streamId === msid.substring(7).split(' ')[0];
  796. });
  797. }
  798. } else {
  799. mediaLine = remoteSDP.media.find(mls => mls.startsWith(`m=${mediaType}`));
  800. }
  801. if (!mediaLine) {
  802. GlobalOnErrorHandler.callErrorHandler(
  803. new Error(`Matching media line not found in remote SDP for remote stream[id=${streamId},type=${mediaType}],`
  804. + 'track creation failed!'));
  805. return;
  806. }
  807. let ssrcLines = SDPUtil.findLines(mediaLine, 'a=ssrc:');
  808. ssrcLines = ssrcLines.filter(line => line.indexOf(`msid:${streamId}`) !== -1);
  809. if (!ssrcLines.length) {
  810. GlobalOnErrorHandler.callErrorHandler(
  811. new Error(`No SSRC lines found in remote SDP for remote stream[msid=${streamId},type=${mediaType}]`
  812. + 'track creation failed!'));
  813. return;
  814. }
  815. // FIXME the length of ssrcLines[0] not verified, but it will fail
  816. // with global error handler anyway
  817. const ssrcStr = ssrcLines[0].substring(7).split(' ')[0];
  818. const trackSsrc = Number(ssrcStr);
  819. const ownerEndpointId = this.signalingLayer.getSSRCOwner(trackSsrc);
  820. if (isNaN(trackSsrc) || trackSsrc < 0) {
  821. GlobalOnErrorHandler.callErrorHandler(
  822. new Error(`Invalid SSRC for remote stream[ssrc=${trackSsrc},id=${streamId},type=${mediaType}]`
  823. + 'track creation failed!'));
  824. return;
  825. }
  826. if (!ownerEndpointId) {
  827. GlobalOnErrorHandler.callErrorHandler(
  828. new Error(`No SSRC owner known for remote stream[ssrc=${trackSsrc},id=${streamId},type=${mediaType}]`
  829. + 'track creation failed!'));
  830. return;
  831. }
  832. const sourceName = this.signalingLayer.getTrackSourceName(trackSsrc);
  833. const peerMediaInfo = this.signalingLayer.getPeerMediaInfo(ownerEndpointId, mediaType, sourceName);
  834. // Assume default presence state for remote source. Presence can be received after source signaling. This shouldn't
  835. // prevent the endpoint from creating a remote track for the source.
  836. let muted = true;
  837. let videoType = VideoType.CAMERA;
  838. if (peerMediaInfo) {
  839. muted = peerMediaInfo.muted;
  840. videoType = peerMediaInfo.videoType; // can be undefined
  841. } else {
  842. logger.info(`${this}: no source-info available for ${ownerEndpointId}:${sourceName}, assuming default state`);
  843. }
  844. this._createRemoteTrack(ownerEndpointId, stream, track, mediaType, videoType, trackSsrc, muted, sourceName);
  845. };
  846. // FIXME cleanup params
  847. /* eslint-disable max-params */
  848. /**
  849. * Initializes a new JitsiRemoteTrack instance with the data provided by
  850. * the signaling layer and SDP.
  851. *
  852. * @param {string} ownerEndpointId the owner's endpoint ID (MUC nickname)
  853. * @param {MediaStream} stream the WebRTC stream instance
  854. * @param {MediaStreamTrack} track the WebRTC track instance
  855. * @param {MediaType} mediaType the track's type of the media
  856. * @param {VideoType} [videoType] the track's type of the video (if applicable)
  857. * @param {number} ssrc the track's main SSRC number
  858. * @param {boolean} muted the initial muted status
  859. * @param {String} sourceName the track's source name
  860. */
  861. TraceablePeerConnection.prototype._createRemoteTrack = function(
  862. ownerEndpointId,
  863. stream,
  864. track,
  865. mediaType,
  866. videoType,
  867. ssrc,
  868. muted,
  869. sourceName) {
  870. logger.info(`${this} creating remote track[endpoint=${ownerEndpointId},ssrc=${ssrc},`
  871. + `type=${mediaType},sourceName=${sourceName}]`);
  872. let remoteTracksMap = this.remoteTracks.get(ownerEndpointId);
  873. if (!remoteTracksMap) {
  874. remoteTracksMap = new Map();
  875. remoteTracksMap.set(MediaType.AUDIO, new Set());
  876. remoteTracksMap.set(MediaType.VIDEO, new Set());
  877. this.remoteTracks.set(ownerEndpointId, remoteTracksMap);
  878. }
  879. const userTracksByMediaType = remoteTracksMap.get(mediaType);
  880. if (userTracksByMediaType?.size
  881. && Array.from(userTracksByMediaType).find(jitsiTrack => jitsiTrack.getTrack() === track)) {
  882. // Ignore duplicated event which can originate either from 'onStreamAdded' or 'onTrackAdded'.
  883. logger.info(`${this} ignored duplicated track event for track[endpoint=${ownerEndpointId},type=${mediaType}]`);
  884. return;
  885. }
  886. const remoteTrack
  887. = new JitsiRemoteTrack(
  888. this.rtc,
  889. this.rtc.conference,
  890. ownerEndpointId,
  891. stream,
  892. track,
  893. mediaType,
  894. videoType,
  895. ssrc,
  896. muted,
  897. this.isP2P,
  898. sourceName);
  899. userTracksByMediaType.add(remoteTrack);
  900. this.eventEmitter.emit(RTCEvents.REMOTE_TRACK_ADDED, remoteTrack, this);
  901. };
  902. /**
  903. * Handles remote stream removal.
  904. * @param stream the WebRTC MediaStream object which is being removed from the
  905. * PeerConnection
  906. */
  907. TraceablePeerConnection.prototype._remoteStreamRemoved = function(stream) {
  908. if (!RTC.isUserStream(stream)) {
  909. logger.info(`Ignored remote 'stream removed' event for stream[id=${stream.id}]`);
  910. return;
  911. }
  912. // Call remoteTrackRemoved for each track in the stream
  913. const streamVideoTracks = stream.getVideoTracks();
  914. for (const videoTrack of streamVideoTracks) {
  915. this._remoteTrackRemoved(stream, videoTrack);
  916. }
  917. const streamAudioTracks = stream.getAudioTracks();
  918. for (const audioTrack of streamAudioTracks) {
  919. this._remoteTrackRemoved(stream, audioTrack);
  920. }
  921. };
  922. /**
  923. * Handles remote media track removal.
  924. *
  925. * @param {MediaStream} stream - WebRTC MediaStream instance which is the parent of the track.
  926. * @param {MediaStreamTrack} track - WebRTC MediaStreamTrack which has been removed from the PeerConnection.
  927. * @returns {void}
  928. */
  929. TraceablePeerConnection.prototype._remoteTrackRemoved = function(stream, track) {
  930. const streamId = stream.id;
  931. const trackId = track?.id;
  932. // Ignore stream removed events for JVB "mixed" sources (used for RTCP termination).
  933. if (!RTC.isUserStreamById(streamId)) {
  934. return;
  935. }
  936. if (!streamId) {
  937. GlobalOnErrorHandler.callErrorHandler(new Error(`${this} remote track removal failed - no stream ID`));
  938. return;
  939. }
  940. if (!trackId) {
  941. GlobalOnErrorHandler.callErrorHandler(new Error(`${this} remote track removal failed - no track ID`));
  942. return;
  943. }
  944. const toBeRemoved = this.getRemoteTracks().find(
  945. remoteTrack => remoteTrack.getStreamId() === streamId && remoteTrack.getTrackId() === trackId);
  946. if (!toBeRemoved) {
  947. GlobalOnErrorHandler.callErrorHandler(new Error(`${this} remote track removal failed - track not found`));
  948. return;
  949. }
  950. this._removeRemoteTrack(toBeRemoved);
  951. };
  952. /**
  953. * Removes all JitsiRemoteTracks associated with given MUC nickname (resource part of the JID).
  954. *
  955. * @param {string} owner - The resource part of the MUC JID.
  956. * @returns {JitsiRemoteTrack[]} - The array of removed tracks.
  957. */
  958. TraceablePeerConnection.prototype.removeRemoteTracks = function(owner) {
  959. let removedTracks = [];
  960. const remoteTracksByMedia = this.remoteTracks.get(owner);
  961. if (remoteTracksByMedia) {
  962. removedTracks = removedTracks.concat(Array.from(remoteTracksByMedia.get(MediaType.AUDIO)));
  963. removedTracks = removedTracks.concat(Array.from(remoteTracksByMedia.get(MediaType.VIDEO)));
  964. this.remoteTracks.delete(owner);
  965. }
  966. logger.debug(`${this} removed remote tracks[endpoint=${owner},count=${removedTracks.length}`);
  967. return removedTracks;
  968. };
  969. /**
  970. * Removes and disposes given <tt>JitsiRemoteTrack</tt> instance. Emits {@link RTCEvents.REMOTE_TRACK_REMOVED}.
  971. *
  972. * @param {JitsiRemoteTrack} toBeRemoved - The remote track to be removed.
  973. * @returns {void}
  974. */
  975. TraceablePeerConnection.prototype._removeRemoteTrack = function(toBeRemoved) {
  976. logger.info(`${this} Removing remote track stream[id=${toBeRemoved.getStreamId()},`
  977. + `trackId=${toBeRemoved.getTrackId()}]`);
  978. toBeRemoved.dispose();
  979. const participantId = toBeRemoved.getParticipantId();
  980. const userTracksByMediaType = this.remoteTracks.get(participantId);
  981. if (!userTracksByMediaType) {
  982. logger.error(`${this} removeRemoteTrack: no remote tracks map for endpoint=${participantId}`);
  983. } else if (!userTracksByMediaType.get(toBeRemoved.getType())?.delete(toBeRemoved)) {
  984. logger.error(`${this} Failed to remove ${toBeRemoved} - type mapping messed up ?`);
  985. }
  986. this.eventEmitter.emit(RTCEvents.REMOTE_TRACK_REMOVED, toBeRemoved);
  987. };
  988. /**
  989. * Returns a map with keys msid/mediaType and <tt>TrackSSRCInfo</tt> values.
  990. * @param {RTCSessionDescription} desc the local description.
  991. * @return {Map<string,TrackSSRCInfo>}
  992. */
  993. TraceablePeerConnection.prototype._extractSSRCMap = function(desc) {
  994. /**
  995. * Track SSRC infos mapped by stream ID (msid) or mediaType (unified-plan)
  996. * @type {Map<string,TrackSSRCInfo>}
  997. */
  998. const ssrcMap = new Map();
  999. /**
  1000. * Groups mapped by primary SSRC number
  1001. * @type {Map<number,Array<SSRCGroupInfo>>}
  1002. */
  1003. const groupsMap = new Map();
  1004. if (typeof desc !== 'object' || desc === null
  1005. || typeof desc.sdp !== 'string') {
  1006. logger.warn('An empty description was passed as an argument');
  1007. return ssrcMap;
  1008. }
  1009. const session = transform.parse(desc.sdp);
  1010. if (!Array.isArray(session.media)) {
  1011. return ssrcMap;
  1012. }
  1013. let media = session.media;
  1014. if (this._usesUnifiedPlan) {
  1015. media = media.filter(mline => mline.direction === MediaDirection.SENDONLY
  1016. || mline.direction === MediaDirection.SENDRECV);
  1017. } else {
  1018. media = [];
  1019. [ MediaType.AUDIO, MediaType.VIDEO ].forEach(mediaType => {
  1020. const mLine = session.media.find(m => m.type === mediaType);
  1021. mLine && media.push(mLine);
  1022. });
  1023. }
  1024. let index = 0;
  1025. for (const mLine of media) {
  1026. if (!Array.isArray(mLine.ssrcs)) {
  1027. continue; // eslint-disable-line no-continue
  1028. }
  1029. if (Array.isArray(mLine.ssrcGroups)) {
  1030. for (const group of mLine.ssrcGroups) {
  1031. if (typeof group.semantics !== 'undefined' && typeof group.ssrcs !== 'undefined') {
  1032. // Parse SSRCs and store as numbers
  1033. const groupSSRCs = group.ssrcs.split(' ').map(ssrcStr => parseInt(ssrcStr, 10));
  1034. const primarySSRC = groupSSRCs[0];
  1035. // Note that group.semantics is already present
  1036. group.ssrcs = groupSSRCs;
  1037. // eslint-disable-next-line max-depth
  1038. if (!groupsMap.has(primarySSRC)) {
  1039. groupsMap.set(primarySSRC, []);
  1040. }
  1041. groupsMap.get(primarySSRC).push(group);
  1042. }
  1043. }
  1044. }
  1045. let ssrcs = mLine.ssrcs;
  1046. // Filter the ssrcs with 'msid' attribute for plan-b clients and 'cname' for unified-plan clients.
  1047. ssrcs = this._usesUnifiedPlan
  1048. ? ssrcs.filter(s => s.attribute === 'cname')
  1049. : ssrcs.filter(s => s.attribute === 'msid');
  1050. for (const ssrc of ssrcs) {
  1051. // Use the mediaType as key for the source map for unified plan clients since msids are not part of
  1052. // the standard and the unified plan SDPs do not have a proper msid attribute for the sources.
  1053. // Also the ssrcs for sources do not change for Unified plan clients since RTCRtpSender#replaceTrack is
  1054. // used for switching the tracks so it is safe to use the mediaType as the key for the TrackSSRCInfo map.
  1055. const key = this._usesUnifiedPlan ? `${mLine.type}-${index}` : ssrc.value;
  1056. const ssrcNumber = ssrc.id;
  1057. let ssrcInfo = ssrcMap.get(key);
  1058. if (!ssrcInfo) {
  1059. ssrcInfo = {
  1060. ssrcs: [],
  1061. groups: [],
  1062. msid: key
  1063. };
  1064. ssrcMap.set(key, ssrcInfo);
  1065. }
  1066. ssrcInfo.ssrcs.push(ssrcNumber);
  1067. if (groupsMap.has(ssrcNumber)) {
  1068. const ssrcGroups = groupsMap.get(ssrcNumber);
  1069. for (const group of ssrcGroups) {
  1070. ssrcInfo.groups.push(group);
  1071. }
  1072. }
  1073. }
  1074. // Currently multi-stream is supported for video only.
  1075. mLine.type === MediaType.VIDEO && index++;
  1076. }
  1077. return ssrcMap;
  1078. };
  1079. /**
  1080. * Takes a SessionDescription object and returns a "normalized" version.
  1081. * Currently it takes care of ordering the a=ssrc lines and denoting receive
  1082. * only SSRCs.
  1083. */
  1084. const normalizePlanB = function(desc) {
  1085. if (typeof desc !== 'object' || desc === null
  1086. || typeof desc.sdp !== 'string') {
  1087. logger.warn('An empty description was passed as an argument');
  1088. return desc;
  1089. }
  1090. // eslint-disable-next-line no-shadow
  1091. const transform = require('sdp-transform');
  1092. const session = transform.parse(desc.sdp);
  1093. if (typeof session !== 'undefined'
  1094. && typeof session.media !== 'undefined'
  1095. && Array.isArray(session.media)) {
  1096. session.media.forEach(mLine => {
  1097. // Chrome appears to be picky about the order in which a=ssrc lines
  1098. // are listed in an m-line when rtx is enabled (and thus there are
  1099. // a=ssrc-group lines with FID semantics). Specifically if we have
  1100. // "a=ssrc-group:FID S1 S2" and the "a=ssrc:S2" lines appear before
  1101. // the "a=ssrc:S1" lines, SRD fails.
  1102. // So, put SSRC which appear as the first SSRC in an FID ssrc-group
  1103. // first.
  1104. const firstSsrcs = [];
  1105. const newSsrcLines = [];
  1106. if (typeof mLine.ssrcGroups !== 'undefined'
  1107. && Array.isArray(mLine.ssrcGroups)) {
  1108. mLine.ssrcGroups.forEach(group => {
  1109. if (typeof group.semantics !== 'undefined'
  1110. && group.semantics === 'FID') {
  1111. if (typeof group.ssrcs !== 'undefined') {
  1112. firstSsrcs.push(Number(group.ssrcs.split(' ')[0]));
  1113. }
  1114. }
  1115. });
  1116. }
  1117. if (Array.isArray(mLine.ssrcs)) {
  1118. let i;
  1119. for (i = 0; i < mLine.ssrcs.length; i++) {
  1120. if (typeof mLine.ssrcs[i] === 'object'
  1121. && typeof mLine.ssrcs[i].id !== 'undefined'
  1122. && firstSsrcs.indexOf(mLine.ssrcs[i].id) >= 0) {
  1123. newSsrcLines.push(mLine.ssrcs[i]);
  1124. delete mLine.ssrcs[i];
  1125. }
  1126. }
  1127. for (i = 0; i < mLine.ssrcs.length; i++) {
  1128. if (typeof mLine.ssrcs[i] !== 'undefined') {
  1129. newSsrcLines.push(mLine.ssrcs[i]);
  1130. }
  1131. }
  1132. mLine.ssrcs = replaceDefaultUnifiedPlanMsid(newSsrcLines);
  1133. }
  1134. });
  1135. }
  1136. const resStr = transform.write(session);
  1137. return new RTCSessionDescription({
  1138. type: desc.type,
  1139. sdp: resStr
  1140. });
  1141. };
  1142. /**
  1143. * Unified plan differentiates a remote track not associated with a stream using
  1144. * the msid "-", which can incorrectly trigger an onaddstream event in plan-b.
  1145. * For jitsi, these tracks are actually receive-only ssrcs. To prevent
  1146. * onaddstream from firing, remove the ssrcs with msid "-" except the cname
  1147. * line. Normally the ssrcs are not used by the client, as the bridge controls
  1148. * media flow, but keep one reference to the ssrc for the p2p case.
  1149. *
  1150. * @param {Array<Object>} ssrcLines - The ssrc lines from a remote description.
  1151. * @private
  1152. * @returns {Array<Object>} ssrcLines with removed lines referencing msid "-".
  1153. */
  1154. function replaceDefaultUnifiedPlanMsid(ssrcLines = []) {
  1155. if (!browser.isChrome() || !browser.isVersionGreaterThan(70)) {
  1156. return ssrcLines;
  1157. }
  1158. let filteredLines = [ ...ssrcLines ];
  1159. const problematicSsrcIds = ssrcLines.filter(ssrcLine =>
  1160. ssrcLine.attribute === 'mslabel' && ssrcLine.value === '-')
  1161. .map(ssrcLine => ssrcLine.id);
  1162. problematicSsrcIds.forEach(ssrcId => {
  1163. // Find the cname which is to be modified and left in.
  1164. const cnameLine = filteredLines.find(line =>
  1165. line.id === ssrcId && line.attribute === 'cname');
  1166. cnameLine.value = `${MediaDirection.RECVONLY}-${ssrcId}`;
  1167. // Remove all of lines for the ssrc.
  1168. filteredLines
  1169. = filteredLines.filter(line => line.id !== ssrcId);
  1170. // But re-add the cname line so there is a reference kept to the ssrc
  1171. // in the SDP.
  1172. filteredLines.push(cnameLine);
  1173. });
  1174. return filteredLines;
  1175. }
  1176. /**
  1177. * Makes sure that both audio and video directions are configured as 'sendrecv'.
  1178. * @param {Object} localDescription the SDP object as defined by WebRTC.
  1179. * @param {object} options <tt>TracablePeerConnection</tt> config options.
  1180. */
  1181. const enforceSendRecv = function(localDescription, options) {
  1182. if (!localDescription) {
  1183. throw new Error('No local description passed in.');
  1184. }
  1185. const transformer = new SdpTransformWrap(localDescription.sdp);
  1186. const audioMedia = transformer.selectMedia(MediaType.AUDIO)?.[0];
  1187. let changed = false;
  1188. if (audioMedia && audioMedia.direction !== MediaDirection.SENDRECV) {
  1189. if (options.startSilent) {
  1190. audioMedia.direction = MediaDirection.INACTIVE;
  1191. } else {
  1192. audioMedia.direction = MediaDirection.SENDRECV;
  1193. }
  1194. changed = true;
  1195. }
  1196. const videoMedia = transformer.selectMedia(MediaType.VIDEO)?.[0];
  1197. if (videoMedia && videoMedia.direction !== MediaDirection.SENDRECV) {
  1198. videoMedia.direction = MediaDirection.SENDRECV;
  1199. changed = true;
  1200. }
  1201. if (changed) {
  1202. return new RTCSessionDescription({
  1203. type: localDescription.type,
  1204. sdp: transformer.toRawSDP()
  1205. });
  1206. }
  1207. return localDescription;
  1208. };
  1209. /**
  1210. *
  1211. * @param {JitsiLocalTrack} localTrack
  1212. */
  1213. TraceablePeerConnection.prototype.getLocalSSRC = function(localTrack) {
  1214. const ssrcInfo = this._getSSRC(localTrack.rtcId);
  1215. return ssrcInfo && ssrcInfo.ssrcs[0];
  1216. };
  1217. /**
  1218. * When doing unified plan simulcast, we'll have a set of ssrcs but no ssrc-groups on Firefox. Unfortunately, Jicofo
  1219. * will complain if it sees ssrcs with matching msids but no ssrc-group, so a ssrc-group line is injected to make
  1220. * Jicofo happy.
  1221. *
  1222. * @param desc A session description object (with 'type' and 'sdp' fields)
  1223. * @return A session description object with its sdp field modified to contain an inject ssrc-group for simulcast.
  1224. */
  1225. TraceablePeerConnection.prototype._injectSsrcGroupForUnifiedSimulcast = function(desc) {
  1226. const sdp = transform.parse(desc.sdp);
  1227. const video = sdp.media.find(mline => mline.type === 'video');
  1228. // Check if the browser supports RTX, add only the primary ssrcs to the SIM group if that is the case.
  1229. video.ssrcGroups = video.ssrcGroups || [];
  1230. const fidGroups = video.ssrcGroups.filter(group => group.semantics === 'FID');
  1231. if (video.simulcast || video.simulcast_03) {
  1232. const ssrcs = [];
  1233. if (fidGroups && fidGroups.length) {
  1234. fidGroups.forEach(group => {
  1235. ssrcs.push(group.ssrcs.split(' ')[0]);
  1236. });
  1237. } else {
  1238. video.ssrcs.forEach(ssrc => {
  1239. if (ssrc.attribute === 'msid') {
  1240. ssrcs.push(ssrc.id);
  1241. }
  1242. });
  1243. }
  1244. if (video.ssrcGroups.find(group => group.semantics === 'SIM')) {
  1245. // Group already exists, no need to do anything
  1246. return desc;
  1247. }
  1248. // Add a SIM group for every 3 FID groups.
  1249. for (let i = 0; i < ssrcs.length; i += 3) {
  1250. const simSsrcs = ssrcs.slice(i, i + 3);
  1251. video.ssrcGroups.push({
  1252. semantics: 'SIM',
  1253. ssrcs: simSsrcs.join(' ')
  1254. });
  1255. }
  1256. }
  1257. return new RTCSessionDescription({
  1258. type: desc.type,
  1259. sdp: transform.write(sdp)
  1260. });
  1261. };
  1262. /* eslint-disable-next-line vars-on-top */
  1263. const getters = {
  1264. signalingState() {
  1265. return this.peerconnection.signalingState;
  1266. },
  1267. iceConnectionState() {
  1268. return this.peerconnection.iceConnectionState;
  1269. },
  1270. connectionState() {
  1271. return this.peerconnection.connectionState;
  1272. },
  1273. localDescription() {
  1274. let desc = this.peerconnection.localDescription;
  1275. if (!desc) {
  1276. logger.debug(`${this} getLocalDescription no localDescription found`);
  1277. return {};
  1278. }
  1279. this.trace('getLocalDescription::preTransform', dumpSDP(desc));
  1280. // If the browser is running in unified plan mode and this is a jvb connection,
  1281. // transform the SDP to Plan B first.
  1282. if (this._usesUnifiedPlan && !this.isP2P) {
  1283. desc = this.interop.toPlanB(desc);
  1284. this.trace('getLocalDescription::postTransform (Plan B)',
  1285. dumpSDP(desc));
  1286. desc = this._injectSsrcGroupForUnifiedSimulcast(desc);
  1287. this.trace('getLocalDescription::postTransform (inject ssrc group)',
  1288. dumpSDP(desc));
  1289. } else if (!this._usesUnifiedPlan) {
  1290. if (browser.doesVideoMuteByStreamRemove()) {
  1291. desc = this.localSdpMunger.maybeAddMutedLocalVideoTracksToSDP(desc);
  1292. logger.debug(
  1293. 'getLocalDescription::postTransform (munge local SDP)', desc);
  1294. }
  1295. // What comes out of this getter will be signalled over Jingle to
  1296. // the other peer, so we need to make sure the media direction is
  1297. // 'sendrecv' because we won't change the direction later and don't want
  1298. // the other peer to think we can't send or receive.
  1299. //
  1300. // Note that the description we set in chrome does have the accurate
  1301. // direction (e.g. 'recvonly'), since that is technically what is
  1302. // happening (check setLocalDescription impl).
  1303. desc = enforceSendRecv(desc, this.options);
  1304. }
  1305. // See the method's doc for more info about this transformation.
  1306. desc = this.localSdpMunger.transformStreamIdentifiers(desc);
  1307. return desc;
  1308. },
  1309. remoteDescription() {
  1310. let desc = this.peerconnection.remoteDescription;
  1311. if (!desc) {
  1312. logger.debug(`${this} getRemoteDescription no remoteDescription found`);
  1313. return {};
  1314. }
  1315. this.trace('getRemoteDescription::preTransform', dumpSDP(desc));
  1316. if (this._usesUnifiedPlan) {
  1317. if (this.isP2P) {
  1318. // Adjust the media direction for p2p based on whether a local source has been added.
  1319. desc = this._adjustRemoteMediaDirection(desc);
  1320. } else {
  1321. // If this is a jvb connection, transform the SDP to Plan B first.
  1322. desc = this.interop.toPlanB(desc);
  1323. this.trace('getRemoteDescription::postTransform (Plan B)', dumpSDP(desc));
  1324. }
  1325. }
  1326. return desc;
  1327. }
  1328. };
  1329. Object.keys(getters).forEach(prop => {
  1330. Object.defineProperty(
  1331. TraceablePeerConnection.prototype,
  1332. prop, {
  1333. get: getters[prop]
  1334. }
  1335. );
  1336. });
  1337. TraceablePeerConnection.prototype._getSSRC = function(rtcId) {
  1338. return this.localSSRCs.get(rtcId);
  1339. };
  1340. /**
  1341. * Checks if low fps screensharing is in progress.
  1342. *
  1343. * @private
  1344. * @returns {boolean} Returns true if 5 fps screensharing is in progress, false otherwise.
  1345. */
  1346. TraceablePeerConnection.prototype.isSharingLowFpsScreen = function() {
  1347. return this._isSharingScreen() && this._capScreenshareBitrate;
  1348. };
  1349. /**
  1350. * Checks if screensharing is in progress.
  1351. *
  1352. * @returns {boolean} Returns true if a desktop track has been added to the peerconnection, false otherwise.
  1353. */
  1354. TraceablePeerConnection.prototype._isSharingScreen = function() {
  1355. const tracks = this.getLocalVideoTracks();
  1356. return Boolean(tracks.find(track => track.videoType === VideoType.DESKTOP));
  1357. };
  1358. /**
  1359. * Munges the order of the codecs in the SDP passed based on the preference
  1360. * set through config.js settings. All instances of the specified codec are
  1361. * moved up to the top of the list when it is preferred. The specified codec
  1362. * is deleted from the list if the configuration specifies that the codec be
  1363. * disabled.
  1364. * @param {RTCSessionDescription} description that needs to be munged.
  1365. * @returns {RTCSessionDescription} the munged description.
  1366. */
  1367. TraceablePeerConnection.prototype._mungeCodecOrder = function(description) {
  1368. const parsedSdp = transform.parse(description.sdp);
  1369. const mLines = parsedSdp.media.filter(m => m.type === this.codecSettings.mediaType);
  1370. if (!mLines.length) {
  1371. return description;
  1372. }
  1373. for (const mLine of mLines) {
  1374. if (this.codecSettings.disabled) {
  1375. SDPUtil.stripCodec(mLine, this.codecSettings.disabled);
  1376. }
  1377. if (this.codecSettings.preferred) {
  1378. SDPUtil.preferCodec(mLine, this.codecSettings.preferred);
  1379. // Strip the high profile H264 codecs on mobile clients for p2p connection. High profile codecs give better
  1380. // quality at the expense of higher load which we do not want on mobile clients. Jicofo offers only the
  1381. // baseline code for the jvb connection and therefore this is not needed for jvb connection.
  1382. // TODO - add check for mobile browsers once js-utils provides that check.
  1383. if (this.codecSettings.preferred === CodecMimeType.H264 && browser.isReactNative() && this.isP2P) {
  1384. SDPUtil.stripCodec(mLine, this.codecSettings.preferred, true /* high profile */);
  1385. }
  1386. }
  1387. }
  1388. return new RTCSessionDescription({
  1389. type: description.type,
  1390. sdp: transform.write(parsedSdp)
  1391. });
  1392. };
  1393. /**
  1394. * Add {@link JitsiLocalTrack} to this TPC.
  1395. * @param {JitsiLocalTrack} track
  1396. * @param {boolean} isInitiator indicates if the endpoint is the offerer.
  1397. * @returns {Promise<void>} - resolved when done.
  1398. */
  1399. TraceablePeerConnection.prototype.addTrack = function(track, isInitiator = false) {
  1400. const rtcId = track.rtcId;
  1401. logger.info(`${this} adding ${track}`);
  1402. if (this.localTracks.has(rtcId)) {
  1403. return Promise.reject(new Error(`${track} is already in ${this}`));
  1404. }
  1405. this.localTracks.set(rtcId, track);
  1406. const webrtcStream = track.getOriginalStream();
  1407. if (this._usesUnifiedPlan) {
  1408. logger.debug(`${this} TPC.addTrack using unified plan`);
  1409. try {
  1410. this.tpcUtils.addTrack(track, isInitiator);
  1411. if (track) {
  1412. if (track.isAudioTrack()) {
  1413. this._hasHadAudioTrack = true;
  1414. } else {
  1415. this._hasHadVideoTrack = true;
  1416. }
  1417. }
  1418. } catch (error) {
  1419. logger.error(`${this} Adding track=${track} failed: ${error?.message}`);
  1420. return Promise.reject(error);
  1421. }
  1422. } else {
  1423. // Use addStream API for the plan-b case.
  1424. if (webrtcStream) {
  1425. this._addStream(webrtcStream);
  1426. // It's not ok for a track to not have a WebRTC stream if:
  1427. } else if (!browser.doesVideoMuteByStreamRemove()
  1428. || track.isAudioTrack()
  1429. || (track.isVideoTrack() && !track.isMuted())) {
  1430. return Promise.reject(new Error(`${this} no WebRTC stream for track=${track}`));
  1431. }
  1432. // Muted video tracks do not have WebRTC stream
  1433. if (browser.doesVideoMuteByStreamRemove() && track.isVideoTrack() && track.isMuted()) {
  1434. const ssrcInfo = this.generateNewStreamSSRCInfo(track);
  1435. this.sdpConsistency.setPrimarySsrc(ssrcInfo.ssrcs[0]);
  1436. const simGroup
  1437. = ssrcInfo.groups.find(groupInfo => groupInfo.semantics === 'SIM');
  1438. if (simGroup) {
  1439. this.simulcast.setSsrcCache(simGroup.ssrcs);
  1440. }
  1441. const fidGroups
  1442. = ssrcInfo.groups.filter(
  1443. groupInfo => groupInfo.semantics === 'FID');
  1444. if (fidGroups) {
  1445. const rtxSsrcMapping = new Map();
  1446. fidGroups.forEach(fidGroup => {
  1447. const primarySsrc = fidGroup.ssrcs[0];
  1448. const rtxSsrc = fidGroup.ssrcs[1];
  1449. rtxSsrcMapping.set(primarySsrc, rtxSsrc);
  1450. });
  1451. this.rtxModifier.setSsrcCache(rtxSsrcMapping);
  1452. }
  1453. }
  1454. }
  1455. let promiseChain = Promise.resolve();
  1456. // On Firefox, the encodings have to be configured on the sender only after the transceiver is created.
  1457. if (browser.isFirefox()) {
  1458. promiseChain = promiseChain.then(() => webrtcStream && this.tpcUtils.setEncodings(track));
  1459. }
  1460. return promiseChain;
  1461. };
  1462. /**
  1463. * Adds local track to the RTCPeerConnection.
  1464. *
  1465. * @param {JitsiLocalTrack} track the track to be added to the pc.
  1466. * @return {Promise<boolean>} Promise that resolves to true if the underlying PeerConnection's state has changed and
  1467. * renegotiation is required, false if no renegotiation is needed or Promise is rejected when something goes wrong.
  1468. */
  1469. TraceablePeerConnection.prototype.addTrackToPc = function(track) {
  1470. logger.info(`${this} Adding track=${track} to PC`);
  1471. if (!this._assertTrackBelongs('addTrackToPc', track)) {
  1472. // Abort
  1473. return Promise.reject('Track not found on the peerconnection');
  1474. }
  1475. const webRtcStream = track.getOriginalStream();
  1476. if (!webRtcStream) {
  1477. logger.error(`${this} Unable to add track=${track} to PC - no WebRTC stream`);
  1478. return Promise.reject('Stream not found');
  1479. }
  1480. if (this._usesUnifiedPlan) {
  1481. return this.tpcUtils.replaceTrack(null, track).then(() => {
  1482. if (track) {
  1483. if (track.isAudioTrack()) {
  1484. this._hasHadAudioTrack = true;
  1485. } else {
  1486. this._hasHadVideoTrack = true;
  1487. }
  1488. }
  1489. return false;
  1490. });
  1491. }
  1492. this._addStream(webRtcStream);
  1493. return Promise.resolve(true);
  1494. };
  1495. /**
  1496. * Adds WebRTC media stream to the underlying PeerConnection
  1497. * @param {MediaStream} mediaStream
  1498. * @private
  1499. */
  1500. TraceablePeerConnection.prototype._addStream = function(mediaStream) {
  1501. this.peerconnection.addStream(mediaStream);
  1502. this._addedStreams.push(mediaStream);
  1503. };
  1504. /**
  1505. * Removes WebRTC media stream from the underlying PeerConection
  1506. * @param {MediaStream} mediaStream
  1507. */
  1508. TraceablePeerConnection.prototype._removeStream = function(mediaStream) {
  1509. this.peerconnection.removeStream(mediaStream);
  1510. this._addedStreams
  1511. = this._addedStreams.filter(stream => stream !== mediaStream);
  1512. };
  1513. /**
  1514. * This method when called will check if given <tt>localTrack</tt> belongs to
  1515. * this TPC (that it has been previously added using {@link addTrack}). If the
  1516. * track does not belong an error message will be logged.
  1517. * @param {string} methodName the method name that will be logged in an error
  1518. * message
  1519. * @param {JitsiLocalTrack} localTrack
  1520. * @return {boolean} <tt>true</tt> if given local track belongs to this TPC or
  1521. * <tt>false</tt> otherwise.
  1522. * @private
  1523. */
  1524. TraceablePeerConnection.prototype._assertTrackBelongs = function(
  1525. methodName,
  1526. localTrack) {
  1527. const doesBelong = this.localTracks.has(localTrack?.rtcId);
  1528. if (!doesBelong) {
  1529. logger.error(`${this} ${methodName}: track=${localTrack} does not belong to pc`);
  1530. }
  1531. return doesBelong;
  1532. };
  1533. /**
  1534. * Returns the codec that is configured on the client as the preferred video codec.
  1535. * This takes into account the current order of codecs in the local description sdp.
  1536. *
  1537. * @returns {CodecMimeType} The codec that is set as the preferred codec to receive
  1538. * video in the local SDP.
  1539. */
  1540. TraceablePeerConnection.prototype.getConfiguredVideoCodec = function() {
  1541. const sdp = this.peerconnection.localDescription?.sdp;
  1542. const defaultCodec = CodecMimeType.VP8;
  1543. if (!sdp) {
  1544. return defaultCodec;
  1545. }
  1546. const parsedSdp = transform.parse(sdp);
  1547. const mLine = parsedSdp.media.find(m => m.type === MediaType.VIDEO);
  1548. const codec = mLine.rtp[0].codec;
  1549. if (codec) {
  1550. return Object.values(CodecMimeType).find(value => value === codec.toLowerCase());
  1551. }
  1552. return defaultCodec;
  1553. };
  1554. /**
  1555. * Checks if the client has negotiated not to receive video encoded using the given codec, i.e., the codec has been
  1556. * removed from the local description.
  1557. */
  1558. TraceablePeerConnection.prototype.isVideoCodecDisabled = function(codec) {
  1559. const sdp = this.peerconnection.localDescription?.sdp;
  1560. if (!sdp) {
  1561. return false;
  1562. }
  1563. const parsedSdp = transform.parse(sdp);
  1564. const mLine = parsedSdp.media.find(m => m.type === MediaType.VIDEO);
  1565. return !mLine.rtp.find(r => r.codec === codec);
  1566. };
  1567. /**
  1568. * Enables or disables simulcast for screenshare based on the frame rate requested for desktop track capture.
  1569. *
  1570. * @param {number} maxFps framerate to be used for desktop track capture.
  1571. */
  1572. TraceablePeerConnection.prototype.setDesktopSharingFrameRate = function(maxFps) {
  1573. const lowFps = maxFps <= SS_DEFAULT_FRAME_RATE;
  1574. this._capScreenshareBitrate = this.isSimulcastOn() && lowFps;
  1575. };
  1576. /**
  1577. * Sets the codec preference on the peerconnection. The codec preference goes into effect when
  1578. * the next renegotiation happens.
  1579. *
  1580. * @param {CodecMimeType} preferredCodec the preferred codec.
  1581. * @param {CodecMimeType} disabledCodec the codec that needs to be disabled.
  1582. * @returns {void}
  1583. */
  1584. TraceablePeerConnection.prototype.setVideoCodecs = function(preferredCodec, disabledCodec) {
  1585. preferredCodec && (this.codecSettings.preferred = preferredCodec);
  1586. disabledCodec && (this.codecSettings.disabled = disabledCodec);
  1587. };
  1588. /**
  1589. * Tells if the given WebRTC <tt>MediaStream</tt> has been added to
  1590. * the underlying WebRTC PeerConnection.
  1591. * @param {MediaStream} mediaStream
  1592. * @returns {boolean}
  1593. */
  1594. TraceablePeerConnection.prototype.isMediaStreamInPc = function(mediaStream) {
  1595. return this._addedStreams.indexOf(mediaStream) > -1;
  1596. };
  1597. /**
  1598. * Remove local track from this TPC.
  1599. * @param {JitsiLocalTrack} localTrack the track to be removed from this TPC.
  1600. *
  1601. * FIXME It should probably remove a boolean just like {@link removeTrackFromPc}
  1602. * The same applies to addTrack.
  1603. */
  1604. TraceablePeerConnection.prototype.removeTrack = function(localTrack) {
  1605. const webRtcStream = localTrack.getOriginalStream();
  1606. this.trace(
  1607. 'removeStream',
  1608. localTrack.rtcId, webRtcStream ? webRtcStream.id : undefined);
  1609. if (!this._assertTrackBelongs('removeStream', localTrack)) {
  1610. // Abort - nothing to be done here
  1611. return;
  1612. }
  1613. this.localTracks.delete(localTrack.rtcId);
  1614. this.localSSRCs.delete(localTrack.rtcId);
  1615. if (webRtcStream) {
  1616. this.peerconnection.removeStream(webRtcStream);
  1617. }
  1618. };
  1619. /**
  1620. * Returns the sender corresponding to the given media type.
  1621. * @param {MEDIA_TYPE} mediaType - The media type 'audio' or 'video' to be used for the search.
  1622. * @returns {RTPSender|undefined} - The found sender or undefined if no sender
  1623. * was found.
  1624. */
  1625. TraceablePeerConnection.prototype.findSenderByKind = function(mediaType) {
  1626. if (this.peerconnection.getSenders) {
  1627. return this.peerconnection.getSenders().find(s => s.track && s.track.kind === mediaType);
  1628. }
  1629. };
  1630. /**
  1631. * Returns the receiver corresponding to the given MediaStreamTrack.
  1632. *
  1633. * @param {MediaSreamTrack} track - The media stream track used for the search.
  1634. * @returns {RTCRtpReceiver|undefined} - The found receiver or undefined if no receiver
  1635. * was found.
  1636. */
  1637. TraceablePeerConnection.prototype.findReceiverForTrack = function(track) {
  1638. return this.peerconnection.getReceivers().find(r => r.track === track);
  1639. };
  1640. /**
  1641. * Returns the sender corresponding to the given MediaStreamTrack.
  1642. *
  1643. * @param {MediaSreamTrack} track - The media stream track used for the search.
  1644. * @returns {RTCRtpSender|undefined} - The found sender or undefined if no sender
  1645. * was found.
  1646. */
  1647. TraceablePeerConnection.prototype.findSenderForTrack = function(track) {
  1648. if (this.peerconnection.getSenders) {
  1649. return this.peerconnection.getSenders().find(s => s.track === track);
  1650. }
  1651. };
  1652. /**
  1653. * Processes the local description SDP and caches the mids of the mlines associated with the given tracks.
  1654. *
  1655. * @param {Array<JitsiLocalTrack>} localTracks - local tracks that are added to the peerconnection.
  1656. * @returns {void}
  1657. */
  1658. TraceablePeerConnection.prototype.processLocalSdpForTransceiverInfo = function(localTracks) {
  1659. const localSdp = this.peerconnection.localDescription?.sdp;
  1660. if (!localSdp) {
  1661. return;
  1662. }
  1663. [ MediaType.AUDIO, MediaType.VIDEO ].forEach(mediaType => {
  1664. const tracks = localTracks.filter(t => t.getType() === mediaType);
  1665. const parsedSdp = transform.parse(localSdp);
  1666. const mLines = parsedSdp.media.filter(mline => mline.type === mediaType);
  1667. tracks.forEach((track, idx) => {
  1668. if (!this._localTrackTransceiverMids.has(track.rtcId)) {
  1669. this._localTrackTransceiverMids.set(track.rtcId, mLines[idx].mid.toString());
  1670. }
  1671. });
  1672. });
  1673. };
  1674. /**
  1675. * Replaces <tt>oldTrack</tt> with <tt>newTrack</tt> from the peer connection.
  1676. * Either <tt>oldTrack</tt> or <tt>newTrack</tt> can be null; replacing a valid
  1677. * <tt>oldTrack</tt> with a null <tt>newTrack</tt> effectively just removes
  1678. * <tt>oldTrack</tt>
  1679. *
  1680. * @param {JitsiLocalTrack|null} oldTrack - The current track in use to be replaced on the pc.
  1681. * @param {JitsiLocalTrack|null} newTrack - The new track to be used.
  1682. *
  1683. * @returns {Promise<boolean>} - If the promise resolves with true, renegotiation will be needed.
  1684. * Otherwise no renegotiation is needed.
  1685. */
  1686. TraceablePeerConnection.prototype.replaceTrack = function(oldTrack, newTrack) {
  1687. if (!(oldTrack || newTrack)) {
  1688. logger.info(`${this} replaceTrack called with no new track and no old track`);
  1689. return Promise.resolve();
  1690. }
  1691. if (this._usesUnifiedPlan) {
  1692. logger.debug(`${this} TPC.replaceTrack using unified plan`);
  1693. return this.tpcUtils.replaceTrack(oldTrack, newTrack)
  1694. .then(transceiver => {
  1695. if (oldTrack) {
  1696. this.localTracks.delete(oldTrack.rtcId);
  1697. this._localTrackTransceiverMids.delete(oldTrack.rtcId);
  1698. }
  1699. if (newTrack) {
  1700. if (newTrack.isAudioTrack()) {
  1701. this._hasHadAudioTrack = true;
  1702. } else {
  1703. this._hasHadVideoTrack = true;
  1704. }
  1705. this._localTrackTransceiverMids.set(newTrack.rtcId, transceiver?.mid?.toString());
  1706. this.localTracks.set(newTrack.rtcId, newTrack);
  1707. }
  1708. // Update the local SSRC cache for the case when one track gets replaced with another and no
  1709. // renegotiation is triggered as a result of this.
  1710. if (oldTrack && newTrack) {
  1711. const oldTrackSSRC = this.localSSRCs.get(oldTrack.rtcId);
  1712. if (oldTrackSSRC) {
  1713. this.localSSRCs.delete(oldTrack.rtcId);
  1714. this.localSSRCs.set(newTrack.rtcId, oldTrackSSRC);
  1715. }
  1716. }
  1717. if (transceiver) {
  1718. // In the scenario where we remove the oldTrack (oldTrack is not null and newTrack is null) on FF
  1719. // if we change the direction to RECVONLY, create answer will generate SDP with only 1 receive
  1720. // only ssrc instead of keeping all 6 ssrcs that we currently have. Stopping the screen sharing
  1721. // and then starting it again will trigger 2 rounds of source-remove and source-add replacing
  1722. // the 6 ssrcs for the screen sharing with 1 receive only ssrc and then removing the receive
  1723. // only ssrc and adding the same 6 ssrcs. On the remote participant's side the same ssrcs will
  1724. // be reused on a new m-line and if the remote participant is FF due to
  1725. // https://bugzilla.mozilla.org/show_bug.cgi?id=1768729 the video stream won't be rendered.
  1726. // That's why we need keep the direction to SENDRECV for FF.
  1727. //
  1728. // NOTE: If we return back to the approach of not removing the track for FF and instead using the
  1729. // enabled property for mute or stopping screensharing we may need to change the direction to
  1730. // RECVONLY if FF still sends the media even though the enabled flag is set to false.
  1731. transceiver.direction
  1732. = newTrack || browser.isFirefox() ? MediaDirection.SENDRECV : MediaDirection.RECVONLY;
  1733. }
  1734. // Avoid configuring the encodings on Chromium/Safari until simulcast is configured
  1735. // for the newly added track using SDP munging which happens during the renegotiation.
  1736. const configureEncodingsPromise = browser.usesSdpMungingForSimulcast() || !newTrack
  1737. ? Promise.resolve()
  1738. : this.tpcUtils.setEncodings(newTrack);
  1739. return configureEncodingsPromise.then(() => this.isP2P);
  1740. });
  1741. }
  1742. logger.debug(`${this} TPC.replaceTrack using plan B`);
  1743. let promiseChain = Promise.resolve();
  1744. if (oldTrack) {
  1745. this.removeTrack(oldTrack);
  1746. }
  1747. if (newTrack) {
  1748. promiseChain = this.addTrack(newTrack);
  1749. }
  1750. return promiseChain.then(() => true);
  1751. };
  1752. /**
  1753. * Removes local track from the RTCPeerConnection.
  1754. *
  1755. * @param {JitsiLocalTrack} localTrack the local track to be removed.
  1756. * @return {Promise<boolean>} Promise that resolves to true if the underlying PeerConnection's state has changed and
  1757. * renegotiation is required, false if no renegotiation is needed or Promise is rejected when something goes wrong.
  1758. */
  1759. TraceablePeerConnection.prototype.removeTrackFromPc = function(localTrack) {
  1760. const webRtcStream = localTrack.getOriginalStream();
  1761. this.trace('removeTrack', localTrack.rtcId, webRtcStream ? webRtcStream.id : null);
  1762. if (!this._assertTrackBelongs('removeTrack', localTrack)) {
  1763. // Abort - nothing to be done here
  1764. return Promise.reject('Track not found in the peerconnection');
  1765. }
  1766. if (this._usesUnifiedPlan) {
  1767. return this.tpcUtils.replaceTrack(localTrack, null).then(() => false);
  1768. }
  1769. if (webRtcStream) {
  1770. logger.info(`${this} Removing track=${localTrack} from PC`);
  1771. this._removeStream(webRtcStream);
  1772. return Promise.resolve(true);
  1773. }
  1774. logger.error(`${this} removeTrack - no WebRTC stream for track=${localTrack}`);
  1775. return Promise.reject('Stream not found');
  1776. };
  1777. TraceablePeerConnection.prototype.createDataChannel = function(label, opts) {
  1778. this.trace('createDataChannel', label, opts);
  1779. return this.peerconnection.createDataChannel(label, opts);
  1780. };
  1781. /**
  1782. * Ensures that the simulcast ssrc-group appears after any other ssrc-groups
  1783. * in the SDP so that simulcast is properly activated.
  1784. *
  1785. * @param {Object} localSdp the WebRTC session description instance for
  1786. * the local description.
  1787. * @private
  1788. */
  1789. TraceablePeerConnection.prototype._ensureSimulcastGroupIsLast = function(localSdp) {
  1790. let sdpStr = localSdp.sdp;
  1791. const videoStartIndex = sdpStr.indexOf('m=video');
  1792. const simStartIndex = sdpStr.indexOf('a=ssrc-group:SIM', videoStartIndex);
  1793. let otherStartIndex = sdpStr.lastIndexOf('a=ssrc-group');
  1794. if (simStartIndex === -1
  1795. || otherStartIndex === -1
  1796. || otherStartIndex === simStartIndex) {
  1797. return localSdp;
  1798. }
  1799. const simEndIndex = sdpStr.indexOf('\r\n', simStartIndex);
  1800. const simStr = sdpStr.substring(simStartIndex, simEndIndex + 2);
  1801. sdpStr = sdpStr.replace(simStr, '');
  1802. otherStartIndex = sdpStr.lastIndexOf('a=ssrc-group');
  1803. const otherEndIndex = sdpStr.indexOf('\r\n', otherStartIndex);
  1804. const sdpHead = sdpStr.slice(0, otherEndIndex);
  1805. const simStrTrimmed = simStr.trim();
  1806. const sdpTail = sdpStr.slice(otherEndIndex);
  1807. sdpStr = `${sdpHead}\r\n${simStrTrimmed}${sdpTail}`;
  1808. return new RTCSessionDescription({
  1809. type: localSdp.type,
  1810. sdp: sdpStr
  1811. });
  1812. };
  1813. /**
  1814. * Will adjust audio and video media direction in the given SDP object to
  1815. * reflect the current status of the {@link audioTransferActive} and
  1816. * {@link videoTransferActive} flags.
  1817. * @param {RTCSessionDescription} localDescription the WebRTC session description instance for
  1818. * the local description.
  1819. * @private
  1820. */
  1821. TraceablePeerConnection.prototype._adjustLocalMediaDirection = function(localDescription) {
  1822. const transformer = new SdpTransformWrap(localDescription.sdp);
  1823. let modifiedDirection = false;
  1824. const audioMedia = transformer.selectMedia(MediaType.AUDIO)?.[0];
  1825. if (audioMedia) {
  1826. const desiredAudioDirection = this.getDesiredMediaDirection(MediaType.AUDIO);
  1827. if (audioMedia.direction !== desiredAudioDirection) {
  1828. audioMedia.direction = desiredAudioDirection;
  1829. logger.info(`${this} Adjusted local audio direction to ${desiredAudioDirection}`);
  1830. modifiedDirection = true;
  1831. }
  1832. } else {
  1833. logger.warn(`${this} No "audio" media found in the local description`);
  1834. }
  1835. const videoMedia = transformer.selectMedia(MediaType.VIDEO)?.[0];
  1836. if (videoMedia) {
  1837. const desiredVideoDirection = this.getDesiredMediaDirection(MediaType.VIDEO);
  1838. if (videoMedia.direction !== desiredVideoDirection) {
  1839. videoMedia.direction = desiredVideoDirection;
  1840. logger.info(`${this} Adjusted local video direction to ${desiredVideoDirection}`);
  1841. modifiedDirection = true;
  1842. }
  1843. } else {
  1844. logger.warn(`${this} No "video" media found in the local description`);
  1845. }
  1846. if (modifiedDirection) {
  1847. return new RTCSessionDescription({
  1848. type: localDescription.type,
  1849. sdp: transformer.toRawSDP()
  1850. });
  1851. }
  1852. return localDescription;
  1853. };
  1854. /**
  1855. * Adjusts the media direction on the remote description based on availability of local and remote sources in a p2p
  1856. * media connection.
  1857. *
  1858. * @param {RTCSessionDescription} remoteDescription the WebRTC session description instance for the remote description.
  1859. * @returns the transformed remoteDescription.
  1860. * @private
  1861. */
  1862. TraceablePeerConnection.prototype._adjustRemoteMediaDirection = function(remoteDescription) {
  1863. const transformer = new SdpTransformWrap(remoteDescription.sdp);
  1864. [ MediaType.AUDIO, MediaType.VIDEO ].forEach(mediaType => {
  1865. const media = transformer.selectMedia(mediaType);
  1866. const localSources = this.getLocalTracks(mediaType).length;
  1867. const remoteSources = this.getRemoteTracks(null, mediaType).length;
  1868. media.forEach((mLine, idx) => {
  1869. if (localSources && localSources === remoteSources) {
  1870. mLine.direction = MediaDirection.SENDRECV;
  1871. } else if (!localSources && !remoteSources) {
  1872. mLine.direction = MediaDirection.INACTIVE;
  1873. } else if (!localSources) {
  1874. mLine.direction = MediaDirection.SENDONLY;
  1875. } else if (!remoteSources) {
  1876. mLine.direction = MediaDirection.RECVONLY;
  1877. // When there are 2 local sources and 1 remote source, the first m-line should be set to 'sendrecv' while
  1878. // the second one needs to be set to 'recvonly'.
  1879. } else if (localSources > remoteSources) {
  1880. mLine.direction = idx ? MediaDirection.RECVONLY : MediaDirection.SENDRECV;
  1881. // When there are 2 remote sources and 1 local source, the first m-line should be set to 'sendrecv' while
  1882. // the second one needs to be set to 'sendonly'.
  1883. } else {
  1884. mLine.direction = idx ? MediaDirection.SENDONLY : MediaDirection.SENDRECV;
  1885. }
  1886. });
  1887. });
  1888. return new RTCSessionDescription({
  1889. type: remoteDescription.type,
  1890. sdp: transformer.toRawSDP()
  1891. });
  1892. };
  1893. /**
  1894. * Munges the stereo flag as well as the opusMaxAverageBitrate in the SDP, based
  1895. * on values set through config.js, if present.
  1896. *
  1897. * @param {RTCSessionDescription} description that needs to be munged.
  1898. * @returns {RTCSessionDescription} the munged description.
  1899. */
  1900. TraceablePeerConnection.prototype._mungeOpus = function(description) {
  1901. const { audioQuality } = this.options;
  1902. if (!audioQuality?.enableOpusDtx && !audioQuality?.stereo && !audioQuality?.opusMaxAverageBitrate) {
  1903. return description;
  1904. }
  1905. const parsedSdp = transform.parse(description.sdp);
  1906. const mLines = parsedSdp.media;
  1907. for (const mLine of mLines) {
  1908. if (mLine.type === 'audio') {
  1909. const { payload } = mLine.rtp.find(protocol => protocol.codec === CodecMimeType.OPUS);
  1910. if (!payload) {
  1911. // eslint-disable-next-line no-continue
  1912. continue;
  1913. }
  1914. let fmtpOpus = mLine.fmtp.find(protocol => protocol.payload === payload);
  1915. if (!fmtpOpus) {
  1916. fmtpOpus = {
  1917. payload,
  1918. config: ''
  1919. };
  1920. }
  1921. const fmtpConfig = transform.parseParams(fmtpOpus.config);
  1922. let sdpChanged = false;
  1923. if (audioQuality?.stereo) {
  1924. fmtpConfig.stereo = 1;
  1925. sdpChanged = true;
  1926. }
  1927. if (audioQuality?.opusMaxAverageBitrate) {
  1928. fmtpConfig.maxaveragebitrate = audioQuality.opusMaxAverageBitrate;
  1929. sdpChanged = true;
  1930. }
  1931. // On Firefox, the OpusDtx enablement has no effect
  1932. if (!browser.isFirefox() && audioQuality?.enableOpusDtx) {
  1933. fmtpConfig.usedtx = 1;
  1934. sdpChanged = true;
  1935. }
  1936. if (!sdpChanged) {
  1937. // eslint-disable-next-line no-continue
  1938. continue;
  1939. }
  1940. let mungedConfig = '';
  1941. for (const key of Object.keys(fmtpConfig)) {
  1942. mungedConfig += `${key}=${fmtpConfig[key]}; `;
  1943. }
  1944. fmtpOpus.config = mungedConfig.trim();
  1945. }
  1946. }
  1947. return new RTCSessionDescription({
  1948. type: description.type,
  1949. sdp: transform.write(parsedSdp)
  1950. });
  1951. };
  1952. /**
  1953. * Munges the SDP to set all directions to inactive and drop all ssrc and ssrc-groups.
  1954. *
  1955. * @param {RTCSessionDescription} description that needs to be munged.
  1956. * @returns {RTCSessionDescription} the munged description.
  1957. */
  1958. TraceablePeerConnection.prototype._mungeInactive = function(description) {
  1959. const parsedSdp = transform.parse(description.sdp);
  1960. const mLines = parsedSdp.media;
  1961. for (const mLine of mLines) {
  1962. mLine.direction = MediaDirection.INACTIVE;
  1963. mLine.ssrcs = undefined;
  1964. mLine.ssrcGroups = undefined;
  1965. }
  1966. return new RTCSessionDescription({
  1967. type: description.type,
  1968. sdp: transform.write(parsedSdp)
  1969. });
  1970. };
  1971. /**
  1972. * Sets up the _dtlsTransport object and initializes callbacks for it.
  1973. */
  1974. TraceablePeerConnection.prototype._initializeDtlsTransport = function() {
  1975. // We are assuming here that we only have one bundled transport here
  1976. if (!this.peerconnection.getSenders || this._dtlsTransport) {
  1977. return;
  1978. }
  1979. const senders = this.peerconnection.getSenders();
  1980. if (senders.length !== 0 && senders[0].transport) {
  1981. this._dtlsTransport = senders[0].transport;
  1982. this._dtlsTransport.onerror = error => {
  1983. logger.error(`${this} DtlsTransport error: ${error}`);
  1984. };
  1985. this._dtlsTransport.onstatechange = () => {
  1986. this.trace('dtlsTransport.onstatechange', this._dtlsTransport.state);
  1987. };
  1988. }
  1989. };
  1990. /**
  1991. * Sets the max bitrates on the video m-lines when VP9 is the selected codec.
  1992. *
  1993. * @param {RTCSessionDescription} description - The local description that needs to be munged.
  1994. * @param {boolean} isLocalSdp - Whether the max bitrate (via b=AS line in SDP) is set on local SDP.
  1995. * @returns RTCSessionDescription
  1996. */
  1997. TraceablePeerConnection.prototype._setVp9MaxBitrates = function(description, isLocalSdp = false) {
  1998. const parsedSdp = transform.parse(description.sdp);
  1999. // Find all the m-lines associated with the local sources.
  2000. const direction = isLocalSdp ? MediaDirection.RECVONLY : MediaDirection.SENDONLY;
  2001. const mLines = parsedSdp.media.filter(m => m.type === MediaType.VIDEO && m.direction !== direction);
  2002. for (const mLine of mLines) {
  2003. if (this.codecSettings.preferred === CodecMimeType.VP9) {
  2004. const bitrates = this.tpcUtils.videoBitrates.VP9 || this.tpcUtils.videoBitrates;
  2005. const hdBitrate = bitrates.high ? bitrates.high : HD_BITRATE;
  2006. const ssHdBitrate = bitrates.ssHigh ? bitrates.ssHigh : HD_BITRATE;
  2007. const mid = mLine.mid;
  2008. const isSharingScreen = FeatureFlags.isMultiStreamSendSupportEnabled()
  2009. ? mid === this._getDesktopTrackMid()
  2010. : this._isSharingScreen();
  2011. const limit = Math.floor((isSharingScreen ? ssHdBitrate : hdBitrate) / 1000);
  2012. // Use only the HD bitrate for now as there is no API available yet for configuring
  2013. // the bitrates on the individual SVC layers.
  2014. mLine.bandwidth = [ {
  2015. type: 'AS',
  2016. limit
  2017. } ];
  2018. } else {
  2019. // Clear the bandwidth limit in SDP when VP9 is no longer the preferred codec.
  2020. // This is needed on react native clients as react-native-webrtc returns the
  2021. // SDP that the application passed instead of returning the SDP off the native side.
  2022. // This line automatically gets cleared on web on every renegotiation.
  2023. mLine.bandwidth = undefined;
  2024. }
  2025. }
  2026. return new RTCSessionDescription({
  2027. type: description.type,
  2028. sdp: transform.write(parsedSdp)
  2029. });
  2030. };
  2031. /**
  2032. * Configures the stream encodings depending on the video type and the bitrates configured.
  2033. *
  2034. * @param {JitsiLocalTrack} - The local track for which the sender encodings have to configured.
  2035. * @returns {Promise} promise that will be resolved when the operation is successful and rejected otherwise.
  2036. */
  2037. TraceablePeerConnection.prototype.configureSenderVideoEncodings = function(localVideoTrack = null) {
  2038. // If media is suspended on the peerconnection, make sure that media stays disabled. The default 'active' state for
  2039. // the encodings after the source is added to the peerconnection is 'true', so it needs to be explicitly disabled
  2040. // after the source is added.
  2041. if (!(this.videoTransferActive && this.audioTransferActive)) {
  2042. return this.tpcUtils.setMediaTransferActive(false);
  2043. }
  2044. if (localVideoTrack) {
  2045. return this.setSenderVideoConstraints(
  2046. this._senderMaxHeights.get(localVideoTrack.getSourceName()),
  2047. localVideoTrack);
  2048. }
  2049. const promises = [];
  2050. for (const track of this.getLocalVideoTracks()) {
  2051. promises.push(this.setSenderVideoConstraints(this._senderMaxHeights.get(track.getSourceName()), track));
  2052. }
  2053. return Promise.allSettled(promises);
  2054. };
  2055. TraceablePeerConnection.prototype.setLocalDescription = function(description) {
  2056. let localDescription = description;
  2057. this.trace('setLocalDescription::preTransform', dumpSDP(localDescription));
  2058. // Munge stereo flag and opusMaxAverageBitrate based on config.js
  2059. localDescription = this._mungeOpus(localDescription);
  2060. if (!this._usesUnifiedPlan) {
  2061. localDescription = this._adjustLocalMediaDirection(localDescription);
  2062. localDescription = this._ensureSimulcastGroupIsLast(localDescription);
  2063. }
  2064. // Munge the order of the codecs based on the preferences set through config.js.
  2065. localDescription = this._mungeCodecOrder(localDescription);
  2066. localDescription = this._setVp9MaxBitrates(localDescription, true);
  2067. this.trace('setLocalDescription::postTransform', dumpSDP(localDescription));
  2068. return new Promise((resolve, reject) => {
  2069. this.peerconnection.setLocalDescription(localDescription)
  2070. .then(() => {
  2071. this.trace('setLocalDescriptionOnSuccess');
  2072. const localUfrag = SDPUtil.getUfrag(localDescription.sdp);
  2073. if (localUfrag !== this.localUfrag) {
  2074. this.localUfrag = localUfrag;
  2075. this.eventEmitter.emit(RTCEvents.LOCAL_UFRAG_CHANGED, this, localUfrag);
  2076. }
  2077. this._initializeDtlsTransport();
  2078. resolve();
  2079. }, err => {
  2080. this.trace('setLocalDescriptionOnFailure', err);
  2081. this.eventEmitter.emit(RTCEvents.SET_LOCAL_DESCRIPTION_FAILED, err, this);
  2082. reject(err);
  2083. });
  2084. });
  2085. };
  2086. TraceablePeerConnection.prototype.setRemoteDescription = function(description) {
  2087. let remoteDescription = description;
  2088. this.trace('setRemoteDescription::preTransform', dumpSDP(description));
  2089. // Munge stereo flag and opusMaxAverageBitrate based on config.js
  2090. remoteDescription = this._mungeOpus(remoteDescription);
  2091. if (this._usesUnifiedPlan) {
  2092. // Translate the SDP to Unified plan format first for the jvb case, p2p case will only have 2 m-lines.
  2093. if (!this.isP2P) {
  2094. const currentDescription = this.peerconnection.remoteDescription;
  2095. remoteDescription = this.interop.toUnifiedPlan(remoteDescription, currentDescription);
  2096. this.trace('setRemoteDescription::postTransform (Unified)', dumpSDP(remoteDescription));
  2097. }
  2098. if (this.isSimulcastOn()) {
  2099. remoteDescription = this.tpcUtils.insertUnifiedPlanSimulcastReceive(remoteDescription);
  2100. this.trace('setRemoteDescription::postTransform (sim receive)', dumpSDP(remoteDescription));
  2101. }
  2102. remoteDescription = this.tpcUtils.ensureCorrectOrderOfSsrcs(remoteDescription);
  2103. this.trace('setRemoteDescription::postTransform (correct ssrc order)', dumpSDP(remoteDescription));
  2104. } else {
  2105. if (this.isSimulcastOn()) {
  2106. // Implode the simulcast ssrcs so that the remote sdp has only the first ssrc in the SIM group.
  2107. remoteDescription = this.simulcast.mungeRemoteDescription(
  2108. remoteDescription,
  2109. true /* add x-google-conference flag */);
  2110. this.trace('setRemoteDescription::postTransform (simulcast)', dumpSDP(remoteDescription));
  2111. }
  2112. remoteDescription = normalizePlanB(remoteDescription);
  2113. }
  2114. // Munge the order of the codecs based on the preferences set through config.js.
  2115. remoteDescription = this._mungeCodecOrder(remoteDescription);
  2116. remoteDescription = this._setVp9MaxBitrates(remoteDescription);
  2117. this.trace('setRemoteDescription::postTransform (munge codec order)', dumpSDP(remoteDescription));
  2118. return new Promise((resolve, reject) => {
  2119. this.peerconnection.setRemoteDescription(remoteDescription)
  2120. .then(() => {
  2121. this.trace('setRemoteDescriptionOnSuccess');
  2122. const remoteUfrag = SDPUtil.getUfrag(remoteDescription.sdp);
  2123. if (remoteUfrag !== this.remoteUfrag) {
  2124. this.remoteUfrag = remoteUfrag;
  2125. this.eventEmitter.emit(RTCEvents.REMOTE_UFRAG_CHANGED, this, remoteUfrag);
  2126. }
  2127. this._initializeDtlsTransport();
  2128. resolve();
  2129. }, err => {
  2130. this.trace('setRemoteDescriptionOnFailure', err);
  2131. this.eventEmitter.emit(RTCEvents.SET_REMOTE_DESCRIPTION_FAILED, err, this);
  2132. reject(err);
  2133. });
  2134. });
  2135. };
  2136. /**
  2137. * Changes the resolution of the video stream that is sent to the peer based on the resolution requested by the peer
  2138. * and user preference, sets the degradation preference on the sender based on the video type, configures the maximum
  2139. * bitrates on the send stream.
  2140. *
  2141. * @param {number} frameHeight - The max frame height to be imposed on the outgoing video stream.
  2142. * @param {JitsiLocalTrack} - The local track for which the sender constraints have to be applied.
  2143. * @returns {Promise} promise that will be resolved when the operation is successful and rejected otherwise.
  2144. */
  2145. TraceablePeerConnection.prototype.setSenderVideoConstraints = function(frameHeight, localVideoTrack) {
  2146. if (frameHeight < 0) {
  2147. throw new Error(`Invalid frameHeight: ${frameHeight}`);
  2148. }
  2149. if (!localVideoTrack) {
  2150. throw new Error('Local video track is missing');
  2151. }
  2152. const sourceName = localVideoTrack.getSourceName();
  2153. // Ignore sender constraints if the media on the peerconnection is suspended (jvb conn when p2p is currently active)
  2154. // or if the video track is muted.
  2155. if (!this.videoTransferActive || localVideoTrack.isMuted()) {
  2156. this._senderMaxHeights.set(sourceName, frameHeight);
  2157. return Promise.resolve();
  2158. }
  2159. const configuredResolution = this.tpcUtils.getConfiguredEncodeResolution(localVideoTrack);
  2160. // Ignore sender constraints if the client is already sending video of the requested resolution. Note that for
  2161. // screensharing sources, the max resolution will be the height of the window being captured irrespective of the
  2162. // height being requested by the peer.
  2163. if ((localVideoTrack.getVideoType() === VideoType.CAMERA && configuredResolution === frameHeight)
  2164. || (localVideoTrack.getVideoType() === VideoType.DESKTOP
  2165. && frameHeight > 0
  2166. && configuredResolution === localVideoTrack.getTrack()?.getSettings()?.height)) {
  2167. return Promise.resolve();
  2168. }
  2169. this._senderMaxHeights.set(sourceName, frameHeight);
  2170. return this._updateVideoSenderParameters(this._updateVideoSenderEncodings(frameHeight, localVideoTrack));
  2171. };
  2172. /**
  2173. * Returns a wrapped-up promise so that the setParameters() call on the RTCRtpSender for video sources are chained.
  2174. * This is needed on Chrome as it resets the transaction id after executing setParameters() and can affect the next on
  2175. * the fly updates if they are not chained.
  2176. * https://chromium.googlesource.com/external/webrtc/+/master/pc/rtp_sender.cc#340
  2177. * @param {Promise} promise - The promise that needs to be chained.
  2178. * @returns {Promise}
  2179. */
  2180. TraceablePeerConnection.prototype._updateVideoSenderParameters = function(promise) {
  2181. const nextPromise = this._lastVideoSenderUpdatePromise
  2182. .finally(() => promise);
  2183. this._lastVideoSenderUpdatePromise = nextPromise;
  2184. return nextPromise;
  2185. };
  2186. /**
  2187. * Configures the video stream with resolution / degradation / maximum bitrates
  2188. *
  2189. * @param {number} frameHeight - The max frame height to be imposed on the outgoing video stream.
  2190. * @param {JitsiLocalTrack} - The local track for which the sender constraints have to be applied.
  2191. * @returns {Promise} promise that will be resolved when the operation is successful and rejected otherwise.
  2192. */
  2193. TraceablePeerConnection.prototype._updateVideoSenderEncodings = function(frameHeight, localVideoTrack) {
  2194. const videoSender = this.findSenderForTrack(localVideoTrack.getTrack());
  2195. if (!videoSender) {
  2196. return Promise.resolve();
  2197. }
  2198. const parameters = videoSender.getParameters();
  2199. if (!parameters?.encodings?.length) {
  2200. return Promise.resolve();
  2201. }
  2202. const isSharingLowFpsScreen = localVideoTrack.getVideoType() === VideoType.DESKTOP && this._capScreenshareBitrate;
  2203. // Set the degradation preference.
  2204. const preference = isSharingLowFpsScreen
  2205. ? DEGRADATION_PREFERENCE_DESKTOP // Prefer resolution for low fps share.
  2206. : DEGRADATION_PREFERENCE_CAMERA; // Prefer frame-rate for high fps share and camera.
  2207. parameters.degradationPreference = preference;
  2208. logger.info(`${this} Setting degradation preference [preference=${preference},track=${localVideoTrack}`);
  2209. // Calculate the encodings active state based on the resolution requested by the bridge.
  2210. this.encodingsEnabledState = this.tpcUtils.calculateEncodingsActiveState(localVideoTrack, frameHeight);
  2211. const maxBitrates = this.tpcUtils.calculateEncodingsBitrates(localVideoTrack);
  2212. const videoType = localVideoTrack.getVideoType();
  2213. if (this.isSimulcastOn()) {
  2214. for (const encoding in parameters.encodings) {
  2215. if (parameters.encodings.hasOwnProperty(encoding)) {
  2216. parameters.encodings[encoding].active = this.encodingsEnabledState[encoding];
  2217. // Firefox doesn't follow the spec and lets application specify the degradation preference on the
  2218. // encodings.
  2219. browser.isFirefox() && (parameters.encodings[encoding].degradationPreference = preference);
  2220. if (this.getConfiguredVideoCodec() === CodecMimeType.VP8
  2221. && (this.options?.videoQuality?.maxBitratesVideo
  2222. || isSharingLowFpsScreen
  2223. || this._usesUnifiedPlan)) {
  2224. parameters.encodings[encoding].maxBitrate = maxBitrates[encoding];
  2225. }
  2226. }
  2227. }
  2228. this.tpcUtils.updateEncodingsResolution(localVideoTrack, parameters);
  2229. // For p2p and cases and where simulcast is explicitly disabled.
  2230. } else if (frameHeight > 0) {
  2231. let scaleFactor = HD_SCALE_FACTOR;
  2232. // Do not scale down encodings for desktop tracks for non-simulcast case.
  2233. if (videoType === VideoType.CAMERA && localVideoTrack.resolution > frameHeight) {
  2234. scaleFactor = Math.floor(localVideoTrack.resolution / frameHeight);
  2235. }
  2236. parameters.encodings[0].active = true;
  2237. parameters.encodings[0].scaleResolutionDownBy = scaleFactor;
  2238. // Firefox doesn't follow the spec and lets application specify the degradation preference on the encodings.
  2239. browser.isFirefox() && (parameters.encodings[0].degradationPreference = preference);
  2240. // Configure the bitrate.
  2241. if (this.getConfiguredVideoCodec() === CodecMimeType.VP8 && this.options?.videoQuality?.maxBitratesVideo) {
  2242. let bitrate = this.getTargetVideoBitrates()?.high;
  2243. if (videoType === VideoType.CAMERA) {
  2244. bitrate = this.tpcUtils._getVideoStreamEncodings(localVideoTrack.getVideoType())
  2245. .find(layer => layer.scaleResolutionDownBy === scaleFactor)?.maxBitrate ?? bitrate;
  2246. }
  2247. parameters.encodings[0].maxBitrate = bitrate;
  2248. } else {
  2249. parameters.encodings[0].maxBitrate = undefined;
  2250. }
  2251. } else {
  2252. parameters.encodings[0].active = false;
  2253. }
  2254. logger.info(`${this} setting max height=${frameHeight},encodings=${JSON.stringify(parameters.encodings)}`);
  2255. return videoSender.setParameters(parameters).then(() => {
  2256. localVideoTrack.maxEnabledResolution = frameHeight;
  2257. this.eventEmitter.emit(RTCEvents.LOCAL_TRACK_MAX_ENABLED_RESOLUTION_CHANGED, localVideoTrack);
  2258. });
  2259. };
  2260. /**
  2261. * Enables/disables video media transmission on this peer connection. When
  2262. * disabled the SDP video media direction in the local SDP will be adjusted to
  2263. * 'inactive' which means that no data will be sent nor accepted, but
  2264. * the connection should be kept alive.
  2265. * @param {boolean} active <tt>true</tt> to enable video media transmission or
  2266. * <tt>false</tt> to disable. If the value is not a boolean the call will have
  2267. * no effect.
  2268. * @return {boolean} <tt>true</tt> if the value has changed and sRD/sLD cycle
  2269. * needs to be executed in order for the changes to take effect or
  2270. * <tt>false</tt> if the given value was the same as the previous one.
  2271. * @public
  2272. */
  2273. TraceablePeerConnection.prototype.setVideoTransferActive = function(active) {
  2274. logger.debug(`${this} video transfer active: ${active}`);
  2275. const changed = this.videoTransferActive !== active;
  2276. this.videoTransferActive = active;
  2277. if (this._usesUnifiedPlan) {
  2278. this.tpcUtils.setVideoTransferActive(active);
  2279. // false means no renegotiation up the chain which is not needed in the Unified mode
  2280. return false;
  2281. }
  2282. return changed;
  2283. };
  2284. /**
  2285. * Sends DTMF tones if possible.
  2286. *
  2287. * @param {string} tones - The DTMF tones string as defined by {@code RTCDTMFSender.insertDTMF}, 'tones' argument.
  2288. * @param {number} duration - The amount of time in milliseconds that each DTMF should last. It's 200ms by default.
  2289. * @param {number} interToneGap - The length of time in miliseconds to wait between tones. It's 200ms by default.
  2290. *
  2291. * @returns {void}
  2292. */
  2293. TraceablePeerConnection.prototype.sendTones = function(tones, duration = 200, interToneGap = 200) {
  2294. if (!this._dtmfSender) {
  2295. if (this.peerconnection.getSenders) {
  2296. const rtpSender = this.peerconnection.getSenders().find(s => s.dtmf);
  2297. this._dtmfSender = rtpSender && rtpSender.dtmf;
  2298. this._dtmfSender && logger.info(`${this} initialized DTMFSender using getSenders`);
  2299. }
  2300. if (!this._dtmfSender) {
  2301. const localAudioTrack = Array.from(this.localTracks.values()).find(t => t.isAudioTrack());
  2302. if (this.peerconnection.createDTMFSender && localAudioTrack) {
  2303. this._dtmfSender = this.peerconnection.createDTMFSender(localAudioTrack.getTrack());
  2304. }
  2305. this._dtmfSender && logger.info(`${this} initialized DTMFSender using deprecated createDTMFSender`);
  2306. }
  2307. if (this._dtmfSender) {
  2308. this._dtmfSender.ontonechange = this._onToneChange.bind(this);
  2309. }
  2310. }
  2311. if (this._dtmfSender) {
  2312. if (this._dtmfSender.toneBuffer) {
  2313. this._dtmfTonesQueue.push({
  2314. tones,
  2315. duration,
  2316. interToneGap
  2317. });
  2318. return;
  2319. }
  2320. this._dtmfSender.insertDTMF(tones, duration, interToneGap);
  2321. } else {
  2322. logger.warn(`${this} sendTones - failed to select DTMFSender`);
  2323. }
  2324. };
  2325. /**
  2326. * Callback ivoked by {@code this._dtmfSender} when it has finished playing
  2327. * a single tone.
  2328. *
  2329. * @param {Object} event - The tonechange event which indicates what characters
  2330. * are left to be played for the current tone.
  2331. * @private
  2332. * @returns {void}
  2333. */
  2334. TraceablePeerConnection.prototype._onToneChange = function(event) {
  2335. // An empty event.tone indicates the current tones have finished playing.
  2336. // Automatically start playing any queued tones on finish.
  2337. if (this._dtmfSender && event.tone === '' && this._dtmfTonesQueue.length) {
  2338. const { tones, duration, interToneGap } = this._dtmfTonesQueue.shift();
  2339. this._dtmfSender.insertDTMF(tones, duration, interToneGap);
  2340. }
  2341. };
  2342. /**
  2343. * Makes the underlying TraceablePeerConnection generate new SSRC for
  2344. * the recvonly video stream.
  2345. */
  2346. TraceablePeerConnection.prototype.generateRecvonlySsrc = function() {
  2347. const newSSRC = SDPUtil.generateSsrc();
  2348. logger.info(`${this} generated new recvonly SSRC=${newSSRC}`);
  2349. this.sdpConsistency.setPrimarySsrc(newSSRC);
  2350. };
  2351. /**
  2352. * Makes the underlying TraceablePeerConnection forget the current primary video
  2353. * SSRC.
  2354. */
  2355. TraceablePeerConnection.prototype.clearRecvonlySsrc = function() {
  2356. logger.info(`${this} Clearing primary video SSRC!`);
  2357. this.sdpConsistency.clearVideoSsrcCache();
  2358. };
  2359. /**
  2360. * Closes underlying WebRTC PeerConnection instance and removes all remote
  2361. * tracks by emitting {@link RTCEvents.REMOTE_TRACK_REMOVED} for each one of
  2362. * them.
  2363. */
  2364. TraceablePeerConnection.prototype.close = function() {
  2365. this.trace('stop');
  2366. // Off SignalingEvents
  2367. this.signalingLayer.off(SignalingEvents.PEER_MUTED_CHANGED, this._peerMutedChanged);
  2368. this.signalingLayer.off(SignalingEvents.PEER_VIDEO_TYPE_CHANGED, this._peerVideoTypeChanged);
  2369. this._usesUnifiedPlan && this.peerconnection.removeEventListener('track', this.onTrack);
  2370. for (const peerTracks of this.remoteTracks.values()) {
  2371. for (const remoteTracks of peerTracks.values()) {
  2372. for (const remoteTrack of remoteTracks) {
  2373. this._removeRemoteTrack(remoteTrack);
  2374. }
  2375. }
  2376. }
  2377. this.remoteTracks.clear();
  2378. this._addedStreams = [];
  2379. this._dtmfSender = null;
  2380. this._dtmfTonesQueue = [];
  2381. if (!this.rtc._removePeerConnection(this)) {
  2382. logger.error(`${this} RTC._removePeerConnection returned false`);
  2383. }
  2384. if (this.statsinterval !== null) {
  2385. window.clearInterval(this.statsinterval);
  2386. this.statsinterval = null;
  2387. }
  2388. logger.info(`${this} Closing peerconnection`);
  2389. this.peerconnection.close();
  2390. };
  2391. TraceablePeerConnection.prototype.createAnswer = function(constraints) {
  2392. return this._createOfferOrAnswer(false /* answer */, constraints);
  2393. };
  2394. TraceablePeerConnection.prototype.createOffer = function(constraints) {
  2395. return this._createOfferOrAnswer(true /* offer */, constraints);
  2396. };
  2397. TraceablePeerConnection.prototype._createOfferOrAnswer = function(
  2398. isOffer,
  2399. constraints) {
  2400. const logName = isOffer ? 'Offer' : 'Answer';
  2401. this.trace(`create${logName}`, JSON.stringify(constraints, null, ' '));
  2402. const handleSuccess = (resultSdp, resolveFn, rejectFn) => {
  2403. try {
  2404. this.trace(
  2405. `create${logName}OnSuccess::preTransform`, dumpSDP(resultSdp));
  2406. if (!this._usesUnifiedPlan) {
  2407. // If there are no local video tracks, then a "recvonly"
  2408. // SSRC needs to be generated
  2409. if (!this.hasAnyTracksOfType(MediaType.VIDEO)
  2410. && !this.sdpConsistency.hasPrimarySsrcCached()) {
  2411. this.generateRecvonlySsrc();
  2412. }
  2413. // eslint-disable-next-line no-param-reassign
  2414. resultSdp = new RTCSessionDescription({
  2415. type: resultSdp.type,
  2416. sdp: this.sdpConsistency.makeVideoPrimarySsrcsConsistent(
  2417. resultSdp.sdp)
  2418. });
  2419. this.trace(
  2420. `create${logName}OnSuccess::postTransform `
  2421. + '(make primary audio/video ssrcs consistent)',
  2422. dumpSDP(resultSdp));
  2423. }
  2424. const localVideoTrack = this.getLocalVideoTracks()[0];
  2425. // Configure simulcast for camera tracks and for desktop tracks that need simulcast.
  2426. if (this.isSimulcastOn() && browser.usesSdpMungingForSimulcast()
  2427. && (localVideoTrack?.getVideoType() === VideoType.CAMERA
  2428. || this._usesUnifiedPlan)) {
  2429. // eslint-disable-next-line no-param-reassign
  2430. resultSdp = this.simulcast.mungeLocalDescription(resultSdp);
  2431. this.trace(`create${logName} OnSuccess::postTransform (simulcast)`, dumpSDP(resultSdp));
  2432. }
  2433. if (!this.options.disableRtx && browser.usesSdpMungingForSimulcast()) {
  2434. // eslint-disable-next-line no-param-reassign
  2435. resultSdp = new RTCSessionDescription({
  2436. type: resultSdp.type,
  2437. sdp: this.rtxModifier.modifyRtxSsrcs(resultSdp.sdp)
  2438. });
  2439. this.trace(
  2440. `create${logName}`
  2441. + 'OnSuccess::postTransform (rtx modifier)',
  2442. dumpSDP(resultSdp));
  2443. }
  2444. const ssrcMap = this._extractSSRCMap(resultSdp);
  2445. this._processLocalSSRCsMap(ssrcMap);
  2446. resolveFn(resultSdp);
  2447. } catch (e) {
  2448. this.trace(`create${logName}OnError`, e);
  2449. this.trace(`create${logName}OnError`, dumpSDP(resultSdp));
  2450. logger.error(`${this} create${logName}OnError`, e, dumpSDP(resultSdp));
  2451. rejectFn(e);
  2452. }
  2453. };
  2454. const handleFailure = (err, rejectFn) => {
  2455. this.trace(`create${logName}OnFailure`, err);
  2456. const eventType
  2457. = isOffer
  2458. ? RTCEvents.CREATE_OFFER_FAILED
  2459. : RTCEvents.CREATE_ANSWER_FAILED;
  2460. this.eventEmitter.emit(eventType, err, this);
  2461. rejectFn(err);
  2462. };
  2463. // Set the codec preference before creating an offer or answer so that the generated SDP will have
  2464. // the correct preference order.
  2465. if (this._usesTransceiverCodecPreferences) {
  2466. const { mediaType } = this.codecSettings;
  2467. const transceivers = this.peerconnection.getTransceivers()
  2468. .filter(t => t.receiver && t.receiver?.track?.kind === mediaType);
  2469. if (transceivers.length) {
  2470. let capabilities = RTCRtpReceiver.getCapabilities(mediaType)?.codecs;
  2471. const disabledCodecMimeType = this.codecSettings?.disabled;
  2472. const preferredCodecMimeType = this.codecSettings?.preferred;
  2473. if (capabilities && disabledCodecMimeType) {
  2474. capabilities = capabilities
  2475. .filter(caps => caps.mimeType.toLowerCase() !== `${mediaType}/${disabledCodecMimeType}`);
  2476. }
  2477. if (capabilities && preferredCodecMimeType) {
  2478. // Move the desired codec (all variations of it as well) to the beginning of the list.
  2479. /* eslint-disable-next-line arrow-body-style */
  2480. capabilities.sort(caps => {
  2481. return caps.mimeType.toLowerCase() === `${mediaType}/${preferredCodecMimeType}` ? -1 : 1;
  2482. });
  2483. }
  2484. // Disable ulpfec on Google Chrome and derivatives because
  2485. // https://bugs.chromium.org/p/chromium/issues/detail?id=1276427
  2486. if (browser.isChromiumBased() && mediaType === MediaType.VIDEO) {
  2487. capabilities = capabilities
  2488. .filter(caps => caps.mimeType.toLowerCase() !== `${MediaType.VIDEO}/${CodecMimeType.ULPFEC}`);
  2489. }
  2490. // Apply codec preference to all the transceivers associated with the given media type.
  2491. for (const transceiver of transceivers) {
  2492. transceiver.setCodecPreferences(capabilities);
  2493. }
  2494. }
  2495. }
  2496. return new Promise((resolve, reject) => {
  2497. let oaPromise;
  2498. if (isOffer) {
  2499. oaPromise = this.peerconnection.createOffer(constraints);
  2500. } else {
  2501. oaPromise = this.peerconnection.createAnswer(constraints);
  2502. }
  2503. oaPromise
  2504. .then(
  2505. sdp => handleSuccess(sdp, resolve, reject),
  2506. error => handleFailure(error, reject));
  2507. });
  2508. };
  2509. /**
  2510. * Extract primary SSRC from given {@link TrackSSRCInfo} object.
  2511. * @param {TrackSSRCInfo} ssrcObj
  2512. * @return {number|null} the primary SSRC or <tt>null</tt>
  2513. */
  2514. TraceablePeerConnection.prototype._extractPrimarySSRC = function(ssrcObj) {
  2515. if (ssrcObj && ssrcObj.groups && ssrcObj.groups.length) {
  2516. return ssrcObj.groups[0].ssrcs[0];
  2517. } else if (ssrcObj && ssrcObj.ssrcs && ssrcObj.ssrcs.length) {
  2518. return ssrcObj.ssrcs[0];
  2519. }
  2520. return null;
  2521. };
  2522. /**
  2523. * Goes over the SSRC map extracted from the latest local description and tries
  2524. * to match them with the local tracks (by MSID). Will update the values
  2525. * currently stored in the {@link TraceablePeerConnection.localSSRCs} map.
  2526. * @param {Map<string,TrackSSRCInfo>} ssrcMap
  2527. * @private
  2528. */
  2529. TraceablePeerConnection.prototype._processLocalSSRCsMap = function(ssrcMap) {
  2530. for (const track of this.localTracks.values()) {
  2531. const sourceName = track.getSourceName();
  2532. const sourceIndex = getSourceIndexFromSourceName(sourceName);
  2533. const sourceIdentifier = this._usesUnifiedPlan
  2534. ? `${track.getType()}-${sourceIndex}`
  2535. : track.storedMSID;
  2536. if (ssrcMap.has(sourceIdentifier)) {
  2537. const newSSRC = ssrcMap.get(sourceIdentifier);
  2538. if (!newSSRC) {
  2539. logger.error(`${this} No SSRC found for stream=${sourceIdentifier}`);
  2540. return;
  2541. }
  2542. const oldSSRC = this.localSSRCs.get(track.rtcId);
  2543. const newSSRCNum = this._extractPrimarySSRC(newSSRC);
  2544. const oldSSRCNum = this._extractPrimarySSRC(oldSSRC);
  2545. // eslint-disable-next-line no-negated-condition
  2546. if (newSSRCNum !== oldSSRCNum) {
  2547. oldSSRCNum && logger.error(`${this} Overwriting SSRC for track=${track}] with ssrc=${newSSRC}`);
  2548. this.localSSRCs.set(track.rtcId, newSSRC);
  2549. this.eventEmitter.emit(RTCEvents.LOCAL_TRACK_SSRC_UPDATED, track, newSSRCNum);
  2550. }
  2551. } else if (!track.isVideoTrack() && !track.isMuted()) {
  2552. // It is normal to find no SSRCs for a muted video track in
  2553. // the local SDP as the recv-only SSRC is no longer munged in.
  2554. // So log the warning only if it's not a muted video track.
  2555. logger.warn(`${this} No SSRCs found in the local SDP for track=${track}, stream=${sourceIdentifier}`);
  2556. }
  2557. }
  2558. };
  2559. /**
  2560. * Track the SSRCs seen so far.
  2561. * @param {number} ssrc - SSRC.
  2562. * @return {boolean} - Whether this is a new SSRC.
  2563. */
  2564. TraceablePeerConnection.prototype.addRemoteSsrc = function(ssrc) {
  2565. const existing = this.remoteSSRCs.has(ssrc);
  2566. if (!existing) {
  2567. this.remoteSSRCs.add(ssrc);
  2568. }
  2569. return !existing;
  2570. };
  2571. TraceablePeerConnection.prototype.addIceCandidate = function(candidate) {
  2572. this.trace('addIceCandidate', JSON.stringify({
  2573. candidate: candidate.candidate,
  2574. sdpMid: candidate.sdpMid,
  2575. sdpMLineIndex: candidate.sdpMLineIndex,
  2576. usernameFragment: candidate.usernameFragment
  2577. }, null, ' '));
  2578. return this.peerconnection.addIceCandidate(candidate);
  2579. };
  2580. /**
  2581. * Returns the number of simulcast streams that are currently enabled on the peerconnection.
  2582. *
  2583. * @returns {number} The number of simulcast streams currently enabled or 1 when simulcast is disabled.
  2584. */
  2585. TraceablePeerConnection.prototype.getActiveSimulcastStreams = function() {
  2586. let activeStreams = 1;
  2587. if (this.isSimulcastOn() && this.encodingsEnabledState) {
  2588. activeStreams = this.encodingsEnabledState.filter(stream => Boolean(stream))?.length;
  2589. } else if (this.isSimulcastOn()) {
  2590. activeStreams = SIM_LAYER_RIDS.length;
  2591. }
  2592. return activeStreams;
  2593. };
  2594. /**
  2595. * Obtains call-related stats from the peer connection.
  2596. *
  2597. * @returns {Promise<Object>} Promise which resolves with data providing statistics about
  2598. * the peerconnection.
  2599. */
  2600. TraceablePeerConnection.prototype.getStats = function() {
  2601. return this.peerconnection.getStats();
  2602. };
  2603. /**
  2604. * Generates and stores new SSRC info object for given local track.
  2605. * The method should be called only for a video track being added to this TPC
  2606. * in the muted state (given that the current browser uses this strategy).
  2607. * @param {JitsiLocalTrack} track
  2608. * @return {TPCSSRCInfo}
  2609. */
  2610. TraceablePeerConnection.prototype.generateNewStreamSSRCInfo = function(track) {
  2611. const rtcId = track.rtcId;
  2612. let ssrcInfo = this._getSSRC(rtcId);
  2613. if (ssrcInfo) {
  2614. logger.error(`${this} Overwriting local SSRCs for track id=${rtcId}`);
  2615. }
  2616. // Configure simulcast for camera tracks and desktop tracks that need simulcast.
  2617. if (this.isSimulcastOn()
  2618. && (track.getVideoType() === VideoType.CAMERA || !this.isSharingLowFpsScreen())) {
  2619. ssrcInfo = {
  2620. ssrcs: [],
  2621. groups: []
  2622. };
  2623. for (let i = 0; i < SIM_LAYER_RIDS.length; i++) {
  2624. ssrcInfo.ssrcs.push(SDPUtil.generateSsrc());
  2625. }
  2626. ssrcInfo.groups.push({
  2627. ssrcs: ssrcInfo.ssrcs.slice(),
  2628. semantics: 'SIM'
  2629. });
  2630. } else {
  2631. ssrcInfo = {
  2632. ssrcs: [ SDPUtil.generateSsrc() ],
  2633. groups: []
  2634. };
  2635. }
  2636. if (!this.options.disableRtx) {
  2637. // Specifically use a for loop here because we'll
  2638. // be adding to the list we're iterating over, so we
  2639. // only want to iterate through the items originally
  2640. // on the list
  2641. const currNumSsrcs = ssrcInfo.ssrcs.length;
  2642. for (let i = 0; i < currNumSsrcs; ++i) {
  2643. const primarySsrc = ssrcInfo.ssrcs[i];
  2644. const rtxSsrc = SDPUtil.generateSsrc();
  2645. ssrcInfo.ssrcs.push(rtxSsrc);
  2646. ssrcInfo.groups.push({
  2647. ssrcs: [ primarySsrc, rtxSsrc ],
  2648. semantics: 'FID'
  2649. });
  2650. }
  2651. }
  2652. ssrcInfo.msid = track.storedMSID;
  2653. this.localSSRCs.set(rtcId, ssrcInfo);
  2654. return ssrcInfo;
  2655. };
  2656. /**
  2657. * Returns if the peer connection uses Unified plan implementation.
  2658. *
  2659. * @returns {boolean} True if the pc uses Unified plan, false otherwise.
  2660. */
  2661. TraceablePeerConnection.prototype.usesUnifiedPlan = function() {
  2662. return this._usesUnifiedPlan;
  2663. };
  2664. /**
  2665. * Creates a text representation of this <tt>TraceablePeerConnection</tt>
  2666. * instance.
  2667. * @return {string}
  2668. */
  2669. TraceablePeerConnection.prototype.toString = function() {
  2670. return `TPC[id=${this.id},type=${this.isP2P ? 'P2P' : 'JVB'}]`;
  2671. };