mediasoup/app.js

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require('dotenv').config()
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const express = require('express');
const app = express();
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const Server = require('socket.io');
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const path = require('node:path');
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const fs = require('node:fs');
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let https;
try {
https = require('node:https');
} catch (err) {
console.log('https support is disabled!');
}
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const mediasoup = require('mediasoup');
let worker;
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/**
*
* videoCalls - Dictionary of Object(s)
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* '<callId>': {
* router: Router,
* initiatorAudioProducer: Producer,
* initiatorVideoProducer: Producer,
* receiverVideoProducer: Producer,
* receiverAudioProducer: Producer,
* initiatorProducerTransport: Producer Transport,
* receiverProducerTransport: Producer Transport,
* initiatorConsumerVideo: Consumer,
* initiatorConsumerAudio: Consumer,
* initiatorConsumerTransport: Consumer Transport
* initiatorSocket
* receiverSocket
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* }
*
**/
let videoCalls = {};
let socketDetails = {};
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app.get('/', (_req, res) => {
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res.send('Hello from mediasoup app!')
});
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app.use('/sfu', express.static(path.join(__dirname, 'public')));
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// SSL cert for HTTPS access
const options = {
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key: fs.readFileSync(process.env.SERVER_KEY, 'utf-8'),
cert: fs.readFileSync(process.env.SERVER_CERT, 'utf-8'),
};
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const httpsServer = https.createServer(options, app);
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const io = new Server(httpsServer, {
allowEIO3: true,
origins: ["*:*"]
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});
httpsServer.listen(process.env.PORT, () => {
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console.log('Video server listening on port:', process.env.PORT);
});
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const peers = io.of('/');
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const createWorker = async () => {
try {
worker = await mediasoup.createWorker({
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rtcMinPort: parseInt(process.env.RTC_MIN_PORT),
rtcMaxPort: parseInt(process.env.RTC_MAX_PORT),
})
console.log(`[createWorker] worker pid ${worker.pid}`);
worker.on('died', error => {
// This implies something serious happened, so kill the application
console.error('mediasoup worker has died', error);
setTimeout(() => process.exit(1), 2000); // exit in 2 seconds
})
return worker;
} catch (error) {
console.log(`ERROR | createWorker | ${error.message}`);
}
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}
// We create a Worker as soon as our application starts
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worker = createWorker();
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// This is an Array of RtpCapabilities
// https://mediasoup.org/documentation/v3/mediasoup/rtp-parameters-and-capabilities/#RtpCodecCapability
// list of media codecs supported by mediasoup ...
// https://github.com/versatica/mediasoup/blob/v3/src/supportedRtpCapabilities.ts
const mediaCodecs = [
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{
kind : 'audio',
mimeType : 'audio/opus',
clockRate : 48000,
channels : 2
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},
{
kind : 'video',
mimeType : 'video/VP8',
clockRate : 90000,
parameters :
{
'x-google-start-bitrate' : 1000
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},
channels : 2
},
{
kind : 'video',
mimeType : 'video/VP9',
clockRate : 90000,
parameters :
{
'profile-id' : 2,
'x-google-start-bitrate' : 1000
}
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},
{
kind : 'video',
mimeType : 'video/h264',
clockRate : 90000,
parameters :
{
'packetization-mode' : 1,
'profile-level-id' : '4d0032',
'level-asymmetry-allowed' : 1,
'x-google-start-bitrate' : 1000
}
},
{
kind : 'video',
mimeType : 'video/h264',
clockRate : 90000,
parameters :
{
'packetization-mode' : 1,
'profile-level-id' : '42e01f',
'level-asymmetry-allowed' : 1,
'x-google-start-bitrate' : 1000
}
}
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];
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const closeCall = (callId) => {
try {
if (callId && videoCalls[callId]) {
videoCalls[callId].receiverVideoProducer?.close();
videoCalls[callId].receiverAudioProducer?.close();
videoCalls[callId].initiatorConsumerVideo?.close();
videoCalls[callId].initiatorConsumerAudio?.close();
videoCalls[callId]?.initiatorConsumerTransport?.close();
videoCalls[callId]?.receiverProducerTransport?.close();
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videoCalls[callId]?.router?.close();
delete videoCalls[callId];
} else {
console.log(`The call with id ${callId} has already been deleted`);
}
} catch (error) {
console.log(`ERROR | closeCall | callid ${callId} | ${error.message}`);
}
}
/*
- Handlers for WS events
- These are created only when we have a connection with a peer
*/
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peers.on('connection', async socket => {
console.log('[connection] socketId:', socket.id);
// After making the connection successfully, we send the client a 'connection-success' event
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socket.emit('connection-success', {
socketId: socket.id
});
// It is triggered when the peer is disconnected
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socket.on('disconnect', () => {
const callId = socketDetails[socket.id];
console.log(`disconnect | socket ${socket.id} | callId ${callId}`);
delete socketDetails[socket.id];
closeCall(callId);
});
/*
- This event creates a room with the roomId and the callId sent
- It will return the rtpCapabilities of that room
- If the room already exists, it will not create it, but will only return rtpCapabilities
*/
socket.on('createRoom', async ({ callId }, callback) => {
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let callbackResponse = null;
try {
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// We can continue with the room creation process only if we have a callId
if (callId) {
console.log(`[createRoom] socket.id ${socket.id} callId ${callId}`);
if (!videoCalls[callId]) {
videoCalls[callId] = { router: await worker.createRouter({ mediaCodecs }) };
console.log(`[createRoom] Router ID: ${videoCalls[callId].router.id}`);
videoCalls[callId].receiverSocket = socket;
} else {
videoCalls[callId].initiatorSocket = socket;
}
socketDetails[socket.id] = callId;
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// rtpCapabilities is set for callback
console.log('[getRtpCapabilities] callId', callId);
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callbackResponse = {
rtpCapabilities :videoCalls[callId].router.rtpCapabilities
};
} else {
console.log(`[createRoom] missing callId ${callId}`);
}
} catch (error) {
console.log(`ERROR | createRoom | callId ${callId} | ${error.message}`);
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} finally {
callback(callbackResponse);
}
});
/*
- Client emits a request to create server side Transport
- Depending on the sender, a producer or consumer is created is created on that router
- It will return parameters, these are required for the client to create the RecvTransport
from the client.
- If the client is producer(sender: true) then it will use parameters for device.createSendTransport(params)
- If the client is a consumer(sender: false) then it will use parameters for device.createRecvTransport(params)
*/
socket.on('createWebRtcTransport', async ({ sender }, callback) => {
try {
const callId = socketDetails[socket.id];
console.log(`[createWebRtcTransport] socket ${socket.id} | sender ${sender} | callId ${callId}`);
if (sender) {
if(!videoCalls[callId].receiverProducerTransport && !isInitiator(callId, socket.id)) {
videoCalls[callId].receiverProducerTransport = await createWebRtcTransportLayer(callId, callback);
} else if(!videoCalls[callId].initiatorProducerTransport && isInitiator(callId, socket.id)) {
videoCalls[callId].initiatorProducerTransport = await createWebRtcTransportLayer(callId, callback);
} else {
console.log(`producerTransport has already been defined | callId ${callId}`);
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callback(null);
}
} else if (!sender) {
if(!videoCalls[callId].receiverConsumerTransport && !isInitiator(callId, socket.id)) {
videoCalls[callId].receiverConsumerTransport = await createWebRtcTransportLayer(callId, callback);
} else if(!videoCalls[callId].initiatorConsumerTransport && isInitiator(callId, socket.id)) {
videoCalls[callId].initiatorConsumerTransport = await createWebRtcTransportLayer(callId, callback);
}
}
} catch (error) {
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console.log(`ERROR | createWebRtcTransport | callId ${socketDetails[socket.id]} | sender ${sender} | ${error.message}`);
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callback(error);
}
});
/*
- The client sends this event after successfully creating a createSendTransport(AS PRODUCER)
- The connection is made to the created transport
*/
socket.on('transport-connect', async ({ dtlsParameters }) => {
try {
const callId = socketDetails[socket.id];
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if (typeof dtlsParameters === 'string') dtlsParameters = JSON.parse(dtlsParameters);
console.log(`[transport-connect] socket ${socket.id} | callId ${callId}`);
if (!isInitiator(callId, socket.id)) {
await videoCalls[callId].receiverProducerTransport.connect({ dtlsParameters });
} else {
await videoCalls[callId].initiatorProducerTransport.connect({ dtlsParameters });
}
} catch (error) {
console.log(`ERROR | transport-connect | callId ${socketDetails[socket.id]} | ${error.message}`);
}
});
/*
- The event sent by the client (PRODUCER) after successfully connecting to receiverProducerTransport/initiatorProducerTransport
- For the router with the id callId, we make produce on receiverProducerTransport/initiatorProducerTransport
- Create the handler on producer at the 'transportclose' event
*/
socket.on('transport-produce', async ({ kind, rtpParameters, appData }, callback) => {
try {
const callId = socketDetails[socket.id];
if (typeof rtpParameters === 'string') rtpParameters = JSON.parse(rtpParameters);
console.log(`[transport-produce] kind: ${kind} | socket: ${socket.id} | callId: ${callId}`);
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try {
const router = videoCalls[callId].router;
router.observer.on("newtransport", (transport) => {
transport.observer.on("newproducer", (producer) => {
console.log(
"new producer created [worker.pid:%d, router.id:%s, transport.id:%s, producer.id:%s]",
worker.pid, router.id, transport.id, producer.id
);
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// if (!isInitiator(callId, socket.id)) {
// console.log('🟥 Emit to initiatorSocket');
// videoCalls[callId].initiatorSocket.emit('new-producer', {
// callId
// });
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// } else {
// console.log('🟥 Emit to receiverSocket');
// videoCalls[callId].receiverSocket.emit('new-producer', {
// callId
// });
// }
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console.log('$$$$ isInitiator(callId, socket.id)', isInitiator(callId, socket.id));
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console.log('socket.id', socket.id);
console.log('videoCalls', videoCalls);
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videoCalls[callId].receiverSocket.emit('new-producer', {
callId
});
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// videoCalls[callId].initiatorSocket.emit('new-producer', {
// callId
// });
// videoCalls[callId].receiverSocket.emit('new-producer', {
// callId
// });
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// socket.emit('new-producer', {
// callId
// });
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});
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});
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} catch (error) {
console.log('&&&&&&&&&&&&&&&&', error.message);
}
if (kind === 'video') {
if (!isInitiator(callId, socket.id)) {
videoCalls[callId].receiverVideoProducer = await videoCalls[callId].receiverProducerTransport.produce({
kind,
rtpParameters,
});
console.log(`[transport-produce] receiverVideoProducer Producer ID: ${videoCalls[callId].receiverVideoProducer.id} | kind: ${videoCalls[callId].receiverVideoProducer.kind}`);
videoCalls[callId].receiverVideoProducer.on('transportclose', () => {
const callId = socketDetails[socket.id];
console.log('transport for this producer closed', callId)
closeCall(callId);
});
// Send back to the client the Producer's id
callback && callback({
id: videoCalls[callId].receiverVideoProducer.id
});
} else {
videoCalls[callId].initiatorVideoProducer = await videoCalls[callId].initiatorProducerTransport.produce({
kind,
rtpParameters,
});
console.log(`[transport-produce] initiatorVideoProducer Producer ID: ${videoCalls[callId].initiatorVideoProducer.id} | kind: ${videoCalls[callId].initiatorVideoProducer.kind}`);
videoCalls[callId].initiatorVideoProducer.on('transportclose', () => {
const callId = socketDetails[socket.id];
console.log('transport for this producer closed', callId)
closeCall(callId);
});
callback && callback({
id: videoCalls[callId].initiatorVideoProducer.id
});
}
} else if (kind === 'audio') {
if (!isInitiator(callId, socket.id)) {
videoCalls[callId].receiverAudioProducer = await videoCalls[callId].receiverProducerTransport.produce({
kind,
rtpParameters,
});
console.log(`[transport-produce] receiverAudioProducer Producer ID: ${videoCalls[callId].receiverAudioProducer.id} | kind: ${videoCalls[callId].receiverAudioProducer.kind}`);
videoCalls[callId].receiverAudioProducer.on('transportclose', () => {
const callId = socketDetails[socket.id];
console.log('transport for this producer closed', callId)
closeCall(callId);
});
// Send back to the client the Producer's id
callback && callback({
id: videoCalls[callId].receiverAudioProducer.id
});
} else {
videoCalls[callId].initiatorAudioProducer = await videoCalls[callId].initiatorProducerTransport.produce({
kind,
rtpParameters,
});
console.log(`[transport-produce] initiatorAudioProducer Producer ID: ${videoCalls[callId].initiatorAudioProducer.id} | kind: ${videoCalls[callId].initiatorAudioProducer.kind}`);
videoCalls[callId].initiatorAudioProducer.on('transportclose', () => {
const callId = socketDetails[socket.id];
console.log('transport for this producer closed', callId)
closeCall(callId);
});
// Send back to the client the Producer's id
callback && callback({
id: videoCalls[callId].initiatorAudioProducer.id
});
}
}
} catch (error) {
console.log(`ERROR | transport-produce | callId ${socketDetails[socket.id]} | ${error.message}`);
}
});
/*
- The client sends this event after successfully creating a createRecvTransport(AS CONSUMER)
- The connection is made to the created consumerTransport
*/
socket.on('transport-recv-connect', async ({ dtlsParameters }) => {
try {
const callId = socketDetails[socket.id];
console.log(`[transport-recv-connect] socket ${socket.id} | callId ${callId}`);
if (typeof dtlsParameters === 'string') dtlsParameters = JSON.parse(dtlsParameters);
// await videoCalls[callId].consumerTransport.connect({ dtlsParameters });
if(!isInitiator(callId, socket.id)) {
await videoCalls[callId].receiverConsumerTransport.connect({ dtlsParameters });
} else if(isInitiator(callId, socket.id)) {
await videoCalls[callId].initiatorConsumerTransport.connect({ dtlsParameters });
}
} catch (error) {
console.log(`ERROR | transport-recv-connect | callId ${socketDetails[socket.id]} | ${error.message}`);
}
})
/*
- The customer consumes after successfully connecting to consumerTransport
- The previous step was 'transport-recv-connect', and before that 'createWebRtcTransport'
- This event is only sent by the consumer
- The parameters that the consumer consumes are returned
- The consumer does consumerTransport.consume(params)
*/
socket.on('consume', async ({ rtpCapabilities }, callback) => {
try {
const callId = socketDetails[socket.id];
console.log(`[consume] socket ${socket.id} | callId ${callId} | rtpCapabilities: ${JSON.stringify(rtpCapabilities)}`);
if (typeof rtpCapabilities === 'string') rtpCapabilities = JSON.parse(rtpCapabilities);
console.log('[consume] callId', callId);
let canConsumeVideo, canConsumeAudio;
if (isInitiator(callId, socket.id)) {
canConsumeVideo = !!videoCalls[callId].receiverVideoProducer && !!videoCalls[callId].router.canConsume({
producerId: videoCalls[callId].receiverVideoProducer.id,
rtpCapabilities
});
canConsumeAudio = !!videoCalls[callId].receiverAudioProducer && !!videoCalls[callId].router.canConsume({
producerId: videoCalls[callId].receiverAudioProducer.id,
rtpCapabilities
});
} else {
canConsumeVideo = !!videoCalls[callId].initiatorVideoProducer && !!videoCalls[callId].router.canConsume({
producerId: videoCalls[callId].initiatorVideoProducer.id,
rtpCapabilities
});
canConsumeAudio = !!videoCalls[callId].initiatorAudioProducer && !!videoCalls[callId].router.canConsume({
producerId: videoCalls[callId].initiatorAudioProducer.id,
rtpCapabilities
});
}
console.log('[consume] canConsumeVideo', canConsumeVideo);
console.log('[consume] canConsumeAudio', canConsumeAudio);
if (canConsumeVideo && !canConsumeAudio) {
const videoParams = await consumeVideo(callId, socket.id, rtpCapabilities)
callback({ videoParams, audioParams: null });
} else if (canConsumeVideo && canConsumeAudio) {
const videoParams = await consumeVideo(callId, socket.id, rtpCapabilities)
const audioParams = await consumeAudio(callId, socket.id, rtpCapabilities)
callback({ videoParams, audioParams });
} else if (!canConsumeVideo && canConsumeAudio) {
const audioParams = await consumeAudio(callId, socket.id, rtpCapabilities)
const data = { videoParams: null, audioParams };
callback(data);
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} else {
console.log(`[consume] Can't consume | callId ${callId}`);
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callback(null);
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}
} catch (error) {
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console.log(`ERROR | consume | callId ${socketDetails[socket.id]} | ${error.message}`)
callback({ params: { error } });
}
});
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/*
- Event sent by the consumer after consuming to resume the pause
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- When consuming on consumerTransport, it is initially done with paused: true, here we will resume
- For the initiator we resume the initiatorConsumerAUDIO/VIDEO and for receiver the receiverConsumerAUDIO/VIDEO
*/
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socket.on('consumer-resume',() => {
try {
const callId = socketDetails[socket.id];
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console.log(`[consumer-resume] callId ${callId}`)
if (isInitiator(callId, socket.id)) {
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videoCalls[callId]?.initiatorConsumerVideo?.resume();
videoCalls[callId]?.initiatorConsumerAudio?.resume();
} else {
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videoCalls[callId]?.receiverConsumerVideo?.resume();
videoCalls[callId]?.receiverConsumerAudio?.resume();
}
} catch (error) {
console.log(`ERROR | consumer-resume | callId ${socketDetails[socket.id]} | ${error.message}`);
}
});
});
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const consumeVideo = async (callId, socketId, rtpCapabilities) => {
if(isInitiator(callId, socketId)) {
videoCalls[callId].initiatorConsumerVideo = await videoCalls[callId].initiatorConsumerTransport.consume({
producerId: videoCalls[callId].receiverVideoProducer.id,
rtpCapabilities,
paused: true,
});
// https://mediasoup.org/documentation/v3/mediasoup/api/#consumer-on-transportclose
videoCalls[callId].initiatorConsumerVideo.on('transportclose', () => {
const callId = socketDetails[socket.id];
console.log('transport close from consumer', callId);
closeCall(callId);
});
// https://mediasoup.org/documentation/v3/mediasoup/api/#consumer-on-producerclose
videoCalls[callId].initiatorConsumerVideo.on('producerclose', () => {
const callId = socketDetails[socket.id];
console.log('producer of consumer closed', callId);
closeCall(callId);
});
return {
id: videoCalls[callId].initiatorConsumerVideo.id,
producerId: videoCalls[callId].receiverVideoProducer.id,
kind: 'video',
rtpParameters: videoCalls[callId].initiatorConsumerVideo.rtpParameters,
}
} else {
videoCalls[callId].receiverConsumerVideo = await videoCalls[callId].receiverConsumerTransport.consume({
producerId: videoCalls[callId].initiatorVideoProducer.id,
rtpCapabilities,
paused: true,
});
videoCalls[callId].receiverConsumerVideo.on('transportclose', () => {
const callId = socketDetails[socket.id];
console.log('transport close from consumer', callId);
closeCall(callId);
});
videoCalls[callId].receiverConsumerVideo.on('producerclose', () => {
const callId = socketDetails[socket.id];
console.log('producer of consumer closed', callId);
closeCall(callId);
});
return {
id: videoCalls[callId].receiverConsumerVideo.id,
producerId: videoCalls[callId].initiatorVideoProducer.id,
kind: 'video',
rtpParameters: videoCalls[callId].receiverConsumerVideo.rtpParameters,
}
}
}
const consumeAudio = async (callId, socketId, rtpCapabilities) => {
if(isInitiator(callId, socketId)) {
videoCalls[callId].initiatorConsumerAudio = await videoCalls[callId].initiatorConsumerTransport.consume({
producerId: videoCalls[callId].receiverAudioProducer.id,
rtpCapabilities,
paused: true,
});
// https://mediasoup.org/documentation/v3/mediasoup/api/#consumer-on-transportclose
videoCalls[callId].initiatorConsumerAudio.on('transportclose', () => {
const callId = socketDetails[socket.id];
console.log('transport close from consumer', callId);
closeCall(callId);
});
// https://mediasoup.org/documentation/v3/mediasoup/api/#consumer-on-producerclose
videoCalls[callId].initiatorConsumerAudio.on('producerclose', () => {
const callId = socketDetails[socket.id];
console.log('producer of consumer closed', callId);
closeCall(callId);
});
return {
id: videoCalls[callId].initiatorConsumerAudio.id,
producerId: videoCalls[callId].receiverAudioProducer.id,
kind: 'audio',
rtpParameters: videoCalls[callId].initiatorConsumerAudio.rtpParameters,
}
} else {
videoCalls[callId].receiverConsumerAudio = await videoCalls[callId].receiverConsumerTransport.consume({
producerId: videoCalls[callId].initiatorAudioProducer.id,
rtpCapabilities,
paused: true,
});
videoCalls[callId].receiverConsumerAudio.on('transportclose', () => {
const callId = socketDetails[socket.id];
console.log('transport close from consumer', callId);
closeCall(callId);
});
videoCalls[callId].receiverConsumerAudio.on('producerclose', () => {
const callId = socketDetails[socket.id];
console.log('producer of consumer closed', callId);
closeCall(callId);
});
return {
id: videoCalls[callId].receiverConsumerAudio.id,
producerId: videoCalls[callId].initiatorAudioProducer.id,
kind: 'audio',
rtpParameters: videoCalls[callId].receiverConsumerAudio.rtpParameters,
}
}
}
const isInitiator = (callId, socketId) => {
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return (videoCalls[callId]?.initiatorSocket?.id === socketId);
}
/*
- Called from at event 'createWebRtcTransport' and assigned to the consumer or producer transport
- It will return parameters, these are required for the client to create the RecvTransport
from the client.
- If the client is producer(sender: true) then it will use parameters for device.createSendTransport(params)
- If the client is a consumer(sender: false) then it will use parameters for device.createRecvTransport(params)
*/
const createWebRtcTransportLayer = async (callId, callback) => {
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try {
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console.log('[createWebRtcTransportLayer] callId', callId);
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// https://mediasoup.org/documentation/v3/mediasoup/api/#WebRtcTransportOptions
const webRtcTransport_options = {
listenIps: [
{
ip: process.env.IP, // Listening IPv4 or IPv6.
announcedIp: process.env.ANNOUNCED_IP, // Announced IPv4 or IPv6 (useful when running mediasoup behind NAT with private IP).
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}
],
enableUdp: true,
enableTcp: true,
preferUdp: true,
};
// https://mediasoup.org/documentation/v3/mediasoup/api/#router-createWebRtcTransport
let transport = await videoCalls[callId].router.createWebRtcTransport(webRtcTransport_options)
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// Handler for when DTLS(Datagram Transport Layer Security) changes
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transport.on('dtlsstatechange', dtlsState => {
console.log(`transport | dtlsstatechange | calldId ${callId} | dtlsState ${dtlsState}`);
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if (dtlsState === 'closed') {
transport.close();
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}
});
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// Handler if the transport layer has closed (for various reasons)
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transport.on('close', () => {
console.log(`transport | closed | calldId ${callId}`);
});
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const params = {
id: transport.id,
iceParameters: transport.iceParameters,
iceCandidates: transport.iceCandidates,
dtlsParameters: transport.dtlsParameters,
};
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console.log('[createWebRtcTransportLayer] callback params', params);
// Send back to the client the params
callback({ params });
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// Set transport to producerTransport or consumerTransport
return transport;
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} catch (error) {
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console.log(`ERROR | createWebRtcTransportLayer | callId ${socketDetails[socket.id]} | ${error.message}`);
callback({ params: { error } });
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}
}