266 lines
8.0 KiB
C++
266 lines
8.0 KiB
C++
/**
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* Copyright (c) 2019 Paul-Louis Ageneau
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*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at https://mozilla.org/MPL/2.0/.
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*/
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#include "rtc/rtc.hpp"
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#include <atomic>
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#include <chrono>
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#include <iostream>
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#include <memory>
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#include <thread>
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#define CUSTOM_MAX_MESSAGE_SIZE 1048576
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using namespace rtc;
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using namespace std;
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template <class T> weak_ptr<T> make_weak_ptr(shared_ptr<T> ptr) { return ptr; }
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void test_connectivity(bool signal_wrong_fingerprint) {
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InitLogger(LogLevel::Debug);
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Configuration config1;
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// STUN server example (not necessary to connect locally)
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config1.iceServers.emplace_back("stun:stun.l.google.com:19302");
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// Custom MTU example
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config1.mtu = 1500;
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// Custom max message size
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config1.maxMessageSize = CUSTOM_MAX_MESSAGE_SIZE;
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PeerConnection pc1(config1);
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Configuration config2;
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// STUN server example (not necessary to connect locally)
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config2.iceServers.emplace_back("stun:stun.l.google.com:19302");
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// Custom MTU example
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config2.mtu = 1500;
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// Custom max message size
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config2.maxMessageSize = CUSTOM_MAX_MESSAGE_SIZE;
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// Port range example
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config2.portRangeBegin = 5000;
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config2.portRangeEnd = 6000;
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PeerConnection pc2(config2);
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pc1.onLocalDescription([&pc2, signal_wrong_fingerprint](Description sdp) {
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cout << "Description 1: " << sdp << endl;
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if (signal_wrong_fingerprint) {
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auto f = sdp.fingerprint();
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if (f.has_value()) {
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auto& c = f.value().value[0];
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if (c == 'F' || c == 'f') c = '0'; else c++;
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sdp.setFingerprint(f.value());
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}
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}
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pc2.setRemoteDescription(string(sdp));
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});
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pc1.onLocalCandidate([&pc2](Candidate candidate) {
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cout << "Candidate 1: " << candidate << endl;
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pc2.addRemoteCandidate(string(candidate));
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});
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pc1.onStateChange([](PeerConnection::State state) { cout << "State 1: " << state << endl; });
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pc1.onIceStateChange([](PeerConnection::IceState state) {
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cout << "ICE state 1: " << state << endl;
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});
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pc1.onGatheringStateChange([](PeerConnection::GatheringState state) {
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cout << "Gathering state 1: " << state << endl;
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});
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pc1.onSignalingStateChange([](PeerConnection::SignalingState state) {
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cout << "Signaling state 1: " << state << endl;
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});
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pc2.onLocalDescription([&pc1](Description sdp) {
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cout << "Description 2: " << sdp << endl;
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pc1.setRemoteDescription(string(sdp));
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});
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pc2.onLocalCandidate([&pc1](Candidate candidate) {
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cout << "Candidate 2: " << candidate << endl;
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pc1.addRemoteCandidate(string(candidate));
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});
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pc2.onStateChange([](PeerConnection::State state) { cout << "State 2: " << state << endl; });
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pc2.onIceStateChange([](PeerConnection::IceState state) {
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cout << "ICE state 2: " << state << endl;
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});
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pc2.onGatheringStateChange([](PeerConnection::GatheringState state) {
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cout << "Gathering state 2: " << state << endl;
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});
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pc2.onSignalingStateChange([](PeerConnection::SignalingState state) {
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cout << "Signaling state 2: " << state << endl;
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});
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shared_ptr<DataChannel> dc2;
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pc2.onDataChannel([&dc2](shared_ptr<DataChannel> dc) {
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cout << "DataChannel 2: Received with label \"" << dc->label() << "\"" << endl;
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dc->onOpen([wdc = make_weak_ptr(dc)]() {
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if (auto dc = wdc.lock()) {
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cout << "DataChannel 2: Open" << endl;
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dc->send("Hello from 2");
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}
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});
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dc->onClosed([]() { cout << "DataChannel 2: Closed" << endl; });
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dc->onMessage([](variant<binary, string> message) {
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if (holds_alternative<string>(message)) {
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cout << "Message 2: " << get<string>(message) << endl;
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}
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});
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std::atomic_store(&dc2, dc);
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});
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auto dc1 = pc1.createDataChannel("test");
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if (dc1->id().has_value())
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throw std::runtime_error("DataChannel stream id assigned before connection");
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dc1->onOpen([wdc1 = make_weak_ptr(dc1)]() {
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if (auto dc1 = wdc1.lock()) {
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cout << "DataChannel 1: Open" << endl;
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dc1->send("Hello from 1");
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}
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});
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dc1->onClosed([]() { cout << "DataChannel 1: Closed" << endl; });
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dc1->onMessage([](const variant<binary, string> &message) {
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if (holds_alternative<string>(message)) {
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cout << "Message 1: " << get<string>(message) << endl;
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}
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});
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// Wait a bit
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int attempts = 10;
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shared_ptr<DataChannel> adc2;
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while ((!(adc2 = std::atomic_load(&dc2)) || !adc2->isOpen() || !dc1->isOpen()) && attempts--)
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this_thread::sleep_for(1s);
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if (pc1.state() != PeerConnection::State::Connected ||
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pc2.state() != PeerConnection::State::Connected)
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throw runtime_error("PeerConnection is not connected");
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if ((pc1.iceState() != PeerConnection::IceState::Connected &&
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pc1.iceState() != PeerConnection::IceState::Completed) ||
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(pc2.iceState() != PeerConnection::IceState::Connected &&
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pc2.iceState() != PeerConnection::IceState::Completed))
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throw runtime_error("ICE is not connected");
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if (!adc2 || !adc2->isOpen() || !dc1->isOpen())
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throw runtime_error("DataChannel is not open");
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if (adc2->label() != "test")
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throw runtime_error("Wrong DataChannel label");
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if (dc1->maxMessageSize() != CUSTOM_MAX_MESSAGE_SIZE ||
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dc2->maxMessageSize() != CUSTOM_MAX_MESSAGE_SIZE)
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throw runtime_error("DataChannel max message size is incorrect");
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if (!dc1->id().has_value())
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throw runtime_error("DataChannel stream id is not assigned");
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if (dc1->id().value() != adc2->id().value())
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throw runtime_error("DataChannel stream ids do not match");
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if (auto addr = pc1.localAddress())
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cout << "Local address 1: " << *addr << endl;
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if (auto addr = pc1.remoteAddress())
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cout << "Remote address 1: " << *addr << endl;
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if (auto addr = pc2.localAddress())
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cout << "Local address 2: " << *addr << endl;
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if (auto addr = pc2.remoteAddress())
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cout << "Remote address 2: " << *addr << endl;
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Candidate local, remote;
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if (pc1.getSelectedCandidatePair(&local, &remote)) {
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cout << "Local candidate 1: " << local << endl;
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cout << "Remote candidate 1: " << remote << endl;
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}
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if (pc2.getSelectedCandidatePair(&local, &remote)) {
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cout << "Local candidate 2: " << local << endl;
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cout << "Remote candidate 2: " << remote << endl;
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}
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// Try to open a second data channel with another label
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shared_ptr<DataChannel> second2;
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pc2.onDataChannel([&second2](shared_ptr<DataChannel> dc) {
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cout << "Second DataChannel 2: Received with label \"" << dc->label() << "\"" << endl;
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dc->onOpen([wdc = make_weak_ptr(dc)]() {
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if (auto dc = wdc.lock())
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dc->send("Second hello from 2");
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});
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dc->onMessage([](variant<binary, string> message) {
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if (holds_alternative<string>(message)) {
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cout << "Second Message 2: " << get<string>(message) << endl;
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}
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});
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std::atomic_store(&second2, dc);
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});
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auto second1 = pc1.createDataChannel("second");
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if (!second1->id().has_value())
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throw std::runtime_error("Second DataChannel stream id is not assigned");
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second1->onOpen([wsecond1 = make_weak_ptr(second1)]() {
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if (auto second1 = wsecond1.lock()) {
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cout << "Second DataChannel 1: Open" << endl;
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second1->send("Second hello from 1");
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}
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});
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second1->onClosed([]() { cout << "Second DataChannel 1: Closed" << endl; });
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second1->onMessage([](const variant<binary, string> &message) {
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if (holds_alternative<string>(message)) {
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cout << "Second Message 1: " << get<string>(message) << endl;
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}
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});
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// Wait a bit
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attempts = 10;
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shared_ptr<DataChannel> asecond2;
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while (
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(!(asecond2 = std::atomic_load(&second2)) || !asecond2->isOpen() || !second1->isOpen()) &&
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attempts--)
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this_thread::sleep_for(1s);
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if (!asecond2 || !asecond2->isOpen() || !second1->isOpen())
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throw runtime_error("Second DataChannel is not open");
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if (asecond2->label() != "second")
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throw runtime_error("Wrong second DataChannel label");
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if (!second2->id().has_value() || !asecond2->id().has_value())
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throw runtime_error("Second DataChannel stream id is not assigned");
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if (second2->id().value() != asecond2->id().value())
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throw runtime_error("Second DataChannel stream ids do not match");
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// Delay close of peer 2 to check closing works properly
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pc1.close();
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this_thread::sleep_for(1s);
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pc2.close();
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this_thread::sleep_for(1s);
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cout << "Success" << endl;
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}
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