mirror of
https://github.com/mii443/libdatachannel.git
synced 2025-08-22 23:25:33 +00:00
193 lines
5.4 KiB
C++
193 lines
5.4 KiB
C++
/**
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* Copyright (c) 2019 Paul-Louis Ageneau
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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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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using namespace rtc;
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using namespace std;
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using namespace chrono_literals;
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using chrono::duration_cast;
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using chrono::milliseconds;
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using chrono::steady_clock;
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template <class T> weak_ptr<T> make_weak_ptr(shared_ptr<T> ptr) { return ptr; }
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size_t benchmark(milliseconds duration) {
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rtc::InitLogger(LogLevel::Warning);
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rtc::Preload();
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Configuration config1;
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// config1.iceServers.emplace_back("stun:stun.l.google.com:19302");
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auto pc1 = std::make_shared<PeerConnection>(config1);
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Configuration config2;
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// config2.iceServers.emplace_back("stun:stun.l.google.com:19302");
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auto pc2 = std::make_shared<PeerConnection>(config2);
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pc1->onLocalDescription([wpc2 = make_weak_ptr(pc2)](const Description &sdp) {
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auto pc2 = wpc2.lock();
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if (!pc2)
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return;
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cout << "Description 1: " << sdp << endl;
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pc2->setRemoteDescription(sdp);
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});
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pc1->onLocalCandidate([wpc2 = make_weak_ptr(pc2)](const Candidate &candidate) {
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auto pc2 = wpc2.lock();
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if (!pc2)
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return;
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cout << "Candidate 1: " << candidate << endl;
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pc2->addRemoteCandidate(candidate);
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});
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pc1->onStateChange([](PeerConnection::State state) { cout << "State 1: " << state << endl; });
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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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pc2->onLocalDescription([wpc1 = make_weak_ptr(pc1)](const Description &sdp) {
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auto pc1 = wpc1.lock();
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if (!pc1)
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return;
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cout << "Description 2: " << sdp << endl;
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pc1->setRemoteDescription(sdp);
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});
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pc2->onLocalCandidate([wpc1 = make_weak_ptr(pc1)](const Candidate &candidate) {
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auto pc1 = wpc1.lock();
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if (!pc1)
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return;
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cout << "Candidate 2: " << candidate << endl;
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pc1->addRemoteCandidate(candidate);
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});
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pc2->onStateChange([](PeerConnection::State state) { cout << "State 2: " << state << endl; });
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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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const size_t messageSize = 65535;
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binary messageData(messageSize);
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fill(messageData.begin(), messageData.end(), byte(0xFF));
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atomic<size_t> receivedSize = 0;
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steady_clock::time_point startTime, openTime, receivedTime, endTime;
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shared_ptr<DataChannel> dc2;
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pc2->onDataChannel(
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[&dc2, &receivedSize, &receivedTime](shared_ptr<DataChannel> dc) {
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dc->onMessage([&receivedTime, &receivedSize](const variant<binary, string> &message) {
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if (holds_alternative<binary>(message)) {
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const auto &bin = get<binary>(message);
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if (receivedSize == 0)
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receivedTime = steady_clock::now();
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receivedSize += bin.size();
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}
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});
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dc->onClosed([]() { cout << "DataChannel closed." << endl; });
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std::atomic_store(&dc2, dc);
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});
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startTime = steady_clock::now();
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auto dc1 = pc1->createDataChannel("benchmark");
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dc1->onOpen([wdc1 = make_weak_ptr(dc1), &messageData, &openTime]() {
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auto dc1 = wdc1.lock();
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if (!dc1)
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return;
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openTime = steady_clock::now();
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cout << "DataChannel open, sending data..." << endl;
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while (dc1->bufferedAmount() == 0) {
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dc1->send(messageData);
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}
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// When sent data is buffered in the DataChannel,
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// wait for onBufferedAmountLow callback to continue
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});
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dc1->onBufferedAmountLow([wdc1 = make_weak_ptr(dc1), &messageData]() {
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auto dc1 = wdc1.lock();
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if (!dc1)
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return;
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// Continue sending
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while (dc1->bufferedAmount() == 0) {
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dc1->send(messageData);
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}
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});
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const int steps = 10;
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const auto stepDuration = duration / 10;
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for (int i = 0; i < steps; ++i) {
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this_thread::sleep_for(stepDuration);
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cout << "Received: " << receivedSize.load() / 1000 << " KB" << endl;
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}
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dc1->close();
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endTime = steady_clock::now();
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auto connectDuration = duration_cast<milliseconds>(openTime - startTime);
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auto transferDuration = duration_cast<milliseconds>(endTime - receivedTime);
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cout << "Test duration: " << duration.count() << " ms" << endl;
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cout << "Connect duration: " << connectDuration.count() << " ms" << endl;
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size_t received = receivedSize.load();
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size_t goodput = transferDuration.count() > 0 ? received / transferDuration.count() : 0;
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cout << "Goodput: " << goodput * 0.001 << " MB/s"
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<< " (" << goodput * 0.001 * 8 << " Mbit/s)" << endl;
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pc1->close();
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pc2->close();
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this_thread::sleep_for(1s);
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rtc::Cleanup();
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return goodput;
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}
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#ifdef BENCHMARK_MAIN
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int main(int argc, char **argv) {
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try {
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size_t goodput = benchmark(30s);
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if (goodput == 0)
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throw runtime_error("No data received");
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return 0;
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} catch (const std::exception &e) {
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cerr << "Benchmark failed: " << e.what() << endl;
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return -1;
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}
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}
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#endif
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