turn_connectivity.cpp 7.5 KB

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  1. /**
  2. * Copyright (c) 2019 Paul-Louis Ageneau
  3. *
  4. * This library is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU Lesser General Public
  6. * License as published by the Free Software Foundation; either
  7. * version 2.1 of the License, or (at your option) any later version.
  8. *
  9. * This library is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  12. * Lesser General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU Lesser General Public
  15. * License along with this library; if not, write to the Free Software
  16. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  17. */
  18. #include "rtc/rtc.hpp"
  19. #include <atomic>
  20. #include <chrono>
  21. #include <iostream>
  22. #include <memory>
  23. #include <thread>
  24. using namespace rtc;
  25. using namespace std;
  26. template <class T> weak_ptr<T> make_weak_ptr(shared_ptr<T> ptr) { return ptr; }
  27. void test_turn_connectivity() {
  28. InitLogger(LogLevel::Debug);
  29. Configuration config1;
  30. config1.iceTransportPolicy = TransportPolicy::Relay; // force relay
  31. // TURN server example (use your own server in production)
  32. config1.iceServers.emplace_back(
  33. "turn:openrelayproject:[email protected]:80");
  34. PeerConnection pc1(config1);
  35. Configuration config2;
  36. // STUN server example (use your own server in production)
  37. config2.iceServers.emplace_back("stun:openrelay.metered.ca:80");
  38. PeerConnection pc2(config2);
  39. pc1.onStateChange([](PeerConnection::State state) { cout << "State 1: " << state << endl; });
  40. pc1.onGatheringStateChange([&pc1, &pc2](PeerConnection::GatheringState state) {
  41. cout << "Gathering state 1: " << state << endl;
  42. if (state == PeerConnection::GatheringState::Complete) {
  43. auto sdp = pc1.localDescription().value();
  44. cout << "Description 1: " << sdp << endl;
  45. pc2.setRemoteDescription(string(sdp));
  46. }
  47. });
  48. pc1.onSignalingStateChange([](PeerConnection::SignalingState state) {
  49. cout << "Signaling state 1: " << state << endl;
  50. });
  51. pc2.onLocalDescription([&pc1](Description sdp) {
  52. cout << "Description 2: " << sdp << endl;
  53. pc1.setRemoteDescription(string(sdp));
  54. });
  55. pc2.onLocalCandidate([&pc1](Candidate candidate) {
  56. // Filter server reflexive candidates
  57. if (candidate.type() != rtc::Candidate::Type::ServerReflexive)
  58. return;
  59. cout << "Candidate 2: " << candidate << endl;
  60. pc1.addRemoteCandidate(string(candidate));
  61. });
  62. pc2.onStateChange([](PeerConnection::State state) { cout << "State 2: " << state << endl; });
  63. pc2.onGatheringStateChange([](PeerConnection::GatheringState state) {
  64. cout << "Gathering state 2: " << state << endl;
  65. });
  66. pc2.onSignalingStateChange([](PeerConnection::SignalingState state) {
  67. cout << "Signaling state 2: " << state << endl;
  68. });
  69. shared_ptr<DataChannel> dc2;
  70. pc2.onDataChannel([&dc2](shared_ptr<DataChannel> dc) {
  71. cout << "DataChannel 2: Received with label \"" << dc->label() << "\"" << endl;
  72. if (dc->label() != "test") {
  73. cerr << "Wrong DataChannel label" << endl;
  74. return;
  75. }
  76. dc->onOpen([wdc = make_weak_ptr(dc)]() {
  77. if (auto dc = wdc.lock()) {
  78. cout << "DataChannel 2: Open" << endl;
  79. dc->send("Hello from 2");
  80. }
  81. });
  82. dc->onMessage([](variant<binary, string> message) {
  83. if (holds_alternative<string>(message)) {
  84. cout << "Message 2: " << get<string>(message) << endl;
  85. }
  86. });
  87. std::atomic_store(&dc2, dc);
  88. });
  89. auto dc1 = pc1.createDataChannel("test");
  90. dc1->onOpen([wdc1 = make_weak_ptr(dc1)]() {
  91. auto dc1 = wdc1.lock();
  92. if (!dc1)
  93. return;
  94. cout << "DataChannel 1: Open" << endl;
  95. dc1->send("Hello from 1");
  96. });
  97. dc1->onClosed([]() { cout << "DataChannel 1: Closed" << endl; });
  98. dc1->onMessage([](const variant<binary, string> &message) {
  99. if (holds_alternative<string>(message)) {
  100. cout << "Message 1: " << get<string>(message) << endl;
  101. }
  102. });
  103. // Wait a bit
  104. int attempts = 10;
  105. shared_ptr<DataChannel> adc2;
  106. while ((!(adc2 = std::atomic_load(&dc2)) || !adc2->isOpen() || !dc1->isOpen()) && attempts--)
  107. this_thread::sleep_for(1s);
  108. if (pc1.state() != PeerConnection::State::Connected &&
  109. pc2.state() != PeerConnection::State::Connected)
  110. throw runtime_error("PeerConnection is not connected");
  111. if (!adc2 || !adc2->isOpen() || !dc1->isOpen())
  112. throw runtime_error("DataChannel is not open");
  113. if (auto addr = pc1.localAddress())
  114. cout << "Local address 1: " << *addr << endl;
  115. if (auto addr = pc1.remoteAddress())
  116. cout << "Remote address 1: " << *addr << endl;
  117. if (auto addr = pc2.localAddress())
  118. cout << "Local address 2: " << *addr << endl;
  119. if (auto addr = pc2.remoteAddress())
  120. cout << "Remote address 2: " << *addr << endl;
  121. Candidate local, remote;
  122. if (!pc1.getSelectedCandidatePair(&local, &remote))
  123. throw runtime_error("getSelectedCandidatePair failed");
  124. cout << "Local candidate 1: " << local << endl;
  125. cout << "Remote candidate 1: " << remote << endl;
  126. if (local.type() != Candidate::Type::Relayed)
  127. throw runtime_error("Connection is not relayed as expected");
  128. // Try to open a second data channel with another label
  129. shared_ptr<DataChannel> second2;
  130. pc2.onDataChannel([&second2](shared_ptr<DataChannel> dc) {
  131. cout << "Second DataChannel 2: Received with label \"" << dc->label() << "\"" << endl;
  132. if (dc->label() != "second") {
  133. cerr << "Wrong second DataChannel label" << endl;
  134. return;
  135. }
  136. dc->onOpen([wdc = make_weak_ptr(dc)]() {
  137. if (auto dc = wdc.lock())
  138. dc->send("Second hello from 2");
  139. });
  140. dc->onMessage([](variant<binary, string> message) {
  141. if (holds_alternative<string>(message)) {
  142. cout << "Second Message 2: " << get<string>(message) << endl;
  143. }
  144. });
  145. std::atomic_store(&second2, dc);
  146. });
  147. auto second1 = pc1.createDataChannel("second");
  148. second1->onOpen([wsecond1 = make_weak_ptr(second1)]() {
  149. auto second1 = wsecond1.lock();
  150. if (!second1)
  151. return;
  152. cout << "Second DataChannel 1: Open" << endl;
  153. second1->send("Second hello from 1");
  154. });
  155. second1->onClosed([]() { cout << "Second DataChannel 1: Closed" << endl; });
  156. second1->onMessage([](const variant<binary, string> &message) {
  157. if (holds_alternative<string>(message)) {
  158. cout << "Second Message 1: " << get<string>(message) << endl;
  159. }
  160. });
  161. // Wait a bit
  162. attempts = 10;
  163. shared_ptr<DataChannel> asecond2;
  164. while (
  165. (!(asecond2 = std::atomic_load(&second2)) || !asecond2->isOpen() || !second1->isOpen()) &&
  166. attempts--)
  167. this_thread::sleep_for(1s);
  168. if (!asecond2 || !asecond2->isOpen() || !second1->isOpen())
  169. throw runtime_error("Second DataChannel is not open");
  170. // Try to open a negotiated channel
  171. DataChannelInit init;
  172. init.negotiated = true;
  173. init.id = 42;
  174. auto negotiated1 = pc1.createDataChannel("negotiated", init);
  175. auto negotiated2 = pc2.createDataChannel("negoctated", init);
  176. if (!negotiated1->isOpen() || !negotiated2->isOpen())
  177. throw runtime_error("Negotiated DataChannel is not open");
  178. std::atomic<bool> received = false;
  179. negotiated2->onMessage([&received](const variant<binary, string> &message) {
  180. if (holds_alternative<string>(message)) {
  181. cout << "Second Message 2: " << get<string>(message) << endl;
  182. received = true;
  183. }
  184. });
  185. negotiated1->send("Hello from negotiated channel");
  186. // Wait a bit
  187. attempts = 5;
  188. while (!received && attempts--)
  189. this_thread::sleep_for(1s);
  190. if (!received)
  191. throw runtime_error("Negotiated DataChannel failed");
  192. // Delay close of peer 2 to check closing works properly
  193. pc1.close();
  194. this_thread::sleep_for(1s);
  195. pc2.close();
  196. this_thread::sleep_for(1s);
  197. cout << "Success" << endl;
  198. }