capi_connectivity.cpp 10 KB

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  1. /**
  2. * Copyright (c) 2020 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.h>
  19. #include <cstdio>
  20. #include <cstdlib>
  21. #include <cstring>
  22. #ifdef _WIN32
  23. #include <windows.h>
  24. static void sleep(unsigned int secs) { Sleep(secs * 1000); }
  25. #else
  26. #include <unistd.h> // for sleep
  27. #endif
  28. #define BUFFER_SIZE 4096
  29. typedef struct {
  30. rtcState state;
  31. rtcGatheringState gatheringState;
  32. rtcSignalingState signalingState;
  33. int pc;
  34. int dc;
  35. bool connected;
  36. } Peer;
  37. static Peer *peer1 = NULL;
  38. static Peer *peer2 = NULL;
  39. static void RTC_API descriptionCallback(int pc, const char *sdp, const char *type, void *ptr) {
  40. Peer *peer = (Peer *)ptr;
  41. printf("Description %d:\n%s\n", peer == peer1 ? 1 : 2, sdp);
  42. Peer *other = peer == peer1 ? peer2 : peer1;
  43. rtcSetRemoteDescription(other->pc, sdp, type);
  44. }
  45. static void RTC_API candidateCallback(int pc, const char *cand, const char *mid, void *ptr) {
  46. Peer *peer = (Peer *)ptr;
  47. printf("Candidate %d: %s\n", peer == peer1 ? 1 : 2, cand);
  48. Peer *other = peer == peer1 ? peer2 : peer1;
  49. rtcAddRemoteCandidate(other->pc, cand, mid);
  50. }
  51. static void RTC_API stateChangeCallback(int pc, rtcState state, void *ptr) {
  52. Peer *peer = (Peer *)ptr;
  53. peer->state = state;
  54. printf("State %d: %d\n", peer == peer1 ? 1 : 2, (int)state);
  55. }
  56. static void RTC_API gatheringStateCallback(int pc, rtcGatheringState state, void *ptr) {
  57. Peer *peer = (Peer *)ptr;
  58. peer->gatheringState = state;
  59. printf("Gathering state %d: %d\n", peer == peer1 ? 1 : 2, (int)state);
  60. }
  61. static void RTC_API signalingStateCallback(int pc, rtcSignalingState state, void *ptr) {
  62. Peer *peer = (Peer *)ptr;
  63. peer->signalingState = state;
  64. printf("Signaling state %d: %d\n", peer == peer1 ? 1 : 2, (int)state);
  65. }
  66. static void RTC_API openCallback(int id, void *ptr) {
  67. Peer *peer = (Peer *)ptr;
  68. peer->connected = true;
  69. printf("DataChannel %d: Open\n", peer == peer1 ? 1 : 2);
  70. if (!rtcIsOpen(id)) {
  71. fprintf(stderr, "rtcIsOpen failed\n");
  72. return;
  73. }
  74. if (rtcIsClosed(id)) {
  75. fprintf(stderr, "rtcIsClosed failed\n");
  76. return;
  77. }
  78. const char *message = peer == peer1 ? "Hello from 1" : "Hello from 2";
  79. rtcSendMessage(peer->dc, message, -1); // negative size indicates a null-terminated string
  80. }
  81. static void RTC_API closedCallback(int id, void *ptr) {
  82. Peer *peer = (Peer *)ptr;
  83. peer->connected = false;
  84. }
  85. static void RTC_API messageCallback(int id, const char *message, int size, void *ptr) {
  86. Peer *peer = (Peer *)ptr;
  87. if (size < 0) { // negative size indicates a null-terminated string
  88. printf("Message %d: %s\n", peer == peer1 ? 1 : 2, message);
  89. } else {
  90. printf("Message %d: [binary of size %d]\n", peer == peer1 ? 1 : 2, size);
  91. }
  92. }
  93. static void RTC_API dataChannelCallback(int pc, int dc, void *ptr) {
  94. Peer *peer = (Peer *)ptr;
  95. char label[256];
  96. if (rtcGetDataChannelLabel(dc, label, 256) < 0) {
  97. fprintf(stderr, "rtcGetDataChannelLabel failed\n");
  98. return;
  99. }
  100. char protocol[256];
  101. if (rtcGetDataChannelProtocol(dc, protocol, 256) < 0) {
  102. fprintf(stderr, "rtcGetDataChannelProtocol failed\n");
  103. return;
  104. }
  105. rtcReliability reliability;
  106. if (rtcGetDataChannelReliability(dc, &reliability) < 0) {
  107. fprintf(stderr, "rtcGetDataChannelReliability failed\n");
  108. return;
  109. }
  110. printf("DataChannel %d: Received with label \"%s\" and protocol \"%s\"\n",
  111. peer == peer1 ? 1 : 2, label, protocol);
  112. if (strcmp(label, "test") != 0) {
  113. fprintf(stderr, "Wrong DataChannel label\n");
  114. return;
  115. }
  116. if (strcmp(protocol, "protocol") != 0) {
  117. fprintf(stderr, "Wrong DataChannel protocol\n");
  118. return;
  119. }
  120. if (reliability.unordered == false) {
  121. fprintf(stderr, "Wrong DataChannel reliability\n");
  122. return;
  123. }
  124. rtcSetOpenCallback(dc, openCallback);
  125. rtcSetClosedCallback(dc, closedCallback);
  126. rtcSetMessageCallback(dc, messageCallback);
  127. peer->dc = dc;
  128. const char *message = peer == peer1 ? "Hello from 1" : "Hello from 2";
  129. rtcSendMessage(peer->dc, message, -1); // negative size indicates a null-terminated string
  130. }
  131. static Peer *createPeer(const rtcConfiguration *config) {
  132. Peer *peer = (Peer *)malloc(sizeof(Peer));
  133. if (!peer)
  134. return nullptr;
  135. memset(peer, 0, sizeof(Peer));
  136. // Create peer connection
  137. peer->pc = rtcCreatePeerConnection(config);
  138. rtcSetUserPointer(peer->pc, peer);
  139. rtcSetDataChannelCallback(peer->pc, dataChannelCallback);
  140. rtcSetLocalDescriptionCallback(peer->pc, descriptionCallback);
  141. rtcSetLocalCandidateCallback(peer->pc, candidateCallback);
  142. rtcSetStateChangeCallback(peer->pc, stateChangeCallback);
  143. rtcSetGatheringStateChangeCallback(peer->pc, gatheringStateCallback);
  144. rtcSetSignalingStateChangeCallback(peer->pc, signalingStateCallback);
  145. return peer;
  146. }
  147. static void deletePeer(Peer *peer) {
  148. if (peer) {
  149. if (peer->dc)
  150. rtcDeleteDataChannel(peer->dc);
  151. if (peer->pc)
  152. rtcDeletePeerConnection(peer->pc);
  153. free(peer);
  154. }
  155. }
  156. int test_capi_connectivity_main() {
  157. int attempts;
  158. rtcInitLogger(RTC_LOG_DEBUG, nullptr);
  159. if (rtcIsOpen(666)) {
  160. fprintf(stderr, "rtcIsOpen for invalid channel id failed\n");
  161. return -1;
  162. }
  163. if (rtcIsClosed(666)) {
  164. fprintf(stderr, "rtcIsOpen for invalid channel id failed\n");
  165. return -1;
  166. }
  167. // STUN server example (not necessary to connect locally)
  168. // Please do not use outside of libdatachannel tests
  169. const char *iceServers[1] = {"stun:stun.ageneau.net:3478"};
  170. // Create peer 1
  171. rtcConfiguration config1;
  172. memset(&config1, 0, sizeof(config1));
  173. config1.iceServers = iceServers;
  174. config1.iceServersCount = 1;
  175. // Custom MTU example
  176. config1.mtu = 1500;
  177. peer1 = createPeer(&config1);
  178. if (!peer1)
  179. goto error;
  180. // Create peer 2
  181. rtcConfiguration config2;
  182. memset(&config2, 0, sizeof(config2));
  183. // STUN server example (not necessary to connect locally)
  184. // Please do not use outside of libdatachannel tests
  185. config2.iceServers = iceServers;
  186. config2.iceServersCount = 1;
  187. // Custom MTU example
  188. config2.mtu = 1500;
  189. // Port range example
  190. config2.portRangeBegin = 5000;
  191. config2.portRangeEnd = 6000;
  192. peer2 = createPeer(&config2);
  193. if (!peer2)
  194. goto error;
  195. // Peer 1: Create data channel
  196. rtcDataChannelInit init;
  197. memset(&init, 0, sizeof(init));
  198. init.protocol = "protocol";
  199. init.reliability.unordered = true;
  200. peer1->dc = rtcCreateDataChannelEx(peer1->pc, "test", &init);
  201. rtcSetOpenCallback(peer1->dc, openCallback);
  202. rtcSetClosedCallback(peer1->dc, closedCallback);
  203. rtcSetMessageCallback(peer1->dc, messageCallback);
  204. attempts = 10;
  205. while ((!peer2->connected || !peer1->connected) && attempts--)
  206. sleep(1);
  207. if (peer1->state != RTC_CONNECTED || peer2->state != RTC_CONNECTED) {
  208. fprintf(stderr, "PeerConnection is not connected\n");
  209. goto error;
  210. }
  211. if (!peer1->connected || !peer2->connected) {
  212. fprintf(stderr, "DataChannel is not connected\n");
  213. goto error;
  214. }
  215. char buffer[BUFFER_SIZE];
  216. char buffer2[BUFFER_SIZE];
  217. if (rtcGetLocalDescriptionType(peer1->pc, buffer, BUFFER_SIZE) < 0) {
  218. fprintf(stderr, "rtcGetLocalDescriptionType failed\n");
  219. goto error;
  220. }
  221. printf("Local description type 1: %s\n", buffer);
  222. if (rtcGetLocalDescription(peer1->pc, buffer, BUFFER_SIZE) < 0) {
  223. fprintf(stderr, "rtcGetLocalDescription failed\n");
  224. goto error;
  225. }
  226. printf("Local description 1: %s\n", buffer);
  227. if (rtcGetRemoteDescriptionType(peer1->pc, buffer, BUFFER_SIZE) < 0) {
  228. fprintf(stderr, "rtcGetRemoteDescriptionType failed\n");
  229. goto error;
  230. }
  231. printf("Remote description type 1: %s\n", buffer);
  232. if (rtcGetRemoteDescription(peer1->pc, buffer, BUFFER_SIZE) < 0) {
  233. fprintf(stderr, "rtcGetRemoteDescription failed\n");
  234. goto error;
  235. }
  236. printf("Remote description 1: %s\n", buffer);
  237. if (rtcGetLocalDescriptionType(peer2->pc, buffer, BUFFER_SIZE) < 0) {
  238. fprintf(stderr, "rtcGetLocalDescriptionType failed\n");
  239. goto error;
  240. }
  241. printf("Local description type 2: %s\n", buffer);
  242. if (rtcGetLocalDescription(peer2->pc, buffer, BUFFER_SIZE) < 0) {
  243. fprintf(stderr, "rtcGetLocalDescription failed\n");
  244. goto error;
  245. }
  246. printf("Local description 2: %s\n", buffer);
  247. if (rtcGetRemoteDescriptionType(peer2->pc, buffer, BUFFER_SIZE) < 0) {
  248. fprintf(stderr, "rtcGetRemoteDescriptionType failed\n");
  249. goto error;
  250. }
  251. printf("Remote description type 2: %s\n", buffer);
  252. if (rtcGetRemoteDescription(peer2->pc, buffer, BUFFER_SIZE) < 0) {
  253. fprintf(stderr, "rtcGetRemoteDescription failed\n");
  254. goto error;
  255. }
  256. printf("Remote description 2: %s\n", buffer);
  257. if (rtcGetLocalAddress(peer1->pc, buffer, BUFFER_SIZE) < 0) {
  258. fprintf(stderr, "rtcGetLocalAddress failed\n");
  259. goto error;
  260. }
  261. printf("Local address 1: %s\n", buffer);
  262. if (rtcGetRemoteAddress(peer1->pc, buffer, BUFFER_SIZE) < 0) {
  263. fprintf(stderr, "rtcGetRemoteAddress failed\n");
  264. goto error;
  265. }
  266. printf("Remote address 1: %s\n", buffer);
  267. if (rtcGetLocalAddress(peer2->pc, buffer, BUFFER_SIZE) < 0) {
  268. fprintf(stderr, "rtcGetLocalAddress failed\n");
  269. goto error;
  270. }
  271. printf("Local address 2: %s\n", buffer);
  272. if (rtcGetRemoteAddress(peer2->pc, buffer, BUFFER_SIZE) < 0) {
  273. fprintf(stderr, "rtcGetRemoteAddress failed\n");
  274. goto error;
  275. }
  276. printf("Remote address 2: %s\n", buffer);
  277. if (rtcGetSelectedCandidatePair(peer1->pc, buffer, BUFFER_SIZE, buffer2, BUFFER_SIZE) < 0) {
  278. fprintf(stderr, "rtcGetSelectedCandidatePair failed\n");
  279. goto error;
  280. }
  281. printf("Local candidate 1: %s\n", buffer);
  282. printf("Remote candidate 1: %s\n", buffer2);
  283. if (rtcGetSelectedCandidatePair(peer2->pc, buffer, BUFFER_SIZE, buffer2, BUFFER_SIZE) < 0) {
  284. fprintf(stderr, "rtcGetSelectedCandidatePair failed\n");
  285. goto error;
  286. }
  287. printf("Local candidate 2: %s\n", buffer);
  288. printf("Remote candidate 2: %s\n", buffer2);
  289. deletePeer(peer1);
  290. sleep(1);
  291. deletePeer(peer2);
  292. sleep(1);
  293. printf("Success\n");
  294. return 0;
  295. error:
  296. deletePeer(peer1);
  297. deletePeer(peer2);
  298. return -1;
  299. }
  300. #include <stdexcept>
  301. void test_capi_connectivity() {
  302. if (test_capi_connectivity_main())
  303. throw std::runtime_error("Connection failed");
  304. }