whip-output.cpp 19 KB

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  1. #include "whip-output.h"
  2. #include "whip-utils.h"
  3. /*
  4. * Sets the maximum size for a video fragment. Effective range is
  5. * 576-1470, with a lower value equating to more packets created,
  6. * but also better network compatability.
  7. */
  8. static uint16_t MAX_VIDEO_FRAGMENT_SIZE = 1200;
  9. const int signaling_media_id_length = 16;
  10. const char signaling_media_id_valid_char[] = "0123456789"
  11. "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
  12. "abcdefghijklmnopqrstuvwxyz";
  13. const std::string user_agent = generate_user_agent();
  14. const char *audio_mid = "0";
  15. const uint8_t audio_payload_type = 111;
  16. const char *video_mid = "1";
  17. const uint8_t video_payload_type = 96;
  18. WHIPOutput::WHIPOutput(obs_data_t *, obs_output_t *output)
  19. : output(output),
  20. endpoint_url(),
  21. bearer_token(),
  22. resource_url(),
  23. running(false),
  24. start_stop_mutex(),
  25. start_stop_thread(),
  26. base_ssrc(generate_random_u32()),
  27. peer_connection(nullptr),
  28. audio_track(nullptr),
  29. video_track(nullptr),
  30. total_bytes_sent(0),
  31. connect_time_ms(0),
  32. start_time_ns(0),
  33. last_audio_timestamp(0),
  34. last_video_timestamp(0)
  35. {
  36. }
  37. WHIPOutput::~WHIPOutput()
  38. {
  39. Stop();
  40. std::lock_guard<std::mutex> l(start_stop_mutex);
  41. if (start_stop_thread.joinable())
  42. start_stop_thread.join();
  43. }
  44. bool WHIPOutput::Start()
  45. {
  46. std::lock_guard<std::mutex> l(start_stop_mutex);
  47. if (!obs_output_can_begin_data_capture(output, 0))
  48. return false;
  49. if (!obs_output_initialize_encoders(output, 0))
  50. return false;
  51. if (start_stop_thread.joinable())
  52. start_stop_thread.join();
  53. start_stop_thread = std::thread(&WHIPOutput::StartThread, this);
  54. return true;
  55. }
  56. void WHIPOutput::Stop(bool signal)
  57. {
  58. std::lock_guard<std::mutex> l(start_stop_mutex);
  59. if (start_stop_thread.joinable())
  60. start_stop_thread.join();
  61. start_stop_thread = std::thread(&WHIPOutput::StopThread, this, signal);
  62. }
  63. void WHIPOutput::Data(struct encoder_packet *packet)
  64. {
  65. if (!packet) {
  66. Stop(false);
  67. obs_output_signal_stop(output, OBS_OUTPUT_ENCODE_ERROR);
  68. return;
  69. }
  70. if (audio_track && packet->type == OBS_ENCODER_AUDIO) {
  71. int64_t duration = packet->dts_usec - last_audio_timestamp;
  72. Send(packet->data, packet->size, duration, audio_track,
  73. audio_sr_reporter);
  74. last_audio_timestamp = packet->dts_usec;
  75. } else if (video_track && packet->type == OBS_ENCODER_VIDEO) {
  76. int64_t duration = packet->dts_usec - last_video_timestamp;
  77. Send(packet->data, packet->size, duration, video_track,
  78. video_sr_reporter);
  79. last_video_timestamp = packet->dts_usec;
  80. }
  81. }
  82. void WHIPOutput::ConfigureAudioTrack(std::string media_stream_id,
  83. std::string cname)
  84. {
  85. if (!obs_output_get_audio_encoder(output, 0)) {
  86. do_log(LOG_DEBUG,
  87. "Not configuring audio track: Audio encoder not assigned");
  88. return;
  89. }
  90. auto media_stream_track_id = std::string(media_stream_id + "-audio");
  91. uint32_t ssrc = base_ssrc;
  92. rtc::Description::Audio audio_description(
  93. audio_mid, rtc::Description::Direction::SendOnly);
  94. audio_description.addOpusCodec(audio_payload_type);
  95. audio_description.addSSRC(ssrc, cname, media_stream_id,
  96. media_stream_track_id);
  97. audio_track = peer_connection->addTrack(audio_description);
  98. auto rtp_config = std::make_shared<rtc::RtpPacketizationConfig>(
  99. ssrc, cname, audio_payload_type,
  100. rtc::OpusRtpPacketizer::DefaultClockRate);
  101. auto packetizer = std::make_shared<rtc::OpusRtpPacketizer>(rtp_config);
  102. audio_sr_reporter = std::make_shared<rtc::RtcpSrReporter>(rtp_config);
  103. auto nack_responder = std::make_shared<rtc::RtcpNackResponder>();
  104. packetizer->addToChain(audio_sr_reporter);
  105. packetizer->addToChain(nack_responder);
  106. audio_track->setMediaHandler(packetizer);
  107. }
  108. void WHIPOutput::ConfigureVideoTrack(std::string media_stream_id,
  109. std::string cname)
  110. {
  111. if (!obs_output_get_video_encoder(output)) {
  112. do_log(LOG_DEBUG,
  113. "Not configuring video track: Video encoder not assigned");
  114. return;
  115. }
  116. auto media_stream_track_id = std::string(media_stream_id + "-video");
  117. std::shared_ptr<rtc::RtpPacketizer> packetizer;
  118. // More predictable SSRC values between audio and video
  119. uint32_t ssrc = base_ssrc + 1;
  120. rtc::Description::Video video_description(
  121. video_mid, rtc::Description::Direction::SendOnly);
  122. video_description.addSSRC(ssrc, cname, media_stream_id,
  123. media_stream_track_id);
  124. auto rtp_config = std::make_shared<rtc::RtpPacketizationConfig>(
  125. ssrc, cname, video_payload_type,
  126. rtc::H264RtpPacketizer::defaultClockRate);
  127. const obs_encoder_t *encoder = obs_output_get_video_encoder2(output, 0);
  128. if (!encoder)
  129. return;
  130. const char *codec = obs_encoder_get_codec(encoder);
  131. if (strcmp("h264", codec) == 0) {
  132. video_description.addH264Codec(video_payload_type);
  133. packetizer = std::make_shared<rtc::H264RtpPacketizer>(
  134. rtc::H264RtpPacketizer::Separator::StartSequence,
  135. rtp_config, MAX_VIDEO_FRAGMENT_SIZE);
  136. #if ENABLE_HEVC
  137. } else if (strcmp("hevc", codec) == 0) {
  138. video_description.addH265Codec(video_payload_type);
  139. packetizer = std::make_shared<rtc::H265RtpPacketizer>(
  140. rtc::H265RtpPacketizer::Separator::StartSequence,
  141. rtp_config, MAX_VIDEO_FRAGMENT_SIZE);
  142. #endif
  143. } else if (strcmp("av1", codec) == 0) {
  144. video_description.addAV1Codec(video_payload_type);
  145. packetizer = std::make_shared<rtc::AV1RtpPacketizer>(
  146. rtc::AV1RtpPacketizer::Packetization::TemporalUnit,
  147. rtp_config, MAX_VIDEO_FRAGMENT_SIZE);
  148. } else {
  149. do_log(LOG_ERROR, "Video codec not supported: %s", codec);
  150. return;
  151. }
  152. video_sr_reporter = std::make_shared<rtc::RtcpSrReporter>(rtp_config);
  153. packetizer->addToChain(video_sr_reporter);
  154. packetizer->addToChain(std::make_shared<rtc::RtcpNackResponder>());
  155. video_track = peer_connection->addTrack(video_description);
  156. video_track->setMediaHandler(packetizer);
  157. }
  158. /**
  159. * @brief Initialize encoders and store connect info provided by the service.
  160. *
  161. * @return bool
  162. */
  163. bool WHIPOutput::Init()
  164. {
  165. if (!obs_output_can_begin_data_capture(output, 0))
  166. return false;
  167. if (!obs_output_initialize_encoders(output, 0))
  168. return false;
  169. obs_service_t *service = obs_output_get_service(output);
  170. if (!service) {
  171. obs_output_signal_stop(output, OBS_OUTPUT_ERROR);
  172. return false;
  173. }
  174. endpoint_url = obs_service_get_connect_info(
  175. service, OBS_SERVICE_CONNECT_INFO_SERVER_URL);
  176. if (endpoint_url.empty()) {
  177. obs_output_signal_stop(output, OBS_OUTPUT_BAD_PATH);
  178. return false;
  179. }
  180. bearer_token = obs_service_get_connect_info(
  181. service, OBS_SERVICE_CONNECT_INFO_BEARER_TOKEN);
  182. return true;
  183. }
  184. /**
  185. * @brief Set up the PeerConnection and media tracks.
  186. *
  187. * @return bool
  188. */
  189. bool WHIPOutput::Setup()
  190. {
  191. peer_connection = std::make_shared<rtc::PeerConnection>();
  192. peer_connection->onStateChange([this](rtc::PeerConnection::State state) {
  193. switch (state) {
  194. case rtc::PeerConnection::State::New:
  195. do_log(LOG_INFO, "PeerConnection state is now: New");
  196. break;
  197. case rtc::PeerConnection::State::Connecting:
  198. do_log(LOG_INFO,
  199. "PeerConnection state is now: Connecting");
  200. start_time_ns = os_gettime_ns();
  201. break;
  202. case rtc::PeerConnection::State::Connected:
  203. do_log(LOG_INFO,
  204. "PeerConnection state is now: Connected");
  205. connect_time_ms =
  206. (int)((os_gettime_ns() - start_time_ns) /
  207. 1000000.0);
  208. do_log(LOG_INFO, "Connect time: %dms",
  209. connect_time_ms.load());
  210. break;
  211. case rtc::PeerConnection::State::Disconnected:
  212. do_log(LOG_INFO,
  213. "PeerConnection state is now: Disconnected");
  214. Stop(false);
  215. obs_output_signal_stop(output, OBS_OUTPUT_DISCONNECTED);
  216. break;
  217. case rtc::PeerConnection::State::Failed:
  218. do_log(LOG_INFO, "PeerConnection state is now: Failed");
  219. Stop(false);
  220. obs_output_signal_stop(output, OBS_OUTPUT_ERROR);
  221. break;
  222. case rtc::PeerConnection::State::Closed:
  223. do_log(LOG_INFO, "PeerConnection state is now: Closed");
  224. break;
  225. }
  226. });
  227. std::string media_stream_id, cname;
  228. media_stream_id.reserve(signaling_media_id_length);
  229. cname.reserve(signaling_media_id_length);
  230. for (int i = 0; i < signaling_media_id_length; ++i) {
  231. media_stream_id += signaling_media_id_valid_char
  232. [rand() % (sizeof(signaling_media_id_valid_char) - 1)];
  233. cname += signaling_media_id_valid_char
  234. [rand() % (sizeof(signaling_media_id_valid_char) - 1)];
  235. }
  236. ConfigureAudioTrack(media_stream_id, cname);
  237. ConfigureVideoTrack(media_stream_id, cname);
  238. peer_connection->setLocalDescription();
  239. return true;
  240. }
  241. bool WHIPOutput::Connect()
  242. {
  243. struct curl_slist *headers = NULL;
  244. headers = curl_slist_append(headers, "Content-Type: application/sdp");
  245. if (!bearer_token.empty()) {
  246. auto bearer_token_header =
  247. std::string("Authorization: Bearer ") + bearer_token;
  248. headers =
  249. curl_slist_append(headers, bearer_token_header.c_str());
  250. }
  251. std::string read_buffer;
  252. std::vector<std::string> location_headers;
  253. auto offer_sdp =
  254. std::string(peer_connection->localDescription().value());
  255. #ifdef DEBUG_SDP
  256. do_log(LOG_DEBUG, "Offer SDP:\n%s", offer_sdp.c_str());
  257. #endif
  258. // Add user-agent to our requests
  259. headers = curl_slist_append(headers, user_agent.c_str());
  260. char error_buffer[CURL_ERROR_SIZE] = {};
  261. CURL *c = curl_easy_init();
  262. curl_easy_setopt(c, CURLOPT_WRITEFUNCTION, curl_writefunction);
  263. curl_easy_setopt(c, CURLOPT_WRITEDATA, (void *)&read_buffer);
  264. curl_easy_setopt(c, CURLOPT_HEADERFUNCTION,
  265. curl_header_location_function);
  266. curl_easy_setopt(c, CURLOPT_HEADERDATA, (void *)&location_headers);
  267. curl_easy_setopt(c, CURLOPT_HTTPHEADER, headers);
  268. curl_easy_setopt(c, CURLOPT_URL, endpoint_url.c_str());
  269. curl_easy_setopt(c, CURLOPT_POST, 1L);
  270. curl_easy_setopt(c, CURLOPT_COPYPOSTFIELDS, offer_sdp.c_str());
  271. curl_easy_setopt(c, CURLOPT_TIMEOUT, 8L);
  272. curl_easy_setopt(c, CURLOPT_FOLLOWLOCATION, 1L);
  273. curl_easy_setopt(c, CURLOPT_UNRESTRICTED_AUTH, 1L);
  274. curl_easy_setopt(c, CURLOPT_ERRORBUFFER, error_buffer);
  275. auto cleanup = [&]() {
  276. curl_easy_cleanup(c);
  277. curl_slist_free_all(headers);
  278. };
  279. CURLcode res = curl_easy_perform(c);
  280. if (res != CURLE_OK) {
  281. do_log(LOG_ERROR, "Connect failed: %s",
  282. error_buffer[0] ? error_buffer
  283. : curl_easy_strerror(res));
  284. cleanup();
  285. obs_output_signal_stop(output, OBS_OUTPUT_CONNECT_FAILED);
  286. return false;
  287. }
  288. long response_code;
  289. curl_easy_getinfo(c, CURLINFO_RESPONSE_CODE, &response_code);
  290. if (response_code != 201) {
  291. do_log(LOG_ERROR,
  292. "Connect failed: HTTP endpoint returned response code %ld",
  293. response_code);
  294. cleanup();
  295. obs_output_signal_stop(output, OBS_OUTPUT_INVALID_STREAM);
  296. return false;
  297. }
  298. if (read_buffer.empty()) {
  299. do_log(LOG_ERROR,
  300. "Connect failed: No data returned from HTTP endpoint request");
  301. cleanup();
  302. obs_output_signal_stop(output, OBS_OUTPUT_CONNECT_FAILED);
  303. return false;
  304. }
  305. long redirect_count = 0;
  306. curl_easy_getinfo(c, CURLINFO_REDIRECT_COUNT, &redirect_count);
  307. if (location_headers.size() < static_cast<size_t>(redirect_count) + 1) {
  308. do_log(LOG_ERROR,
  309. "WHIP server did not provide a resource URL via the Location header");
  310. cleanup();
  311. obs_output_signal_stop(output, OBS_OUTPUT_CONNECT_FAILED);
  312. return false;
  313. }
  314. CURLU *url_builder = curl_url();
  315. auto last_location_header = location_headers.back();
  316. // If Location header doesn't start with `http` it is a relative URL.
  317. // Construct a absolute URL using the host of the effective URL
  318. if (last_location_header.find("http") != 0) {
  319. char *effective_url = nullptr;
  320. curl_easy_getinfo(c, CURLINFO_EFFECTIVE_URL, &effective_url);
  321. if (effective_url == nullptr) {
  322. do_log(LOG_ERROR, "Failed to build Resource URL");
  323. cleanup();
  324. obs_output_signal_stop(output,
  325. OBS_OUTPUT_CONNECT_FAILED);
  326. return false;
  327. }
  328. curl_url_set(url_builder, CURLUPART_URL, effective_url, 0);
  329. curl_url_set(url_builder, CURLUPART_PATH,
  330. last_location_header.c_str(), 0);
  331. curl_url_set(url_builder, CURLUPART_QUERY, "", 0);
  332. } else {
  333. curl_url_set(url_builder, CURLUPART_URL,
  334. last_location_header.c_str(), 0);
  335. }
  336. char *url = nullptr;
  337. CURLUcode rc = curl_url_get(url_builder, CURLUPART_URL, &url,
  338. CURLU_NO_DEFAULT_PORT);
  339. if (rc) {
  340. do_log(LOG_ERROR,
  341. "WHIP server provided a invalid resource URL via the Location header");
  342. cleanup();
  343. obs_output_signal_stop(output, OBS_OUTPUT_CONNECT_FAILED);
  344. return false;
  345. }
  346. resource_url = url;
  347. curl_free(url);
  348. do_log(LOG_DEBUG, "WHIP Resource URL is: %s", resource_url.c_str());
  349. curl_url_cleanup(url_builder);
  350. #ifdef DEBUG_SDP
  351. do_log(LOG_DEBUG, "Answer SDP:\n%s", read_buffer.c_str());
  352. #endif
  353. auto response = std::string(read_buffer);
  354. response.erase(0, response.find("v=0"));
  355. rtc::Description answer(response, "answer");
  356. try {
  357. peer_connection->setRemoteDescription(answer);
  358. } catch (const std::invalid_argument &err) {
  359. do_log(LOG_ERROR, "WHIP server responded with invalid SDP: %s",
  360. err.what());
  361. cleanup();
  362. struct dstr error_message;
  363. dstr_init_copy(&error_message,
  364. obs_module_text("Error.InvalidSDP"));
  365. dstr_replace(&error_message, "%1", err.what());
  366. obs_output_set_last_error(output, error_message.array);
  367. dstr_free(&error_message);
  368. obs_output_signal_stop(output, OBS_OUTPUT_CONNECT_FAILED);
  369. return false;
  370. } catch (const std::exception &err) {
  371. do_log(LOG_ERROR, "Failed to set remote description: %s",
  372. err.what());
  373. cleanup();
  374. struct dstr error_message;
  375. dstr_init_copy(&error_message,
  376. obs_module_text("Error.NoRemoteDescription"));
  377. dstr_replace(&error_message, "%1", err.what());
  378. obs_output_set_last_error(output, error_message.array);
  379. dstr_free(&error_message);
  380. obs_output_signal_stop(output, OBS_OUTPUT_CONNECT_FAILED);
  381. return false;
  382. }
  383. cleanup();
  384. return true;
  385. }
  386. void WHIPOutput::StartThread()
  387. {
  388. if (!Init())
  389. return;
  390. if (!Setup())
  391. return;
  392. if (!Connect()) {
  393. peer_connection->close();
  394. peer_connection = nullptr;
  395. audio_track = nullptr;
  396. video_track = nullptr;
  397. return;
  398. }
  399. obs_output_begin_data_capture(output, 0);
  400. running = true;
  401. }
  402. void WHIPOutput::SendDelete()
  403. {
  404. if (resource_url.empty()) {
  405. do_log(LOG_DEBUG,
  406. "No resource URL available, not sending DELETE");
  407. return;
  408. }
  409. struct curl_slist *headers = NULL;
  410. if (!bearer_token.empty()) {
  411. auto bearer_token_header =
  412. std::string("Authorization: Bearer ") + bearer_token;
  413. headers =
  414. curl_slist_append(headers, bearer_token_header.c_str());
  415. }
  416. // Add user-agent to our requests
  417. headers = curl_slist_append(headers, user_agent.c_str());
  418. char error_buffer[CURL_ERROR_SIZE] = {};
  419. CURL *c = curl_easy_init();
  420. curl_easy_setopt(c, CURLOPT_HTTPHEADER, headers);
  421. curl_easy_setopt(c, CURLOPT_URL, resource_url.c_str());
  422. curl_easy_setopt(c, CURLOPT_CUSTOMREQUEST, "DELETE");
  423. curl_easy_setopt(c, CURLOPT_TIMEOUT, 8L);
  424. curl_easy_setopt(c, CURLOPT_ERRORBUFFER, error_buffer);
  425. auto cleanup = [&]() {
  426. curl_easy_cleanup(c);
  427. curl_slist_free_all(headers);
  428. };
  429. CURLcode res = curl_easy_perform(c);
  430. if (res != CURLE_OK) {
  431. do_log(LOG_WARNING,
  432. "DELETE request for resource URL failed: %s",
  433. error_buffer[0] ? error_buffer
  434. : curl_easy_strerror(res));
  435. cleanup();
  436. return;
  437. }
  438. long response_code;
  439. curl_easy_getinfo(c, CURLINFO_RESPONSE_CODE, &response_code);
  440. if (response_code != 200) {
  441. do_log(LOG_WARNING,
  442. "DELETE request for resource URL failed. HTTP Code: %ld",
  443. response_code);
  444. cleanup();
  445. return;
  446. }
  447. do_log(LOG_DEBUG,
  448. "Successfully performed DELETE request for resource URL");
  449. resource_url.clear();
  450. cleanup();
  451. }
  452. void WHIPOutput::StopThread(bool signal)
  453. {
  454. if (peer_connection != nullptr) {
  455. peer_connection->close();
  456. peer_connection = nullptr;
  457. audio_track = nullptr;
  458. video_track = nullptr;
  459. }
  460. SendDelete();
  461. /*
  462. * "signal" exists because we have to preserve the "running" state
  463. * across reconnect attempts. If we don't emit a signal if
  464. * something calls obs_output_stop() and it's reconnecting, you'll
  465. * desync the UI, as the output will be "stopped" and not
  466. * "reconnecting", but the "stop" signal will have never been
  467. * emitted.
  468. */
  469. if (running && signal) {
  470. obs_output_signal_stop(output, OBS_OUTPUT_SUCCESS);
  471. running = false;
  472. }
  473. total_bytes_sent = 0;
  474. connect_time_ms = 0;
  475. start_time_ns = 0;
  476. last_audio_timestamp = 0;
  477. last_video_timestamp = 0;
  478. }
  479. void WHIPOutput::Send(void *data, uintptr_t size, uint64_t duration,
  480. std::shared_ptr<rtc::Track> track,
  481. std::shared_ptr<rtc::RtcpSrReporter> rtcp_sr_reporter)
  482. {
  483. if (track == nullptr || !track->isOpen())
  484. return;
  485. std::vector<rtc::byte> sample{(rtc::byte *)data,
  486. (rtc::byte *)data + size};
  487. auto rtp_config = rtcp_sr_reporter->rtpConfig;
  488. // Sample time is in microseconds, we need to convert it to seconds
  489. auto elapsed_seconds = double(duration) / (1000.0 * 1000.0);
  490. // Get elapsed time in clock rate
  491. uint32_t elapsed_timestamp =
  492. rtp_config->secondsToTimestamp(elapsed_seconds);
  493. // Set new timestamp
  494. rtp_config->timestamp = rtp_config->timestamp + elapsed_timestamp;
  495. // get elapsed time in clock rate from last RTCP sender report
  496. auto report_elapsed_timestamp =
  497. rtp_config->timestamp -
  498. rtcp_sr_reporter->lastReportedTimestamp();
  499. // check if last report was at least 1 second ago
  500. if (rtp_config->timestampToSeconds(report_elapsed_timestamp) > 1)
  501. rtcp_sr_reporter->setNeedsToReport();
  502. try {
  503. track->send(sample);
  504. total_bytes_sent += sample.size();
  505. } catch (const std::exception &e) {
  506. do_log(LOG_ERROR, "error: %s ", e.what());
  507. }
  508. }
  509. void register_whip_output()
  510. {
  511. const uint32_t base_flags = OBS_OUTPUT_ENCODED | OBS_OUTPUT_SERVICE;
  512. struct obs_output_info info = {};
  513. info.id = "whip_output";
  514. info.flags = OBS_OUTPUT_AV | base_flags;
  515. info.get_name = [](void *) -> const char * {
  516. return obs_module_text("Output.Name");
  517. };
  518. info.create = [](obs_data_t *settings, obs_output_t *output) -> void * {
  519. return new WHIPOutput(settings, output);
  520. };
  521. info.destroy = [](void *priv_data) {
  522. delete static_cast<WHIPOutput *>(priv_data);
  523. };
  524. info.start = [](void *priv_data) -> bool {
  525. return static_cast<WHIPOutput *>(priv_data)->Start();
  526. };
  527. info.stop = [](void *priv_data, uint64_t) {
  528. static_cast<WHIPOutput *>(priv_data)->Stop();
  529. };
  530. info.encoded_packet = [](void *priv_data,
  531. struct encoder_packet *packet) {
  532. static_cast<WHIPOutput *>(priv_data)->Data(packet);
  533. };
  534. info.get_defaults = [](obs_data_t *) {
  535. };
  536. info.get_properties = [](void *) -> obs_properties_t * {
  537. return obs_properties_create();
  538. };
  539. info.get_total_bytes = [](void *priv_data) -> uint64_t {
  540. return (uint64_t) static_cast<WHIPOutput *>(priv_data)
  541. ->GetTotalBytes();
  542. };
  543. info.get_connect_time_ms = [](void *priv_data) -> int {
  544. return static_cast<WHIPOutput *>(priv_data)->GetConnectTime();
  545. };
  546. info.encoded_video_codecs = "h264;av1";
  547. info.encoded_audio_codecs = "opus";
  548. info.protocols = "WHIP";
  549. obs_register_output(&info);
  550. info.id = "whip_output_video";
  551. info.flags = OBS_OUTPUT_VIDEO | base_flags;
  552. obs_register_output(&info);
  553. info.id = "whip_output_audio";
  554. info.flags = OBS_OUTPUT_AUDIO | base_flags;
  555. obs_register_output(&info);
  556. }