window-basic-auto-config-test.cpp 30 KB

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  1. #include <chrono>
  2. #include <QFormLayout>
  3. #include <obs.hpp>
  4. #include <util/platform.h>
  5. #include <graphics/vec4.h>
  6. #include <graphics/graphics.h>
  7. #include <graphics/math-extra.h>
  8. #include "window-basic-auto-config.hpp"
  9. #include "window-basic-main.hpp"
  10. #include "qt-wrappers.hpp"
  11. #include "obs-app.hpp"
  12. #include "ui_AutoConfigTestPage.h"
  13. #define wiz reinterpret_cast<AutoConfig*>(wizard())
  14. using namespace std;
  15. /* ------------------------------------------------------------------------- */
  16. class TestMode {
  17. obs_video_info ovi;
  18. OBSSource source[6];
  19. static void render_rand(void *, uint32_t cx, uint32_t cy)
  20. {
  21. gs_effect_t *solid = obs_get_base_effect(OBS_EFFECT_SOLID);
  22. gs_eparam_t *randomvals[3] = {
  23. gs_effect_get_param_by_name(solid, "randomvals1"),
  24. gs_effect_get_param_by_name(solid, "randomvals2"),
  25. gs_effect_get_param_by_name(solid, "randomvals3")
  26. };
  27. struct vec4 r;
  28. for (int i = 0; i < 3; i++) {
  29. vec4_set(&r,
  30. rand_float(true) * 100.0f,
  31. rand_float(true) * 100.0f,
  32. rand_float(true) * 50000.0f + 10000.0f,
  33. 0.0f);
  34. gs_effect_set_vec4(randomvals[i], &r);
  35. }
  36. while (gs_effect_loop(solid, "Random"))
  37. gs_draw_sprite(nullptr, 0, cx, cy);
  38. }
  39. public:
  40. inline TestMode()
  41. {
  42. obs_get_video_info(&ovi);
  43. obs_add_main_render_callback(render_rand, this);
  44. for (uint32_t i = 0; i < 6; i++) {
  45. source[i] = obs_get_output_source(i);
  46. obs_source_release(source[i]);
  47. obs_set_output_source(i, nullptr);
  48. }
  49. }
  50. inline ~TestMode()
  51. {
  52. for (uint32_t i = 0; i < 6; i++)
  53. obs_set_output_source(i, source[i]);
  54. obs_remove_main_render_callback(render_rand, this);
  55. obs_reset_video(&ovi);
  56. }
  57. inline void SetVideo(int cx, int cy, int fps_num, int fps_den)
  58. {
  59. obs_video_info newOVI = ovi;
  60. newOVI.output_width = (uint32_t)cx;
  61. newOVI.output_height = (uint32_t)cy;
  62. newOVI.fps_num = (uint32_t)fps_num;
  63. newOVI.fps_den = (uint32_t)fps_den;
  64. obs_reset_video(&newOVI);
  65. }
  66. };
  67. /* ------------------------------------------------------------------------- */
  68. #define TEST_STR(x) "Basic.AutoConfig.TestPage." x
  69. #define SUBTITLE_TESTING TEST_STR("Subtitle.Testing")
  70. #define SUBTITLE_COMPLETE TEST_STR("Subtitle.Complete")
  71. #define TEST_BW TEST_STR("TestingBandwidth")
  72. #define TEST_BW_CONNECTING TEST_STR("TestingBandwidth.Connecting")
  73. #define TEST_BW_CONNECT_FAIL TEST_STR("TestingBandwidth.ConnectFailed")
  74. #define TEST_BW_SERVER TEST_STR("TestingBandwidth.Server")
  75. #define TEST_RES TEST_STR("TestingRes")
  76. #define TEST_RES_VAL TEST_STR("TestingRes.Resolution")
  77. #define TEST_RES_FAIL TEST_STR("TestingRes.Fail")
  78. #define TEST_SE TEST_STR("TestingStreamEncoder")
  79. #define TEST_RE TEST_STR("TestingRecordingEncoder")
  80. #define TEST_RESULT_SE TEST_STR("Result.StreamingEncoder")
  81. #define TEST_RESULT_RE TEST_STR("Result.RecordingEncoder")
  82. void AutoConfigTestPage::StartBandwidthStage()
  83. {
  84. ui->progressLabel->setText(QTStr(TEST_BW));
  85. testThread = std::thread([this] () {TestBandwidthThread();});
  86. }
  87. void AutoConfigTestPage::StartStreamEncoderStage()
  88. {
  89. ui->progressLabel->setText(QTStr(TEST_SE));
  90. testThread = std::thread([this] () {TestStreamEncoderThread();});
  91. }
  92. void AutoConfigTestPage::StartRecordingEncoderStage()
  93. {
  94. ui->progressLabel->setText(QTStr(TEST_RE));
  95. testThread = std::thread([this] () {TestRecordingEncoderThread();});
  96. }
  97. void AutoConfigTestPage::GetServers(std::vector<ServerInfo> &servers)
  98. {
  99. OBSData settings = obs_data_create();
  100. obs_data_release(settings);
  101. obs_data_set_string(settings, "service", wiz->serviceName.c_str());
  102. obs_properties_t *ppts = obs_get_service_properties("rtmp_common");
  103. obs_property_t *p = obs_properties_get(ppts, "service");
  104. obs_property_modified(p, settings);
  105. p = obs_properties_get(ppts, "server");
  106. size_t count = obs_property_list_item_count(p);
  107. servers.reserve(count);
  108. for (size_t i = 0; i < count; i++) {
  109. const char *name = obs_property_list_item_name(p, i);
  110. const char *server = obs_property_list_item_string(p, i);
  111. if (wiz->CanTestServer(name)) {
  112. ServerInfo info(name, server);
  113. servers.push_back(info);
  114. }
  115. }
  116. obs_properties_destroy(ppts);
  117. }
  118. static inline void string_depad_key(string &key)
  119. {
  120. while (!key.empty()) {
  121. char ch = key.back();
  122. if (ch == ' ' || ch == '\t' || ch == '\n' || ch == '\r')
  123. key.pop_back();
  124. else
  125. break;
  126. }
  127. }
  128. void AutoConfigTestPage::TestBandwidthThread()
  129. {
  130. bool connected = false;
  131. bool stopped = false;
  132. TestMode testMode;
  133. testMode.SetVideo(128, 128, 60, 1);
  134. QMetaObject::invokeMethod(this, "Progress", Q_ARG(int, 0));
  135. /*
  136. * create encoders
  137. * create output
  138. * test for 10 seconds
  139. */
  140. QMetaObject::invokeMethod(this, "UpdateMessage",
  141. Q_ARG(QString, QStringLiteral("")));
  142. /* -----------------------------------*/
  143. /* create obs objects */
  144. const char *serverType = wiz->customServer
  145. ? "rtmp_custom"
  146. : "rtmp_common";
  147. OBSEncoder vencoder = obs_video_encoder_create("obs_x264",
  148. "test_x264", nullptr, nullptr);
  149. OBSEncoder aencoder = obs_audio_encoder_create("ffmpeg_aac",
  150. "test_aac", nullptr, 0, nullptr);
  151. OBSService service = obs_service_create(serverType,
  152. "test_service", nullptr, nullptr);
  153. OBSOutput output = obs_output_create("rtmp_output",
  154. "test_stream", nullptr, nullptr);
  155. obs_output_release(output);
  156. obs_encoder_release(vencoder);
  157. obs_encoder_release(aencoder);
  158. obs_service_release(service);
  159. /* -----------------------------------*/
  160. /* configure settings */
  161. // service: "service", "server", "key"
  162. // vencoder: "bitrate", "rate_control",
  163. // obs_service_apply_encoder_settings
  164. // aencoder: "bitrate"
  165. // output: "bind_ip" via main config -> "Output", "BindIP"
  166. // obs_output_set_service
  167. OBSData service_settings = obs_data_create();
  168. OBSData vencoder_settings = obs_data_create();
  169. OBSData aencoder_settings = obs_data_create();
  170. OBSData output_settings = obs_data_create();
  171. obs_data_release(service_settings);
  172. obs_data_release(vencoder_settings);
  173. obs_data_release(aencoder_settings);
  174. obs_data_release(output_settings);
  175. std::string key = wiz->key;
  176. if (wiz->service == AutoConfig::Service::Twitch) {
  177. string_depad_key(key);
  178. key += "?bandwidthtest";
  179. }
  180. obs_data_set_string(service_settings, "service",
  181. wiz->serviceName.c_str());
  182. obs_data_set_string(service_settings, "key", key.c_str());
  183. obs_data_set_int(vencoder_settings, "bitrate", wiz->startingBitrate);
  184. obs_data_set_string(vencoder_settings, "rate_control", "CBR");
  185. obs_data_set_string(vencoder_settings, "preset", "veryfast");
  186. obs_data_set_int(vencoder_settings, "keyint_sec", 2);
  187. obs_data_set_int(aencoder_settings, "bitrate", 32);
  188. OBSBasic *main = reinterpret_cast<OBSBasic*>(App()->GetMainWindow());
  189. const char *bind_ip = config_get_string(main->Config(), "Output",
  190. "BindIP");
  191. obs_data_set_string(output_settings, "bind_ip", bind_ip);
  192. /* -----------------------------------*/
  193. /* determine which servers to test */
  194. std::vector<ServerInfo> servers;
  195. if (wiz->customServer)
  196. servers.emplace_back(wiz->server.c_str(), wiz->server.c_str());
  197. else
  198. GetServers(servers);
  199. /* just use the first server if it only has one alternate server */
  200. if (servers.size() < 3)
  201. servers.resize(1);
  202. /* -----------------------------------*/
  203. /* apply settings */
  204. obs_service_update(service, service_settings);
  205. obs_service_apply_encoder_settings(service,
  206. vencoder_settings, aencoder_settings);
  207. obs_encoder_update(vencoder, vencoder_settings);
  208. obs_encoder_update(aencoder, aencoder_settings);
  209. obs_output_update(output, output_settings);
  210. /* -----------------------------------*/
  211. /* connect encoders/services/outputs */
  212. obs_encoder_set_video(vencoder, obs_get_video());
  213. obs_encoder_set_audio(aencoder, obs_get_audio());
  214. obs_output_set_video_encoder(output, vencoder);
  215. obs_output_set_audio_encoder(output, aencoder, 0);
  216. obs_output_set_service(output, service);
  217. /* -----------------------------------*/
  218. /* connect signals */
  219. auto on_started = [&] ()
  220. {
  221. unique_lock<mutex> lock(m);
  222. connected = true;
  223. stopped = false;
  224. cv.notify_one();
  225. };
  226. auto on_stopped = [&] ()
  227. {
  228. unique_lock<mutex> lock(m);
  229. connected = false;
  230. stopped = true;
  231. cv.notify_one();
  232. };
  233. using on_started_t = decltype(on_started);
  234. using on_stopped_t = decltype(on_stopped);
  235. auto pre_on_started = [] (void *data, calldata_t *)
  236. {
  237. on_started_t &on_started =
  238. *reinterpret_cast<on_started_t*>(data);
  239. on_started();
  240. };
  241. auto pre_on_stopped = [] (void *data, calldata_t *)
  242. {
  243. on_stopped_t &on_stopped =
  244. *reinterpret_cast<on_stopped_t*>(data);
  245. on_stopped();
  246. };
  247. signal_handler *sh = obs_output_get_signal_handler(output);
  248. signal_handler_connect(sh, "start", pre_on_started, &on_started);
  249. signal_handler_connect(sh, "stop", pre_on_stopped, &on_stopped);
  250. /* -----------------------------------*/
  251. /* test servers */
  252. bool success = false;
  253. for (size_t i = 0; i < servers.size(); i++) {
  254. auto &server = servers[i];
  255. connected = false;
  256. stopped = false;
  257. int per = int((i + 1) * 100 / servers.size());
  258. QMetaObject::invokeMethod(this, "Progress", Q_ARG(int, per));
  259. QMetaObject::invokeMethod(this, "UpdateMessage",
  260. Q_ARG(QString, QTStr(TEST_BW_CONNECTING)
  261. .arg(server.name.c_str())));
  262. obs_data_set_string(service_settings, "server",
  263. server.address.c_str());
  264. obs_service_update(service, service_settings);
  265. if (!obs_output_start(output))
  266. continue;
  267. unique_lock<mutex> ul(m);
  268. if (cancel) {
  269. ul.unlock();
  270. obs_output_force_stop(output);
  271. return;
  272. }
  273. if (!stopped && !connected)
  274. cv.wait(ul);
  275. if (cancel) {
  276. ul.unlock();
  277. obs_output_force_stop(output);
  278. return;
  279. }
  280. if (!connected)
  281. continue;
  282. QMetaObject::invokeMethod(this, "UpdateMessage",
  283. Q_ARG(QString, QTStr(TEST_BW_SERVER)
  284. .arg(server.name.c_str())));
  285. /* ignore first 2.5 seconds due to possible buffering skewing
  286. * the result */
  287. cv.wait_for(ul, chrono::milliseconds(2500));
  288. if (stopped)
  289. continue;
  290. if (cancel) {
  291. ul.unlock();
  292. obs_output_force_stop(output);
  293. return;
  294. }
  295. /* continue test */
  296. int start_bytes = (int)obs_output_get_total_bytes(output);
  297. uint64_t t_start = os_gettime_ns();
  298. cv.wait_for(ul, chrono::seconds(10));
  299. if (stopped)
  300. continue;
  301. if (cancel) {
  302. ul.unlock();
  303. obs_output_force_stop(output);
  304. return;
  305. }
  306. obs_output_stop(output);
  307. cv.wait(ul);
  308. uint64_t total_time = os_gettime_ns() - t_start;
  309. int total_bytes = (int)obs_output_get_total_bytes(output) -
  310. start_bytes;
  311. uint64_t bitrate = (uint64_t)total_bytes * 8
  312. * 1000000000 / total_time / 1000;
  313. if (obs_output_get_frames_dropped(output) ||
  314. (int)bitrate < (wiz->startingBitrate * 75 / 100)) {
  315. server.bitrate = (int)bitrate * 70 / 100;
  316. } else {
  317. server.bitrate = wiz->startingBitrate;
  318. }
  319. server.ms = obs_output_get_connect_time_ms(output);
  320. success = true;
  321. }
  322. if (!success) {
  323. QMetaObject::invokeMethod(this, "Failure",
  324. Q_ARG(QString, QTStr(TEST_BW_CONNECT_FAIL)));
  325. return;
  326. }
  327. int bestBitrate = 0;
  328. int bestMS = 0x7FFFFFFF;
  329. string bestServer;
  330. string bestServerName;
  331. for (auto &server : servers) {
  332. bool close = abs(server.bitrate - bestBitrate) < 400;
  333. if ((!close && server.bitrate > bestBitrate) ||
  334. (close && server.ms < bestMS)) {
  335. bestServer = server.address;
  336. bestServerName = server.name;
  337. bestBitrate = server.bitrate;
  338. bestMS = server.ms;
  339. }
  340. }
  341. wiz->server = bestServer;
  342. wiz->serverName = bestServerName;
  343. wiz->idealBitrate = bestBitrate;
  344. QMetaObject::invokeMethod(this, "NextStage");
  345. }
  346. /* this is used to estimate the lower bitrate limit for a given
  347. * resolution/fps. yes, it is a totally arbitrary equation that gets
  348. * the closest to the expected values */
  349. static long double EstimateBitrateVal(int cx, int cy, int fps_num, int fps_den)
  350. {
  351. long fps = (long double)fps_num / (long double)fps_den;
  352. long double areaVal = pow((long double)(cx * cy), 0.85l);
  353. return areaVal * sqrt(pow(fps, 1.1l));
  354. }
  355. static long double EstimateMinBitrate(int cx, int cy, int fps_num, int fps_den)
  356. {
  357. long double val = EstimateBitrateVal(1920, 1080, 60, 1) / 5800.0l;
  358. return EstimateBitrateVal(cx, cy, fps_num, fps_den) / val;
  359. }
  360. static long double EstimateUpperBitrate(int cx, int cy, int fps_num, int fps_den)
  361. {
  362. long double val = EstimateBitrateVal(1280, 720, 30, 1) / 3000.0l;
  363. return EstimateBitrateVal(cx, cy, fps_num, fps_den) / val;
  364. }
  365. struct Result {
  366. int cx;
  367. int cy;
  368. int fps_num;
  369. int fps_den;
  370. inline Result(int cx_, int cy_, int fps_num_, int fps_den_)
  371. : cx(cx_), cy(cy_), fps_num(fps_num_), fps_den(fps_den_)
  372. {
  373. }
  374. };
  375. static void CalcBaseRes(int &baseCX, int &baseCY)
  376. {
  377. const int maxBaseArea = 1920 * 1200;
  378. const int clipResArea = 1920 * 1080;
  379. /* if base resolution unusually high, recalculate to a more reasonable
  380. * value to start the downscaling at, based upon 1920x1080's area.
  381. *
  382. * for 16:9 resolutions this will always change the starting value to
  383. * 1920x1080 */
  384. if ((baseCX * baseCY) > maxBaseArea) {
  385. long double xyAspect =
  386. (long double)baseCX / (long double)baseCY;
  387. baseCY = (int)sqrt((long double)clipResArea / xyAspect);
  388. baseCX = (int)((long double)baseCY * xyAspect);
  389. }
  390. }
  391. bool AutoConfigTestPage::TestSoftwareEncoding()
  392. {
  393. TestMode testMode;
  394. QMetaObject::invokeMethod(this, "UpdateMessage",
  395. Q_ARG(QString, QStringLiteral("")));
  396. /* -----------------------------------*/
  397. /* create obs objects */
  398. OBSEncoder vencoder = obs_video_encoder_create("obs_x264",
  399. "test_x264", nullptr, nullptr);
  400. OBSEncoder aencoder = obs_audio_encoder_create("ffmpeg_aac",
  401. "test_aac", nullptr, 0, nullptr);
  402. OBSOutput output = obs_output_create("null_output",
  403. "null", nullptr, nullptr);
  404. obs_output_release(output);
  405. obs_encoder_release(vencoder);
  406. obs_encoder_release(aencoder);
  407. /* -----------------------------------*/
  408. /* configure settings */
  409. OBSData aencoder_settings = obs_data_create();
  410. OBSData vencoder_settings = obs_data_create();
  411. obs_data_release(aencoder_settings);
  412. obs_data_release(vencoder_settings);
  413. obs_data_set_int(aencoder_settings, "bitrate", 32);
  414. if (wiz->type != AutoConfig::Type::Recording) {
  415. obs_data_set_int(vencoder_settings, "keyint_sec", 2);
  416. obs_data_set_int(vencoder_settings, "bitrate",
  417. wiz->idealBitrate);
  418. obs_data_set_string(vencoder_settings, "rate_control", "CBR");
  419. obs_data_set_string(vencoder_settings, "profile", "main");
  420. obs_data_set_string(vencoder_settings, "preset", "veryfast");
  421. } else {
  422. obs_data_set_int(vencoder_settings, "crf", 20);
  423. obs_data_set_string(vencoder_settings, "rate_control", "CRF");
  424. obs_data_set_string(vencoder_settings, "profile", "high");
  425. obs_data_set_string(vencoder_settings, "preset", "veryfast");
  426. }
  427. /* -----------------------------------*/
  428. /* apply settings */
  429. obs_encoder_update(vencoder, vencoder_settings);
  430. obs_encoder_update(aencoder, aencoder_settings);
  431. /* -----------------------------------*/
  432. /* connect encoders/services/outputs */
  433. obs_output_set_video_encoder(output, vencoder);
  434. obs_output_set_audio_encoder(output, aencoder, 0);
  435. /* -----------------------------------*/
  436. /* connect signals */
  437. auto on_stopped = [&] ()
  438. {
  439. unique_lock<mutex> lock(m);
  440. cv.notify_one();
  441. };
  442. using on_stopped_t = decltype(on_stopped);
  443. auto pre_on_stopped = [] (void *data, calldata_t *)
  444. {
  445. on_stopped_t &on_stopped =
  446. *reinterpret_cast<on_stopped_t*>(data);
  447. on_stopped();
  448. };
  449. signal_handler *sh = obs_output_get_signal_handler(output);
  450. signal_handler_connect(sh, "deactivate", pre_on_stopped, &on_stopped);
  451. /* -----------------------------------*/
  452. /* calculate starting resolution */
  453. int baseCX = wiz->baseResolutionCX;
  454. int baseCY = wiz->baseResolutionCY;
  455. CalcBaseRes(baseCX, baseCY);
  456. /* -----------------------------------*/
  457. /* calculate starting test rates */
  458. int pcores = os_get_physical_cores();
  459. int lcores = os_get_logical_cores();
  460. int maxDataRate;
  461. if (lcores > 8 || pcores > 4) {
  462. /* superb */
  463. maxDataRate = 1920 * 1200 * 60 + 1000;
  464. } else if (lcores > 4 && pcores == 4) {
  465. /* great */
  466. maxDataRate = 1920 * 1080 * 60 + 1000;
  467. } else if (pcores == 4) {
  468. /* okay */
  469. maxDataRate = 1920 * 1080 * 30 + 1000;
  470. } else {
  471. /* toaster */
  472. maxDataRate = 960 * 540 * 30 + 1000;
  473. }
  474. /* -----------------------------------*/
  475. /* perform tests */
  476. vector<Result> results;
  477. int i = 0;
  478. int count = 1;
  479. auto testRes = [&] (long double div, int fps_num, int fps_den,
  480. bool force)
  481. {
  482. int per = ++i * 100 / count;
  483. QMetaObject::invokeMethod(this, "Progress", Q_ARG(int, per));
  484. /* no need for more than 3 tests max */
  485. if (results.size() >= 3)
  486. return true;
  487. if (!fps_num || !fps_den) {
  488. fps_num = wiz->specificFPSNum;
  489. fps_den = wiz->specificFPSDen;
  490. }
  491. long double fps = ((long double)fps_num / (long double)fps_den);
  492. int cx = int((long double)baseCX / div);
  493. int cy = int((long double)baseCY / div);
  494. if (!force && wiz->type != AutoConfig::Type::Recording) {
  495. int est = EstimateMinBitrate(cx, cy, fps_num, fps_den);
  496. if (est > wiz->idealBitrate)
  497. return true;
  498. }
  499. long double rate = (long double)cx * (long double)cy * fps;
  500. if (!force && rate > maxDataRate)
  501. return true;
  502. testMode.SetVideo(cx, cy, fps_num, fps_den);
  503. obs_encoder_set_video(vencoder, obs_get_video());
  504. obs_encoder_set_audio(aencoder, obs_get_audio());
  505. obs_encoder_update(vencoder, vencoder_settings);
  506. obs_output_set_media(output, obs_get_video(), obs_get_audio());
  507. QString cxStr = QString::number(cx);
  508. QString cyStr = QString::number(cy);
  509. QString fpsStr = (fps_den > 1)
  510. ? QString::number(fps, 'f', 2)
  511. : QString::number(fps, 'g', 2);
  512. QMetaObject::invokeMethod(this, "UpdateMessage",
  513. Q_ARG(QString, QTStr(TEST_RES_VAL)
  514. .arg(cxStr, cyStr, fpsStr)));
  515. unique_lock<mutex> ul(m);
  516. if (cancel)
  517. return false;
  518. if (!obs_output_start(output)) {
  519. QMetaObject::invokeMethod(this, "Failure",
  520. Q_ARG(QString, QTStr(TEST_RES_FAIL)));
  521. return false;
  522. }
  523. cv.wait_for(ul, chrono::seconds(5));
  524. obs_output_stop(output);
  525. cv.wait(ul);
  526. int skipped = (int)video_output_get_skipped_frames(
  527. obs_get_video());
  528. if (force || skipped <= 10)
  529. results.emplace_back(cx, cy, fps_num, fps_den);
  530. return !cancel;
  531. };
  532. if (wiz->specificFPSNum && wiz->specificFPSDen) {
  533. count = 5;
  534. if (!testRes(1.0, 0, 0, false)) return false;
  535. if (!testRes(1.5, 0, 0, false)) return false;
  536. if (!testRes(1.0 / 0.6, 0, 0, false)) return false;
  537. if (!testRes(2.0, 0, 0, false)) return false;
  538. if (!testRes(2.25, 0, 0, true)) return false;
  539. } else {
  540. count = 10;
  541. if (!testRes(1.0, 60, 1, false)) return false;
  542. if (!testRes(1.0, 30, 1, false)) return false;
  543. if (!testRes(1.5, 60, 1, false)) return false;
  544. if (!testRes(1.5, 30, 1, false)) return false;
  545. if (!testRes(1.0 / 0.6, 60, 1, false)) return false;
  546. if (!testRes(1.0 / 0.6, 30, 1, false)) return false;
  547. if (!testRes(2.0, 60, 1, false)) return false;
  548. if (!testRes(2.0, 30, 1, false)) return false;
  549. if (!testRes(2.25, 60, 1, false)) return false;
  550. if (!testRes(2.25, 30, 1, true)) return false;
  551. }
  552. /* -----------------------------------*/
  553. /* find preferred settings */
  554. int minArea = 960 * 540 + 1000;
  555. if (!wiz->specificFPSNum && wiz->preferHighFPS && results.size() > 1) {
  556. Result &result1 = results[0];
  557. Result &result2 = results[1];
  558. if (result1.fps_num == 30 && result2.fps_num == 60) {
  559. int nextArea = result2.cx * result2.cy;
  560. if (nextArea >= minArea)
  561. results.erase(results.begin());
  562. }
  563. }
  564. Result result = results.front();
  565. wiz->idealResolutionCX = result.cx;
  566. wiz->idealResolutionCY = result.cy;
  567. wiz->idealFPSNum = result.fps_num;
  568. wiz->idealFPSDen = result.fps_den;
  569. long double fUpperBitrate = EstimateUpperBitrate(
  570. result.cx, result.cy, result.fps_num, result.fps_den);
  571. int upperBitrate = int(floor(fUpperBitrate / 50.0l) * 50.0l);
  572. if (wiz->streamingEncoder != AutoConfig::Encoder::x264) {
  573. upperBitrate *= 114;
  574. upperBitrate /= 100;
  575. }
  576. if (wiz->idealBitrate > upperBitrate)
  577. wiz->idealBitrate = upperBitrate;
  578. softwareTested = true;
  579. return true;
  580. }
  581. void AutoConfigTestPage::FindIdealHardwareResolution()
  582. {
  583. int baseCX = wiz->baseResolutionCX;
  584. int baseCY = wiz->baseResolutionCY;
  585. CalcBaseRes(baseCX, baseCY);
  586. vector<Result> results;
  587. int pcores = os_get_physical_cores();
  588. int maxDataRate;
  589. if (pcores >= 4) {
  590. maxDataRate = 1920 * 1200 * 60 + 1000;
  591. } else {
  592. maxDataRate = 1280 * 720 * 30 + 1000;
  593. }
  594. auto testRes = [&] (long double div, int fps_num, int fps_den,
  595. bool force)
  596. {
  597. if (results.size() >= 3)
  598. return;
  599. if (!fps_num || !fps_den) {
  600. fps_num = wiz->specificFPSNum;
  601. fps_den = wiz->specificFPSDen;
  602. }
  603. long double fps = ((long double)fps_num / (long double)fps_den);
  604. int cx = int((long double)baseCX / div);
  605. int cy = int((long double)baseCY / div);
  606. long double rate = (long double)cx * (long double)cy * fps;
  607. if (!force && rate > maxDataRate)
  608. return;
  609. int minBitrate = EstimateMinBitrate(cx, cy, fps_num, fps_den)
  610. * 114 / 100;
  611. if (wiz->type == AutoConfig::Type::Recording)
  612. force = true;
  613. if (force || wiz->idealBitrate >= minBitrate)
  614. results.emplace_back(cx, cy, fps_num, fps_den);
  615. };
  616. if (wiz->specificFPSNum && wiz->specificFPSDen) {
  617. testRes(1.0, 0, 0, false);
  618. testRes(1.5, 0, 0, false);
  619. testRes(1.0 / 0.6, 0, 0, false);
  620. testRes(2.0, 0, 0, false);
  621. testRes(2.25, 0, 0, true);
  622. } else {
  623. testRes(1.0, 60, 1, false);
  624. testRes(1.0, 30, 1, false);
  625. testRes(1.5, 60, 1, false);
  626. testRes(1.5, 30, 1, false);
  627. testRes(1.0 / 0.6, 60, 1, false);
  628. testRes(1.0 / 0.6, 30, 1, false);
  629. testRes(2.0, 60, 1, false);
  630. testRes(2.0, 30, 1, false);
  631. testRes(2.25, 60, 1, false);
  632. testRes(2.25, 30, 1, true);
  633. }
  634. int minArea = 960 * 540 + 1000;
  635. if (!wiz->specificFPSNum && wiz->preferHighFPS && results.size() > 1) {
  636. Result &result1 = results[0];
  637. Result &result2 = results[1];
  638. if (result1.fps_num == 30 && result2.fps_num == 60) {
  639. int nextArea = result2.cx * result2.cy;
  640. if (nextArea >= minArea)
  641. results.erase(results.begin());
  642. }
  643. }
  644. Result result = results.front();
  645. wiz->idealResolutionCX = result.cx;
  646. wiz->idealResolutionCY = result.cy;
  647. wiz->idealFPSNum = result.fps_num;
  648. wiz->idealFPSDen = result.fps_den;
  649. }
  650. void AutoConfigTestPage::TestStreamEncoderThread()
  651. {
  652. bool preferHardware = wiz->preferHardware;
  653. if (!softwareTested) {
  654. if (!preferHardware || !wiz->hardwareEncodingAvailable) {
  655. if (!TestSoftwareEncoding()) {
  656. return;
  657. }
  658. }
  659. }
  660. if (preferHardware && !softwareTested && wiz->hardwareEncodingAvailable)
  661. FindIdealHardwareResolution();
  662. if (!softwareTested) {
  663. if (wiz->nvencAvailable)
  664. wiz->streamingEncoder = AutoConfig::Encoder::NVENC;
  665. else if (wiz->qsvAvailable)
  666. wiz->streamingEncoder = AutoConfig::Encoder::QSV;
  667. else
  668. wiz->streamingEncoder = AutoConfig::Encoder::AMD;
  669. } else {
  670. wiz->streamingEncoder = AutoConfig::Encoder::x264;
  671. }
  672. QMetaObject::invokeMethod(this, "NextStage");
  673. }
  674. void AutoConfigTestPage::TestRecordingEncoderThread()
  675. {
  676. if (!wiz->hardwareEncodingAvailable && !softwareTested) {
  677. if (!TestSoftwareEncoding()) {
  678. return;
  679. }
  680. }
  681. if (wiz->type == AutoConfig::Type::Recording &&
  682. wiz->hardwareEncodingAvailable)
  683. FindIdealHardwareResolution();
  684. wiz->recordingQuality = AutoConfig::Quality::High;
  685. bool recordingOnly = wiz->type == AutoConfig::Type::Recording;
  686. if (wiz->hardwareEncodingAvailable) {
  687. if (wiz->nvencAvailable)
  688. wiz->recordingEncoder = AutoConfig::Encoder::NVENC;
  689. else if (wiz->qsvAvailable)
  690. wiz->recordingEncoder = AutoConfig::Encoder::QSV;
  691. else
  692. wiz->recordingEncoder = AutoConfig::Encoder::AMD;
  693. } else {
  694. wiz->recordingEncoder = AutoConfig::Encoder::x264;
  695. }
  696. if (wiz->recordingEncoder != AutoConfig::Encoder::NVENC) {
  697. if (!recordingOnly) {
  698. wiz->recordingEncoder = AutoConfig::Encoder::Stream;
  699. wiz->recordingQuality = AutoConfig::Quality::Stream;
  700. }
  701. }
  702. QMetaObject::invokeMethod(this, "NextStage");
  703. }
  704. #define ENCODER_TEXT(x) "Basic.Settings.Output.Simple.Encoder." x
  705. #define ENCODER_SOFTWARE ENCODER_TEXT("Software")
  706. #define ENCODER_NVENC ENCODER_TEXT("Hardware.NVENC")
  707. #define ENCODER_QSV ENCODER_TEXT("Hardware.QSV")
  708. #define ENCODER_AMD ENCODER_TEXT("Hardware.AMD")
  709. #define QUALITY_SAME "Basic.Settings.Output.Simple.RecordingQuality.Stream"
  710. #define QUALITY_HIGH "Basic.Settings.Output.Simple.RecordingQuality.Small"
  711. void AutoConfigTestPage::FinalizeResults()
  712. {
  713. ui->stackedWidget->setCurrentIndex(1);
  714. setSubTitle(QTStr(SUBTITLE_COMPLETE));
  715. QFormLayout *form = results;
  716. auto encName = [] (AutoConfig::Encoder enc) -> QString
  717. {
  718. switch (enc) {
  719. case AutoConfig::Encoder::x264:
  720. return QTStr(ENCODER_SOFTWARE);
  721. case AutoConfig::Encoder::NVENC:
  722. return QTStr(ENCODER_NVENC);
  723. case AutoConfig::Encoder::QSV:
  724. return QTStr(ENCODER_QSV);
  725. case AutoConfig::Encoder::AMD:
  726. return QTStr(ENCODER_AMD);
  727. case AutoConfig::Encoder::Stream:
  728. return QTStr(QUALITY_SAME);
  729. }
  730. return QTStr(ENCODER_SOFTWARE);
  731. };
  732. auto newLabel = [this] (const char *str) -> QLabel *
  733. {
  734. return new QLabel(QTStr(str), this);
  735. };
  736. if (wiz->type != AutoConfig::Type::Recording) {
  737. const char *serverType = wiz->customServer
  738. ? "rtmp_custom"
  739. : "rtmp_common";
  740. OBSService service = obs_service_create(serverType,
  741. "temp_service", nullptr, nullptr);
  742. obs_service_release(service);
  743. OBSData service_settings = obs_data_create();
  744. OBSData vencoder_settings = obs_data_create();
  745. obs_data_release(service_settings);
  746. obs_data_release(vencoder_settings);
  747. obs_data_set_int(vencoder_settings, "bitrate",
  748. wiz->idealBitrate);
  749. obs_data_set_string(service_settings, "service",
  750. wiz->serviceName.c_str());
  751. obs_service_update(service, service_settings);
  752. obs_service_apply_encoder_settings(service,
  753. vencoder_settings, nullptr);
  754. wiz->idealBitrate = (int)obs_data_get_int(vencoder_settings,
  755. "bitrate");
  756. if (!wiz->customServer)
  757. form->addRow(
  758. newLabel("Basic.AutoConfig.StreamPage.Service"),
  759. new QLabel(wiz->serviceName.c_str(),
  760. ui->finishPage));
  761. form->addRow(newLabel("Basic.AutoConfig.StreamPage.Server"),
  762. new QLabel(wiz->serverName.c_str(), ui->finishPage));
  763. form->addRow(newLabel("Basic.Settings.Output.VideoBitrate"),
  764. new QLabel(QString::number(wiz->idealBitrate),
  765. ui->finishPage));
  766. form->addRow(newLabel(TEST_RESULT_SE),
  767. new QLabel(encName(wiz->streamingEncoder),
  768. ui->finishPage));
  769. }
  770. QString baseRes = QString("%1x%2").arg(
  771. QString::number(wiz->baseResolutionCX),
  772. QString::number(wiz->baseResolutionCY));
  773. QString scaleRes = QString("%1x%2").arg(
  774. QString::number(wiz->idealResolutionCX),
  775. QString::number(wiz->idealResolutionCY));
  776. if (wiz->recordingEncoder != AutoConfig::Encoder::Stream ||
  777. wiz->recordingQuality != AutoConfig::Quality::Stream)
  778. form->addRow(newLabel(TEST_RESULT_RE),
  779. new QLabel(encName(wiz->recordingEncoder),
  780. ui->finishPage));
  781. QString recQuality;
  782. switch (wiz->recordingQuality) {
  783. case AutoConfig::Quality::High:
  784. recQuality = QTStr(QUALITY_HIGH);
  785. break;
  786. case AutoConfig::Quality::Stream:
  787. recQuality = QTStr(QUALITY_SAME);
  788. break;
  789. }
  790. form->addRow(newLabel("Basic.Settings.Output.Simple.RecordingQuality"),
  791. new QLabel(recQuality, ui->finishPage));
  792. long double fps =
  793. (long double)wiz->idealFPSNum / (long double)wiz->idealFPSDen;
  794. QString fpsStr = (wiz->idealFPSDen > 1)
  795. ? QString::number(fps, 'f', 2)
  796. : QString::number(fps, 'g', 2);
  797. form->addRow(newLabel("Basic.Settings.Video.BaseResolution"),
  798. new QLabel(baseRes, ui->finishPage));
  799. form->addRow(newLabel("Basic.Settings.Video.ScaledResolution"),
  800. new QLabel(scaleRes, ui->finishPage));
  801. form->addRow(newLabel("Basic.Settings.Video.FPS"),
  802. new QLabel(fpsStr, ui->finishPage));
  803. }
  804. #define STARTING_SEPARATOR \
  805. "\n==== Auto-config wizard testing commencing ======\n"
  806. #define STOPPING_SEPARATOR \
  807. "\n==== Auto-config wizard testing stopping ========\n"
  808. void AutoConfigTestPage::NextStage()
  809. {
  810. if (testThread.joinable())
  811. testThread.join();
  812. if (cancel)
  813. return;
  814. ui->subProgressLabel->setText(QString());
  815. /* make it skip to bandwidth stage if only set to config recording */
  816. if (stage == Stage::Starting) {
  817. if (!started) {
  818. blog(LOG_INFO, STARTING_SEPARATOR);
  819. started = true;
  820. }
  821. if (wiz->type == AutoConfig::Type::Recording) {
  822. stage = Stage::StreamEncoder;
  823. } else if (!wiz->bandwidthTest) {
  824. stage = Stage::BandwidthTest;
  825. }
  826. }
  827. if (stage == Stage::Starting) {
  828. stage = Stage::BandwidthTest;
  829. StartBandwidthStage();
  830. } else if (stage == Stage::BandwidthTest) {
  831. stage = Stage::StreamEncoder;
  832. StartStreamEncoderStage();
  833. } else if (stage == Stage::StreamEncoder) {
  834. stage = Stage::RecordingEncoder;
  835. StartRecordingEncoderStage();
  836. } else {
  837. stage = Stage::Finished;
  838. FinalizeResults();
  839. emit completeChanged();
  840. }
  841. }
  842. void AutoConfigTestPage::UpdateMessage(QString message)
  843. {
  844. ui->subProgressLabel->setText(message);
  845. }
  846. void AutoConfigTestPage::Failure(QString message)
  847. {
  848. ui->errorLabel->setText(message);
  849. ui->stackedWidget->setCurrentIndex(2);
  850. }
  851. void AutoConfigTestPage::Progress(int percentage)
  852. {
  853. ui->progressBar->setValue(percentage);
  854. }
  855. AutoConfigTestPage::AutoConfigTestPage(QWidget *parent)
  856. : QWizardPage (parent),
  857. ui (new Ui_AutoConfigTestPage)
  858. {
  859. ui->setupUi(this);
  860. setTitle(QTStr("Basic.AutoConfig.TestPage"));
  861. setSubTitle(QTStr(SUBTITLE_TESTING));
  862. setCommitPage(true);
  863. }
  864. AutoConfigTestPage::~AutoConfigTestPage()
  865. {
  866. delete ui;
  867. if (testThread.joinable()) {
  868. {
  869. unique_lock<mutex> ul(m);
  870. cancel = true;
  871. cv.notify_one();
  872. }
  873. testThread.join();
  874. }
  875. if (started)
  876. blog(LOG_INFO, STOPPING_SEPARATOR);
  877. }
  878. void AutoConfigTestPage::initializePage()
  879. {
  880. setSubTitle(QTStr(SUBTITLE_TESTING));
  881. stage = Stage::Starting;
  882. softwareTested = false;
  883. cancel = false;
  884. DeleteLayout(results);
  885. results = new QFormLayout();
  886. results->setContentsMargins(0, 0, 0, 0);
  887. ui->finishPageLayout->insertLayout(1, results);
  888. ui->stackedWidget->setCurrentIndex(0);
  889. NextStage();
  890. }
  891. void AutoConfigTestPage::cleanupPage()
  892. {
  893. if (testThread.joinable()) {
  894. {
  895. unique_lock<mutex> ul(m);
  896. cancel = true;
  897. cv.notify_one();
  898. }
  899. testThread.join();
  900. }
  901. }
  902. bool AutoConfigTestPage::isComplete() const
  903. {
  904. return stage == Stage::Finished;
  905. }
  906. int AutoConfigTestPage::nextId() const
  907. {
  908. return -1;
  909. }