mac-audio.c 20 KB

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  1. #include <AudioUnit/AudioUnit.h>
  2. #include <CoreFoundation/CFString.h>
  3. #include <CoreAudio/CoreAudio.h>
  4. #include <unistd.h>
  5. #include <errno.h>
  6. #include <obs-module.h>
  7. #include <util/threading.h>
  8. #include <util/c99defs.h>
  9. #include <util/apple/cfstring-utils.h>
  10. #include "audio-device-enum.h"
  11. #define PROPERTY_DEFAULT_DEVICE kAudioHardwarePropertyDefaultInputDevice
  12. #define PROPERTY_FORMATS kAudioStreamPropertyAvailablePhysicalFormats
  13. #define SCOPE_OUTPUT kAudioUnitScope_Output
  14. #define SCOPE_INPUT kAudioUnitScope_Input
  15. #define SCOPE_GLOBAL kAudioUnitScope_Global
  16. #define BUS_OUTPUT 0
  17. #define BUS_INPUT 1
  18. #define MAX_DEVICES 20
  19. #define set_property AudioUnitSetProperty
  20. #define get_property AudioUnitGetProperty
  21. #define TEXT_AUDIO_INPUT obs_module_text("CoreAudio.InputCapture");
  22. #define TEXT_AUDIO_OUTPUT obs_module_text("CoreAudio.OutputCapture");
  23. #define TEXT_DEVICE obs_module_text("CoreAudio.Device")
  24. #define TEXT_DEVICE_DEFAULT obs_module_text("CoreAudio.Device.Default")
  25. struct coreaudio_data {
  26. char *device_name;
  27. char *device_uid;
  28. AudioUnit unit;
  29. AudioDeviceID device_id;
  30. AudioBufferList *buf_list;
  31. bool au_initialized;
  32. bool active;
  33. bool default_device;
  34. bool input;
  35. bool no_devices;
  36. uint32_t sample_rate;
  37. enum audio_format format;
  38. enum speaker_layout speakers;
  39. pthread_t reconnect_thread;
  40. os_event_t *exit_event;
  41. volatile bool reconnecting;
  42. unsigned long retry_time;
  43. obs_source_t *source;
  44. };
  45. static bool get_default_output_device(struct coreaudio_data *ca)
  46. {
  47. struct device_list list;
  48. memset(&list, 0, sizeof(struct device_list));
  49. coreaudio_enum_devices(&list, false);
  50. if (!list.items.num)
  51. return false;
  52. bfree(ca->device_uid);
  53. ca->device_uid = bstrdup(list.items.array[0].value.array);
  54. device_list_free(&list);
  55. return true;
  56. }
  57. static bool find_device_id_by_uid(struct coreaudio_data *ca)
  58. {
  59. UInt32 size = sizeof(AudioDeviceID);
  60. CFStringRef cf_uid = NULL;
  61. CFStringRef qual = NULL;
  62. UInt32 qual_size = 0;
  63. OSStatus stat;
  64. bool success;
  65. AudioObjectPropertyAddress addr = {
  66. .mScope = kAudioObjectPropertyScopeGlobal,
  67. .mElement = kAudioObjectPropertyElementMaster};
  68. if (!ca->device_uid)
  69. ca->device_uid = bstrdup("default");
  70. ca->default_device = false;
  71. ca->no_devices = false;
  72. /* have to do this because mac output devices don't actually exist */
  73. if (astrcmpi(ca->device_uid, "default") == 0) {
  74. if (ca->input) {
  75. ca->default_device = true;
  76. } else {
  77. if (!get_default_output_device(ca)) {
  78. ca->no_devices = true;
  79. return false;
  80. }
  81. }
  82. }
  83. cf_uid = CFStringCreateWithCString(NULL, ca->device_uid,
  84. kCFStringEncodingUTF8);
  85. if (ca->default_device) {
  86. addr.mSelector = PROPERTY_DEFAULT_DEVICE;
  87. stat = AudioObjectGetPropertyData(kAudioObjectSystemObject,
  88. &addr, qual_size, &qual,
  89. &size, &ca->device_id);
  90. success = (stat == noErr);
  91. } else {
  92. success = coreaudio_get_device_id(cf_uid, &ca->device_id);
  93. }
  94. if (cf_uid)
  95. CFRelease(cf_uid);
  96. return success;
  97. }
  98. static inline void ca_warn(struct coreaudio_data *ca, const char *func,
  99. const char *format, ...)
  100. {
  101. va_list args;
  102. struct dstr str = {0};
  103. va_start(args, format);
  104. dstr_printf(&str, "[%s]:[device '%s'] ", func, ca->device_name);
  105. dstr_vcatf(&str, format, args);
  106. blog(LOG_WARNING, "%s", str.array);
  107. dstr_free(&str);
  108. va_end(args);
  109. }
  110. static inline bool ca_success(OSStatus stat, struct coreaudio_data *ca,
  111. const char *func, const char *action)
  112. {
  113. if (stat != noErr) {
  114. blog(LOG_WARNING, "[%s]:[device '%s'] %s failed: %d", func,
  115. ca->device_name, action, (int)stat);
  116. return false;
  117. }
  118. return true;
  119. }
  120. enum coreaudio_io_type {
  121. IO_TYPE_INPUT,
  122. IO_TYPE_OUTPUT,
  123. };
  124. static inline bool enable_io(struct coreaudio_data *ca,
  125. enum coreaudio_io_type type, bool enable)
  126. {
  127. UInt32 enable_int = enable;
  128. return set_property(ca->unit, kAudioOutputUnitProperty_EnableIO,
  129. (type == IO_TYPE_INPUT) ? SCOPE_INPUT
  130. : SCOPE_OUTPUT,
  131. (type == IO_TYPE_INPUT) ? BUS_INPUT : BUS_OUTPUT,
  132. &enable_int, sizeof(enable_int));
  133. }
  134. static inline enum audio_format convert_ca_format(UInt32 format_flags,
  135. UInt32 bits)
  136. {
  137. bool planar = (format_flags & kAudioFormatFlagIsNonInterleaved) != 0;
  138. if (format_flags & kAudioFormatFlagIsFloat)
  139. return planar ? AUDIO_FORMAT_FLOAT_PLANAR : AUDIO_FORMAT_FLOAT;
  140. if (!(format_flags & kAudioFormatFlagIsSignedInteger) && bits == 8)
  141. return planar ? AUDIO_FORMAT_U8BIT_PLANAR : AUDIO_FORMAT_U8BIT;
  142. /* not float? not signed int? no clue, fail */
  143. if ((format_flags & kAudioFormatFlagIsSignedInteger) == 0)
  144. return AUDIO_FORMAT_UNKNOWN;
  145. if (bits == 16)
  146. return planar ? AUDIO_FORMAT_16BIT_PLANAR : AUDIO_FORMAT_16BIT;
  147. else if (bits == 32)
  148. return planar ? AUDIO_FORMAT_32BIT_PLANAR : AUDIO_FORMAT_32BIT;
  149. return AUDIO_FORMAT_UNKNOWN;
  150. }
  151. static inline enum speaker_layout convert_ca_speaker_layout(UInt32 channels)
  152. {
  153. switch (channels) {
  154. case 1:
  155. return SPEAKERS_MONO;
  156. case 2:
  157. return SPEAKERS_STEREO;
  158. case 3:
  159. return SPEAKERS_2POINT1;
  160. case 4:
  161. return SPEAKERS_4POINT0;
  162. case 5:
  163. return SPEAKERS_4POINT1;
  164. case 6:
  165. return SPEAKERS_5POINT1;
  166. case 8:
  167. return SPEAKERS_7POINT1;
  168. }
  169. return SPEAKERS_UNKNOWN;
  170. }
  171. static bool coreaudio_init_format(struct coreaudio_data *ca)
  172. {
  173. AudioStreamBasicDescription desc;
  174. OSStatus stat;
  175. UInt32 size = sizeof(desc);
  176. struct obs_audio_info aoi;
  177. int channels;
  178. if (!obs_get_audio_info(&aoi)) {
  179. blog(LOG_WARNING, "No active audio");
  180. return false;
  181. }
  182. channels = get_audio_channels(aoi.speakers);
  183. stat = get_property(ca->unit, kAudioUnitProperty_StreamFormat,
  184. SCOPE_INPUT, BUS_INPUT, &desc, &size);
  185. if (!ca_success(stat, ca, "coreaudio_init_format", "get input format"))
  186. return false;
  187. /* Certain types of devices have no limit on channel count, and
  188. * there's no way to know the actual number of channels it's using,
  189. * so if we encounter this situation just force to what is defined in output */
  190. if (desc.mChannelsPerFrame > 8) {
  191. desc.mChannelsPerFrame = channels;
  192. desc.mBytesPerFrame = channels * desc.mBitsPerChannel / 8;
  193. desc.mBytesPerPacket =
  194. desc.mFramesPerPacket * desc.mBytesPerFrame;
  195. }
  196. stat = set_property(ca->unit, kAudioUnitProperty_StreamFormat,
  197. SCOPE_OUTPUT, BUS_INPUT, &desc, size);
  198. if (!ca_success(stat, ca, "coreaudio_init_format", "set output format"))
  199. return false;
  200. if (desc.mFormatID != kAudioFormatLinearPCM) {
  201. ca_warn(ca, "coreaudio_init_format", "format is not PCM");
  202. return false;
  203. }
  204. ca->format = convert_ca_format(desc.mFormatFlags, desc.mBitsPerChannel);
  205. if (ca->format == AUDIO_FORMAT_UNKNOWN) {
  206. ca_warn(ca, "coreaudio_init_format",
  207. "unknown format flags: "
  208. "%u, bits: %u",
  209. (unsigned int)desc.mFormatFlags,
  210. (unsigned int)desc.mBitsPerChannel);
  211. return false;
  212. }
  213. ca->sample_rate = (uint32_t)desc.mSampleRate;
  214. ca->speakers = convert_ca_speaker_layout(desc.mChannelsPerFrame);
  215. if (ca->speakers == SPEAKERS_UNKNOWN) {
  216. ca_warn(ca, "coreaudio_init_format",
  217. "unknown speaker layout: "
  218. "%u channels",
  219. (unsigned int)desc.mChannelsPerFrame);
  220. return false;
  221. }
  222. return true;
  223. }
  224. static bool coreaudio_init_buffer(struct coreaudio_data *ca)
  225. {
  226. UInt32 buf_size = 0;
  227. UInt32 size = 0;
  228. UInt32 frames = 0;
  229. OSStatus stat;
  230. AudioObjectPropertyAddress addr = {
  231. kAudioDevicePropertyStreamConfiguration,
  232. kAudioDevicePropertyScopeInput,
  233. kAudioObjectPropertyElementMaster};
  234. stat = AudioObjectGetPropertyDataSize(ca->device_id, &addr, 0, NULL,
  235. &buf_size);
  236. if (!ca_success(stat, ca, "coreaudio_init_buffer", "get list size"))
  237. return false;
  238. size = sizeof(frames);
  239. stat = get_property(ca->unit, kAudioDevicePropertyBufferFrameSize,
  240. SCOPE_GLOBAL, 0, &frames, &size);
  241. if (!ca_success(stat, ca, "coreaudio_init_buffer", "get frame size"))
  242. return false;
  243. /* ---------------------- */
  244. ca->buf_list = bmalloc(buf_size);
  245. stat = AudioObjectGetPropertyData(ca->device_id, &addr, 0, NULL,
  246. &buf_size, ca->buf_list);
  247. if (!ca_success(stat, ca, "coreaudio_init_buffer", "allocate")) {
  248. bfree(ca->buf_list);
  249. ca->buf_list = NULL;
  250. return false;
  251. }
  252. for (UInt32 i = 0; i < ca->buf_list->mNumberBuffers; i++) {
  253. size = ca->buf_list->mBuffers[i].mDataByteSize;
  254. ca->buf_list->mBuffers[i].mData = bmalloc(size);
  255. }
  256. return true;
  257. }
  258. static void buf_list_free(AudioBufferList *buf_list)
  259. {
  260. if (buf_list) {
  261. for (UInt32 i = 0; i < buf_list->mNumberBuffers; i++)
  262. bfree(buf_list->mBuffers[i].mData);
  263. bfree(buf_list);
  264. }
  265. }
  266. static OSStatus input_callback(void *data,
  267. AudioUnitRenderActionFlags *action_flags,
  268. const AudioTimeStamp *ts_data, UInt32 bus_num,
  269. UInt32 frames, AudioBufferList *ignored_buffers)
  270. {
  271. struct coreaudio_data *ca = data;
  272. OSStatus stat;
  273. struct obs_source_audio audio;
  274. stat = AudioUnitRender(ca->unit, action_flags, ts_data, bus_num, frames,
  275. ca->buf_list);
  276. if (!ca_success(stat, ca, "input_callback", "audio retrieval"))
  277. return noErr;
  278. for (UInt32 i = 0; i < ca->buf_list->mNumberBuffers; i++)
  279. audio.data[i] = ca->buf_list->mBuffers[i].mData;
  280. audio.frames = frames;
  281. audio.speakers = ca->speakers;
  282. audio.format = ca->format;
  283. audio.samples_per_sec = ca->sample_rate;
  284. audio.timestamp = ts_data->mHostTime;
  285. obs_source_output_audio(ca->source, &audio);
  286. UNUSED_PARAMETER(ignored_buffers);
  287. return noErr;
  288. }
  289. static void coreaudio_stop(struct coreaudio_data *ca);
  290. static bool coreaudio_init(struct coreaudio_data *ca);
  291. static void coreaudio_uninit(struct coreaudio_data *ca);
  292. static void *reconnect_thread(void *param)
  293. {
  294. struct coreaudio_data *ca = param;
  295. ca->reconnecting = true;
  296. while (os_event_timedwait(ca->exit_event, ca->retry_time) ==
  297. ETIMEDOUT) {
  298. if (coreaudio_init(ca))
  299. break;
  300. }
  301. blog(LOG_DEBUG, "coreaudio: exit the reconnect thread");
  302. ca->reconnecting = false;
  303. return NULL;
  304. }
  305. static void coreaudio_begin_reconnect(struct coreaudio_data *ca)
  306. {
  307. int ret;
  308. if (ca->reconnecting)
  309. return;
  310. ret = pthread_create(&ca->reconnect_thread, NULL, reconnect_thread, ca);
  311. if (ret != 0)
  312. blog(LOG_WARNING,
  313. "[coreaudio_begin_reconnect] failed to "
  314. "create thread, error code: %d",
  315. ret);
  316. }
  317. static OSStatus
  318. notification_callback(AudioObjectID id, UInt32 num_addresses,
  319. const AudioObjectPropertyAddress addresses[], void *data)
  320. {
  321. struct coreaudio_data *ca = data;
  322. coreaudio_stop(ca);
  323. coreaudio_uninit(ca);
  324. if (addresses[0].mSelector == PROPERTY_DEFAULT_DEVICE)
  325. ca->retry_time = 300;
  326. else
  327. ca->retry_time = 2000;
  328. blog(LOG_INFO,
  329. "coreaudio: device '%s' disconnected or changed. "
  330. "attempting to reconnect",
  331. ca->device_name);
  332. coreaudio_begin_reconnect(ca);
  333. UNUSED_PARAMETER(id);
  334. UNUSED_PARAMETER(num_addresses);
  335. return noErr;
  336. }
  337. static OSStatus add_listener(struct coreaudio_data *ca, UInt32 property)
  338. {
  339. AudioObjectPropertyAddress addr = {property,
  340. kAudioObjectPropertyScopeGlobal,
  341. kAudioObjectPropertyElementMaster};
  342. return AudioObjectAddPropertyListener(ca->device_id, &addr,
  343. notification_callback, ca);
  344. }
  345. static bool coreaudio_init_hooks(struct coreaudio_data *ca)
  346. {
  347. OSStatus stat;
  348. AURenderCallbackStruct callback_info = {.inputProc = input_callback,
  349. .inputProcRefCon = ca};
  350. stat = add_listener(ca, kAudioDevicePropertyDeviceIsAlive);
  351. if (!ca_success(stat, ca, "coreaudio_init_hooks",
  352. "set disconnect callback"))
  353. return false;
  354. stat = add_listener(ca, PROPERTY_FORMATS);
  355. if (!ca_success(stat, ca, "coreaudio_init_hooks",
  356. "set format change callback"))
  357. return false;
  358. if (ca->default_device) {
  359. AudioObjectPropertyAddress addr = {
  360. PROPERTY_DEFAULT_DEVICE,
  361. kAudioObjectPropertyScopeGlobal,
  362. kAudioObjectPropertyElementMaster};
  363. stat = AudioObjectAddPropertyListener(kAudioObjectSystemObject,
  364. &addr,
  365. notification_callback,
  366. ca);
  367. if (!ca_success(stat, ca, "coreaudio_init_hooks",
  368. "set device change callback"))
  369. return false;
  370. }
  371. stat = set_property(ca->unit, kAudioOutputUnitProperty_SetInputCallback,
  372. SCOPE_GLOBAL, 0, &callback_info,
  373. sizeof(callback_info));
  374. if (!ca_success(stat, ca, "coreaudio_init_hooks", "set input callback"))
  375. return false;
  376. return true;
  377. }
  378. static void coreaudio_remove_hooks(struct coreaudio_data *ca)
  379. {
  380. AURenderCallbackStruct callback_info = {.inputProc = NULL,
  381. .inputProcRefCon = NULL};
  382. AudioObjectPropertyAddress addr = {kAudioDevicePropertyDeviceIsAlive,
  383. kAudioObjectPropertyScopeGlobal,
  384. kAudioObjectPropertyElementMaster};
  385. AudioObjectRemovePropertyListener(ca->device_id, &addr,
  386. notification_callback, ca);
  387. addr.mSelector = PROPERTY_FORMATS;
  388. AudioObjectRemovePropertyListener(ca->device_id, &addr,
  389. notification_callback, ca);
  390. if (ca->default_device) {
  391. addr.mSelector = PROPERTY_DEFAULT_DEVICE;
  392. AudioObjectRemovePropertyListener(kAudioObjectSystemObject,
  393. &addr, notification_callback,
  394. ca);
  395. }
  396. set_property(ca->unit, kAudioOutputUnitProperty_SetInputCallback,
  397. SCOPE_GLOBAL, 0, &callback_info, sizeof(callback_info));
  398. }
  399. static bool coreaudio_get_device_name(struct coreaudio_data *ca)
  400. {
  401. CFStringRef cf_name = NULL;
  402. UInt32 size = sizeof(CFStringRef);
  403. char *name = NULL;
  404. const AudioObjectPropertyAddress addr = {
  405. kAudioDevicePropertyDeviceNameCFString,
  406. kAudioObjectPropertyScopeInput,
  407. kAudioObjectPropertyElementMaster};
  408. OSStatus stat = AudioObjectGetPropertyData(ca->device_id, &addr, 0,
  409. NULL, &size, &cf_name);
  410. if (stat != noErr) {
  411. blog(LOG_WARNING,
  412. "[coreaudio_get_device_name] failed to "
  413. "get name: %d",
  414. (int)stat);
  415. return false;
  416. }
  417. name = cfstr_copy_cstr(cf_name, kCFStringEncodingUTF8);
  418. if (!name) {
  419. blog(LOG_WARNING, "[coreaudio_get_device_name] failed to "
  420. "convert name to cstr for some reason");
  421. return false;
  422. }
  423. bfree(ca->device_name);
  424. ca->device_name = name;
  425. if (cf_name)
  426. CFRelease(cf_name);
  427. return true;
  428. }
  429. static bool coreaudio_start(struct coreaudio_data *ca)
  430. {
  431. OSStatus stat;
  432. if (ca->active)
  433. return true;
  434. stat = AudioOutputUnitStart(ca->unit);
  435. return ca_success(stat, ca, "coreaudio_start", "start audio");
  436. }
  437. static void coreaudio_stop(struct coreaudio_data *ca)
  438. {
  439. OSStatus stat;
  440. if (!ca->active)
  441. return;
  442. ca->active = false;
  443. stat = AudioOutputUnitStop(ca->unit);
  444. ca_success(stat, ca, "coreaudio_stop", "stop audio");
  445. }
  446. static bool coreaudio_init_unit(struct coreaudio_data *ca)
  447. {
  448. AudioComponentDescription desc = {
  449. .componentType = kAudioUnitType_Output,
  450. .componentSubType = kAudioUnitSubType_HALOutput};
  451. AudioComponent component = AudioComponentFindNext(NULL, &desc);
  452. if (!component) {
  453. ca_warn(ca, "coreaudio_init_unit", "find component failed");
  454. return false;
  455. }
  456. OSStatus stat = AudioComponentInstanceNew(component, &ca->unit);
  457. if (!ca_success(stat, ca, "coreaudio_init_unit", "instance unit"))
  458. return false;
  459. ca->au_initialized = true;
  460. return true;
  461. }
  462. static bool coreaudio_init(struct coreaudio_data *ca)
  463. {
  464. OSStatus stat;
  465. if (ca->au_initialized)
  466. return true;
  467. if (!find_device_id_by_uid(ca))
  468. return false;
  469. if (!coreaudio_get_device_name(ca))
  470. return false;
  471. if (!coreaudio_init_unit(ca))
  472. return false;
  473. stat = enable_io(ca, IO_TYPE_INPUT, true);
  474. if (!ca_success(stat, ca, "coreaudio_init", "enable input io"))
  475. goto fail;
  476. stat = enable_io(ca, IO_TYPE_OUTPUT, false);
  477. if (!ca_success(stat, ca, "coreaudio_init", "disable output io"))
  478. goto fail;
  479. stat = set_property(ca->unit, kAudioOutputUnitProperty_CurrentDevice,
  480. SCOPE_GLOBAL, 0, &ca->device_id,
  481. sizeof(ca->device_id));
  482. if (!ca_success(stat, ca, "coreaudio_init", "set current device"))
  483. goto fail;
  484. if (!coreaudio_init_format(ca))
  485. goto fail;
  486. if (!coreaudio_init_buffer(ca))
  487. goto fail;
  488. if (!coreaudio_init_hooks(ca))
  489. goto fail;
  490. stat = AudioUnitInitialize(ca->unit);
  491. if (!ca_success(stat, ca, "coreaudio_initialize", "initialize"))
  492. goto fail;
  493. if (!coreaudio_start(ca))
  494. goto fail;
  495. blog(LOG_INFO, "coreaudio: device '%s' initialized", ca->device_name);
  496. return ca->au_initialized;
  497. fail:
  498. coreaudio_uninit(ca);
  499. return false;
  500. }
  501. static void coreaudio_try_init(struct coreaudio_data *ca)
  502. {
  503. if (!coreaudio_init(ca)) {
  504. blog(LOG_INFO,
  505. "coreaudio: failed to find device "
  506. "uid: %s, waiting for connection",
  507. ca->device_uid);
  508. ca->retry_time = 2000;
  509. if (ca->no_devices)
  510. blog(LOG_INFO, "coreaudio: no device found");
  511. else
  512. coreaudio_begin_reconnect(ca);
  513. }
  514. }
  515. static void coreaudio_uninit(struct coreaudio_data *ca)
  516. {
  517. if (!ca->au_initialized)
  518. return;
  519. if (ca->unit) {
  520. coreaudio_stop(ca);
  521. OSStatus stat = AudioUnitUninitialize(ca->unit);
  522. ca_success(stat, ca, "coreaudio_uninit", "uninitialize");
  523. coreaudio_remove_hooks(ca);
  524. stat = AudioComponentInstanceDispose(ca->unit);
  525. ca_success(stat, ca, "coreaudio_uninit", "dispose");
  526. ca->unit = NULL;
  527. }
  528. ca->au_initialized = false;
  529. buf_list_free(ca->buf_list);
  530. ca->buf_list = NULL;
  531. }
  532. /* ------------------------------------------------------------------------- */
  533. static const char *coreaudio_input_getname(void *unused)
  534. {
  535. UNUSED_PARAMETER(unused);
  536. return TEXT_AUDIO_INPUT;
  537. }
  538. static const char *coreaudio_output_getname(void *unused)
  539. {
  540. UNUSED_PARAMETER(unused);
  541. return TEXT_AUDIO_OUTPUT;
  542. }
  543. static void coreaudio_shutdown(struct coreaudio_data *ca)
  544. {
  545. if (ca->reconnecting) {
  546. os_event_signal(ca->exit_event);
  547. pthread_join(ca->reconnect_thread, NULL);
  548. os_event_reset(ca->exit_event);
  549. }
  550. coreaudio_uninit(ca);
  551. if (ca->unit)
  552. AudioComponentInstanceDispose(ca->unit);
  553. }
  554. static void coreaudio_destroy(void *data)
  555. {
  556. struct coreaudio_data *ca = data;
  557. if (ca) {
  558. coreaudio_shutdown(ca);
  559. os_event_destroy(ca->exit_event);
  560. bfree(ca->device_name);
  561. bfree(ca->device_uid);
  562. bfree(ca);
  563. }
  564. }
  565. static void coreaudio_update(void *data, obs_data_t *settings)
  566. {
  567. struct coreaudio_data *ca = data;
  568. coreaudio_shutdown(ca);
  569. bfree(ca->device_uid);
  570. ca->device_uid = bstrdup(obs_data_get_string(settings, "device_id"));
  571. coreaudio_try_init(ca);
  572. }
  573. static void coreaudio_defaults(obs_data_t *settings)
  574. {
  575. obs_data_set_default_string(settings, "device_id", "default");
  576. }
  577. static void *coreaudio_create(obs_data_t *settings, obs_source_t *source,
  578. bool input)
  579. {
  580. struct coreaudio_data *ca = bzalloc(sizeof(struct coreaudio_data));
  581. if (os_event_init(&ca->exit_event, OS_EVENT_TYPE_MANUAL) != 0) {
  582. blog(LOG_ERROR,
  583. "[coreaudio_create] failed to create "
  584. "semephore: %d",
  585. errno);
  586. bfree(ca);
  587. return NULL;
  588. }
  589. ca->device_uid = bstrdup(obs_data_get_string(settings, "device_id"));
  590. ca->source = source;
  591. ca->input = input;
  592. if (!ca->device_uid)
  593. ca->device_uid = bstrdup("default");
  594. coreaudio_try_init(ca);
  595. return ca;
  596. }
  597. static void *coreaudio_create_input_capture(obs_data_t *settings,
  598. obs_source_t *source)
  599. {
  600. return coreaudio_create(settings, source, true);
  601. }
  602. static void *coreaudio_create_output_capture(obs_data_t *settings,
  603. obs_source_t *source)
  604. {
  605. return coreaudio_create(settings, source, false);
  606. }
  607. static obs_properties_t *coreaudio_properties(bool input)
  608. {
  609. obs_properties_t *props = obs_properties_create();
  610. obs_property_t *property;
  611. struct device_list devices;
  612. memset(&devices, 0, sizeof(struct device_list));
  613. property = obs_properties_add_list(props, "device_id", TEXT_DEVICE,
  614. OBS_COMBO_TYPE_LIST,
  615. OBS_COMBO_FORMAT_STRING);
  616. coreaudio_enum_devices(&devices, input);
  617. if (devices.items.num)
  618. obs_property_list_add_string(property, TEXT_DEVICE_DEFAULT,
  619. "default");
  620. for (size_t i = 0; i < devices.items.num; i++) {
  621. struct device_item *item = devices.items.array + i;
  622. obs_property_list_add_string(property, item->name.array,
  623. item->value.array);
  624. }
  625. device_list_free(&devices);
  626. return props;
  627. }
  628. static obs_properties_t *coreaudio_input_properties(void *unused)
  629. {
  630. UNUSED_PARAMETER(unused);
  631. return coreaudio_properties(true);
  632. }
  633. static obs_properties_t *coreaudio_output_properties(void *unused)
  634. {
  635. UNUSED_PARAMETER(unused);
  636. return coreaudio_properties(false);
  637. }
  638. struct obs_source_info coreaudio_input_capture_info = {
  639. .id = "coreaudio_input_capture",
  640. .type = OBS_SOURCE_TYPE_INPUT,
  641. .output_flags = OBS_SOURCE_AUDIO | OBS_SOURCE_DO_NOT_DUPLICATE,
  642. .get_name = coreaudio_input_getname,
  643. .create = coreaudio_create_input_capture,
  644. .destroy = coreaudio_destroy,
  645. .update = coreaudio_update,
  646. .get_defaults = coreaudio_defaults,
  647. .get_properties = coreaudio_input_properties,
  648. };
  649. struct obs_source_info coreaudio_output_capture_info = {
  650. .id = "coreaudio_output_capture",
  651. .type = OBS_SOURCE_TYPE_INPUT,
  652. .output_flags = OBS_SOURCE_AUDIO | OBS_SOURCE_DO_NOT_DUPLICATE |
  653. OBS_SOURCE_DO_NOT_SELF_MONITOR,
  654. .get_name = coreaudio_output_getname,
  655. .create = coreaudio_create_output_capture,
  656. .destroy = coreaudio_destroy,
  657. .update = coreaudio_update,
  658. .get_defaults = coreaudio_defaults,
  659. .get_properties = coreaudio_output_properties,
  660. };