alsa.c 49 KB

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  1. /**
  2. * OpenAL cross platform audio library
  3. * Copyright (C) 1999-2007 by authors.
  4. * This library is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU Library General Public
  6. * License as published by the Free Software Foundation; either
  7. * version 2 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. * Library General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU Library General Public
  15. * License along with this library; if not, write to the
  16. * Free Software Foundation, Inc.,
  17. * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
  18. * Or go to http://www.gnu.org/copyleft/lgpl.html
  19. */
  20. #include "config.h"
  21. #include <stdlib.h>
  22. #include <stdio.h>
  23. #include <memory.h>
  24. #include "alMain.h"
  25. #include "alu.h"
  26. #include "threads.h"
  27. #include "compat.h"
  28. #include "backends/base.h"
  29. #include <alsa/asoundlib.h>
  30. static const ALCchar alsaDevice[] = "ALSA Default";
  31. #ifdef HAVE_DYNLOAD
  32. #define ALSA_FUNCS(MAGIC) \
  33. MAGIC(snd_strerror); \
  34. MAGIC(snd_pcm_open); \
  35. MAGIC(snd_pcm_close); \
  36. MAGIC(snd_pcm_nonblock); \
  37. MAGIC(snd_pcm_frames_to_bytes); \
  38. MAGIC(snd_pcm_bytes_to_frames); \
  39. MAGIC(snd_pcm_hw_params_malloc); \
  40. MAGIC(snd_pcm_hw_params_free); \
  41. MAGIC(snd_pcm_hw_params_any); \
  42. MAGIC(snd_pcm_hw_params_current); \
  43. MAGIC(snd_pcm_hw_params_set_access); \
  44. MAGIC(snd_pcm_hw_params_set_format); \
  45. MAGIC(snd_pcm_hw_params_set_channels); \
  46. MAGIC(snd_pcm_hw_params_set_periods_near); \
  47. MAGIC(snd_pcm_hw_params_set_rate_near); \
  48. MAGIC(snd_pcm_hw_params_set_rate); \
  49. MAGIC(snd_pcm_hw_params_set_rate_resample); \
  50. MAGIC(snd_pcm_hw_params_set_buffer_time_near); \
  51. MAGIC(snd_pcm_hw_params_set_period_time_near); \
  52. MAGIC(snd_pcm_hw_params_set_buffer_size_near); \
  53. MAGIC(snd_pcm_hw_params_set_period_size_near); \
  54. MAGIC(snd_pcm_hw_params_set_buffer_size_min); \
  55. MAGIC(snd_pcm_hw_params_get_buffer_time_min); \
  56. MAGIC(snd_pcm_hw_params_get_buffer_time_max); \
  57. MAGIC(snd_pcm_hw_params_get_period_time_min); \
  58. MAGIC(snd_pcm_hw_params_get_period_time_max); \
  59. MAGIC(snd_pcm_hw_params_get_buffer_size); \
  60. MAGIC(snd_pcm_hw_params_get_period_size); \
  61. MAGIC(snd_pcm_hw_params_get_access); \
  62. MAGIC(snd_pcm_hw_params_get_periods); \
  63. MAGIC(snd_pcm_hw_params_test_format); \
  64. MAGIC(snd_pcm_hw_params_test_channels); \
  65. MAGIC(snd_pcm_hw_params); \
  66. MAGIC(snd_pcm_sw_params_malloc); \
  67. MAGIC(snd_pcm_sw_params_current); \
  68. MAGIC(snd_pcm_sw_params_set_avail_min); \
  69. MAGIC(snd_pcm_sw_params_set_stop_threshold); \
  70. MAGIC(snd_pcm_sw_params); \
  71. MAGIC(snd_pcm_sw_params_free); \
  72. MAGIC(snd_pcm_prepare); \
  73. MAGIC(snd_pcm_start); \
  74. MAGIC(snd_pcm_resume); \
  75. MAGIC(snd_pcm_reset); \
  76. MAGIC(snd_pcm_wait); \
  77. MAGIC(snd_pcm_delay); \
  78. MAGIC(snd_pcm_state); \
  79. MAGIC(snd_pcm_avail_update); \
  80. MAGIC(snd_pcm_areas_silence); \
  81. MAGIC(snd_pcm_mmap_begin); \
  82. MAGIC(snd_pcm_mmap_commit); \
  83. MAGIC(snd_pcm_readi); \
  84. MAGIC(snd_pcm_writei); \
  85. MAGIC(snd_pcm_drain); \
  86. MAGIC(snd_pcm_drop); \
  87. MAGIC(snd_pcm_recover); \
  88. MAGIC(snd_pcm_info_malloc); \
  89. MAGIC(snd_pcm_info_free); \
  90. MAGIC(snd_pcm_info_set_device); \
  91. MAGIC(snd_pcm_info_set_subdevice); \
  92. MAGIC(snd_pcm_info_set_stream); \
  93. MAGIC(snd_pcm_info_get_name); \
  94. MAGIC(snd_ctl_pcm_next_device); \
  95. MAGIC(snd_ctl_pcm_info); \
  96. MAGIC(snd_ctl_open); \
  97. MAGIC(snd_ctl_close); \
  98. MAGIC(snd_ctl_card_info_malloc); \
  99. MAGIC(snd_ctl_card_info_free); \
  100. MAGIC(snd_ctl_card_info); \
  101. MAGIC(snd_ctl_card_info_get_name); \
  102. MAGIC(snd_ctl_card_info_get_id); \
  103. MAGIC(snd_card_next); \
  104. MAGIC(snd_config_update_free_global)
  105. static void *alsa_handle;
  106. #define MAKE_FUNC(f) static __typeof(f) * p##f
  107. ALSA_FUNCS(MAKE_FUNC);
  108. #undef MAKE_FUNC
  109. #define snd_strerror psnd_strerror
  110. #define snd_pcm_open psnd_pcm_open
  111. #define snd_pcm_close psnd_pcm_close
  112. #define snd_pcm_nonblock psnd_pcm_nonblock
  113. #define snd_pcm_frames_to_bytes psnd_pcm_frames_to_bytes
  114. #define snd_pcm_bytes_to_frames psnd_pcm_bytes_to_frames
  115. #define snd_pcm_hw_params_malloc psnd_pcm_hw_params_malloc
  116. #define snd_pcm_hw_params_free psnd_pcm_hw_params_free
  117. #define snd_pcm_hw_params_any psnd_pcm_hw_params_any
  118. #define snd_pcm_hw_params_current psnd_pcm_hw_params_current
  119. #define snd_pcm_hw_params_set_access psnd_pcm_hw_params_set_access
  120. #define snd_pcm_hw_params_set_format psnd_pcm_hw_params_set_format
  121. #define snd_pcm_hw_params_set_channels psnd_pcm_hw_params_set_channels
  122. #define snd_pcm_hw_params_set_periods_near psnd_pcm_hw_params_set_periods_near
  123. #define snd_pcm_hw_params_set_rate_near psnd_pcm_hw_params_set_rate_near
  124. #define snd_pcm_hw_params_set_rate psnd_pcm_hw_params_set_rate
  125. #define snd_pcm_hw_params_set_rate_resample psnd_pcm_hw_params_set_rate_resample
  126. #define snd_pcm_hw_params_set_buffer_time_near psnd_pcm_hw_params_set_buffer_time_near
  127. #define snd_pcm_hw_params_set_period_time_near psnd_pcm_hw_params_set_period_time_near
  128. #define snd_pcm_hw_params_set_buffer_size_near psnd_pcm_hw_params_set_buffer_size_near
  129. #define snd_pcm_hw_params_set_period_size_near psnd_pcm_hw_params_set_period_size_near
  130. #define snd_pcm_hw_params_set_buffer_size_min psnd_pcm_hw_params_set_buffer_size_min
  131. #define snd_pcm_hw_params_get_buffer_time_min psnd_pcm_hw_params_get_buffer_time_min
  132. #define snd_pcm_hw_params_get_buffer_time_max psnd_pcm_hw_params_get_buffer_time_max
  133. #define snd_pcm_hw_params_get_period_time_min psnd_pcm_hw_params_get_period_time_min
  134. #define snd_pcm_hw_params_get_period_time_max psnd_pcm_hw_params_get_period_time_max
  135. #define snd_pcm_hw_params_get_buffer_size psnd_pcm_hw_params_get_buffer_size
  136. #define snd_pcm_hw_params_get_period_size psnd_pcm_hw_params_get_period_size
  137. #define snd_pcm_hw_params_get_access psnd_pcm_hw_params_get_access
  138. #define snd_pcm_hw_params_get_periods psnd_pcm_hw_params_get_periods
  139. #define snd_pcm_hw_params_test_format psnd_pcm_hw_params_test_format
  140. #define snd_pcm_hw_params_test_channels psnd_pcm_hw_params_test_channels
  141. #define snd_pcm_hw_params psnd_pcm_hw_params
  142. #define snd_pcm_sw_params_malloc psnd_pcm_sw_params_malloc
  143. #define snd_pcm_sw_params_current psnd_pcm_sw_params_current
  144. #define snd_pcm_sw_params_set_avail_min psnd_pcm_sw_params_set_avail_min
  145. #define snd_pcm_sw_params_set_stop_threshold psnd_pcm_sw_params_set_stop_threshold
  146. #define snd_pcm_sw_params psnd_pcm_sw_params
  147. #define snd_pcm_sw_params_free psnd_pcm_sw_params_free
  148. #define snd_pcm_prepare psnd_pcm_prepare
  149. #define snd_pcm_start psnd_pcm_start
  150. #define snd_pcm_resume psnd_pcm_resume
  151. #define snd_pcm_reset psnd_pcm_reset
  152. #define snd_pcm_wait psnd_pcm_wait
  153. #define snd_pcm_delay psnd_pcm_delay
  154. #define snd_pcm_state psnd_pcm_state
  155. #define snd_pcm_avail_update psnd_pcm_avail_update
  156. #define snd_pcm_areas_silence psnd_pcm_areas_silence
  157. #define snd_pcm_mmap_begin psnd_pcm_mmap_begin
  158. #define snd_pcm_mmap_commit psnd_pcm_mmap_commit
  159. #define snd_pcm_readi psnd_pcm_readi
  160. #define snd_pcm_writei psnd_pcm_writei
  161. #define snd_pcm_drain psnd_pcm_drain
  162. #define snd_pcm_drop psnd_pcm_drop
  163. #define snd_pcm_recover psnd_pcm_recover
  164. #define snd_pcm_info_malloc psnd_pcm_info_malloc
  165. #define snd_pcm_info_free psnd_pcm_info_free
  166. #define snd_pcm_info_set_device psnd_pcm_info_set_device
  167. #define snd_pcm_info_set_subdevice psnd_pcm_info_set_subdevice
  168. #define snd_pcm_info_set_stream psnd_pcm_info_set_stream
  169. #define snd_pcm_info_get_name psnd_pcm_info_get_name
  170. #define snd_ctl_pcm_next_device psnd_ctl_pcm_next_device
  171. #define snd_ctl_pcm_info psnd_ctl_pcm_info
  172. #define snd_ctl_open psnd_ctl_open
  173. #define snd_ctl_close psnd_ctl_close
  174. #define snd_ctl_card_info_malloc psnd_ctl_card_info_malloc
  175. #define snd_ctl_card_info_free psnd_ctl_card_info_free
  176. #define snd_ctl_card_info psnd_ctl_card_info
  177. #define snd_ctl_card_info_get_name psnd_ctl_card_info_get_name
  178. #define snd_ctl_card_info_get_id psnd_ctl_card_info_get_id
  179. #define snd_card_next psnd_card_next
  180. #define snd_config_update_free_global psnd_config_update_free_global
  181. #endif
  182. static ALCboolean alsa_load(void)
  183. {
  184. ALCboolean error = ALC_FALSE;
  185. #ifdef HAVE_DYNLOAD
  186. if(!alsa_handle)
  187. {
  188. al_string missing_funcs = AL_STRING_INIT_STATIC();
  189. alsa_handle = LoadLib("libasound.so.2");
  190. if(!alsa_handle)
  191. {
  192. WARN("Failed to load %s\n", "libasound.so.2");
  193. return ALC_FALSE;
  194. }
  195. error = ALC_FALSE;
  196. #define LOAD_FUNC(f) do { \
  197. p##f = GetSymbol(alsa_handle, #f); \
  198. if(p##f == NULL) { \
  199. error = ALC_TRUE; \
  200. alstr_append_cstr(&missing_funcs, "\n" #f); \
  201. } \
  202. } while(0)
  203. ALSA_FUNCS(LOAD_FUNC);
  204. #undef LOAD_FUNC
  205. if(error)
  206. {
  207. WARN("Missing expected functions:%s\n", alstr_get_cstr(missing_funcs));
  208. CloseLib(alsa_handle);
  209. alsa_handle = NULL;
  210. }
  211. alstr_reset(&missing_funcs);
  212. }
  213. #endif
  214. return !error;
  215. }
  216. typedef struct {
  217. al_string name;
  218. al_string device_name;
  219. } DevMap;
  220. TYPEDEF_VECTOR(DevMap, vector_DevMap)
  221. static vector_DevMap PlaybackDevices;
  222. static vector_DevMap CaptureDevices;
  223. static void clear_devlist(vector_DevMap *devlist)
  224. {
  225. #define FREE_DEV(i) do { \
  226. AL_STRING_DEINIT((i)->name); \
  227. AL_STRING_DEINIT((i)->device_name); \
  228. } while(0)
  229. VECTOR_FOR_EACH(DevMap, *devlist, FREE_DEV);
  230. VECTOR_RESIZE(*devlist, 0, 0);
  231. #undef FREE_DEV
  232. }
  233. static const char *prefix_name(snd_pcm_stream_t stream)
  234. {
  235. assert(stream == SND_PCM_STREAM_PLAYBACK || stream == SND_PCM_STREAM_CAPTURE);
  236. return (stream==SND_PCM_STREAM_PLAYBACK) ? "device-prefix" : "capture-prefix";
  237. }
  238. static void probe_devices(snd_pcm_stream_t stream, vector_DevMap *DeviceList)
  239. {
  240. const char *main_prefix = "plughw:";
  241. snd_ctl_t *handle;
  242. snd_ctl_card_info_t *info;
  243. snd_pcm_info_t *pcminfo;
  244. int card, err, dev;
  245. DevMap entry;
  246. clear_devlist(DeviceList);
  247. snd_ctl_card_info_malloc(&info);
  248. snd_pcm_info_malloc(&pcminfo);
  249. AL_STRING_INIT(entry.name);
  250. AL_STRING_INIT(entry.device_name);
  251. alstr_copy_cstr(&entry.name, alsaDevice);
  252. alstr_copy_cstr(&entry.device_name, GetConfigValue(
  253. NULL, "alsa", (stream==SND_PCM_STREAM_PLAYBACK) ? "device" : "capture", "default"
  254. ));
  255. VECTOR_PUSH_BACK(*DeviceList, entry);
  256. if(stream == SND_PCM_STREAM_PLAYBACK)
  257. {
  258. const char *customdevs, *sep, *next;
  259. next = GetConfigValue(NULL, "alsa", "custom-devices", "");
  260. while((customdevs=next) != NULL && customdevs[0])
  261. {
  262. next = strchr(customdevs, ';');
  263. sep = strchr(customdevs, '=');
  264. if(!sep)
  265. {
  266. al_string spec = AL_STRING_INIT_STATIC();
  267. if(next)
  268. alstr_copy_range(&spec, customdevs, next++);
  269. else
  270. alstr_copy_cstr(&spec, customdevs);
  271. ERR("Invalid ALSA device specification \"%s\"\n", alstr_get_cstr(spec));
  272. alstr_reset(&spec);
  273. continue;
  274. }
  275. AL_STRING_INIT(entry.name);
  276. AL_STRING_INIT(entry.device_name);
  277. alstr_copy_range(&entry.name, customdevs, sep++);
  278. if(next)
  279. alstr_copy_range(&entry.device_name, sep, next++);
  280. else
  281. alstr_copy_cstr(&entry.device_name, sep);
  282. TRACE("Got device \"%s\", \"%s\"\n", alstr_get_cstr(entry.name),
  283. alstr_get_cstr(entry.device_name));
  284. VECTOR_PUSH_BACK(*DeviceList, entry);
  285. }
  286. }
  287. card = -1;
  288. if((err=snd_card_next(&card)) < 0)
  289. ERR("Failed to find a card: %s\n", snd_strerror(err));
  290. ConfigValueStr(NULL, "alsa", prefix_name(stream), &main_prefix);
  291. while(card >= 0)
  292. {
  293. const char *card_prefix = main_prefix;
  294. const char *cardname, *cardid;
  295. char name[256];
  296. snprintf(name, sizeof(name), "hw:%d", card);
  297. if((err = snd_ctl_open(&handle, name, 0)) < 0)
  298. {
  299. ERR("control open (hw:%d): %s\n", card, snd_strerror(err));
  300. goto next_card;
  301. }
  302. if((err = snd_ctl_card_info(handle, info)) < 0)
  303. {
  304. ERR("control hardware info (hw:%d): %s\n", card, snd_strerror(err));
  305. snd_ctl_close(handle);
  306. goto next_card;
  307. }
  308. cardname = snd_ctl_card_info_get_name(info);
  309. cardid = snd_ctl_card_info_get_id(info);
  310. snprintf(name, sizeof(name), "%s-%s", prefix_name(stream), cardid);
  311. ConfigValueStr(NULL, "alsa", name, &card_prefix);
  312. dev = -1;
  313. while(1)
  314. {
  315. const char *device_prefix = card_prefix;
  316. const char *devname;
  317. char device[128];
  318. if(snd_ctl_pcm_next_device(handle, &dev) < 0)
  319. ERR("snd_ctl_pcm_next_device failed\n");
  320. if(dev < 0)
  321. break;
  322. snd_pcm_info_set_device(pcminfo, dev);
  323. snd_pcm_info_set_subdevice(pcminfo, 0);
  324. snd_pcm_info_set_stream(pcminfo, stream);
  325. if((err = snd_ctl_pcm_info(handle, pcminfo)) < 0)
  326. {
  327. if(err != -ENOENT)
  328. ERR("control digital audio info (hw:%d): %s\n", card, snd_strerror(err));
  329. continue;
  330. }
  331. devname = snd_pcm_info_get_name(pcminfo);
  332. snprintf(name, sizeof(name), "%s-%s-%d", prefix_name(stream), cardid, dev);
  333. ConfigValueStr(NULL, "alsa", name, &device_prefix);
  334. snprintf(name, sizeof(name), "%s, %s (CARD=%s,DEV=%d)",
  335. cardname, devname, cardid, dev);
  336. snprintf(device, sizeof(device), "%sCARD=%s,DEV=%d",
  337. device_prefix, cardid, dev);
  338. TRACE("Got device \"%s\", \"%s\"\n", name, device);
  339. AL_STRING_INIT(entry.name);
  340. AL_STRING_INIT(entry.device_name);
  341. alstr_copy_cstr(&entry.name, name);
  342. alstr_copy_cstr(&entry.device_name, device);
  343. VECTOR_PUSH_BACK(*DeviceList, entry);
  344. }
  345. snd_ctl_close(handle);
  346. next_card:
  347. if(snd_card_next(&card) < 0) {
  348. ERR("snd_card_next failed\n");
  349. break;
  350. }
  351. }
  352. snd_pcm_info_free(pcminfo);
  353. snd_ctl_card_info_free(info);
  354. }
  355. static int verify_state(snd_pcm_t *handle)
  356. {
  357. snd_pcm_state_t state = snd_pcm_state(handle);
  358. int err;
  359. switch(state)
  360. {
  361. case SND_PCM_STATE_OPEN:
  362. case SND_PCM_STATE_SETUP:
  363. case SND_PCM_STATE_PREPARED:
  364. case SND_PCM_STATE_RUNNING:
  365. case SND_PCM_STATE_DRAINING:
  366. case SND_PCM_STATE_PAUSED:
  367. /* All Okay */
  368. break;
  369. case SND_PCM_STATE_XRUN:
  370. if((err=snd_pcm_recover(handle, -EPIPE, 1)) < 0)
  371. return err;
  372. break;
  373. case SND_PCM_STATE_SUSPENDED:
  374. if((err=snd_pcm_recover(handle, -ESTRPIPE, 1)) < 0)
  375. return err;
  376. break;
  377. case SND_PCM_STATE_DISCONNECTED:
  378. return -ENODEV;
  379. }
  380. return state;
  381. }
  382. typedef struct ALCplaybackAlsa {
  383. DERIVE_FROM_TYPE(ALCbackend);
  384. snd_pcm_t *pcmHandle;
  385. ALvoid *buffer;
  386. ALsizei size;
  387. volatile int killNow;
  388. althrd_t thread;
  389. } ALCplaybackAlsa;
  390. static int ALCplaybackAlsa_mixerProc(void *ptr);
  391. static int ALCplaybackAlsa_mixerNoMMapProc(void *ptr);
  392. static void ALCplaybackAlsa_Construct(ALCplaybackAlsa *self, ALCdevice *device);
  393. static DECLARE_FORWARD(ALCplaybackAlsa, ALCbackend, void, Destruct)
  394. static ALCenum ALCplaybackAlsa_open(ALCplaybackAlsa *self, const ALCchar *name);
  395. static void ALCplaybackAlsa_close(ALCplaybackAlsa *self);
  396. static ALCboolean ALCplaybackAlsa_reset(ALCplaybackAlsa *self);
  397. static ALCboolean ALCplaybackAlsa_start(ALCplaybackAlsa *self);
  398. static void ALCplaybackAlsa_stop(ALCplaybackAlsa *self);
  399. static DECLARE_FORWARD2(ALCplaybackAlsa, ALCbackend, ALCenum, captureSamples, void*, ALCuint)
  400. static DECLARE_FORWARD(ALCplaybackAlsa, ALCbackend, ALCuint, availableSamples)
  401. static ClockLatency ALCplaybackAlsa_getClockLatency(ALCplaybackAlsa *self);
  402. static DECLARE_FORWARD(ALCplaybackAlsa, ALCbackend, void, lock)
  403. static DECLARE_FORWARD(ALCplaybackAlsa, ALCbackend, void, unlock)
  404. DECLARE_DEFAULT_ALLOCATORS(ALCplaybackAlsa)
  405. DEFINE_ALCBACKEND_VTABLE(ALCplaybackAlsa);
  406. static void ALCplaybackAlsa_Construct(ALCplaybackAlsa *self, ALCdevice *device)
  407. {
  408. ALCbackend_Construct(STATIC_CAST(ALCbackend, self), device);
  409. SET_VTABLE2(ALCplaybackAlsa, ALCbackend, self);
  410. }
  411. static int ALCplaybackAlsa_mixerProc(void *ptr)
  412. {
  413. ALCplaybackAlsa *self = (ALCplaybackAlsa*)ptr;
  414. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  415. const snd_pcm_channel_area_t *areas = NULL;
  416. snd_pcm_uframes_t update_size, num_updates;
  417. snd_pcm_sframes_t avail, commitres;
  418. snd_pcm_uframes_t offset, frames;
  419. char *WritePtr;
  420. int err;
  421. SetRTPriority();
  422. althrd_setname(althrd_current(), MIXER_THREAD_NAME);
  423. update_size = device->UpdateSize;
  424. num_updates = device->NumUpdates;
  425. while(!self->killNow)
  426. {
  427. int state = verify_state(self->pcmHandle);
  428. if(state < 0)
  429. {
  430. ERR("Invalid state detected: %s\n", snd_strerror(state));
  431. ALCplaybackAlsa_lock(self);
  432. aluHandleDisconnect(device);
  433. ALCplaybackAlsa_unlock(self);
  434. break;
  435. }
  436. avail = snd_pcm_avail_update(self->pcmHandle);
  437. if(avail < 0)
  438. {
  439. ERR("available update failed: %s\n", snd_strerror(avail));
  440. continue;
  441. }
  442. if((snd_pcm_uframes_t)avail > update_size*(num_updates+1))
  443. {
  444. WARN("available samples exceeds the buffer size\n");
  445. snd_pcm_reset(self->pcmHandle);
  446. continue;
  447. }
  448. // make sure there's frames to process
  449. if((snd_pcm_uframes_t)avail < update_size)
  450. {
  451. if(state != SND_PCM_STATE_RUNNING)
  452. {
  453. err = snd_pcm_start(self->pcmHandle);
  454. if(err < 0)
  455. {
  456. ERR("start failed: %s\n", snd_strerror(err));
  457. continue;
  458. }
  459. }
  460. if(snd_pcm_wait(self->pcmHandle, 1000) == 0)
  461. ERR("Wait timeout... buffer size too low?\n");
  462. continue;
  463. }
  464. avail -= avail%update_size;
  465. // it is possible that contiguous areas are smaller, thus we use a loop
  466. ALCplaybackAlsa_lock(self);
  467. while(avail > 0)
  468. {
  469. frames = avail;
  470. err = snd_pcm_mmap_begin(self->pcmHandle, &areas, &offset, &frames);
  471. if(err < 0)
  472. {
  473. ERR("mmap begin error: %s\n", snd_strerror(err));
  474. break;
  475. }
  476. WritePtr = (char*)areas->addr + (offset * areas->step / 8);
  477. aluMixData(device, WritePtr, frames);
  478. commitres = snd_pcm_mmap_commit(self->pcmHandle, offset, frames);
  479. if(commitres < 0 || (commitres-frames) != 0)
  480. {
  481. ERR("mmap commit error: %s\n",
  482. snd_strerror(commitres >= 0 ? -EPIPE : commitres));
  483. break;
  484. }
  485. avail -= frames;
  486. }
  487. ALCplaybackAlsa_unlock(self);
  488. }
  489. return 0;
  490. }
  491. static int ALCplaybackAlsa_mixerNoMMapProc(void *ptr)
  492. {
  493. ALCplaybackAlsa *self = (ALCplaybackAlsa*)ptr;
  494. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  495. snd_pcm_uframes_t update_size, num_updates;
  496. snd_pcm_sframes_t avail;
  497. char *WritePtr;
  498. int err;
  499. SetRTPriority();
  500. althrd_setname(althrd_current(), MIXER_THREAD_NAME);
  501. update_size = device->UpdateSize;
  502. num_updates = device->NumUpdates;
  503. while(!self->killNow)
  504. {
  505. int state = verify_state(self->pcmHandle);
  506. if(state < 0)
  507. {
  508. ERR("Invalid state detected: %s\n", snd_strerror(state));
  509. ALCplaybackAlsa_lock(self);
  510. aluHandleDisconnect(device);
  511. ALCplaybackAlsa_unlock(self);
  512. break;
  513. }
  514. avail = snd_pcm_avail_update(self->pcmHandle);
  515. if(avail < 0)
  516. {
  517. ERR("available update failed: %s\n", snd_strerror(avail));
  518. continue;
  519. }
  520. if((snd_pcm_uframes_t)avail > update_size*num_updates)
  521. {
  522. WARN("available samples exceeds the buffer size\n");
  523. snd_pcm_reset(self->pcmHandle);
  524. continue;
  525. }
  526. if((snd_pcm_uframes_t)avail < update_size)
  527. {
  528. if(state != SND_PCM_STATE_RUNNING)
  529. {
  530. err = snd_pcm_start(self->pcmHandle);
  531. if(err < 0)
  532. {
  533. ERR("start failed: %s\n", snd_strerror(err));
  534. continue;
  535. }
  536. }
  537. if(snd_pcm_wait(self->pcmHandle, 1000) == 0)
  538. ERR("Wait timeout... buffer size too low?\n");
  539. continue;
  540. }
  541. ALCplaybackAlsa_lock(self);
  542. WritePtr = self->buffer;
  543. avail = snd_pcm_bytes_to_frames(self->pcmHandle, self->size);
  544. aluMixData(device, WritePtr, avail);
  545. while(avail > 0)
  546. {
  547. int ret = snd_pcm_writei(self->pcmHandle, WritePtr, avail);
  548. switch (ret)
  549. {
  550. case -EAGAIN:
  551. continue;
  552. #if ESTRPIPE != EPIPE
  553. case -ESTRPIPE:
  554. #endif
  555. case -EPIPE:
  556. case -EINTR:
  557. ret = snd_pcm_recover(self->pcmHandle, ret, 1);
  558. if(ret < 0)
  559. avail = 0;
  560. break;
  561. default:
  562. if (ret >= 0)
  563. {
  564. WritePtr += snd_pcm_frames_to_bytes(self->pcmHandle, ret);
  565. avail -= ret;
  566. }
  567. break;
  568. }
  569. if (ret < 0)
  570. {
  571. ret = snd_pcm_prepare(self->pcmHandle);
  572. if(ret < 0)
  573. break;
  574. }
  575. }
  576. ALCplaybackAlsa_unlock(self);
  577. }
  578. return 0;
  579. }
  580. static ALCenum ALCplaybackAlsa_open(ALCplaybackAlsa *self, const ALCchar *name)
  581. {
  582. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  583. const char *driver = NULL;
  584. int err;
  585. if(name)
  586. {
  587. const DevMap *iter;
  588. if(VECTOR_SIZE(PlaybackDevices) == 0)
  589. probe_devices(SND_PCM_STREAM_PLAYBACK, &PlaybackDevices);
  590. #define MATCH_NAME(i) (alstr_cmp_cstr((i)->name, name) == 0)
  591. VECTOR_FIND_IF(iter, const DevMap, PlaybackDevices, MATCH_NAME);
  592. #undef MATCH_NAME
  593. if(iter == VECTOR_END(PlaybackDevices))
  594. return ALC_INVALID_VALUE;
  595. driver = alstr_get_cstr(iter->device_name);
  596. }
  597. else
  598. {
  599. name = alsaDevice;
  600. driver = GetConfigValue(NULL, "alsa", "device", "default");
  601. }
  602. TRACE("Opening device \"%s\"\n", driver);
  603. err = snd_pcm_open(&self->pcmHandle, driver, SND_PCM_STREAM_PLAYBACK, SND_PCM_NONBLOCK);
  604. if(err < 0)
  605. {
  606. ERR("Could not open playback device '%s': %s\n", driver, snd_strerror(err));
  607. return ALC_OUT_OF_MEMORY;
  608. }
  609. /* Free alsa's global config tree. Otherwise valgrind reports a ton of leaks. */
  610. snd_config_update_free_global();
  611. alstr_copy_cstr(&device->DeviceName, name);
  612. return ALC_NO_ERROR;
  613. }
  614. static void ALCplaybackAlsa_close(ALCplaybackAlsa *self)
  615. {
  616. snd_pcm_close(self->pcmHandle);
  617. }
  618. static ALCboolean ALCplaybackAlsa_reset(ALCplaybackAlsa *self)
  619. {
  620. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  621. snd_pcm_uframes_t periodSizeInFrames;
  622. unsigned int periodLen, bufferLen;
  623. snd_pcm_sw_params_t *sp = NULL;
  624. snd_pcm_hw_params_t *hp = NULL;
  625. snd_pcm_format_t format = -1;
  626. snd_pcm_access_t access;
  627. unsigned int periods;
  628. unsigned int rate;
  629. const char *funcerr;
  630. int allowmmap;
  631. int dir;
  632. int err;
  633. switch(device->FmtType)
  634. {
  635. case DevFmtByte:
  636. format = SND_PCM_FORMAT_S8;
  637. break;
  638. case DevFmtUByte:
  639. format = SND_PCM_FORMAT_U8;
  640. break;
  641. case DevFmtShort:
  642. format = SND_PCM_FORMAT_S16;
  643. break;
  644. case DevFmtUShort:
  645. format = SND_PCM_FORMAT_U16;
  646. break;
  647. case DevFmtInt:
  648. format = SND_PCM_FORMAT_S32;
  649. break;
  650. case DevFmtUInt:
  651. format = SND_PCM_FORMAT_U32;
  652. break;
  653. case DevFmtFloat:
  654. format = SND_PCM_FORMAT_FLOAT;
  655. break;
  656. }
  657. allowmmap = GetConfigValueBool(alstr_get_cstr(device->DeviceName), "alsa", "mmap", 1);
  658. periods = device->NumUpdates;
  659. periodLen = (ALuint64)device->UpdateSize * 1000000 / device->Frequency;
  660. bufferLen = periodLen * periods;
  661. rate = device->Frequency;
  662. snd_pcm_hw_params_malloc(&hp);
  663. #define CHECK(x) if((funcerr=#x),(err=(x)) < 0) goto error
  664. CHECK(snd_pcm_hw_params_any(self->pcmHandle, hp));
  665. /* set interleaved access */
  666. if(!allowmmap || snd_pcm_hw_params_set_access(self->pcmHandle, hp, SND_PCM_ACCESS_MMAP_INTERLEAVED) < 0)
  667. {
  668. /* No mmap */
  669. CHECK(snd_pcm_hw_params_set_access(self->pcmHandle, hp, SND_PCM_ACCESS_RW_INTERLEAVED));
  670. }
  671. /* test and set format (implicitly sets sample bits) */
  672. if(snd_pcm_hw_params_test_format(self->pcmHandle, hp, format) < 0)
  673. {
  674. static const struct {
  675. snd_pcm_format_t format;
  676. enum DevFmtType fmttype;
  677. } formatlist[] = {
  678. { SND_PCM_FORMAT_FLOAT, DevFmtFloat },
  679. { SND_PCM_FORMAT_S32, DevFmtInt },
  680. { SND_PCM_FORMAT_U32, DevFmtUInt },
  681. { SND_PCM_FORMAT_S16, DevFmtShort },
  682. { SND_PCM_FORMAT_U16, DevFmtUShort },
  683. { SND_PCM_FORMAT_S8, DevFmtByte },
  684. { SND_PCM_FORMAT_U8, DevFmtUByte },
  685. };
  686. size_t k;
  687. for(k = 0;k < COUNTOF(formatlist);k++)
  688. {
  689. format = formatlist[k].format;
  690. if(snd_pcm_hw_params_test_format(self->pcmHandle, hp, format) >= 0)
  691. {
  692. device->FmtType = formatlist[k].fmttype;
  693. break;
  694. }
  695. }
  696. }
  697. CHECK(snd_pcm_hw_params_set_format(self->pcmHandle, hp, format));
  698. /* test and set channels (implicitly sets frame bits) */
  699. if(snd_pcm_hw_params_test_channels(self->pcmHandle, hp, ChannelsFromDevFmt(device->FmtChans, device->AmbiOrder)) < 0)
  700. {
  701. static const enum DevFmtChannels channellist[] = {
  702. DevFmtStereo,
  703. DevFmtQuad,
  704. DevFmtX51,
  705. DevFmtX71,
  706. DevFmtMono,
  707. };
  708. size_t k;
  709. for(k = 0;k < COUNTOF(channellist);k++)
  710. {
  711. if(snd_pcm_hw_params_test_channels(self->pcmHandle, hp, ChannelsFromDevFmt(channellist[k], 0)) >= 0)
  712. {
  713. device->FmtChans = channellist[k];
  714. device->AmbiOrder = 0;
  715. break;
  716. }
  717. }
  718. }
  719. CHECK(snd_pcm_hw_params_set_channels(self->pcmHandle, hp, ChannelsFromDevFmt(device->FmtChans, device->AmbiOrder)));
  720. /* set rate (implicitly constrains period/buffer parameters) */
  721. if(!GetConfigValueBool(alstr_get_cstr(device->DeviceName), "alsa", "allow-resampler", 0) ||
  722. !(device->Flags&DEVICE_FREQUENCY_REQUEST))
  723. {
  724. if(snd_pcm_hw_params_set_rate_resample(self->pcmHandle, hp, 0) < 0)
  725. ERR("Failed to disable ALSA resampler\n");
  726. }
  727. else if(snd_pcm_hw_params_set_rate_resample(self->pcmHandle, hp, 1) < 0)
  728. ERR("Failed to enable ALSA resampler\n");
  729. CHECK(snd_pcm_hw_params_set_rate_near(self->pcmHandle, hp, &rate, NULL));
  730. /* set buffer time (implicitly constrains period/buffer parameters) */
  731. if((err=snd_pcm_hw_params_set_buffer_time_near(self->pcmHandle, hp, &bufferLen, NULL)) < 0)
  732. ERR("snd_pcm_hw_params_set_buffer_time_near failed: %s\n", snd_strerror(err));
  733. /* set period time (implicitly sets buffer size/bytes/time and period size/bytes) */
  734. if((err=snd_pcm_hw_params_set_period_time_near(self->pcmHandle, hp, &periodLen, NULL)) < 0)
  735. ERR("snd_pcm_hw_params_set_period_time_near failed: %s\n", snd_strerror(err));
  736. /* install and prepare hardware configuration */
  737. CHECK(snd_pcm_hw_params(self->pcmHandle, hp));
  738. /* retrieve configuration info */
  739. CHECK(snd_pcm_hw_params_get_access(hp, &access));
  740. CHECK(snd_pcm_hw_params_get_period_size(hp, &periodSizeInFrames, NULL));
  741. CHECK(snd_pcm_hw_params_get_periods(hp, &periods, &dir));
  742. if(dir != 0)
  743. WARN("Inexact period count: %u (%d)\n", periods, dir);
  744. snd_pcm_hw_params_free(hp);
  745. hp = NULL;
  746. snd_pcm_sw_params_malloc(&sp);
  747. CHECK(snd_pcm_sw_params_current(self->pcmHandle, sp));
  748. CHECK(snd_pcm_sw_params_set_avail_min(self->pcmHandle, sp, periodSizeInFrames));
  749. CHECK(snd_pcm_sw_params_set_stop_threshold(self->pcmHandle, sp, periodSizeInFrames*periods));
  750. CHECK(snd_pcm_sw_params(self->pcmHandle, sp));
  751. #undef CHECK
  752. snd_pcm_sw_params_free(sp);
  753. sp = NULL;
  754. device->NumUpdates = periods;
  755. device->UpdateSize = periodSizeInFrames;
  756. device->Frequency = rate;
  757. SetDefaultChannelOrder(device);
  758. return ALC_TRUE;
  759. error:
  760. ERR("%s failed: %s\n", funcerr, snd_strerror(err));
  761. if(hp) snd_pcm_hw_params_free(hp);
  762. if(sp) snd_pcm_sw_params_free(sp);
  763. return ALC_FALSE;
  764. }
  765. static ALCboolean ALCplaybackAlsa_start(ALCplaybackAlsa *self)
  766. {
  767. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  768. int (*thread_func)(void*) = NULL;
  769. snd_pcm_hw_params_t *hp = NULL;
  770. snd_pcm_access_t access;
  771. const char *funcerr;
  772. int err;
  773. snd_pcm_hw_params_malloc(&hp);
  774. #define CHECK(x) if((funcerr=#x),(err=(x)) < 0) goto error
  775. CHECK(snd_pcm_hw_params_current(self->pcmHandle, hp));
  776. /* retrieve configuration info */
  777. CHECK(snd_pcm_hw_params_get_access(hp, &access));
  778. #undef CHECK
  779. snd_pcm_hw_params_free(hp);
  780. hp = NULL;
  781. self->size = snd_pcm_frames_to_bytes(self->pcmHandle, device->UpdateSize);
  782. if(access == SND_PCM_ACCESS_RW_INTERLEAVED)
  783. {
  784. self->buffer = al_malloc(16, self->size);
  785. if(!self->buffer)
  786. {
  787. ERR("buffer malloc failed\n");
  788. return ALC_FALSE;
  789. }
  790. thread_func = ALCplaybackAlsa_mixerNoMMapProc;
  791. }
  792. else
  793. {
  794. err = snd_pcm_prepare(self->pcmHandle);
  795. if(err < 0)
  796. {
  797. ERR("snd_pcm_prepare(data->pcmHandle) failed: %s\n", snd_strerror(err));
  798. return ALC_FALSE;
  799. }
  800. thread_func = ALCplaybackAlsa_mixerProc;
  801. }
  802. self->killNow = 0;
  803. if(althrd_create(&self->thread, thread_func, self) != althrd_success)
  804. {
  805. ERR("Could not create playback thread\n");
  806. al_free(self->buffer);
  807. self->buffer = NULL;
  808. return ALC_FALSE;
  809. }
  810. return ALC_TRUE;
  811. error:
  812. ERR("%s failed: %s\n", funcerr, snd_strerror(err));
  813. if(hp) snd_pcm_hw_params_free(hp);
  814. return ALC_FALSE;
  815. }
  816. static void ALCplaybackAlsa_stop(ALCplaybackAlsa *self)
  817. {
  818. int res;
  819. if(self->killNow)
  820. return;
  821. self->killNow = 1;
  822. althrd_join(self->thread, &res);
  823. al_free(self->buffer);
  824. self->buffer = NULL;
  825. }
  826. static ClockLatency ALCplaybackAlsa_getClockLatency(ALCplaybackAlsa *self)
  827. {
  828. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  829. snd_pcm_sframes_t delay = 0;
  830. ClockLatency ret;
  831. int err;
  832. ALCplaybackAlsa_lock(self);
  833. ret.ClockTime = GetDeviceClockTime(device);
  834. if((err=snd_pcm_delay(self->pcmHandle, &delay)) < 0)
  835. {
  836. ERR("Failed to get pcm delay: %s\n", snd_strerror(err));
  837. delay = 0;
  838. }
  839. if(delay < 0) delay = 0;
  840. ret.Latency = delay * DEVICE_CLOCK_RES / device->Frequency;
  841. ALCplaybackAlsa_unlock(self);
  842. return ret;
  843. }
  844. typedef struct ALCcaptureAlsa {
  845. DERIVE_FROM_TYPE(ALCbackend);
  846. snd_pcm_t *pcmHandle;
  847. ALvoid *buffer;
  848. ALsizei size;
  849. ALboolean doCapture;
  850. ll_ringbuffer_t *ring;
  851. snd_pcm_sframes_t last_avail;
  852. } ALCcaptureAlsa;
  853. static void ALCcaptureAlsa_Construct(ALCcaptureAlsa *self, ALCdevice *device);
  854. static DECLARE_FORWARD(ALCcaptureAlsa, ALCbackend, void, Destruct)
  855. static ALCenum ALCcaptureAlsa_open(ALCcaptureAlsa *self, const ALCchar *name);
  856. static void ALCcaptureAlsa_close(ALCcaptureAlsa *self);
  857. static DECLARE_FORWARD(ALCcaptureAlsa, ALCbackend, ALCboolean, reset)
  858. static ALCboolean ALCcaptureAlsa_start(ALCcaptureAlsa *self);
  859. static void ALCcaptureAlsa_stop(ALCcaptureAlsa *self);
  860. static ALCenum ALCcaptureAlsa_captureSamples(ALCcaptureAlsa *self, ALCvoid *buffer, ALCuint samples);
  861. static ALCuint ALCcaptureAlsa_availableSamples(ALCcaptureAlsa *self);
  862. static ClockLatency ALCcaptureAlsa_getClockLatency(ALCcaptureAlsa *self);
  863. static DECLARE_FORWARD(ALCcaptureAlsa, ALCbackend, void, lock)
  864. static DECLARE_FORWARD(ALCcaptureAlsa, ALCbackend, void, unlock)
  865. DECLARE_DEFAULT_ALLOCATORS(ALCcaptureAlsa)
  866. DEFINE_ALCBACKEND_VTABLE(ALCcaptureAlsa);
  867. static void ALCcaptureAlsa_Construct(ALCcaptureAlsa *self, ALCdevice *device)
  868. {
  869. ALCbackend_Construct(STATIC_CAST(ALCbackend, self), device);
  870. SET_VTABLE2(ALCcaptureAlsa, ALCbackend, self);
  871. }
  872. static ALCenum ALCcaptureAlsa_open(ALCcaptureAlsa *self, const ALCchar *name)
  873. {
  874. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  875. const char *driver = NULL;
  876. snd_pcm_hw_params_t *hp;
  877. snd_pcm_uframes_t bufferSizeInFrames;
  878. snd_pcm_uframes_t periodSizeInFrames;
  879. ALboolean needring = AL_FALSE;
  880. snd_pcm_format_t format = -1;
  881. const char *funcerr;
  882. int err;
  883. if(name)
  884. {
  885. const DevMap *iter;
  886. if(VECTOR_SIZE(CaptureDevices) == 0)
  887. probe_devices(SND_PCM_STREAM_CAPTURE, &CaptureDevices);
  888. #define MATCH_NAME(i) (alstr_cmp_cstr((i)->name, name) == 0)
  889. VECTOR_FIND_IF(iter, const DevMap, CaptureDevices, MATCH_NAME);
  890. #undef MATCH_NAME
  891. if(iter == VECTOR_END(CaptureDevices))
  892. return ALC_INVALID_VALUE;
  893. driver = alstr_get_cstr(iter->device_name);
  894. }
  895. else
  896. {
  897. name = alsaDevice;
  898. driver = GetConfigValue(NULL, "alsa", "capture", "default");
  899. }
  900. TRACE("Opening device \"%s\"\n", driver);
  901. err = snd_pcm_open(&self->pcmHandle, driver, SND_PCM_STREAM_CAPTURE, SND_PCM_NONBLOCK);
  902. if(err < 0)
  903. {
  904. ERR("Could not open capture device '%s': %s\n", driver, snd_strerror(err));
  905. return ALC_INVALID_VALUE;
  906. }
  907. /* Free alsa's global config tree. Otherwise valgrind reports a ton of leaks. */
  908. snd_config_update_free_global();
  909. switch(device->FmtType)
  910. {
  911. case DevFmtByte:
  912. format = SND_PCM_FORMAT_S8;
  913. break;
  914. case DevFmtUByte:
  915. format = SND_PCM_FORMAT_U8;
  916. break;
  917. case DevFmtShort:
  918. format = SND_PCM_FORMAT_S16;
  919. break;
  920. case DevFmtUShort:
  921. format = SND_PCM_FORMAT_U16;
  922. break;
  923. case DevFmtInt:
  924. format = SND_PCM_FORMAT_S32;
  925. break;
  926. case DevFmtUInt:
  927. format = SND_PCM_FORMAT_U32;
  928. break;
  929. case DevFmtFloat:
  930. format = SND_PCM_FORMAT_FLOAT;
  931. break;
  932. }
  933. funcerr = NULL;
  934. bufferSizeInFrames = maxu(device->UpdateSize*device->NumUpdates,
  935. 100*device->Frequency/1000);
  936. periodSizeInFrames = minu(bufferSizeInFrames, 25*device->Frequency/1000);
  937. snd_pcm_hw_params_malloc(&hp);
  938. #define CHECK(x) if((funcerr=#x),(err=(x)) < 0) goto error
  939. CHECK(snd_pcm_hw_params_any(self->pcmHandle, hp));
  940. /* set interleaved access */
  941. CHECK(snd_pcm_hw_params_set_access(self->pcmHandle, hp, SND_PCM_ACCESS_RW_INTERLEAVED));
  942. /* set format (implicitly sets sample bits) */
  943. CHECK(snd_pcm_hw_params_set_format(self->pcmHandle, hp, format));
  944. /* set channels (implicitly sets frame bits) */
  945. CHECK(snd_pcm_hw_params_set_channels(self->pcmHandle, hp, ChannelsFromDevFmt(device->FmtChans, device->AmbiOrder)));
  946. /* set rate (implicitly constrains period/buffer parameters) */
  947. CHECK(snd_pcm_hw_params_set_rate(self->pcmHandle, hp, device->Frequency, 0));
  948. /* set buffer size in frame units (implicitly sets period size/bytes/time and buffer time/bytes) */
  949. if(snd_pcm_hw_params_set_buffer_size_min(self->pcmHandle, hp, &bufferSizeInFrames) < 0)
  950. {
  951. TRACE("Buffer too large, using intermediate ring buffer\n");
  952. needring = AL_TRUE;
  953. CHECK(snd_pcm_hw_params_set_buffer_size_near(self->pcmHandle, hp, &bufferSizeInFrames));
  954. }
  955. /* set buffer size in frame units (implicitly sets period size/bytes/time and buffer time/bytes) */
  956. CHECK(snd_pcm_hw_params_set_period_size_near(self->pcmHandle, hp, &periodSizeInFrames, NULL));
  957. /* install and prepare hardware configuration */
  958. CHECK(snd_pcm_hw_params(self->pcmHandle, hp));
  959. /* retrieve configuration info */
  960. CHECK(snd_pcm_hw_params_get_period_size(hp, &periodSizeInFrames, NULL));
  961. #undef CHECK
  962. snd_pcm_hw_params_free(hp);
  963. hp = NULL;
  964. if(needring)
  965. {
  966. self->ring = ll_ringbuffer_create(
  967. device->UpdateSize*device->NumUpdates + 1,
  968. FrameSizeFromDevFmt(device->FmtChans, device->FmtType, device->AmbiOrder)
  969. );
  970. if(!self->ring)
  971. {
  972. ERR("ring buffer create failed\n");
  973. goto error2;
  974. }
  975. }
  976. alstr_copy_cstr(&device->DeviceName, name);
  977. return ALC_NO_ERROR;
  978. error:
  979. ERR("%s failed: %s\n", funcerr, snd_strerror(err));
  980. if(hp) snd_pcm_hw_params_free(hp);
  981. error2:
  982. ll_ringbuffer_free(self->ring);
  983. self->ring = NULL;
  984. snd_pcm_close(self->pcmHandle);
  985. return ALC_INVALID_VALUE;
  986. }
  987. static void ALCcaptureAlsa_close(ALCcaptureAlsa *self)
  988. {
  989. snd_pcm_close(self->pcmHandle);
  990. ll_ringbuffer_free(self->ring);
  991. al_free(self->buffer);
  992. self->buffer = NULL;
  993. }
  994. static ALCboolean ALCcaptureAlsa_start(ALCcaptureAlsa *self)
  995. {
  996. int err = snd_pcm_start(self->pcmHandle);
  997. if(err < 0)
  998. {
  999. ERR("start failed: %s\n", snd_strerror(err));
  1000. aluHandleDisconnect(STATIC_CAST(ALCbackend, self)->mDevice);
  1001. return ALC_FALSE;
  1002. }
  1003. self->doCapture = AL_TRUE;
  1004. return ALC_TRUE;
  1005. }
  1006. static void ALCcaptureAlsa_stop(ALCcaptureAlsa *self)
  1007. {
  1008. ALCuint avail;
  1009. int err;
  1010. /* OpenAL requires access to unread audio after stopping, but ALSA's
  1011. * snd_pcm_drain is unreliable and snd_pcm_drop drops it. Capture what's
  1012. * available now so it'll be available later after the drop. */
  1013. avail = ALCcaptureAlsa_availableSamples(self);
  1014. if(!self->ring && avail > 0)
  1015. {
  1016. /* The ring buffer implicitly captures when checking availability.
  1017. * Direct access needs to explicitly capture it into temp storage. */
  1018. ALsizei size;
  1019. void *ptr;
  1020. size = snd_pcm_frames_to_bytes(self->pcmHandle, avail);
  1021. ptr = al_malloc(16, size);
  1022. if(ptr)
  1023. {
  1024. ALCcaptureAlsa_captureSamples(self, ptr, avail);
  1025. al_free(self->buffer);
  1026. self->buffer = ptr;
  1027. self->size = size;
  1028. }
  1029. }
  1030. err = snd_pcm_drop(self->pcmHandle);
  1031. if(err < 0)
  1032. ERR("drop failed: %s\n", snd_strerror(err));
  1033. self->doCapture = AL_FALSE;
  1034. }
  1035. static ALCenum ALCcaptureAlsa_captureSamples(ALCcaptureAlsa *self, ALCvoid *buffer, ALCuint samples)
  1036. {
  1037. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  1038. if(self->ring)
  1039. {
  1040. ll_ringbuffer_read(self->ring, buffer, samples);
  1041. return ALC_NO_ERROR;
  1042. }
  1043. self->last_avail -= samples;
  1044. while(device->Connected && samples > 0)
  1045. {
  1046. snd_pcm_sframes_t amt = 0;
  1047. if(self->size > 0)
  1048. {
  1049. /* First get any data stored from the last stop */
  1050. amt = snd_pcm_bytes_to_frames(self->pcmHandle, self->size);
  1051. if((snd_pcm_uframes_t)amt > samples) amt = samples;
  1052. amt = snd_pcm_frames_to_bytes(self->pcmHandle, amt);
  1053. memcpy(buffer, self->buffer, amt);
  1054. if(self->size > amt)
  1055. {
  1056. memmove(self->buffer, self->buffer+amt, self->size - amt);
  1057. self->size -= amt;
  1058. }
  1059. else
  1060. {
  1061. al_free(self->buffer);
  1062. self->buffer = NULL;
  1063. self->size = 0;
  1064. }
  1065. amt = snd_pcm_bytes_to_frames(self->pcmHandle, amt);
  1066. }
  1067. else if(self->doCapture)
  1068. amt = snd_pcm_readi(self->pcmHandle, buffer, samples);
  1069. if(amt < 0)
  1070. {
  1071. ERR("read error: %s\n", snd_strerror(amt));
  1072. if(amt == -EAGAIN)
  1073. continue;
  1074. if((amt=snd_pcm_recover(self->pcmHandle, amt, 1)) >= 0)
  1075. {
  1076. amt = snd_pcm_start(self->pcmHandle);
  1077. if(amt >= 0)
  1078. amt = snd_pcm_avail_update(self->pcmHandle);
  1079. }
  1080. if(amt < 0)
  1081. {
  1082. ERR("restore error: %s\n", snd_strerror(amt));
  1083. aluHandleDisconnect(device);
  1084. break;
  1085. }
  1086. /* If the amount available is less than what's asked, we lost it
  1087. * during recovery. So just give silence instead. */
  1088. if((snd_pcm_uframes_t)amt < samples)
  1089. break;
  1090. continue;
  1091. }
  1092. buffer = (ALbyte*)buffer + amt;
  1093. samples -= amt;
  1094. }
  1095. if(samples > 0)
  1096. memset(buffer, ((device->FmtType == DevFmtUByte) ? 0x80 : 0),
  1097. snd_pcm_frames_to_bytes(self->pcmHandle, samples));
  1098. return ALC_NO_ERROR;
  1099. }
  1100. static ALCuint ALCcaptureAlsa_availableSamples(ALCcaptureAlsa *self)
  1101. {
  1102. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  1103. snd_pcm_sframes_t avail = 0;
  1104. if(device->Connected && self->doCapture)
  1105. avail = snd_pcm_avail_update(self->pcmHandle);
  1106. if(avail < 0)
  1107. {
  1108. ERR("avail update failed: %s\n", snd_strerror(avail));
  1109. if((avail=snd_pcm_recover(self->pcmHandle, avail, 1)) >= 0)
  1110. {
  1111. if(self->doCapture)
  1112. avail = snd_pcm_start(self->pcmHandle);
  1113. if(avail >= 0)
  1114. avail = snd_pcm_avail_update(self->pcmHandle);
  1115. }
  1116. if(avail < 0)
  1117. {
  1118. ERR("restore error: %s\n", snd_strerror(avail));
  1119. aluHandleDisconnect(device);
  1120. }
  1121. }
  1122. if(!self->ring)
  1123. {
  1124. if(avail < 0) avail = 0;
  1125. avail += snd_pcm_bytes_to_frames(self->pcmHandle, self->size);
  1126. if(avail > self->last_avail) self->last_avail = avail;
  1127. return self->last_avail;
  1128. }
  1129. while(avail > 0)
  1130. {
  1131. ll_ringbuffer_data_t vec[2];
  1132. snd_pcm_sframes_t amt;
  1133. ll_ringbuffer_get_write_vector(self->ring, vec);
  1134. if(vec[0].len == 0) break;
  1135. amt = (vec[0].len < (snd_pcm_uframes_t)avail) ?
  1136. vec[0].len : (snd_pcm_uframes_t)avail;
  1137. amt = snd_pcm_readi(self->pcmHandle, vec[0].buf, amt);
  1138. if(amt < 0)
  1139. {
  1140. ERR("read error: %s\n", snd_strerror(amt));
  1141. if(amt == -EAGAIN)
  1142. continue;
  1143. if((amt=snd_pcm_recover(self->pcmHandle, amt, 1)) >= 0)
  1144. {
  1145. if(self->doCapture)
  1146. amt = snd_pcm_start(self->pcmHandle);
  1147. if(amt >= 0)
  1148. amt = snd_pcm_avail_update(self->pcmHandle);
  1149. }
  1150. if(amt < 0)
  1151. {
  1152. ERR("restore error: %s\n", snd_strerror(amt));
  1153. aluHandleDisconnect(device);
  1154. break;
  1155. }
  1156. avail = amt;
  1157. continue;
  1158. }
  1159. ll_ringbuffer_write_advance(self->ring, amt);
  1160. avail -= amt;
  1161. }
  1162. return ll_ringbuffer_read_space(self->ring);
  1163. }
  1164. static ClockLatency ALCcaptureAlsa_getClockLatency(ALCcaptureAlsa *self)
  1165. {
  1166. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  1167. snd_pcm_sframes_t delay = 0;
  1168. ClockLatency ret;
  1169. int err;
  1170. ALCcaptureAlsa_lock(self);
  1171. ret.ClockTime = GetDeviceClockTime(device);
  1172. if((err=snd_pcm_delay(self->pcmHandle, &delay)) < 0)
  1173. {
  1174. ERR("Failed to get pcm delay: %s\n", snd_strerror(err));
  1175. delay = 0;
  1176. }
  1177. if(delay < 0) delay = 0;
  1178. ret.Latency = delay * DEVICE_CLOCK_RES / device->Frequency;
  1179. ALCcaptureAlsa_unlock(self);
  1180. return ret;
  1181. }
  1182. static inline void AppendAllDevicesList2(const DevMap *entry)
  1183. { AppendAllDevicesList(alstr_get_cstr(entry->name)); }
  1184. static inline void AppendCaptureDeviceList2(const DevMap *entry)
  1185. { AppendCaptureDeviceList(alstr_get_cstr(entry->name)); }
  1186. typedef struct ALCalsaBackendFactory {
  1187. DERIVE_FROM_TYPE(ALCbackendFactory);
  1188. } ALCalsaBackendFactory;
  1189. #define ALCALSABACKENDFACTORY_INITIALIZER { { GET_VTABLE2(ALCalsaBackendFactory, ALCbackendFactory) } }
  1190. static ALCboolean ALCalsaBackendFactory_init(ALCalsaBackendFactory* UNUSED(self))
  1191. {
  1192. VECTOR_INIT(PlaybackDevices);
  1193. VECTOR_INIT(CaptureDevices);
  1194. if(!alsa_load())
  1195. return ALC_FALSE;
  1196. return ALC_TRUE;
  1197. }
  1198. static void ALCalsaBackendFactory_deinit(ALCalsaBackendFactory* UNUSED(self))
  1199. {
  1200. clear_devlist(&PlaybackDevices);
  1201. VECTOR_DEINIT(PlaybackDevices);
  1202. clear_devlist(&CaptureDevices);
  1203. VECTOR_DEINIT(CaptureDevices);
  1204. #ifdef HAVE_DYNLOAD
  1205. if(alsa_handle)
  1206. CloseLib(alsa_handle);
  1207. alsa_handle = NULL;
  1208. #endif
  1209. }
  1210. static ALCboolean ALCalsaBackendFactory_querySupport(ALCalsaBackendFactory* UNUSED(self), ALCbackend_Type type)
  1211. {
  1212. if(type == ALCbackend_Playback || type == ALCbackend_Capture)
  1213. return ALC_TRUE;
  1214. return ALC_FALSE;
  1215. }
  1216. static void ALCalsaBackendFactory_probe(ALCalsaBackendFactory* UNUSED(self), enum DevProbe type)
  1217. {
  1218. switch(type)
  1219. {
  1220. case ALL_DEVICE_PROBE:
  1221. probe_devices(SND_PCM_STREAM_PLAYBACK, &PlaybackDevices);
  1222. VECTOR_FOR_EACH(const DevMap, PlaybackDevices, AppendAllDevicesList2);
  1223. break;
  1224. case CAPTURE_DEVICE_PROBE:
  1225. probe_devices(SND_PCM_STREAM_CAPTURE, &CaptureDevices);
  1226. VECTOR_FOR_EACH(const DevMap, CaptureDevices, AppendCaptureDeviceList2);
  1227. break;
  1228. }
  1229. }
  1230. static ALCbackend* ALCalsaBackendFactory_createBackend(ALCalsaBackendFactory* UNUSED(self), ALCdevice *device, ALCbackend_Type type)
  1231. {
  1232. if(type == ALCbackend_Playback)
  1233. {
  1234. ALCplaybackAlsa *backend;
  1235. NEW_OBJ(backend, ALCplaybackAlsa)(device);
  1236. if(!backend) return NULL;
  1237. return STATIC_CAST(ALCbackend, backend);
  1238. }
  1239. if(type == ALCbackend_Capture)
  1240. {
  1241. ALCcaptureAlsa *backend;
  1242. NEW_OBJ(backend, ALCcaptureAlsa)(device);
  1243. if(!backend) return NULL;
  1244. return STATIC_CAST(ALCbackend, backend);
  1245. }
  1246. return NULL;
  1247. }
  1248. DEFINE_ALCBACKENDFACTORY_VTABLE(ALCalsaBackendFactory);
  1249. ALCbackendFactory *ALCalsaBackendFactory_getFactory(void)
  1250. {
  1251. static ALCalsaBackendFactory factory = ALCALSABACKENDFACTORY_INITIALIZER;
  1252. return STATIC_CAST(ALCbackendFactory, &factory);
  1253. }