jack2 codebase
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  1. /*
  2. Copyright (C) 2001 Paul Davis
  3. Copyright (C) 2004 Grame
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License as published by
  6. the Free Software Foundation; either version 2 of the License, or
  7. (at your option) any later version.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License for more details.
  12. You should have received a copy of the GNU General Public License
  13. along with this program; if not, write to the Free Software
  14. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  15. */
  16. #define __STDC_FORMAT_MACROS // For inttypes.h to work in C++
  17. #include <iostream>
  18. #include <math.h>
  19. #include <stdio.h>
  20. #include <memory.h>
  21. #include <unistd.h>
  22. #include <stdlib.h>
  23. #include <errno.h>
  24. #include <stdarg.h>
  25. #include <signal.h>
  26. #include <sys/types.h>
  27. #include <sys/time.h>
  28. #include <string.h>
  29. #include "JackAlsaDriver.h"
  30. #include "JackEngineControl.h"
  31. #include "JackClientControl.h"
  32. #include "JackPort.h"
  33. #include "JackGraphManager.h"
  34. #include "JackLockedEngine.h"
  35. #ifdef __ANDROID__
  36. #include "JackAndroidThread.h"
  37. #else
  38. #include "JackPosixThread.h"
  39. #endif
  40. #include "JackCompilerDeps.h"
  41. #include "JackServerGlobals.h"
  42. namespace Jack
  43. {
  44. int JackAlsaDriver::SetBufferSize(jack_nframes_t buffer_size)
  45. {
  46. jack_log("JackAlsaDriver::SetBufferSize %ld", buffer_size);
  47. int res = alsa_driver_reset_parameters((alsa_driver_t *)fDriver, buffer_size,
  48. ((alsa_driver_t *)fDriver)->user_nperiods,
  49. ((alsa_driver_t *)fDriver)->frame_rate);
  50. if (res == 0) { // update fEngineControl and fGraphManager
  51. JackAudioDriver::SetBufferSize(buffer_size); // Generic change, never fails
  52. // ALSA specific
  53. UpdateLatencies();
  54. } else {
  55. // Restore old values
  56. alsa_driver_reset_parameters((alsa_driver_t *)fDriver, fEngineControl->fBufferSize,
  57. ((alsa_driver_t *)fDriver)->user_nperiods,
  58. ((alsa_driver_t *)fDriver)->frame_rate);
  59. }
  60. return res;
  61. }
  62. void JackAlsaDriver::UpdateLatencies()
  63. {
  64. jack_latency_range_t range;
  65. alsa_driver_t* alsa_driver = (alsa_driver_t*)fDriver;
  66. for (int i = 0; i < fCaptureChannels; i++) {
  67. range.min = range.max = alsa_driver->frames_per_cycle + alsa_driver->capture_frame_latency;
  68. fGraphManager->GetPort(fCapturePortList[i])->SetLatencyRange(JackCaptureLatency, &range);
  69. }
  70. for (int i = 0; i < fPlaybackChannels; i++) {
  71. // Add one buffer more latency if "async" mode is used...
  72. range.min = range.max = (alsa_driver->frames_per_cycle * (alsa_driver->user_nperiods - 1)) +
  73. ((fEngineControl->fSyncMode) ? 0 : fEngineControl->fBufferSize) + alsa_driver->playback_frame_latency;
  74. fGraphManager->GetPort(fPlaybackPortList[i])->SetLatencyRange(JackPlaybackLatency, &range);
  75. // Monitor port
  76. if (fWithMonitorPorts) {
  77. range.min = range.max = alsa_driver->frames_per_cycle;
  78. fGraphManager->GetPort(fMonitorPortList[i])->SetLatencyRange(JackCaptureLatency, &range);
  79. }
  80. }
  81. }
  82. int JackAlsaDriver::Attach()
  83. {
  84. JackPort* port;
  85. jack_port_id_t port_index;
  86. unsigned long port_flags = (unsigned long)CaptureDriverFlags;
  87. char name[REAL_JACK_PORT_NAME_SIZE];
  88. char alias[REAL_JACK_PORT_NAME_SIZE];
  89. assert(fCaptureChannels < DRIVER_PORT_NUM);
  90. assert(fPlaybackChannels < DRIVER_PORT_NUM);
  91. alsa_driver_t* alsa_driver = (alsa_driver_t*)fDriver;
  92. if (alsa_driver->has_hw_monitoring)
  93. port_flags |= JackPortCanMonitor;
  94. // ALSA driver may have changed the values
  95. JackAudioDriver::SetBufferSize(alsa_driver->frames_per_cycle);
  96. JackAudioDriver::SetSampleRate(alsa_driver->frame_rate);
  97. jack_log("JackAlsaDriver::Attach fBufferSize %ld fSampleRate %ld", fEngineControl->fBufferSize, fEngineControl->fSampleRate);
  98. for (int i = 0; i < fCaptureChannels; i++) {
  99. snprintf(alias, sizeof(alias), "%s:%s:out%d", fAliasName, fCaptureDriverName, i + 1);
  100. snprintf(name, sizeof(name), "%s:capture_%d", fClientControl.fName, i + 1);
  101. if (fEngine->PortRegister(fClientControl.fRefNum, name, JACK_DEFAULT_AUDIO_TYPE, (JackPortFlags)port_flags, fEngineControl->fBufferSize, &port_index) < 0) {
  102. jack_error("driver: cannot register port for %s", name);
  103. return -1;
  104. }
  105. port = fGraphManager->GetPort(port_index);
  106. port->SetAlias(alias);
  107. fCapturePortList[i] = port_index;
  108. jack_log("JackAlsaDriver::Attach fCapturePortList[i] %ld ", port_index);
  109. }
  110. port_flags = (unsigned long)PlaybackDriverFlags;
  111. for (int i = 0; i < fPlaybackChannels; i++) {
  112. snprintf(alias, sizeof(alias), "%s:%s:in%d", fAliasName, fPlaybackDriverName, i + 1);
  113. snprintf(name, sizeof(name), "%s:playback_%d", fClientControl.fName, i + 1);
  114. if (fEngine->PortRegister(fClientControl.fRefNum, name, JACK_DEFAULT_AUDIO_TYPE, (JackPortFlags)port_flags, fEngineControl->fBufferSize, &port_index) < 0) {
  115. jack_error("driver: cannot register port for %s", name);
  116. return -1;
  117. }
  118. port = fGraphManager->GetPort(port_index);
  119. port->SetAlias(alias);
  120. fPlaybackPortList[i] = port_index;
  121. jack_log("JackAlsaDriver::Attach fPlaybackPortList[i] %ld ", port_index);
  122. // Monitor ports
  123. if (fWithMonitorPorts) {
  124. jack_log("Create monitor port");
  125. snprintf(name, sizeof(name), "%s:monitor_%d", fClientControl.fName, i + 1);
  126. if (fEngine->PortRegister(fClientControl.fRefNum, name, JACK_DEFAULT_AUDIO_TYPE, MonitorDriverFlags, fEngineControl->fBufferSize, &port_index) < 0) {
  127. jack_error("ALSA: cannot register monitor port for %s", name);
  128. } else {
  129. fMonitorPortList[i] = port_index;
  130. }
  131. }
  132. }
  133. UpdateLatencies();
  134. if (alsa_driver->midi) {
  135. int err = (alsa_driver->midi->attach)(alsa_driver->midi);
  136. if (err)
  137. jack_error ("ALSA: cannot attach MIDI: %d", err);
  138. }
  139. return 0;
  140. }
  141. int JackAlsaDriver::Detach()
  142. {
  143. alsa_driver_t* alsa_driver = (alsa_driver_t*)fDriver;
  144. if (alsa_driver->midi)
  145. (alsa_driver->midi->detach)(alsa_driver->midi);
  146. return JackAudioDriver::Detach();
  147. }
  148. extern "C" char* get_control_device_name(const char * device_name)
  149. {
  150. char * ctl_name;
  151. const char * comma;
  152. /* the user wants a hw or plughw device, the ctl name
  153. * should be hw:x where x is the card identification.
  154. * We skip the subdevice suffix that starts with comma */
  155. if (strncasecmp(device_name, "plughw:", 7) == 0) {
  156. /* skip the "plug" prefix" */
  157. device_name += 4;
  158. }
  159. comma = strchr(device_name, ',');
  160. if (comma == NULL) {
  161. ctl_name = strdup(device_name);
  162. if (ctl_name == NULL) {
  163. jack_error("strdup(\"%s\") failed.", device_name);
  164. }
  165. } else {
  166. ctl_name = strndup(device_name, comma - device_name);
  167. if (ctl_name == NULL) {
  168. jack_error("strndup(\"%s\", %u) failed.", device_name, (unsigned int)(comma - device_name));
  169. }
  170. }
  171. return ctl_name;
  172. }
  173. static int card_to_num(const char* device)
  174. {
  175. int err;
  176. char* ctl_name;
  177. snd_ctl_card_info_t *card_info;
  178. snd_ctl_t* ctl_handle;
  179. int i = -1;
  180. snd_ctl_card_info_alloca (&card_info);
  181. ctl_name = get_control_device_name(device);
  182. if (ctl_name == NULL) {
  183. jack_error("get_control_device_name() failed.");
  184. goto fail;
  185. }
  186. if ((err = snd_ctl_open (&ctl_handle, ctl_name, 0)) < 0) {
  187. jack_error ("control open \"%s\" (%s)", ctl_name,
  188. snd_strerror(err));
  189. goto free;
  190. }
  191. if ((err = snd_ctl_card_info(ctl_handle, card_info)) < 0) {
  192. jack_error ("control hardware info \"%s\" (%s)",
  193. device, snd_strerror (err));
  194. goto close;
  195. }
  196. i = snd_ctl_card_info_get_card(card_info);
  197. close:
  198. snd_ctl_close(ctl_handle);
  199. free:
  200. free(ctl_name);
  201. fail:
  202. return i;
  203. }
  204. int JackAlsaDriver::Open(jack_nframes_t nframes,
  205. jack_nframes_t user_nperiods,
  206. jack_nframes_t samplerate,
  207. bool hw_monitoring,
  208. bool hw_metering,
  209. bool capturing,
  210. bool playing,
  211. DitherAlgorithm dither,
  212. bool soft_mode,
  213. bool monitor,
  214. int inchannels,
  215. int outchannels,
  216. bool shorts_first,
  217. const char* capture_driver_name,
  218. const char* playback_driver_name,
  219. jack_nframes_t capture_latency,
  220. jack_nframes_t playback_latency,
  221. const char* midi_driver_name)
  222. {
  223. // Generic JackAudioDriver Open
  224. if (JackAudioDriver::Open(nframes, samplerate, capturing, playing,
  225. inchannels, outchannels, monitor, capture_driver_name, playback_driver_name,
  226. capture_latency, playback_latency) != 0) {
  227. return -1;
  228. }
  229. alsa_midi_t *midi = 0;
  230. if (strcmp(midi_driver_name, "seq") == 0)
  231. midi = alsa_seqmidi_new((jack_client_t*)this, 0);
  232. else if (strcmp(midi_driver_name, "raw") == 0)
  233. midi = alsa_rawmidi_new((jack_client_t*)this);
  234. if (JackServerGlobals::on_device_acquire != NULL) {
  235. int capture_card = card_to_num(capture_driver_name);
  236. int playback_card = card_to_num(playback_driver_name);
  237. char audio_name[32];
  238. if (capture_card >= 0) {
  239. snprintf(audio_name, sizeof(audio_name), "Audio%d", capture_card);
  240. if (!JackServerGlobals::on_device_acquire(audio_name)) {
  241. jack_error("Audio device %s cannot be acquired...", capture_driver_name);
  242. return -1;
  243. }
  244. }
  245. if (playback_card >= 0 && playback_card != capture_card) {
  246. snprintf(audio_name, sizeof(audio_name), "Audio%d", playback_card);
  247. if (!JackServerGlobals::on_device_acquire(audio_name)) {
  248. jack_error("Audio device %s cannot be acquired...", playback_driver_name);
  249. if (capture_card >= 0) {
  250. snprintf(audio_name, sizeof(audio_name), "Audio%d", capture_card);
  251. JackServerGlobals::on_device_release(audio_name);
  252. }
  253. return -1;
  254. }
  255. }
  256. }
  257. fDriver = alsa_driver_new ((char*)"alsa_pcm", (char*)playback_driver_name, (char*)capture_driver_name,
  258. NULL,
  259. nframes,
  260. user_nperiods,
  261. samplerate,
  262. hw_monitoring,
  263. hw_metering,
  264. capturing,
  265. playing,
  266. dither,
  267. soft_mode,
  268. monitor,
  269. inchannels,
  270. outchannels,
  271. shorts_first,
  272. capture_latency,
  273. playback_latency,
  274. midi);
  275. if (fDriver) {
  276. // ALSA driver may have changed the in/out values
  277. fCaptureChannels = ((alsa_driver_t *)fDriver)->capture_nchannels;
  278. fPlaybackChannels = ((alsa_driver_t *)fDriver)->playback_nchannels;
  279. return 0;
  280. } else {
  281. JackAudioDriver::Close();
  282. return -1;
  283. }
  284. }
  285. int JackAlsaDriver::Close()
  286. {
  287. // Generic audio driver close
  288. int res = JackAudioDriver::Close();
  289. alsa_driver_delete((alsa_driver_t*)fDriver);
  290. if (JackServerGlobals::on_device_release != NULL)
  291. {
  292. char audio_name[32];
  293. int capture_card = card_to_num(fCaptureDriverName);
  294. if (capture_card >= 0) {
  295. snprintf(audio_name, sizeof(audio_name), "Audio%d", capture_card);
  296. JackServerGlobals::on_device_release(audio_name);
  297. }
  298. int playback_card = card_to_num(fPlaybackDriverName);
  299. if (playback_card >= 0 && playback_card != capture_card) {
  300. snprintf(audio_name, sizeof(audio_name), "Audio%d", playback_card);
  301. JackServerGlobals::on_device_release(audio_name);
  302. }
  303. }
  304. return res;
  305. }
  306. int JackAlsaDriver::Start()
  307. {
  308. int res = JackAudioDriver::Start();
  309. if (res >= 0) {
  310. res = alsa_driver_start((alsa_driver_t *)fDriver);
  311. if (res < 0) {
  312. JackAudioDriver::Stop();
  313. }
  314. }
  315. return res;
  316. }
  317. int JackAlsaDriver::Stop()
  318. {
  319. int res = alsa_driver_stop((alsa_driver_t *)fDriver);
  320. if (JackAudioDriver::Stop() < 0) {
  321. res = -1;
  322. }
  323. return res;
  324. }
  325. int JackAlsaDriver::Read()
  326. {
  327. /* Taken from alsa_driver_run_cycle */
  328. int wait_status;
  329. jack_nframes_t nframes;
  330. fDelayedUsecs = 0.f;
  331. retry:
  332. nframes = alsa_driver_wait((alsa_driver_t *)fDriver, -1, &wait_status, &fDelayedUsecs);
  333. if (wait_status < 0)
  334. return -1; /* driver failed */
  335. if (nframes == 0) {
  336. /* we detected an xrun and restarted: notify
  337. * clients about the delay.
  338. */
  339. jack_log("ALSA XRun wait_status = %d", wait_status);
  340. NotifyXRun(fBeginDateUst, fDelayedUsecs);
  341. goto retry; /* recoverable error*/
  342. }
  343. if (nframes != fEngineControl->fBufferSize)
  344. jack_log("JackAlsaDriver::Read warning fBufferSize = %ld nframes = %ld", fEngineControl->fBufferSize, nframes);
  345. // Has to be done before read
  346. JackDriver::CycleIncTime();
  347. return alsa_driver_read((alsa_driver_t *)fDriver, fEngineControl->fBufferSize);
  348. }
  349. int JackAlsaDriver::Write()
  350. {
  351. return alsa_driver_write((alsa_driver_t *)fDriver, fEngineControl->fBufferSize);
  352. }
  353. void JackAlsaDriver::ReadInputAux(jack_nframes_t orig_nframes, snd_pcm_sframes_t contiguous, snd_pcm_sframes_t nread)
  354. {
  355. for (int chn = 0; chn < fCaptureChannels; chn++) {
  356. if (fGraphManager->GetConnectionsNum(fCapturePortList[chn]) > 0) {
  357. jack_default_audio_sample_t* buf = (jack_default_audio_sample_t*)fGraphManager->GetBuffer(fCapturePortList[chn], orig_nframes);
  358. alsa_driver_read_from_channel((alsa_driver_t *)fDriver, chn, buf + nread, contiguous);
  359. }
  360. }
  361. }
  362. void JackAlsaDriver::MonitorInputAux()
  363. {
  364. for (int chn = 0; chn < fCaptureChannels; chn++) {
  365. JackPort* port = fGraphManager->GetPort(fCapturePortList[chn]);
  366. if (port->MonitoringInput()) {
  367. ((alsa_driver_t *)fDriver)->input_monitor_mask |= (1 << chn);
  368. }
  369. }
  370. }
  371. void JackAlsaDriver::ClearOutputAux()
  372. {
  373. for (int chn = 0; chn < fPlaybackChannels; chn++) {
  374. jack_default_audio_sample_t* buf =
  375. (jack_default_audio_sample_t*)fGraphManager->GetBuffer(fPlaybackPortList[chn], fEngineControl->fBufferSize);
  376. memset(buf, 0, sizeof (jack_default_audio_sample_t) * fEngineControl->fBufferSize);
  377. }
  378. }
  379. void JackAlsaDriver::SetTimetAux(jack_time_t time)
  380. {
  381. fBeginDateUst = time;
  382. }
  383. void JackAlsaDriver::WriteOutputAux(jack_nframes_t orig_nframes, snd_pcm_sframes_t contiguous, snd_pcm_sframes_t nwritten)
  384. {
  385. for (int chn = 0; chn < fPlaybackChannels; chn++) {
  386. // Output ports
  387. if (fGraphManager->GetConnectionsNum(fPlaybackPortList[chn]) > 0) {
  388. jack_default_audio_sample_t* buf = (jack_default_audio_sample_t*)fGraphManager->GetBuffer(fPlaybackPortList[chn], orig_nframes);
  389. alsa_driver_write_to_channel(((alsa_driver_t *)fDriver), chn, buf + nwritten, contiguous);
  390. // Monitor ports
  391. if (fWithMonitorPorts && fGraphManager->GetConnectionsNum(fMonitorPortList[chn]) > 0) {
  392. jack_default_audio_sample_t* monbuf = (jack_default_audio_sample_t*)fGraphManager->GetBuffer(fMonitorPortList[chn], orig_nframes);
  393. memcpy(monbuf + nwritten, buf + nwritten, contiguous * sizeof(jack_default_audio_sample_t));
  394. }
  395. }
  396. }
  397. }
  398. int JackAlsaDriver::is_realtime() const
  399. {
  400. return fEngineControl->fRealTime;
  401. }
  402. int JackAlsaDriver::create_thread(pthread_t *thread, int priority, int realtime, void *(*start_routine)(void*), void *arg)
  403. {
  404. #ifdef __ANDROID__
  405. return JackAndroidThread::StartImp(thread, priority, realtime, start_routine, arg);
  406. #else
  407. return JackPosixThread::StartImp(thread, priority, realtime, start_routine, arg);
  408. #endif
  409. }
  410. jack_port_id_t JackAlsaDriver::port_register(const char *port_name, const char *port_type, unsigned long flags, unsigned long buffer_size)
  411. {
  412. jack_port_id_t port_index;
  413. int res = fEngine->PortRegister(fClientControl.fRefNum, port_name, port_type, flags, buffer_size, &port_index);
  414. return (res == 0) ? port_index : 0;
  415. }
  416. int JackAlsaDriver::port_unregister(jack_port_id_t port_index)
  417. {
  418. return fEngine->PortUnRegister(fClientControl.fRefNum, port_index);
  419. }
  420. void* JackAlsaDriver::port_get_buffer(int port, jack_nframes_t nframes)
  421. {
  422. return fGraphManager->GetBuffer(port, nframes);
  423. }
  424. int JackAlsaDriver::port_set_alias(int port, const char* name)
  425. {
  426. return fGraphManager->GetPort(port)->SetAlias(name);
  427. }
  428. jack_nframes_t JackAlsaDriver::get_sample_rate() const
  429. {
  430. return fEngineControl->fSampleRate;
  431. }
  432. jack_nframes_t JackAlsaDriver::frame_time() const
  433. {
  434. JackTimer timer;
  435. fEngineControl->ReadFrameTime(&timer);
  436. return timer.Time2Frames(GetMicroSeconds(), fEngineControl->fBufferSize);
  437. }
  438. jack_nframes_t JackAlsaDriver::last_frame_time() const
  439. {
  440. JackTimer timer;
  441. fEngineControl->ReadFrameTime(&timer);
  442. return timer.CurFrame();
  443. }
  444. } // end of namespace
  445. #ifdef __cplusplus
  446. extern "C"
  447. {
  448. #endif
  449. static
  450. void
  451. fill_device(
  452. jack_driver_param_constraint_desc_t ** constraint_ptr_ptr,
  453. uint32_t * array_size_ptr,
  454. const char * device_id,
  455. const char * device_description)
  456. {
  457. jack_driver_param_value_enum_t * possible_value_ptr;
  458. //jack_info("%6s - %s", device_id, device_description);
  459. if (*constraint_ptr_ptr == NULL)
  460. {
  461. *constraint_ptr_ptr = (jack_driver_param_constraint_desc_t *)calloc(1, sizeof(jack_driver_param_value_enum_t));
  462. *array_size_ptr = 0;
  463. }
  464. if ((*constraint_ptr_ptr)->constraint.enumeration.count == *array_size_ptr)
  465. {
  466. *array_size_ptr += 10;
  467. (*constraint_ptr_ptr)->constraint.enumeration.possible_values_array =
  468. (jack_driver_param_value_enum_t *)realloc(
  469. (*constraint_ptr_ptr)->constraint.enumeration.possible_values_array,
  470. sizeof(jack_driver_param_value_enum_t) * *array_size_ptr);
  471. }
  472. possible_value_ptr = (*constraint_ptr_ptr)->constraint.enumeration.possible_values_array + (*constraint_ptr_ptr)->constraint.enumeration.count;
  473. (*constraint_ptr_ptr)->constraint.enumeration.count++;
  474. strcpy(possible_value_ptr->value.str, device_id);
  475. strcpy(possible_value_ptr->short_desc, device_description);
  476. }
  477. static
  478. jack_driver_param_constraint_desc_t *
  479. enum_alsa_devices()
  480. {
  481. snd_ctl_t * handle;
  482. snd_ctl_card_info_t * info;
  483. snd_pcm_info_t * pcminfo_capture;
  484. snd_pcm_info_t * pcminfo_playback;
  485. int card_no = -1;
  486. char card_id[JACK_DRIVER_PARAM_STRING_MAX + 1];
  487. char device_id[JACK_DRIVER_PARAM_STRING_MAX + 1];
  488. char description[64];
  489. int device_no;
  490. bool has_capture;
  491. bool has_playback;
  492. jack_driver_param_constraint_desc_t * constraint_ptr;
  493. uint32_t array_size = 0;
  494. snd_ctl_card_info_alloca(&info);
  495. snd_pcm_info_alloca(&pcminfo_capture);
  496. snd_pcm_info_alloca(&pcminfo_playback);
  497. constraint_ptr = NULL;
  498. while(snd_card_next(&card_no) >= 0 && card_no >= 0)
  499. {
  500. snprintf(card_id, sizeof(card_id), "hw:%d", card_no);
  501. if (snd_ctl_open(&handle, card_id, 0) >= 0 &&
  502. snd_ctl_card_info(handle, info) >= 0)
  503. {
  504. snprintf(card_id, sizeof(card_id), "hw:%s", snd_ctl_card_info_get_id(info));
  505. fill_device(&constraint_ptr, &array_size, card_id, snd_ctl_card_info_get_name(info));
  506. device_no = -1;
  507. while (snd_ctl_pcm_next_device(handle, &device_no) >= 0 && device_no != -1)
  508. {
  509. snprintf(device_id, sizeof(device_id), "%s,%d", card_id, device_no);
  510. snd_pcm_info_set_device(pcminfo_capture, device_no);
  511. snd_pcm_info_set_subdevice(pcminfo_capture, 0);
  512. snd_pcm_info_set_stream(pcminfo_capture, SND_PCM_STREAM_CAPTURE);
  513. has_capture = snd_ctl_pcm_info(handle, pcminfo_capture) >= 0;
  514. snd_pcm_info_set_device(pcminfo_playback, device_no);
  515. snd_pcm_info_set_subdevice(pcminfo_playback, 0);
  516. snd_pcm_info_set_stream(pcminfo_playback, SND_PCM_STREAM_PLAYBACK);
  517. has_playback = snd_ctl_pcm_info(handle, pcminfo_playback) >= 0;
  518. if (has_capture && has_playback)
  519. {
  520. snprintf(description, sizeof(description),"%s (duplex)", snd_pcm_info_get_name(pcminfo_capture));
  521. }
  522. else if (has_capture)
  523. {
  524. snprintf(description, sizeof(description),"%s (capture)", snd_pcm_info_get_name(pcminfo_capture));
  525. }
  526. else if (has_playback)
  527. {
  528. snprintf(description, sizeof(description),"%s (playback)", snd_pcm_info_get_name(pcminfo_playback));
  529. }
  530. else
  531. {
  532. continue;
  533. }
  534. fill_device(&constraint_ptr, &array_size, device_id, description);
  535. }
  536. snd_ctl_close(handle);
  537. }
  538. }
  539. return constraint_ptr;
  540. }
  541. static
  542. jack_driver_param_constraint_desc_t *
  543. get_midi_driver_constraint()
  544. {
  545. jack_driver_param_constraint_desc_t * constraint_ptr;
  546. jack_driver_param_value_enum_t * possible_value_ptr;
  547. //jack_info("%6s - %s", device_id, device_description);
  548. constraint_ptr = (jack_driver_param_constraint_desc_t *)calloc(1, sizeof(jack_driver_param_value_enum_t));
  549. constraint_ptr->flags = JACK_CONSTRAINT_FLAG_STRICT | JACK_CONSTRAINT_FLAG_FAKE_VALUE;
  550. constraint_ptr->constraint.enumeration.possible_values_array = (jack_driver_param_value_enum_t *)malloc(3 * sizeof(jack_driver_param_value_enum_t));
  551. constraint_ptr->constraint.enumeration.count = 3;
  552. possible_value_ptr = constraint_ptr->constraint.enumeration.possible_values_array;
  553. strcpy(possible_value_ptr->value.str, "none");
  554. strcpy(possible_value_ptr->short_desc, "no MIDI driver");
  555. possible_value_ptr++;
  556. strcpy(possible_value_ptr->value.str, "seq");
  557. strcpy(possible_value_ptr->short_desc, "ALSA Sequencer driver");
  558. possible_value_ptr++;
  559. strcpy(possible_value_ptr->value.str, "raw");
  560. strcpy(possible_value_ptr->short_desc, "ALSA RawMIDI driver");
  561. return constraint_ptr;
  562. }
  563. static
  564. jack_driver_param_constraint_desc_t *
  565. get_dither_constraint()
  566. {
  567. jack_driver_param_constraint_desc_t * constraint_ptr;
  568. jack_driver_param_value_enum_t * possible_value_ptr;
  569. //jack_info("%6s - %s", device_id, device_description);
  570. constraint_ptr = (jack_driver_param_constraint_desc_t *)calloc(1, sizeof(jack_driver_param_value_enum_t));
  571. constraint_ptr->flags = JACK_CONSTRAINT_FLAG_STRICT | JACK_CONSTRAINT_FLAG_FAKE_VALUE;
  572. constraint_ptr->constraint.enumeration.possible_values_array = (jack_driver_param_value_enum_t *)malloc(4 * sizeof(jack_driver_param_value_enum_t));
  573. constraint_ptr->constraint.enumeration.count = 4;
  574. possible_value_ptr = constraint_ptr->constraint.enumeration.possible_values_array;
  575. possible_value_ptr->value.c = 'n';
  576. strcpy(possible_value_ptr->short_desc, "none");
  577. possible_value_ptr++;
  578. possible_value_ptr->value.c = 'r';
  579. strcpy(possible_value_ptr->short_desc, "rectangular");
  580. possible_value_ptr++;
  581. possible_value_ptr->value.c = 's';
  582. strcpy(possible_value_ptr->short_desc, "shaped");
  583. possible_value_ptr++;
  584. possible_value_ptr->value.c = 't';
  585. strcpy(possible_value_ptr->short_desc, "triangular");
  586. return constraint_ptr;
  587. }
  588. static int
  589. dither_opt (char c, DitherAlgorithm* dither)
  590. {
  591. switch (c) {
  592. case '-':
  593. case 'n':
  594. *dither = None;
  595. break;
  596. case 'r':
  597. *dither = Rectangular;
  598. break;
  599. case 's':
  600. *dither = Shaped;
  601. break;
  602. case 't':
  603. *dither = Triangular;
  604. break;
  605. default:
  606. fprintf (stderr, "ALSA driver: illegal dithering mode %c\n", c);
  607. return -1;
  608. }
  609. return 0;
  610. }
  611. SERVER_EXPORT const jack_driver_desc_t* driver_get_descriptor ()
  612. {
  613. jack_driver_desc_t * desc;
  614. jack_driver_desc_filler_t filler;
  615. jack_driver_param_value_t value;
  616. desc = jack_driver_descriptor_construct("alsa", JackDriverMaster, "Linux ALSA API based audio backend", &filler);
  617. strcpy(value.str, "hw:0");
  618. #ifdef __ANDROID__
  619. jack_driver_descriptor_add_parameter(desc, &filler, "device", 'd', JackDriverParamString, &value, NULL, "ALSA device name", NULL);
  620. #else
  621. jack_driver_descriptor_add_parameter(desc, &filler, "device", 'd', JackDriverParamString, &value, enum_alsa_devices, "ALSA device name", NULL);
  622. #endif
  623. strcpy(value.str, "none");
  624. jack_driver_descriptor_add_parameter(desc, &filler, "capture", 'C', JackDriverParamString, &value, NULL, "Provide capture ports. Optionally set device", NULL);
  625. jack_driver_descriptor_add_parameter(desc, &filler, "playback", 'P', JackDriverParamString, &value, NULL, "Provide playback ports. Optionally set device", NULL);
  626. value.ui = 48000U;
  627. jack_driver_descriptor_add_parameter(desc, &filler, "rate", 'r', JackDriverParamUInt, &value, NULL, "Sample rate", NULL);
  628. value.ui = 1024U;
  629. jack_driver_descriptor_add_parameter(desc, &filler, "period", 'p', JackDriverParamUInt, &value, NULL, "Frames per period", NULL);
  630. value.ui = 2U;
  631. jack_driver_descriptor_add_parameter(desc, &filler, "nperiods", 'n', JackDriverParamUInt, &value, NULL, "Number of periods of playback latency", NULL);
  632. value.i = 0;
  633. jack_driver_descriptor_add_parameter(desc, &filler, "hwmon", 'H', JackDriverParamBool, &value, NULL, "Hardware monitoring, if available", NULL);
  634. value.i = 0;
  635. jack_driver_descriptor_add_parameter(desc, &filler, "hwmeter", 'M', JackDriverParamBool, &value, NULL, "Hardware metering, if available", NULL);
  636. value.i = 1;
  637. jack_driver_descriptor_add_parameter(desc, &filler, "duplex", 'D', JackDriverParamBool, &value, NULL, "Provide both capture and playback ports", NULL);
  638. value.i = 0;
  639. jack_driver_descriptor_add_parameter(desc, &filler, "softmode", 's', JackDriverParamBool, &value, NULL, "Soft-mode, no xrun handling", NULL);
  640. value.i = 0;
  641. jack_driver_descriptor_add_parameter(desc, &filler, "monitor", 'm', JackDriverParamBool, &value, NULL, "Provide monitor ports for the output", NULL);
  642. value.c = 'n';
  643. jack_driver_descriptor_add_parameter(
  644. desc,
  645. &filler,
  646. "dither",
  647. 'z',
  648. JackDriverParamChar,
  649. &value,
  650. get_dither_constraint(),
  651. "Dithering mode",
  652. "Dithering mode:\n"
  653. " n - none\n"
  654. " r - rectangular\n"
  655. " s - shaped\n"
  656. " t - triangular");
  657. value.ui = 0;
  658. jack_driver_descriptor_add_parameter(desc, &filler, "inchannels", 'i', JackDriverParamUInt, &value, NULL, "Number of capture channels (defaults to hardware max)", NULL);
  659. jack_driver_descriptor_add_parameter(desc, &filler, "outchannels", 'o', JackDriverParamUInt, &value, NULL, "Number of playback channels (defaults to hardware max)", NULL);
  660. value.i = FALSE;
  661. jack_driver_descriptor_add_parameter(desc, &filler, "shorts", 'S', JackDriverParamBool, &value, NULL, "Try 16-bit samples before 32-bit", NULL);
  662. value.ui = 0;
  663. jack_driver_descriptor_add_parameter(desc, &filler, "input-latency", 'I', JackDriverParamUInt, &value, NULL, "Extra input latency (frames)", NULL);
  664. jack_driver_descriptor_add_parameter(desc, &filler, "output-latency", 'O', JackDriverParamUInt, &value, NULL, "Extra output latency (frames)", NULL);
  665. strcpy(value.str, "none");
  666. jack_driver_descriptor_add_parameter(
  667. desc,
  668. &filler,
  669. "midi-driver",
  670. 'X',
  671. JackDriverParamString,
  672. &value,
  673. get_midi_driver_constraint(),
  674. "ALSA device name",
  675. "ALSA MIDI driver:\n"
  676. " none - no MIDI driver\n"
  677. " seq - ALSA Sequencer driver\n"
  678. " raw - ALSA RawMIDI driver\n");
  679. return desc;
  680. }
  681. static Jack::JackAlsaDriver* g_alsa_driver;
  682. SERVER_EXPORT Jack::JackDriverClientInterface* driver_initialize(Jack::JackLockedEngine* engine, Jack::JackSynchro* table, const JSList* params)
  683. {
  684. jack_nframes_t srate = 48000;
  685. jack_nframes_t frames_per_interrupt = 1024;
  686. unsigned long user_nperiods = 2;
  687. const char *playback_pcm_name = "hw:0";
  688. const char *capture_pcm_name = "hw:0";
  689. int hw_monitoring = FALSE;
  690. int hw_metering = FALSE;
  691. int capture = FALSE;
  692. int playback = FALSE;
  693. int soft_mode = FALSE;
  694. int monitor = FALSE;
  695. DitherAlgorithm dither = None;
  696. int user_capture_nchnls = 0;
  697. int user_playback_nchnls = 0;
  698. int shorts_first = FALSE;
  699. jack_nframes_t systemic_input_latency = 0;
  700. jack_nframes_t systemic_output_latency = 0;
  701. const JSList * node;
  702. const jack_driver_param_t * param;
  703. const char *midi_driver = "none";
  704. for (node = params; node; node = jack_slist_next (node)) {
  705. param = (const jack_driver_param_t *) node->data;
  706. switch (param->character) {
  707. case 'C':
  708. capture = TRUE;
  709. if (strcmp (param->value.str, "none") != 0) {
  710. capture_pcm_name = strdup (param->value.str);
  711. jack_log("capture device %s", capture_pcm_name);
  712. }
  713. break;
  714. case 'P':
  715. playback = TRUE;
  716. if (strcmp (param->value.str, "none") != 0) {
  717. playback_pcm_name = strdup (param->value.str);
  718. jack_log("playback device %s", playback_pcm_name);
  719. }
  720. break;
  721. case 'D':
  722. playback = TRUE;
  723. capture = TRUE;
  724. break;
  725. case 'd':
  726. if (strcmp (param->value.str, "none") != 0) {
  727. playback_pcm_name = strdup (param->value.str);
  728. capture_pcm_name = strdup (param->value.str);
  729. jack_log("playback device %s", playback_pcm_name);
  730. jack_log("capture device %s", capture_pcm_name);
  731. }
  732. break;
  733. case 'H':
  734. hw_monitoring = param->value.i;
  735. break;
  736. case 'm':
  737. monitor = param->value.i;
  738. break;
  739. case 'M':
  740. hw_metering = param->value.i;
  741. break;
  742. case 'r':
  743. srate = param->value.ui;
  744. jack_log("apparent rate = %d", srate);
  745. break;
  746. case 'p':
  747. frames_per_interrupt = param->value.ui;
  748. jack_log("frames per period = %d", frames_per_interrupt);
  749. break;
  750. case 'n':
  751. user_nperiods = param->value.ui;
  752. if (user_nperiods < 2) { /* enforce minimum value */
  753. user_nperiods = 2;
  754. }
  755. break;
  756. case 's':
  757. soft_mode = param->value.i;
  758. break;
  759. case 'z':
  760. if (dither_opt (param->value.c, &dither)) {
  761. return NULL;
  762. }
  763. break;
  764. case 'i':
  765. user_capture_nchnls = param->value.ui;
  766. break;
  767. case 'o':
  768. user_playback_nchnls = param->value.ui;
  769. break;
  770. case 'S':
  771. shorts_first = param->value.i;
  772. break;
  773. case 'I':
  774. systemic_input_latency = param->value.ui;
  775. break;
  776. case 'O':
  777. systemic_output_latency = param->value.ui;
  778. break;
  779. case 'X':
  780. midi_driver = strdup(param->value.str);
  781. break;
  782. }
  783. }
  784. /* duplex is the default */
  785. if (!capture && !playback) {
  786. capture = TRUE;
  787. playback = TRUE;
  788. }
  789. g_alsa_driver = new Jack::JackAlsaDriver("system", "alsa_pcm", engine, table);
  790. Jack::JackDriverClientInterface* threaded_driver = new Jack::JackThreadedDriver(g_alsa_driver);
  791. // Special open for ALSA driver...
  792. if (g_alsa_driver->Open(frames_per_interrupt, user_nperiods, srate, hw_monitoring, hw_metering, capture, playback, dither, soft_mode, monitor,
  793. user_capture_nchnls, user_playback_nchnls, shorts_first, capture_pcm_name, playback_pcm_name,
  794. systemic_input_latency, systemic_output_latency, midi_driver) == 0) {
  795. return threaded_driver;
  796. } else {
  797. delete threaded_driver; // Delete the decorated driver
  798. return NULL;
  799. }
  800. }
  801. // Code to be used in alsa_driver.c
  802. void ReadInput(jack_nframes_t orig_nframes, snd_pcm_sframes_t contiguous, snd_pcm_sframes_t nread)
  803. {
  804. g_alsa_driver->ReadInputAux(orig_nframes, contiguous, nread);
  805. }
  806. void MonitorInput()
  807. {
  808. g_alsa_driver->MonitorInputAux();
  809. }
  810. void ClearOutput()
  811. {
  812. g_alsa_driver->ClearOutputAux();
  813. }
  814. void WriteOutput(jack_nframes_t orig_nframes, snd_pcm_sframes_t contiguous, snd_pcm_sframes_t nwritten)
  815. {
  816. g_alsa_driver->WriteOutputAux(orig_nframes, contiguous, nwritten);
  817. }
  818. void SetTime(jack_time_t time)
  819. {
  820. g_alsa_driver->SetTimetAux(time);
  821. }
  822. int Restart()
  823. {
  824. int res;
  825. if ((res = g_alsa_driver->Stop()) == 0) {
  826. res = g_alsa_driver->Start();
  827. }
  828. return res;
  829. }
  830. #ifdef __cplusplus
  831. }
  832. #endif