pcm.c 30 KB

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  1. /*
  2. * Digital Audio (PCM) abstract layer
  3. * Copyright (c) by Jaroslav Kysela <perex@suse.cz>
  4. *
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software
  18. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  19. *
  20. */
  21. #include <sound/driver.h>
  22. #include <linux/init.h>
  23. #include <linux/slab.h>
  24. #include <linux/time.h>
  25. #include <linux/mutex.h>
  26. #include <sound/core.h>
  27. #include <sound/minors.h>
  28. #include <sound/pcm.h>
  29. #include <sound/control.h>
  30. #include <sound/info.h>
  31. MODULE_AUTHOR("Jaroslav Kysela <perex@suse.cz>, Abramo Bagnara <abramo@alsa-project.org>");
  32. MODULE_DESCRIPTION("Midlevel PCM code for ALSA.");
  33. MODULE_LICENSE("GPL");
  34. static LIST_HEAD(snd_pcm_devices);
  35. static LIST_HEAD(snd_pcm_notify_list);
  36. static DEFINE_MUTEX(register_mutex);
  37. static int snd_pcm_free(struct snd_pcm *pcm);
  38. static int snd_pcm_dev_free(struct snd_device *device);
  39. static int snd_pcm_dev_register(struct snd_device *device);
  40. static int snd_pcm_dev_disconnect(struct snd_device *device);
  41. static struct snd_pcm *snd_pcm_search(struct snd_card *card, int device)
  42. {
  43. struct list_head *p;
  44. struct snd_pcm *pcm;
  45. list_for_each(p, &snd_pcm_devices) {
  46. pcm = list_entry(p, struct snd_pcm, list);
  47. if (pcm->card == card && pcm->device == device)
  48. return pcm;
  49. }
  50. return NULL;
  51. }
  52. static int snd_pcm_control_ioctl(struct snd_card *card,
  53. struct snd_ctl_file *control,
  54. unsigned int cmd, unsigned long arg)
  55. {
  56. switch (cmd) {
  57. case SNDRV_CTL_IOCTL_PCM_NEXT_DEVICE:
  58. {
  59. int device;
  60. if (get_user(device, (int __user *)arg))
  61. return -EFAULT;
  62. mutex_lock(&register_mutex);
  63. device = device < 0 ? 0 : device + 1;
  64. while (device < SNDRV_PCM_DEVICES) {
  65. if (snd_pcm_search(card, device))
  66. break;
  67. device++;
  68. }
  69. if (device == SNDRV_PCM_DEVICES)
  70. device = -1;
  71. mutex_unlock(&register_mutex);
  72. if (put_user(device, (int __user *)arg))
  73. return -EFAULT;
  74. return 0;
  75. }
  76. case SNDRV_CTL_IOCTL_PCM_INFO:
  77. {
  78. struct snd_pcm_info __user *info;
  79. unsigned int device, subdevice;
  80. int stream;
  81. struct snd_pcm *pcm;
  82. struct snd_pcm_str *pstr;
  83. struct snd_pcm_substream *substream;
  84. int err;
  85. info = (struct snd_pcm_info __user *)arg;
  86. if (get_user(device, &info->device))
  87. return -EFAULT;
  88. if (get_user(stream, &info->stream))
  89. return -EFAULT;
  90. if (stream < 0 || stream > 1)
  91. return -EINVAL;
  92. if (get_user(subdevice, &info->subdevice))
  93. return -EFAULT;
  94. mutex_lock(&register_mutex);
  95. pcm = snd_pcm_search(card, device);
  96. if (pcm == NULL) {
  97. err = -ENXIO;
  98. goto _error;
  99. }
  100. pstr = &pcm->streams[stream];
  101. if (pstr->substream_count == 0) {
  102. err = -ENOENT;
  103. goto _error;
  104. }
  105. if (subdevice >= pstr->substream_count) {
  106. err = -ENXIO;
  107. goto _error;
  108. }
  109. for (substream = pstr->substream; substream;
  110. substream = substream->next)
  111. if (substream->number == (int)subdevice)
  112. break;
  113. if (substream == NULL) {
  114. err = -ENXIO;
  115. goto _error;
  116. }
  117. err = snd_pcm_info_user(substream, info);
  118. _error:
  119. mutex_unlock(&register_mutex);
  120. return err;
  121. }
  122. case SNDRV_CTL_IOCTL_PCM_PREFER_SUBDEVICE:
  123. {
  124. int val;
  125. if (get_user(val, (int __user *)arg))
  126. return -EFAULT;
  127. control->prefer_pcm_subdevice = val;
  128. return 0;
  129. }
  130. }
  131. return -ENOIOCTLCMD;
  132. }
  133. #ifdef CONFIG_SND_VERBOSE_PROCFS
  134. #define STATE(v) [SNDRV_PCM_STATE_##v] = #v
  135. #define STREAM(v) [SNDRV_PCM_STREAM_##v] = #v
  136. #define READY(v) [SNDRV_PCM_READY_##v] = #v
  137. #define XRUN(v) [SNDRV_PCM_XRUN_##v] = #v
  138. #define SILENCE(v) [SNDRV_PCM_SILENCE_##v] = #v
  139. #define TSTAMP(v) [SNDRV_PCM_TSTAMP_##v] = #v
  140. #define ACCESS(v) [SNDRV_PCM_ACCESS_##v] = #v
  141. #define START(v) [SNDRV_PCM_START_##v] = #v
  142. #define FORMAT(v) [SNDRV_PCM_FORMAT_##v] = #v
  143. #define SUBFORMAT(v) [SNDRV_PCM_SUBFORMAT_##v] = #v
  144. static char *snd_pcm_format_names[] = {
  145. FORMAT(S8),
  146. FORMAT(U8),
  147. FORMAT(S16_LE),
  148. FORMAT(S16_BE),
  149. FORMAT(U16_LE),
  150. FORMAT(U16_BE),
  151. FORMAT(S24_LE),
  152. FORMAT(S24_BE),
  153. FORMAT(U24_LE),
  154. FORMAT(U24_BE),
  155. FORMAT(S32_LE),
  156. FORMAT(S32_BE),
  157. FORMAT(U32_LE),
  158. FORMAT(U32_BE),
  159. FORMAT(FLOAT_LE),
  160. FORMAT(FLOAT_BE),
  161. FORMAT(FLOAT64_LE),
  162. FORMAT(FLOAT64_BE),
  163. FORMAT(IEC958_SUBFRAME_LE),
  164. FORMAT(IEC958_SUBFRAME_BE),
  165. FORMAT(MU_LAW),
  166. FORMAT(A_LAW),
  167. FORMAT(IMA_ADPCM),
  168. FORMAT(MPEG),
  169. FORMAT(GSM),
  170. FORMAT(SPECIAL),
  171. FORMAT(S24_3LE),
  172. FORMAT(S24_3BE),
  173. FORMAT(U24_3LE),
  174. FORMAT(U24_3BE),
  175. FORMAT(S20_3LE),
  176. FORMAT(S20_3BE),
  177. FORMAT(U20_3LE),
  178. FORMAT(U20_3BE),
  179. FORMAT(S18_3LE),
  180. FORMAT(S18_3BE),
  181. FORMAT(U18_3LE),
  182. FORMAT(U18_3BE),
  183. };
  184. static const char *snd_pcm_format_name(snd_pcm_format_t format)
  185. {
  186. return snd_pcm_format_names[format];
  187. }
  188. static char *snd_pcm_stream_names[] = {
  189. STREAM(PLAYBACK),
  190. STREAM(CAPTURE),
  191. };
  192. static char *snd_pcm_state_names[] = {
  193. STATE(OPEN),
  194. STATE(SETUP),
  195. STATE(PREPARED),
  196. STATE(RUNNING),
  197. STATE(XRUN),
  198. STATE(DRAINING),
  199. STATE(PAUSED),
  200. STATE(SUSPENDED),
  201. };
  202. static char *snd_pcm_access_names[] = {
  203. ACCESS(MMAP_INTERLEAVED),
  204. ACCESS(MMAP_NONINTERLEAVED),
  205. ACCESS(MMAP_COMPLEX),
  206. ACCESS(RW_INTERLEAVED),
  207. ACCESS(RW_NONINTERLEAVED),
  208. };
  209. static char *snd_pcm_subformat_names[] = {
  210. SUBFORMAT(STD),
  211. };
  212. static char *snd_pcm_tstamp_mode_names[] = {
  213. TSTAMP(NONE),
  214. TSTAMP(MMAP),
  215. };
  216. static const char *snd_pcm_stream_name(int stream)
  217. {
  218. snd_assert(stream <= SNDRV_PCM_STREAM_LAST, return NULL);
  219. return snd_pcm_stream_names[stream];
  220. }
  221. static const char *snd_pcm_access_name(snd_pcm_access_t access)
  222. {
  223. return snd_pcm_access_names[access];
  224. }
  225. static const char *snd_pcm_subformat_name(snd_pcm_subformat_t subformat)
  226. {
  227. return snd_pcm_subformat_names[subformat];
  228. }
  229. static const char *snd_pcm_tstamp_mode_name(int mode)
  230. {
  231. snd_assert(mode <= SNDRV_PCM_TSTAMP_LAST, return NULL);
  232. return snd_pcm_tstamp_mode_names[mode];
  233. }
  234. static const char *snd_pcm_state_name(snd_pcm_state_t state)
  235. {
  236. return snd_pcm_state_names[state];
  237. }
  238. #if defined(CONFIG_SND_PCM_OSS) || defined(CONFIG_SND_PCM_OSS_MODULE)
  239. #include <linux/soundcard.h>
  240. static const char *snd_pcm_oss_format_name(int format)
  241. {
  242. switch (format) {
  243. case AFMT_MU_LAW:
  244. return "MU_LAW";
  245. case AFMT_A_LAW:
  246. return "A_LAW";
  247. case AFMT_IMA_ADPCM:
  248. return "IMA_ADPCM";
  249. case AFMT_U8:
  250. return "U8";
  251. case AFMT_S16_LE:
  252. return "S16_LE";
  253. case AFMT_S16_BE:
  254. return "S16_BE";
  255. case AFMT_S8:
  256. return "S8";
  257. case AFMT_U16_LE:
  258. return "U16_LE";
  259. case AFMT_U16_BE:
  260. return "U16_BE";
  261. case AFMT_MPEG:
  262. return "MPEG";
  263. default:
  264. return "unknown";
  265. }
  266. }
  267. #endif
  268. static void snd_pcm_proc_info_read(struct snd_pcm_substream *substream,
  269. struct snd_info_buffer *buffer)
  270. {
  271. struct snd_pcm_info *info;
  272. int err;
  273. if (! substream)
  274. return;
  275. info = kmalloc(sizeof(*info), GFP_KERNEL);
  276. if (! info) {
  277. printk(KERN_DEBUG "snd_pcm_proc_info_read: cannot malloc\n");
  278. return;
  279. }
  280. err = snd_pcm_info(substream, info);
  281. if (err < 0) {
  282. snd_iprintf(buffer, "error %d\n", err);
  283. kfree(info);
  284. return;
  285. }
  286. snd_iprintf(buffer, "card: %d\n", info->card);
  287. snd_iprintf(buffer, "device: %d\n", info->device);
  288. snd_iprintf(buffer, "subdevice: %d\n", info->subdevice);
  289. snd_iprintf(buffer, "stream: %s\n", snd_pcm_stream_name(info->stream));
  290. snd_iprintf(buffer, "id: %s\n", info->id);
  291. snd_iprintf(buffer, "name: %s\n", info->name);
  292. snd_iprintf(buffer, "subname: %s\n", info->subname);
  293. snd_iprintf(buffer, "class: %d\n", info->dev_class);
  294. snd_iprintf(buffer, "subclass: %d\n", info->dev_subclass);
  295. snd_iprintf(buffer, "subdevices_count: %d\n", info->subdevices_count);
  296. snd_iprintf(buffer, "subdevices_avail: %d\n", info->subdevices_avail);
  297. kfree(info);
  298. }
  299. static void snd_pcm_stream_proc_info_read(struct snd_info_entry *entry,
  300. struct snd_info_buffer *buffer)
  301. {
  302. snd_pcm_proc_info_read(((struct snd_pcm_str *)entry->private_data)->substream,
  303. buffer);
  304. }
  305. static void snd_pcm_substream_proc_info_read(struct snd_info_entry *entry,
  306. struct snd_info_buffer *buffer)
  307. {
  308. snd_pcm_proc_info_read((struct snd_pcm_substream *)entry->private_data,
  309. buffer);
  310. }
  311. static void snd_pcm_substream_proc_hw_params_read(struct snd_info_entry *entry,
  312. struct snd_info_buffer *buffer)
  313. {
  314. struct snd_pcm_substream *substream = entry->private_data;
  315. struct snd_pcm_runtime *runtime = substream->runtime;
  316. if (!runtime) {
  317. snd_iprintf(buffer, "closed\n");
  318. return;
  319. }
  320. if (runtime->status->state == SNDRV_PCM_STATE_OPEN) {
  321. snd_iprintf(buffer, "no setup\n");
  322. return;
  323. }
  324. snd_iprintf(buffer, "access: %s\n", snd_pcm_access_name(runtime->access));
  325. snd_iprintf(buffer, "format: %s\n", snd_pcm_format_name(runtime->format));
  326. snd_iprintf(buffer, "subformat: %s\n", snd_pcm_subformat_name(runtime->subformat));
  327. snd_iprintf(buffer, "channels: %u\n", runtime->channels);
  328. snd_iprintf(buffer, "rate: %u (%u/%u)\n", runtime->rate, runtime->rate_num, runtime->rate_den);
  329. snd_iprintf(buffer, "period_size: %lu\n", runtime->period_size);
  330. snd_iprintf(buffer, "buffer_size: %lu\n", runtime->buffer_size);
  331. snd_iprintf(buffer, "tick_time: %u\n", runtime->tick_time);
  332. #if defined(CONFIG_SND_PCM_OSS) || defined(CONFIG_SND_PCM_OSS_MODULE)
  333. if (substream->oss.oss) {
  334. snd_iprintf(buffer, "OSS format: %s\n", snd_pcm_oss_format_name(runtime->oss.format));
  335. snd_iprintf(buffer, "OSS channels: %u\n", runtime->oss.channels);
  336. snd_iprintf(buffer, "OSS rate: %u\n", runtime->oss.rate);
  337. snd_iprintf(buffer, "OSS period bytes: %lu\n", (unsigned long)runtime->oss.period_bytes);
  338. snd_iprintf(buffer, "OSS periods: %u\n", runtime->oss.periods);
  339. snd_iprintf(buffer, "OSS period frames: %lu\n", (unsigned long)runtime->oss.period_frames);
  340. }
  341. #endif
  342. }
  343. static void snd_pcm_substream_proc_sw_params_read(struct snd_info_entry *entry,
  344. struct snd_info_buffer *buffer)
  345. {
  346. struct snd_pcm_substream *substream = entry->private_data;
  347. struct snd_pcm_runtime *runtime = substream->runtime;
  348. if (!runtime) {
  349. snd_iprintf(buffer, "closed\n");
  350. return;
  351. }
  352. if (runtime->status->state == SNDRV_PCM_STATE_OPEN) {
  353. snd_iprintf(buffer, "no setup\n");
  354. return;
  355. }
  356. snd_iprintf(buffer, "tstamp_mode: %s\n", snd_pcm_tstamp_mode_name(runtime->tstamp_mode));
  357. snd_iprintf(buffer, "period_step: %u\n", runtime->period_step);
  358. snd_iprintf(buffer, "sleep_min: %u\n", runtime->sleep_min);
  359. snd_iprintf(buffer, "avail_min: %lu\n", runtime->control->avail_min);
  360. snd_iprintf(buffer, "xfer_align: %lu\n", runtime->xfer_align);
  361. snd_iprintf(buffer, "start_threshold: %lu\n", runtime->start_threshold);
  362. snd_iprintf(buffer, "stop_threshold: %lu\n", runtime->stop_threshold);
  363. snd_iprintf(buffer, "silence_threshold: %lu\n", runtime->silence_threshold);
  364. snd_iprintf(buffer, "silence_size: %lu\n", runtime->silence_size);
  365. snd_iprintf(buffer, "boundary: %lu\n", runtime->boundary);
  366. }
  367. static void snd_pcm_substream_proc_status_read(struct snd_info_entry *entry,
  368. struct snd_info_buffer *buffer)
  369. {
  370. struct snd_pcm_substream *substream = entry->private_data;
  371. struct snd_pcm_runtime *runtime = substream->runtime;
  372. struct snd_pcm_status status;
  373. int err;
  374. if (!runtime) {
  375. snd_iprintf(buffer, "closed\n");
  376. return;
  377. }
  378. memset(&status, 0, sizeof(status));
  379. err = snd_pcm_status(substream, &status);
  380. if (err < 0) {
  381. snd_iprintf(buffer, "error %d\n", err);
  382. return;
  383. }
  384. snd_iprintf(buffer, "state: %s\n", snd_pcm_state_name(status.state));
  385. snd_iprintf(buffer, "trigger_time: %ld.%09ld\n",
  386. status.trigger_tstamp.tv_sec, status.trigger_tstamp.tv_nsec);
  387. snd_iprintf(buffer, "tstamp : %ld.%09ld\n",
  388. status.tstamp.tv_sec, status.tstamp.tv_nsec);
  389. snd_iprintf(buffer, "delay : %ld\n", status.delay);
  390. snd_iprintf(buffer, "avail : %ld\n", status.avail);
  391. snd_iprintf(buffer, "avail_max : %ld\n", status.avail_max);
  392. snd_iprintf(buffer, "-----\n");
  393. snd_iprintf(buffer, "hw_ptr : %ld\n", runtime->status->hw_ptr);
  394. snd_iprintf(buffer, "appl_ptr : %ld\n", runtime->control->appl_ptr);
  395. }
  396. #ifdef CONFIG_SND_PCM_XRUN_DEBUG
  397. static void snd_pcm_xrun_debug_read(struct snd_info_entry *entry,
  398. struct snd_info_buffer *buffer)
  399. {
  400. struct snd_pcm_str *pstr = entry->private_data;
  401. snd_iprintf(buffer, "%d\n", pstr->xrun_debug);
  402. }
  403. static void snd_pcm_xrun_debug_write(struct snd_info_entry *entry,
  404. struct snd_info_buffer *buffer)
  405. {
  406. struct snd_pcm_str *pstr = entry->private_data;
  407. char line[64];
  408. if (!snd_info_get_line(buffer, line, sizeof(line)))
  409. pstr->xrun_debug = simple_strtoul(line, NULL, 10);
  410. }
  411. #endif
  412. static int snd_pcm_stream_proc_init(struct snd_pcm_str *pstr)
  413. {
  414. struct snd_pcm *pcm = pstr->pcm;
  415. struct snd_info_entry *entry;
  416. char name[16];
  417. sprintf(name, "pcm%i%c", pcm->device,
  418. pstr->stream == SNDRV_PCM_STREAM_PLAYBACK ? 'p' : 'c');
  419. if ((entry = snd_info_create_card_entry(pcm->card, name, pcm->card->proc_root)) == NULL)
  420. return -ENOMEM;
  421. entry->mode = S_IFDIR | S_IRUGO | S_IXUGO;
  422. if (snd_info_register(entry) < 0) {
  423. snd_info_free_entry(entry);
  424. return -ENOMEM;
  425. }
  426. pstr->proc_root = entry;
  427. if ((entry = snd_info_create_card_entry(pcm->card, "info", pstr->proc_root)) != NULL) {
  428. snd_info_set_text_ops(entry, pstr, snd_pcm_stream_proc_info_read);
  429. if (snd_info_register(entry) < 0) {
  430. snd_info_free_entry(entry);
  431. entry = NULL;
  432. }
  433. }
  434. pstr->proc_info_entry = entry;
  435. #ifdef CONFIG_SND_PCM_XRUN_DEBUG
  436. if ((entry = snd_info_create_card_entry(pcm->card, "xrun_debug",
  437. pstr->proc_root)) != NULL) {
  438. entry->c.text.read = snd_pcm_xrun_debug_read;
  439. entry->c.text.write = snd_pcm_xrun_debug_write;
  440. entry->mode |= S_IWUSR;
  441. entry->private_data = pstr;
  442. if (snd_info_register(entry) < 0) {
  443. snd_info_free_entry(entry);
  444. entry = NULL;
  445. }
  446. }
  447. pstr->proc_xrun_debug_entry = entry;
  448. #endif
  449. return 0;
  450. }
  451. static int snd_pcm_stream_proc_done(struct snd_pcm_str *pstr)
  452. {
  453. #ifdef CONFIG_SND_PCM_XRUN_DEBUG
  454. snd_info_free_entry(pstr->proc_xrun_debug_entry);
  455. pstr->proc_xrun_debug_entry = NULL;
  456. #endif
  457. snd_info_free_entry(pstr->proc_info_entry);
  458. pstr->proc_info_entry = NULL;
  459. snd_info_free_entry(pstr->proc_root);
  460. pstr->proc_root = NULL;
  461. return 0;
  462. }
  463. static int snd_pcm_substream_proc_init(struct snd_pcm_substream *substream)
  464. {
  465. struct snd_info_entry *entry;
  466. struct snd_card *card;
  467. char name[16];
  468. card = substream->pcm->card;
  469. sprintf(name, "sub%i", substream->number);
  470. if ((entry = snd_info_create_card_entry(card, name, substream->pstr->proc_root)) == NULL)
  471. return -ENOMEM;
  472. entry->mode = S_IFDIR | S_IRUGO | S_IXUGO;
  473. if (snd_info_register(entry) < 0) {
  474. snd_info_free_entry(entry);
  475. return -ENOMEM;
  476. }
  477. substream->proc_root = entry;
  478. if ((entry = snd_info_create_card_entry(card, "info", substream->proc_root)) != NULL) {
  479. snd_info_set_text_ops(entry, substream,
  480. snd_pcm_substream_proc_info_read);
  481. if (snd_info_register(entry) < 0) {
  482. snd_info_free_entry(entry);
  483. entry = NULL;
  484. }
  485. }
  486. substream->proc_info_entry = entry;
  487. if ((entry = snd_info_create_card_entry(card, "hw_params", substream->proc_root)) != NULL) {
  488. snd_info_set_text_ops(entry, substream,
  489. snd_pcm_substream_proc_hw_params_read);
  490. if (snd_info_register(entry) < 0) {
  491. snd_info_free_entry(entry);
  492. entry = NULL;
  493. }
  494. }
  495. substream->proc_hw_params_entry = entry;
  496. if ((entry = snd_info_create_card_entry(card, "sw_params", substream->proc_root)) != NULL) {
  497. snd_info_set_text_ops(entry, substream,
  498. snd_pcm_substream_proc_sw_params_read);
  499. if (snd_info_register(entry) < 0) {
  500. snd_info_free_entry(entry);
  501. entry = NULL;
  502. }
  503. }
  504. substream->proc_sw_params_entry = entry;
  505. if ((entry = snd_info_create_card_entry(card, "status", substream->proc_root)) != NULL) {
  506. snd_info_set_text_ops(entry, substream,
  507. snd_pcm_substream_proc_status_read);
  508. if (snd_info_register(entry) < 0) {
  509. snd_info_free_entry(entry);
  510. entry = NULL;
  511. }
  512. }
  513. substream->proc_status_entry = entry;
  514. return 0;
  515. }
  516. static int snd_pcm_substream_proc_done(struct snd_pcm_substream *substream)
  517. {
  518. snd_info_free_entry(substream->proc_info_entry);
  519. substream->proc_info_entry = NULL;
  520. snd_info_free_entry(substream->proc_hw_params_entry);
  521. substream->proc_hw_params_entry = NULL;
  522. snd_info_free_entry(substream->proc_sw_params_entry);
  523. substream->proc_sw_params_entry = NULL;
  524. snd_info_free_entry(substream->proc_status_entry);
  525. substream->proc_status_entry = NULL;
  526. snd_info_free_entry(substream->proc_root);
  527. substream->proc_root = NULL;
  528. return 0;
  529. }
  530. #else /* !CONFIG_SND_VERBOSE_PROCFS */
  531. static inline int snd_pcm_stream_proc_init(struct snd_pcm_str *pstr) { return 0; }
  532. static inline int snd_pcm_stream_proc_done(struct snd_pcm_str *pstr) { return 0; }
  533. static inline int snd_pcm_substream_proc_init(struct snd_pcm_substream *substream) { return 0; }
  534. static inline int snd_pcm_substream_proc_done(struct snd_pcm_substream *substream) { return 0; }
  535. #endif /* CONFIG_SND_VERBOSE_PROCFS */
  536. /**
  537. * snd_pcm_new_stream - create a new PCM stream
  538. * @pcm: the pcm instance
  539. * @stream: the stream direction, SNDRV_PCM_STREAM_XXX
  540. * @substream_count: the number of substreams
  541. *
  542. * Creates a new stream for the pcm.
  543. * The corresponding stream on the pcm must have been empty before
  544. * calling this, i.e. zero must be given to the argument of
  545. * snd_pcm_new().
  546. *
  547. * Returns zero if successful, or a negative error code on failure.
  548. */
  549. int snd_pcm_new_stream(struct snd_pcm *pcm, int stream, int substream_count)
  550. {
  551. int idx, err;
  552. struct snd_pcm_str *pstr = &pcm->streams[stream];
  553. struct snd_pcm_substream *substream, *prev;
  554. #if defined(CONFIG_SND_PCM_OSS) || defined(CONFIG_SND_PCM_OSS_MODULE)
  555. mutex_init(&pstr->oss.setup_mutex);
  556. #endif
  557. pstr->stream = stream;
  558. pstr->pcm = pcm;
  559. pstr->substream_count = substream_count;
  560. if (substream_count > 0) {
  561. err = snd_pcm_stream_proc_init(pstr);
  562. if (err < 0) {
  563. snd_printk(KERN_ERR "Error in snd_pcm_stream_proc_init\n");
  564. return err;
  565. }
  566. }
  567. prev = NULL;
  568. for (idx = 0, prev = NULL; idx < substream_count; idx++) {
  569. substream = kzalloc(sizeof(*substream), GFP_KERNEL);
  570. if (substream == NULL) {
  571. snd_printk(KERN_ERR "Cannot allocate PCM substream\n");
  572. return -ENOMEM;
  573. }
  574. substream->pcm = pcm;
  575. substream->pstr = pstr;
  576. substream->number = idx;
  577. substream->stream = stream;
  578. sprintf(substream->name, "subdevice #%i", idx);
  579. substream->buffer_bytes_max = UINT_MAX;
  580. if (prev == NULL)
  581. pstr->substream = substream;
  582. else
  583. prev->next = substream;
  584. err = snd_pcm_substream_proc_init(substream);
  585. if (err < 0) {
  586. snd_printk(KERN_ERR "Error in snd_pcm_stream_proc_init\n");
  587. kfree(substream);
  588. return err;
  589. }
  590. substream->group = &substream->self_group;
  591. spin_lock_init(&substream->self_group.lock);
  592. INIT_LIST_HEAD(&substream->self_group.substreams);
  593. list_add_tail(&substream->link_list, &substream->self_group.substreams);
  594. spin_lock_init(&substream->timer_lock);
  595. atomic_set(&substream->mmap_count, 0);
  596. prev = substream;
  597. }
  598. return 0;
  599. }
  600. EXPORT_SYMBOL(snd_pcm_new_stream);
  601. /**
  602. * snd_pcm_new - create a new PCM instance
  603. * @card: the card instance
  604. * @id: the id string
  605. * @device: the device index (zero based)
  606. * @playback_count: the number of substreams for playback
  607. * @capture_count: the number of substreams for capture
  608. * @rpcm: the pointer to store the new pcm instance
  609. *
  610. * Creates a new PCM instance.
  611. *
  612. * The pcm operators have to be set afterwards to the new instance
  613. * via snd_pcm_set_ops().
  614. *
  615. * Returns zero if successful, or a negative error code on failure.
  616. */
  617. int snd_pcm_new(struct snd_card *card, char *id, int device,
  618. int playback_count, int capture_count,
  619. struct snd_pcm ** rpcm)
  620. {
  621. struct snd_pcm *pcm;
  622. int err;
  623. static struct snd_device_ops ops = {
  624. .dev_free = snd_pcm_dev_free,
  625. .dev_register = snd_pcm_dev_register,
  626. .dev_disconnect = snd_pcm_dev_disconnect,
  627. };
  628. snd_assert(rpcm != NULL, return -EINVAL);
  629. *rpcm = NULL;
  630. snd_assert(card != NULL, return -ENXIO);
  631. pcm = kzalloc(sizeof(*pcm), GFP_KERNEL);
  632. if (pcm == NULL) {
  633. snd_printk(KERN_ERR "Cannot allocate PCM\n");
  634. return -ENOMEM;
  635. }
  636. pcm->card = card;
  637. pcm->device = device;
  638. if (id)
  639. strlcpy(pcm->id, id, sizeof(pcm->id));
  640. if ((err = snd_pcm_new_stream(pcm, SNDRV_PCM_STREAM_PLAYBACK, playback_count)) < 0) {
  641. snd_pcm_free(pcm);
  642. return err;
  643. }
  644. if ((err = snd_pcm_new_stream(pcm, SNDRV_PCM_STREAM_CAPTURE, capture_count)) < 0) {
  645. snd_pcm_free(pcm);
  646. return err;
  647. }
  648. mutex_init(&pcm->open_mutex);
  649. init_waitqueue_head(&pcm->open_wait);
  650. if ((err = snd_device_new(card, SNDRV_DEV_PCM, pcm, &ops)) < 0) {
  651. snd_pcm_free(pcm);
  652. return err;
  653. }
  654. *rpcm = pcm;
  655. return 0;
  656. }
  657. EXPORT_SYMBOL(snd_pcm_new);
  658. static void snd_pcm_free_stream(struct snd_pcm_str * pstr)
  659. {
  660. struct snd_pcm_substream *substream, *substream_next;
  661. #if defined(CONFIG_SND_PCM_OSS) || defined(CONFIG_SND_PCM_OSS_MODULE)
  662. struct snd_pcm_oss_setup *setup, *setupn;
  663. #endif
  664. substream = pstr->substream;
  665. while (substream) {
  666. substream_next = substream->next;
  667. snd_pcm_timer_done(substream);
  668. snd_pcm_substream_proc_done(substream);
  669. kfree(substream);
  670. substream = substream_next;
  671. }
  672. snd_pcm_stream_proc_done(pstr);
  673. #if defined(CONFIG_SND_PCM_OSS) || defined(CONFIG_SND_PCM_OSS_MODULE)
  674. for (setup = pstr->oss.setup_list; setup; setup = setupn) {
  675. setupn = setup->next;
  676. kfree(setup->task_name);
  677. kfree(setup);
  678. }
  679. #endif
  680. }
  681. static int snd_pcm_free(struct snd_pcm *pcm)
  682. {
  683. struct snd_pcm_notify *notify;
  684. snd_assert(pcm != NULL, return -ENXIO);
  685. list_for_each_entry(notify, &snd_pcm_notify_list, list) {
  686. notify->n_unregister(pcm);
  687. }
  688. if (pcm->private_free)
  689. pcm->private_free(pcm);
  690. snd_pcm_lib_preallocate_free_for_all(pcm);
  691. snd_pcm_free_stream(&pcm->streams[SNDRV_PCM_STREAM_PLAYBACK]);
  692. snd_pcm_free_stream(&pcm->streams[SNDRV_PCM_STREAM_CAPTURE]);
  693. kfree(pcm);
  694. return 0;
  695. }
  696. static int snd_pcm_dev_free(struct snd_device *device)
  697. {
  698. struct snd_pcm *pcm = device->device_data;
  699. return snd_pcm_free(pcm);
  700. }
  701. static void snd_pcm_tick_timer_func(unsigned long data)
  702. {
  703. struct snd_pcm_substream *substream = (struct snd_pcm_substream *) data;
  704. snd_pcm_tick_elapsed(substream);
  705. }
  706. int snd_pcm_attach_substream(struct snd_pcm *pcm, int stream,
  707. struct file *file,
  708. struct snd_pcm_substream **rsubstream)
  709. {
  710. struct snd_pcm_str * pstr;
  711. struct snd_pcm_substream *substream;
  712. struct snd_pcm_runtime *runtime;
  713. struct snd_ctl_file *kctl;
  714. struct snd_card *card;
  715. struct list_head *list;
  716. int prefer_subdevice = -1;
  717. size_t size;
  718. snd_assert(rsubstream != NULL, return -EINVAL);
  719. *rsubstream = NULL;
  720. snd_assert(pcm != NULL, return -ENXIO);
  721. pstr = &pcm->streams[stream];
  722. if (pstr->substream == NULL || pstr->substream_count == 0)
  723. return -ENODEV;
  724. card = pcm->card;
  725. down_read(&card->controls_rwsem);
  726. list_for_each(list, &card->ctl_files) {
  727. kctl = snd_ctl_file(list);
  728. if (kctl->pid == current->pid) {
  729. prefer_subdevice = kctl->prefer_pcm_subdevice;
  730. break;
  731. }
  732. }
  733. up_read(&card->controls_rwsem);
  734. switch (stream) {
  735. case SNDRV_PCM_STREAM_PLAYBACK:
  736. if (pcm->info_flags & SNDRV_PCM_INFO_HALF_DUPLEX) {
  737. for (substream = pcm->streams[SNDRV_PCM_STREAM_CAPTURE].substream; substream; substream = substream->next) {
  738. if (SUBSTREAM_BUSY(substream))
  739. return -EAGAIN;
  740. }
  741. }
  742. break;
  743. case SNDRV_PCM_STREAM_CAPTURE:
  744. if (pcm->info_flags & SNDRV_PCM_INFO_HALF_DUPLEX) {
  745. for (substream = pcm->streams[SNDRV_PCM_STREAM_PLAYBACK].substream; substream; substream = substream->next) {
  746. if (SUBSTREAM_BUSY(substream))
  747. return -EAGAIN;
  748. }
  749. }
  750. break;
  751. default:
  752. return -EINVAL;
  753. }
  754. if (file->f_flags & O_APPEND) {
  755. if (prefer_subdevice < 0) {
  756. if (pstr->substream_count > 1)
  757. return -EINVAL; /* must be unique */
  758. substream = pstr->substream;
  759. } else {
  760. for (substream = pstr->substream; substream;
  761. substream = substream->next)
  762. if (substream->number == prefer_subdevice)
  763. break;
  764. }
  765. if (! substream)
  766. return -ENODEV;
  767. if (! SUBSTREAM_BUSY(substream))
  768. return -EBADFD;
  769. substream->ref_count++;
  770. *rsubstream = substream;
  771. return 0;
  772. }
  773. if (prefer_subdevice >= 0) {
  774. for (substream = pstr->substream; substream; substream = substream->next)
  775. if (!SUBSTREAM_BUSY(substream) && substream->number == prefer_subdevice)
  776. goto __ok;
  777. }
  778. for (substream = pstr->substream; substream; substream = substream->next)
  779. if (!SUBSTREAM_BUSY(substream))
  780. break;
  781. __ok:
  782. if (substream == NULL)
  783. return -EAGAIN;
  784. runtime = kzalloc(sizeof(*runtime), GFP_KERNEL);
  785. if (runtime == NULL)
  786. return -ENOMEM;
  787. size = PAGE_ALIGN(sizeof(struct snd_pcm_mmap_status));
  788. runtime->status = snd_malloc_pages(size, GFP_KERNEL);
  789. if (runtime->status == NULL) {
  790. kfree(runtime);
  791. return -ENOMEM;
  792. }
  793. memset((void*)runtime->status, 0, size);
  794. size = PAGE_ALIGN(sizeof(struct snd_pcm_mmap_control));
  795. runtime->control = snd_malloc_pages(size, GFP_KERNEL);
  796. if (runtime->control == NULL) {
  797. snd_free_pages((void*)runtime->status,
  798. PAGE_ALIGN(sizeof(struct snd_pcm_mmap_status)));
  799. kfree(runtime);
  800. return -ENOMEM;
  801. }
  802. memset((void*)runtime->control, 0, size);
  803. init_waitqueue_head(&runtime->sleep);
  804. init_timer(&runtime->tick_timer);
  805. runtime->tick_timer.function = snd_pcm_tick_timer_func;
  806. runtime->tick_timer.data = (unsigned long) substream;
  807. runtime->status->state = SNDRV_PCM_STATE_OPEN;
  808. substream->runtime = runtime;
  809. substream->private_data = pcm->private_data;
  810. substream->ref_count = 1;
  811. substream->f_flags = file->f_flags;
  812. pstr->substream_opened++;
  813. *rsubstream = substream;
  814. return 0;
  815. }
  816. void snd_pcm_detach_substream(struct snd_pcm_substream *substream)
  817. {
  818. struct snd_pcm_runtime *runtime;
  819. runtime = substream->runtime;
  820. snd_assert(runtime != NULL, return);
  821. if (runtime->private_free != NULL)
  822. runtime->private_free(runtime);
  823. snd_free_pages((void*)runtime->status,
  824. PAGE_ALIGN(sizeof(struct snd_pcm_mmap_status)));
  825. snd_free_pages((void*)runtime->control,
  826. PAGE_ALIGN(sizeof(struct snd_pcm_mmap_control)));
  827. kfree(runtime->hw_constraints.rules);
  828. kfree(runtime);
  829. substream->runtime = NULL;
  830. substream->pstr->substream_opened--;
  831. }
  832. static int snd_pcm_dev_register(struct snd_device *device)
  833. {
  834. int cidx, err;
  835. struct snd_pcm_substream *substream;
  836. struct list_head *list;
  837. char str[16];
  838. struct snd_pcm *pcm = device->device_data;
  839. snd_assert(pcm != NULL && device != NULL, return -ENXIO);
  840. mutex_lock(&register_mutex);
  841. if (snd_pcm_search(pcm->card, pcm->device)) {
  842. mutex_unlock(&register_mutex);
  843. return -EBUSY;
  844. }
  845. list_add_tail(&pcm->list, &snd_pcm_devices);
  846. for (cidx = 0; cidx < 2; cidx++) {
  847. int devtype = -1;
  848. if (pcm->streams[cidx].substream == NULL)
  849. continue;
  850. switch (cidx) {
  851. case SNDRV_PCM_STREAM_PLAYBACK:
  852. sprintf(str, "pcmC%iD%ip", pcm->card->number, pcm->device);
  853. devtype = SNDRV_DEVICE_TYPE_PCM_PLAYBACK;
  854. break;
  855. case SNDRV_PCM_STREAM_CAPTURE:
  856. sprintf(str, "pcmC%iD%ic", pcm->card->number, pcm->device);
  857. devtype = SNDRV_DEVICE_TYPE_PCM_CAPTURE;
  858. break;
  859. }
  860. if ((err = snd_register_device(devtype, pcm->card,
  861. pcm->device,
  862. &snd_pcm_f_ops[cidx],
  863. pcm, str)) < 0)
  864. {
  865. list_del(&pcm->list);
  866. mutex_unlock(&register_mutex);
  867. return err;
  868. }
  869. for (substream = pcm->streams[cidx].substream; substream; substream = substream->next)
  870. snd_pcm_timer_init(substream);
  871. }
  872. list_for_each(list, &snd_pcm_notify_list) {
  873. struct snd_pcm_notify *notify;
  874. notify = list_entry(list, struct snd_pcm_notify, list);
  875. notify->n_register(pcm);
  876. }
  877. mutex_unlock(&register_mutex);
  878. return 0;
  879. }
  880. static int snd_pcm_dev_disconnect(struct snd_device *device)
  881. {
  882. struct snd_pcm *pcm = device->device_data;
  883. struct snd_pcm_notify *notify;
  884. struct snd_pcm_substream *substream;
  885. int cidx, devtype;
  886. mutex_lock(&register_mutex);
  887. if (list_empty(&pcm->list))
  888. goto unlock;
  889. list_del_init(&pcm->list);
  890. for (cidx = 0; cidx < 2; cidx++)
  891. for (substream = pcm->streams[cidx].substream; substream; substream = substream->next)
  892. if (substream->runtime)
  893. substream->runtime->status->state = SNDRV_PCM_STATE_DISCONNECTED;
  894. list_for_each_entry(notify, &snd_pcm_notify_list, list) {
  895. notify->n_disconnect(pcm);
  896. }
  897. for (cidx = 0; cidx < 2; cidx++) {
  898. devtype = -1;
  899. switch (cidx) {
  900. case SNDRV_PCM_STREAM_PLAYBACK:
  901. devtype = SNDRV_DEVICE_TYPE_PCM_PLAYBACK;
  902. break;
  903. case SNDRV_PCM_STREAM_CAPTURE:
  904. devtype = SNDRV_DEVICE_TYPE_PCM_CAPTURE;
  905. break;
  906. }
  907. snd_unregister_device(devtype, pcm->card, pcm->device);
  908. }
  909. unlock:
  910. mutex_unlock(&register_mutex);
  911. return 0;
  912. }
  913. int snd_pcm_notify(struct snd_pcm_notify *notify, int nfree)
  914. {
  915. struct list_head *p;
  916. snd_assert(notify != NULL &&
  917. notify->n_register != NULL &&
  918. notify->n_unregister != NULL &&
  919. notify->n_disconnect, return -EINVAL);
  920. mutex_lock(&register_mutex);
  921. if (nfree) {
  922. list_del(&notify->list);
  923. list_for_each(p, &snd_pcm_devices)
  924. notify->n_unregister(list_entry(p,
  925. struct snd_pcm, list));
  926. } else {
  927. list_add_tail(&notify->list, &snd_pcm_notify_list);
  928. list_for_each(p, &snd_pcm_devices)
  929. notify->n_register(list_entry(p, struct snd_pcm, list));
  930. }
  931. mutex_unlock(&register_mutex);
  932. return 0;
  933. }
  934. EXPORT_SYMBOL(snd_pcm_notify);
  935. #ifdef CONFIG_PROC_FS
  936. /*
  937. * Info interface
  938. */
  939. static void snd_pcm_proc_read(struct snd_info_entry *entry,
  940. struct snd_info_buffer *buffer)
  941. {
  942. struct list_head *p;
  943. struct snd_pcm *pcm;
  944. mutex_lock(&register_mutex);
  945. list_for_each(p, &snd_pcm_devices) {
  946. pcm = list_entry(p, struct snd_pcm, list);
  947. snd_iprintf(buffer, "%02i-%02i: %s : %s",
  948. pcm->card->number, pcm->device, pcm->id, pcm->name);
  949. if (pcm->streams[SNDRV_PCM_STREAM_PLAYBACK].substream)
  950. snd_iprintf(buffer, " : playback %i",
  951. pcm->streams[SNDRV_PCM_STREAM_PLAYBACK].substream_count);
  952. if (pcm->streams[SNDRV_PCM_STREAM_CAPTURE].substream)
  953. snd_iprintf(buffer, " : capture %i",
  954. pcm->streams[SNDRV_PCM_STREAM_CAPTURE].substream_count);
  955. snd_iprintf(buffer, "\n");
  956. }
  957. mutex_unlock(&register_mutex);
  958. }
  959. static struct snd_info_entry *snd_pcm_proc_entry;
  960. static void snd_pcm_proc_init(void)
  961. {
  962. struct snd_info_entry *entry;
  963. if ((entry = snd_info_create_module_entry(THIS_MODULE, "pcm", NULL)) != NULL) {
  964. snd_info_set_text_ops(entry, NULL, snd_pcm_proc_read);
  965. if (snd_info_register(entry) < 0) {
  966. snd_info_free_entry(entry);
  967. entry = NULL;
  968. }
  969. }
  970. snd_pcm_proc_entry = entry;
  971. }
  972. static void snd_pcm_proc_done(void)
  973. {
  974. snd_info_free_entry(snd_pcm_proc_entry);
  975. }
  976. #else /* !CONFIG_PROC_FS */
  977. #define snd_pcm_proc_init()
  978. #define snd_pcm_proc_done()
  979. #endif /* CONFIG_PROC_FS */
  980. /*
  981. * ENTRY functions
  982. */
  983. static int __init alsa_pcm_init(void)
  984. {
  985. snd_ctl_register_ioctl(snd_pcm_control_ioctl);
  986. snd_ctl_register_ioctl_compat(snd_pcm_control_ioctl);
  987. snd_pcm_proc_init();
  988. return 0;
  989. }
  990. static void __exit alsa_pcm_exit(void)
  991. {
  992. snd_ctl_unregister_ioctl(snd_pcm_control_ioctl);
  993. snd_ctl_unregister_ioctl_compat(snd_pcm_control_ioctl);
  994. snd_pcm_proc_done();
  995. }
  996. module_init(alsa_pcm_init)
  997. module_exit(alsa_pcm_exit)