seq_midi_event.c 15 KB

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  1. /*
  2. * MIDI byte <-> sequencer event coder
  3. *
  4. * Copyright (C) 1998,99 Takashi Iwai <tiwai@suse.de>,
  5. * Jaroslav Kysela <perex@suse.cz>
  6. *
  7. * This program is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License as published by
  9. * the Free Software Foundation; either version 2 of the License, or
  10. * (at your option) any later version.
  11. *
  12. * This program is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  15. * GNU General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU General Public License
  18. * along with this program; if not, write to the Free Software
  19. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  20. */
  21. #include <sound/driver.h>
  22. #include <linux/slab.h>
  23. #include <linux/errno.h>
  24. #include <linux/string.h>
  25. #include <sound/core.h>
  26. #include <sound/seq_kernel.h>
  27. #include <sound/seq_midi_event.h>
  28. #include <sound/asoundef.h>
  29. MODULE_AUTHOR("Takashi Iwai <tiwai@suse.de>, Jaroslav Kysela <perex@suse.cz>");
  30. MODULE_DESCRIPTION("MIDI byte <-> sequencer event coder");
  31. MODULE_LICENSE("GPL");
  32. /* event type, index into status_event[] */
  33. /* from 0 to 6 are normal commands (note off, on, etc.) for 0x9?-0xe? */
  34. #define ST_INVALID 7
  35. #define ST_SPECIAL 8
  36. #define ST_SYSEX ST_SPECIAL
  37. /* from 8 to 15 are events for 0xf0-0xf7 */
  38. /*
  39. * prototypes
  40. */
  41. static void note_event(struct snd_midi_event *dev, struct snd_seq_event *ev);
  42. static void one_param_ctrl_event(struct snd_midi_event *dev, struct snd_seq_event *ev);
  43. static void pitchbend_ctrl_event(struct snd_midi_event *dev, struct snd_seq_event *ev);
  44. static void two_param_ctrl_event(struct snd_midi_event *dev, struct snd_seq_event *ev);
  45. static void one_param_event(struct snd_midi_event *dev, struct snd_seq_event *ev);
  46. static void songpos_event(struct snd_midi_event *dev, struct snd_seq_event *ev);
  47. static void note_decode(struct snd_seq_event *ev, unsigned char *buf);
  48. static void one_param_decode(struct snd_seq_event *ev, unsigned char *buf);
  49. static void pitchbend_decode(struct snd_seq_event *ev, unsigned char *buf);
  50. static void two_param_decode(struct snd_seq_event *ev, unsigned char *buf);
  51. static void songpos_decode(struct snd_seq_event *ev, unsigned char *buf);
  52. /*
  53. * event list
  54. */
  55. static struct status_event_list {
  56. int event;
  57. int qlen;
  58. void (*encode)(struct snd_midi_event *dev, struct snd_seq_event *ev);
  59. void (*decode)(struct snd_seq_event *ev, unsigned char *buf);
  60. } status_event[] = {
  61. /* 0x80 - 0xef */
  62. {SNDRV_SEQ_EVENT_NOTEOFF, 2, note_event, note_decode},
  63. {SNDRV_SEQ_EVENT_NOTEON, 2, note_event, note_decode},
  64. {SNDRV_SEQ_EVENT_KEYPRESS, 2, note_event, note_decode},
  65. {SNDRV_SEQ_EVENT_CONTROLLER, 2, two_param_ctrl_event, two_param_decode},
  66. {SNDRV_SEQ_EVENT_PGMCHANGE, 1, one_param_ctrl_event, one_param_decode},
  67. {SNDRV_SEQ_EVENT_CHANPRESS, 1, one_param_ctrl_event, one_param_decode},
  68. {SNDRV_SEQ_EVENT_PITCHBEND, 2, pitchbend_ctrl_event, pitchbend_decode},
  69. /* invalid */
  70. {SNDRV_SEQ_EVENT_NONE, 0, NULL, NULL},
  71. /* 0xf0 - 0xff */
  72. {SNDRV_SEQ_EVENT_SYSEX, 1, NULL, NULL}, /* sysex: 0xf0 */
  73. {SNDRV_SEQ_EVENT_QFRAME, 1, one_param_event, one_param_decode}, /* 0xf1 */
  74. {SNDRV_SEQ_EVENT_SONGPOS, 2, songpos_event, songpos_decode}, /* 0xf2 */
  75. {SNDRV_SEQ_EVENT_SONGSEL, 1, one_param_event, one_param_decode}, /* 0xf3 */
  76. {SNDRV_SEQ_EVENT_NONE, 0, NULL, NULL}, /* 0xf4 */
  77. {SNDRV_SEQ_EVENT_NONE, 0, NULL, NULL}, /* 0xf5 */
  78. {SNDRV_SEQ_EVENT_TUNE_REQUEST, 0, NULL, NULL}, /* 0xf6 */
  79. {SNDRV_SEQ_EVENT_NONE, 0, NULL, NULL}, /* 0xf7 */
  80. {SNDRV_SEQ_EVENT_CLOCK, 0, NULL, NULL}, /* 0xf8 */
  81. {SNDRV_SEQ_EVENT_NONE, 0, NULL, NULL}, /* 0xf9 */
  82. {SNDRV_SEQ_EVENT_START, 0, NULL, NULL}, /* 0xfa */
  83. {SNDRV_SEQ_EVENT_CONTINUE, 0, NULL, NULL}, /* 0xfb */
  84. {SNDRV_SEQ_EVENT_STOP, 0, NULL, NULL}, /* 0xfc */
  85. {SNDRV_SEQ_EVENT_NONE, 0, NULL, NULL}, /* 0xfd */
  86. {SNDRV_SEQ_EVENT_SENSING, 0, NULL, NULL}, /* 0xfe */
  87. {SNDRV_SEQ_EVENT_RESET, 0, NULL, NULL}, /* 0xff */
  88. };
  89. static int extra_decode_ctrl14(struct snd_midi_event *dev, unsigned char *buf, int len,
  90. struct snd_seq_event *ev);
  91. static int extra_decode_xrpn(struct snd_midi_event *dev, unsigned char *buf, int count,
  92. struct snd_seq_event *ev);
  93. static struct extra_event_list {
  94. int event;
  95. int (*decode)(struct snd_midi_event *dev, unsigned char *buf, int len,
  96. struct snd_seq_event *ev);
  97. } extra_event[] = {
  98. {SNDRV_SEQ_EVENT_CONTROL14, extra_decode_ctrl14},
  99. {SNDRV_SEQ_EVENT_NONREGPARAM, extra_decode_xrpn},
  100. {SNDRV_SEQ_EVENT_REGPARAM, extra_decode_xrpn},
  101. };
  102. /*
  103. * new/delete record
  104. */
  105. int snd_midi_event_new(int bufsize, struct snd_midi_event **rdev)
  106. {
  107. struct snd_midi_event *dev;
  108. *rdev = NULL;
  109. dev = kzalloc(sizeof(*dev), GFP_KERNEL);
  110. if (dev == NULL)
  111. return -ENOMEM;
  112. if (bufsize > 0) {
  113. dev->buf = kmalloc(bufsize, GFP_KERNEL);
  114. if (dev->buf == NULL) {
  115. kfree(dev);
  116. return -ENOMEM;
  117. }
  118. }
  119. dev->bufsize = bufsize;
  120. dev->lastcmd = 0xff;
  121. dev->type = ST_INVALID;
  122. spin_lock_init(&dev->lock);
  123. *rdev = dev;
  124. return 0;
  125. }
  126. void snd_midi_event_free(struct snd_midi_event *dev)
  127. {
  128. if (dev != NULL) {
  129. kfree(dev->buf);
  130. kfree(dev);
  131. }
  132. }
  133. /*
  134. * initialize record
  135. */
  136. static inline void reset_encode(struct snd_midi_event *dev)
  137. {
  138. dev->read = 0;
  139. dev->qlen = 0;
  140. dev->type = ST_INVALID;
  141. }
  142. void snd_midi_event_reset_encode(struct snd_midi_event *dev)
  143. {
  144. unsigned long flags;
  145. spin_lock_irqsave(&dev->lock, flags);
  146. reset_encode(dev);
  147. spin_unlock_irqrestore(&dev->lock, flags);
  148. }
  149. void snd_midi_event_reset_decode(struct snd_midi_event *dev)
  150. {
  151. unsigned long flags;
  152. spin_lock_irqsave(&dev->lock, flags);
  153. dev->lastcmd = 0xff;
  154. spin_unlock_irqrestore(&dev->lock, flags);
  155. }
  156. #if 0
  157. void snd_midi_event_init(struct snd_midi_event *dev)
  158. {
  159. snd_midi_event_reset_encode(dev);
  160. snd_midi_event_reset_decode(dev);
  161. }
  162. #endif /* 0 */
  163. void snd_midi_event_no_status(struct snd_midi_event *dev, int on)
  164. {
  165. dev->nostat = on ? 1 : 0;
  166. }
  167. /*
  168. * resize buffer
  169. */
  170. #if 0
  171. int snd_midi_event_resize_buffer(struct snd_midi_event *dev, int bufsize)
  172. {
  173. unsigned char *new_buf, *old_buf;
  174. unsigned long flags;
  175. if (bufsize == dev->bufsize)
  176. return 0;
  177. new_buf = kmalloc(bufsize, GFP_KERNEL);
  178. if (new_buf == NULL)
  179. return -ENOMEM;
  180. spin_lock_irqsave(&dev->lock, flags);
  181. old_buf = dev->buf;
  182. dev->buf = new_buf;
  183. dev->bufsize = bufsize;
  184. reset_encode(dev);
  185. spin_unlock_irqrestore(&dev->lock, flags);
  186. kfree(old_buf);
  187. return 0;
  188. }
  189. #endif /* 0 */
  190. /*
  191. * read bytes and encode to sequencer event if finished
  192. * return the size of encoded bytes
  193. */
  194. long snd_midi_event_encode(struct snd_midi_event *dev, unsigned char *buf, long count,
  195. struct snd_seq_event *ev)
  196. {
  197. long result = 0;
  198. int rc;
  199. ev->type = SNDRV_SEQ_EVENT_NONE;
  200. while (count-- > 0) {
  201. rc = snd_midi_event_encode_byte(dev, *buf++, ev);
  202. result++;
  203. if (rc < 0)
  204. return rc;
  205. else if (rc > 0)
  206. return result;
  207. }
  208. return result;
  209. }
  210. /*
  211. * read one byte and encode to sequencer event:
  212. * return 1 if MIDI bytes are encoded to an event
  213. * 0 data is not finished
  214. * negative for error
  215. */
  216. int snd_midi_event_encode_byte(struct snd_midi_event *dev, int c,
  217. struct snd_seq_event *ev)
  218. {
  219. int rc = 0;
  220. unsigned long flags;
  221. c &= 0xff;
  222. if (c >= MIDI_CMD_COMMON_CLOCK) {
  223. /* real-time event */
  224. ev->type = status_event[ST_SPECIAL + c - 0xf0].event;
  225. ev->flags &= ~SNDRV_SEQ_EVENT_LENGTH_MASK;
  226. ev->flags |= SNDRV_SEQ_EVENT_LENGTH_FIXED;
  227. return 1;
  228. }
  229. spin_lock_irqsave(&dev->lock, flags);
  230. if (dev->qlen > 0) {
  231. /* rest of command */
  232. dev->buf[dev->read++] = c;
  233. if (dev->type != ST_SYSEX)
  234. dev->qlen--;
  235. } else {
  236. /* new command */
  237. dev->read = 1;
  238. if (c & 0x80) {
  239. dev->buf[0] = c;
  240. if ((c & 0xf0) == 0xf0) /* special events */
  241. dev->type = (c & 0x0f) + ST_SPECIAL;
  242. else
  243. dev->type = (c >> 4) & 0x07;
  244. dev->qlen = status_event[dev->type].qlen;
  245. } else {
  246. /* process this byte as argument */
  247. dev->buf[dev->read++] = c;
  248. dev->qlen = status_event[dev->type].qlen - 1;
  249. }
  250. }
  251. if (dev->qlen == 0) {
  252. ev->type = status_event[dev->type].event;
  253. ev->flags &= ~SNDRV_SEQ_EVENT_LENGTH_MASK;
  254. ev->flags |= SNDRV_SEQ_EVENT_LENGTH_FIXED;
  255. if (status_event[dev->type].encode) /* set data values */
  256. status_event[dev->type].encode(dev, ev);
  257. if (dev->type >= ST_SPECIAL)
  258. dev->type = ST_INVALID;
  259. rc = 1;
  260. } else if (dev->type == ST_SYSEX) {
  261. if (c == MIDI_CMD_COMMON_SYSEX_END ||
  262. dev->read >= dev->bufsize) {
  263. ev->flags &= ~SNDRV_SEQ_EVENT_LENGTH_MASK;
  264. ev->flags |= SNDRV_SEQ_EVENT_LENGTH_VARIABLE;
  265. ev->type = SNDRV_SEQ_EVENT_SYSEX;
  266. ev->data.ext.len = dev->read;
  267. ev->data.ext.ptr = dev->buf;
  268. if (c != MIDI_CMD_COMMON_SYSEX_END)
  269. dev->read = 0; /* continue to parse */
  270. else
  271. reset_encode(dev); /* all parsed */
  272. rc = 1;
  273. }
  274. }
  275. spin_unlock_irqrestore(&dev->lock, flags);
  276. return rc;
  277. }
  278. /* encode note event */
  279. static void note_event(struct snd_midi_event *dev, struct snd_seq_event *ev)
  280. {
  281. ev->data.note.channel = dev->buf[0] & 0x0f;
  282. ev->data.note.note = dev->buf[1];
  283. ev->data.note.velocity = dev->buf[2];
  284. }
  285. /* encode one parameter controls */
  286. static void one_param_ctrl_event(struct snd_midi_event *dev, struct snd_seq_event *ev)
  287. {
  288. ev->data.control.channel = dev->buf[0] & 0x0f;
  289. ev->data.control.value = dev->buf[1];
  290. }
  291. /* encode pitch wheel change */
  292. static void pitchbend_ctrl_event(struct snd_midi_event *dev, struct snd_seq_event *ev)
  293. {
  294. ev->data.control.channel = dev->buf[0] & 0x0f;
  295. ev->data.control.value = (int)dev->buf[2] * 128 + (int)dev->buf[1] - 8192;
  296. }
  297. /* encode midi control change */
  298. static void two_param_ctrl_event(struct snd_midi_event *dev, struct snd_seq_event *ev)
  299. {
  300. ev->data.control.channel = dev->buf[0] & 0x0f;
  301. ev->data.control.param = dev->buf[1];
  302. ev->data.control.value = dev->buf[2];
  303. }
  304. /* encode one parameter value*/
  305. static void one_param_event(struct snd_midi_event *dev, struct snd_seq_event *ev)
  306. {
  307. ev->data.control.value = dev->buf[1];
  308. }
  309. /* encode song position */
  310. static void songpos_event(struct snd_midi_event *dev, struct snd_seq_event *ev)
  311. {
  312. ev->data.control.value = (int)dev->buf[2] * 128 + (int)dev->buf[1];
  313. }
  314. /*
  315. * decode from a sequencer event to midi bytes
  316. * return the size of decoded midi events
  317. */
  318. long snd_midi_event_decode(struct snd_midi_event *dev, unsigned char *buf, long count,
  319. struct snd_seq_event *ev)
  320. {
  321. unsigned int cmd, type;
  322. if (ev->type == SNDRV_SEQ_EVENT_NONE)
  323. return -ENOENT;
  324. for (type = 0; type < ARRAY_SIZE(status_event); type++) {
  325. if (ev->type == status_event[type].event)
  326. goto __found;
  327. }
  328. for (type = 0; type < ARRAY_SIZE(extra_event); type++) {
  329. if (ev->type == extra_event[type].event)
  330. return extra_event[type].decode(dev, buf, count, ev);
  331. }
  332. return -ENOENT;
  333. __found:
  334. if (type >= ST_SPECIAL)
  335. cmd = 0xf0 + (type - ST_SPECIAL);
  336. else
  337. /* data.note.channel and data.control.channel is identical */
  338. cmd = 0x80 | (type << 4) | (ev->data.note.channel & 0x0f);
  339. if (cmd == MIDI_CMD_COMMON_SYSEX) {
  340. snd_midi_event_reset_decode(dev);
  341. return snd_seq_expand_var_event(ev, count, buf, 1, 0);
  342. } else {
  343. int qlen;
  344. unsigned char xbuf[4];
  345. unsigned long flags;
  346. spin_lock_irqsave(&dev->lock, flags);
  347. if ((cmd & 0xf0) == 0xf0 || dev->lastcmd != cmd || dev->nostat) {
  348. dev->lastcmd = cmd;
  349. spin_unlock_irqrestore(&dev->lock, flags);
  350. xbuf[0] = cmd;
  351. if (status_event[type].decode)
  352. status_event[type].decode(ev, xbuf + 1);
  353. qlen = status_event[type].qlen + 1;
  354. } else {
  355. spin_unlock_irqrestore(&dev->lock, flags);
  356. if (status_event[type].decode)
  357. status_event[type].decode(ev, xbuf + 0);
  358. qlen = status_event[type].qlen;
  359. }
  360. if (count < qlen)
  361. return -ENOMEM;
  362. memcpy(buf, xbuf, qlen);
  363. return qlen;
  364. }
  365. }
  366. /* decode note event */
  367. static void note_decode(struct snd_seq_event *ev, unsigned char *buf)
  368. {
  369. buf[0] = ev->data.note.note & 0x7f;
  370. buf[1] = ev->data.note.velocity & 0x7f;
  371. }
  372. /* decode one parameter controls */
  373. static void one_param_decode(struct snd_seq_event *ev, unsigned char *buf)
  374. {
  375. buf[0] = ev->data.control.value & 0x7f;
  376. }
  377. /* decode pitch wheel change */
  378. static void pitchbend_decode(struct snd_seq_event *ev, unsigned char *buf)
  379. {
  380. int value = ev->data.control.value + 8192;
  381. buf[0] = value & 0x7f;
  382. buf[1] = (value >> 7) & 0x7f;
  383. }
  384. /* decode midi control change */
  385. static void two_param_decode(struct snd_seq_event *ev, unsigned char *buf)
  386. {
  387. buf[0] = ev->data.control.param & 0x7f;
  388. buf[1] = ev->data.control.value & 0x7f;
  389. }
  390. /* decode song position */
  391. static void songpos_decode(struct snd_seq_event *ev, unsigned char *buf)
  392. {
  393. buf[0] = ev->data.control.value & 0x7f;
  394. buf[1] = (ev->data.control.value >> 7) & 0x7f;
  395. }
  396. /* decode 14bit control */
  397. static int extra_decode_ctrl14(struct snd_midi_event *dev, unsigned char *buf,
  398. int count, struct snd_seq_event *ev)
  399. {
  400. unsigned char cmd;
  401. int idx = 0;
  402. cmd = MIDI_CMD_CONTROL|(ev->data.control.channel & 0x0f);
  403. if (ev->data.control.param < 0x20) {
  404. if (count < 4)
  405. return -ENOMEM;
  406. if (dev->nostat && count < 6)
  407. return -ENOMEM;
  408. if (cmd != dev->lastcmd || dev->nostat) {
  409. if (count < 5)
  410. return -ENOMEM;
  411. buf[idx++] = dev->lastcmd = cmd;
  412. }
  413. buf[idx++] = ev->data.control.param;
  414. buf[idx++] = (ev->data.control.value >> 7) & 0x7f;
  415. if (dev->nostat)
  416. buf[idx++] = cmd;
  417. buf[idx++] = ev->data.control.param + 0x20;
  418. buf[idx++] = ev->data.control.value & 0x7f;
  419. } else {
  420. if (count < 2)
  421. return -ENOMEM;
  422. if (cmd != dev->lastcmd || dev->nostat) {
  423. if (count < 3)
  424. return -ENOMEM;
  425. buf[idx++] = dev->lastcmd = cmd;
  426. }
  427. buf[idx++] = ev->data.control.param & 0x7f;
  428. buf[idx++] = ev->data.control.value & 0x7f;
  429. }
  430. return idx;
  431. }
  432. /* decode reg/nonreg param */
  433. static int extra_decode_xrpn(struct snd_midi_event *dev, unsigned char *buf,
  434. int count, struct snd_seq_event *ev)
  435. {
  436. unsigned char cmd;
  437. char *cbytes;
  438. static char cbytes_nrpn[4] = { MIDI_CTL_NONREG_PARM_NUM_MSB,
  439. MIDI_CTL_NONREG_PARM_NUM_LSB,
  440. MIDI_CTL_MSB_DATA_ENTRY,
  441. MIDI_CTL_LSB_DATA_ENTRY };
  442. static char cbytes_rpn[4] = { MIDI_CTL_REGIST_PARM_NUM_MSB,
  443. MIDI_CTL_REGIST_PARM_NUM_LSB,
  444. MIDI_CTL_MSB_DATA_ENTRY,
  445. MIDI_CTL_LSB_DATA_ENTRY };
  446. unsigned char bytes[4];
  447. int idx = 0, i;
  448. if (count < 8)
  449. return -ENOMEM;
  450. if (dev->nostat && count < 12)
  451. return -ENOMEM;
  452. cmd = MIDI_CMD_CONTROL|(ev->data.control.channel & 0x0f);
  453. bytes[0] = ev->data.control.param & 0x007f;
  454. bytes[1] = (ev->data.control.param & 0x3f80) >> 7;
  455. bytes[2] = ev->data.control.value & 0x007f;
  456. bytes[3] = (ev->data.control.value & 0x3f80) >> 7;
  457. if (cmd != dev->lastcmd && !dev->nostat) {
  458. if (count < 9)
  459. return -ENOMEM;
  460. buf[idx++] = dev->lastcmd = cmd;
  461. }
  462. cbytes = ev->type == SNDRV_SEQ_EVENT_NONREGPARAM ? cbytes_nrpn : cbytes_rpn;
  463. for (i = 0; i < 4; i++) {
  464. if (dev->nostat)
  465. buf[idx++] = dev->lastcmd = cmd;
  466. buf[idx++] = cbytes[i];
  467. buf[idx++] = bytes[i];
  468. }
  469. return idx;
  470. }
  471. /*
  472. * exports
  473. */
  474. EXPORT_SYMBOL(snd_midi_event_new);
  475. EXPORT_SYMBOL(snd_midi_event_free);
  476. EXPORT_SYMBOL(snd_midi_event_reset_encode);
  477. EXPORT_SYMBOL(snd_midi_event_reset_decode);
  478. EXPORT_SYMBOL(snd_midi_event_no_status);
  479. EXPORT_SYMBOL(snd_midi_event_encode);
  480. EXPORT_SYMBOL(snd_midi_event_encode_byte);
  481. EXPORT_SYMBOL(snd_midi_event_decode);
  482. static int __init alsa_seq_midi_event_init(void)
  483. {
  484. return 0;
  485. }
  486. static void __exit alsa_seq_midi_event_exit(void)
  487. {
  488. }
  489. module_init(alsa_seq_midi_event_init)
  490. module_exit(alsa_seq_midi_event_exit)