jack2 codebase
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  1. /*
  2. * ALSA RAWMIDI < - > JACK MIDI bridge
  3. *
  4. * Copyright (c) 2006,2007 Dmitry S. Baikov
  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. /* Required for clock_nanosleep(). Thanks, Nedko */
  21. #define _GNU_SOURCE
  22. #include <stdlib.h>
  23. #include <unistd.h>
  24. #include <errno.h>
  25. #include <pthread.h>
  26. #include <time.h>
  27. #include <limits.h>
  28. #include <ctype.h>
  29. #include <alsa/asoundlib.h>
  30. #include "ringbuffer.h"
  31. #include "midiport.h"
  32. #include "alsa_midi_impl.h"
  33. #include "midi_pack.h"
  34. #include "midi_unpack.h"
  35. #include "JackError.h"
  36. extern int clock_nanosleep(clockid_t clock_id, int flags, const struct timespec *req, struct timespec *rem);
  37. enum {
  38. NANOSLEEP_RESOLUTION = 7000
  39. };
  40. #define NFRAMES_INF ULLONG_MAX
  41. enum {
  42. #ifndef JACK_MIDI_DEBUG
  43. MAX_PFDS = 64,
  44. MAX_PORTS = MAX_PFDS-1,
  45. MAX_EVENTS = 4096,
  46. MAX_DATA = 64*1024,
  47. MIDI_THREAD_PRIO = 80
  48. #else
  49. MAX_PFDS = 6,
  50. MAX_PORTS = MAX_PFDS-1,
  51. MAX_EVENTS = 16,
  52. MAX_DATA = 64,
  53. MIDI_THREAD_PRIO = 80
  54. #endif
  55. };
  56. enum PortState {
  57. PORT_DESTROYED,
  58. PORT_CREATED,
  59. PORT_ADDED_TO_JACK,
  60. PORT_ADDED_TO_MIDI,
  61. PORT_REMOVED_FROM_MIDI,
  62. PORT_REMOVED_FROM_JACK,
  63. PORT_ZOMBIFIED,
  64. };
  65. typedef struct {
  66. int id[4]; //card, dev, dir, sub;
  67. } alsa_id_t;
  68. typedef struct {
  69. jack_time_t time;
  70. int size;
  71. int overruns;
  72. } event_head_t;
  73. typedef struct midi_port_t midi_port_t;
  74. struct midi_port_t {
  75. midi_port_t *next;
  76. enum PortState state;
  77. alsa_id_t id;
  78. char dev[16];
  79. char name[64];
  80. char device_name[64];
  81. jack_port_t *jack;
  82. snd_rawmidi_t *rawmidi;
  83. int npfds;
  84. int is_ready;
  85. jack_ringbuffer_t *event_ring;
  86. jack_ringbuffer_t *data_ring;
  87. };
  88. typedef struct input_port_t {
  89. midi_port_t base;
  90. // jack
  91. midi_unpack_t unpack;
  92. // midi
  93. int overruns;
  94. } input_port_t;
  95. typedef struct output_port_t {
  96. midi_port_t base;
  97. // jack
  98. midi_pack_t packer;
  99. // midi
  100. event_head_t next_event;
  101. int todo;
  102. } output_port_t;
  103. typedef struct alsa_rawmidi_t alsa_rawmidi_t;
  104. typedef struct {
  105. alsa_rawmidi_t *midi;
  106. midi_port_t *port;
  107. void *buffer;
  108. jack_time_t frame_time;
  109. jack_nframes_t nframes;
  110. } process_jack_t;
  111. typedef struct {
  112. alsa_rawmidi_t *midi;
  113. int mode;
  114. midi_port_t *port;
  115. struct pollfd *rpfds;
  116. struct pollfd *wpfds;
  117. int max_pfds;
  118. jack_nframes_t cur_frames;
  119. jack_time_t cur_time;
  120. jack_time_t next_time;
  121. } process_midi_t;
  122. typedef struct midi_stream_t {
  123. alsa_rawmidi_t *owner;
  124. int mode;
  125. const char *name;
  126. pthread_t thread;
  127. int wake_pipe[2];
  128. struct {
  129. jack_ringbuffer_t *new_ports;
  130. int nports;
  131. midi_port_t *ports[MAX_PORTS];
  132. } jack, midi;
  133. size_t port_size;
  134. int (*port_init)(alsa_rawmidi_t *midi, midi_port_t *port);
  135. void (*port_close)(alsa_rawmidi_t *midi, midi_port_t *port);
  136. void (*process_jack)(process_jack_t *j);
  137. int (*process_midi)(process_midi_t *m);
  138. } midi_stream_t;
  139. struct alsa_rawmidi_t {
  140. alsa_midi_t ops;
  141. jack_client_t *client;
  142. int keep_walking;
  143. struct {
  144. pthread_t thread;
  145. midi_port_t *ports;
  146. int wake_pipe[2];
  147. } scan;
  148. midi_stream_t in;
  149. midi_stream_t out;
  150. int midi_in_cnt;
  151. int midi_out_cnt;
  152. };
  153. static int input_port_init(alsa_rawmidi_t *midi, midi_port_t *port);
  154. static void input_port_close(alsa_rawmidi_t *midi, midi_port_t *port);
  155. static void do_jack_input(process_jack_t *j);
  156. static int do_midi_input(process_midi_t *m);
  157. static int output_port_init(alsa_rawmidi_t *midi, midi_port_t *port);
  158. static void output_port_close(alsa_rawmidi_t *midi, midi_port_t *port);
  159. static void do_jack_output(process_jack_t *j);
  160. static int do_midi_output(process_midi_t *m);
  161. static
  162. int stream_init(midi_stream_t *s, alsa_rawmidi_t *midi, const char *name)
  163. {
  164. s->owner = midi;
  165. s->name = name;
  166. if (pipe(s->wake_pipe)==-1) {
  167. s->wake_pipe[0] = -1;
  168. error_log("pipe() in stream_init(%s) failed: %s", name, strerror(errno));
  169. return -errno;
  170. }
  171. s->jack.new_ports = jack_ringbuffer_create(sizeof(midi_port_t*)*MAX_PORTS);
  172. s->midi.new_ports = jack_ringbuffer_create(sizeof(midi_port_t*)*MAX_PORTS);
  173. if (!s->jack.new_ports || !s->midi.new_ports)
  174. return -ENOMEM;
  175. return 0;
  176. }
  177. static
  178. void stream_close(midi_stream_t *s)
  179. {
  180. if (s->wake_pipe[0] != -1) {
  181. close(s->wake_pipe[0]);
  182. close(s->wake_pipe[1]);
  183. }
  184. if (s->jack.new_ports)
  185. jack_ringbuffer_free(s->jack.new_ports);
  186. if (s->midi.new_ports)
  187. jack_ringbuffer_free(s->midi.new_ports);
  188. }
  189. static void alsa_rawmidi_delete(alsa_midi_t *m);
  190. static int alsa_rawmidi_attach(alsa_midi_t *m);
  191. static int alsa_rawmidi_detach(alsa_midi_t *m);
  192. static int alsa_rawmidi_start(alsa_midi_t *m);
  193. static int alsa_rawmidi_stop(alsa_midi_t *m);
  194. static void alsa_rawmidi_read(alsa_midi_t *m, jack_nframes_t nframes);
  195. static void alsa_rawmidi_write(alsa_midi_t *m, jack_nframes_t nframes);
  196. alsa_midi_t* alsa_rawmidi_new(jack_client_t *jack)
  197. {
  198. alsa_rawmidi_t *midi = calloc(1, sizeof(alsa_rawmidi_t));
  199. if (!midi)
  200. goto fail_0;
  201. midi->client = jack;
  202. if (pipe(midi->scan.wake_pipe)==-1) {
  203. error_log("pipe() in alsa_midi_new failed: %s", strerror(errno));
  204. goto fail_1;
  205. }
  206. if (stream_init(&midi->in, midi, "in"))
  207. goto fail_2;
  208. midi->in.mode = POLLIN;
  209. midi->in.port_size = sizeof(input_port_t);
  210. midi->in.port_init = input_port_init;
  211. midi->in.port_close = input_port_close;
  212. midi->in.process_jack = do_jack_input;
  213. midi->in.process_midi = do_midi_input;
  214. if (stream_init(&midi->out, midi, "out"))
  215. goto fail_3;
  216. midi->out.mode = POLLOUT;
  217. midi->out.port_size = sizeof(output_port_t);
  218. midi->out.port_init = output_port_init;
  219. midi->out.port_close = output_port_close;
  220. midi->out.process_jack = do_jack_output;
  221. midi->out.process_midi = do_midi_output;
  222. midi->ops.destroy = alsa_rawmidi_delete;
  223. midi->ops.attach = alsa_rawmidi_attach;
  224. midi->ops.detach = alsa_rawmidi_detach;
  225. midi->ops.start = alsa_rawmidi_start;
  226. midi->ops.stop = alsa_rawmidi_stop;
  227. midi->ops.read = alsa_rawmidi_read;
  228. midi->ops.write = alsa_rawmidi_write;
  229. midi->midi_in_cnt = 0;
  230. midi->midi_out_cnt = 0;
  231. return &midi->ops;
  232. fail_3:
  233. stream_close(&midi->out);
  234. fail_2:
  235. stream_close(&midi->in);
  236. close(midi->scan.wake_pipe[1]);
  237. close(midi->scan.wake_pipe[0]);
  238. fail_1:
  239. free(midi);
  240. fail_0:
  241. return NULL;
  242. }
  243. static
  244. midi_port_t** scan_port_del(alsa_rawmidi_t *midi, midi_port_t **list);
  245. static
  246. void alsa_rawmidi_delete(alsa_midi_t *m)
  247. {
  248. alsa_rawmidi_t *midi = (alsa_rawmidi_t*)m;
  249. alsa_rawmidi_detach(m);
  250. stream_close(&midi->out);
  251. stream_close(&midi->in);
  252. close(midi->scan.wake_pipe[0]);
  253. close(midi->scan.wake_pipe[1]);
  254. free(midi);
  255. }
  256. static void* scan_thread(void *);
  257. static void *midi_thread(void *arg);
  258. static
  259. int alsa_rawmidi_attach(alsa_midi_t *m)
  260. {
  261. return 0;
  262. }
  263. static
  264. int alsa_rawmidi_detach(alsa_midi_t *m)
  265. {
  266. alsa_rawmidi_t *midi = (alsa_rawmidi_t*)m;
  267. midi_port_t **list;
  268. alsa_rawmidi_stop(m);
  269. list = &midi->scan.ports;
  270. while (*list) {
  271. (*list)->state = PORT_REMOVED_FROM_JACK;
  272. list = scan_port_del(midi, list);
  273. }
  274. return 0;
  275. }
  276. static
  277. int alsa_rawmidi_start(alsa_midi_t *m)
  278. {
  279. alsa_rawmidi_t *midi = (alsa_rawmidi_t*)m;
  280. int err;
  281. char c = 'q';
  282. if (midi->keep_walking == 1)
  283. return -EALREADY;
  284. midi->keep_walking = 1;
  285. if ((err = jack_client_create_thread(midi->client, &midi->in.thread, MIDI_THREAD_PRIO, jack_is_realtime(midi->client), midi_thread, &midi->in))) {
  286. midi->keep_walking = 0;
  287. return err;
  288. }
  289. if ((err = jack_client_create_thread(midi->client, &midi->out.thread, MIDI_THREAD_PRIO, jack_is_realtime(midi->client), midi_thread, &midi->out))) {
  290. midi->keep_walking = 0;
  291. write(midi->in.wake_pipe[1], &c, 1);
  292. pthread_join(midi->in.thread, NULL);
  293. return err;
  294. }
  295. if ((err = jack_client_create_thread(midi->client, &midi->scan.thread, 0, 0, scan_thread, midi))) {
  296. midi->keep_walking = 0;
  297. write(midi->in.wake_pipe[1], &c, 1);
  298. write(midi->out.wake_pipe[1], &c, 1);
  299. pthread_join(midi->in.thread, NULL);
  300. pthread_join(midi->out.thread, NULL);
  301. return err;
  302. }
  303. return 0;
  304. }
  305. static
  306. int alsa_rawmidi_stop(alsa_midi_t *m)
  307. {
  308. alsa_rawmidi_t *midi = (alsa_rawmidi_t*)m;
  309. char c = 'q';
  310. if (midi->keep_walking == 0)
  311. return -EALREADY;
  312. midi->keep_walking = 0;
  313. write(midi->in.wake_pipe[1], &c, 1);
  314. write(midi->out.wake_pipe[1], &c, 1);
  315. write(midi->scan.wake_pipe[1], &c, 1);
  316. pthread_join(midi->in.thread, NULL);
  317. pthread_join(midi->out.thread, NULL);
  318. pthread_join(midi->scan.thread, NULL);
  319. // ports are freed in alsa_midi_detach()
  320. return 0;
  321. }
  322. static void jack_process(midi_stream_t *str, jack_nframes_t nframes);
  323. static
  324. void alsa_rawmidi_read(alsa_midi_t *m, jack_nframes_t nframes)
  325. {
  326. alsa_rawmidi_t *midi = (alsa_rawmidi_t*)m;
  327. jack_process(&midi->in, nframes);
  328. }
  329. static
  330. void alsa_rawmidi_write(alsa_midi_t *m, jack_nframes_t nframes)
  331. {
  332. alsa_rawmidi_t *midi = (alsa_rawmidi_t*)m;
  333. jack_process(&midi->out, nframes);
  334. }
  335. /*
  336. * -----------------------------------------------------------------------------
  337. */
  338. static inline
  339. int can_pass(size_t sz, jack_ringbuffer_t *in, jack_ringbuffer_t *out)
  340. {
  341. return jack_ringbuffer_read_space(in) >= sz && jack_ringbuffer_write_space(out) >= sz;
  342. }
  343. static
  344. void midi_port_init(const alsa_rawmidi_t *midi, midi_port_t *port, snd_rawmidi_info_t *info, const alsa_id_t *id)
  345. {
  346. const char *name;
  347. char *c;
  348. port->id = *id;
  349. snprintf(port->dev, sizeof(port->dev), "hw:%d,%d,%d", id->id[0], id->id[1], id->id[3]);
  350. strncpy(port->device_name, snd_rawmidi_info_get_name(info), sizeof(port->device_name));
  351. name = snd_rawmidi_info_get_subdevice_name(info);
  352. if (!strlen(name))
  353. name = port->device_name;
  354. snprintf(port->name, sizeof(port->name), "%s %s %s", port->id.id[2] ? "out":"in", port->dev, name);
  355. // replace all offending characters with '-'
  356. for (c=port->name; *c; ++c)
  357. if (!isalnum(*c))
  358. *c = '-';
  359. port->state = PORT_CREATED;
  360. }
  361. static
  362. inline int midi_port_open_jack(alsa_rawmidi_t *midi, midi_port_t *port, int type, const char *alias)
  363. {
  364. char name[128];
  365. if (type & JackPortIsOutput)
  366. snprintf(name, sizeof(name), "system:midi_capture_%d", ++midi->midi_in_cnt);
  367. else
  368. snprintf(name, sizeof(name), "system:midi_playback_%d", ++midi->midi_out_cnt);
  369. port->jack = jack_port_register(midi->client, name, JACK_DEFAULT_MIDI_TYPE,
  370. type | JackPortIsPhysical | JackPortIsTerminal, 0);
  371. if (port->jack) {
  372. jack_port_set_alias(port->jack, alias);
  373. jack_port_set_default_metadata(port->jack, port->device_name);
  374. }
  375. return port->jack == NULL;
  376. }
  377. static
  378. int midi_port_open(alsa_rawmidi_t *midi, midi_port_t *port)
  379. {
  380. int err;
  381. int type;
  382. char name[64];
  383. snd_rawmidi_t **in = NULL;
  384. snd_rawmidi_t **out = NULL;
  385. if (port->id.id[2] == 0) {
  386. in = &port->rawmidi;
  387. type = JackPortIsOutput;
  388. } else {
  389. out = &port->rawmidi;
  390. type = JackPortIsInput;
  391. }
  392. if ((err = snd_rawmidi_open(in, out, port->dev, SND_RAWMIDI_NONBLOCK))<0)
  393. return err;
  394. /* Some devices (emu10k1) have subdevs with the same name,
  395. * and we need to generate unique port name for jack */
  396. strncpy(name, port->name, sizeof(name));
  397. if (midi_port_open_jack(midi, port, type, name)) {
  398. int num;
  399. num = port->id.id[3] ? port->id.id[3] : port->id.id[1];
  400. snprintf(name, sizeof(name), "%s %d", port->name, num);
  401. if (midi_port_open_jack(midi, port, type, name))
  402. return 2;
  403. }
  404. if ((port->event_ring = jack_ringbuffer_create(MAX_EVENTS*sizeof(event_head_t)))==NULL)
  405. return 3;
  406. if ((port->data_ring = jack_ringbuffer_create(MAX_DATA))==NULL)
  407. return 4;
  408. return 0;
  409. }
  410. static
  411. void midi_port_close(const alsa_rawmidi_t *midi, midi_port_t *port)
  412. {
  413. if (port->data_ring) {
  414. jack_ringbuffer_free(port->data_ring);
  415. port->data_ring = NULL;
  416. }
  417. if (port->event_ring) {
  418. jack_ringbuffer_free(port->event_ring);
  419. port->event_ring = NULL;
  420. }
  421. if (port->jack) {
  422. jack_port_unregister(midi->client, port->jack);
  423. port->jack = NULL;
  424. }
  425. if (port->rawmidi) {
  426. snd_rawmidi_close(port->rawmidi);
  427. port->rawmidi = NULL;
  428. }
  429. }
  430. /*
  431. * ------------------------- Port scanning -------------------------------
  432. */
  433. static
  434. int alsa_id_before(const alsa_id_t *p1, const alsa_id_t *p2)
  435. {
  436. int i;
  437. for (i=0; i<4; ++i) {
  438. if (p1->id[i] < p2->id[i])
  439. return 1;
  440. else if (p1->id[i] > p2->id[i])
  441. return 0;
  442. }
  443. return 0;
  444. }
  445. static
  446. void alsa_get_id(alsa_id_t *id, snd_rawmidi_info_t *info)
  447. {
  448. id->id[0] = snd_rawmidi_info_get_card(info);
  449. id->id[1] = snd_rawmidi_info_get_device(info);
  450. id->id[2] = snd_rawmidi_info_get_stream(info) == SND_RAWMIDI_STREAM_OUTPUT ? 1 : 0;
  451. id->id[3] = snd_rawmidi_info_get_subdevice(info);
  452. }
  453. #include <stdio.h>
  454. static inline
  455. void alsa_error(const char *func, int err)
  456. {
  457. error_log("%s() failed", snd_strerror(err));
  458. }
  459. typedef struct {
  460. alsa_rawmidi_t *midi;
  461. midi_port_t **iterator;
  462. snd_ctl_t *ctl;
  463. snd_rawmidi_info_t *info;
  464. } scan_t;
  465. static midi_port_t** scan_port_del(alsa_rawmidi_t *midi, midi_port_t **list);
  466. static
  467. void scan_cleanup(alsa_rawmidi_t *midi)
  468. {
  469. midi_port_t **list = &midi->scan.ports;
  470. while (*list)
  471. list = scan_port_del(midi, list);
  472. }
  473. static void scan_card(scan_t *scan);
  474. static midi_port_t** scan_port_open(alsa_rawmidi_t *midi, midi_port_t **list);
  475. void scan_cycle(alsa_rawmidi_t *midi)
  476. {
  477. int card = -1, err;
  478. scan_t scan;
  479. midi_port_t **ports;
  480. //debug_log("scan: cleanup");
  481. scan_cleanup(midi);
  482. scan.midi = midi;
  483. scan.iterator = &midi->scan.ports;
  484. snd_rawmidi_info_alloca(&scan.info);
  485. //debug_log("scan: rescan");
  486. while ((err = snd_card_next(&card))>=0 && card>=0) {
  487. char name[32];
  488. snprintf(name, sizeof(name), "hw:%d", card);
  489. if ((err = snd_ctl_open(&scan.ctl, name, SND_CTL_NONBLOCK))>=0) {
  490. scan_card(&scan);
  491. snd_ctl_close(scan.ctl);
  492. } else
  493. alsa_error("scan: snd_ctl_open", err);
  494. }
  495. // delayed open to workaround alsa<1.0.14 bug (can't open more than 1 subdevice if ctl is opened).
  496. ports = &midi->scan.ports;
  497. while (*ports) {
  498. midi_port_t *port = *ports;
  499. if (port->state == PORT_CREATED)
  500. ports = scan_port_open(midi, ports);
  501. else
  502. ports = &port->next;
  503. }
  504. }
  505. static void scan_device(scan_t *scan);
  506. static
  507. void scan_card(scan_t *scan)
  508. {
  509. int device = -1;
  510. int err;
  511. while ((err = snd_ctl_rawmidi_next_device(scan->ctl, &device))>=0 && device >=0) {
  512. snd_rawmidi_info_set_device(scan->info, device);
  513. snd_rawmidi_info_set_stream(scan->info, SND_RAWMIDI_STREAM_INPUT);
  514. snd_rawmidi_info_set_subdevice(scan->info, 0);
  515. if ((err = snd_ctl_rawmidi_info(scan->ctl, scan->info))>=0)
  516. scan_device(scan);
  517. else if (err != -ENOENT)
  518. alsa_error("scan: snd_ctl_rawmidi_info on device", err);
  519. snd_rawmidi_info_set_stream(scan->info, SND_RAWMIDI_STREAM_OUTPUT);
  520. snd_rawmidi_info_set_subdevice(scan->info, 0);
  521. if ((err = snd_ctl_rawmidi_info(scan->ctl, scan->info))>=0)
  522. scan_device(scan);
  523. else if (err != -ENOENT)
  524. alsa_error("scan: snd_ctl_rawmidi_info on device", err);
  525. }
  526. }
  527. static void scan_port_update(scan_t *scan);
  528. static
  529. void scan_device(scan_t *scan)
  530. {
  531. int err;
  532. int sub, nsubs = 0;
  533. nsubs = snd_rawmidi_info_get_subdevices_count(scan->info);
  534. for (sub=0; sub<nsubs; ++sub) {
  535. snd_rawmidi_info_set_subdevice(scan->info, sub);
  536. if ((err = snd_ctl_rawmidi_info(scan->ctl, scan->info)) < 0) {
  537. alsa_error("scan: snd_ctl_rawmidi_info on subdevice", err);
  538. continue;
  539. }
  540. scan_port_update(scan);
  541. }
  542. }
  543. static midi_port_t** scan_port_add(scan_t *scan, const alsa_id_t *id, midi_port_t **list);
  544. static
  545. void scan_port_update(scan_t *scan)
  546. {
  547. midi_port_t **list = scan->iterator;
  548. alsa_id_t id;
  549. alsa_get_id(&id, scan->info);
  550. while (*list && alsa_id_before(&(*list)->id, &id))
  551. list = scan_port_del(scan->midi, list);
  552. if (!*list || alsa_id_before(&id, &(*list)->id))
  553. list = scan_port_add(scan, &id, list);
  554. else if (*list)
  555. list = &(*list)->next;
  556. scan->iterator = list;
  557. }
  558. static
  559. midi_port_t** scan_port_add(scan_t *scan, const alsa_id_t *id, midi_port_t **list)
  560. {
  561. midi_port_t *port;
  562. midi_stream_t *str = id->id[2] ? &scan->midi->out : &scan->midi->in;
  563. port = calloc(1, str->port_size);
  564. if (!port)
  565. return list;
  566. midi_port_init(scan->midi, port, scan->info, id);
  567. port->next = *list;
  568. *list = port;
  569. info_log("scan: added port %s %s", port->dev, port->name);
  570. return &port->next;
  571. }
  572. static
  573. midi_port_t** scan_port_open(alsa_rawmidi_t *midi, midi_port_t **list)
  574. {
  575. int ret;
  576. midi_stream_t *str;
  577. midi_port_t *port;
  578. port = *list;
  579. str = port->id.id[2] ? &midi->out : &midi->in;
  580. if (jack_ringbuffer_write_space(str->jack.new_ports) < sizeof(port))
  581. goto fail_0;
  582. ret = midi_port_open(midi, port);
  583. if (ret)
  584. goto fail_1;
  585. if ((str->port_init)(midi, port))
  586. goto fail_2;
  587. port->state = PORT_ADDED_TO_JACK;
  588. jack_ringbuffer_write(str->jack.new_ports, (char*) &port, sizeof(port));
  589. info_log("scan: opened port %s %s", port->dev, port->name);
  590. return &port->next;
  591. fail_2:
  592. (str->port_close)(midi, port);
  593. fail_1:
  594. midi_port_close(midi, port);
  595. port->state = PORT_ZOMBIFIED;
  596. error_log("scan: can't open port %s %s, error code %d, zombified", port->dev, port->name, ret);
  597. return &port->next;
  598. fail_0:
  599. error_log("scan: can't open port %s %s", port->dev, port->name);
  600. return &port->next;
  601. }
  602. static
  603. midi_port_t** scan_port_del(alsa_rawmidi_t *midi, midi_port_t **list)
  604. {
  605. midi_port_t *port = *list;
  606. if (port->state == PORT_REMOVED_FROM_JACK) {
  607. info_log("scan: deleted port %s %s", port->dev, port->name);
  608. *list = port->next;
  609. if (port->id.id[2] )
  610. (midi->out.port_close)(midi, port);
  611. else
  612. (midi->in.port_close)(midi, port);
  613. midi_port_close(midi, port);
  614. free(port);
  615. return list;
  616. } else {
  617. //debug_log("can't delete port %s, wrong state: %d", port->name, (int)port->state);
  618. return &port->next;
  619. }
  620. }
  621. void* scan_thread(void *arg)
  622. {
  623. alsa_rawmidi_t *midi = arg;
  624. struct pollfd wakeup;
  625. wakeup.fd = midi->scan.wake_pipe[0];
  626. wakeup.events = POLLIN|POLLERR|POLLNVAL;
  627. while (midi->keep_walking) {
  628. int res;
  629. //error_log("scanning....");
  630. scan_cycle(midi);
  631. res = poll(&wakeup, 1, 2000);
  632. if (res>0) {
  633. char c;
  634. read(wakeup.fd, &c, 1);
  635. } else if (res<0 && errno != EINTR)
  636. break;
  637. }
  638. return NULL;
  639. }
  640. /*
  641. * ------------------------------- Input/Output ------------------------------
  642. */
  643. static
  644. void jack_add_ports(midi_stream_t *str)
  645. {
  646. midi_port_t *port;
  647. while (can_pass(sizeof(port), str->jack.new_ports, str->midi.new_ports) && str->jack.nports < MAX_PORTS) {
  648. jack_ringbuffer_read(str->jack.new_ports, (char*)&port, sizeof(port));
  649. str->jack.ports[str->jack.nports++] = port;
  650. port->state = PORT_ADDED_TO_MIDI;
  651. jack_ringbuffer_write(str->midi.new_ports, (char*)&port, sizeof(port));
  652. }
  653. }
  654. static
  655. void jack_process(midi_stream_t *str, jack_nframes_t nframes)
  656. {
  657. int r, w;
  658. process_jack_t proc;
  659. jack_nframes_t cur_frames;
  660. if (!str->owner->keep_walking)
  661. return;
  662. proc.midi = str->owner;
  663. proc.nframes = nframes;
  664. proc.frame_time = jack_last_frame_time(proc.midi->client);
  665. cur_frames = jack_frame_time(proc.midi->client);
  666. int periods_diff = cur_frames - proc.frame_time;
  667. if (periods_diff < proc.nframes) {
  668. int periods_lost = periods_diff / proc.nframes;
  669. proc.frame_time += periods_lost * proc.nframes;
  670. debug_log("xrun detected: %d periods lost", periods_lost);
  671. }
  672. // process existing ports
  673. for (r=0, w=0; r<str->jack.nports; ++r) {
  674. midi_port_t *port = str->jack.ports[r];
  675. proc.port = port;
  676. assert (port->state > PORT_ADDED_TO_JACK && port->state < PORT_REMOVED_FROM_JACK);
  677. proc.buffer = jack_port_get_buffer(port->jack, nframes);
  678. if (str->mode == POLLIN)
  679. jack_midi_clear_buffer(proc.buffer);
  680. if (port->state == PORT_REMOVED_FROM_MIDI) {
  681. port->state = PORT_REMOVED_FROM_JACK; // this signals to scan thread
  682. continue; // this effectively removes port from the midi->in.jack.ports[]
  683. }
  684. (str->process_jack)(&proc);
  685. if (r != w)
  686. str->jack.ports[w] = port;
  687. ++w;
  688. }
  689. if (str->jack.nports != w) {
  690. debug_log("jack_%s: nports %d -> %d", str->name, str->jack.nports, w);
  691. }
  692. str->jack.nports = w;
  693. jack_add_ports(str); // it makes no sense to add them earlier since they have no data yet
  694. // wake midi thread
  695. write(str->wake_pipe[1], &r, 1);
  696. }
  697. static
  698. void *midi_thread(void *arg)
  699. {
  700. midi_stream_t *str = arg;
  701. alsa_rawmidi_t *midi = str->owner;
  702. struct pollfd pfds[MAX_PFDS];
  703. int npfds;
  704. jack_time_t wait_nsec = 1000*1000*1000; // 1 sec
  705. process_midi_t proc;
  706. proc.midi = midi;
  707. proc.mode = str->mode;
  708. pfds[0].fd = str->wake_pipe[0];
  709. pfds[0].events = POLLIN|POLLERR|POLLNVAL;
  710. npfds = 1;
  711. if (jack_is_realtime(midi->client))
  712. set_threaded_log_function();
  713. //debug_log("midi_thread(%s): enter", str->name);
  714. while (midi->keep_walking) {
  715. int poll_timeout;
  716. int wait_nanosleep;
  717. int r=1, w=1; // read,write pos in pfds
  718. int rp=0, wp=0; // read, write pos in ports
  719. // sleep
  720. //if (wait_nsec != 1000*1000*1000) {
  721. // debug_log("midi_thread(%s): ", str->name);
  722. // assert (wait_nsec == 1000*1000*1000);
  723. //}
  724. poll_timeout = wait_nsec / (1000*1000);
  725. wait_nanosleep = wait_nsec % (1000*1000);
  726. if (wait_nanosleep > NANOSLEEP_RESOLUTION) {
  727. struct timespec ts;
  728. ts.tv_sec = 0;
  729. ts.tv_nsec = wait_nanosleep;
  730. #ifdef CLOCK_MONOTONIC_RAW
  731. clock_nanosleep(CLOCK_MONOTONIC_RAW, 0, &ts, NULL);
  732. #else
  733. clock_nanosleep(CLOCK_MONOTONIC, 0, &ts, NULL);
  734. #endif
  735. }
  736. int res = poll((struct pollfd*)&pfds, npfds, poll_timeout);
  737. //debug_log("midi_thread(%s): poll exit: %d", str->name, res);
  738. if (!midi->keep_walking)
  739. break;
  740. if (res < 0) {
  741. if (errno == EINTR)
  742. continue;
  743. error_log("midi_thread(%s) poll failed: %s", str->name, strerror(errno));
  744. break;
  745. }
  746. // check wakeup pipe
  747. if (pfds[0].revents & ~POLLIN)
  748. break;
  749. if (pfds[0].revents & POLLIN) {
  750. char c;
  751. read(pfds[0].fd, &c, 1);
  752. }
  753. // add new ports
  754. while (jack_ringbuffer_read_space(str->midi.new_ports) >= sizeof(midi_port_t*) && str->midi.nports < MAX_PORTS) {
  755. midi_port_t *port;
  756. jack_ringbuffer_read(str->midi.new_ports, (char*)&port, sizeof(port));
  757. str->midi.ports[str->midi.nports++] = port;
  758. debug_log("midi_thread(%s): added port %s", str->name, port->name);
  759. }
  760. // if (res == 0)
  761. // continue;
  762. // process ports
  763. proc.cur_time = 0; //jack_frame_time(midi->client);
  764. proc.next_time = NFRAMES_INF;
  765. for (rp = 0; rp < str->midi.nports; ++rp) {
  766. midi_port_t *port = str->midi.ports[rp];
  767. proc.cur_time = jack_frame_time(midi->client);
  768. proc.port = port;
  769. proc.rpfds = &pfds[r];
  770. proc.wpfds = &pfds[w];
  771. proc.max_pfds = MAX_PFDS - w;
  772. r += port->npfds;
  773. if (!(str->process_midi)(&proc)) {
  774. port->state = PORT_REMOVED_FROM_MIDI; // this signals to jack thread
  775. continue; // this effectively removes port from array
  776. }
  777. w += port->npfds;
  778. if (rp != wp)
  779. str->midi.ports[wp] = port;
  780. ++wp;
  781. }
  782. if (str->midi.nports != wp) {
  783. debug_log("midi_%s: nports %d -> %d", str->name, str->midi.nports, wp);
  784. }
  785. str->midi.nports = wp;
  786. if (npfds != w) {
  787. debug_log("midi_%s: npfds %d -> %d", str->name, npfds, w);
  788. }
  789. npfds = w;
  790. /*
  791. * Input : ports do not set proc.next_time.
  792. * Output: port sets proc.next_time ONLY if it does not have queued data.
  793. * So, zero timeout will not cause busy-looping.
  794. */
  795. if (proc.next_time < proc.cur_time) {
  796. debug_log("%s: late: next_time = %d, cur_time = %d", str->name, (int)proc.next_time, (int)proc.cur_time);
  797. wait_nsec = 0; // we are late
  798. } else if (proc.next_time != NFRAMES_INF) {
  799. jack_time_t wait_frames = proc.next_time - proc.cur_time;
  800. jack_nframes_t rate = jack_get_sample_rate(midi->client);
  801. wait_nsec = (wait_frames * (1000*1000*1000)) / rate;
  802. debug_log("midi_%s: timeout = %d", str->name, (int)wait_frames);
  803. } else
  804. wait_nsec = 1000*1000*1000;
  805. //debug_log("midi_thread(%s): wait_nsec = %lld", str->name, wait_nsec);
  806. }
  807. return NULL;
  808. }
  809. static
  810. int midi_is_ready(process_midi_t *proc)
  811. {
  812. midi_port_t *port = proc->port;
  813. if (port->npfds) {
  814. unsigned short revents = 0;
  815. int res = snd_rawmidi_poll_descriptors_revents(port->rawmidi, proc->rpfds, port->npfds, &revents);
  816. if (res) {
  817. error_log("snd_rawmidi_poll_descriptors_revents failed on port %s with: %s", port->name, snd_strerror(res));
  818. return 0;
  819. }
  820. if (revents & ~proc->mode) {
  821. debug_log("midi: port %s failed", port->name);
  822. return 0;
  823. }
  824. if (revents & proc->mode) {
  825. port->is_ready = 1;
  826. debug_log("midi: is_ready %s", port->name);
  827. }
  828. }
  829. return 1;
  830. }
  831. static
  832. int midi_update_pfds(process_midi_t *proc)
  833. {
  834. midi_port_t *port = proc->port;
  835. if (port->npfds == 0) {
  836. port->npfds = snd_rawmidi_poll_descriptors_count(port->rawmidi);
  837. if (port->npfds > proc->max_pfds) {
  838. debug_log("midi: not enough pfds for port %s", port->name);
  839. return 0;
  840. }
  841. snd_rawmidi_poll_descriptors(port->rawmidi, proc->wpfds, port->npfds);
  842. } else if (proc->rpfds != proc->wpfds) {
  843. memmove(proc->wpfds, proc->rpfds, sizeof(struct pollfd) * port->npfds);
  844. }
  845. return 1;
  846. }
  847. /*
  848. * ------------------------------------ Input ------------------------------
  849. */
  850. static
  851. int input_port_init(alsa_rawmidi_t *midi, midi_port_t *port)
  852. {
  853. input_port_t *in = (input_port_t*)port;
  854. midi_unpack_init(&in->unpack);
  855. return 0;
  856. }
  857. static
  858. void input_port_close(alsa_rawmidi_t *midi, midi_port_t *port)
  859. {}
  860. /*
  861. * Jack-level input.
  862. */
  863. static
  864. void do_jack_input(process_jack_t *p)
  865. {
  866. input_port_t *port = (input_port_t*) p->port;
  867. event_head_t event;
  868. while (jack_ringbuffer_read_space(port->base.event_ring) >= sizeof(event)) {
  869. jack_ringbuffer_data_t vec[2];
  870. jack_nframes_t time;
  871. int i, todo;
  872. jack_ringbuffer_read(port->base.event_ring, (char*)&event, sizeof(event));
  873. // TODO: take into account possible warping
  874. if ((event.time + p->nframes) < p->frame_time)
  875. time = 0;
  876. else if (event.time >= p->frame_time)
  877. time = p->nframes -1;
  878. else
  879. time = event.time + p->nframes - p->frame_time;
  880. jack_ringbuffer_get_read_vector(port->base.data_ring, vec);
  881. assert ((vec[0].len + vec[1].len) >= event.size);
  882. if (event.overruns)
  883. midi_unpack_reset(&port->unpack);
  884. todo = event.size;
  885. for (i=0; i<2 && todo>0; ++i) {
  886. int avail = todo < vec[i].len ? todo : vec[i].len;
  887. int done = midi_unpack_buf(&port->unpack, (unsigned char*)vec[i].buf, avail, p->buffer, time);
  888. if (done != avail) {
  889. debug_log("jack_in: buffer overflow in port %s", port->base.name);
  890. break;
  891. }
  892. todo -= done;
  893. }
  894. jack_ringbuffer_read_advance(port->base.data_ring, event.size);
  895. }
  896. }
  897. /*
  898. * Low level input.
  899. */
  900. static
  901. int do_midi_input(process_midi_t *proc)
  902. {
  903. input_port_t *port = (input_port_t*) proc->port;
  904. if (!midi_is_ready(proc))
  905. return 0;
  906. if (port->base.is_ready) {
  907. jack_ringbuffer_data_t vec[2];
  908. int res;
  909. jack_ringbuffer_get_write_vector(port->base.data_ring, vec);
  910. if (jack_ringbuffer_write_space(port->base.event_ring) < sizeof(event_head_t) || vec[0].len < 1) {
  911. port->overruns++;
  912. if (port->base.npfds) {
  913. debug_log("midi_in: internal overflow on %s", port->base.name);
  914. }
  915. // remove from poll to prevent busy-looping
  916. port->base.npfds = 0;
  917. return 1;
  918. }
  919. res = snd_rawmidi_read(port->base.rawmidi, vec[0].buf, vec[0].len);
  920. if (res < 0 && res != -EWOULDBLOCK) {
  921. error_log("midi_in: reading from port %s failed: %s", port->base.name, snd_strerror(res));
  922. return 0;
  923. } else if (res > 0) {
  924. event_head_t event;
  925. event.time = proc->cur_time;
  926. event.size = res;
  927. event.overruns = port->overruns;
  928. port->overruns = 0;
  929. debug_log("midi_in: read %d bytes at %d", (int)event.size, (int)event.time);
  930. jack_ringbuffer_write_advance(port->base.data_ring, event.size);
  931. jack_ringbuffer_write(port->base.event_ring, (char*)&event, sizeof(event));
  932. }
  933. port->base.is_ready = 0;
  934. }
  935. if (!midi_update_pfds(proc))
  936. return 0;
  937. return 1;
  938. }
  939. /*
  940. * ------------------------------------ Output ------------------------------
  941. */
  942. static int output_port_init(alsa_rawmidi_t *midi, midi_port_t *port)
  943. {
  944. output_port_t *out = (output_port_t*)port;
  945. midi_pack_reset(&out->packer);
  946. out->next_event.time = 0;
  947. out->next_event.size = 0;
  948. out->todo = 0;
  949. return 0;
  950. }
  951. static void output_port_close(alsa_rawmidi_t *midi, midi_port_t *port)
  952. {}
  953. static
  954. void do_jack_output(process_jack_t *proc)
  955. {
  956. output_port_t *port = (output_port_t*) proc->port;
  957. int nevents = jack_midi_get_event_count(proc->buffer);
  958. int i;
  959. if (nevents) {
  960. debug_log("jack_out: %d events in %s", nevents, port->base.name);
  961. }
  962. for (i=0; i<nevents; ++i) {
  963. jack_midi_event_t event;
  964. event_head_t hdr;
  965. jack_midi_event_get(&event, proc->buffer, i);
  966. if (jack_ringbuffer_write_space(port->base.data_ring) < event.size || jack_ringbuffer_write_space(port->base.event_ring) < sizeof(hdr)) {
  967. debug_log("jack_out: output buffer overflow on %s", port->base.name);
  968. break;
  969. }
  970. midi_pack_event(&port->packer, &event);
  971. jack_ringbuffer_write(port->base.data_ring, (char*)event.buffer, event.size);
  972. hdr.time = proc->frame_time + event.time + proc->nframes;
  973. hdr.size = event.size;
  974. jack_ringbuffer_write(port->base.event_ring, (char*)&hdr, sizeof(hdr));
  975. debug_log("jack_out: sent %d-byte event at %ld", (int)event.size, (long)event.time);
  976. }
  977. }
  978. static
  979. int do_midi_output(process_midi_t *proc)
  980. {
  981. int worked = 0;
  982. output_port_t *port = (output_port_t*) proc->port;
  983. if (!midi_is_ready(proc))
  984. return 0;
  985. // eat events
  986. while (port->next_event.time <= proc->cur_time) {
  987. port->todo += port->next_event.size;
  988. if (jack_ringbuffer_read(port->base.event_ring, (char*)&port->next_event, sizeof(port->next_event))!=sizeof(port->next_event)) {
  989. port->next_event.time = 0;
  990. port->next_event.size = 0;
  991. break;
  992. } else {
  993. debug_log("midi_out: at %ld got %d bytes for %ld", (long)proc->cur_time, (int)port->next_event.size, (long)port->next_event.time);
  994. }
  995. }
  996. if (port->todo) {
  997. debug_log("midi_out: todo = %d at %ld", (int)port->todo, (long)proc->cur_time);
  998. }
  999. // calc next wakeup time
  1000. if (!port->todo && port->next_event.time && port->next_event.time < proc->next_time) {
  1001. proc->next_time = port->next_event.time;
  1002. debug_log("midi_out: next_time = %ld", (long)proc->next_time);
  1003. }
  1004. if (port->todo && port->base.is_ready) {
  1005. // write data
  1006. int size = port->todo;
  1007. int res;
  1008. jack_ringbuffer_data_t vec[2];
  1009. jack_ringbuffer_get_read_vector(port->base.data_ring, vec);
  1010. if (size > vec[0].len) {
  1011. size = vec[0].len;
  1012. assert (size > 0);
  1013. }
  1014. res = snd_rawmidi_write(port->base.rawmidi, vec[0].buf, size);
  1015. if (res > 0) {
  1016. jack_ringbuffer_read_advance(port->base.data_ring, res);
  1017. debug_log("midi_out: written %d bytes to %s", res, port->base.name);
  1018. port->todo -= res;
  1019. worked = 1;
  1020. } else if (res == -EWOULDBLOCK) {
  1021. port->base.is_ready = 0;
  1022. debug_log("midi_out: -EWOULDBLOCK on %s", port->base.name);
  1023. return 1;
  1024. } else {
  1025. error_log("midi_out: writing to port %s failed: %s", port->base.name, snd_strerror(res));
  1026. return 0;
  1027. }
  1028. snd_rawmidi_drain(port->base.rawmidi);
  1029. }
  1030. // update pfds for this port
  1031. if (!midi_update_pfds(proc))
  1032. return 0;
  1033. if (!port->todo) {
  1034. int i;
  1035. if (worked) {
  1036. debug_log("midi_out: relaxing on %s", port->base.name);
  1037. }
  1038. for (i=0; i<port->base.npfds; ++i)
  1039. proc->wpfds[i].events &= ~POLLOUT;
  1040. } else {
  1041. int i;
  1042. for (i=0; i<port->base.npfds; ++i)
  1043. proc->wpfds[i].events |= POLLOUT;
  1044. }
  1045. return 1;
  1046. }