1 /*
2 * ALSA sequencer Timing queue handling
3 * Copyright (c) 1998-1999 by Frank van de Pol <fvdpol@coil.demon.nl>
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
18 *
19 * MAJOR CHANGES
20 * Nov. 13, 1999 Takashi Iwai <iwai@ww.uni-erlangen.de>
21 * - Queues are allocated dynamically via ioctl.
22 * - When owner client is deleted, all owned queues are deleted, too.
23 * - Owner of unlocked queue is kept unmodified even if it is
24 * manipulated by other clients.
25 * - Owner field in SET_QUEUE_OWNER ioctl must be identical with the
26 * caller client. i.e. Changing owner to a third client is not
27 * allowed.
28 *
29 * Aug. 30, 2000 Takashi Iwai
30 * - Queues are managed in static array again, but with better way.
31 * The API itself is identical.
32 * - The queue is locked when struct snd_seq_queue pointer is returned via
33 * queueptr(). This pointer *MUST* be released afterward by
34 * queuefree(ptr).
35 * - Addition of experimental sync support.
36 */
37
38 #include <linux/init.h>
39 #include <linux/slab.h>
40 #include <sound/core.h>
41
42 #include "seq_memory.h"
43 #include "seq_queue.h"
44 #include "seq_clientmgr.h"
45 #include "seq_fifo.h"
46 #include "seq_timer.h"
47 #include "seq_info.h"
48
49 /* list of allocated queues */
50 static struct snd_seq_queue *queue_list[SNDRV_SEQ_MAX_QUEUES];
51 static DEFINE_SPINLOCK(queue_list_lock);
52 /* number of queues allocated */
53 static int num_queues;
54
snd_seq_queue_get_cur_queues(void)55 int snd_seq_queue_get_cur_queues(void)
56 {
57 return num_queues;
58 }
59
60 /*----------------------------------------------------------------*/
61
62 /* assign queue id and insert to list */
queue_list_add(struct snd_seq_queue * q)63 static int queue_list_add(struct snd_seq_queue *q)
64 {
65 int i;
66 unsigned long flags;
67
68 spin_lock_irqsave(&queue_list_lock, flags);
69 for (i = 0; i < SNDRV_SEQ_MAX_QUEUES; i++) {
70 if (! queue_list[i]) {
71 queue_list[i] = q;
72 q->queue = i;
73 num_queues++;
74 spin_unlock_irqrestore(&queue_list_lock, flags);
75 return i;
76 }
77 }
78 spin_unlock_irqrestore(&queue_list_lock, flags);
79 return -1;
80 }
81
queue_list_remove(int id,int client)82 static struct snd_seq_queue *queue_list_remove(int id, int client)
83 {
84 struct snd_seq_queue *q;
85 unsigned long flags;
86
87 spin_lock_irqsave(&queue_list_lock, flags);
88 q = queue_list[id];
89 if (q) {
90 spin_lock(&q->owner_lock);
91 if (q->owner == client) {
92 /* found */
93 q->klocked = 1;
94 spin_unlock(&q->owner_lock);
95 queue_list[id] = NULL;
96 num_queues--;
97 spin_unlock_irqrestore(&queue_list_lock, flags);
98 return q;
99 }
100 spin_unlock(&q->owner_lock);
101 }
102 spin_unlock_irqrestore(&queue_list_lock, flags);
103 return NULL;
104 }
105
106 /*----------------------------------------------------------------*/
107
108 /* create new queue (constructor) */
queue_new(int owner,int locked)109 static struct snd_seq_queue *queue_new(int owner, int locked)
110 {
111 struct snd_seq_queue *q;
112
113 q = kzalloc(sizeof(*q), GFP_KERNEL);
114 if (!q)
115 return NULL;
116
117 spin_lock_init(&q->owner_lock);
118 spin_lock_init(&q->check_lock);
119 mutex_init(&q->timer_mutex);
120 snd_use_lock_init(&q->use_lock);
121 q->queue = -1;
122
123 q->tickq = snd_seq_prioq_new();
124 q->timeq = snd_seq_prioq_new();
125 q->timer = snd_seq_timer_new();
126 if (q->tickq == NULL || q->timeq == NULL || q->timer == NULL) {
127 snd_seq_prioq_delete(&q->tickq);
128 snd_seq_prioq_delete(&q->timeq);
129 snd_seq_timer_delete(&q->timer);
130 kfree(q);
131 return NULL;
132 }
133
134 q->owner = owner;
135 q->locked = locked;
136 q->klocked = 0;
137
138 return q;
139 }
140
141 /* delete queue (destructor) */
queue_delete(struct snd_seq_queue * q)142 static void queue_delete(struct snd_seq_queue *q)
143 {
144 /* stop and release the timer */
145 mutex_lock(&q->timer_mutex);
146 snd_seq_timer_stop(q->timer);
147 snd_seq_timer_close(q);
148 mutex_unlock(&q->timer_mutex);
149 /* wait until access free */
150 snd_use_lock_sync(&q->use_lock);
151 /* release resources... */
152 snd_seq_prioq_delete(&q->tickq);
153 snd_seq_prioq_delete(&q->timeq);
154 snd_seq_timer_delete(&q->timer);
155
156 kfree(q);
157 }
158
159
160 /*----------------------------------------------------------------*/
161
162 /* setup queues */
snd_seq_queues_init(void)163 int __init snd_seq_queues_init(void)
164 {
165 /*
166 memset(queue_list, 0, sizeof(queue_list));
167 num_queues = 0;
168 */
169 return 0;
170 }
171
172 /* delete all existing queues */
snd_seq_queues_delete(void)173 void __exit snd_seq_queues_delete(void)
174 {
175 int i;
176
177 /* clear list */
178 for (i = 0; i < SNDRV_SEQ_MAX_QUEUES; i++) {
179 if (queue_list[i])
180 queue_delete(queue_list[i]);
181 }
182 }
183
184 static void queue_use(struct snd_seq_queue *queue, int client, int use);
185
186 /* allocate a new queue -
187 * return pointer to new queue or ERR_PTR(-errno) for error
188 * The new queue's use_lock is set to 1. It is the caller's responsibility to
189 * call snd_use_lock_free(&q->use_lock).
190 */
snd_seq_queue_alloc(int client,int locked,unsigned int info_flags)191 struct snd_seq_queue *snd_seq_queue_alloc(int client, int locked, unsigned int info_flags)
192 {
193 struct snd_seq_queue *q;
194
195 q = queue_new(client, locked);
196 if (q == NULL)
197 return ERR_PTR(-ENOMEM);
198 q->info_flags = info_flags;
199 queue_use(q, client, 1);
200 snd_use_lock_use(&q->use_lock);
201 if (queue_list_add(q) < 0) {
202 snd_use_lock_free(&q->use_lock);
203 queue_delete(q);
204 return ERR_PTR(-ENOMEM);
205 }
206 return q;
207 }
208
209 /* delete a queue - queue must be owned by the client */
snd_seq_queue_delete(int client,int queueid)210 int snd_seq_queue_delete(int client, int queueid)
211 {
212 struct snd_seq_queue *q;
213
214 if (queueid < 0 || queueid >= SNDRV_SEQ_MAX_QUEUES)
215 return -EINVAL;
216 q = queue_list_remove(queueid, client);
217 if (q == NULL)
218 return -EINVAL;
219 queue_delete(q);
220
221 return 0;
222 }
223
224
225 /* return pointer to queue structure for specified id */
queueptr(int queueid)226 struct snd_seq_queue *queueptr(int queueid)
227 {
228 struct snd_seq_queue *q;
229 unsigned long flags;
230
231 if (queueid < 0 || queueid >= SNDRV_SEQ_MAX_QUEUES)
232 return NULL;
233 spin_lock_irqsave(&queue_list_lock, flags);
234 q = queue_list[queueid];
235 if (q)
236 snd_use_lock_use(&q->use_lock);
237 spin_unlock_irqrestore(&queue_list_lock, flags);
238 return q;
239 }
240
241 /* return the (first) queue matching with the specified name */
snd_seq_queue_find_name(char * name)242 struct snd_seq_queue *snd_seq_queue_find_name(char *name)
243 {
244 int i;
245 struct snd_seq_queue *q;
246
247 for (i = 0; i < SNDRV_SEQ_MAX_QUEUES; i++) {
248 if ((q = queueptr(i)) != NULL) {
249 if (strncmp(q->name, name, sizeof(q->name)) == 0)
250 return q;
251 queuefree(q);
252 }
253 }
254 return NULL;
255 }
256
257
258 /* -------------------------------------------------------- */
259
260 #define MAX_CELL_PROCESSES_IN_QUEUE 1000
261
snd_seq_check_queue(struct snd_seq_queue * q,int atomic,int hop)262 void snd_seq_check_queue(struct snd_seq_queue *q, int atomic, int hop)
263 {
264 unsigned long flags;
265 struct snd_seq_event_cell *cell;
266 snd_seq_tick_time_t cur_tick;
267 snd_seq_real_time_t cur_time;
268 int processed = 0;
269
270 if (q == NULL)
271 return;
272
273 /* make this function non-reentrant */
274 spin_lock_irqsave(&q->check_lock, flags);
275 if (q->check_blocked) {
276 q->check_again = 1;
277 spin_unlock_irqrestore(&q->check_lock, flags);
278 return; /* other thread is already checking queues */
279 }
280 q->check_blocked = 1;
281 spin_unlock_irqrestore(&q->check_lock, flags);
282
283 __again:
284 /* Process tick queue... */
285 cur_tick = snd_seq_timer_get_cur_tick(q->timer);
286 for (;;) {
287 cell = snd_seq_prioq_cell_out(q->tickq, &cur_tick);
288 if (!cell)
289 break;
290 snd_seq_dispatch_event(cell, atomic, hop);
291 if (++processed >= MAX_CELL_PROCESSES_IN_QUEUE)
292 goto out; /* the rest processed at the next batch */
293 }
294
295 /* Process time queue... */
296 cur_time = snd_seq_timer_get_cur_time(q->timer, false);
297 for (;;) {
298 cell = snd_seq_prioq_cell_out(q->timeq, &cur_time);
299 if (!cell)
300 break;
301 snd_seq_dispatch_event(cell, atomic, hop);
302 if (++processed >= MAX_CELL_PROCESSES_IN_QUEUE)
303 goto out; /* the rest processed at the next batch */
304 }
305
306 out:
307 /* free lock */
308 spin_lock_irqsave(&q->check_lock, flags);
309 if (q->check_again) {
310 q->check_again = 0;
311 if (processed < MAX_CELL_PROCESSES_IN_QUEUE) {
312 spin_unlock_irqrestore(&q->check_lock, flags);
313 goto __again;
314 }
315 }
316 q->check_blocked = 0;
317 spin_unlock_irqrestore(&q->check_lock, flags);
318 }
319
320
321 /* enqueue a event to singe queue */
snd_seq_enqueue_event(struct snd_seq_event_cell * cell,int atomic,int hop)322 int snd_seq_enqueue_event(struct snd_seq_event_cell *cell, int atomic, int hop)
323 {
324 int dest, err;
325 struct snd_seq_queue *q;
326
327 if (snd_BUG_ON(!cell))
328 return -EINVAL;
329 dest = cell->event.queue; /* destination queue */
330 q = queueptr(dest);
331 if (q == NULL)
332 return -EINVAL;
333 /* handle relative time stamps, convert them into absolute */
334 if ((cell->event.flags & SNDRV_SEQ_TIME_MODE_MASK) == SNDRV_SEQ_TIME_MODE_REL) {
335 switch (cell->event.flags & SNDRV_SEQ_TIME_STAMP_MASK) {
336 case SNDRV_SEQ_TIME_STAMP_TICK:
337 cell->event.time.tick += q->timer->tick.cur_tick;
338 break;
339
340 case SNDRV_SEQ_TIME_STAMP_REAL:
341 snd_seq_inc_real_time(&cell->event.time.time,
342 &q->timer->cur_time);
343 break;
344 }
345 cell->event.flags &= ~SNDRV_SEQ_TIME_MODE_MASK;
346 cell->event.flags |= SNDRV_SEQ_TIME_MODE_ABS;
347 }
348 /* enqueue event in the real-time or midi queue */
349 switch (cell->event.flags & SNDRV_SEQ_TIME_STAMP_MASK) {
350 case SNDRV_SEQ_TIME_STAMP_TICK:
351 err = snd_seq_prioq_cell_in(q->tickq, cell);
352 break;
353
354 case SNDRV_SEQ_TIME_STAMP_REAL:
355 default:
356 err = snd_seq_prioq_cell_in(q->timeq, cell);
357 break;
358 }
359
360 if (err < 0) {
361 queuefree(q); /* unlock */
362 return err;
363 }
364
365 /* trigger dispatching */
366 snd_seq_check_queue(q, atomic, hop);
367
368 queuefree(q); /* unlock */
369
370 return 0;
371 }
372
373
374 /*----------------------------------------------------------------*/
375
check_access(struct snd_seq_queue * q,int client)376 static inline int check_access(struct snd_seq_queue *q, int client)
377 {
378 return (q->owner == client) || (!q->locked && !q->klocked);
379 }
380
381 /* check if the client has permission to modify queue parameters.
382 * if it does, lock the queue
383 */
queue_access_lock(struct snd_seq_queue * q,int client)384 static int queue_access_lock(struct snd_seq_queue *q, int client)
385 {
386 unsigned long flags;
387 int access_ok;
388
389 spin_lock_irqsave(&q->owner_lock, flags);
390 access_ok = check_access(q, client);
391 if (access_ok)
392 q->klocked = 1;
393 spin_unlock_irqrestore(&q->owner_lock, flags);
394 return access_ok;
395 }
396
397 /* unlock the queue */
queue_access_unlock(struct snd_seq_queue * q)398 static inline void queue_access_unlock(struct snd_seq_queue *q)
399 {
400 unsigned long flags;
401
402 spin_lock_irqsave(&q->owner_lock, flags);
403 q->klocked = 0;
404 spin_unlock_irqrestore(&q->owner_lock, flags);
405 }
406
407 /* exported - only checking permission */
snd_seq_queue_check_access(int queueid,int client)408 int snd_seq_queue_check_access(int queueid, int client)
409 {
410 struct snd_seq_queue *q = queueptr(queueid);
411 int access_ok;
412 unsigned long flags;
413
414 if (! q)
415 return 0;
416 spin_lock_irqsave(&q->owner_lock, flags);
417 access_ok = check_access(q, client);
418 spin_unlock_irqrestore(&q->owner_lock, flags);
419 queuefree(q);
420 return access_ok;
421 }
422
423 /*----------------------------------------------------------------*/
424
425 /*
426 * change queue's owner and permission
427 */
snd_seq_queue_set_owner(int queueid,int client,int locked)428 int snd_seq_queue_set_owner(int queueid, int client, int locked)
429 {
430 struct snd_seq_queue *q = queueptr(queueid);
431 unsigned long flags;
432
433 if (q == NULL)
434 return -EINVAL;
435
436 if (! queue_access_lock(q, client)) {
437 queuefree(q);
438 return -EPERM;
439 }
440
441 spin_lock_irqsave(&q->owner_lock, flags);
442 q->locked = locked ? 1 : 0;
443 q->owner = client;
444 spin_unlock_irqrestore(&q->owner_lock, flags);
445 queue_access_unlock(q);
446 queuefree(q);
447
448 return 0;
449 }
450
451
452 /*----------------------------------------------------------------*/
453
454 /* open timer -
455 * q->use mutex should be down before calling this function to avoid
456 * confliction with snd_seq_queue_use()
457 */
snd_seq_queue_timer_open(int queueid)458 int snd_seq_queue_timer_open(int queueid)
459 {
460 int result = 0;
461 struct snd_seq_queue *queue;
462 struct snd_seq_timer *tmr;
463
464 queue = queueptr(queueid);
465 if (queue == NULL)
466 return -EINVAL;
467 tmr = queue->timer;
468 if ((result = snd_seq_timer_open(queue)) < 0) {
469 snd_seq_timer_defaults(tmr);
470 result = snd_seq_timer_open(queue);
471 }
472 queuefree(queue);
473 return result;
474 }
475
476 /* close timer -
477 * q->use mutex should be down before calling this function
478 */
snd_seq_queue_timer_close(int queueid)479 int snd_seq_queue_timer_close(int queueid)
480 {
481 struct snd_seq_queue *queue;
482 int result = 0;
483
484 queue = queueptr(queueid);
485 if (queue == NULL)
486 return -EINVAL;
487 snd_seq_timer_close(queue);
488 queuefree(queue);
489 return result;
490 }
491
492 /* change queue tempo and ppq */
snd_seq_queue_timer_set_tempo(int queueid,int client,struct snd_seq_queue_tempo * info)493 int snd_seq_queue_timer_set_tempo(int queueid, int client,
494 struct snd_seq_queue_tempo *info)
495 {
496 struct snd_seq_queue *q = queueptr(queueid);
497 int result;
498
499 if (q == NULL)
500 return -EINVAL;
501 if (! queue_access_lock(q, client)) {
502 queuefree(q);
503 return -EPERM;
504 }
505
506 result = snd_seq_timer_set_tempo(q->timer, info->tempo);
507 if (result >= 0)
508 result = snd_seq_timer_set_ppq(q->timer, info->ppq);
509 if (result >= 0 && info->skew_base > 0)
510 result = snd_seq_timer_set_skew(q->timer, info->skew_value,
511 info->skew_base);
512 queue_access_unlock(q);
513 queuefree(q);
514 return result;
515 }
516
517 /* use or unuse this queue */
queue_use(struct snd_seq_queue * queue,int client,int use)518 static void queue_use(struct snd_seq_queue *queue, int client, int use)
519 {
520 if (use) {
521 if (!test_and_set_bit(client, queue->clients_bitmap))
522 queue->clients++;
523 } else {
524 if (test_and_clear_bit(client, queue->clients_bitmap))
525 queue->clients--;
526 }
527 if (queue->clients) {
528 if (use && queue->clients == 1)
529 snd_seq_timer_defaults(queue->timer);
530 snd_seq_timer_open(queue);
531 } else {
532 snd_seq_timer_close(queue);
533 }
534 }
535
536 /* use or unuse this queue -
537 * if it is the first client, starts the timer.
538 * if it is not longer used by any clients, stop the timer.
539 */
snd_seq_queue_use(int queueid,int client,int use)540 int snd_seq_queue_use(int queueid, int client, int use)
541 {
542 struct snd_seq_queue *queue;
543
544 queue = queueptr(queueid);
545 if (queue == NULL)
546 return -EINVAL;
547 mutex_lock(&queue->timer_mutex);
548 queue_use(queue, client, use);
549 mutex_unlock(&queue->timer_mutex);
550 queuefree(queue);
551 return 0;
552 }
553
554 /*
555 * check if queue is used by the client
556 * return negative value if the queue is invalid.
557 * return 0 if not used, 1 if used.
558 */
snd_seq_queue_is_used(int queueid,int client)559 int snd_seq_queue_is_used(int queueid, int client)
560 {
561 struct snd_seq_queue *q;
562 int result;
563
564 q = queueptr(queueid);
565 if (q == NULL)
566 return -EINVAL; /* invalid queue */
567 result = test_bit(client, q->clients_bitmap) ? 1 : 0;
568 queuefree(q);
569 return result;
570 }
571
572
573 /*----------------------------------------------------------------*/
574
575 /* notification that client has left the system -
576 * stop the timer on all queues owned by this client
577 */
snd_seq_queue_client_termination(int client)578 void snd_seq_queue_client_termination(int client)
579 {
580 unsigned long flags;
581 int i;
582 struct snd_seq_queue *q;
583 bool matched;
584
585 for (i = 0; i < SNDRV_SEQ_MAX_QUEUES; i++) {
586 if ((q = queueptr(i)) == NULL)
587 continue;
588 spin_lock_irqsave(&q->owner_lock, flags);
589 matched = (q->owner == client);
590 if (matched)
591 q->klocked = 1;
592 spin_unlock_irqrestore(&q->owner_lock, flags);
593 if (matched) {
594 if (q->timer->running)
595 snd_seq_timer_stop(q->timer);
596 snd_seq_timer_reset(q->timer);
597 }
598 queuefree(q);
599 }
600 }
601
602 /* final stage notification -
603 * remove cells for no longer exist client (for non-owned queue)
604 * or delete this queue (for owned queue)
605 */
snd_seq_queue_client_leave(int client)606 void snd_seq_queue_client_leave(int client)
607 {
608 int i;
609 struct snd_seq_queue *q;
610
611 /* delete own queues from queue list */
612 for (i = 0; i < SNDRV_SEQ_MAX_QUEUES; i++) {
613 if ((q = queue_list_remove(i, client)) != NULL)
614 queue_delete(q);
615 }
616
617 /* remove cells from existing queues -
618 * they are not owned by this client
619 */
620 for (i = 0; i < SNDRV_SEQ_MAX_QUEUES; i++) {
621 if ((q = queueptr(i)) == NULL)
622 continue;
623 if (test_bit(client, q->clients_bitmap)) {
624 snd_seq_prioq_leave(q->tickq, client, 0);
625 snd_seq_prioq_leave(q->timeq, client, 0);
626 snd_seq_queue_use(q->queue, client, 0);
627 }
628 queuefree(q);
629 }
630 }
631
632
633
634 /*----------------------------------------------------------------*/
635
636 /* remove cells from all queues */
snd_seq_queue_client_leave_cells(int client)637 void snd_seq_queue_client_leave_cells(int client)
638 {
639 int i;
640 struct snd_seq_queue *q;
641
642 for (i = 0; i < SNDRV_SEQ_MAX_QUEUES; i++) {
643 if ((q = queueptr(i)) == NULL)
644 continue;
645 snd_seq_prioq_leave(q->tickq, client, 0);
646 snd_seq_prioq_leave(q->timeq, client, 0);
647 queuefree(q);
648 }
649 }
650
651 /* remove cells based on flush criteria */
snd_seq_queue_remove_cells(int client,struct snd_seq_remove_events * info)652 void snd_seq_queue_remove_cells(int client, struct snd_seq_remove_events *info)
653 {
654 int i;
655 struct snd_seq_queue *q;
656
657 for (i = 0; i < SNDRV_SEQ_MAX_QUEUES; i++) {
658 if ((q = queueptr(i)) == NULL)
659 continue;
660 if (test_bit(client, q->clients_bitmap) &&
661 (! (info->remove_mode & SNDRV_SEQ_REMOVE_DEST) ||
662 q->queue == info->queue)) {
663 snd_seq_prioq_remove_events(q->tickq, client, info);
664 snd_seq_prioq_remove_events(q->timeq, client, info);
665 }
666 queuefree(q);
667 }
668 }
669
670 /*----------------------------------------------------------------*/
671
672 /*
673 * send events to all subscribed ports
674 */
queue_broadcast_event(struct snd_seq_queue * q,struct snd_seq_event * ev,int atomic,int hop)675 static void queue_broadcast_event(struct snd_seq_queue *q, struct snd_seq_event *ev,
676 int atomic, int hop)
677 {
678 struct snd_seq_event sev;
679
680 sev = *ev;
681
682 sev.flags = SNDRV_SEQ_TIME_STAMP_TICK|SNDRV_SEQ_TIME_MODE_ABS;
683 sev.time.tick = q->timer->tick.cur_tick;
684 sev.queue = q->queue;
685 sev.data.queue.queue = q->queue;
686
687 /* broadcast events from Timer port */
688 sev.source.client = SNDRV_SEQ_CLIENT_SYSTEM;
689 sev.source.port = SNDRV_SEQ_PORT_SYSTEM_TIMER;
690 sev.dest.client = SNDRV_SEQ_ADDRESS_SUBSCRIBERS;
691 snd_seq_kernel_client_dispatch(SNDRV_SEQ_CLIENT_SYSTEM, &sev, atomic, hop);
692 }
693
694 /*
695 * process a received queue-control event.
696 * this function is exported for seq_sync.c.
697 */
snd_seq_queue_process_event(struct snd_seq_queue * q,struct snd_seq_event * ev,int atomic,int hop)698 static void snd_seq_queue_process_event(struct snd_seq_queue *q,
699 struct snd_seq_event *ev,
700 int atomic, int hop)
701 {
702 switch (ev->type) {
703 case SNDRV_SEQ_EVENT_START:
704 snd_seq_prioq_leave(q->tickq, ev->source.client, 1);
705 snd_seq_prioq_leave(q->timeq, ev->source.client, 1);
706 if (! snd_seq_timer_start(q->timer))
707 queue_broadcast_event(q, ev, atomic, hop);
708 break;
709
710 case SNDRV_SEQ_EVENT_CONTINUE:
711 if (! snd_seq_timer_continue(q->timer))
712 queue_broadcast_event(q, ev, atomic, hop);
713 break;
714
715 case SNDRV_SEQ_EVENT_STOP:
716 snd_seq_timer_stop(q->timer);
717 queue_broadcast_event(q, ev, atomic, hop);
718 break;
719
720 case SNDRV_SEQ_EVENT_TEMPO:
721 snd_seq_timer_set_tempo(q->timer, ev->data.queue.param.value);
722 queue_broadcast_event(q, ev, atomic, hop);
723 break;
724
725 case SNDRV_SEQ_EVENT_SETPOS_TICK:
726 if (snd_seq_timer_set_position_tick(q->timer, ev->data.queue.param.time.tick) == 0) {
727 queue_broadcast_event(q, ev, atomic, hop);
728 }
729 break;
730
731 case SNDRV_SEQ_EVENT_SETPOS_TIME:
732 if (snd_seq_timer_set_position_time(q->timer, ev->data.queue.param.time.time) == 0) {
733 queue_broadcast_event(q, ev, atomic, hop);
734 }
735 break;
736 case SNDRV_SEQ_EVENT_QUEUE_SKEW:
737 if (snd_seq_timer_set_skew(q->timer,
738 ev->data.queue.param.skew.value,
739 ev->data.queue.param.skew.base) == 0) {
740 queue_broadcast_event(q, ev, atomic, hop);
741 }
742 break;
743 }
744 }
745
746
747 /*
748 * Queue control via timer control port:
749 * this function is exported as a callback of timer port.
750 */
snd_seq_control_queue(struct snd_seq_event * ev,int atomic,int hop)751 int snd_seq_control_queue(struct snd_seq_event *ev, int atomic, int hop)
752 {
753 struct snd_seq_queue *q;
754
755 if (snd_BUG_ON(!ev))
756 return -EINVAL;
757 q = queueptr(ev->data.queue.queue);
758
759 if (q == NULL)
760 return -EINVAL;
761
762 if (! queue_access_lock(q, ev->source.client)) {
763 queuefree(q);
764 return -EPERM;
765 }
766
767 snd_seq_queue_process_event(q, ev, atomic, hop);
768
769 queue_access_unlock(q);
770 queuefree(q);
771 return 0;
772 }
773
774
775 /*----------------------------------------------------------------*/
776
777 #ifdef CONFIG_SND_PROC_FS
778 /* exported to seq_info.c */
snd_seq_info_queues_read(struct snd_info_entry * entry,struct snd_info_buffer * buffer)779 void snd_seq_info_queues_read(struct snd_info_entry *entry,
780 struct snd_info_buffer *buffer)
781 {
782 int i, bpm;
783 struct snd_seq_queue *q;
784 struct snd_seq_timer *tmr;
785 bool locked;
786 int owner;
787
788 for (i = 0; i < SNDRV_SEQ_MAX_QUEUES; i++) {
789 if ((q = queueptr(i)) == NULL)
790 continue;
791
792 tmr = q->timer;
793 if (tmr->tempo)
794 bpm = 60000000 / tmr->tempo;
795 else
796 bpm = 0;
797
798 spin_lock_irq(&q->owner_lock);
799 locked = q->locked;
800 owner = q->owner;
801 spin_unlock_irq(&q->owner_lock);
802
803 snd_iprintf(buffer, "queue %d: [%s]\n", q->queue, q->name);
804 snd_iprintf(buffer, "owned by client : %d\n", owner);
805 snd_iprintf(buffer, "lock status : %s\n", locked ? "Locked" : "Free");
806 snd_iprintf(buffer, "queued time events : %d\n", snd_seq_prioq_avail(q->timeq));
807 snd_iprintf(buffer, "queued tick events : %d\n", snd_seq_prioq_avail(q->tickq));
808 snd_iprintf(buffer, "timer state : %s\n", tmr->running ? "Running" : "Stopped");
809 snd_iprintf(buffer, "timer PPQ : %d\n", tmr->ppq);
810 snd_iprintf(buffer, "current tempo : %d\n", tmr->tempo);
811 snd_iprintf(buffer, "current BPM : %d\n", bpm);
812 snd_iprintf(buffer, "current time : %d.%09d s\n", tmr->cur_time.tv_sec, tmr->cur_time.tv_nsec);
813 snd_iprintf(buffer, "current tick : %d\n", tmr->tick.cur_tick);
814 snd_iprintf(buffer, "\n");
815 queuefree(q);
816 }
817 }
818 #endif /* CONFIG_SND_PROC_FS */
819
820