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1/*
2 * Timers abstract layer
3 * Copyright (c) by Jaroslav Kysela <perex@perex.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
22#include <linux/delay.h>
23#include <linux/init.h>
24#include <linux/slab.h>
25#include <linux/time.h>
26#include <linux/mutex.h>
27#include <linux/device.h>
28#include <linux/module.h>
29#include <linux/string.h>
30#include <sound/core.h>
31#include <sound/timer.h>
32#include <sound/control.h>
33#include <sound/info.h>
34#include <sound/minors.h>
35#include <sound/initval.h>
36#include <linux/kmod.h>
37
38/* internal flags */
39#define SNDRV_TIMER_IFLG_PAUSED 0x00010000
40
41#if IS_ENABLED(CONFIG_SND_HRTIMER)
42#define DEFAULT_TIMER_LIMIT 4
43#else
44#define DEFAULT_TIMER_LIMIT 1
45#endif
46
47static int timer_limit = DEFAULT_TIMER_LIMIT;
48static int timer_tstamp_monotonic = 1;
49MODULE_AUTHOR("Jaroslav Kysela <perex@perex.cz>, Takashi Iwai <tiwai@suse.de>");
50MODULE_DESCRIPTION("ALSA timer interface");
51MODULE_LICENSE("GPL");
52module_param(timer_limit, int, 0444);
53MODULE_PARM_DESC(timer_limit, "Maximum global timers in system.");
54module_param(timer_tstamp_monotonic, int, 0444);
55MODULE_PARM_DESC(timer_tstamp_monotonic, "Use posix monotonic clock source for timestamps (default).");
56
57MODULE_ALIAS_CHARDEV(CONFIG_SND_MAJOR, SNDRV_MINOR_TIMER);
58MODULE_ALIAS("devname:snd/timer");
59
60struct snd_timer_user {
61 struct snd_timer_instance *timeri;
62 int tread; /* enhanced read with timestamps and events */
63 unsigned long ticks;
64 unsigned long overrun;
65 int qhead;
66 int qtail;
67 int qused;
68 int queue_size;
69 bool disconnected;
70 struct snd_timer_read *queue;
71 struct snd_timer_tread *tqueue;
72 spinlock_t qlock;
73 unsigned long last_resolution;
74 unsigned int filter;
75 struct timespec tstamp; /* trigger tstamp */
76 wait_queue_head_t qchange_sleep;
77 struct fasync_struct *fasync;
78 struct mutex ioctl_lock;
79};
80
81/* list of timers */
82static LIST_HEAD(snd_timer_list);
83
84/* list of slave instances */
85static LIST_HEAD(snd_timer_slave_list);
86
87/* lock for slave active lists */
88static DEFINE_SPINLOCK(slave_active_lock);
89
90static DEFINE_MUTEX(register_mutex);
91
92static int snd_timer_free(struct snd_timer *timer);
93static int snd_timer_dev_free(struct snd_device *device);
94static int snd_timer_dev_register(struct snd_device *device);
95static int snd_timer_dev_disconnect(struct snd_device *device);
96
97static void snd_timer_reschedule(struct snd_timer * timer, unsigned long ticks_left);
98
99/*
100 * create a timer instance with the given owner string.
101 * when timer is not NULL, increments the module counter
102 */
103static struct snd_timer_instance *snd_timer_instance_new(char *owner,
104 struct snd_timer *timer)
105{
106 struct snd_timer_instance *timeri;
107 timeri = kzalloc(sizeof(*timeri), GFP_KERNEL);
108 if (timeri == NULL)
109 return NULL;
110 timeri->owner = kstrdup(owner, GFP_KERNEL);
111 if (! timeri->owner) {
112 kfree(timeri);
113 return NULL;
114 }
115 INIT_LIST_HEAD(&timeri->open_list);
116 INIT_LIST_HEAD(&timeri->active_list);
117 INIT_LIST_HEAD(&timeri->ack_list);
118 INIT_LIST_HEAD(&timeri->slave_list_head);
119 INIT_LIST_HEAD(&timeri->slave_active_head);
120
121 timeri->timer = timer;
122 if (timer && !try_module_get(timer->module)) {
123 kfree(timeri->owner);
124 kfree(timeri);
125 return NULL;
126 }
127
128 return timeri;
129}
130
131/*
132 * find a timer instance from the given timer id
133 */
134static struct snd_timer *snd_timer_find(struct snd_timer_id *tid)
135{
136 struct snd_timer *timer = NULL;
137
138 list_for_each_entry(timer, &snd_timer_list, device_list) {
139 if (timer->tmr_class != tid->dev_class)
140 continue;
141 if ((timer->tmr_class == SNDRV_TIMER_CLASS_CARD ||
142 timer->tmr_class == SNDRV_TIMER_CLASS_PCM) &&
143 (timer->card == NULL ||
144 timer->card->number != tid->card))
145 continue;
146 if (timer->tmr_device != tid->device)
147 continue;
148 if (timer->tmr_subdevice != tid->subdevice)
149 continue;
150 return timer;
151 }
152 return NULL;
153}
154
155#ifdef CONFIG_MODULES
156
157static void snd_timer_request(struct snd_timer_id *tid)
158{
159 switch (tid->dev_class) {
160 case SNDRV_TIMER_CLASS_GLOBAL:
161 if (tid->device < timer_limit)
162 request_module("snd-timer-%i", tid->device);
163 break;
164 case SNDRV_TIMER_CLASS_CARD:
165 case SNDRV_TIMER_CLASS_PCM:
166 if (tid->card < snd_ecards_limit)
167 request_module("snd-card-%i", tid->card);
168 break;
169 default:
170 break;
171 }
172}
173
174#endif
175
176/*
177 * look for a master instance matching with the slave id of the given slave.
178 * when found, relink the open_link of the slave.
179 *
180 * call this with register_mutex down.
181 */
182static void snd_timer_check_slave(struct snd_timer_instance *slave)
183{
184 struct snd_timer *timer;
185 struct snd_timer_instance *master;
186
187 /* FIXME: it's really dumb to look up all entries.. */
188 list_for_each_entry(timer, &snd_timer_list, device_list) {
189 list_for_each_entry(master, &timer->open_list_head, open_list) {
190 if (slave->slave_class == master->slave_class &&
191 slave->slave_id == master->slave_id) {
192 list_move_tail(&slave->open_list,
193 &master->slave_list_head);
194 spin_lock_irq(&slave_active_lock);
195 slave->master = master;
196 slave->timer = master->timer;
197 spin_unlock_irq(&slave_active_lock);
198 return;
199 }
200 }
201 }
202}
203
204/*
205 * look for slave instances matching with the slave id of the given master.
206 * when found, relink the open_link of slaves.
207 *
208 * call this with register_mutex down.
209 */
210static void snd_timer_check_master(struct snd_timer_instance *master)
211{
212 struct snd_timer_instance *slave, *tmp;
213
214 /* check all pending slaves */
215 list_for_each_entry_safe(slave, tmp, &snd_timer_slave_list, open_list) {
216 if (slave->slave_class == master->slave_class &&
217 slave->slave_id == master->slave_id) {
218 list_move_tail(&slave->open_list, &master->slave_list_head);
219 spin_lock_irq(&slave_active_lock);
220 spin_lock(&master->timer->lock);
221 slave->master = master;
222 slave->timer = master->timer;
223 if (slave->flags & SNDRV_TIMER_IFLG_RUNNING)
224 list_add_tail(&slave->active_list,
225 &master->slave_active_head);
226 spin_unlock(&master->timer->lock);
227 spin_unlock_irq(&slave_active_lock);
228 }
229 }
230}
231
232/*
233 * open a timer instance
234 * when opening a master, the slave id must be here given.
235 */
236int snd_timer_open(struct snd_timer_instance **ti,
237 char *owner, struct snd_timer_id *tid,
238 unsigned int slave_id)
239{
240 struct snd_timer *timer;
241 struct snd_timer_instance *timeri = NULL;
242
243 if (tid->dev_class == SNDRV_TIMER_CLASS_SLAVE) {
244 /* open a slave instance */
245 if (tid->dev_sclass <= SNDRV_TIMER_SCLASS_NONE ||
246 tid->dev_sclass > SNDRV_TIMER_SCLASS_OSS_SEQUENCER) {
247 pr_debug("ALSA: timer: invalid slave class %i\n",
248 tid->dev_sclass);
249 return -EINVAL;
250 }
251 mutex_lock(®ister_mutex);
252 timeri = snd_timer_instance_new(owner, NULL);
253 if (!timeri) {
254 mutex_unlock(®ister_mutex);
255 return -ENOMEM;
256 }
257 timeri->slave_class = tid->dev_sclass;
258 timeri->slave_id = tid->device;
259 timeri->flags |= SNDRV_TIMER_IFLG_SLAVE;
260 list_add_tail(&timeri->open_list, &snd_timer_slave_list);
261 snd_timer_check_slave(timeri);
262 mutex_unlock(®ister_mutex);
263 *ti = timeri;
264 return 0;
265 }
266
267 /* open a master instance */
268 mutex_lock(®ister_mutex);
269 timer = snd_timer_find(tid);
270#ifdef CONFIG_MODULES
271 if (!timer) {
272 mutex_unlock(®ister_mutex);
273 snd_timer_request(tid);
274 mutex_lock(®ister_mutex);
275 timer = snd_timer_find(tid);
276 }
277#endif
278 if (!timer) {
279 mutex_unlock(®ister_mutex);
280 return -ENODEV;
281 }
282 if (!list_empty(&timer->open_list_head)) {
283 timeri = list_entry(timer->open_list_head.next,
284 struct snd_timer_instance, open_list);
285 if (timeri->flags & SNDRV_TIMER_IFLG_EXCLUSIVE) {
286 mutex_unlock(®ister_mutex);
287 return -EBUSY;
288 }
289 }
290 timeri = snd_timer_instance_new(owner, timer);
291 if (!timeri) {
292 mutex_unlock(®ister_mutex);
293 return -ENOMEM;
294 }
295 /* take a card refcount for safe disconnection */
296 if (timer->card)
297 get_device(&timer->card->card_dev);
298 timeri->slave_class = tid->dev_sclass;
299 timeri->slave_id = slave_id;
300
301 if (list_empty(&timer->open_list_head) && timer->hw.open) {
302 int err = timer->hw.open(timer);
303 if (err) {
304 kfree(timeri->owner);
305 kfree(timeri);
306
307 if (timer->card)
308 put_device(&timer->card->card_dev);
309 module_put(timer->module);
310 mutex_unlock(®ister_mutex);
311 return err;
312 }
313 }
314
315 list_add_tail(&timeri->open_list, &timer->open_list_head);
316 snd_timer_check_master(timeri);
317 mutex_unlock(®ister_mutex);
318 *ti = timeri;
319 return 0;
320}
321
322/*
323 * close a timer instance
324 */
325int snd_timer_close(struct snd_timer_instance *timeri)
326{
327 struct snd_timer *timer = NULL;
328 struct snd_timer_instance *slave, *tmp;
329
330 if (snd_BUG_ON(!timeri))
331 return -ENXIO;
332
333 mutex_lock(®ister_mutex);
334 list_del(&timeri->open_list);
335
336 /* force to stop the timer */
337 snd_timer_stop(timeri);
338
339 timer = timeri->timer;
340 if (timer) {
341 /* wait, until the active callback is finished */
342 spin_lock_irq(&timer->lock);
343 while (timeri->flags & SNDRV_TIMER_IFLG_CALLBACK) {
344 spin_unlock_irq(&timer->lock);
345 udelay(10);
346 spin_lock_irq(&timer->lock);
347 }
348 spin_unlock_irq(&timer->lock);
349
350 /* remove slave links */
351 spin_lock_irq(&slave_active_lock);
352 spin_lock(&timer->lock);
353 list_for_each_entry_safe(slave, tmp, &timeri->slave_list_head,
354 open_list) {
355 list_move_tail(&slave->open_list, &snd_timer_slave_list);
356 slave->master = NULL;
357 slave->timer = NULL;
358 list_del_init(&slave->ack_list);
359 list_del_init(&slave->active_list);
360 }
361 spin_unlock(&timer->lock);
362 spin_unlock_irq(&slave_active_lock);
363
364 /* slave doesn't need to release timer resources below */
365 if (timeri->flags & SNDRV_TIMER_IFLG_SLAVE)
366 timer = NULL;
367 }
368
369 if (timeri->private_free)
370 timeri->private_free(timeri);
371 kfree(timeri->owner);
372 kfree(timeri);
373
374 if (timer) {
375 if (list_empty(&timer->open_list_head) && timer->hw.close)
376 timer->hw.close(timer);
377 /* release a card refcount for safe disconnection */
378 if (timer->card)
379 put_device(&timer->card->card_dev);
380 module_put(timer->module);
381 }
382
383 mutex_unlock(®ister_mutex);
384 return 0;
385}
386
387unsigned long snd_timer_resolution(struct snd_timer_instance *timeri)
388{
389 struct snd_timer * timer;
390
391 if (timeri == NULL)
392 return 0;
393 if ((timer = timeri->timer) != NULL) {
394 if (timer->hw.c_resolution)
395 return timer->hw.c_resolution(timer);
396 return timer->hw.resolution;
397 }
398 return 0;
399}
400
401static void snd_timer_notify1(struct snd_timer_instance *ti, int event)
402{
403 struct snd_timer *timer;
404 unsigned long resolution = 0;
405 struct snd_timer_instance *ts;
406 struct timespec tstamp;
407
408 if (timer_tstamp_monotonic)
409 ktime_get_ts(&tstamp);
410 else
411 getnstimeofday(&tstamp);
412 if (snd_BUG_ON(event < SNDRV_TIMER_EVENT_START ||
413 event > SNDRV_TIMER_EVENT_PAUSE))
414 return;
415 if (event == SNDRV_TIMER_EVENT_START ||
416 event == SNDRV_TIMER_EVENT_CONTINUE)
417 resolution = snd_timer_resolution(ti);
418 if (ti->ccallback)
419 ti->ccallback(ti, event, &tstamp, resolution);
420 if (ti->flags & SNDRV_TIMER_IFLG_SLAVE)
421 return;
422 timer = ti->timer;
423 if (timer == NULL)
424 return;
425 if (timer->hw.flags & SNDRV_TIMER_HW_SLAVE)
426 return;
427 list_for_each_entry(ts, &ti->slave_active_head, active_list)
428 if (ts->ccallback)
429 ts->ccallback(ts, event + 100, &tstamp, resolution);
430}
431
432/* start/continue a master timer */
433static int snd_timer_start1(struct snd_timer_instance *timeri,
434 bool start, unsigned long ticks)
435{
436 struct snd_timer *timer;
437 int result;
438 unsigned long flags;
439
440 timer = timeri->timer;
441 if (!timer)
442 return -EINVAL;
443
444 spin_lock_irqsave(&timer->lock, flags);
445 if (timer->card && timer->card->shutdown) {
446 result = -ENODEV;
447 goto unlock;
448 }
449 if (timeri->flags & (SNDRV_TIMER_IFLG_RUNNING |
450 SNDRV_TIMER_IFLG_START)) {
451 result = -EBUSY;
452 goto unlock;
453 }
454
455 if (start)
456 timeri->ticks = timeri->cticks = ticks;
457 else if (!timeri->cticks)
458 timeri->cticks = 1;
459 timeri->pticks = 0;
460
461 list_move_tail(&timeri->active_list, &timer->active_list_head);
462 if (timer->running) {
463 if (timer->hw.flags & SNDRV_TIMER_HW_SLAVE)
464 goto __start_now;
465 timer->flags |= SNDRV_TIMER_FLG_RESCHED;
466 timeri->flags |= SNDRV_TIMER_IFLG_START;
467 result = 1; /* delayed start */
468 } else {
469 if (start)
470 timer->sticks = ticks;
471 timer->hw.start(timer);
472 __start_now:
473 timer->running++;
474 timeri->flags |= SNDRV_TIMER_IFLG_RUNNING;
475 result = 0;
476 }
477 snd_timer_notify1(timeri, start ? SNDRV_TIMER_EVENT_START :
478 SNDRV_TIMER_EVENT_CONTINUE);
479 unlock:
480 spin_unlock_irqrestore(&timer->lock, flags);
481 return result;
482}
483
484/* start/continue a slave timer */
485static int snd_timer_start_slave(struct snd_timer_instance *timeri,
486 bool start)
487{
488 unsigned long flags;
489
490 spin_lock_irqsave(&slave_active_lock, flags);
491 if (timeri->flags & SNDRV_TIMER_IFLG_RUNNING) {
492 spin_unlock_irqrestore(&slave_active_lock, flags);
493 return -EBUSY;
494 }
495 timeri->flags |= SNDRV_TIMER_IFLG_RUNNING;
496 if (timeri->master && timeri->timer) {
497 spin_lock(&timeri->timer->lock);
498 list_add_tail(&timeri->active_list,
499 &timeri->master->slave_active_head);
500 snd_timer_notify1(timeri, start ? SNDRV_TIMER_EVENT_START :
501 SNDRV_TIMER_EVENT_CONTINUE);
502 spin_unlock(&timeri->timer->lock);
503 }
504 spin_unlock_irqrestore(&slave_active_lock, flags);
505 return 1; /* delayed start */
506}
507
508/* stop/pause a master timer */
509static int snd_timer_stop1(struct snd_timer_instance *timeri, bool stop)
510{
511 struct snd_timer *timer;
512 int result = 0;
513 unsigned long flags;
514
515 timer = timeri->timer;
516 if (!timer)
517 return -EINVAL;
518 spin_lock_irqsave(&timer->lock, flags);
519 if (!(timeri->flags & (SNDRV_TIMER_IFLG_RUNNING |
520 SNDRV_TIMER_IFLG_START))) {
521 result = -EBUSY;
522 goto unlock;
523 }
524 list_del_init(&timeri->ack_list);
525 list_del_init(&timeri->active_list);
526 if (timer->card && timer->card->shutdown)
527 goto unlock;
528 if (stop) {
529 timeri->cticks = timeri->ticks;
530 timeri->pticks = 0;
531 }
532 if ((timeri->flags & SNDRV_TIMER_IFLG_RUNNING) &&
533 !(--timer->running)) {
534 timer->hw.stop(timer);
535 if (timer->flags & SNDRV_TIMER_FLG_RESCHED) {
536 timer->flags &= ~SNDRV_TIMER_FLG_RESCHED;
537 snd_timer_reschedule(timer, 0);
538 if (timer->flags & SNDRV_TIMER_FLG_CHANGE) {
539 timer->flags &= ~SNDRV_TIMER_FLG_CHANGE;
540 timer->hw.start(timer);
541 }
542 }
543 }
544 timeri->flags &= ~(SNDRV_TIMER_IFLG_RUNNING | SNDRV_TIMER_IFLG_START);
545 if (stop)
546 timeri->flags &= ~SNDRV_TIMER_IFLG_PAUSED;
547 else
548 timeri->flags |= SNDRV_TIMER_IFLG_PAUSED;
549 snd_timer_notify1(timeri, stop ? SNDRV_TIMER_EVENT_STOP :
550 SNDRV_TIMER_EVENT_CONTINUE);
551 unlock:
552 spin_unlock_irqrestore(&timer->lock, flags);
553 return result;
554}
555
556/* stop/pause a slave timer */
557static int snd_timer_stop_slave(struct snd_timer_instance *timeri, bool stop)
558{
559 unsigned long flags;
560
561 spin_lock_irqsave(&slave_active_lock, flags);
562 if (!(timeri->flags & SNDRV_TIMER_IFLG_RUNNING)) {
563 spin_unlock_irqrestore(&slave_active_lock, flags);
564 return -EBUSY;
565 }
566 timeri->flags &= ~SNDRV_TIMER_IFLG_RUNNING;
567 if (timeri->timer) {
568 spin_lock(&timeri->timer->lock);
569 list_del_init(&timeri->ack_list);
570 list_del_init(&timeri->active_list);
571 snd_timer_notify1(timeri, stop ? SNDRV_TIMER_EVENT_STOP :
572 SNDRV_TIMER_EVENT_CONTINUE);
573 spin_unlock(&timeri->timer->lock);
574 }
575 spin_unlock_irqrestore(&slave_active_lock, flags);
576 return 0;
577}
578
579/*
580 * start the timer instance
581 */
582int snd_timer_start(struct snd_timer_instance *timeri, unsigned int ticks)
583{
584 if (timeri == NULL || ticks < 1)
585 return -EINVAL;
586 if (timeri->flags & SNDRV_TIMER_IFLG_SLAVE)
587 return snd_timer_start_slave(timeri, true);
588 else
589 return snd_timer_start1(timeri, true, ticks);
590}
591
592/*
593 * stop the timer instance.
594 *
595 * do not call this from the timer callback!
596 */
597int snd_timer_stop(struct snd_timer_instance *timeri)
598{
599 if (timeri->flags & SNDRV_TIMER_IFLG_SLAVE)
600 return snd_timer_stop_slave(timeri, true);
601 else
602 return snd_timer_stop1(timeri, true);
603}
604
605/*
606 * start again.. the tick is kept.
607 */
608int snd_timer_continue(struct snd_timer_instance *timeri)
609{
610 /* timer can continue only after pause */
611 if (!(timeri->flags & SNDRV_TIMER_IFLG_PAUSED))
612 return -EINVAL;
613
614 if (timeri->flags & SNDRV_TIMER_IFLG_SLAVE)
615 return snd_timer_start_slave(timeri, false);
616 else
617 return snd_timer_start1(timeri, false, 0);
618}
619
620/*
621 * pause.. remember the ticks left
622 */
623int snd_timer_pause(struct snd_timer_instance * timeri)
624{
625 if (timeri->flags & SNDRV_TIMER_IFLG_SLAVE)
626 return snd_timer_stop_slave(timeri, false);
627 else
628 return snd_timer_stop1(timeri, false);
629}
630
631/*
632 * reschedule the timer
633 *
634 * start pending instances and check the scheduling ticks.
635 * when the scheduling ticks is changed set CHANGE flag to reprogram the timer.
636 */
637static void snd_timer_reschedule(struct snd_timer * timer, unsigned long ticks_left)
638{
639 struct snd_timer_instance *ti;
640 unsigned long ticks = ~0UL;
641
642 list_for_each_entry(ti, &timer->active_list_head, active_list) {
643 if (ti->flags & SNDRV_TIMER_IFLG_START) {
644 ti->flags &= ~SNDRV_TIMER_IFLG_START;
645 ti->flags |= SNDRV_TIMER_IFLG_RUNNING;
646 timer->running++;
647 }
648 if (ti->flags & SNDRV_TIMER_IFLG_RUNNING) {
649 if (ticks > ti->cticks)
650 ticks = ti->cticks;
651 }
652 }
653 if (ticks == ~0UL) {
654 timer->flags &= ~SNDRV_TIMER_FLG_RESCHED;
655 return;
656 }
657 if (ticks > timer->hw.ticks)
658 ticks = timer->hw.ticks;
659 if (ticks_left != ticks)
660 timer->flags |= SNDRV_TIMER_FLG_CHANGE;
661 timer->sticks = ticks;
662}
663
664/*
665 * timer tasklet
666 *
667 */
668static void snd_timer_tasklet(unsigned long arg)
669{
670 struct snd_timer *timer = (struct snd_timer *) arg;
671 struct snd_timer_instance *ti;
672 struct list_head *p;
673 unsigned long resolution, ticks;
674 unsigned long flags;
675
676 if (timer->card && timer->card->shutdown)
677 return;
678
679 spin_lock_irqsave(&timer->lock, flags);
680 /* now process all callbacks */
681 while (!list_empty(&timer->sack_list_head)) {
682 p = timer->sack_list_head.next; /* get first item */
683 ti = list_entry(p, struct snd_timer_instance, ack_list);
684
685 /* remove from ack_list and make empty */
686 list_del_init(p);
687
688 ticks = ti->pticks;
689 ti->pticks = 0;
690 resolution = ti->resolution;
691
692 ti->flags |= SNDRV_TIMER_IFLG_CALLBACK;
693 spin_unlock(&timer->lock);
694 if (ti->callback)
695 ti->callback(ti, resolution, ticks);
696 spin_lock(&timer->lock);
697 ti->flags &= ~SNDRV_TIMER_IFLG_CALLBACK;
698 }
699 spin_unlock_irqrestore(&timer->lock, flags);
700}
701
702/*
703 * timer interrupt
704 *
705 * ticks_left is usually equal to timer->sticks.
706 *
707 */
708void snd_timer_interrupt(struct snd_timer * timer, unsigned long ticks_left)
709{
710 struct snd_timer_instance *ti, *ts, *tmp;
711 unsigned long resolution, ticks;
712 struct list_head *p, *ack_list_head;
713 unsigned long flags;
714 int use_tasklet = 0;
715
716 if (timer == NULL)
717 return;
718
719 if (timer->card && timer->card->shutdown)
720 return;
721
722 spin_lock_irqsave(&timer->lock, flags);
723
724 /* remember the current resolution */
725 if (timer->hw.c_resolution)
726 resolution = timer->hw.c_resolution(timer);
727 else
728 resolution = timer->hw.resolution;
729
730 /* loop for all active instances
731 * Here we cannot use list_for_each_entry because the active_list of a
732 * processed instance is relinked to done_list_head before the callback
733 * is called.
734 */
735 list_for_each_entry_safe(ti, tmp, &timer->active_list_head,
736 active_list) {
737 if (!(ti->flags & SNDRV_TIMER_IFLG_RUNNING))
738 continue;
739 ti->pticks += ticks_left;
740 ti->resolution = resolution;
741 if (ti->cticks < ticks_left)
742 ti->cticks = 0;
743 else
744 ti->cticks -= ticks_left;
745 if (ti->cticks) /* not expired */
746 continue;
747 if (ti->flags & SNDRV_TIMER_IFLG_AUTO) {
748 ti->cticks = ti->ticks;
749 } else {
750 ti->flags &= ~SNDRV_TIMER_IFLG_RUNNING;
751 --timer->running;
752 list_del_init(&ti->active_list);
753 }
754 if ((timer->hw.flags & SNDRV_TIMER_HW_TASKLET) ||
755 (ti->flags & SNDRV_TIMER_IFLG_FAST))
756 ack_list_head = &timer->ack_list_head;
757 else
758 ack_list_head = &timer->sack_list_head;
759 if (list_empty(&ti->ack_list))
760 list_add_tail(&ti->ack_list, ack_list_head);
761 list_for_each_entry(ts, &ti->slave_active_head, active_list) {
762 ts->pticks = ti->pticks;
763 ts->resolution = resolution;
764 if (list_empty(&ts->ack_list))
765 list_add_tail(&ts->ack_list, ack_list_head);
766 }
767 }
768 if (timer->flags & SNDRV_TIMER_FLG_RESCHED)
769 snd_timer_reschedule(timer, timer->sticks);
770 if (timer->running) {
771 if (timer->hw.flags & SNDRV_TIMER_HW_STOP) {
772 timer->hw.stop(timer);
773 timer->flags |= SNDRV_TIMER_FLG_CHANGE;
774 }
775 if (!(timer->hw.flags & SNDRV_TIMER_HW_AUTO) ||
776 (timer->flags & SNDRV_TIMER_FLG_CHANGE)) {
777 /* restart timer */
778 timer->flags &= ~SNDRV_TIMER_FLG_CHANGE;
779 timer->hw.start(timer);
780 }
781 } else {
782 timer->hw.stop(timer);
783 }
784
785 /* now process all fast callbacks */
786 while (!list_empty(&timer->ack_list_head)) {
787 p = timer->ack_list_head.next; /* get first item */
788 ti = list_entry(p, struct snd_timer_instance, ack_list);
789
790 /* remove from ack_list and make empty */
791 list_del_init(p);
792
793 ticks = ti->pticks;
794 ti->pticks = 0;
795
796 ti->flags |= SNDRV_TIMER_IFLG_CALLBACK;
797 spin_unlock(&timer->lock);
798 if (ti->callback)
799 ti->callback(ti, resolution, ticks);
800 spin_lock(&timer->lock);
801 ti->flags &= ~SNDRV_TIMER_IFLG_CALLBACK;
802 }
803
804 /* do we have any slow callbacks? */
805 use_tasklet = !list_empty(&timer->sack_list_head);
806 spin_unlock_irqrestore(&timer->lock, flags);
807
808 if (use_tasklet)
809 tasklet_schedule(&timer->task_queue);
810}
811
812/*
813
814 */
815
816int snd_timer_new(struct snd_card *card, char *id, struct snd_timer_id *tid,
817 struct snd_timer **rtimer)
818{
819 struct snd_timer *timer;
820 int err;
821 static struct snd_device_ops ops = {
822 .dev_free = snd_timer_dev_free,
823 .dev_register = snd_timer_dev_register,
824 .dev_disconnect = snd_timer_dev_disconnect,
825 };
826
827 if (snd_BUG_ON(!tid))
828 return -EINVAL;
829 if (rtimer)
830 *rtimer = NULL;
831 timer = kzalloc(sizeof(*timer), GFP_KERNEL);
832 if (!timer)
833 return -ENOMEM;
834 timer->tmr_class = tid->dev_class;
835 timer->card = card;
836 timer->tmr_device = tid->device;
837 timer->tmr_subdevice = tid->subdevice;
838 if (id)
839 strlcpy(timer->id, id, sizeof(timer->id));
840 timer->sticks = 1;
841 INIT_LIST_HEAD(&timer->device_list);
842 INIT_LIST_HEAD(&timer->open_list_head);
843 INIT_LIST_HEAD(&timer->active_list_head);
844 INIT_LIST_HEAD(&timer->ack_list_head);
845 INIT_LIST_HEAD(&timer->sack_list_head);
846 spin_lock_init(&timer->lock);
847 tasklet_init(&timer->task_queue, snd_timer_tasklet,
848 (unsigned long)timer);
849 if (card != NULL) {
850 timer->module = card->module;
851 err = snd_device_new(card, SNDRV_DEV_TIMER, timer, &ops);
852 if (err < 0) {
853 snd_timer_free(timer);
854 return err;
855 }
856 }
857 if (rtimer)
858 *rtimer = timer;
859 return 0;
860}
861
862static int snd_timer_free(struct snd_timer *timer)
863{
864 if (!timer)
865 return 0;
866
867 mutex_lock(®ister_mutex);
868 if (! list_empty(&timer->open_list_head)) {
869 struct list_head *p, *n;
870 struct snd_timer_instance *ti;
871 pr_warn("ALSA: timer %p is busy?\n", timer);
872 list_for_each_safe(p, n, &timer->open_list_head) {
873 list_del_init(p);
874 ti = list_entry(p, struct snd_timer_instance, open_list);
875 ti->timer = NULL;
876 }
877 }
878 list_del(&timer->device_list);
879 mutex_unlock(®ister_mutex);
880
881 if (timer->private_free)
882 timer->private_free(timer);
883 kfree(timer);
884 return 0;
885}
886
887static int snd_timer_dev_free(struct snd_device *device)
888{
889 struct snd_timer *timer = device->device_data;
890 return snd_timer_free(timer);
891}
892
893static int snd_timer_dev_register(struct snd_device *dev)
894{
895 struct snd_timer *timer = dev->device_data;
896 struct snd_timer *timer1;
897
898 if (snd_BUG_ON(!timer || !timer->hw.start || !timer->hw.stop))
899 return -ENXIO;
900 if (!(timer->hw.flags & SNDRV_TIMER_HW_SLAVE) &&
901 !timer->hw.resolution && timer->hw.c_resolution == NULL)
902 return -EINVAL;
903
904 mutex_lock(®ister_mutex);
905 list_for_each_entry(timer1, &snd_timer_list, device_list) {
906 if (timer1->tmr_class > timer->tmr_class)
907 break;
908 if (timer1->tmr_class < timer->tmr_class)
909 continue;
910 if (timer1->card && timer->card) {
911 if (timer1->card->number > timer->card->number)
912 break;
913 if (timer1->card->number < timer->card->number)
914 continue;
915 }
916 if (timer1->tmr_device > timer->tmr_device)
917 break;
918 if (timer1->tmr_device < timer->tmr_device)
919 continue;
920 if (timer1->tmr_subdevice > timer->tmr_subdevice)
921 break;
922 if (timer1->tmr_subdevice < timer->tmr_subdevice)
923 continue;
924 /* conflicts.. */
925 mutex_unlock(®ister_mutex);
926 return -EBUSY;
927 }
928 list_add_tail(&timer->device_list, &timer1->device_list);
929 mutex_unlock(®ister_mutex);
930 return 0;
931}
932
933static int snd_timer_dev_disconnect(struct snd_device *device)
934{
935 struct snd_timer *timer = device->device_data;
936 struct snd_timer_instance *ti;
937
938 mutex_lock(®ister_mutex);
939 list_del_init(&timer->device_list);
940 /* wake up pending sleepers */
941 list_for_each_entry(ti, &timer->open_list_head, open_list) {
942 if (ti->disconnect)
943 ti->disconnect(ti);
944 }
945 mutex_unlock(®ister_mutex);
946 return 0;
947}
948
949void snd_timer_notify(struct snd_timer *timer, int event, struct timespec *tstamp)
950{
951 unsigned long flags;
952 unsigned long resolution = 0;
953 struct snd_timer_instance *ti, *ts;
954
955 if (timer->card && timer->card->shutdown)
956 return;
957 if (! (timer->hw.flags & SNDRV_TIMER_HW_SLAVE))
958 return;
959 if (snd_BUG_ON(event < SNDRV_TIMER_EVENT_MSTART ||
960 event > SNDRV_TIMER_EVENT_MRESUME))
961 return;
962 spin_lock_irqsave(&timer->lock, flags);
963 if (event == SNDRV_TIMER_EVENT_MSTART ||
964 event == SNDRV_TIMER_EVENT_MCONTINUE ||
965 event == SNDRV_TIMER_EVENT_MRESUME) {
966 if (timer->hw.c_resolution)
967 resolution = timer->hw.c_resolution(timer);
968 else
969 resolution = timer->hw.resolution;
970 }
971 list_for_each_entry(ti, &timer->active_list_head, active_list) {
972 if (ti->ccallback)
973 ti->ccallback(ti, event, tstamp, resolution);
974 list_for_each_entry(ts, &ti->slave_active_head, active_list)
975 if (ts->ccallback)
976 ts->ccallback(ts, event, tstamp, resolution);
977 }
978 spin_unlock_irqrestore(&timer->lock, flags);
979}
980
981/*
982 * exported functions for global timers
983 */
984int snd_timer_global_new(char *id, int device, struct snd_timer **rtimer)
985{
986 struct snd_timer_id tid;
987
988 tid.dev_class = SNDRV_TIMER_CLASS_GLOBAL;
989 tid.dev_sclass = SNDRV_TIMER_SCLASS_NONE;
990 tid.card = -1;
991 tid.device = device;
992 tid.subdevice = 0;
993 return snd_timer_new(NULL, id, &tid, rtimer);
994}
995
996int snd_timer_global_free(struct snd_timer *timer)
997{
998 return snd_timer_free(timer);
999}
1000
1001int snd_timer_global_register(struct snd_timer *timer)
1002{
1003 struct snd_device dev;
1004
1005 memset(&dev, 0, sizeof(dev));
1006 dev.device_data = timer;
1007 return snd_timer_dev_register(&dev);
1008}
1009
1010/*
1011 * System timer
1012 */
1013
1014struct snd_timer_system_private {
1015 struct timer_list tlist;
1016 unsigned long last_expires;
1017 unsigned long last_jiffies;
1018 unsigned long correction;
1019};
1020
1021static void snd_timer_s_function(unsigned long data)
1022{
1023 struct snd_timer *timer = (struct snd_timer *)data;
1024 struct snd_timer_system_private *priv = timer->private_data;
1025 unsigned long jiff = jiffies;
1026 if (time_after(jiff, priv->last_expires))
1027 priv->correction += (long)jiff - (long)priv->last_expires;
1028 snd_timer_interrupt(timer, (long)jiff - (long)priv->last_jiffies);
1029}
1030
1031static int snd_timer_s_start(struct snd_timer * timer)
1032{
1033 struct snd_timer_system_private *priv;
1034 unsigned long njiff;
1035
1036 priv = (struct snd_timer_system_private *) timer->private_data;
1037 njiff = (priv->last_jiffies = jiffies);
1038 if (priv->correction > timer->sticks - 1) {
1039 priv->correction -= timer->sticks - 1;
1040 njiff++;
1041 } else {
1042 njiff += timer->sticks - priv->correction;
1043 priv->correction = 0;
1044 }
1045 priv->last_expires = njiff;
1046 mod_timer(&priv->tlist, njiff);
1047 return 0;
1048}
1049
1050static int snd_timer_s_stop(struct snd_timer * timer)
1051{
1052 struct snd_timer_system_private *priv;
1053 unsigned long jiff;
1054
1055 priv = (struct snd_timer_system_private *) timer->private_data;
1056 del_timer(&priv->tlist);
1057 jiff = jiffies;
1058 if (time_before(jiff, priv->last_expires))
1059 timer->sticks = priv->last_expires - jiff;
1060 else
1061 timer->sticks = 1;
1062 priv->correction = 0;
1063 return 0;
1064}
1065
1066static int snd_timer_s_close(struct snd_timer *timer)
1067{
1068 struct snd_timer_system_private *priv;
1069
1070 priv = (struct snd_timer_system_private *)timer->private_data;
1071 del_timer_sync(&priv->tlist);
1072 return 0;
1073}
1074
1075static struct snd_timer_hardware snd_timer_system =
1076{
1077 .flags = SNDRV_TIMER_HW_FIRST | SNDRV_TIMER_HW_TASKLET,
1078 .resolution = 1000000000L / HZ,
1079 .ticks = 10000000L,
1080 .close = snd_timer_s_close,
1081 .start = snd_timer_s_start,
1082 .stop = snd_timer_s_stop
1083};
1084
1085static void snd_timer_free_system(struct snd_timer *timer)
1086{
1087 kfree(timer->private_data);
1088}
1089
1090static int snd_timer_register_system(void)
1091{
1092 struct snd_timer *timer;
1093 struct snd_timer_system_private *priv;
1094 int err;
1095
1096 err = snd_timer_global_new("system", SNDRV_TIMER_GLOBAL_SYSTEM, &timer);
1097 if (err < 0)
1098 return err;
1099 strcpy(timer->name, "system timer");
1100 timer->hw = snd_timer_system;
1101 priv = kzalloc(sizeof(*priv), GFP_KERNEL);
1102 if (priv == NULL) {
1103 snd_timer_free(timer);
1104 return -ENOMEM;
1105 }
1106 setup_timer(&priv->tlist, snd_timer_s_function, (unsigned long) timer);
1107 timer->private_data = priv;
1108 timer->private_free = snd_timer_free_system;
1109 return snd_timer_global_register(timer);
1110}
1111
1112#ifdef CONFIG_SND_PROC_FS
1113/*
1114 * Info interface
1115 */
1116
1117static void snd_timer_proc_read(struct snd_info_entry *entry,
1118 struct snd_info_buffer *buffer)
1119{
1120 struct snd_timer *timer;
1121 struct snd_timer_instance *ti;
1122
1123 mutex_lock(®ister_mutex);
1124 list_for_each_entry(timer, &snd_timer_list, device_list) {
1125 if (timer->card && timer->card->shutdown)
1126 continue;
1127 switch (timer->tmr_class) {
1128 case SNDRV_TIMER_CLASS_GLOBAL:
1129 snd_iprintf(buffer, "G%i: ", timer->tmr_device);
1130 break;
1131 case SNDRV_TIMER_CLASS_CARD:
1132 snd_iprintf(buffer, "C%i-%i: ",
1133 timer->card->number, timer->tmr_device);
1134 break;
1135 case SNDRV_TIMER_CLASS_PCM:
1136 snd_iprintf(buffer, "P%i-%i-%i: ", timer->card->number,
1137 timer->tmr_device, timer->tmr_subdevice);
1138 break;
1139 default:
1140 snd_iprintf(buffer, "?%i-%i-%i-%i: ", timer->tmr_class,
1141 timer->card ? timer->card->number : -1,
1142 timer->tmr_device, timer->tmr_subdevice);
1143 }
1144 snd_iprintf(buffer, "%s :", timer->name);
1145 if (timer->hw.resolution)
1146 snd_iprintf(buffer, " %lu.%03luus (%lu ticks)",
1147 timer->hw.resolution / 1000,
1148 timer->hw.resolution % 1000,
1149 timer->hw.ticks);
1150 if (timer->hw.flags & SNDRV_TIMER_HW_SLAVE)
1151 snd_iprintf(buffer, " SLAVE");
1152 snd_iprintf(buffer, "\n");
1153 list_for_each_entry(ti, &timer->open_list_head, open_list)
1154 snd_iprintf(buffer, " Client %s : %s\n",
1155 ti->owner ? ti->owner : "unknown",
1156 ti->flags & (SNDRV_TIMER_IFLG_START |
1157 SNDRV_TIMER_IFLG_RUNNING)
1158 ? "running" : "stopped");
1159 }
1160 mutex_unlock(®ister_mutex);
1161}
1162
1163static struct snd_info_entry *snd_timer_proc_entry;
1164
1165static void __init snd_timer_proc_init(void)
1166{
1167 struct snd_info_entry *entry;
1168
1169 entry = snd_info_create_module_entry(THIS_MODULE, "timers", NULL);
1170 if (entry != NULL) {
1171 entry->c.text.read = snd_timer_proc_read;
1172 if (snd_info_register(entry) < 0) {
1173 snd_info_free_entry(entry);
1174 entry = NULL;
1175 }
1176 }
1177 snd_timer_proc_entry = entry;
1178}
1179
1180static void __exit snd_timer_proc_done(void)
1181{
1182 snd_info_free_entry(snd_timer_proc_entry);
1183}
1184#else /* !CONFIG_SND_PROC_FS */
1185#define snd_timer_proc_init()
1186#define snd_timer_proc_done()
1187#endif
1188
1189/*
1190 * USER SPACE interface
1191 */
1192
1193static void snd_timer_user_interrupt(struct snd_timer_instance *timeri,
1194 unsigned long resolution,
1195 unsigned long ticks)
1196{
1197 struct snd_timer_user *tu = timeri->callback_data;
1198 struct snd_timer_read *r;
1199 int prev;
1200
1201 spin_lock(&tu->qlock);
1202 if (tu->qused > 0) {
1203 prev = tu->qtail == 0 ? tu->queue_size - 1 : tu->qtail - 1;
1204 r = &tu->queue[prev];
1205 if (r->resolution == resolution) {
1206 r->ticks += ticks;
1207 goto __wake;
1208 }
1209 }
1210 if (tu->qused >= tu->queue_size) {
1211 tu->overrun++;
1212 } else {
1213 r = &tu->queue[tu->qtail++];
1214 tu->qtail %= tu->queue_size;
1215 r->resolution = resolution;
1216 r->ticks = ticks;
1217 tu->qused++;
1218 }
1219 __wake:
1220 spin_unlock(&tu->qlock);
1221 kill_fasync(&tu->fasync, SIGIO, POLL_IN);
1222 wake_up(&tu->qchange_sleep);
1223}
1224
1225static void snd_timer_user_append_to_tqueue(struct snd_timer_user *tu,
1226 struct snd_timer_tread *tread)
1227{
1228 if (tu->qused >= tu->queue_size) {
1229 tu->overrun++;
1230 } else {
1231 memcpy(&tu->tqueue[tu->qtail++], tread, sizeof(*tread));
1232 tu->qtail %= tu->queue_size;
1233 tu->qused++;
1234 }
1235}
1236
1237static void snd_timer_user_ccallback(struct snd_timer_instance *timeri,
1238 int event,
1239 struct timespec *tstamp,
1240 unsigned long resolution)
1241{
1242 struct snd_timer_user *tu = timeri->callback_data;
1243 struct snd_timer_tread r1;
1244 unsigned long flags;
1245
1246 if (event >= SNDRV_TIMER_EVENT_START &&
1247 event <= SNDRV_TIMER_EVENT_PAUSE)
1248 tu->tstamp = *tstamp;
1249 if ((tu->filter & (1 << event)) == 0 || !tu->tread)
1250 return;
1251 memset(&r1, 0, sizeof(r1));
1252 r1.event = event;
1253 r1.tstamp = *tstamp;
1254 r1.val = resolution;
1255 spin_lock_irqsave(&tu->qlock, flags);
1256 snd_timer_user_append_to_tqueue(tu, &r1);
1257 spin_unlock_irqrestore(&tu->qlock, flags);
1258 kill_fasync(&tu->fasync, SIGIO, POLL_IN);
1259 wake_up(&tu->qchange_sleep);
1260}
1261
1262static void snd_timer_user_disconnect(struct snd_timer_instance *timeri)
1263{
1264 struct snd_timer_user *tu = timeri->callback_data;
1265
1266 tu->disconnected = true;
1267 wake_up(&tu->qchange_sleep);
1268}
1269
1270static void snd_timer_user_tinterrupt(struct snd_timer_instance *timeri,
1271 unsigned long resolution,
1272 unsigned long ticks)
1273{
1274 struct snd_timer_user *tu = timeri->callback_data;
1275 struct snd_timer_tread *r, r1;
1276 struct timespec tstamp;
1277 int prev, append = 0;
1278
1279 memset(&tstamp, 0, sizeof(tstamp));
1280 spin_lock(&tu->qlock);
1281 if ((tu->filter & ((1 << SNDRV_TIMER_EVENT_RESOLUTION) |
1282 (1 << SNDRV_TIMER_EVENT_TICK))) == 0) {
1283 spin_unlock(&tu->qlock);
1284 return;
1285 }
1286 if (tu->last_resolution != resolution || ticks > 0) {
1287 if (timer_tstamp_monotonic)
1288 ktime_get_ts(&tstamp);
1289 else
1290 getnstimeofday(&tstamp);
1291 }
1292 if ((tu->filter & (1 << SNDRV_TIMER_EVENT_RESOLUTION)) &&
1293 tu->last_resolution != resolution) {
1294 memset(&r1, 0, sizeof(r1));
1295 r1.event = SNDRV_TIMER_EVENT_RESOLUTION;
1296 r1.tstamp = tstamp;
1297 r1.val = resolution;
1298 snd_timer_user_append_to_tqueue(tu, &r1);
1299 tu->last_resolution = resolution;
1300 append++;
1301 }
1302 if ((tu->filter & (1 << SNDRV_TIMER_EVENT_TICK)) == 0)
1303 goto __wake;
1304 if (ticks == 0)
1305 goto __wake;
1306 if (tu->qused > 0) {
1307 prev = tu->qtail == 0 ? tu->queue_size - 1 : tu->qtail - 1;
1308 r = &tu->tqueue[prev];
1309 if (r->event == SNDRV_TIMER_EVENT_TICK) {
1310 r->tstamp = tstamp;
1311 r->val += ticks;
1312 append++;
1313 goto __wake;
1314 }
1315 }
1316 r1.event = SNDRV_TIMER_EVENT_TICK;
1317 r1.tstamp = tstamp;
1318 r1.val = ticks;
1319 snd_timer_user_append_to_tqueue(tu, &r1);
1320 append++;
1321 __wake:
1322 spin_unlock(&tu->qlock);
1323 if (append == 0)
1324 return;
1325 kill_fasync(&tu->fasync, SIGIO, POLL_IN);
1326 wake_up(&tu->qchange_sleep);
1327}
1328
1329static int snd_timer_user_open(struct inode *inode, struct file *file)
1330{
1331 struct snd_timer_user *tu;
1332 int err;
1333
1334 err = nonseekable_open(inode, file);
1335 if (err < 0)
1336 return err;
1337
1338 tu = kzalloc(sizeof(*tu), GFP_KERNEL);
1339 if (tu == NULL)
1340 return -ENOMEM;
1341 spin_lock_init(&tu->qlock);
1342 init_waitqueue_head(&tu->qchange_sleep);
1343 mutex_init(&tu->ioctl_lock);
1344 tu->ticks = 1;
1345 tu->queue_size = 128;
1346 tu->queue = kmalloc(tu->queue_size * sizeof(struct snd_timer_read),
1347 GFP_KERNEL);
1348 if (tu->queue == NULL) {
1349 kfree(tu);
1350 return -ENOMEM;
1351 }
1352 file->private_data = tu;
1353 return 0;
1354}
1355
1356static int snd_timer_user_release(struct inode *inode, struct file *file)
1357{
1358 struct snd_timer_user *tu;
1359
1360 if (file->private_data) {
1361 tu = file->private_data;
1362 file->private_data = NULL;
1363 mutex_lock(&tu->ioctl_lock);
1364 if (tu->timeri)
1365 snd_timer_close(tu->timeri);
1366 mutex_unlock(&tu->ioctl_lock);
1367 kfree(tu->queue);
1368 kfree(tu->tqueue);
1369 kfree(tu);
1370 }
1371 return 0;
1372}
1373
1374static void snd_timer_user_zero_id(struct snd_timer_id *id)
1375{
1376 id->dev_class = SNDRV_TIMER_CLASS_NONE;
1377 id->dev_sclass = SNDRV_TIMER_SCLASS_NONE;
1378 id->card = -1;
1379 id->device = -1;
1380 id->subdevice = -1;
1381}
1382
1383static void snd_timer_user_copy_id(struct snd_timer_id *id, struct snd_timer *timer)
1384{
1385 id->dev_class = timer->tmr_class;
1386 id->dev_sclass = SNDRV_TIMER_SCLASS_NONE;
1387 id->card = timer->card ? timer->card->number : -1;
1388 id->device = timer->tmr_device;
1389 id->subdevice = timer->tmr_subdevice;
1390}
1391
1392static int snd_timer_user_next_device(struct snd_timer_id __user *_tid)
1393{
1394 struct snd_timer_id id;
1395 struct snd_timer *timer;
1396 struct list_head *p;
1397
1398 if (copy_from_user(&id, _tid, sizeof(id)))
1399 return -EFAULT;
1400 mutex_lock(®ister_mutex);
1401 if (id.dev_class < 0) { /* first item */
1402 if (list_empty(&snd_timer_list))
1403 snd_timer_user_zero_id(&id);
1404 else {
1405 timer = list_entry(snd_timer_list.next,
1406 struct snd_timer, device_list);
1407 snd_timer_user_copy_id(&id, timer);
1408 }
1409 } else {
1410 switch (id.dev_class) {
1411 case SNDRV_TIMER_CLASS_GLOBAL:
1412 id.device = id.device < 0 ? 0 : id.device + 1;
1413 list_for_each(p, &snd_timer_list) {
1414 timer = list_entry(p, struct snd_timer, device_list);
1415 if (timer->tmr_class > SNDRV_TIMER_CLASS_GLOBAL) {
1416 snd_timer_user_copy_id(&id, timer);
1417 break;
1418 }
1419 if (timer->tmr_device >= id.device) {
1420 snd_timer_user_copy_id(&id, timer);
1421 break;
1422 }
1423 }
1424 if (p == &snd_timer_list)
1425 snd_timer_user_zero_id(&id);
1426 break;
1427 case SNDRV_TIMER_CLASS_CARD:
1428 case SNDRV_TIMER_CLASS_PCM:
1429 if (id.card < 0) {
1430 id.card = 0;
1431 } else {
1432 if (id.card < 0) {
1433 id.card = 0;
1434 } else {
1435 if (id.device < 0) {
1436 id.device = 0;
1437 } else {
1438 if (id.subdevice < 0) {
1439 id.subdevice = 0;
1440 } else {
1441 id.subdevice++;
1442 }
1443 }
1444 }
1445 }
1446 list_for_each(p, &snd_timer_list) {
1447 timer = list_entry(p, struct snd_timer, device_list);
1448 if (timer->tmr_class > id.dev_class) {
1449 snd_timer_user_copy_id(&id, timer);
1450 break;
1451 }
1452 if (timer->tmr_class < id.dev_class)
1453 continue;
1454 if (timer->card->number > id.card) {
1455 snd_timer_user_copy_id(&id, timer);
1456 break;
1457 }
1458 if (timer->card->number < id.card)
1459 continue;
1460 if (timer->tmr_device > id.device) {
1461 snd_timer_user_copy_id(&id, timer);
1462 break;
1463 }
1464 if (timer->tmr_device < id.device)
1465 continue;
1466 if (timer->tmr_subdevice > id.subdevice) {
1467 snd_timer_user_copy_id(&id, timer);
1468 break;
1469 }
1470 if (timer->tmr_subdevice < id.subdevice)
1471 continue;
1472 snd_timer_user_copy_id(&id, timer);
1473 break;
1474 }
1475 if (p == &snd_timer_list)
1476 snd_timer_user_zero_id(&id);
1477 break;
1478 default:
1479 snd_timer_user_zero_id(&id);
1480 }
1481 }
1482 mutex_unlock(®ister_mutex);
1483 if (copy_to_user(_tid, &id, sizeof(*_tid)))
1484 return -EFAULT;
1485 return 0;
1486}
1487
1488static int snd_timer_user_ginfo(struct file *file,
1489 struct snd_timer_ginfo __user *_ginfo)
1490{
1491 struct snd_timer_ginfo *ginfo;
1492 struct snd_timer_id tid;
1493 struct snd_timer *t;
1494 struct list_head *p;
1495 int err = 0;
1496
1497 ginfo = memdup_user(_ginfo, sizeof(*ginfo));
1498 if (IS_ERR(ginfo))
1499 return PTR_ERR(ginfo);
1500
1501 tid = ginfo->tid;
1502 memset(ginfo, 0, sizeof(*ginfo));
1503 ginfo->tid = tid;
1504 mutex_lock(®ister_mutex);
1505 t = snd_timer_find(&tid);
1506 if (t != NULL) {
1507 ginfo->card = t->card ? t->card->number : -1;
1508 if (t->hw.flags & SNDRV_TIMER_HW_SLAVE)
1509 ginfo->flags |= SNDRV_TIMER_FLG_SLAVE;
1510 strlcpy(ginfo->id, t->id, sizeof(ginfo->id));
1511 strlcpy(ginfo->name, t->name, sizeof(ginfo->name));
1512 ginfo->resolution = t->hw.resolution;
1513 if (t->hw.resolution_min > 0) {
1514 ginfo->resolution_min = t->hw.resolution_min;
1515 ginfo->resolution_max = t->hw.resolution_max;
1516 }
1517 list_for_each(p, &t->open_list_head) {
1518 ginfo->clients++;
1519 }
1520 } else {
1521 err = -ENODEV;
1522 }
1523 mutex_unlock(®ister_mutex);
1524 if (err >= 0 && copy_to_user(_ginfo, ginfo, sizeof(*ginfo)))
1525 err = -EFAULT;
1526 kfree(ginfo);
1527 return err;
1528}
1529
1530static int timer_set_gparams(struct snd_timer_gparams *gparams)
1531{
1532 struct snd_timer *t;
1533 int err;
1534
1535 mutex_lock(®ister_mutex);
1536 t = snd_timer_find(&gparams->tid);
1537 if (!t) {
1538 err = -ENODEV;
1539 goto _error;
1540 }
1541 if (!list_empty(&t->open_list_head)) {
1542 err = -EBUSY;
1543 goto _error;
1544 }
1545 if (!t->hw.set_period) {
1546 err = -ENOSYS;
1547 goto _error;
1548 }
1549 err = t->hw.set_period(t, gparams->period_num, gparams->period_den);
1550_error:
1551 mutex_unlock(®ister_mutex);
1552 return err;
1553}
1554
1555static int snd_timer_user_gparams(struct file *file,
1556 struct snd_timer_gparams __user *_gparams)
1557{
1558 struct snd_timer_gparams gparams;
1559
1560 if (copy_from_user(&gparams, _gparams, sizeof(gparams)))
1561 return -EFAULT;
1562 return timer_set_gparams(&gparams);
1563}
1564
1565static int snd_timer_user_gstatus(struct file *file,
1566 struct snd_timer_gstatus __user *_gstatus)
1567{
1568 struct snd_timer_gstatus gstatus;
1569 struct snd_timer_id tid;
1570 struct snd_timer *t;
1571 int err = 0;
1572
1573 if (copy_from_user(&gstatus, _gstatus, sizeof(gstatus)))
1574 return -EFAULT;
1575 tid = gstatus.tid;
1576 memset(&gstatus, 0, sizeof(gstatus));
1577 gstatus.tid = tid;
1578 mutex_lock(®ister_mutex);
1579 t = snd_timer_find(&tid);
1580 if (t != NULL) {
1581 if (t->hw.c_resolution)
1582 gstatus.resolution = t->hw.c_resolution(t);
1583 else
1584 gstatus.resolution = t->hw.resolution;
1585 if (t->hw.precise_resolution) {
1586 t->hw.precise_resolution(t, &gstatus.resolution_num,
1587 &gstatus.resolution_den);
1588 } else {
1589 gstatus.resolution_num = gstatus.resolution;
1590 gstatus.resolution_den = 1000000000uL;
1591 }
1592 } else {
1593 err = -ENODEV;
1594 }
1595 mutex_unlock(®ister_mutex);
1596 if (err >= 0 && copy_to_user(_gstatus, &gstatus, sizeof(gstatus)))
1597 err = -EFAULT;
1598 return err;
1599}
1600
1601static int snd_timer_user_tselect(struct file *file,
1602 struct snd_timer_select __user *_tselect)
1603{
1604 struct snd_timer_user *tu;
1605 struct snd_timer_select tselect;
1606 char str[32];
1607 int err = 0;
1608
1609 tu = file->private_data;
1610 if (tu->timeri) {
1611 snd_timer_close(tu->timeri);
1612 tu->timeri = NULL;
1613 }
1614 if (copy_from_user(&tselect, _tselect, sizeof(tselect))) {
1615 err = -EFAULT;
1616 goto __err;
1617 }
1618 sprintf(str, "application %i", current->pid);
1619 if (tselect.id.dev_class != SNDRV_TIMER_CLASS_SLAVE)
1620 tselect.id.dev_sclass = SNDRV_TIMER_SCLASS_APPLICATION;
1621 err = snd_timer_open(&tu->timeri, str, &tselect.id, current->pid);
1622 if (err < 0)
1623 goto __err;
1624
1625 kfree(tu->queue);
1626 tu->queue = NULL;
1627 kfree(tu->tqueue);
1628 tu->tqueue = NULL;
1629 if (tu->tread) {
1630 tu->tqueue = kmalloc(tu->queue_size * sizeof(struct snd_timer_tread),
1631 GFP_KERNEL);
1632 if (tu->tqueue == NULL)
1633 err = -ENOMEM;
1634 } else {
1635 tu->queue = kmalloc(tu->queue_size * sizeof(struct snd_timer_read),
1636 GFP_KERNEL);
1637 if (tu->queue == NULL)
1638 err = -ENOMEM;
1639 }
1640
1641 if (err < 0) {
1642 snd_timer_close(tu->timeri);
1643 tu->timeri = NULL;
1644 } else {
1645 tu->timeri->flags |= SNDRV_TIMER_IFLG_FAST;
1646 tu->timeri->callback = tu->tread
1647 ? snd_timer_user_tinterrupt : snd_timer_user_interrupt;
1648 tu->timeri->ccallback = snd_timer_user_ccallback;
1649 tu->timeri->callback_data = (void *)tu;
1650 tu->timeri->disconnect = snd_timer_user_disconnect;
1651 }
1652
1653 __err:
1654 return err;
1655}
1656
1657static int snd_timer_user_info(struct file *file,
1658 struct snd_timer_info __user *_info)
1659{
1660 struct snd_timer_user *tu;
1661 struct snd_timer_info *info;
1662 struct snd_timer *t;
1663 int err = 0;
1664
1665 tu = file->private_data;
1666 if (!tu->timeri)
1667 return -EBADFD;
1668 t = tu->timeri->timer;
1669 if (!t)
1670 return -EBADFD;
1671
1672 info = kzalloc(sizeof(*info), GFP_KERNEL);
1673 if (! info)
1674 return -ENOMEM;
1675 info->card = t->card ? t->card->number : -1;
1676 if (t->hw.flags & SNDRV_TIMER_HW_SLAVE)
1677 info->flags |= SNDRV_TIMER_FLG_SLAVE;
1678 strlcpy(info->id, t->id, sizeof(info->id));
1679 strlcpy(info->name, t->name, sizeof(info->name));
1680 info->resolution = t->hw.resolution;
1681 if (copy_to_user(_info, info, sizeof(*_info)))
1682 err = -EFAULT;
1683 kfree(info);
1684 return err;
1685}
1686
1687static int snd_timer_user_params(struct file *file,
1688 struct snd_timer_params __user *_params)
1689{
1690 struct snd_timer_user *tu;
1691 struct snd_timer_params params;
1692 struct snd_timer *t;
1693 struct snd_timer_read *tr;
1694 struct snd_timer_tread *ttr;
1695 int err;
1696
1697 tu = file->private_data;
1698 if (!tu->timeri)
1699 return -EBADFD;
1700 t = tu->timeri->timer;
1701 if (!t)
1702 return -EBADFD;
1703 if (copy_from_user(¶ms, _params, sizeof(params)))
1704 return -EFAULT;
1705 if (!(t->hw.flags & SNDRV_TIMER_HW_SLAVE)) {
1706 u64 resolution;
1707
1708 if (params.ticks < 1) {
1709 err = -EINVAL;
1710 goto _end;
1711 }
1712
1713 /* Don't allow resolution less than 1ms */
1714 resolution = snd_timer_resolution(tu->timeri);
1715 resolution *= params.ticks;
1716 if (resolution < 1000000) {
1717 err = -EINVAL;
1718 goto _end;
1719 }
1720 }
1721 if (params.queue_size > 0 &&
1722 (params.queue_size < 32 || params.queue_size > 1024)) {
1723 err = -EINVAL;
1724 goto _end;
1725 }
1726 if (params.filter & ~((1<<SNDRV_TIMER_EVENT_RESOLUTION)|
1727 (1<<SNDRV_TIMER_EVENT_TICK)|
1728 (1<<SNDRV_TIMER_EVENT_START)|
1729 (1<<SNDRV_TIMER_EVENT_STOP)|
1730 (1<<SNDRV_TIMER_EVENT_CONTINUE)|
1731 (1<<SNDRV_TIMER_EVENT_PAUSE)|
1732 (1<<SNDRV_TIMER_EVENT_SUSPEND)|
1733 (1<<SNDRV_TIMER_EVENT_RESUME)|
1734 (1<<SNDRV_TIMER_EVENT_MSTART)|
1735 (1<<SNDRV_TIMER_EVENT_MSTOP)|
1736 (1<<SNDRV_TIMER_EVENT_MCONTINUE)|
1737 (1<<SNDRV_TIMER_EVENT_MPAUSE)|
1738 (1<<SNDRV_TIMER_EVENT_MSUSPEND)|
1739 (1<<SNDRV_TIMER_EVENT_MRESUME))) {
1740 err = -EINVAL;
1741 goto _end;
1742 }
1743 snd_timer_stop(tu->timeri);
1744 spin_lock_irq(&t->lock);
1745 tu->timeri->flags &= ~(SNDRV_TIMER_IFLG_AUTO|
1746 SNDRV_TIMER_IFLG_EXCLUSIVE|
1747 SNDRV_TIMER_IFLG_EARLY_EVENT);
1748 if (params.flags & SNDRV_TIMER_PSFLG_AUTO)
1749 tu->timeri->flags |= SNDRV_TIMER_IFLG_AUTO;
1750 if (params.flags & SNDRV_TIMER_PSFLG_EXCLUSIVE)
1751 tu->timeri->flags |= SNDRV_TIMER_IFLG_EXCLUSIVE;
1752 if (params.flags & SNDRV_TIMER_PSFLG_EARLY_EVENT)
1753 tu->timeri->flags |= SNDRV_TIMER_IFLG_EARLY_EVENT;
1754 spin_unlock_irq(&t->lock);
1755 if (params.queue_size > 0 &&
1756 (unsigned int)tu->queue_size != params.queue_size) {
1757 if (tu->tread) {
1758 ttr = kmalloc(params.queue_size * sizeof(*ttr),
1759 GFP_KERNEL);
1760 if (ttr) {
1761 kfree(tu->tqueue);
1762 tu->queue_size = params.queue_size;
1763 tu->tqueue = ttr;
1764 }
1765 } else {
1766 tr = kmalloc(params.queue_size * sizeof(*tr),
1767 GFP_KERNEL);
1768 if (tr) {
1769 kfree(tu->queue);
1770 tu->queue_size = params.queue_size;
1771 tu->queue = tr;
1772 }
1773 }
1774 }
1775 tu->qhead = tu->qtail = tu->qused = 0;
1776 if (tu->timeri->flags & SNDRV_TIMER_IFLG_EARLY_EVENT) {
1777 if (tu->tread) {
1778 struct snd_timer_tread tread;
1779 memset(&tread, 0, sizeof(tread));
1780 tread.event = SNDRV_TIMER_EVENT_EARLY;
1781 tread.tstamp.tv_sec = 0;
1782 tread.tstamp.tv_nsec = 0;
1783 tread.val = 0;
1784 snd_timer_user_append_to_tqueue(tu, &tread);
1785 } else {
1786 struct snd_timer_read *r = &tu->queue[0];
1787 r->resolution = 0;
1788 r->ticks = 0;
1789 tu->qused++;
1790 tu->qtail++;
1791 }
1792 }
1793 tu->filter = params.filter;
1794 tu->ticks = params.ticks;
1795 err = 0;
1796 _end:
1797 if (copy_to_user(_params, ¶ms, sizeof(params)))
1798 return -EFAULT;
1799 return err;
1800}
1801
1802static int snd_timer_user_status(struct file *file,
1803 struct snd_timer_status __user *_status)
1804{
1805 struct snd_timer_user *tu;
1806 struct snd_timer_status status;
1807
1808 tu = file->private_data;
1809 if (!tu->timeri)
1810 return -EBADFD;
1811 memset(&status, 0, sizeof(status));
1812 status.tstamp = tu->tstamp;
1813 status.resolution = snd_timer_resolution(tu->timeri);
1814 status.lost = tu->timeri->lost;
1815 status.overrun = tu->overrun;
1816 spin_lock_irq(&tu->qlock);
1817 status.queue = tu->qused;
1818 spin_unlock_irq(&tu->qlock);
1819 if (copy_to_user(_status, &status, sizeof(status)))
1820 return -EFAULT;
1821 return 0;
1822}
1823
1824static int snd_timer_user_start(struct file *file)
1825{
1826 int err;
1827 struct snd_timer_user *tu;
1828
1829 tu = file->private_data;
1830 if (!tu->timeri)
1831 return -EBADFD;
1832 snd_timer_stop(tu->timeri);
1833 tu->timeri->lost = 0;
1834 tu->last_resolution = 0;
1835 return (err = snd_timer_start(tu->timeri, tu->ticks)) < 0 ? err : 0;
1836}
1837
1838static int snd_timer_user_stop(struct file *file)
1839{
1840 int err;
1841 struct snd_timer_user *tu;
1842
1843 tu = file->private_data;
1844 if (!tu->timeri)
1845 return -EBADFD;
1846 return (err = snd_timer_stop(tu->timeri)) < 0 ? err : 0;
1847}
1848
1849static int snd_timer_user_continue(struct file *file)
1850{
1851 int err;
1852 struct snd_timer_user *tu;
1853
1854 tu = file->private_data;
1855 if (!tu->timeri)
1856 return -EBADFD;
1857 /* start timer instead of continue if it's not used before */
1858 if (!(tu->timeri->flags & SNDRV_TIMER_IFLG_PAUSED))
1859 return snd_timer_user_start(file);
1860 tu->timeri->lost = 0;
1861 return (err = snd_timer_continue(tu->timeri)) < 0 ? err : 0;
1862}
1863
1864static int snd_timer_user_pause(struct file *file)
1865{
1866 int err;
1867 struct snd_timer_user *tu;
1868
1869 tu = file->private_data;
1870 if (!tu->timeri)
1871 return -EBADFD;
1872 return (err = snd_timer_pause(tu->timeri)) < 0 ? err : 0;
1873}
1874
1875enum {
1876 SNDRV_TIMER_IOCTL_START_OLD = _IO('T', 0x20),
1877 SNDRV_TIMER_IOCTL_STOP_OLD = _IO('T', 0x21),
1878 SNDRV_TIMER_IOCTL_CONTINUE_OLD = _IO('T', 0x22),
1879 SNDRV_TIMER_IOCTL_PAUSE_OLD = _IO('T', 0x23),
1880};
1881
1882static long __snd_timer_user_ioctl(struct file *file, unsigned int cmd,
1883 unsigned long arg)
1884{
1885 struct snd_timer_user *tu;
1886 void __user *argp = (void __user *)arg;
1887 int __user *p = argp;
1888
1889 tu = file->private_data;
1890 switch (cmd) {
1891 case SNDRV_TIMER_IOCTL_PVERSION:
1892 return put_user(SNDRV_TIMER_VERSION, p) ? -EFAULT : 0;
1893 case SNDRV_TIMER_IOCTL_NEXT_DEVICE:
1894 return snd_timer_user_next_device(argp);
1895 case SNDRV_TIMER_IOCTL_TREAD:
1896 {
1897 int xarg;
1898
1899 if (tu->timeri) /* too late */
1900 return -EBUSY;
1901 if (get_user(xarg, p))
1902 return -EFAULT;
1903 tu->tread = xarg ? 1 : 0;
1904 return 0;
1905 }
1906 case SNDRV_TIMER_IOCTL_GINFO:
1907 return snd_timer_user_ginfo(file, argp);
1908 case SNDRV_TIMER_IOCTL_GPARAMS:
1909 return snd_timer_user_gparams(file, argp);
1910 case SNDRV_TIMER_IOCTL_GSTATUS:
1911 return snd_timer_user_gstatus(file, argp);
1912 case SNDRV_TIMER_IOCTL_SELECT:
1913 return snd_timer_user_tselect(file, argp);
1914 case SNDRV_TIMER_IOCTL_INFO:
1915 return snd_timer_user_info(file, argp);
1916 case SNDRV_TIMER_IOCTL_PARAMS:
1917 return snd_timer_user_params(file, argp);
1918 case SNDRV_TIMER_IOCTL_STATUS:
1919 return snd_timer_user_status(file, argp);
1920 case SNDRV_TIMER_IOCTL_START:
1921 case SNDRV_TIMER_IOCTL_START_OLD:
1922 return snd_timer_user_start(file);
1923 case SNDRV_TIMER_IOCTL_STOP:
1924 case SNDRV_TIMER_IOCTL_STOP_OLD:
1925 return snd_timer_user_stop(file);
1926 case SNDRV_TIMER_IOCTL_CONTINUE:
1927 case SNDRV_TIMER_IOCTL_CONTINUE_OLD:
1928 return snd_timer_user_continue(file);
1929 case SNDRV_TIMER_IOCTL_PAUSE:
1930 case SNDRV_TIMER_IOCTL_PAUSE_OLD:
1931 return snd_timer_user_pause(file);
1932 }
1933 return -ENOTTY;
1934}
1935
1936static long snd_timer_user_ioctl(struct file *file, unsigned int cmd,
1937 unsigned long arg)
1938{
1939 struct snd_timer_user *tu = file->private_data;
1940 long ret;
1941
1942 mutex_lock(&tu->ioctl_lock);
1943 ret = __snd_timer_user_ioctl(file, cmd, arg);
1944 mutex_unlock(&tu->ioctl_lock);
1945 return ret;
1946}
1947
1948static int snd_timer_user_fasync(int fd, struct file * file, int on)
1949{
1950 struct snd_timer_user *tu;
1951
1952 tu = file->private_data;
1953 return fasync_helper(fd, file, on, &tu->fasync);
1954}
1955
1956static ssize_t snd_timer_user_read(struct file *file, char __user *buffer,
1957 size_t count, loff_t *offset)
1958{
1959 struct snd_timer_user *tu;
1960 long result = 0, unit;
1961 int qhead;
1962 int err = 0;
1963
1964 tu = file->private_data;
1965 unit = tu->tread ? sizeof(struct snd_timer_tread) : sizeof(struct snd_timer_read);
1966 spin_lock_irq(&tu->qlock);
1967 while ((long)count - result >= unit) {
1968 while (!tu->qused) {
1969 wait_queue_t wait;
1970
1971 if ((file->f_flags & O_NONBLOCK) != 0 || result > 0) {
1972 err = -EAGAIN;
1973 goto _error;
1974 }
1975
1976 set_current_state(TASK_INTERRUPTIBLE);
1977 init_waitqueue_entry(&wait, current);
1978 add_wait_queue(&tu->qchange_sleep, &wait);
1979
1980 spin_unlock_irq(&tu->qlock);
1981 schedule();
1982 spin_lock_irq(&tu->qlock);
1983
1984 remove_wait_queue(&tu->qchange_sleep, &wait);
1985
1986 if (tu->disconnected) {
1987 err = -ENODEV;
1988 goto _error;
1989 }
1990 if (signal_pending(current)) {
1991 err = -ERESTARTSYS;
1992 goto _error;
1993 }
1994 }
1995
1996 qhead = tu->qhead++;
1997 tu->qhead %= tu->queue_size;
1998 tu->qused--;
1999 spin_unlock_irq(&tu->qlock);
2000
2001 mutex_lock(&tu->ioctl_lock);
2002 if (tu->tread) {
2003 if (copy_to_user(buffer, &tu->tqueue[qhead],
2004 sizeof(struct snd_timer_tread)))
2005 err = -EFAULT;
2006 } else {
2007 if (copy_to_user(buffer, &tu->queue[qhead],
2008 sizeof(struct snd_timer_read)))
2009 err = -EFAULT;
2010 }
2011 mutex_unlock(&tu->ioctl_lock);
2012
2013 spin_lock_irq(&tu->qlock);
2014 if (err < 0)
2015 goto _error;
2016 result += unit;
2017 buffer += unit;
2018 }
2019 _error:
2020 spin_unlock_irq(&tu->qlock);
2021 return result > 0 ? result : err;
2022}
2023
2024static unsigned int snd_timer_user_poll(struct file *file, poll_table * wait)
2025{
2026 unsigned int mask;
2027 struct snd_timer_user *tu;
2028
2029 tu = file->private_data;
2030
2031 poll_wait(file, &tu->qchange_sleep, wait);
2032
2033 mask = 0;
2034 if (tu->qused)
2035 mask |= POLLIN | POLLRDNORM;
2036 if (tu->disconnected)
2037 mask |= POLLERR;
2038
2039 return mask;
2040}
2041
2042#ifdef CONFIG_COMPAT
2043#include "timer_compat.c"
2044#else
2045#define snd_timer_user_ioctl_compat NULL
2046#endif
2047
2048static const struct file_operations snd_timer_f_ops =
2049{
2050 .owner = THIS_MODULE,
2051 .read = snd_timer_user_read,
2052 .open = snd_timer_user_open,
2053 .release = snd_timer_user_release,
2054 .llseek = no_llseek,
2055 .poll = snd_timer_user_poll,
2056 .unlocked_ioctl = snd_timer_user_ioctl,
2057 .compat_ioctl = snd_timer_user_ioctl_compat,
2058 .fasync = snd_timer_user_fasync,
2059};
2060
2061/* unregister the system timer */
2062static void snd_timer_free_all(void)
2063{
2064 struct snd_timer *timer, *n;
2065
2066 list_for_each_entry_safe(timer, n, &snd_timer_list, device_list)
2067 snd_timer_free(timer);
2068}
2069
2070static struct device timer_dev;
2071
2072/*
2073 * ENTRY functions
2074 */
2075
2076static int __init alsa_timer_init(void)
2077{
2078 int err;
2079
2080 snd_device_initialize(&timer_dev, NULL);
2081 dev_set_name(&timer_dev, "timer");
2082
2083#ifdef SNDRV_OSS_INFO_DEV_TIMERS
2084 snd_oss_info_register(SNDRV_OSS_INFO_DEV_TIMERS, SNDRV_CARDS - 1,
2085 "system timer");
2086#endif
2087
2088 err = snd_timer_register_system();
2089 if (err < 0) {
2090 pr_err("ALSA: unable to register system timer (%i)\n", err);
2091 put_device(&timer_dev);
2092 return err;
2093 }
2094
2095 err = snd_register_device(SNDRV_DEVICE_TYPE_TIMER, NULL, 0,
2096 &snd_timer_f_ops, NULL, &timer_dev);
2097 if (err < 0) {
2098 pr_err("ALSA: unable to register timer device (%i)\n", err);
2099 snd_timer_free_all();
2100 put_device(&timer_dev);
2101 return err;
2102 }
2103
2104 snd_timer_proc_init();
2105 return 0;
2106}
2107
2108static void __exit alsa_timer_exit(void)
2109{
2110 snd_unregister_device(&timer_dev);
2111 snd_timer_free_all();
2112 put_device(&timer_dev);
2113 snd_timer_proc_done();
2114#ifdef SNDRV_OSS_INFO_DEV_TIMERS
2115 snd_oss_info_unregister(SNDRV_OSS_INFO_DEV_TIMERS, SNDRV_CARDS - 1);
2116#endif
2117}
2118
2119module_init(alsa_timer_init)
2120module_exit(alsa_timer_exit)
2121
2122EXPORT_SYMBOL(snd_timer_open);
2123EXPORT_SYMBOL(snd_timer_close);
2124EXPORT_SYMBOL(snd_timer_resolution);
2125EXPORT_SYMBOL(snd_timer_start);
2126EXPORT_SYMBOL(snd_timer_stop);
2127EXPORT_SYMBOL(snd_timer_continue);
2128EXPORT_SYMBOL(snd_timer_pause);
2129EXPORT_SYMBOL(snd_timer_new);
2130EXPORT_SYMBOL(snd_timer_notify);
2131EXPORT_SYMBOL(snd_timer_global_new);
2132EXPORT_SYMBOL(snd_timer_global_free);
2133EXPORT_SYMBOL(snd_timer_global_register);
2134EXPORT_SYMBOL(snd_timer_interrupt);
1/*
2 * Timers abstract layer
3 * Copyright (c) by Jaroslav Kysela <perex@perex.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
22#include <linux/delay.h>
23#include <linux/init.h>
24#include <linux/slab.h>
25#include <linux/time.h>
26#include <linux/mutex.h>
27#include <linux/moduleparam.h>
28#include <linux/string.h>
29#include <sound/core.h>
30#include <sound/timer.h>
31#include <sound/control.h>
32#include <sound/info.h>
33#include <sound/minors.h>
34#include <sound/initval.h>
35#include <linux/kmod.h>
36
37#if defined(CONFIG_SND_HRTIMER) || defined(CONFIG_SND_HRTIMER_MODULE)
38#define DEFAULT_TIMER_LIMIT 4
39#elif defined(CONFIG_SND_RTCTIMER) || defined(CONFIG_SND_RTCTIMER_MODULE)
40#define DEFAULT_TIMER_LIMIT 2
41#else
42#define DEFAULT_TIMER_LIMIT 1
43#endif
44
45static int timer_limit = DEFAULT_TIMER_LIMIT;
46static int timer_tstamp_monotonic = 1;
47MODULE_AUTHOR("Jaroslav Kysela <perex@perex.cz>, Takashi Iwai <tiwai@suse.de>");
48MODULE_DESCRIPTION("ALSA timer interface");
49MODULE_LICENSE("GPL");
50module_param(timer_limit, int, 0444);
51MODULE_PARM_DESC(timer_limit, "Maximum global timers in system.");
52module_param(timer_tstamp_monotonic, int, 0444);
53MODULE_PARM_DESC(timer_tstamp_monotonic, "Use posix monotonic clock source for timestamps (default).");
54
55MODULE_ALIAS_CHARDEV(CONFIG_SND_MAJOR, SNDRV_MINOR_TIMER);
56MODULE_ALIAS("devname:snd/timer");
57
58struct snd_timer_user {
59 struct snd_timer_instance *timeri;
60 int tread; /* enhanced read with timestamps and events */
61 unsigned long ticks;
62 unsigned long overrun;
63 int qhead;
64 int qtail;
65 int qused;
66 int queue_size;
67 struct snd_timer_read *queue;
68 struct snd_timer_tread *tqueue;
69 spinlock_t qlock;
70 unsigned long last_resolution;
71 unsigned int filter;
72 struct timespec tstamp; /* trigger tstamp */
73 wait_queue_head_t qchange_sleep;
74 struct fasync_struct *fasync;
75 struct mutex tread_sem;
76};
77
78/* list of timers */
79static LIST_HEAD(snd_timer_list);
80
81/* list of slave instances */
82static LIST_HEAD(snd_timer_slave_list);
83
84/* lock for slave active lists */
85static DEFINE_SPINLOCK(slave_active_lock);
86
87static DEFINE_MUTEX(register_mutex);
88
89static int snd_timer_free(struct snd_timer *timer);
90static int snd_timer_dev_free(struct snd_device *device);
91static int snd_timer_dev_register(struct snd_device *device);
92static int snd_timer_dev_disconnect(struct snd_device *device);
93
94static void snd_timer_reschedule(struct snd_timer * timer, unsigned long ticks_left);
95
96/*
97 * create a timer instance with the given owner string.
98 * when timer is not NULL, increments the module counter
99 */
100static struct snd_timer_instance *snd_timer_instance_new(char *owner,
101 struct snd_timer *timer)
102{
103 struct snd_timer_instance *timeri;
104 timeri = kzalloc(sizeof(*timeri), GFP_KERNEL);
105 if (timeri == NULL)
106 return NULL;
107 timeri->owner = kstrdup(owner, GFP_KERNEL);
108 if (! timeri->owner) {
109 kfree(timeri);
110 return NULL;
111 }
112 INIT_LIST_HEAD(&timeri->open_list);
113 INIT_LIST_HEAD(&timeri->active_list);
114 INIT_LIST_HEAD(&timeri->ack_list);
115 INIT_LIST_HEAD(&timeri->slave_list_head);
116 INIT_LIST_HEAD(&timeri->slave_active_head);
117
118 timeri->timer = timer;
119 if (timer && !try_module_get(timer->module)) {
120 kfree(timeri->owner);
121 kfree(timeri);
122 return NULL;
123 }
124
125 return timeri;
126}
127
128/*
129 * find a timer instance from the given timer id
130 */
131static struct snd_timer *snd_timer_find(struct snd_timer_id *tid)
132{
133 struct snd_timer *timer = NULL;
134
135 list_for_each_entry(timer, &snd_timer_list, device_list) {
136 if (timer->tmr_class != tid->dev_class)
137 continue;
138 if ((timer->tmr_class == SNDRV_TIMER_CLASS_CARD ||
139 timer->tmr_class == SNDRV_TIMER_CLASS_PCM) &&
140 (timer->card == NULL ||
141 timer->card->number != tid->card))
142 continue;
143 if (timer->tmr_device != tid->device)
144 continue;
145 if (timer->tmr_subdevice != tid->subdevice)
146 continue;
147 return timer;
148 }
149 return NULL;
150}
151
152#ifdef CONFIG_MODULES
153
154static void snd_timer_request(struct snd_timer_id *tid)
155{
156 switch (tid->dev_class) {
157 case SNDRV_TIMER_CLASS_GLOBAL:
158 if (tid->device < timer_limit)
159 request_module("snd-timer-%i", tid->device);
160 break;
161 case SNDRV_TIMER_CLASS_CARD:
162 case SNDRV_TIMER_CLASS_PCM:
163 if (tid->card < snd_ecards_limit)
164 request_module("snd-card-%i", tid->card);
165 break;
166 default:
167 break;
168 }
169}
170
171#endif
172
173/*
174 * look for a master instance matching with the slave id of the given slave.
175 * when found, relink the open_link of the slave.
176 *
177 * call this with register_mutex down.
178 */
179static void snd_timer_check_slave(struct snd_timer_instance *slave)
180{
181 struct snd_timer *timer;
182 struct snd_timer_instance *master;
183
184 /* FIXME: it's really dumb to look up all entries.. */
185 list_for_each_entry(timer, &snd_timer_list, device_list) {
186 list_for_each_entry(master, &timer->open_list_head, open_list) {
187 if (slave->slave_class == master->slave_class &&
188 slave->slave_id == master->slave_id) {
189 list_move_tail(&slave->open_list,
190 &master->slave_list_head);
191 spin_lock_irq(&slave_active_lock);
192 slave->master = master;
193 slave->timer = master->timer;
194 spin_unlock_irq(&slave_active_lock);
195 return;
196 }
197 }
198 }
199}
200
201/*
202 * look for slave instances matching with the slave id of the given master.
203 * when found, relink the open_link of slaves.
204 *
205 * call this with register_mutex down.
206 */
207static void snd_timer_check_master(struct snd_timer_instance *master)
208{
209 struct snd_timer_instance *slave, *tmp;
210
211 /* check all pending slaves */
212 list_for_each_entry_safe(slave, tmp, &snd_timer_slave_list, open_list) {
213 if (slave->slave_class == master->slave_class &&
214 slave->slave_id == master->slave_id) {
215 list_move_tail(&slave->open_list, &master->slave_list_head);
216 spin_lock_irq(&slave_active_lock);
217 slave->master = master;
218 slave->timer = master->timer;
219 if (slave->flags & SNDRV_TIMER_IFLG_RUNNING)
220 list_add_tail(&slave->active_list,
221 &master->slave_active_head);
222 spin_unlock_irq(&slave_active_lock);
223 }
224 }
225}
226
227/*
228 * open a timer instance
229 * when opening a master, the slave id must be here given.
230 */
231int snd_timer_open(struct snd_timer_instance **ti,
232 char *owner, struct snd_timer_id *tid,
233 unsigned int slave_id)
234{
235 struct snd_timer *timer;
236 struct snd_timer_instance *timeri = NULL;
237
238 if (tid->dev_class == SNDRV_TIMER_CLASS_SLAVE) {
239 /* open a slave instance */
240 if (tid->dev_sclass <= SNDRV_TIMER_SCLASS_NONE ||
241 tid->dev_sclass > SNDRV_TIMER_SCLASS_OSS_SEQUENCER) {
242 snd_printd("invalid slave class %i\n", tid->dev_sclass);
243 return -EINVAL;
244 }
245 mutex_lock(®ister_mutex);
246 timeri = snd_timer_instance_new(owner, NULL);
247 if (!timeri) {
248 mutex_unlock(®ister_mutex);
249 return -ENOMEM;
250 }
251 timeri->slave_class = tid->dev_sclass;
252 timeri->slave_id = tid->device;
253 timeri->flags |= SNDRV_TIMER_IFLG_SLAVE;
254 list_add_tail(&timeri->open_list, &snd_timer_slave_list);
255 snd_timer_check_slave(timeri);
256 mutex_unlock(®ister_mutex);
257 *ti = timeri;
258 return 0;
259 }
260
261 /* open a master instance */
262 mutex_lock(®ister_mutex);
263 timer = snd_timer_find(tid);
264#ifdef CONFIG_MODULES
265 if (!timer) {
266 mutex_unlock(®ister_mutex);
267 snd_timer_request(tid);
268 mutex_lock(®ister_mutex);
269 timer = snd_timer_find(tid);
270 }
271#endif
272 if (!timer) {
273 mutex_unlock(®ister_mutex);
274 return -ENODEV;
275 }
276 if (!list_empty(&timer->open_list_head)) {
277 timeri = list_entry(timer->open_list_head.next,
278 struct snd_timer_instance, open_list);
279 if (timeri->flags & SNDRV_TIMER_IFLG_EXCLUSIVE) {
280 mutex_unlock(®ister_mutex);
281 return -EBUSY;
282 }
283 }
284 timeri = snd_timer_instance_new(owner, timer);
285 if (!timeri) {
286 mutex_unlock(®ister_mutex);
287 return -ENOMEM;
288 }
289 timeri->slave_class = tid->dev_sclass;
290 timeri->slave_id = slave_id;
291 if (list_empty(&timer->open_list_head) && timer->hw.open)
292 timer->hw.open(timer);
293 list_add_tail(&timeri->open_list, &timer->open_list_head);
294 snd_timer_check_master(timeri);
295 mutex_unlock(®ister_mutex);
296 *ti = timeri;
297 return 0;
298}
299
300static int _snd_timer_stop(struct snd_timer_instance *timeri,
301 int keep_flag, int event);
302
303/*
304 * close a timer instance
305 */
306int snd_timer_close(struct snd_timer_instance *timeri)
307{
308 struct snd_timer *timer = NULL;
309 struct snd_timer_instance *slave, *tmp;
310
311 if (snd_BUG_ON(!timeri))
312 return -ENXIO;
313
314 /* force to stop the timer */
315 snd_timer_stop(timeri);
316
317 if (timeri->flags & SNDRV_TIMER_IFLG_SLAVE) {
318 /* wait, until the active callback is finished */
319 spin_lock_irq(&slave_active_lock);
320 while (timeri->flags & SNDRV_TIMER_IFLG_CALLBACK) {
321 spin_unlock_irq(&slave_active_lock);
322 udelay(10);
323 spin_lock_irq(&slave_active_lock);
324 }
325 spin_unlock_irq(&slave_active_lock);
326 mutex_lock(®ister_mutex);
327 list_del(&timeri->open_list);
328 mutex_unlock(®ister_mutex);
329 } else {
330 timer = timeri->timer;
331 if (snd_BUG_ON(!timer))
332 goto out;
333 /* wait, until the active callback is finished */
334 spin_lock_irq(&timer->lock);
335 while (timeri->flags & SNDRV_TIMER_IFLG_CALLBACK) {
336 spin_unlock_irq(&timer->lock);
337 udelay(10);
338 spin_lock_irq(&timer->lock);
339 }
340 spin_unlock_irq(&timer->lock);
341 mutex_lock(®ister_mutex);
342 list_del(&timeri->open_list);
343 if (timer && list_empty(&timer->open_list_head) &&
344 timer->hw.close)
345 timer->hw.close(timer);
346 /* remove slave links */
347 list_for_each_entry_safe(slave, tmp, &timeri->slave_list_head,
348 open_list) {
349 spin_lock_irq(&slave_active_lock);
350 _snd_timer_stop(slave, 1, SNDRV_TIMER_EVENT_RESOLUTION);
351 list_move_tail(&slave->open_list, &snd_timer_slave_list);
352 slave->master = NULL;
353 slave->timer = NULL;
354 spin_unlock_irq(&slave_active_lock);
355 }
356 mutex_unlock(®ister_mutex);
357 }
358 out:
359 if (timeri->private_free)
360 timeri->private_free(timeri);
361 kfree(timeri->owner);
362 kfree(timeri);
363 if (timer)
364 module_put(timer->module);
365 return 0;
366}
367
368unsigned long snd_timer_resolution(struct snd_timer_instance *timeri)
369{
370 struct snd_timer * timer;
371
372 if (timeri == NULL)
373 return 0;
374 if ((timer = timeri->timer) != NULL) {
375 if (timer->hw.c_resolution)
376 return timer->hw.c_resolution(timer);
377 return timer->hw.resolution;
378 }
379 return 0;
380}
381
382static void snd_timer_notify1(struct snd_timer_instance *ti, int event)
383{
384 struct snd_timer *timer;
385 unsigned long flags;
386 unsigned long resolution = 0;
387 struct snd_timer_instance *ts;
388 struct timespec tstamp;
389
390 if (timer_tstamp_monotonic)
391 do_posix_clock_monotonic_gettime(&tstamp);
392 else
393 getnstimeofday(&tstamp);
394 if (snd_BUG_ON(event < SNDRV_TIMER_EVENT_START ||
395 event > SNDRV_TIMER_EVENT_PAUSE))
396 return;
397 if (event == SNDRV_TIMER_EVENT_START ||
398 event == SNDRV_TIMER_EVENT_CONTINUE)
399 resolution = snd_timer_resolution(ti);
400 if (ti->ccallback)
401 ti->ccallback(ti, event, &tstamp, resolution);
402 if (ti->flags & SNDRV_TIMER_IFLG_SLAVE)
403 return;
404 timer = ti->timer;
405 if (timer == NULL)
406 return;
407 if (timer->hw.flags & SNDRV_TIMER_HW_SLAVE)
408 return;
409 spin_lock_irqsave(&timer->lock, flags);
410 list_for_each_entry(ts, &ti->slave_active_head, active_list)
411 if (ts->ccallback)
412 ts->ccallback(ti, event + 100, &tstamp, resolution);
413 spin_unlock_irqrestore(&timer->lock, flags);
414}
415
416static int snd_timer_start1(struct snd_timer *timer, struct snd_timer_instance *timeri,
417 unsigned long sticks)
418{
419 list_move_tail(&timeri->active_list, &timer->active_list_head);
420 if (timer->running) {
421 if (timer->hw.flags & SNDRV_TIMER_HW_SLAVE)
422 goto __start_now;
423 timer->flags |= SNDRV_TIMER_FLG_RESCHED;
424 timeri->flags |= SNDRV_TIMER_IFLG_START;
425 return 1; /* delayed start */
426 } else {
427 timer->sticks = sticks;
428 timer->hw.start(timer);
429 __start_now:
430 timer->running++;
431 timeri->flags |= SNDRV_TIMER_IFLG_RUNNING;
432 return 0;
433 }
434}
435
436static int snd_timer_start_slave(struct snd_timer_instance *timeri)
437{
438 unsigned long flags;
439
440 spin_lock_irqsave(&slave_active_lock, flags);
441 timeri->flags |= SNDRV_TIMER_IFLG_RUNNING;
442 if (timeri->master)
443 list_add_tail(&timeri->active_list,
444 &timeri->master->slave_active_head);
445 spin_unlock_irqrestore(&slave_active_lock, flags);
446 return 1; /* delayed start */
447}
448
449/*
450 * start the timer instance
451 */
452int snd_timer_start(struct snd_timer_instance *timeri, unsigned int ticks)
453{
454 struct snd_timer *timer;
455 int result = -EINVAL;
456 unsigned long flags;
457
458 if (timeri == NULL || ticks < 1)
459 return -EINVAL;
460 if (timeri->flags & SNDRV_TIMER_IFLG_SLAVE) {
461 result = snd_timer_start_slave(timeri);
462 snd_timer_notify1(timeri, SNDRV_TIMER_EVENT_START);
463 return result;
464 }
465 timer = timeri->timer;
466 if (timer == NULL)
467 return -EINVAL;
468 spin_lock_irqsave(&timer->lock, flags);
469 timeri->ticks = timeri->cticks = ticks;
470 timeri->pticks = 0;
471 result = snd_timer_start1(timer, timeri, ticks);
472 spin_unlock_irqrestore(&timer->lock, flags);
473 snd_timer_notify1(timeri, SNDRV_TIMER_EVENT_START);
474 return result;
475}
476
477static int _snd_timer_stop(struct snd_timer_instance * timeri,
478 int keep_flag, int event)
479{
480 struct snd_timer *timer;
481 unsigned long flags;
482
483 if (snd_BUG_ON(!timeri))
484 return -ENXIO;
485
486 if (timeri->flags & SNDRV_TIMER_IFLG_SLAVE) {
487 if (!keep_flag) {
488 spin_lock_irqsave(&slave_active_lock, flags);
489 timeri->flags &= ~SNDRV_TIMER_IFLG_RUNNING;
490 spin_unlock_irqrestore(&slave_active_lock, flags);
491 }
492 goto __end;
493 }
494 timer = timeri->timer;
495 if (!timer)
496 return -EINVAL;
497 spin_lock_irqsave(&timer->lock, flags);
498 list_del_init(&timeri->ack_list);
499 list_del_init(&timeri->active_list);
500 if ((timeri->flags & SNDRV_TIMER_IFLG_RUNNING) &&
501 !(--timer->running)) {
502 timer->hw.stop(timer);
503 if (timer->flags & SNDRV_TIMER_FLG_RESCHED) {
504 timer->flags &= ~SNDRV_TIMER_FLG_RESCHED;
505 snd_timer_reschedule(timer, 0);
506 if (timer->flags & SNDRV_TIMER_FLG_CHANGE) {
507 timer->flags &= ~SNDRV_TIMER_FLG_CHANGE;
508 timer->hw.start(timer);
509 }
510 }
511 }
512 if (!keep_flag)
513 timeri->flags &=
514 ~(SNDRV_TIMER_IFLG_RUNNING | SNDRV_TIMER_IFLG_START);
515 spin_unlock_irqrestore(&timer->lock, flags);
516 __end:
517 if (event != SNDRV_TIMER_EVENT_RESOLUTION)
518 snd_timer_notify1(timeri, event);
519 return 0;
520}
521
522/*
523 * stop the timer instance.
524 *
525 * do not call this from the timer callback!
526 */
527int snd_timer_stop(struct snd_timer_instance *timeri)
528{
529 struct snd_timer *timer;
530 unsigned long flags;
531 int err;
532
533 err = _snd_timer_stop(timeri, 0, SNDRV_TIMER_EVENT_STOP);
534 if (err < 0)
535 return err;
536 timer = timeri->timer;
537 if (!timer)
538 return -EINVAL;
539 spin_lock_irqsave(&timer->lock, flags);
540 timeri->cticks = timeri->ticks;
541 timeri->pticks = 0;
542 spin_unlock_irqrestore(&timer->lock, flags);
543 return 0;
544}
545
546/*
547 * start again.. the tick is kept.
548 */
549int snd_timer_continue(struct snd_timer_instance *timeri)
550{
551 struct snd_timer *timer;
552 int result = -EINVAL;
553 unsigned long flags;
554
555 if (timeri == NULL)
556 return result;
557 if (timeri->flags & SNDRV_TIMER_IFLG_SLAVE)
558 return snd_timer_start_slave(timeri);
559 timer = timeri->timer;
560 if (! timer)
561 return -EINVAL;
562 spin_lock_irqsave(&timer->lock, flags);
563 if (!timeri->cticks)
564 timeri->cticks = 1;
565 timeri->pticks = 0;
566 result = snd_timer_start1(timer, timeri, timer->sticks);
567 spin_unlock_irqrestore(&timer->lock, flags);
568 snd_timer_notify1(timeri, SNDRV_TIMER_EVENT_CONTINUE);
569 return result;
570}
571
572/*
573 * pause.. remember the ticks left
574 */
575int snd_timer_pause(struct snd_timer_instance * timeri)
576{
577 return _snd_timer_stop(timeri, 0, SNDRV_TIMER_EVENT_PAUSE);
578}
579
580/*
581 * reschedule the timer
582 *
583 * start pending instances and check the scheduling ticks.
584 * when the scheduling ticks is changed set CHANGE flag to reprogram the timer.
585 */
586static void snd_timer_reschedule(struct snd_timer * timer, unsigned long ticks_left)
587{
588 struct snd_timer_instance *ti;
589 unsigned long ticks = ~0UL;
590
591 list_for_each_entry(ti, &timer->active_list_head, active_list) {
592 if (ti->flags & SNDRV_TIMER_IFLG_START) {
593 ti->flags &= ~SNDRV_TIMER_IFLG_START;
594 ti->flags |= SNDRV_TIMER_IFLG_RUNNING;
595 timer->running++;
596 }
597 if (ti->flags & SNDRV_TIMER_IFLG_RUNNING) {
598 if (ticks > ti->cticks)
599 ticks = ti->cticks;
600 }
601 }
602 if (ticks == ~0UL) {
603 timer->flags &= ~SNDRV_TIMER_FLG_RESCHED;
604 return;
605 }
606 if (ticks > timer->hw.ticks)
607 ticks = timer->hw.ticks;
608 if (ticks_left != ticks)
609 timer->flags |= SNDRV_TIMER_FLG_CHANGE;
610 timer->sticks = ticks;
611}
612
613/*
614 * timer tasklet
615 *
616 */
617static void snd_timer_tasklet(unsigned long arg)
618{
619 struct snd_timer *timer = (struct snd_timer *) arg;
620 struct snd_timer_instance *ti;
621 struct list_head *p;
622 unsigned long resolution, ticks;
623 unsigned long flags;
624
625 spin_lock_irqsave(&timer->lock, flags);
626 /* now process all callbacks */
627 while (!list_empty(&timer->sack_list_head)) {
628 p = timer->sack_list_head.next; /* get first item */
629 ti = list_entry(p, struct snd_timer_instance, ack_list);
630
631 /* remove from ack_list and make empty */
632 list_del_init(p);
633
634 ticks = ti->pticks;
635 ti->pticks = 0;
636 resolution = ti->resolution;
637
638 ti->flags |= SNDRV_TIMER_IFLG_CALLBACK;
639 spin_unlock(&timer->lock);
640 if (ti->callback)
641 ti->callback(ti, resolution, ticks);
642 spin_lock(&timer->lock);
643 ti->flags &= ~SNDRV_TIMER_IFLG_CALLBACK;
644 }
645 spin_unlock_irqrestore(&timer->lock, flags);
646}
647
648/*
649 * timer interrupt
650 *
651 * ticks_left is usually equal to timer->sticks.
652 *
653 */
654void snd_timer_interrupt(struct snd_timer * timer, unsigned long ticks_left)
655{
656 struct snd_timer_instance *ti, *ts, *tmp;
657 unsigned long resolution, ticks;
658 struct list_head *p, *ack_list_head;
659 unsigned long flags;
660 int use_tasklet = 0;
661
662 if (timer == NULL)
663 return;
664
665 spin_lock_irqsave(&timer->lock, flags);
666
667 /* remember the current resolution */
668 if (timer->hw.c_resolution)
669 resolution = timer->hw.c_resolution(timer);
670 else
671 resolution = timer->hw.resolution;
672
673 /* loop for all active instances
674 * Here we cannot use list_for_each_entry because the active_list of a
675 * processed instance is relinked to done_list_head before the callback
676 * is called.
677 */
678 list_for_each_entry_safe(ti, tmp, &timer->active_list_head,
679 active_list) {
680 if (!(ti->flags & SNDRV_TIMER_IFLG_RUNNING))
681 continue;
682 ti->pticks += ticks_left;
683 ti->resolution = resolution;
684 if (ti->cticks < ticks_left)
685 ti->cticks = 0;
686 else
687 ti->cticks -= ticks_left;
688 if (ti->cticks) /* not expired */
689 continue;
690 if (ti->flags & SNDRV_TIMER_IFLG_AUTO) {
691 ti->cticks = ti->ticks;
692 } else {
693 ti->flags &= ~SNDRV_TIMER_IFLG_RUNNING;
694 if (--timer->running)
695 list_del(&ti->active_list);
696 }
697 if ((timer->hw.flags & SNDRV_TIMER_HW_TASKLET) ||
698 (ti->flags & SNDRV_TIMER_IFLG_FAST))
699 ack_list_head = &timer->ack_list_head;
700 else
701 ack_list_head = &timer->sack_list_head;
702 if (list_empty(&ti->ack_list))
703 list_add_tail(&ti->ack_list, ack_list_head);
704 list_for_each_entry(ts, &ti->slave_active_head, active_list) {
705 ts->pticks = ti->pticks;
706 ts->resolution = resolution;
707 if (list_empty(&ts->ack_list))
708 list_add_tail(&ts->ack_list, ack_list_head);
709 }
710 }
711 if (timer->flags & SNDRV_TIMER_FLG_RESCHED)
712 snd_timer_reschedule(timer, timer->sticks);
713 if (timer->running) {
714 if (timer->hw.flags & SNDRV_TIMER_HW_STOP) {
715 timer->hw.stop(timer);
716 timer->flags |= SNDRV_TIMER_FLG_CHANGE;
717 }
718 if (!(timer->hw.flags & SNDRV_TIMER_HW_AUTO) ||
719 (timer->flags & SNDRV_TIMER_FLG_CHANGE)) {
720 /* restart timer */
721 timer->flags &= ~SNDRV_TIMER_FLG_CHANGE;
722 timer->hw.start(timer);
723 }
724 } else {
725 timer->hw.stop(timer);
726 }
727
728 /* now process all fast callbacks */
729 while (!list_empty(&timer->ack_list_head)) {
730 p = timer->ack_list_head.next; /* get first item */
731 ti = list_entry(p, struct snd_timer_instance, ack_list);
732
733 /* remove from ack_list and make empty */
734 list_del_init(p);
735
736 ticks = ti->pticks;
737 ti->pticks = 0;
738
739 ti->flags |= SNDRV_TIMER_IFLG_CALLBACK;
740 spin_unlock(&timer->lock);
741 if (ti->callback)
742 ti->callback(ti, resolution, ticks);
743 spin_lock(&timer->lock);
744 ti->flags &= ~SNDRV_TIMER_IFLG_CALLBACK;
745 }
746
747 /* do we have any slow callbacks? */
748 use_tasklet = !list_empty(&timer->sack_list_head);
749 spin_unlock_irqrestore(&timer->lock, flags);
750
751 if (use_tasklet)
752 tasklet_schedule(&timer->task_queue);
753}
754
755/*
756
757 */
758
759int snd_timer_new(struct snd_card *card, char *id, struct snd_timer_id *tid,
760 struct snd_timer **rtimer)
761{
762 struct snd_timer *timer;
763 int err;
764 static struct snd_device_ops ops = {
765 .dev_free = snd_timer_dev_free,
766 .dev_register = snd_timer_dev_register,
767 .dev_disconnect = snd_timer_dev_disconnect,
768 };
769
770 if (snd_BUG_ON(!tid))
771 return -EINVAL;
772 if (rtimer)
773 *rtimer = NULL;
774 timer = kzalloc(sizeof(*timer), GFP_KERNEL);
775 if (timer == NULL) {
776 snd_printk(KERN_ERR "timer: cannot allocate\n");
777 return -ENOMEM;
778 }
779 timer->tmr_class = tid->dev_class;
780 timer->card = card;
781 timer->tmr_device = tid->device;
782 timer->tmr_subdevice = tid->subdevice;
783 if (id)
784 strlcpy(timer->id, id, sizeof(timer->id));
785 INIT_LIST_HEAD(&timer->device_list);
786 INIT_LIST_HEAD(&timer->open_list_head);
787 INIT_LIST_HEAD(&timer->active_list_head);
788 INIT_LIST_HEAD(&timer->ack_list_head);
789 INIT_LIST_HEAD(&timer->sack_list_head);
790 spin_lock_init(&timer->lock);
791 tasklet_init(&timer->task_queue, snd_timer_tasklet,
792 (unsigned long)timer);
793 if (card != NULL) {
794 timer->module = card->module;
795 err = snd_device_new(card, SNDRV_DEV_TIMER, timer, &ops);
796 if (err < 0) {
797 snd_timer_free(timer);
798 return err;
799 }
800 }
801 if (rtimer)
802 *rtimer = timer;
803 return 0;
804}
805
806static int snd_timer_free(struct snd_timer *timer)
807{
808 if (!timer)
809 return 0;
810
811 mutex_lock(®ister_mutex);
812 if (! list_empty(&timer->open_list_head)) {
813 struct list_head *p, *n;
814 struct snd_timer_instance *ti;
815 snd_printk(KERN_WARNING "timer %p is busy?\n", timer);
816 list_for_each_safe(p, n, &timer->open_list_head) {
817 list_del_init(p);
818 ti = list_entry(p, struct snd_timer_instance, open_list);
819 ti->timer = NULL;
820 }
821 }
822 list_del(&timer->device_list);
823 mutex_unlock(®ister_mutex);
824
825 if (timer->private_free)
826 timer->private_free(timer);
827 kfree(timer);
828 return 0;
829}
830
831static int snd_timer_dev_free(struct snd_device *device)
832{
833 struct snd_timer *timer = device->device_data;
834 return snd_timer_free(timer);
835}
836
837static int snd_timer_dev_register(struct snd_device *dev)
838{
839 struct snd_timer *timer = dev->device_data;
840 struct snd_timer *timer1;
841
842 if (snd_BUG_ON(!timer || !timer->hw.start || !timer->hw.stop))
843 return -ENXIO;
844 if (!(timer->hw.flags & SNDRV_TIMER_HW_SLAVE) &&
845 !timer->hw.resolution && timer->hw.c_resolution == NULL)
846 return -EINVAL;
847
848 mutex_lock(®ister_mutex);
849 list_for_each_entry(timer1, &snd_timer_list, device_list) {
850 if (timer1->tmr_class > timer->tmr_class)
851 break;
852 if (timer1->tmr_class < timer->tmr_class)
853 continue;
854 if (timer1->card && timer->card) {
855 if (timer1->card->number > timer->card->number)
856 break;
857 if (timer1->card->number < timer->card->number)
858 continue;
859 }
860 if (timer1->tmr_device > timer->tmr_device)
861 break;
862 if (timer1->tmr_device < timer->tmr_device)
863 continue;
864 if (timer1->tmr_subdevice > timer->tmr_subdevice)
865 break;
866 if (timer1->tmr_subdevice < timer->tmr_subdevice)
867 continue;
868 /* conflicts.. */
869 mutex_unlock(®ister_mutex);
870 return -EBUSY;
871 }
872 list_add_tail(&timer->device_list, &timer1->device_list);
873 mutex_unlock(®ister_mutex);
874 return 0;
875}
876
877static int snd_timer_dev_disconnect(struct snd_device *device)
878{
879 struct snd_timer *timer = device->device_data;
880 mutex_lock(®ister_mutex);
881 list_del_init(&timer->device_list);
882 mutex_unlock(®ister_mutex);
883 return 0;
884}
885
886void snd_timer_notify(struct snd_timer *timer, int event, struct timespec *tstamp)
887{
888 unsigned long flags;
889 unsigned long resolution = 0;
890 struct snd_timer_instance *ti, *ts;
891
892 if (! (timer->hw.flags & SNDRV_TIMER_HW_SLAVE))
893 return;
894 if (snd_BUG_ON(event < SNDRV_TIMER_EVENT_MSTART ||
895 event > SNDRV_TIMER_EVENT_MRESUME))
896 return;
897 spin_lock_irqsave(&timer->lock, flags);
898 if (event == SNDRV_TIMER_EVENT_MSTART ||
899 event == SNDRV_TIMER_EVENT_MCONTINUE ||
900 event == SNDRV_TIMER_EVENT_MRESUME) {
901 if (timer->hw.c_resolution)
902 resolution = timer->hw.c_resolution(timer);
903 else
904 resolution = timer->hw.resolution;
905 }
906 list_for_each_entry(ti, &timer->active_list_head, active_list) {
907 if (ti->ccallback)
908 ti->ccallback(ti, event, tstamp, resolution);
909 list_for_each_entry(ts, &ti->slave_active_head, active_list)
910 if (ts->ccallback)
911 ts->ccallback(ts, event, tstamp, resolution);
912 }
913 spin_unlock_irqrestore(&timer->lock, flags);
914}
915
916/*
917 * exported functions for global timers
918 */
919int snd_timer_global_new(char *id, int device, struct snd_timer **rtimer)
920{
921 struct snd_timer_id tid;
922
923 tid.dev_class = SNDRV_TIMER_CLASS_GLOBAL;
924 tid.dev_sclass = SNDRV_TIMER_SCLASS_NONE;
925 tid.card = -1;
926 tid.device = device;
927 tid.subdevice = 0;
928 return snd_timer_new(NULL, id, &tid, rtimer);
929}
930
931int snd_timer_global_free(struct snd_timer *timer)
932{
933 return snd_timer_free(timer);
934}
935
936int snd_timer_global_register(struct snd_timer *timer)
937{
938 struct snd_device dev;
939
940 memset(&dev, 0, sizeof(dev));
941 dev.device_data = timer;
942 return snd_timer_dev_register(&dev);
943}
944
945/*
946 * System timer
947 */
948
949struct snd_timer_system_private {
950 struct timer_list tlist;
951 unsigned long last_expires;
952 unsigned long last_jiffies;
953 unsigned long correction;
954};
955
956static void snd_timer_s_function(unsigned long data)
957{
958 struct snd_timer *timer = (struct snd_timer *)data;
959 struct snd_timer_system_private *priv = timer->private_data;
960 unsigned long jiff = jiffies;
961 if (time_after(jiff, priv->last_expires))
962 priv->correction += (long)jiff - (long)priv->last_expires;
963 snd_timer_interrupt(timer, (long)jiff - (long)priv->last_jiffies);
964}
965
966static int snd_timer_s_start(struct snd_timer * timer)
967{
968 struct snd_timer_system_private *priv;
969 unsigned long njiff;
970
971 priv = (struct snd_timer_system_private *) timer->private_data;
972 njiff = (priv->last_jiffies = jiffies);
973 if (priv->correction > timer->sticks - 1) {
974 priv->correction -= timer->sticks - 1;
975 njiff++;
976 } else {
977 njiff += timer->sticks - priv->correction;
978 priv->correction = 0;
979 }
980 priv->last_expires = priv->tlist.expires = njiff;
981 add_timer(&priv->tlist);
982 return 0;
983}
984
985static int snd_timer_s_stop(struct snd_timer * timer)
986{
987 struct snd_timer_system_private *priv;
988 unsigned long jiff;
989
990 priv = (struct snd_timer_system_private *) timer->private_data;
991 del_timer(&priv->tlist);
992 jiff = jiffies;
993 if (time_before(jiff, priv->last_expires))
994 timer->sticks = priv->last_expires - jiff;
995 else
996 timer->sticks = 1;
997 priv->correction = 0;
998 return 0;
999}
1000
1001static struct snd_timer_hardware snd_timer_system =
1002{
1003 .flags = SNDRV_TIMER_HW_FIRST | SNDRV_TIMER_HW_TASKLET,
1004 .resolution = 1000000000L / HZ,
1005 .ticks = 10000000L,
1006 .start = snd_timer_s_start,
1007 .stop = snd_timer_s_stop
1008};
1009
1010static void snd_timer_free_system(struct snd_timer *timer)
1011{
1012 kfree(timer->private_data);
1013}
1014
1015static int snd_timer_register_system(void)
1016{
1017 struct snd_timer *timer;
1018 struct snd_timer_system_private *priv;
1019 int err;
1020
1021 err = snd_timer_global_new("system", SNDRV_TIMER_GLOBAL_SYSTEM, &timer);
1022 if (err < 0)
1023 return err;
1024 strcpy(timer->name, "system timer");
1025 timer->hw = snd_timer_system;
1026 priv = kzalloc(sizeof(*priv), GFP_KERNEL);
1027 if (priv == NULL) {
1028 snd_timer_free(timer);
1029 return -ENOMEM;
1030 }
1031 init_timer(&priv->tlist);
1032 priv->tlist.function = snd_timer_s_function;
1033 priv->tlist.data = (unsigned long) timer;
1034 timer->private_data = priv;
1035 timer->private_free = snd_timer_free_system;
1036 return snd_timer_global_register(timer);
1037}
1038
1039#ifdef CONFIG_PROC_FS
1040/*
1041 * Info interface
1042 */
1043
1044static void snd_timer_proc_read(struct snd_info_entry *entry,
1045 struct snd_info_buffer *buffer)
1046{
1047 struct snd_timer *timer;
1048 struct snd_timer_instance *ti;
1049
1050 mutex_lock(®ister_mutex);
1051 list_for_each_entry(timer, &snd_timer_list, device_list) {
1052 switch (timer->tmr_class) {
1053 case SNDRV_TIMER_CLASS_GLOBAL:
1054 snd_iprintf(buffer, "G%i: ", timer->tmr_device);
1055 break;
1056 case SNDRV_TIMER_CLASS_CARD:
1057 snd_iprintf(buffer, "C%i-%i: ",
1058 timer->card->number, timer->tmr_device);
1059 break;
1060 case SNDRV_TIMER_CLASS_PCM:
1061 snd_iprintf(buffer, "P%i-%i-%i: ", timer->card->number,
1062 timer->tmr_device, timer->tmr_subdevice);
1063 break;
1064 default:
1065 snd_iprintf(buffer, "?%i-%i-%i-%i: ", timer->tmr_class,
1066 timer->card ? timer->card->number : -1,
1067 timer->tmr_device, timer->tmr_subdevice);
1068 }
1069 snd_iprintf(buffer, "%s :", timer->name);
1070 if (timer->hw.resolution)
1071 snd_iprintf(buffer, " %lu.%03luus (%lu ticks)",
1072 timer->hw.resolution / 1000,
1073 timer->hw.resolution % 1000,
1074 timer->hw.ticks);
1075 if (timer->hw.flags & SNDRV_TIMER_HW_SLAVE)
1076 snd_iprintf(buffer, " SLAVE");
1077 snd_iprintf(buffer, "\n");
1078 list_for_each_entry(ti, &timer->open_list_head, open_list)
1079 snd_iprintf(buffer, " Client %s : %s\n",
1080 ti->owner ? ti->owner : "unknown",
1081 ti->flags & (SNDRV_TIMER_IFLG_START |
1082 SNDRV_TIMER_IFLG_RUNNING)
1083 ? "running" : "stopped");
1084 }
1085 mutex_unlock(®ister_mutex);
1086}
1087
1088static struct snd_info_entry *snd_timer_proc_entry;
1089
1090static void __init snd_timer_proc_init(void)
1091{
1092 struct snd_info_entry *entry;
1093
1094 entry = snd_info_create_module_entry(THIS_MODULE, "timers", NULL);
1095 if (entry != NULL) {
1096 entry->c.text.read = snd_timer_proc_read;
1097 if (snd_info_register(entry) < 0) {
1098 snd_info_free_entry(entry);
1099 entry = NULL;
1100 }
1101 }
1102 snd_timer_proc_entry = entry;
1103}
1104
1105static void __exit snd_timer_proc_done(void)
1106{
1107 snd_info_free_entry(snd_timer_proc_entry);
1108}
1109#else /* !CONFIG_PROC_FS */
1110#define snd_timer_proc_init()
1111#define snd_timer_proc_done()
1112#endif
1113
1114/*
1115 * USER SPACE interface
1116 */
1117
1118static void snd_timer_user_interrupt(struct snd_timer_instance *timeri,
1119 unsigned long resolution,
1120 unsigned long ticks)
1121{
1122 struct snd_timer_user *tu = timeri->callback_data;
1123 struct snd_timer_read *r;
1124 int prev;
1125
1126 spin_lock(&tu->qlock);
1127 if (tu->qused > 0) {
1128 prev = tu->qtail == 0 ? tu->queue_size - 1 : tu->qtail - 1;
1129 r = &tu->queue[prev];
1130 if (r->resolution == resolution) {
1131 r->ticks += ticks;
1132 goto __wake;
1133 }
1134 }
1135 if (tu->qused >= tu->queue_size) {
1136 tu->overrun++;
1137 } else {
1138 r = &tu->queue[tu->qtail++];
1139 tu->qtail %= tu->queue_size;
1140 r->resolution = resolution;
1141 r->ticks = ticks;
1142 tu->qused++;
1143 }
1144 __wake:
1145 spin_unlock(&tu->qlock);
1146 kill_fasync(&tu->fasync, SIGIO, POLL_IN);
1147 wake_up(&tu->qchange_sleep);
1148}
1149
1150static void snd_timer_user_append_to_tqueue(struct snd_timer_user *tu,
1151 struct snd_timer_tread *tread)
1152{
1153 if (tu->qused >= tu->queue_size) {
1154 tu->overrun++;
1155 } else {
1156 memcpy(&tu->tqueue[tu->qtail++], tread, sizeof(*tread));
1157 tu->qtail %= tu->queue_size;
1158 tu->qused++;
1159 }
1160}
1161
1162static void snd_timer_user_ccallback(struct snd_timer_instance *timeri,
1163 int event,
1164 struct timespec *tstamp,
1165 unsigned long resolution)
1166{
1167 struct snd_timer_user *tu = timeri->callback_data;
1168 struct snd_timer_tread r1;
1169 unsigned long flags;
1170
1171 if (event >= SNDRV_TIMER_EVENT_START &&
1172 event <= SNDRV_TIMER_EVENT_PAUSE)
1173 tu->tstamp = *tstamp;
1174 if ((tu->filter & (1 << event)) == 0 || !tu->tread)
1175 return;
1176 r1.event = event;
1177 r1.tstamp = *tstamp;
1178 r1.val = resolution;
1179 spin_lock_irqsave(&tu->qlock, flags);
1180 snd_timer_user_append_to_tqueue(tu, &r1);
1181 spin_unlock_irqrestore(&tu->qlock, flags);
1182 kill_fasync(&tu->fasync, SIGIO, POLL_IN);
1183 wake_up(&tu->qchange_sleep);
1184}
1185
1186static void snd_timer_user_tinterrupt(struct snd_timer_instance *timeri,
1187 unsigned long resolution,
1188 unsigned long ticks)
1189{
1190 struct snd_timer_user *tu = timeri->callback_data;
1191 struct snd_timer_tread *r, r1;
1192 struct timespec tstamp;
1193 int prev, append = 0;
1194
1195 memset(&tstamp, 0, sizeof(tstamp));
1196 spin_lock(&tu->qlock);
1197 if ((tu->filter & ((1 << SNDRV_TIMER_EVENT_RESOLUTION) |
1198 (1 << SNDRV_TIMER_EVENT_TICK))) == 0) {
1199 spin_unlock(&tu->qlock);
1200 return;
1201 }
1202 if (tu->last_resolution != resolution || ticks > 0) {
1203 if (timer_tstamp_monotonic)
1204 do_posix_clock_monotonic_gettime(&tstamp);
1205 else
1206 getnstimeofday(&tstamp);
1207 }
1208 if ((tu->filter & (1 << SNDRV_TIMER_EVENT_RESOLUTION)) &&
1209 tu->last_resolution != resolution) {
1210 r1.event = SNDRV_TIMER_EVENT_RESOLUTION;
1211 r1.tstamp = tstamp;
1212 r1.val = resolution;
1213 snd_timer_user_append_to_tqueue(tu, &r1);
1214 tu->last_resolution = resolution;
1215 append++;
1216 }
1217 if ((tu->filter & (1 << SNDRV_TIMER_EVENT_TICK)) == 0)
1218 goto __wake;
1219 if (ticks == 0)
1220 goto __wake;
1221 if (tu->qused > 0) {
1222 prev = tu->qtail == 0 ? tu->queue_size - 1 : tu->qtail - 1;
1223 r = &tu->tqueue[prev];
1224 if (r->event == SNDRV_TIMER_EVENT_TICK) {
1225 r->tstamp = tstamp;
1226 r->val += ticks;
1227 append++;
1228 goto __wake;
1229 }
1230 }
1231 r1.event = SNDRV_TIMER_EVENT_TICK;
1232 r1.tstamp = tstamp;
1233 r1.val = ticks;
1234 snd_timer_user_append_to_tqueue(tu, &r1);
1235 append++;
1236 __wake:
1237 spin_unlock(&tu->qlock);
1238 if (append == 0)
1239 return;
1240 kill_fasync(&tu->fasync, SIGIO, POLL_IN);
1241 wake_up(&tu->qchange_sleep);
1242}
1243
1244static int snd_timer_user_open(struct inode *inode, struct file *file)
1245{
1246 struct snd_timer_user *tu;
1247 int err;
1248
1249 err = nonseekable_open(inode, file);
1250 if (err < 0)
1251 return err;
1252
1253 tu = kzalloc(sizeof(*tu), GFP_KERNEL);
1254 if (tu == NULL)
1255 return -ENOMEM;
1256 spin_lock_init(&tu->qlock);
1257 init_waitqueue_head(&tu->qchange_sleep);
1258 mutex_init(&tu->tread_sem);
1259 tu->ticks = 1;
1260 tu->queue_size = 128;
1261 tu->queue = kmalloc(tu->queue_size * sizeof(struct snd_timer_read),
1262 GFP_KERNEL);
1263 if (tu->queue == NULL) {
1264 kfree(tu);
1265 return -ENOMEM;
1266 }
1267 file->private_data = tu;
1268 return 0;
1269}
1270
1271static int snd_timer_user_release(struct inode *inode, struct file *file)
1272{
1273 struct snd_timer_user *tu;
1274
1275 if (file->private_data) {
1276 tu = file->private_data;
1277 file->private_data = NULL;
1278 if (tu->timeri)
1279 snd_timer_close(tu->timeri);
1280 kfree(tu->queue);
1281 kfree(tu->tqueue);
1282 kfree(tu);
1283 }
1284 return 0;
1285}
1286
1287static void snd_timer_user_zero_id(struct snd_timer_id *id)
1288{
1289 id->dev_class = SNDRV_TIMER_CLASS_NONE;
1290 id->dev_sclass = SNDRV_TIMER_SCLASS_NONE;
1291 id->card = -1;
1292 id->device = -1;
1293 id->subdevice = -1;
1294}
1295
1296static void snd_timer_user_copy_id(struct snd_timer_id *id, struct snd_timer *timer)
1297{
1298 id->dev_class = timer->tmr_class;
1299 id->dev_sclass = SNDRV_TIMER_SCLASS_NONE;
1300 id->card = timer->card ? timer->card->number : -1;
1301 id->device = timer->tmr_device;
1302 id->subdevice = timer->tmr_subdevice;
1303}
1304
1305static int snd_timer_user_next_device(struct snd_timer_id __user *_tid)
1306{
1307 struct snd_timer_id id;
1308 struct snd_timer *timer;
1309 struct list_head *p;
1310
1311 if (copy_from_user(&id, _tid, sizeof(id)))
1312 return -EFAULT;
1313 mutex_lock(®ister_mutex);
1314 if (id.dev_class < 0) { /* first item */
1315 if (list_empty(&snd_timer_list))
1316 snd_timer_user_zero_id(&id);
1317 else {
1318 timer = list_entry(snd_timer_list.next,
1319 struct snd_timer, device_list);
1320 snd_timer_user_copy_id(&id, timer);
1321 }
1322 } else {
1323 switch (id.dev_class) {
1324 case SNDRV_TIMER_CLASS_GLOBAL:
1325 id.device = id.device < 0 ? 0 : id.device + 1;
1326 list_for_each(p, &snd_timer_list) {
1327 timer = list_entry(p, struct snd_timer, device_list);
1328 if (timer->tmr_class > SNDRV_TIMER_CLASS_GLOBAL) {
1329 snd_timer_user_copy_id(&id, timer);
1330 break;
1331 }
1332 if (timer->tmr_device >= id.device) {
1333 snd_timer_user_copy_id(&id, timer);
1334 break;
1335 }
1336 }
1337 if (p == &snd_timer_list)
1338 snd_timer_user_zero_id(&id);
1339 break;
1340 case SNDRV_TIMER_CLASS_CARD:
1341 case SNDRV_TIMER_CLASS_PCM:
1342 if (id.card < 0) {
1343 id.card = 0;
1344 } else {
1345 if (id.card < 0) {
1346 id.card = 0;
1347 } else {
1348 if (id.device < 0) {
1349 id.device = 0;
1350 } else {
1351 if (id.subdevice < 0) {
1352 id.subdevice = 0;
1353 } else {
1354 id.subdevice++;
1355 }
1356 }
1357 }
1358 }
1359 list_for_each(p, &snd_timer_list) {
1360 timer = list_entry(p, struct snd_timer, device_list);
1361 if (timer->tmr_class > id.dev_class) {
1362 snd_timer_user_copy_id(&id, timer);
1363 break;
1364 }
1365 if (timer->tmr_class < id.dev_class)
1366 continue;
1367 if (timer->card->number > id.card) {
1368 snd_timer_user_copy_id(&id, timer);
1369 break;
1370 }
1371 if (timer->card->number < id.card)
1372 continue;
1373 if (timer->tmr_device > id.device) {
1374 snd_timer_user_copy_id(&id, timer);
1375 break;
1376 }
1377 if (timer->tmr_device < id.device)
1378 continue;
1379 if (timer->tmr_subdevice > id.subdevice) {
1380 snd_timer_user_copy_id(&id, timer);
1381 break;
1382 }
1383 if (timer->tmr_subdevice < id.subdevice)
1384 continue;
1385 snd_timer_user_copy_id(&id, timer);
1386 break;
1387 }
1388 if (p == &snd_timer_list)
1389 snd_timer_user_zero_id(&id);
1390 break;
1391 default:
1392 snd_timer_user_zero_id(&id);
1393 }
1394 }
1395 mutex_unlock(®ister_mutex);
1396 if (copy_to_user(_tid, &id, sizeof(*_tid)))
1397 return -EFAULT;
1398 return 0;
1399}
1400
1401static int snd_timer_user_ginfo(struct file *file,
1402 struct snd_timer_ginfo __user *_ginfo)
1403{
1404 struct snd_timer_ginfo *ginfo;
1405 struct snd_timer_id tid;
1406 struct snd_timer *t;
1407 struct list_head *p;
1408 int err = 0;
1409
1410 ginfo = memdup_user(_ginfo, sizeof(*ginfo));
1411 if (IS_ERR(ginfo))
1412 return PTR_ERR(ginfo);
1413
1414 tid = ginfo->tid;
1415 memset(ginfo, 0, sizeof(*ginfo));
1416 ginfo->tid = tid;
1417 mutex_lock(®ister_mutex);
1418 t = snd_timer_find(&tid);
1419 if (t != NULL) {
1420 ginfo->card = t->card ? t->card->number : -1;
1421 if (t->hw.flags & SNDRV_TIMER_HW_SLAVE)
1422 ginfo->flags |= SNDRV_TIMER_FLG_SLAVE;
1423 strlcpy(ginfo->id, t->id, sizeof(ginfo->id));
1424 strlcpy(ginfo->name, t->name, sizeof(ginfo->name));
1425 ginfo->resolution = t->hw.resolution;
1426 if (t->hw.resolution_min > 0) {
1427 ginfo->resolution_min = t->hw.resolution_min;
1428 ginfo->resolution_max = t->hw.resolution_max;
1429 }
1430 list_for_each(p, &t->open_list_head) {
1431 ginfo->clients++;
1432 }
1433 } else {
1434 err = -ENODEV;
1435 }
1436 mutex_unlock(®ister_mutex);
1437 if (err >= 0 && copy_to_user(_ginfo, ginfo, sizeof(*ginfo)))
1438 err = -EFAULT;
1439 kfree(ginfo);
1440 return err;
1441}
1442
1443static int snd_timer_user_gparams(struct file *file,
1444 struct snd_timer_gparams __user *_gparams)
1445{
1446 struct snd_timer_gparams gparams;
1447 struct snd_timer *t;
1448 int err;
1449
1450 if (copy_from_user(&gparams, _gparams, sizeof(gparams)))
1451 return -EFAULT;
1452 mutex_lock(®ister_mutex);
1453 t = snd_timer_find(&gparams.tid);
1454 if (!t) {
1455 err = -ENODEV;
1456 goto _error;
1457 }
1458 if (!list_empty(&t->open_list_head)) {
1459 err = -EBUSY;
1460 goto _error;
1461 }
1462 if (!t->hw.set_period) {
1463 err = -ENOSYS;
1464 goto _error;
1465 }
1466 err = t->hw.set_period(t, gparams.period_num, gparams.period_den);
1467_error:
1468 mutex_unlock(®ister_mutex);
1469 return err;
1470}
1471
1472static int snd_timer_user_gstatus(struct file *file,
1473 struct snd_timer_gstatus __user *_gstatus)
1474{
1475 struct snd_timer_gstatus gstatus;
1476 struct snd_timer_id tid;
1477 struct snd_timer *t;
1478 int err = 0;
1479
1480 if (copy_from_user(&gstatus, _gstatus, sizeof(gstatus)))
1481 return -EFAULT;
1482 tid = gstatus.tid;
1483 memset(&gstatus, 0, sizeof(gstatus));
1484 gstatus.tid = tid;
1485 mutex_lock(®ister_mutex);
1486 t = snd_timer_find(&tid);
1487 if (t != NULL) {
1488 if (t->hw.c_resolution)
1489 gstatus.resolution = t->hw.c_resolution(t);
1490 else
1491 gstatus.resolution = t->hw.resolution;
1492 if (t->hw.precise_resolution) {
1493 t->hw.precise_resolution(t, &gstatus.resolution_num,
1494 &gstatus.resolution_den);
1495 } else {
1496 gstatus.resolution_num = gstatus.resolution;
1497 gstatus.resolution_den = 1000000000uL;
1498 }
1499 } else {
1500 err = -ENODEV;
1501 }
1502 mutex_unlock(®ister_mutex);
1503 if (err >= 0 && copy_to_user(_gstatus, &gstatus, sizeof(gstatus)))
1504 err = -EFAULT;
1505 return err;
1506}
1507
1508static int snd_timer_user_tselect(struct file *file,
1509 struct snd_timer_select __user *_tselect)
1510{
1511 struct snd_timer_user *tu;
1512 struct snd_timer_select tselect;
1513 char str[32];
1514 int err = 0;
1515
1516 tu = file->private_data;
1517 mutex_lock(&tu->tread_sem);
1518 if (tu->timeri) {
1519 snd_timer_close(tu->timeri);
1520 tu->timeri = NULL;
1521 }
1522 if (copy_from_user(&tselect, _tselect, sizeof(tselect))) {
1523 err = -EFAULT;
1524 goto __err;
1525 }
1526 sprintf(str, "application %i", current->pid);
1527 if (tselect.id.dev_class != SNDRV_TIMER_CLASS_SLAVE)
1528 tselect.id.dev_sclass = SNDRV_TIMER_SCLASS_APPLICATION;
1529 err = snd_timer_open(&tu->timeri, str, &tselect.id, current->pid);
1530 if (err < 0)
1531 goto __err;
1532
1533 kfree(tu->queue);
1534 tu->queue = NULL;
1535 kfree(tu->tqueue);
1536 tu->tqueue = NULL;
1537 if (tu->tread) {
1538 tu->tqueue = kmalloc(tu->queue_size * sizeof(struct snd_timer_tread),
1539 GFP_KERNEL);
1540 if (tu->tqueue == NULL)
1541 err = -ENOMEM;
1542 } else {
1543 tu->queue = kmalloc(tu->queue_size * sizeof(struct snd_timer_read),
1544 GFP_KERNEL);
1545 if (tu->queue == NULL)
1546 err = -ENOMEM;
1547 }
1548
1549 if (err < 0) {
1550 snd_timer_close(tu->timeri);
1551 tu->timeri = NULL;
1552 } else {
1553 tu->timeri->flags |= SNDRV_TIMER_IFLG_FAST;
1554 tu->timeri->callback = tu->tread
1555 ? snd_timer_user_tinterrupt : snd_timer_user_interrupt;
1556 tu->timeri->ccallback = snd_timer_user_ccallback;
1557 tu->timeri->callback_data = (void *)tu;
1558 }
1559
1560 __err:
1561 mutex_unlock(&tu->tread_sem);
1562 return err;
1563}
1564
1565static int snd_timer_user_info(struct file *file,
1566 struct snd_timer_info __user *_info)
1567{
1568 struct snd_timer_user *tu;
1569 struct snd_timer_info *info;
1570 struct snd_timer *t;
1571 int err = 0;
1572
1573 tu = file->private_data;
1574 if (!tu->timeri)
1575 return -EBADFD;
1576 t = tu->timeri->timer;
1577 if (!t)
1578 return -EBADFD;
1579
1580 info = kzalloc(sizeof(*info), GFP_KERNEL);
1581 if (! info)
1582 return -ENOMEM;
1583 info->card = t->card ? t->card->number : -1;
1584 if (t->hw.flags & SNDRV_TIMER_HW_SLAVE)
1585 info->flags |= SNDRV_TIMER_FLG_SLAVE;
1586 strlcpy(info->id, t->id, sizeof(info->id));
1587 strlcpy(info->name, t->name, sizeof(info->name));
1588 info->resolution = t->hw.resolution;
1589 if (copy_to_user(_info, info, sizeof(*_info)))
1590 err = -EFAULT;
1591 kfree(info);
1592 return err;
1593}
1594
1595static int snd_timer_user_params(struct file *file,
1596 struct snd_timer_params __user *_params)
1597{
1598 struct snd_timer_user *tu;
1599 struct snd_timer_params params;
1600 struct snd_timer *t;
1601 struct snd_timer_read *tr;
1602 struct snd_timer_tread *ttr;
1603 int err;
1604
1605 tu = file->private_data;
1606 if (!tu->timeri)
1607 return -EBADFD;
1608 t = tu->timeri->timer;
1609 if (!t)
1610 return -EBADFD;
1611 if (copy_from_user(¶ms, _params, sizeof(params)))
1612 return -EFAULT;
1613 if (!(t->hw.flags & SNDRV_TIMER_HW_SLAVE) && params.ticks < 1) {
1614 err = -EINVAL;
1615 goto _end;
1616 }
1617 if (params.queue_size > 0 &&
1618 (params.queue_size < 32 || params.queue_size > 1024)) {
1619 err = -EINVAL;
1620 goto _end;
1621 }
1622 if (params.filter & ~((1<<SNDRV_TIMER_EVENT_RESOLUTION)|
1623 (1<<SNDRV_TIMER_EVENT_TICK)|
1624 (1<<SNDRV_TIMER_EVENT_START)|
1625 (1<<SNDRV_TIMER_EVENT_STOP)|
1626 (1<<SNDRV_TIMER_EVENT_CONTINUE)|
1627 (1<<SNDRV_TIMER_EVENT_PAUSE)|
1628 (1<<SNDRV_TIMER_EVENT_SUSPEND)|
1629 (1<<SNDRV_TIMER_EVENT_RESUME)|
1630 (1<<SNDRV_TIMER_EVENT_MSTART)|
1631 (1<<SNDRV_TIMER_EVENT_MSTOP)|
1632 (1<<SNDRV_TIMER_EVENT_MCONTINUE)|
1633 (1<<SNDRV_TIMER_EVENT_MPAUSE)|
1634 (1<<SNDRV_TIMER_EVENT_MSUSPEND)|
1635 (1<<SNDRV_TIMER_EVENT_MRESUME))) {
1636 err = -EINVAL;
1637 goto _end;
1638 }
1639 snd_timer_stop(tu->timeri);
1640 spin_lock_irq(&t->lock);
1641 tu->timeri->flags &= ~(SNDRV_TIMER_IFLG_AUTO|
1642 SNDRV_TIMER_IFLG_EXCLUSIVE|
1643 SNDRV_TIMER_IFLG_EARLY_EVENT);
1644 if (params.flags & SNDRV_TIMER_PSFLG_AUTO)
1645 tu->timeri->flags |= SNDRV_TIMER_IFLG_AUTO;
1646 if (params.flags & SNDRV_TIMER_PSFLG_EXCLUSIVE)
1647 tu->timeri->flags |= SNDRV_TIMER_IFLG_EXCLUSIVE;
1648 if (params.flags & SNDRV_TIMER_PSFLG_EARLY_EVENT)
1649 tu->timeri->flags |= SNDRV_TIMER_IFLG_EARLY_EVENT;
1650 spin_unlock_irq(&t->lock);
1651 if (params.queue_size > 0 &&
1652 (unsigned int)tu->queue_size != params.queue_size) {
1653 if (tu->tread) {
1654 ttr = kmalloc(params.queue_size * sizeof(*ttr),
1655 GFP_KERNEL);
1656 if (ttr) {
1657 kfree(tu->tqueue);
1658 tu->queue_size = params.queue_size;
1659 tu->tqueue = ttr;
1660 }
1661 } else {
1662 tr = kmalloc(params.queue_size * sizeof(*tr),
1663 GFP_KERNEL);
1664 if (tr) {
1665 kfree(tu->queue);
1666 tu->queue_size = params.queue_size;
1667 tu->queue = tr;
1668 }
1669 }
1670 }
1671 tu->qhead = tu->qtail = tu->qused = 0;
1672 if (tu->timeri->flags & SNDRV_TIMER_IFLG_EARLY_EVENT) {
1673 if (tu->tread) {
1674 struct snd_timer_tread tread;
1675 tread.event = SNDRV_TIMER_EVENT_EARLY;
1676 tread.tstamp.tv_sec = 0;
1677 tread.tstamp.tv_nsec = 0;
1678 tread.val = 0;
1679 snd_timer_user_append_to_tqueue(tu, &tread);
1680 } else {
1681 struct snd_timer_read *r = &tu->queue[0];
1682 r->resolution = 0;
1683 r->ticks = 0;
1684 tu->qused++;
1685 tu->qtail++;
1686 }
1687 }
1688 tu->filter = params.filter;
1689 tu->ticks = params.ticks;
1690 err = 0;
1691 _end:
1692 if (copy_to_user(_params, ¶ms, sizeof(params)))
1693 return -EFAULT;
1694 return err;
1695}
1696
1697static int snd_timer_user_status(struct file *file,
1698 struct snd_timer_status __user *_status)
1699{
1700 struct snd_timer_user *tu;
1701 struct snd_timer_status status;
1702
1703 tu = file->private_data;
1704 if (!tu->timeri)
1705 return -EBADFD;
1706 memset(&status, 0, sizeof(status));
1707 status.tstamp = tu->tstamp;
1708 status.resolution = snd_timer_resolution(tu->timeri);
1709 status.lost = tu->timeri->lost;
1710 status.overrun = tu->overrun;
1711 spin_lock_irq(&tu->qlock);
1712 status.queue = tu->qused;
1713 spin_unlock_irq(&tu->qlock);
1714 if (copy_to_user(_status, &status, sizeof(status)))
1715 return -EFAULT;
1716 return 0;
1717}
1718
1719static int snd_timer_user_start(struct file *file)
1720{
1721 int err;
1722 struct snd_timer_user *tu;
1723
1724 tu = file->private_data;
1725 if (!tu->timeri)
1726 return -EBADFD;
1727 snd_timer_stop(tu->timeri);
1728 tu->timeri->lost = 0;
1729 tu->last_resolution = 0;
1730 return (err = snd_timer_start(tu->timeri, tu->ticks)) < 0 ? err : 0;
1731}
1732
1733static int snd_timer_user_stop(struct file *file)
1734{
1735 int err;
1736 struct snd_timer_user *tu;
1737
1738 tu = file->private_data;
1739 if (!tu->timeri)
1740 return -EBADFD;
1741 return (err = snd_timer_stop(tu->timeri)) < 0 ? err : 0;
1742}
1743
1744static int snd_timer_user_continue(struct file *file)
1745{
1746 int err;
1747 struct snd_timer_user *tu;
1748
1749 tu = file->private_data;
1750 if (!tu->timeri)
1751 return -EBADFD;
1752 tu->timeri->lost = 0;
1753 return (err = snd_timer_continue(tu->timeri)) < 0 ? err : 0;
1754}
1755
1756static int snd_timer_user_pause(struct file *file)
1757{
1758 int err;
1759 struct snd_timer_user *tu;
1760
1761 tu = file->private_data;
1762 if (!tu->timeri)
1763 return -EBADFD;
1764 return (err = snd_timer_pause(tu->timeri)) < 0 ? err : 0;
1765}
1766
1767enum {
1768 SNDRV_TIMER_IOCTL_START_OLD = _IO('T', 0x20),
1769 SNDRV_TIMER_IOCTL_STOP_OLD = _IO('T', 0x21),
1770 SNDRV_TIMER_IOCTL_CONTINUE_OLD = _IO('T', 0x22),
1771 SNDRV_TIMER_IOCTL_PAUSE_OLD = _IO('T', 0x23),
1772};
1773
1774static long snd_timer_user_ioctl(struct file *file, unsigned int cmd,
1775 unsigned long arg)
1776{
1777 struct snd_timer_user *tu;
1778 void __user *argp = (void __user *)arg;
1779 int __user *p = argp;
1780
1781 tu = file->private_data;
1782 switch (cmd) {
1783 case SNDRV_TIMER_IOCTL_PVERSION:
1784 return put_user(SNDRV_TIMER_VERSION, p) ? -EFAULT : 0;
1785 case SNDRV_TIMER_IOCTL_NEXT_DEVICE:
1786 return snd_timer_user_next_device(argp);
1787 case SNDRV_TIMER_IOCTL_TREAD:
1788 {
1789 int xarg;
1790
1791 mutex_lock(&tu->tread_sem);
1792 if (tu->timeri) { /* too late */
1793 mutex_unlock(&tu->tread_sem);
1794 return -EBUSY;
1795 }
1796 if (get_user(xarg, p)) {
1797 mutex_unlock(&tu->tread_sem);
1798 return -EFAULT;
1799 }
1800 tu->tread = xarg ? 1 : 0;
1801 mutex_unlock(&tu->tread_sem);
1802 return 0;
1803 }
1804 case SNDRV_TIMER_IOCTL_GINFO:
1805 return snd_timer_user_ginfo(file, argp);
1806 case SNDRV_TIMER_IOCTL_GPARAMS:
1807 return snd_timer_user_gparams(file, argp);
1808 case SNDRV_TIMER_IOCTL_GSTATUS:
1809 return snd_timer_user_gstatus(file, argp);
1810 case SNDRV_TIMER_IOCTL_SELECT:
1811 return snd_timer_user_tselect(file, argp);
1812 case SNDRV_TIMER_IOCTL_INFO:
1813 return snd_timer_user_info(file, argp);
1814 case SNDRV_TIMER_IOCTL_PARAMS:
1815 return snd_timer_user_params(file, argp);
1816 case SNDRV_TIMER_IOCTL_STATUS:
1817 return snd_timer_user_status(file, argp);
1818 case SNDRV_TIMER_IOCTL_START:
1819 case SNDRV_TIMER_IOCTL_START_OLD:
1820 return snd_timer_user_start(file);
1821 case SNDRV_TIMER_IOCTL_STOP:
1822 case SNDRV_TIMER_IOCTL_STOP_OLD:
1823 return snd_timer_user_stop(file);
1824 case SNDRV_TIMER_IOCTL_CONTINUE:
1825 case SNDRV_TIMER_IOCTL_CONTINUE_OLD:
1826 return snd_timer_user_continue(file);
1827 case SNDRV_TIMER_IOCTL_PAUSE:
1828 case SNDRV_TIMER_IOCTL_PAUSE_OLD:
1829 return snd_timer_user_pause(file);
1830 }
1831 return -ENOTTY;
1832}
1833
1834static int snd_timer_user_fasync(int fd, struct file * file, int on)
1835{
1836 struct snd_timer_user *tu;
1837
1838 tu = file->private_data;
1839 return fasync_helper(fd, file, on, &tu->fasync);
1840}
1841
1842static ssize_t snd_timer_user_read(struct file *file, char __user *buffer,
1843 size_t count, loff_t *offset)
1844{
1845 struct snd_timer_user *tu;
1846 long result = 0, unit;
1847 int err = 0;
1848
1849 tu = file->private_data;
1850 unit = tu->tread ? sizeof(struct snd_timer_tread) : sizeof(struct snd_timer_read);
1851 spin_lock_irq(&tu->qlock);
1852 while ((long)count - result >= unit) {
1853 while (!tu->qused) {
1854 wait_queue_t wait;
1855
1856 if ((file->f_flags & O_NONBLOCK) != 0 || result > 0) {
1857 err = -EAGAIN;
1858 break;
1859 }
1860
1861 set_current_state(TASK_INTERRUPTIBLE);
1862 init_waitqueue_entry(&wait, current);
1863 add_wait_queue(&tu->qchange_sleep, &wait);
1864
1865 spin_unlock_irq(&tu->qlock);
1866 schedule();
1867 spin_lock_irq(&tu->qlock);
1868
1869 remove_wait_queue(&tu->qchange_sleep, &wait);
1870
1871 if (signal_pending(current)) {
1872 err = -ERESTARTSYS;
1873 break;
1874 }
1875 }
1876
1877 spin_unlock_irq(&tu->qlock);
1878 if (err < 0)
1879 goto _error;
1880
1881 if (tu->tread) {
1882 if (copy_to_user(buffer, &tu->tqueue[tu->qhead++],
1883 sizeof(struct snd_timer_tread))) {
1884 err = -EFAULT;
1885 goto _error;
1886 }
1887 } else {
1888 if (copy_to_user(buffer, &tu->queue[tu->qhead++],
1889 sizeof(struct snd_timer_read))) {
1890 err = -EFAULT;
1891 goto _error;
1892 }
1893 }
1894
1895 tu->qhead %= tu->queue_size;
1896
1897 result += unit;
1898 buffer += unit;
1899
1900 spin_lock_irq(&tu->qlock);
1901 tu->qused--;
1902 }
1903 spin_unlock_irq(&tu->qlock);
1904 _error:
1905 return result > 0 ? result : err;
1906}
1907
1908static unsigned int snd_timer_user_poll(struct file *file, poll_table * wait)
1909{
1910 unsigned int mask;
1911 struct snd_timer_user *tu;
1912
1913 tu = file->private_data;
1914
1915 poll_wait(file, &tu->qchange_sleep, wait);
1916
1917 mask = 0;
1918 if (tu->qused)
1919 mask |= POLLIN | POLLRDNORM;
1920
1921 return mask;
1922}
1923
1924#ifdef CONFIG_COMPAT
1925#include "timer_compat.c"
1926#else
1927#define snd_timer_user_ioctl_compat NULL
1928#endif
1929
1930static const struct file_operations snd_timer_f_ops =
1931{
1932 .owner = THIS_MODULE,
1933 .read = snd_timer_user_read,
1934 .open = snd_timer_user_open,
1935 .release = snd_timer_user_release,
1936 .llseek = no_llseek,
1937 .poll = snd_timer_user_poll,
1938 .unlocked_ioctl = snd_timer_user_ioctl,
1939 .compat_ioctl = snd_timer_user_ioctl_compat,
1940 .fasync = snd_timer_user_fasync,
1941};
1942
1943/*
1944 * ENTRY functions
1945 */
1946
1947static int __init alsa_timer_init(void)
1948{
1949 int err;
1950
1951#ifdef SNDRV_OSS_INFO_DEV_TIMERS
1952 snd_oss_info_register(SNDRV_OSS_INFO_DEV_TIMERS, SNDRV_CARDS - 1,
1953 "system timer");
1954#endif
1955
1956 if ((err = snd_timer_register_system()) < 0)
1957 snd_printk(KERN_ERR "unable to register system timer (%i)\n",
1958 err);
1959 if ((err = snd_register_device(SNDRV_DEVICE_TYPE_TIMER, NULL, 0,
1960 &snd_timer_f_ops, NULL, "timer")) < 0)
1961 snd_printk(KERN_ERR "unable to register timer device (%i)\n",
1962 err);
1963 snd_timer_proc_init();
1964 return 0;
1965}
1966
1967static void __exit alsa_timer_exit(void)
1968{
1969 struct list_head *p, *n;
1970
1971 snd_unregister_device(SNDRV_DEVICE_TYPE_TIMER, NULL, 0);
1972 /* unregister the system timer */
1973 list_for_each_safe(p, n, &snd_timer_list) {
1974 struct snd_timer *timer = list_entry(p, struct snd_timer, device_list);
1975 snd_timer_free(timer);
1976 }
1977 snd_timer_proc_done();
1978#ifdef SNDRV_OSS_INFO_DEV_TIMERS
1979 snd_oss_info_unregister(SNDRV_OSS_INFO_DEV_TIMERS, SNDRV_CARDS - 1);
1980#endif
1981}
1982
1983module_init(alsa_timer_init)
1984module_exit(alsa_timer_exit)
1985
1986EXPORT_SYMBOL(snd_timer_open);
1987EXPORT_SYMBOL(snd_timer_close);
1988EXPORT_SYMBOL(snd_timer_resolution);
1989EXPORT_SYMBOL(snd_timer_start);
1990EXPORT_SYMBOL(snd_timer_stop);
1991EXPORT_SYMBOL(snd_timer_continue);
1992EXPORT_SYMBOL(snd_timer_pause);
1993EXPORT_SYMBOL(snd_timer_new);
1994EXPORT_SYMBOL(snd_timer_notify);
1995EXPORT_SYMBOL(snd_timer_global_new);
1996EXPORT_SYMBOL(snd_timer_global_free);
1997EXPORT_SYMBOL(snd_timer_global_register);
1998EXPORT_SYMBOL(snd_timer_interrupt);