1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * Routines for driver control interface
4 * Copyright (c) by Jaroslav Kysela <perex@perex.cz>
7 #include <linux/threads.h>
8 #include <linux/interrupt.h>
9 #include <linux/module.h>
10 #include <linux/slab.h>
11 #include <linux/vmalloc.h>
12 #include <linux/time.h>
14 #include <linux/sched/signal.h>
15 #include <sound/core.h>
16 #include <sound/minors.h>
17 #include <sound/info.h>
18 #include <sound/control.h>
20 /* max number of user-defined controls */
21 #define MAX_USER_CONTROLS 32
22 #define MAX_CONTROL_COUNT 1028
24 struct snd_kctl_ioctl
{
25 struct list_head list
; /* list of all ioctls */
26 snd_kctl_ioctl_func_t fioctl
;
29 static DECLARE_RWSEM(snd_ioctl_rwsem
);
30 static LIST_HEAD(snd_control_ioctls
);
32 static LIST_HEAD(snd_control_compat_ioctls
);
35 static int snd_ctl_open(struct inode
*inode
, struct file
*file
)
38 struct snd_card
*card
;
39 struct snd_ctl_file
*ctl
;
42 err
= stream_open(inode
, file
);
46 card
= snd_lookup_minor_data(iminor(inode
), SNDRV_DEVICE_TYPE_CONTROL
);
51 err
= snd_card_file_add(card
, file
);
56 if (!try_module_get(card
->module
)) {
60 ctl
= kzalloc(sizeof(*ctl
), GFP_KERNEL
);
65 INIT_LIST_HEAD(&ctl
->events
);
66 init_waitqueue_head(&ctl
->change_sleep
);
67 spin_lock_init(&ctl
->read_lock
);
69 for (i
= 0; i
< SND_CTL_SUBDEV_ITEMS
; i
++)
70 ctl
->preferred_subdevice
[i
] = -1;
71 ctl
->pid
= get_pid(task_pid(current
));
72 file
->private_data
= ctl
;
73 write_lock_irqsave(&card
->ctl_files_rwlock
, flags
);
74 list_add_tail(&ctl
->list
, &card
->ctl_files
);
75 write_unlock_irqrestore(&card
->ctl_files_rwlock
, flags
);
80 module_put(card
->module
);
82 snd_card_file_remove(card
, file
);
89 static void snd_ctl_empty_read_queue(struct snd_ctl_file
* ctl
)
92 struct snd_kctl_event
*cread
;
94 spin_lock_irqsave(&ctl
->read_lock
, flags
);
95 while (!list_empty(&ctl
->events
)) {
96 cread
= snd_kctl_event(ctl
->events
.next
);
97 list_del(&cread
->list
);
100 spin_unlock_irqrestore(&ctl
->read_lock
, flags
);
103 static int snd_ctl_release(struct inode
*inode
, struct file
*file
)
106 struct snd_card
*card
;
107 struct snd_ctl_file
*ctl
;
108 struct snd_kcontrol
*control
;
111 ctl
= file
->private_data
;
112 file
->private_data
= NULL
;
114 write_lock_irqsave(&card
->ctl_files_rwlock
, flags
);
115 list_del(&ctl
->list
);
116 write_unlock_irqrestore(&card
->ctl_files_rwlock
, flags
);
117 down_write(&card
->controls_rwsem
);
118 list_for_each_entry(control
, &card
->controls
, list
)
119 for (idx
= 0; idx
< control
->count
; idx
++)
120 if (control
->vd
[idx
].owner
== ctl
)
121 control
->vd
[idx
].owner
= NULL
;
122 up_write(&card
->controls_rwsem
);
123 snd_ctl_empty_read_queue(ctl
);
126 module_put(card
->module
);
127 snd_card_file_remove(card
, file
);
132 * snd_ctl_notify - Send notification to user-space for a control change
133 * @card: the card to send notification
134 * @mask: the event mask, SNDRV_CTL_EVENT_*
135 * @id: the ctl element id to send notification
137 * This function adds an event record with the given id and mask, appends
138 * to the list and wakes up the user-space for notification. This can be
139 * called in the atomic context.
141 void snd_ctl_notify(struct snd_card
*card
, unsigned int mask
,
142 struct snd_ctl_elem_id
*id
)
145 struct snd_ctl_file
*ctl
;
146 struct snd_kctl_event
*ev
;
148 if (snd_BUG_ON(!card
|| !id
))
152 read_lock(&card
->ctl_files_rwlock
);
153 #if IS_ENABLED(CONFIG_SND_MIXER_OSS)
154 card
->mixer_oss_change_count
++;
156 list_for_each_entry(ctl
, &card
->ctl_files
, list
) {
157 if (!ctl
->subscribed
)
159 spin_lock_irqsave(&ctl
->read_lock
, flags
);
160 list_for_each_entry(ev
, &ctl
->events
, list
) {
161 if (ev
->id
.numid
== id
->numid
) {
166 ev
= kzalloc(sizeof(*ev
), GFP_ATOMIC
);
170 list_add_tail(&ev
->list
, &ctl
->events
);
172 dev_err(card
->dev
, "No memory available to allocate event\n");
175 wake_up(&ctl
->change_sleep
);
176 spin_unlock_irqrestore(&ctl
->read_lock
, flags
);
177 kill_fasync(&ctl
->fasync
, SIGIO
, POLL_IN
);
179 read_unlock(&card
->ctl_files_rwlock
);
181 EXPORT_SYMBOL(snd_ctl_notify
);
184 * snd_ctl_new - create a new control instance with some elements
185 * @kctl: the pointer to store new control instance
186 * @count: the number of elements in this control
187 * @access: the default access flags for elements in this control
188 * @file: given when locking these elements
190 * Allocates a memory object for a new control instance. The instance has
191 * elements as many as the given number (@count). Each element has given
192 * access permissions (@access). Each element is locked when @file is given.
194 * Return: 0 on success, error code on failure
196 static int snd_ctl_new(struct snd_kcontrol
**kctl
, unsigned int count
,
197 unsigned int access
, struct snd_ctl_file
*file
)
201 if (count
== 0 || count
> MAX_CONTROL_COUNT
)
204 *kctl
= kzalloc(struct_size(*kctl
, vd
, count
), GFP_KERNEL
);
208 for (idx
= 0; idx
< count
; idx
++) {
209 (*kctl
)->vd
[idx
].access
= access
;
210 (*kctl
)->vd
[idx
].owner
= file
;
212 (*kctl
)->count
= count
;
218 * snd_ctl_new1 - create a control instance from the template
219 * @ncontrol: the initialization record
220 * @private_data: the private data to set
222 * Allocates a new struct snd_kcontrol instance and initialize from the given
223 * template. When the access field of ncontrol is 0, it's assumed as
224 * READWRITE access. When the count field is 0, it's assumes as one.
226 * Return: The pointer of the newly generated instance, or %NULL on failure.
228 struct snd_kcontrol
*snd_ctl_new1(const struct snd_kcontrol_new
*ncontrol
,
231 struct snd_kcontrol
*kctl
;
236 if (snd_BUG_ON(!ncontrol
|| !ncontrol
->info
))
239 count
= ncontrol
->count
;
243 access
= ncontrol
->access
;
245 access
= SNDRV_CTL_ELEM_ACCESS_READWRITE
;
246 access
&= (SNDRV_CTL_ELEM_ACCESS_READWRITE
|
247 SNDRV_CTL_ELEM_ACCESS_VOLATILE
|
248 SNDRV_CTL_ELEM_ACCESS_INACTIVE
|
249 SNDRV_CTL_ELEM_ACCESS_TLV_READWRITE
|
250 SNDRV_CTL_ELEM_ACCESS_TLV_COMMAND
|
251 SNDRV_CTL_ELEM_ACCESS_TLV_CALLBACK
);
253 err
= snd_ctl_new(&kctl
, count
, access
, NULL
);
257 /* The 'numid' member is decided when calling snd_ctl_add(). */
258 kctl
->id
.iface
= ncontrol
->iface
;
259 kctl
->id
.device
= ncontrol
->device
;
260 kctl
->id
.subdevice
= ncontrol
->subdevice
;
261 if (ncontrol
->name
) {
262 strlcpy(kctl
->id
.name
, ncontrol
->name
, sizeof(kctl
->id
.name
));
263 if (strcmp(ncontrol
->name
, kctl
->id
.name
) != 0)
264 pr_warn("ALSA: Control name '%s' truncated to '%s'\n",
265 ncontrol
->name
, kctl
->id
.name
);
267 kctl
->id
.index
= ncontrol
->index
;
269 kctl
->info
= ncontrol
->info
;
270 kctl
->get
= ncontrol
->get
;
271 kctl
->put
= ncontrol
->put
;
272 kctl
->tlv
.p
= ncontrol
->tlv
.p
;
274 kctl
->private_value
= ncontrol
->private_value
;
275 kctl
->private_data
= private_data
;
279 EXPORT_SYMBOL(snd_ctl_new1
);
282 * snd_ctl_free_one - release the control instance
283 * @kcontrol: the control instance
285 * Releases the control instance created via snd_ctl_new()
287 * Don't call this after the control was added to the card.
289 void snd_ctl_free_one(struct snd_kcontrol
*kcontrol
)
292 if (kcontrol
->private_free
)
293 kcontrol
->private_free(kcontrol
);
297 EXPORT_SYMBOL(snd_ctl_free_one
);
299 static bool snd_ctl_remove_numid_conflict(struct snd_card
*card
,
302 struct snd_kcontrol
*kctl
;
304 /* Make sure that the ids assigned to the control do not wrap around */
305 if (card
->last_numid
>= UINT_MAX
- count
)
306 card
->last_numid
= 0;
308 list_for_each_entry(kctl
, &card
->controls
, list
) {
309 if (kctl
->id
.numid
< card
->last_numid
+ 1 + count
&&
310 kctl
->id
.numid
+ kctl
->count
> card
->last_numid
+ 1) {
311 card
->last_numid
= kctl
->id
.numid
+ kctl
->count
- 1;
318 static int snd_ctl_find_hole(struct snd_card
*card
, unsigned int count
)
320 unsigned int iter
= 100000;
322 while (snd_ctl_remove_numid_conflict(card
, count
)) {
324 /* this situation is very unlikely */
325 dev_err(card
->dev
, "unable to allocate new control numid\n");
332 enum snd_ctl_add_mode
{
333 CTL_ADD_EXCLUSIVE
, CTL_REPLACE
, CTL_ADD_ON_REPLACE
,
336 /* add/replace a new kcontrol object; call with card->controls_rwsem locked */
337 static int __snd_ctl_add_replace(struct snd_card
*card
,
338 struct snd_kcontrol
*kcontrol
,
339 enum snd_ctl_add_mode mode
)
341 struct snd_ctl_elem_id id
;
344 struct snd_kcontrol
*old
;
348 if (id
.index
> UINT_MAX
- kcontrol
->count
)
351 old
= snd_ctl_find_id(card
, &id
);
353 if (mode
== CTL_REPLACE
)
356 if (mode
== CTL_ADD_EXCLUSIVE
) {
358 "control %i:%i:%i:%s:%i is already present\n",
359 id
.iface
, id
.device
, id
.subdevice
, id
.name
,
364 err
= snd_ctl_remove(card
, old
);
369 if (snd_ctl_find_hole(card
, kcontrol
->count
) < 0)
372 list_add_tail(&kcontrol
->list
, &card
->controls
);
373 card
->controls_count
+= kcontrol
->count
;
374 kcontrol
->id
.numid
= card
->last_numid
+ 1;
375 card
->last_numid
+= kcontrol
->count
;
378 count
= kcontrol
->count
;
379 for (idx
= 0; idx
< count
; idx
++, id
.index
++, id
.numid
++)
380 snd_ctl_notify(card
, SNDRV_CTL_EVENT_MASK_ADD
, &id
);
385 static int snd_ctl_add_replace(struct snd_card
*card
,
386 struct snd_kcontrol
*kcontrol
,
387 enum snd_ctl_add_mode mode
)
393 if (snd_BUG_ON(!card
|| !kcontrol
->info
))
396 down_write(&card
->controls_rwsem
);
397 err
= __snd_ctl_add_replace(card
, kcontrol
, mode
);
398 up_write(&card
->controls_rwsem
);
404 snd_ctl_free_one(kcontrol
);
409 * snd_ctl_add - add the control instance to the card
410 * @card: the card instance
411 * @kcontrol: the control instance to add
413 * Adds the control instance created via snd_ctl_new() or
414 * snd_ctl_new1() to the given card. Assigns also an unique
415 * numid used for fast search.
417 * It frees automatically the control which cannot be added.
419 * Return: Zero if successful, or a negative error code on failure.
422 int snd_ctl_add(struct snd_card
*card
, struct snd_kcontrol
*kcontrol
)
424 return snd_ctl_add_replace(card
, kcontrol
, CTL_ADD_EXCLUSIVE
);
426 EXPORT_SYMBOL(snd_ctl_add
);
429 * snd_ctl_replace - replace the control instance of the card
430 * @card: the card instance
431 * @kcontrol: the control instance to replace
432 * @add_on_replace: add the control if not already added
434 * Replaces the given control. If the given control does not exist
435 * and the add_on_replace flag is set, the control is added. If the
436 * control exists, it is destroyed first.
438 * It frees automatically the control which cannot be added or replaced.
440 * Return: Zero if successful, or a negative error code on failure.
442 int snd_ctl_replace(struct snd_card
*card
, struct snd_kcontrol
*kcontrol
,
445 return snd_ctl_add_replace(card
, kcontrol
,
446 add_on_replace
? CTL_ADD_ON_REPLACE
: CTL_REPLACE
);
448 EXPORT_SYMBOL(snd_ctl_replace
);
451 * snd_ctl_remove - remove the control from the card and release it
452 * @card: the card instance
453 * @kcontrol: the control instance to remove
455 * Removes the control from the card and then releases the instance.
456 * You don't need to call snd_ctl_free_one(). You must be in
457 * the write lock - down_write(&card->controls_rwsem).
459 * Return: 0 if successful, or a negative error code on failure.
461 int snd_ctl_remove(struct snd_card
*card
, struct snd_kcontrol
*kcontrol
)
463 struct snd_ctl_elem_id id
;
466 if (snd_BUG_ON(!card
|| !kcontrol
))
468 list_del(&kcontrol
->list
);
469 card
->controls_count
-= kcontrol
->count
;
471 for (idx
= 0; idx
< kcontrol
->count
; idx
++, id
.index
++, id
.numid
++)
472 snd_ctl_notify(card
, SNDRV_CTL_EVENT_MASK_REMOVE
, &id
);
473 snd_ctl_free_one(kcontrol
);
476 EXPORT_SYMBOL(snd_ctl_remove
);
479 * snd_ctl_remove_id - remove the control of the given id and release it
480 * @card: the card instance
481 * @id: the control id to remove
483 * Finds the control instance with the given id, removes it from the
484 * card list and releases it.
486 * Return: 0 if successful, or a negative error code on failure.
488 int snd_ctl_remove_id(struct snd_card
*card
, struct snd_ctl_elem_id
*id
)
490 struct snd_kcontrol
*kctl
;
493 down_write(&card
->controls_rwsem
);
494 kctl
= snd_ctl_find_id(card
, id
);
496 up_write(&card
->controls_rwsem
);
499 ret
= snd_ctl_remove(card
, kctl
);
500 up_write(&card
->controls_rwsem
);
503 EXPORT_SYMBOL(snd_ctl_remove_id
);
506 * snd_ctl_remove_user_ctl - remove and release the unlocked user control
507 * @file: active control handle
508 * @id: the control id to remove
510 * Finds the control instance with the given id, removes it from the
511 * card list and releases it.
513 * Return: 0 if successful, or a negative error code on failure.
515 static int snd_ctl_remove_user_ctl(struct snd_ctl_file
* file
,
516 struct snd_ctl_elem_id
*id
)
518 struct snd_card
*card
= file
->card
;
519 struct snd_kcontrol
*kctl
;
522 down_write(&card
->controls_rwsem
);
523 kctl
= snd_ctl_find_id(card
, id
);
528 if (!(kctl
->vd
[0].access
& SNDRV_CTL_ELEM_ACCESS_USER
)) {
532 for (idx
= 0; idx
< kctl
->count
; idx
++)
533 if (kctl
->vd
[idx
].owner
!= NULL
&& kctl
->vd
[idx
].owner
!= file
) {
537 ret
= snd_ctl_remove(card
, kctl
);
540 card
->user_ctl_count
--;
542 up_write(&card
->controls_rwsem
);
547 * snd_ctl_activate_id - activate/inactivate the control of the given id
548 * @card: the card instance
549 * @id: the control id to activate/inactivate
550 * @active: non-zero to activate
552 * Finds the control instance with the given id, and activate or
553 * inactivate the control together with notification, if changed.
554 * The given ID data is filled with full information.
556 * Return: 0 if unchanged, 1 if changed, or a negative error code on failure.
558 int snd_ctl_activate_id(struct snd_card
*card
, struct snd_ctl_elem_id
*id
,
561 struct snd_kcontrol
*kctl
;
562 struct snd_kcontrol_volatile
*vd
;
563 unsigned int index_offset
;
566 down_write(&card
->controls_rwsem
);
567 kctl
= snd_ctl_find_id(card
, id
);
572 index_offset
= snd_ctl_get_ioff(kctl
, id
);
573 vd
= &kctl
->vd
[index_offset
];
576 if (!(vd
->access
& SNDRV_CTL_ELEM_ACCESS_INACTIVE
))
578 vd
->access
&= ~SNDRV_CTL_ELEM_ACCESS_INACTIVE
;
580 if (vd
->access
& SNDRV_CTL_ELEM_ACCESS_INACTIVE
)
582 vd
->access
|= SNDRV_CTL_ELEM_ACCESS_INACTIVE
;
584 snd_ctl_build_ioff(id
, kctl
, index_offset
);
587 up_write(&card
->controls_rwsem
);
589 snd_ctl_notify(card
, SNDRV_CTL_EVENT_MASK_INFO
, id
);
592 EXPORT_SYMBOL_GPL(snd_ctl_activate_id
);
595 * snd_ctl_rename_id - replace the id of a control on the card
596 * @card: the card instance
597 * @src_id: the old id
598 * @dst_id: the new id
600 * Finds the control with the old id from the card, and replaces the
601 * id with the new one.
603 * Return: Zero if successful, or a negative error code on failure.
605 int snd_ctl_rename_id(struct snd_card
*card
, struct snd_ctl_elem_id
*src_id
,
606 struct snd_ctl_elem_id
*dst_id
)
608 struct snd_kcontrol
*kctl
;
610 down_write(&card
->controls_rwsem
);
611 kctl
= snd_ctl_find_id(card
, src_id
);
613 up_write(&card
->controls_rwsem
);
617 kctl
->id
.numid
= card
->last_numid
+ 1;
618 card
->last_numid
+= kctl
->count
;
619 up_write(&card
->controls_rwsem
);
622 EXPORT_SYMBOL(snd_ctl_rename_id
);
625 * snd_ctl_find_numid - find the control instance with the given number-id
626 * @card: the card instance
627 * @numid: the number-id to search
629 * Finds the control instance with the given number-id from the card.
631 * The caller must down card->controls_rwsem before calling this function
632 * (if the race condition can happen).
634 * Return: The pointer of the instance if found, or %NULL if not.
637 struct snd_kcontrol
*snd_ctl_find_numid(struct snd_card
*card
, unsigned int numid
)
639 struct snd_kcontrol
*kctl
;
641 if (snd_BUG_ON(!card
|| !numid
))
643 list_for_each_entry(kctl
, &card
->controls
, list
) {
644 if (kctl
->id
.numid
<= numid
&& kctl
->id
.numid
+ kctl
->count
> numid
)
649 EXPORT_SYMBOL(snd_ctl_find_numid
);
652 * snd_ctl_find_id - find the control instance with the given id
653 * @card: the card instance
654 * @id: the id to search
656 * Finds the control instance with the given id from the card.
658 * The caller must down card->controls_rwsem before calling this function
659 * (if the race condition can happen).
661 * Return: The pointer of the instance if found, or %NULL if not.
664 struct snd_kcontrol
*snd_ctl_find_id(struct snd_card
*card
,
665 struct snd_ctl_elem_id
*id
)
667 struct snd_kcontrol
*kctl
;
669 if (snd_BUG_ON(!card
|| !id
))
672 return snd_ctl_find_numid(card
, id
->numid
);
673 list_for_each_entry(kctl
, &card
->controls
, list
) {
674 if (kctl
->id
.iface
!= id
->iface
)
676 if (kctl
->id
.device
!= id
->device
)
678 if (kctl
->id
.subdevice
!= id
->subdevice
)
680 if (strncmp(kctl
->id
.name
, id
->name
, sizeof(kctl
->id
.name
)))
682 if (kctl
->id
.index
> id
->index
)
684 if (kctl
->id
.index
+ kctl
->count
<= id
->index
)
690 EXPORT_SYMBOL(snd_ctl_find_id
);
692 static int snd_ctl_card_info(struct snd_card
*card
, struct snd_ctl_file
* ctl
,
693 unsigned int cmd
, void __user
*arg
)
695 struct snd_ctl_card_info
*info
;
697 info
= kzalloc(sizeof(*info
), GFP_KERNEL
);
700 down_read(&snd_ioctl_rwsem
);
701 info
->card
= card
->number
;
702 strlcpy(info
->id
, card
->id
, sizeof(info
->id
));
703 strlcpy(info
->driver
, card
->driver
, sizeof(info
->driver
));
704 strlcpy(info
->name
, card
->shortname
, sizeof(info
->name
));
705 strlcpy(info
->longname
, card
->longname
, sizeof(info
->longname
));
706 strlcpy(info
->mixername
, card
->mixername
, sizeof(info
->mixername
));
707 strlcpy(info
->components
, card
->components
, sizeof(info
->components
));
708 up_read(&snd_ioctl_rwsem
);
709 if (copy_to_user(arg
, info
, sizeof(struct snd_ctl_card_info
))) {
717 static int snd_ctl_elem_list(struct snd_card
*card
,
718 struct snd_ctl_elem_list __user
*_list
)
720 struct snd_ctl_elem_list list
;
721 struct snd_kcontrol
*kctl
;
722 struct snd_ctl_elem_id id
;
723 unsigned int offset
, space
, jidx
;
726 if (copy_from_user(&list
, _list
, sizeof(list
)))
728 offset
= list
.offset
;
731 down_read(&card
->controls_rwsem
);
732 list
.count
= card
->controls_count
;
735 list_for_each_entry(kctl
, &card
->controls
, list
) {
736 if (offset
>= kctl
->count
) {
737 offset
-= kctl
->count
;
740 for (jidx
= offset
; jidx
< kctl
->count
; jidx
++) {
741 snd_ctl_build_ioff(&id
, kctl
, jidx
);
742 if (copy_to_user(list
.pids
+ list
.used
, &id
,
755 up_read(&card
->controls_rwsem
);
756 if (!err
&& copy_to_user(_list
, &list
, sizeof(list
)))
761 static bool validate_element_member_dimension(struct snd_ctl_elem_info
*info
)
763 unsigned int members
;
766 if (info
->dimen
.d
[0] == 0)
770 for (i
= 0; i
< ARRAY_SIZE(info
->dimen
.d
); ++i
) {
771 if (info
->dimen
.d
[i
] == 0)
773 members
*= info
->dimen
.d
[i
];
776 * info->count should be validated in advance, to guarantee
777 * calculation soundness.
779 if (members
> info
->count
)
783 for (++i
; i
< ARRAY_SIZE(info
->dimen
.d
); ++i
) {
784 if (info
->dimen
.d
[i
] > 0)
788 return members
== info
->count
;
791 static int snd_ctl_elem_info(struct snd_ctl_file
*ctl
,
792 struct snd_ctl_elem_info
*info
)
794 struct snd_card
*card
= ctl
->card
;
795 struct snd_kcontrol
*kctl
;
796 struct snd_kcontrol_volatile
*vd
;
797 unsigned int index_offset
;
800 down_read(&card
->controls_rwsem
);
801 kctl
= snd_ctl_find_id(card
, &info
->id
);
803 up_read(&card
->controls_rwsem
);
806 #ifdef CONFIG_SND_DEBUG
809 result
= kctl
->info(kctl
, info
);
811 snd_BUG_ON(info
->access
);
812 index_offset
= snd_ctl_get_ioff(kctl
, &info
->id
);
813 vd
= &kctl
->vd
[index_offset
];
814 snd_ctl_build_ioff(&info
->id
, kctl
, index_offset
);
815 info
->access
= vd
->access
;
817 info
->access
|= SNDRV_CTL_ELEM_ACCESS_LOCK
;
818 if (vd
->owner
== ctl
)
819 info
->access
|= SNDRV_CTL_ELEM_ACCESS_OWNER
;
820 info
->owner
= pid_vnr(vd
->owner
->pid
);
825 up_read(&card
->controls_rwsem
);
829 static int snd_ctl_elem_info_user(struct snd_ctl_file
*ctl
,
830 struct snd_ctl_elem_info __user
*_info
)
832 struct snd_ctl_elem_info info
;
835 if (copy_from_user(&info
, _info
, sizeof(info
)))
837 result
= snd_power_wait(ctl
->card
, SNDRV_CTL_POWER_D0
);
840 result
= snd_ctl_elem_info(ctl
, &info
);
843 if (copy_to_user(_info
, &info
, sizeof(info
)))
848 static int snd_ctl_elem_read(struct snd_card
*card
,
849 struct snd_ctl_elem_value
*control
)
851 struct snd_kcontrol
*kctl
;
852 struct snd_kcontrol_volatile
*vd
;
853 unsigned int index_offset
;
855 kctl
= snd_ctl_find_id(card
, &control
->id
);
859 index_offset
= snd_ctl_get_ioff(kctl
, &control
->id
);
860 vd
= &kctl
->vd
[index_offset
];
861 if (!(vd
->access
& SNDRV_CTL_ELEM_ACCESS_READ
) || kctl
->get
== NULL
)
864 snd_ctl_build_ioff(&control
->id
, kctl
, index_offset
);
865 return kctl
->get(kctl
, control
);
868 static int snd_ctl_elem_read_user(struct snd_card
*card
,
869 struct snd_ctl_elem_value __user
*_control
)
871 struct snd_ctl_elem_value
*control
;
874 control
= memdup_user(_control
, sizeof(*control
));
876 return PTR_ERR(control
);
878 result
= snd_power_wait(card
, SNDRV_CTL_POWER_D0
);
882 down_read(&card
->controls_rwsem
);
883 result
= snd_ctl_elem_read(card
, control
);
884 up_read(&card
->controls_rwsem
);
888 if (copy_to_user(_control
, control
, sizeof(*control
)))
895 static int snd_ctl_elem_write(struct snd_card
*card
, struct snd_ctl_file
*file
,
896 struct snd_ctl_elem_value
*control
)
898 struct snd_kcontrol
*kctl
;
899 struct snd_kcontrol_volatile
*vd
;
900 unsigned int index_offset
;
903 kctl
= snd_ctl_find_id(card
, &control
->id
);
907 index_offset
= snd_ctl_get_ioff(kctl
, &control
->id
);
908 vd
= &kctl
->vd
[index_offset
];
909 if (!(vd
->access
& SNDRV_CTL_ELEM_ACCESS_WRITE
) || kctl
->put
== NULL
||
910 (file
&& vd
->owner
&& vd
->owner
!= file
)) {
914 snd_ctl_build_ioff(&control
->id
, kctl
, index_offset
);
915 result
= kctl
->put(kctl
, control
);
920 struct snd_ctl_elem_id id
= control
->id
;
921 snd_ctl_notify(card
, SNDRV_CTL_EVENT_MASK_VALUE
, &id
);
927 static int snd_ctl_elem_write_user(struct snd_ctl_file
*file
,
928 struct snd_ctl_elem_value __user
*_control
)
930 struct snd_ctl_elem_value
*control
;
931 struct snd_card
*card
;
934 control
= memdup_user(_control
, sizeof(*control
));
936 return PTR_ERR(control
);
939 result
= snd_power_wait(card
, SNDRV_CTL_POWER_D0
);
943 down_write(&card
->controls_rwsem
);
944 result
= snd_ctl_elem_write(card
, file
, control
);
945 up_write(&card
->controls_rwsem
);
949 if (copy_to_user(_control
, control
, sizeof(*control
)))
956 static int snd_ctl_elem_lock(struct snd_ctl_file
*file
,
957 struct snd_ctl_elem_id __user
*_id
)
959 struct snd_card
*card
= file
->card
;
960 struct snd_ctl_elem_id id
;
961 struct snd_kcontrol
*kctl
;
962 struct snd_kcontrol_volatile
*vd
;
965 if (copy_from_user(&id
, _id
, sizeof(id
)))
967 down_write(&card
->controls_rwsem
);
968 kctl
= snd_ctl_find_id(card
, &id
);
972 vd
= &kctl
->vd
[snd_ctl_get_ioff(kctl
, &id
)];
973 if (vd
->owner
!= NULL
)
980 up_write(&card
->controls_rwsem
);
984 static int snd_ctl_elem_unlock(struct snd_ctl_file
*file
,
985 struct snd_ctl_elem_id __user
*_id
)
987 struct snd_card
*card
= file
->card
;
988 struct snd_ctl_elem_id id
;
989 struct snd_kcontrol
*kctl
;
990 struct snd_kcontrol_volatile
*vd
;
993 if (copy_from_user(&id
, _id
, sizeof(id
)))
995 down_write(&card
->controls_rwsem
);
996 kctl
= snd_ctl_find_id(card
, &id
);
1000 vd
= &kctl
->vd
[snd_ctl_get_ioff(kctl
, &id
)];
1001 if (vd
->owner
== NULL
)
1003 else if (vd
->owner
!= file
)
1010 up_write(&card
->controls_rwsem
);
1014 struct user_element
{
1015 struct snd_ctl_elem_info info
;
1016 struct snd_card
*card
;
1017 char *elem_data
; /* element data */
1018 unsigned long elem_data_size
; /* size of element data in bytes */
1019 void *tlv_data
; /* TLV data */
1020 unsigned long tlv_data_size
; /* TLV data size */
1021 void *priv_data
; /* private data (like strings for enumerated type) */
1024 static int snd_ctl_elem_user_info(struct snd_kcontrol
*kcontrol
,
1025 struct snd_ctl_elem_info
*uinfo
)
1027 struct user_element
*ue
= kcontrol
->private_data
;
1028 unsigned int offset
;
1030 offset
= snd_ctl_get_ioff(kcontrol
, &uinfo
->id
);
1032 snd_ctl_build_ioff(&uinfo
->id
, kcontrol
, offset
);
1037 static int snd_ctl_elem_user_enum_info(struct snd_kcontrol
*kcontrol
,
1038 struct snd_ctl_elem_info
*uinfo
)
1040 struct user_element
*ue
= kcontrol
->private_data
;
1043 unsigned int offset
;
1045 item
= uinfo
->value
.enumerated
.item
;
1047 offset
= snd_ctl_get_ioff(kcontrol
, &uinfo
->id
);
1049 snd_ctl_build_ioff(&uinfo
->id
, kcontrol
, offset
);
1051 item
= min(item
, uinfo
->value
.enumerated
.items
- 1);
1052 uinfo
->value
.enumerated
.item
= item
;
1054 names
= ue
->priv_data
;
1055 for (; item
> 0; --item
)
1056 names
+= strlen(names
) + 1;
1057 strcpy(uinfo
->value
.enumerated
.name
, names
);
1062 static int snd_ctl_elem_user_get(struct snd_kcontrol
*kcontrol
,
1063 struct snd_ctl_elem_value
*ucontrol
)
1065 struct user_element
*ue
= kcontrol
->private_data
;
1066 unsigned int size
= ue
->elem_data_size
;
1067 char *src
= ue
->elem_data
+
1068 snd_ctl_get_ioff(kcontrol
, &ucontrol
->id
) * size
;
1070 memcpy(&ucontrol
->value
, src
, size
);
1074 static int snd_ctl_elem_user_put(struct snd_kcontrol
*kcontrol
,
1075 struct snd_ctl_elem_value
*ucontrol
)
1078 struct user_element
*ue
= kcontrol
->private_data
;
1079 unsigned int size
= ue
->elem_data_size
;
1080 char *dst
= ue
->elem_data
+
1081 snd_ctl_get_ioff(kcontrol
, &ucontrol
->id
) * size
;
1083 change
= memcmp(&ucontrol
->value
, dst
, size
) != 0;
1085 memcpy(dst
, &ucontrol
->value
, size
);
1089 static int replace_user_tlv(struct snd_kcontrol
*kctl
, unsigned int __user
*buf
,
1092 struct user_element
*ue
= kctl
->private_data
;
1093 unsigned int *container
;
1094 struct snd_ctl_elem_id id
;
1095 unsigned int mask
= 0;
1099 if (size
> 1024 * 128) /* sane value */
1102 container
= vmemdup_user(buf
, size
);
1103 if (IS_ERR(container
))
1104 return PTR_ERR(container
);
1106 change
= ue
->tlv_data_size
!= size
;
1108 change
= memcmp(ue
->tlv_data
, container
, size
) != 0;
1114 if (ue
->tlv_data
== NULL
) {
1115 /* Now TLV data is available. */
1116 for (i
= 0; i
< kctl
->count
; ++i
)
1117 kctl
->vd
[i
].access
|= SNDRV_CTL_ELEM_ACCESS_TLV_READ
;
1118 mask
= SNDRV_CTL_EVENT_MASK_INFO
;
1121 kvfree(ue
->tlv_data
);
1122 ue
->tlv_data
= container
;
1123 ue
->tlv_data_size
= size
;
1125 mask
|= SNDRV_CTL_EVENT_MASK_TLV
;
1126 for (i
= 0; i
< kctl
->count
; ++i
) {
1127 snd_ctl_build_ioff(&id
, kctl
, i
);
1128 snd_ctl_notify(ue
->card
, mask
, &id
);
1134 static int read_user_tlv(struct snd_kcontrol
*kctl
, unsigned int __user
*buf
,
1137 struct user_element
*ue
= kctl
->private_data
;
1139 if (ue
->tlv_data_size
== 0 || ue
->tlv_data
== NULL
)
1142 if (size
< ue
->tlv_data_size
)
1145 if (copy_to_user(buf
, ue
->tlv_data
, ue
->tlv_data_size
))
1151 static int snd_ctl_elem_user_tlv(struct snd_kcontrol
*kctl
, int op_flag
,
1152 unsigned int size
, unsigned int __user
*buf
)
1154 if (op_flag
== SNDRV_CTL_TLV_OP_WRITE
)
1155 return replace_user_tlv(kctl
, buf
, size
);
1157 return read_user_tlv(kctl
, buf
, size
);
1160 static int snd_ctl_elem_init_enum_names(struct user_element
*ue
)
1163 size_t buf_len
, name_len
;
1165 const uintptr_t user_ptrval
= ue
->info
.value
.enumerated
.names_ptr
;
1167 if (ue
->info
.value
.enumerated
.names_length
> 64 * 1024)
1170 names
= vmemdup_user((const void __user
*)user_ptrval
,
1171 ue
->info
.value
.enumerated
.names_length
);
1173 return PTR_ERR(names
);
1175 /* check that there are enough valid names */
1176 buf_len
= ue
->info
.value
.enumerated
.names_length
;
1178 for (i
= 0; i
< ue
->info
.value
.enumerated
.items
; ++i
) {
1179 name_len
= strnlen(p
, buf_len
);
1180 if (name_len
== 0 || name_len
>= 64 || name_len
== buf_len
) {
1185 buf_len
-= name_len
+ 1;
1188 ue
->priv_data
= names
;
1189 ue
->info
.value
.enumerated
.names_ptr
= 0;
1194 static void snd_ctl_elem_user_free(struct snd_kcontrol
*kcontrol
)
1196 struct user_element
*ue
= kcontrol
->private_data
;
1198 kvfree(ue
->tlv_data
);
1199 kvfree(ue
->priv_data
);
1203 static int snd_ctl_elem_add(struct snd_ctl_file
*file
,
1204 struct snd_ctl_elem_info
*info
, int replace
)
1206 /* The capacity of struct snd_ctl_elem_value.value.*/
1207 static const unsigned int value_sizes
[] = {
1208 [SNDRV_CTL_ELEM_TYPE_BOOLEAN
] = sizeof(long),
1209 [SNDRV_CTL_ELEM_TYPE_INTEGER
] = sizeof(long),
1210 [SNDRV_CTL_ELEM_TYPE_ENUMERATED
] = sizeof(unsigned int),
1211 [SNDRV_CTL_ELEM_TYPE_BYTES
] = sizeof(unsigned char),
1212 [SNDRV_CTL_ELEM_TYPE_IEC958
] = sizeof(struct snd_aes_iec958
),
1213 [SNDRV_CTL_ELEM_TYPE_INTEGER64
] = sizeof(long long),
1215 static const unsigned int max_value_counts
[] = {
1216 [SNDRV_CTL_ELEM_TYPE_BOOLEAN
] = 128,
1217 [SNDRV_CTL_ELEM_TYPE_INTEGER
] = 128,
1218 [SNDRV_CTL_ELEM_TYPE_ENUMERATED
] = 128,
1219 [SNDRV_CTL_ELEM_TYPE_BYTES
] = 512,
1220 [SNDRV_CTL_ELEM_TYPE_IEC958
] = 1,
1221 [SNDRV_CTL_ELEM_TYPE_INTEGER64
] = 64,
1223 struct snd_card
*card
= file
->card
;
1224 struct snd_kcontrol
*kctl
;
1226 unsigned int access
;
1228 struct user_element
*ue
;
1229 unsigned int offset
;
1232 if (!*info
->id
.name
)
1234 if (strnlen(info
->id
.name
, sizeof(info
->id
.name
)) >= sizeof(info
->id
.name
))
1237 /* Delete a control to replace them if needed. */
1240 err
= snd_ctl_remove_user_ctl(file
, &info
->id
);
1246 * The number of userspace controls are counted control by control,
1247 * not element by element.
1249 if (card
->user_ctl_count
+ 1 > MAX_USER_CONTROLS
)
1252 /* Check the number of elements for this userspace control. */
1253 count
= info
->owner
;
1257 /* Arrange access permissions if needed. */
1258 access
= info
->access
;
1260 access
= SNDRV_CTL_ELEM_ACCESS_READWRITE
;
1261 access
&= (SNDRV_CTL_ELEM_ACCESS_READWRITE
|
1262 SNDRV_CTL_ELEM_ACCESS_INACTIVE
|
1263 SNDRV_CTL_ELEM_ACCESS_TLV_WRITE
);
1265 /* In initial state, nothing is available as TLV container. */
1266 if (access
& SNDRV_CTL_ELEM_ACCESS_TLV_WRITE
)
1267 access
|= SNDRV_CTL_ELEM_ACCESS_TLV_CALLBACK
;
1268 access
|= SNDRV_CTL_ELEM_ACCESS_USER
;
1271 * Check information and calculate the size of data specific to
1272 * this userspace control.
1274 if (info
->type
< SNDRV_CTL_ELEM_TYPE_BOOLEAN
||
1275 info
->type
> SNDRV_CTL_ELEM_TYPE_INTEGER64
)
1277 if (info
->type
== SNDRV_CTL_ELEM_TYPE_ENUMERATED
&&
1278 info
->value
.enumerated
.items
== 0)
1280 if (info
->count
< 1 ||
1281 info
->count
> max_value_counts
[info
->type
])
1283 if (!validate_element_member_dimension(info
))
1285 private_size
= value_sizes
[info
->type
] * info
->count
;
1288 * Keep memory object for this userspace control. After passing this
1289 * code block, the instance should be freed by snd_ctl_free_one().
1291 * Note that these elements in this control are locked.
1293 err
= snd_ctl_new(&kctl
, count
, access
, file
);
1296 memcpy(&kctl
->id
, &info
->id
, sizeof(kctl
->id
));
1297 kctl
->private_data
= kzalloc(sizeof(struct user_element
) + private_size
* count
,
1299 if (kctl
->private_data
== NULL
) {
1303 kctl
->private_free
= snd_ctl_elem_user_free
;
1305 /* Set private data for this userspace control. */
1306 ue
= (struct user_element
*)kctl
->private_data
;
1309 ue
->info
.access
= 0;
1310 ue
->elem_data
= (char *)ue
+ sizeof(*ue
);
1311 ue
->elem_data_size
= private_size
;
1312 if (ue
->info
.type
== SNDRV_CTL_ELEM_TYPE_ENUMERATED
) {
1313 err
= snd_ctl_elem_init_enum_names(ue
);
1315 snd_ctl_free_one(kctl
);
1320 /* Set callback functions. */
1321 if (info
->type
== SNDRV_CTL_ELEM_TYPE_ENUMERATED
)
1322 kctl
->info
= snd_ctl_elem_user_enum_info
;
1324 kctl
->info
= snd_ctl_elem_user_info
;
1325 if (access
& SNDRV_CTL_ELEM_ACCESS_READ
)
1326 kctl
->get
= snd_ctl_elem_user_get
;
1327 if (access
& SNDRV_CTL_ELEM_ACCESS_WRITE
)
1328 kctl
->put
= snd_ctl_elem_user_put
;
1329 if (access
& SNDRV_CTL_ELEM_ACCESS_TLV_WRITE
)
1330 kctl
->tlv
.c
= snd_ctl_elem_user_tlv
;
1332 /* This function manage to free the instance on failure. */
1333 down_write(&card
->controls_rwsem
);
1334 err
= __snd_ctl_add_replace(card
, kctl
, CTL_ADD_EXCLUSIVE
);
1336 snd_ctl_free_one(kctl
);
1339 offset
= snd_ctl_get_ioff(kctl
, &info
->id
);
1340 snd_ctl_build_ioff(&info
->id
, kctl
, offset
);
1342 * Here we cannot fill any field for the number of elements added by
1343 * this operation because there're no specific fields. The usage of
1344 * 'owner' field for this purpose may cause any bugs to userspace
1345 * applications because the field originally means PID of a process
1346 * which locks the element.
1349 card
->user_ctl_count
++;
1352 up_write(&card
->controls_rwsem
);
1356 static int snd_ctl_elem_add_user(struct snd_ctl_file
*file
,
1357 struct snd_ctl_elem_info __user
*_info
, int replace
)
1359 struct snd_ctl_elem_info info
;
1362 if (copy_from_user(&info
, _info
, sizeof(info
)))
1364 err
= snd_ctl_elem_add(file
, &info
, replace
);
1367 if (copy_to_user(_info
, &info
, sizeof(info
))) {
1368 snd_ctl_remove_user_ctl(file
, &info
.id
);
1375 static int snd_ctl_elem_remove(struct snd_ctl_file
*file
,
1376 struct snd_ctl_elem_id __user
*_id
)
1378 struct snd_ctl_elem_id id
;
1380 if (copy_from_user(&id
, _id
, sizeof(id
)))
1382 return snd_ctl_remove_user_ctl(file
, &id
);
1385 static int snd_ctl_subscribe_events(struct snd_ctl_file
*file
, int __user
*ptr
)
1388 if (get_user(subscribe
, ptr
))
1390 if (subscribe
< 0) {
1391 subscribe
= file
->subscribed
;
1392 if (put_user(subscribe
, ptr
))
1397 file
->subscribed
= 1;
1399 } else if (file
->subscribed
) {
1400 snd_ctl_empty_read_queue(file
);
1401 file
->subscribed
= 0;
1406 static int call_tlv_handler(struct snd_ctl_file
*file
, int op_flag
,
1407 struct snd_kcontrol
*kctl
,
1408 struct snd_ctl_elem_id
*id
,
1409 unsigned int __user
*buf
, unsigned int size
)
1411 static const struct {
1415 {SNDRV_CTL_TLV_OP_READ
, SNDRV_CTL_ELEM_ACCESS_TLV_READ
},
1416 {SNDRV_CTL_TLV_OP_WRITE
, SNDRV_CTL_ELEM_ACCESS_TLV_WRITE
},
1417 {SNDRV_CTL_TLV_OP_CMD
, SNDRV_CTL_ELEM_ACCESS_TLV_COMMAND
},
1419 struct snd_kcontrol_volatile
*vd
= &kctl
->vd
[snd_ctl_get_ioff(kctl
, id
)];
1422 /* Check support of the request for this element. */
1423 for (i
= 0; i
< ARRAY_SIZE(pairs
); ++i
) {
1424 if (op_flag
== pairs
[i
].op
&& (vd
->access
& pairs
[i
].perm
))
1427 if (i
== ARRAY_SIZE(pairs
))
1430 if (kctl
->tlv
.c
== NULL
)
1433 /* When locked, this is unavailable. */
1434 if (vd
->owner
!= NULL
&& vd
->owner
!= file
)
1437 return kctl
->tlv
.c(kctl
, op_flag
, size
, buf
);
1440 static int read_tlv_buf(struct snd_kcontrol
*kctl
, struct snd_ctl_elem_id
*id
,
1441 unsigned int __user
*buf
, unsigned int size
)
1443 struct snd_kcontrol_volatile
*vd
= &kctl
->vd
[snd_ctl_get_ioff(kctl
, id
)];
1446 if (!(vd
->access
& SNDRV_CTL_ELEM_ACCESS_TLV_READ
))
1449 if (kctl
->tlv
.p
== NULL
)
1452 len
= sizeof(unsigned int) * 2 + kctl
->tlv
.p
[1];
1456 if (copy_to_user(buf
, kctl
->tlv
.p
, len
))
1462 static int snd_ctl_tlv_ioctl(struct snd_ctl_file
*file
,
1463 struct snd_ctl_tlv __user
*buf
,
1466 struct snd_ctl_tlv header
;
1467 unsigned int __user
*container
;
1468 unsigned int container_size
;
1469 struct snd_kcontrol
*kctl
;
1470 struct snd_ctl_elem_id id
;
1471 struct snd_kcontrol_volatile
*vd
;
1473 if (copy_from_user(&header
, buf
, sizeof(header
)))
1476 /* In design of control core, numerical ID starts at 1. */
1477 if (header
.numid
== 0)
1480 /* At least, container should include type and length fields. */
1481 if (header
.length
< sizeof(unsigned int) * 2)
1483 container_size
= header
.length
;
1484 container
= buf
->tlv
;
1486 kctl
= snd_ctl_find_numid(file
->card
, header
.numid
);
1490 /* Calculate index of the element in this set. */
1492 snd_ctl_build_ioff(&id
, kctl
, header
.numid
- id
.numid
);
1493 vd
= &kctl
->vd
[snd_ctl_get_ioff(kctl
, &id
)];
1495 if (vd
->access
& SNDRV_CTL_ELEM_ACCESS_TLV_CALLBACK
) {
1496 return call_tlv_handler(file
, op_flag
, kctl
, &id
, container
,
1499 if (op_flag
== SNDRV_CTL_TLV_OP_READ
) {
1500 return read_tlv_buf(kctl
, &id
, container
,
1505 /* Not supported. */
1509 static long snd_ctl_ioctl(struct file
*file
, unsigned int cmd
, unsigned long arg
)
1511 struct snd_ctl_file
*ctl
;
1512 struct snd_card
*card
;
1513 struct snd_kctl_ioctl
*p
;
1514 void __user
*argp
= (void __user
*)arg
;
1515 int __user
*ip
= argp
;
1518 ctl
= file
->private_data
;
1520 if (snd_BUG_ON(!card
))
1523 case SNDRV_CTL_IOCTL_PVERSION
:
1524 return put_user(SNDRV_CTL_VERSION
, ip
) ? -EFAULT
: 0;
1525 case SNDRV_CTL_IOCTL_CARD_INFO
:
1526 return snd_ctl_card_info(card
, ctl
, cmd
, argp
);
1527 case SNDRV_CTL_IOCTL_ELEM_LIST
:
1528 return snd_ctl_elem_list(card
, argp
);
1529 case SNDRV_CTL_IOCTL_ELEM_INFO
:
1530 return snd_ctl_elem_info_user(ctl
, argp
);
1531 case SNDRV_CTL_IOCTL_ELEM_READ
:
1532 return snd_ctl_elem_read_user(card
, argp
);
1533 case SNDRV_CTL_IOCTL_ELEM_WRITE
:
1534 return snd_ctl_elem_write_user(ctl
, argp
);
1535 case SNDRV_CTL_IOCTL_ELEM_LOCK
:
1536 return snd_ctl_elem_lock(ctl
, argp
);
1537 case SNDRV_CTL_IOCTL_ELEM_UNLOCK
:
1538 return snd_ctl_elem_unlock(ctl
, argp
);
1539 case SNDRV_CTL_IOCTL_ELEM_ADD
:
1540 return snd_ctl_elem_add_user(ctl
, argp
, 0);
1541 case SNDRV_CTL_IOCTL_ELEM_REPLACE
:
1542 return snd_ctl_elem_add_user(ctl
, argp
, 1);
1543 case SNDRV_CTL_IOCTL_ELEM_REMOVE
:
1544 return snd_ctl_elem_remove(ctl
, argp
);
1545 case SNDRV_CTL_IOCTL_SUBSCRIBE_EVENTS
:
1546 return snd_ctl_subscribe_events(ctl
, ip
);
1547 case SNDRV_CTL_IOCTL_TLV_READ
:
1548 down_read(&ctl
->card
->controls_rwsem
);
1549 err
= snd_ctl_tlv_ioctl(ctl
, argp
, SNDRV_CTL_TLV_OP_READ
);
1550 up_read(&ctl
->card
->controls_rwsem
);
1552 case SNDRV_CTL_IOCTL_TLV_WRITE
:
1553 down_write(&ctl
->card
->controls_rwsem
);
1554 err
= snd_ctl_tlv_ioctl(ctl
, argp
, SNDRV_CTL_TLV_OP_WRITE
);
1555 up_write(&ctl
->card
->controls_rwsem
);
1557 case SNDRV_CTL_IOCTL_TLV_COMMAND
:
1558 down_write(&ctl
->card
->controls_rwsem
);
1559 err
= snd_ctl_tlv_ioctl(ctl
, argp
, SNDRV_CTL_TLV_OP_CMD
);
1560 up_write(&ctl
->card
->controls_rwsem
);
1562 case SNDRV_CTL_IOCTL_POWER
:
1563 return -ENOPROTOOPT
;
1564 case SNDRV_CTL_IOCTL_POWER_STATE
:
1566 return put_user(card
->power_state
, ip
) ? -EFAULT
: 0;
1568 return put_user(SNDRV_CTL_POWER_D0
, ip
) ? -EFAULT
: 0;
1571 down_read(&snd_ioctl_rwsem
);
1572 list_for_each_entry(p
, &snd_control_ioctls
, list
) {
1573 err
= p
->fioctl(card
, ctl
, cmd
, arg
);
1574 if (err
!= -ENOIOCTLCMD
) {
1575 up_read(&snd_ioctl_rwsem
);
1579 up_read(&snd_ioctl_rwsem
);
1580 dev_dbg(card
->dev
, "unknown ioctl = 0x%x\n", cmd
);
1584 static ssize_t
snd_ctl_read(struct file
*file
, char __user
*buffer
,
1585 size_t count
, loff_t
* offset
)
1587 struct snd_ctl_file
*ctl
;
1591 ctl
= file
->private_data
;
1592 if (snd_BUG_ON(!ctl
|| !ctl
->card
))
1594 if (!ctl
->subscribed
)
1596 if (count
< sizeof(struct snd_ctl_event
))
1598 spin_lock_irq(&ctl
->read_lock
);
1599 while (count
>= sizeof(struct snd_ctl_event
)) {
1600 struct snd_ctl_event ev
;
1601 struct snd_kctl_event
*kev
;
1602 while (list_empty(&ctl
->events
)) {
1603 wait_queue_entry_t wait
;
1604 if ((file
->f_flags
& O_NONBLOCK
) != 0 || result
> 0) {
1608 init_waitqueue_entry(&wait
, current
);
1609 add_wait_queue(&ctl
->change_sleep
, &wait
);
1610 set_current_state(TASK_INTERRUPTIBLE
);
1611 spin_unlock_irq(&ctl
->read_lock
);
1613 remove_wait_queue(&ctl
->change_sleep
, &wait
);
1614 if (ctl
->card
->shutdown
)
1616 if (signal_pending(current
))
1617 return -ERESTARTSYS
;
1618 spin_lock_irq(&ctl
->read_lock
);
1620 kev
= snd_kctl_event(ctl
->events
.next
);
1621 ev
.type
= SNDRV_CTL_EVENT_ELEM
;
1622 ev
.data
.elem
.mask
= kev
->mask
;
1623 ev
.data
.elem
.id
= kev
->id
;
1624 list_del(&kev
->list
);
1625 spin_unlock_irq(&ctl
->read_lock
);
1627 if (copy_to_user(buffer
, &ev
, sizeof(struct snd_ctl_event
))) {
1631 spin_lock_irq(&ctl
->read_lock
);
1632 buffer
+= sizeof(struct snd_ctl_event
);
1633 count
-= sizeof(struct snd_ctl_event
);
1634 result
+= sizeof(struct snd_ctl_event
);
1637 spin_unlock_irq(&ctl
->read_lock
);
1639 return result
> 0 ? result
: err
;
1642 static __poll_t
snd_ctl_poll(struct file
*file
, poll_table
* wait
)
1645 struct snd_ctl_file
*ctl
;
1647 ctl
= file
->private_data
;
1648 if (!ctl
->subscribed
)
1650 poll_wait(file
, &ctl
->change_sleep
, wait
);
1653 if (!list_empty(&ctl
->events
))
1654 mask
|= EPOLLIN
| EPOLLRDNORM
;
1660 * register the device-specific control-ioctls.
1661 * called from each device manager like pcm.c, hwdep.c, etc.
1663 static int _snd_ctl_register_ioctl(snd_kctl_ioctl_func_t fcn
, struct list_head
*lists
)
1665 struct snd_kctl_ioctl
*pn
;
1667 pn
= kzalloc(sizeof(struct snd_kctl_ioctl
), GFP_KERNEL
);
1671 down_write(&snd_ioctl_rwsem
);
1672 list_add_tail(&pn
->list
, lists
);
1673 up_write(&snd_ioctl_rwsem
);
1678 * snd_ctl_register_ioctl - register the device-specific control-ioctls
1679 * @fcn: ioctl callback function
1681 * called from each device manager like pcm.c, hwdep.c, etc.
1683 int snd_ctl_register_ioctl(snd_kctl_ioctl_func_t fcn
)
1685 return _snd_ctl_register_ioctl(fcn
, &snd_control_ioctls
);
1687 EXPORT_SYMBOL(snd_ctl_register_ioctl
);
1689 #ifdef CONFIG_COMPAT
1691 * snd_ctl_register_ioctl_compat - register the device-specific 32bit compat
1693 * @fcn: ioctl callback function
1695 int snd_ctl_register_ioctl_compat(snd_kctl_ioctl_func_t fcn
)
1697 return _snd_ctl_register_ioctl(fcn
, &snd_control_compat_ioctls
);
1699 EXPORT_SYMBOL(snd_ctl_register_ioctl_compat
);
1703 * de-register the device-specific control-ioctls.
1705 static int _snd_ctl_unregister_ioctl(snd_kctl_ioctl_func_t fcn
,
1706 struct list_head
*lists
)
1708 struct snd_kctl_ioctl
*p
;
1710 if (snd_BUG_ON(!fcn
))
1712 down_write(&snd_ioctl_rwsem
);
1713 list_for_each_entry(p
, lists
, list
) {
1714 if (p
->fioctl
== fcn
) {
1716 up_write(&snd_ioctl_rwsem
);
1721 up_write(&snd_ioctl_rwsem
);
1727 * snd_ctl_unregister_ioctl - de-register the device-specific control-ioctls
1728 * @fcn: ioctl callback function to unregister
1730 int snd_ctl_unregister_ioctl(snd_kctl_ioctl_func_t fcn
)
1732 return _snd_ctl_unregister_ioctl(fcn
, &snd_control_ioctls
);
1734 EXPORT_SYMBOL(snd_ctl_unregister_ioctl
);
1736 #ifdef CONFIG_COMPAT
1738 * snd_ctl_unregister_ioctl - de-register the device-specific compat 32bit
1740 * @fcn: ioctl callback function to unregister
1742 int snd_ctl_unregister_ioctl_compat(snd_kctl_ioctl_func_t fcn
)
1744 return _snd_ctl_unregister_ioctl(fcn
, &snd_control_compat_ioctls
);
1746 EXPORT_SYMBOL(snd_ctl_unregister_ioctl_compat
);
1749 static int snd_ctl_fasync(int fd
, struct file
* file
, int on
)
1751 struct snd_ctl_file
*ctl
;
1753 ctl
= file
->private_data
;
1754 return fasync_helper(fd
, file
, on
, &ctl
->fasync
);
1757 /* return the preferred subdevice number if already assigned;
1758 * otherwise return -1
1760 int snd_ctl_get_preferred_subdevice(struct snd_card
*card
, int type
)
1762 struct snd_ctl_file
*kctl
;
1765 read_lock(&card
->ctl_files_rwlock
);
1766 list_for_each_entry(kctl
, &card
->ctl_files
, list
) {
1767 if (kctl
->pid
== task_pid(current
)) {
1768 subdevice
= kctl
->preferred_subdevice
[type
];
1769 if (subdevice
!= -1)
1773 read_unlock(&card
->ctl_files_rwlock
);
1776 EXPORT_SYMBOL_GPL(snd_ctl_get_preferred_subdevice
);
1781 #ifdef CONFIG_COMPAT
1782 #include "control_compat.c"
1784 #define snd_ctl_ioctl_compat NULL
1791 static const struct file_operations snd_ctl_f_ops
=
1793 .owner
= THIS_MODULE
,
1794 .read
= snd_ctl_read
,
1795 .open
= snd_ctl_open
,
1796 .release
= snd_ctl_release
,
1797 .llseek
= no_llseek
,
1798 .poll
= snd_ctl_poll
,
1799 .unlocked_ioctl
= snd_ctl_ioctl
,
1800 .compat_ioctl
= snd_ctl_ioctl_compat
,
1801 .fasync
= snd_ctl_fasync
,
1805 * registration of the control device
1807 static int snd_ctl_dev_register(struct snd_device
*device
)
1809 struct snd_card
*card
= device
->device_data
;
1811 return snd_register_device(SNDRV_DEVICE_TYPE_CONTROL
, card
, -1,
1812 &snd_ctl_f_ops
, card
, &card
->ctl_dev
);
1816 * disconnection of the control device
1818 static int snd_ctl_dev_disconnect(struct snd_device
*device
)
1820 struct snd_card
*card
= device
->device_data
;
1821 struct snd_ctl_file
*ctl
;
1823 read_lock(&card
->ctl_files_rwlock
);
1824 list_for_each_entry(ctl
, &card
->ctl_files
, list
) {
1825 wake_up(&ctl
->change_sleep
);
1826 kill_fasync(&ctl
->fasync
, SIGIO
, POLL_ERR
);
1828 read_unlock(&card
->ctl_files_rwlock
);
1830 return snd_unregister_device(&card
->ctl_dev
);
1836 static int snd_ctl_dev_free(struct snd_device
*device
)
1838 struct snd_card
*card
= device
->device_data
;
1839 struct snd_kcontrol
*control
;
1841 down_write(&card
->controls_rwsem
);
1842 while (!list_empty(&card
->controls
)) {
1843 control
= snd_kcontrol(card
->controls
.next
);
1844 snd_ctl_remove(card
, control
);
1846 up_write(&card
->controls_rwsem
);
1847 put_device(&card
->ctl_dev
);
1852 * create control core:
1853 * called from init.c
1855 int snd_ctl_create(struct snd_card
*card
)
1857 static struct snd_device_ops ops
= {
1858 .dev_free
= snd_ctl_dev_free
,
1859 .dev_register
= snd_ctl_dev_register
,
1860 .dev_disconnect
= snd_ctl_dev_disconnect
,
1864 if (snd_BUG_ON(!card
))
1866 if (snd_BUG_ON(card
->number
< 0 || card
->number
>= SNDRV_CARDS
))
1869 snd_device_initialize(&card
->ctl_dev
, card
);
1870 dev_set_name(&card
->ctl_dev
, "controlC%d", card
->number
);
1872 err
= snd_device_new(card
, SNDRV_DEV_CONTROL
, card
, &ops
);
1874 put_device(&card
->ctl_dev
);
1879 * Frequently used control callbacks/helpers
1883 * snd_ctl_boolean_mono_info - Helper function for a standard boolean info
1884 * callback with a mono channel
1885 * @kcontrol: the kcontrol instance
1886 * @uinfo: info to store
1888 * This is a function that can be used as info callback for a standard
1889 * boolean control with a single mono channel.
1891 int snd_ctl_boolean_mono_info(struct snd_kcontrol
*kcontrol
,
1892 struct snd_ctl_elem_info
*uinfo
)
1894 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_BOOLEAN
;
1896 uinfo
->value
.integer
.min
= 0;
1897 uinfo
->value
.integer
.max
= 1;
1900 EXPORT_SYMBOL(snd_ctl_boolean_mono_info
);
1903 * snd_ctl_boolean_stereo_info - Helper function for a standard boolean info
1904 * callback with stereo two channels
1905 * @kcontrol: the kcontrol instance
1906 * @uinfo: info to store
1908 * This is a function that can be used as info callback for a standard
1909 * boolean control with stereo two channels.
1911 int snd_ctl_boolean_stereo_info(struct snd_kcontrol
*kcontrol
,
1912 struct snd_ctl_elem_info
*uinfo
)
1914 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_BOOLEAN
;
1916 uinfo
->value
.integer
.min
= 0;
1917 uinfo
->value
.integer
.max
= 1;
1920 EXPORT_SYMBOL(snd_ctl_boolean_stereo_info
);
1923 * snd_ctl_enum_info - fills the info structure for an enumerated control
1924 * @info: the structure to be filled
1925 * @channels: the number of the control's channels; often one
1926 * @items: the number of control values; also the size of @names
1927 * @names: an array containing the names of all control values
1929 * Sets all required fields in @info to their appropriate values.
1930 * If the control's accessibility is not the default (readable and writable),
1931 * the caller has to fill @info->access.
1935 int snd_ctl_enum_info(struct snd_ctl_elem_info
*info
, unsigned int channels
,
1936 unsigned int items
, const char *const names
[])
1938 info
->type
= SNDRV_CTL_ELEM_TYPE_ENUMERATED
;
1939 info
->count
= channels
;
1940 info
->value
.enumerated
.items
= items
;
1943 if (info
->value
.enumerated
.item
>= items
)
1944 info
->value
.enumerated
.item
= items
- 1;
1945 WARN(strlen(names
[info
->value
.enumerated
.item
]) >= sizeof(info
->value
.enumerated
.name
),
1946 "ALSA: too long item name '%s'\n",
1947 names
[info
->value
.enumerated
.item
]);
1948 strlcpy(info
->value
.enumerated
.name
,
1949 names
[info
->value
.enumerated
.item
],
1950 sizeof(info
->value
.enumerated
.name
));
1953 EXPORT_SYMBOL(snd_ctl_enum_info
);