2 * ALSA sequencer device management
3 * Copyright (c) 1999 by Takashi Iwai <tiwai@suse.de>
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
20 *----------------------------------------------------------------
22 * This device handler separates the card driver module from sequencer
23 * stuff (sequencer core, synth drivers, etc), so that user can avoid
24 * to spend unnecessary resources e.g. if he needs only listening to
27 * The card (or lowlevel) driver creates a sequencer device entry
28 * via snd_seq_device_new(). This is an entry pointer to communicate
29 * with the sequencer device "driver", which is involved with the
30 * actual part to communicate with the sequencer core.
31 * Each sequencer device entry has an id string and the corresponding
32 * driver with the same id is loaded when required. For example,
33 * lowlevel codes to access emu8000 chip on sbawe card are included in
34 * emu8000-synth module. To activate this module, the hardware
35 * resources like i/o port are passed via snd_seq_device argument.
39 #include <linux/init.h>
40 #include <sound/core.h>
41 #include <sound/info.h>
42 #include <sound/seq_device.h>
43 #include <sound/seq_kernel.h>
44 #include <sound/initval.h>
45 #include <linux/kmod.h>
46 #include <linux/slab.h>
47 #include <linux/mutex.h>
49 MODULE_AUTHOR("Takashi Iwai <tiwai@suse.de>");
50 MODULE_DESCRIPTION("ALSA sequencer device management");
51 MODULE_LICENSE("GPL");
54 #define DRIVER_EMPTY 0
55 #define DRIVER_LOADED (1<<0)
56 #define DRIVER_REQUESTED (1<<1)
57 #define DRIVER_LOCKED (1<<2)
60 char id
[ID_LEN
]; /* driver id */
61 int driver
; /* driver state */
62 int used
; /* reference counter */
63 int argsize
; /* argument size */
66 struct snd_seq_dev_ops ops
;
68 /* registred devices */
69 struct list_head dev_list
; /* list of devices */
70 int num_devices
; /* number of associated devices */
71 int num_init_devices
; /* number of initialized devices */
72 struct mutex reg_mutex
;
74 struct list_head list
; /* next driver */
78 static LIST_HEAD(opslist
);
80 static DEFINE_MUTEX(ops_mutex
);
82 static struct snd_info_entry
*info_entry
;
88 static int snd_seq_device_free(struct snd_seq_device
*dev
);
89 static int snd_seq_device_dev_free(struct snd_device
*device
);
90 static int snd_seq_device_dev_register(struct snd_device
*device
);
91 static int snd_seq_device_dev_disconnect(struct snd_device
*device
);
93 static int init_device(struct snd_seq_device
*dev
, struct ops_list
*ops
);
94 static int free_device(struct snd_seq_device
*dev
, struct ops_list
*ops
);
95 static struct ops_list
*find_driver(char *id
, int create_if_empty
);
96 static struct ops_list
*create_driver(char *id
);
97 static void unlock_driver(struct ops_list
*ops
);
98 static void remove_drivers(void);
101 * show all drivers and their status
104 #ifdef CONFIG_PROC_FS
105 static void snd_seq_device_info(struct snd_info_entry
*entry
,
106 struct snd_info_buffer
*buffer
)
108 struct ops_list
*ops
;
110 mutex_lock(&ops_mutex
);
111 list_for_each_entry(ops
, &opslist
, list
) {
112 snd_iprintf(buffer
, "snd-%s%s%s%s,%d\n",
114 ops
->driver
& DRIVER_LOADED
? ",loaded" : (ops
->driver
== DRIVER_EMPTY
? ",empty" : ""),
115 ops
->driver
& DRIVER_REQUESTED
? ",requested" : "",
116 ops
->driver
& DRIVER_LOCKED
? ",locked" : "",
119 mutex_unlock(&ops_mutex
);
124 * load all registered drivers (called from seq_clientmgr.c)
127 #ifdef CONFIG_MODULES
128 /* avoid auto-loading during module_init() */
129 static int snd_seq_in_init
;
130 void snd_seq_autoload_lock(void)
135 void snd_seq_autoload_unlock(void)
141 void snd_seq_device_load_drivers(void)
143 #ifdef CONFIG_MODULES
144 struct ops_list
*ops
;
146 /* Calling request_module during module_init()
147 * may cause blocking.
152 mutex_lock(&ops_mutex
);
153 list_for_each_entry(ops
, &opslist
, list
) {
154 if (! (ops
->driver
& DRIVER_LOADED
) &&
155 ! (ops
->driver
& DRIVER_REQUESTED
)) {
157 mutex_unlock(&ops_mutex
);
158 ops
->driver
|= DRIVER_REQUESTED
;
159 request_module("snd-%s", ops
->id
);
160 mutex_lock(&ops_mutex
);
164 mutex_unlock(&ops_mutex
);
169 * register a sequencer device
170 * card = card info (NULL allowed)
171 * device = device number (if any)
173 * result = return pointer (NULL allowed if unnecessary)
175 int snd_seq_device_new(struct snd_card
*card
, int device
, char *id
, int argsize
,
176 struct snd_seq_device
**result
)
178 struct snd_seq_device
*dev
;
179 struct ops_list
*ops
;
181 static struct snd_device_ops dops
= {
182 .dev_free
= snd_seq_device_dev_free
,
183 .dev_register
= snd_seq_device_dev_register
,
184 .dev_disconnect
= snd_seq_device_dev_disconnect
,
190 snd_assert(id
!= NULL
, return -EINVAL
);
192 ops
= find_driver(id
, 1);
196 dev
= kzalloc(sizeof(*dev
)*2 + argsize
, GFP_KERNEL
);
202 /* set up device info */
204 dev
->device
= device
;
205 strlcpy(dev
->id
, id
, sizeof(dev
->id
));
206 dev
->argsize
= argsize
;
207 dev
->status
= SNDRV_SEQ_DEVICE_FREE
;
209 /* add this device to the list */
210 mutex_lock(&ops
->reg_mutex
);
211 list_add_tail(&dev
->list
, &ops
->dev_list
);
213 mutex_unlock(&ops
->reg_mutex
);
217 if ((err
= snd_device_new(card
, SNDRV_DEV_SEQUENCER
, dev
, &dops
)) < 0) {
218 snd_seq_device_free(dev
);
229 * free the existing device
231 static int snd_seq_device_free(struct snd_seq_device
*dev
)
233 struct ops_list
*ops
;
235 snd_assert(dev
!= NULL
, return -EINVAL
);
237 ops
= find_driver(dev
->id
, 0);
241 /* remove the device from the list */
242 mutex_lock(&ops
->reg_mutex
);
243 list_del(&dev
->list
);
245 mutex_unlock(&ops
->reg_mutex
);
247 free_device(dev
, ops
);
248 if (dev
->private_free
)
249 dev
->private_free(dev
);
257 static int snd_seq_device_dev_free(struct snd_device
*device
)
259 struct snd_seq_device
*dev
= device
->device_data
;
260 return snd_seq_device_free(dev
);
264 * register the device
266 static int snd_seq_device_dev_register(struct snd_device
*device
)
268 struct snd_seq_device
*dev
= device
->device_data
;
269 struct ops_list
*ops
;
271 ops
= find_driver(dev
->id
, 0);
275 /* initialize this device if the corresponding driver was
278 if (ops
->driver
& DRIVER_LOADED
)
279 init_device(dev
, ops
);
286 * disconnect the device
288 static int snd_seq_device_dev_disconnect(struct snd_device
*device
)
290 struct snd_seq_device
*dev
= device
->device_data
;
291 struct ops_list
*ops
;
293 ops
= find_driver(dev
->id
, 0);
297 free_device(dev
, ops
);
304 * register device driver
306 * entry = driver operators - duplicated to each instance
308 int snd_seq_device_register_driver(char *id
, struct snd_seq_dev_ops
*entry
,
311 struct ops_list
*ops
;
312 struct snd_seq_device
*dev
;
314 if (id
== NULL
|| entry
== NULL
||
315 entry
->init_device
== NULL
|| entry
->free_device
== NULL
)
318 snd_seq_autoload_lock();
319 ops
= find_driver(id
, 1);
321 snd_seq_autoload_unlock();
324 if (ops
->driver
& DRIVER_LOADED
) {
325 snd_printk(KERN_WARNING
"driver_register: driver '%s' already exists\n", id
);
327 snd_seq_autoload_unlock();
331 mutex_lock(&ops
->reg_mutex
);
332 /* copy driver operators */
334 ops
->driver
|= DRIVER_LOADED
;
335 ops
->argsize
= argsize
;
337 /* initialize existing devices if necessary */
338 list_for_each_entry(dev
, &ops
->dev_list
, list
) {
339 init_device(dev
, ops
);
341 mutex_unlock(&ops
->reg_mutex
);
344 snd_seq_autoload_unlock();
351 * create driver record
353 static struct ops_list
* create_driver(char *id
)
355 struct ops_list
*ops
;
357 ops
= kzalloc(sizeof(*ops
), GFP_KERNEL
);
361 /* set up driver entry */
362 strlcpy(ops
->id
, id
, sizeof(ops
->id
));
363 mutex_init(&ops
->reg_mutex
);
365 * The ->reg_mutex locking rules are per-driver, so we create
366 * separate per-driver lock classes:
368 lockdep_set_class(&ops
->reg_mutex
, (struct lock_class_key
*)id
);
370 ops
->driver
= DRIVER_EMPTY
;
371 INIT_LIST_HEAD(&ops
->dev_list
);
372 /* lock this instance */
375 /* register driver entry */
376 mutex_lock(&ops_mutex
);
377 list_add_tail(&ops
->list
, &opslist
);
379 mutex_unlock(&ops_mutex
);
386 * unregister the specified driver
388 int snd_seq_device_unregister_driver(char *id
)
390 struct ops_list
*ops
;
391 struct snd_seq_device
*dev
;
393 ops
= find_driver(id
, 0);
396 if (! (ops
->driver
& DRIVER_LOADED
) ||
397 (ops
->driver
& DRIVER_LOCKED
)) {
398 snd_printk(KERN_ERR
"driver_unregister: cannot unload driver '%s': status=%x\n",
404 /* close and release all devices associated with this driver */
405 mutex_lock(&ops
->reg_mutex
);
406 ops
->driver
|= DRIVER_LOCKED
; /* do not remove this driver recursively */
407 list_for_each_entry(dev
, &ops
->dev_list
, list
) {
408 free_device(dev
, ops
);
412 if (ops
->num_init_devices
> 0)
413 snd_printk(KERN_ERR
"free_driver: init_devices > 0!! (%d)\n",
414 ops
->num_init_devices
);
415 mutex_unlock(&ops
->reg_mutex
);
419 /* remove empty driver entries */
427 * remove empty driver entries
429 static void remove_drivers(void)
431 struct list_head
*head
;
433 mutex_lock(&ops_mutex
);
435 while (head
!= &opslist
) {
436 struct ops_list
*ops
= list_entry(head
, struct ops_list
, list
);
437 if (! (ops
->driver
& DRIVER_LOADED
) &&
438 ops
->used
== 0 && ops
->num_devices
== 0) {
440 list_del(&ops
->list
);
446 mutex_unlock(&ops_mutex
);
450 * initialize the device - call init_device operator
452 static int init_device(struct snd_seq_device
*dev
, struct ops_list
*ops
)
454 if (! (ops
->driver
& DRIVER_LOADED
))
455 return 0; /* driver is not loaded yet */
456 if (dev
->status
!= SNDRV_SEQ_DEVICE_FREE
)
457 return 0; /* already initialized */
458 if (ops
->argsize
!= dev
->argsize
) {
459 snd_printk(KERN_ERR
"incompatible device '%s' for plug-in '%s' (%d %d)\n",
460 dev
->name
, ops
->id
, ops
->argsize
, dev
->argsize
);
463 if (ops
->ops
.init_device(dev
) >= 0) {
464 dev
->status
= SNDRV_SEQ_DEVICE_REGISTERED
;
465 ops
->num_init_devices
++;
467 snd_printk(KERN_ERR
"init_device failed: %s: %s\n",
475 * release the device - call free_device operator
477 static int free_device(struct snd_seq_device
*dev
, struct ops_list
*ops
)
481 if (! (ops
->driver
& DRIVER_LOADED
))
482 return 0; /* driver is not loaded yet */
483 if (dev
->status
!= SNDRV_SEQ_DEVICE_REGISTERED
)
484 return 0; /* not registered */
485 if (ops
->argsize
!= dev
->argsize
) {
486 snd_printk(KERN_ERR
"incompatible device '%s' for plug-in '%s' (%d %d)\n",
487 dev
->name
, ops
->id
, ops
->argsize
, dev
->argsize
);
490 if ((result
= ops
->ops
.free_device(dev
)) >= 0 || result
== -ENXIO
) {
491 dev
->status
= SNDRV_SEQ_DEVICE_FREE
;
492 dev
->driver_data
= NULL
;
493 ops
->num_init_devices
--;
495 snd_printk(KERN_ERR
"free_device failed: %s: %s\n",
503 * find the matching driver with given id
505 static struct ops_list
* find_driver(char *id
, int create_if_empty
)
507 struct ops_list
*ops
;
509 mutex_lock(&ops_mutex
);
510 list_for_each_entry(ops
, &opslist
, list
) {
511 if (strcmp(ops
->id
, id
) == 0) {
513 mutex_unlock(&ops_mutex
);
517 mutex_unlock(&ops_mutex
);
519 return create_driver(id
);
523 static void unlock_driver(struct ops_list
*ops
)
525 mutex_lock(&ops_mutex
);
527 mutex_unlock(&ops_mutex
);
535 static int __init
alsa_seq_device_init(void)
537 #ifdef CONFIG_PROC_FS
538 info_entry
= snd_info_create_module_entry(THIS_MODULE
, "drivers",
540 if (info_entry
== NULL
)
542 info_entry
->content
= SNDRV_INFO_CONTENT_TEXT
;
543 info_entry
->c
.text
.read
= snd_seq_device_info
;
544 if (snd_info_register(info_entry
) < 0) {
545 snd_info_free_entry(info_entry
);
552 static void __exit
alsa_seq_device_exit(void)
555 #ifdef CONFIG_PROC_FS
556 snd_info_free_entry(info_entry
);
559 snd_printk(KERN_ERR
"drivers not released (%d)\n", num_ops
);
562 module_init(alsa_seq_device_init
)
563 module_exit(alsa_seq_device_exit
)
565 EXPORT_SYMBOL(snd_seq_device_load_drivers
);
566 EXPORT_SYMBOL(snd_seq_device_new
);
567 EXPORT_SYMBOL(snd_seq_device_register_driver
);
568 EXPORT_SYMBOL(snd_seq_device_unregister_driver
);
569 EXPORT_SYMBOL(snd_seq_autoload_lock
);
570 EXPORT_SYMBOL(snd_seq_autoload_unlock
);