2 * Universal Interface for Intel High Definition Audio Codec
4 * Copyright (c) 2004 Takashi Iwai <tiwai@suse.de>
7 * This driver is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2 of the License, or
10 * (at your option) any later version.
12 * This driver is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
17 * You should have received a copy of the GNU General Public License
18 * along with this program; if not, write to the Free Software
19 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
22 #include <linux/init.h>
23 #include <linux/delay.h>
24 #include <linux/slab.h>
25 #include <linux/pci.h>
26 #include <linux/mutex.h>
27 #include <sound/core.h>
28 #include "hda_codec.h"
29 #include <sound/asoundef.h>
30 #include <sound/tlv.h>
31 #include <sound/initval.h>
32 #include <sound/jack.h>
33 #include "hda_local.h"
35 #include <sound/hda_hwdep.h>
38 * vendor / preset table
41 struct hda_vendor_id
{
46 /* codec vendor labels */
47 static struct hda_vendor_id hda_vendor_ids
[] = {
49 { 0x1013, "Cirrus Logic" },
50 { 0x1057, "Motorola" },
51 { 0x1095, "Silicon Image" },
53 { 0x10ec, "Realtek" },
54 { 0x1102, "Creative" },
58 { 0x11d4, "Analog Devices" },
59 { 0x13f6, "C-Media" },
60 { 0x14f1, "Conexant" },
61 { 0x17e8, "Chrontel" },
63 { 0x1aec, "Wolfson Microelectronics" },
64 { 0x434d, "C-Media" },
66 { 0x8384, "SigmaTel" },
70 static DEFINE_MUTEX(preset_mutex
);
71 static LIST_HEAD(hda_preset_tables
);
73 int snd_hda_add_codec_preset(struct hda_codec_preset_list
*preset
)
75 mutex_lock(&preset_mutex
);
76 list_add_tail(&preset
->list
, &hda_preset_tables
);
77 mutex_unlock(&preset_mutex
);
80 EXPORT_SYMBOL_HDA(snd_hda_add_codec_preset
);
82 int snd_hda_delete_codec_preset(struct hda_codec_preset_list
*preset
)
84 mutex_lock(&preset_mutex
);
85 list_del(&preset
->list
);
86 mutex_unlock(&preset_mutex
);
89 EXPORT_SYMBOL_HDA(snd_hda_delete_codec_preset
);
91 #ifdef CONFIG_SND_HDA_POWER_SAVE
92 static void hda_power_work(struct work_struct
*work
);
93 static void hda_keep_power_on(struct hda_codec
*codec
);
94 #define hda_codec_is_power_on(codec) ((codec)->power_on)
96 static inline void hda_keep_power_on(struct hda_codec
*codec
) {}
97 #define hda_codec_is_power_on(codec) 1
101 * snd_hda_get_jack_location - Give a location string of the jack
102 * @cfg: pin default config value
104 * Parse the pin default config value and returns the string of the
105 * jack location, e.g. "Rear", "Front", etc.
107 const char *snd_hda_get_jack_location(u32 cfg
)
109 static char *bases
[7] = {
110 "N/A", "Rear", "Front", "Left", "Right", "Top", "Bottom",
112 static unsigned char specials_idx
[] = {
117 static char *specials
[] = {
118 "Rear Panel", "Drive Bar",
119 "Riser", "HDMI", "ATAPI",
120 "Mobile-In", "Mobile-Out"
123 cfg
= (cfg
& AC_DEFCFG_LOCATION
) >> AC_DEFCFG_LOCATION_SHIFT
;
124 if ((cfg
& 0x0f) < 7)
125 return bases
[cfg
& 0x0f];
126 for (i
= 0; i
< ARRAY_SIZE(specials_idx
); i
++) {
127 if (cfg
== specials_idx
[i
])
132 EXPORT_SYMBOL_HDA(snd_hda_get_jack_location
);
135 * snd_hda_get_jack_connectivity - Give a connectivity string of the jack
136 * @cfg: pin default config value
138 * Parse the pin default config value and returns the string of the
139 * jack connectivity, i.e. external or internal connection.
141 const char *snd_hda_get_jack_connectivity(u32 cfg
)
143 static char *jack_locations
[4] = { "Ext", "Int", "Sep", "Oth" };
145 return jack_locations
[(cfg
>> (AC_DEFCFG_LOCATION_SHIFT
+ 4)) & 3];
147 EXPORT_SYMBOL_HDA(snd_hda_get_jack_connectivity
);
150 * snd_hda_get_jack_type - Give a type string of the jack
151 * @cfg: pin default config value
153 * Parse the pin default config value and returns the string of the
154 * jack type, i.e. the purpose of the jack, such as Line-Out or CD.
156 const char *snd_hda_get_jack_type(u32 cfg
)
158 static char *jack_types
[16] = {
159 "Line Out", "Speaker", "HP Out", "CD",
160 "SPDIF Out", "Digital Out", "Modem Line", "Modem Hand",
161 "Line In", "Aux", "Mic", "Telephony",
162 "SPDIF In", "Digitial In", "Reserved", "Other"
165 return jack_types
[(cfg
& AC_DEFCFG_DEVICE
)
166 >> AC_DEFCFG_DEVICE_SHIFT
];
168 EXPORT_SYMBOL_HDA(snd_hda_get_jack_type
);
171 * Compose a 32bit command word to be sent to the HD-audio controller
173 static inline unsigned int
174 make_codec_cmd(struct hda_codec
*codec
, hda_nid_t nid
, int direct
,
175 unsigned int verb
, unsigned int parm
)
179 if ((codec
->addr
& ~0xf) || (direct
& ~1) || (nid
& ~0x7f) ||
180 (verb
& ~0xfff) || (parm
& ~0xffff)) {
181 printk(KERN_ERR
"hda-codec: out of range cmd %x:%x:%x:%x:%x\n",
182 codec
->addr
, direct
, nid
, verb
, parm
);
186 val
= (u32
)codec
->addr
<< 28;
187 val
|= (u32
)direct
<< 27;
188 val
|= (u32
)nid
<< 20;
195 * Send and receive a verb
197 static int codec_exec_verb(struct hda_codec
*codec
, unsigned int cmd
,
200 struct hda_bus
*bus
= codec
->bus
;
209 snd_hda_power_up(codec
);
210 mutex_lock(&bus
->cmd_mutex
);
211 err
= bus
->ops
.command(bus
, cmd
);
213 *res
= bus
->ops
.get_response(bus
, codec
->addr
);
214 mutex_unlock(&bus
->cmd_mutex
);
215 snd_hda_power_down(codec
);
216 if (res
&& *res
== -1 && bus
->rirb_error
) {
217 if (bus
->response_reset
) {
218 snd_printd("hda_codec: resetting BUS due to "
219 "fatal communication error\n");
220 bus
->ops
.bus_reset(bus
);
224 /* clear reset-flag when the communication gets recovered */
226 bus
->response_reset
= 0;
231 * snd_hda_codec_read - send a command and get the response
232 * @codec: the HDA codec
233 * @nid: NID to send the command
234 * @direct: direct flag
235 * @verb: the verb to send
236 * @parm: the parameter for the verb
238 * Send a single command and read the corresponding response.
240 * Returns the obtained response value, or -1 for an error.
242 unsigned int snd_hda_codec_read(struct hda_codec
*codec
, hda_nid_t nid
,
244 unsigned int verb
, unsigned int parm
)
246 unsigned cmd
= make_codec_cmd(codec
, nid
, direct
, verb
, parm
);
248 if (codec_exec_verb(codec
, cmd
, &res
))
252 EXPORT_SYMBOL_HDA(snd_hda_codec_read
);
255 * snd_hda_codec_write - send a single command without waiting for response
256 * @codec: the HDA codec
257 * @nid: NID to send the command
258 * @direct: direct flag
259 * @verb: the verb to send
260 * @parm: the parameter for the verb
262 * Send a single command without waiting for response.
264 * Returns 0 if successful, or a negative error code.
266 int snd_hda_codec_write(struct hda_codec
*codec
, hda_nid_t nid
, int direct
,
267 unsigned int verb
, unsigned int parm
)
269 unsigned int cmd
= make_codec_cmd(codec
, nid
, direct
, verb
, parm
);
271 return codec_exec_verb(codec
, cmd
,
272 codec
->bus
->sync_write
? &res
: NULL
);
274 EXPORT_SYMBOL_HDA(snd_hda_codec_write
);
277 * snd_hda_sequence_write - sequence writes
278 * @codec: the HDA codec
279 * @seq: VERB array to send
281 * Send the commands sequentially from the given array.
282 * The array must be terminated with NID=0.
284 void snd_hda_sequence_write(struct hda_codec
*codec
, const struct hda_verb
*seq
)
286 for (; seq
->nid
; seq
++)
287 snd_hda_codec_write(codec
, seq
->nid
, 0, seq
->verb
, seq
->param
);
289 EXPORT_SYMBOL_HDA(snd_hda_sequence_write
);
292 * snd_hda_get_sub_nodes - get the range of sub nodes
293 * @codec: the HDA codec
295 * @start_id: the pointer to store the start NID
297 * Parse the NID and store the start NID of its sub-nodes.
298 * Returns the number of sub-nodes.
300 int snd_hda_get_sub_nodes(struct hda_codec
*codec
, hda_nid_t nid
,
305 parm
= snd_hda_param_read(codec
, nid
, AC_PAR_NODE_COUNT
);
308 *start_id
= (parm
>> 16) & 0x7fff;
309 return (int)(parm
& 0x7fff);
311 EXPORT_SYMBOL_HDA(snd_hda_get_sub_nodes
);
313 /* look up the cached results */
314 static hda_nid_t
*lookup_conn_list(struct snd_array
*array
, hda_nid_t nid
)
317 for (i
= 0; i
< array
->used
; ) {
318 hda_nid_t
*p
= snd_array_elem(array
, i
);
328 * snd_hda_get_conn_list - get connection list
329 * @codec: the HDA codec
331 * @listp: the pointer to store NID list
333 * Parses the connection list of the given widget and stores the list
336 * Returns the number of connections, or a negative error code.
338 int snd_hda_get_conn_list(struct hda_codec
*codec
, hda_nid_t nid
,
339 const hda_nid_t
**listp
)
341 struct snd_array
*array
= &codec
->conn_lists
;
343 hda_nid_t list
[HDA_MAX_CONNECTIONS
];
348 /* if the connection-list is already cached, read it */
349 p
= lookup_conn_list(array
, nid
);
355 if (snd_BUG_ON(added
))
358 /* read the connection and add to the cache */
359 len
= snd_hda_get_raw_connections(codec
, nid
, list
, HDA_MAX_CONNECTIONS
);
362 err
= snd_hda_override_conn_list(codec
, nid
, len
, list
);
368 EXPORT_SYMBOL_HDA(snd_hda_get_conn_list
);
371 * snd_hda_get_connections - copy connection list
372 * @codec: the HDA codec
374 * @conn_list: connection list array
375 * @max_conns: max. number of connections to store
377 * Parses the connection list of the given widget and stores the list
380 * Returns the number of connections, or a negative error code.
382 int snd_hda_get_connections(struct hda_codec
*codec
, hda_nid_t nid
,
383 hda_nid_t
*conn_list
, int max_conns
)
385 const hda_nid_t
*list
;
386 int len
= snd_hda_get_conn_list(codec
, nid
, &list
);
390 if (len
> max_conns
) {
391 snd_printk(KERN_ERR
"hda_codec: "
392 "Too many connections %d for NID 0x%x\n",
396 memcpy(conn_list
, list
, len
* sizeof(hda_nid_t
));
399 EXPORT_SYMBOL_HDA(snd_hda_get_connections
);
402 * snd_hda_get_raw_connections - copy connection list without cache
403 * @codec: the HDA codec
405 * @conn_list: connection list array
406 * @max_conns: max. number of connections to store
408 * Like snd_hda_get_connections(), copy the connection list but without
409 * checking through the connection-list cache.
410 * Currently called only from hda_proc.c, so not exported.
412 int snd_hda_get_raw_connections(struct hda_codec
*codec
, hda_nid_t nid
,
413 hda_nid_t
*conn_list
, int max_conns
)
416 int i
, conn_len
, conns
;
417 unsigned int shift
, num_elems
, mask
;
421 if (snd_BUG_ON(!conn_list
|| max_conns
<= 0))
424 wcaps
= get_wcaps(codec
, nid
);
425 if (!(wcaps
& AC_WCAP_CONN_LIST
) &&
426 get_wcaps_type(wcaps
) != AC_WID_VOL_KNB
)
429 parm
= snd_hda_param_read(codec
, nid
, AC_PAR_CONNLIST_LEN
);
430 if (parm
& AC_CLIST_LONG
) {
439 conn_len
= parm
& AC_CLIST_LENGTH
;
440 mask
= (1 << (shift
-1)) - 1;
443 return 0; /* no connection */
446 /* single connection */
447 parm
= snd_hda_codec_read(codec
, nid
, 0,
448 AC_VERB_GET_CONNECT_LIST
, 0);
449 if (parm
== -1 && codec
->bus
->rirb_error
)
451 conn_list
[0] = parm
& mask
;
455 /* multi connection */
458 for (i
= 0; i
< conn_len
; i
++) {
462 if (i
% num_elems
== 0) {
463 parm
= snd_hda_codec_read(codec
, nid
, 0,
464 AC_VERB_GET_CONNECT_LIST
, i
);
465 if (parm
== -1 && codec
->bus
->rirb_error
)
468 range_val
= !!(parm
& (1 << (shift
-1))); /* ranges */
471 snd_printk(KERN_WARNING
"hda_codec: "
472 "invalid CONNECT_LIST verb %x[%i]:%x\n",
478 /* ranges between the previous and this one */
479 if (!prev_nid
|| prev_nid
>= val
) {
480 snd_printk(KERN_WARNING
"hda_codec: "
481 "invalid dep_range_val %x:%x\n",
485 for (n
= prev_nid
+ 1; n
<= val
; n
++) {
486 if (conns
>= max_conns
) {
487 snd_printk(KERN_ERR
"hda_codec: "
488 "Too many connections %d for NID 0x%x\n",
492 conn_list
[conns
++] = n
;
495 if (conns
>= max_conns
) {
496 snd_printk(KERN_ERR
"hda_codec: "
497 "Too many connections %d for NID 0x%x\n",
501 conn_list
[conns
++] = val
;
508 static bool add_conn_list(struct snd_array
*array
, hda_nid_t nid
)
510 hda_nid_t
*p
= snd_array_new(array
);
518 * snd_hda_override_conn_list - add/modify the connection-list to cache
519 * @codec: the HDA codec
521 * @len: number of connection list entries
522 * @list: the list of connection entries
524 * Add or modify the given connection-list to the cache. If the corresponding
525 * cache already exists, invalidate it and append a new one.
527 * Returns zero or a negative error code.
529 int snd_hda_override_conn_list(struct hda_codec
*codec
, hda_nid_t nid
, int len
,
530 const hda_nid_t
*list
)
532 struct snd_array
*array
= &codec
->conn_lists
;
536 p
= lookup_conn_list(array
, nid
);
538 *p
= -1; /* invalidate the old entry */
540 old_used
= array
->used
;
541 if (!add_conn_list(array
, nid
) || !add_conn_list(array
, len
))
543 for (i
= 0; i
< len
; i
++)
544 if (!add_conn_list(array
, list
[i
]))
549 array
->used
= old_used
;
552 EXPORT_SYMBOL_HDA(snd_hda_override_conn_list
);
555 * snd_hda_get_conn_index - get the connection index of the given NID
556 * @codec: the HDA codec
557 * @mux: NID containing the list
558 * @nid: NID to select
559 * @recursive: 1 when searching NID recursively, otherwise 0
561 * Parses the connection list of the widget @mux and checks whether the
562 * widget @nid is present. If it is, return the connection index.
563 * Otherwise it returns -1.
565 int snd_hda_get_conn_index(struct hda_codec
*codec
, hda_nid_t mux
,
566 hda_nid_t nid
, int recursive
)
568 hda_nid_t conn
[HDA_MAX_NUM_INPUTS
];
571 nums
= snd_hda_get_connections(codec
, mux
, conn
, ARRAY_SIZE(conn
));
572 for (i
= 0; i
< nums
; i
++)
578 snd_printd("hda_codec: too deep connection for 0x%x\n", nid
);
582 for (i
= 0; i
< nums
; i
++) {
583 unsigned int type
= get_wcaps_type(get_wcaps(codec
, conn
[i
]));
584 if (type
== AC_WID_PIN
|| type
== AC_WID_AUD_OUT
)
586 if (snd_hda_get_conn_index(codec
, conn
[i
], nid
, recursive
) >= 0)
591 EXPORT_SYMBOL_HDA(snd_hda_get_conn_index
);
594 * snd_hda_queue_unsol_event - add an unsolicited event to queue
596 * @res: unsolicited event (lower 32bit of RIRB entry)
597 * @res_ex: codec addr and flags (upper 32bit or RIRB entry)
599 * Adds the given event to the queue. The events are processed in
600 * the workqueue asynchronously. Call this function in the interrupt
601 * hanlder when RIRB receives an unsolicited event.
603 * Returns 0 if successful, or a negative error code.
605 int snd_hda_queue_unsol_event(struct hda_bus
*bus
, u32 res
, u32 res_ex
)
607 struct hda_bus_unsolicited
*unsol
;
614 wp
= (unsol
->wp
+ 1) % HDA_UNSOL_QUEUE_SIZE
;
618 unsol
->queue
[wp
] = res
;
619 unsol
->queue
[wp
+ 1] = res_ex
;
621 queue_work(bus
->workq
, &unsol
->work
);
625 EXPORT_SYMBOL_HDA(snd_hda_queue_unsol_event
);
628 * process queued unsolicited events
630 static void process_unsol_events(struct work_struct
*work
)
632 struct hda_bus_unsolicited
*unsol
=
633 container_of(work
, struct hda_bus_unsolicited
, work
);
634 struct hda_bus
*bus
= unsol
->bus
;
635 struct hda_codec
*codec
;
636 unsigned int rp
, caddr
, res
;
638 while (unsol
->rp
!= unsol
->wp
) {
639 rp
= (unsol
->rp
+ 1) % HDA_UNSOL_QUEUE_SIZE
;
642 res
= unsol
->queue
[rp
];
643 caddr
= unsol
->queue
[rp
+ 1];
644 if (!(caddr
& (1 << 4))) /* no unsolicited event? */
646 codec
= bus
->caddr_tbl
[caddr
& 0x0f];
647 if (codec
&& codec
->patch_ops
.unsol_event
)
648 codec
->patch_ops
.unsol_event(codec
, res
);
653 * initialize unsolicited queue
655 static int init_unsol_queue(struct hda_bus
*bus
)
657 struct hda_bus_unsolicited
*unsol
;
659 if (bus
->unsol
) /* already initialized */
662 unsol
= kzalloc(sizeof(*unsol
), GFP_KERNEL
);
664 snd_printk(KERN_ERR
"hda_codec: "
665 "can't allocate unsolicited queue\n");
668 INIT_WORK(&unsol
->work
, process_unsol_events
);
677 static void snd_hda_codec_free(struct hda_codec
*codec
);
679 static int snd_hda_bus_free(struct hda_bus
*bus
)
681 struct hda_codec
*codec
, *n
;
686 flush_workqueue(bus
->workq
);
689 list_for_each_entry_safe(codec
, n
, &bus
->codec_list
, list
) {
690 snd_hda_codec_free(codec
);
692 if (bus
->ops
.private_free
)
693 bus
->ops
.private_free(bus
);
695 destroy_workqueue(bus
->workq
);
700 static int snd_hda_bus_dev_free(struct snd_device
*device
)
702 struct hda_bus
*bus
= device
->device_data
;
704 return snd_hda_bus_free(bus
);
707 #ifdef CONFIG_SND_HDA_HWDEP
708 static int snd_hda_bus_dev_register(struct snd_device
*device
)
710 struct hda_bus
*bus
= device
->device_data
;
711 struct hda_codec
*codec
;
712 list_for_each_entry(codec
, &bus
->codec_list
, list
) {
713 snd_hda_hwdep_add_sysfs(codec
);
714 snd_hda_hwdep_add_power_sysfs(codec
);
719 #define snd_hda_bus_dev_register NULL
723 * snd_hda_bus_new - create a HDA bus
724 * @card: the card entry
725 * @temp: the template for hda_bus information
726 * @busp: the pointer to store the created bus instance
728 * Returns 0 if successful, or a negative error code.
730 int /*__devinit*/ snd_hda_bus_new(struct snd_card
*card
,
731 const struct hda_bus_template
*temp
,
732 struct hda_bus
**busp
)
736 static struct snd_device_ops dev_ops
= {
737 .dev_register
= snd_hda_bus_dev_register
,
738 .dev_free
= snd_hda_bus_dev_free
,
741 if (snd_BUG_ON(!temp
))
743 if (snd_BUG_ON(!temp
->ops
.command
|| !temp
->ops
.get_response
))
749 bus
= kzalloc(sizeof(*bus
), GFP_KERNEL
);
751 snd_printk(KERN_ERR
"can't allocate struct hda_bus\n");
756 bus
->private_data
= temp
->private_data
;
757 bus
->pci
= temp
->pci
;
758 bus
->modelname
= temp
->modelname
;
759 bus
->power_save
= temp
->power_save
;
760 bus
->ops
= temp
->ops
;
762 mutex_init(&bus
->cmd_mutex
);
763 mutex_init(&bus
->prepare_mutex
);
764 INIT_LIST_HEAD(&bus
->codec_list
);
766 snprintf(bus
->workq_name
, sizeof(bus
->workq_name
),
767 "hd-audio%d", card
->number
);
768 bus
->workq
= create_singlethread_workqueue(bus
->workq_name
);
770 snd_printk(KERN_ERR
"cannot create workqueue %s\n",
776 err
= snd_device_new(card
, SNDRV_DEV_BUS
, bus
, &dev_ops
);
778 snd_hda_bus_free(bus
);
785 EXPORT_SYMBOL_HDA(snd_hda_bus_new
);
787 #ifdef CONFIG_SND_HDA_GENERIC
788 #define is_generic_config(codec) \
789 (codec->modelname && !strcmp(codec->modelname, "generic"))
791 #define is_generic_config(codec) 0
795 #define HDA_MODREQ_MAX_COUNT 2 /* two request_modules()'s */
797 #define HDA_MODREQ_MAX_COUNT 0 /* all presets are statically linked */
801 * find a matching codec preset
803 static const struct hda_codec_preset
*
804 find_codec_preset(struct hda_codec
*codec
)
806 struct hda_codec_preset_list
*tbl
;
807 const struct hda_codec_preset
*preset
;
808 int mod_requested
= 0;
810 if (is_generic_config(codec
))
811 return NULL
; /* use the generic parser */
814 mutex_lock(&preset_mutex
);
815 list_for_each_entry(tbl
, &hda_preset_tables
, list
) {
816 if (!try_module_get(tbl
->owner
)) {
817 snd_printk(KERN_ERR
"hda_codec: cannot module_get\n");
820 for (preset
= tbl
->preset
; preset
->id
; preset
++) {
821 u32 mask
= preset
->mask
;
822 if (preset
->afg
&& preset
->afg
!= codec
->afg
)
824 if (preset
->mfg
&& preset
->mfg
!= codec
->mfg
)
828 if (preset
->id
== (codec
->vendor_id
& mask
) &&
830 preset
->rev
== codec
->revision_id
)) {
831 mutex_unlock(&preset_mutex
);
832 codec
->owner
= tbl
->owner
;
836 module_put(tbl
->owner
);
838 mutex_unlock(&preset_mutex
);
840 if (mod_requested
< HDA_MODREQ_MAX_COUNT
) {
843 snprintf(name
, sizeof(name
), "snd-hda-codec-id:%08x",
846 snprintf(name
, sizeof(name
), "snd-hda-codec-id:%04x*",
847 (codec
->vendor_id
>> 16) & 0xffff);
848 request_module(name
);
856 * get_codec_name - store the codec name
858 static int get_codec_name(struct hda_codec
*codec
)
860 const struct hda_vendor_id
*c
;
861 const char *vendor
= NULL
;
862 u16 vendor_id
= codec
->vendor_id
>> 16;
865 if (codec
->vendor_name
)
868 for (c
= hda_vendor_ids
; c
->id
; c
++) {
869 if (c
->id
== vendor_id
) {
875 sprintf(tmp
, "Generic %04x", vendor_id
);
878 codec
->vendor_name
= kstrdup(vendor
, GFP_KERNEL
);
879 if (!codec
->vendor_name
)
883 if (codec
->chip_name
)
886 if (codec
->preset
&& codec
->preset
->name
)
887 codec
->chip_name
= kstrdup(codec
->preset
->name
, GFP_KERNEL
);
889 sprintf(tmp
, "ID %x", codec
->vendor_id
& 0xffff);
890 codec
->chip_name
= kstrdup(tmp
, GFP_KERNEL
);
892 if (!codec
->chip_name
)
898 * look for an AFG and MFG nodes
900 static void /*__devinit*/ setup_fg_nodes(struct hda_codec
*codec
)
902 int i
, total_nodes
, function_id
;
905 total_nodes
= snd_hda_get_sub_nodes(codec
, AC_NODE_ROOT
, &nid
);
906 for (i
= 0; i
< total_nodes
; i
++, nid
++) {
907 function_id
= snd_hda_param_read(codec
, nid
,
908 AC_PAR_FUNCTION_TYPE
);
909 switch (function_id
& 0xff) {
910 case AC_GRP_AUDIO_FUNCTION
:
912 codec
->afg_function_id
= function_id
& 0xff;
913 codec
->afg_unsol
= (function_id
>> 8) & 1;
915 case AC_GRP_MODEM_FUNCTION
:
917 codec
->mfg_function_id
= function_id
& 0xff;
918 codec
->mfg_unsol
= (function_id
>> 8) & 1;
927 * read widget caps for each widget and store in cache
929 static int read_widget_caps(struct hda_codec
*codec
, hda_nid_t fg_node
)
934 codec
->num_nodes
= snd_hda_get_sub_nodes(codec
, fg_node
,
936 codec
->wcaps
= kmalloc(codec
->num_nodes
* 4, GFP_KERNEL
);
939 nid
= codec
->start_nid
;
940 for (i
= 0; i
< codec
->num_nodes
; i
++, nid
++)
941 codec
->wcaps
[i
] = snd_hda_param_read(codec
, nid
,
942 AC_PAR_AUDIO_WIDGET_CAP
);
946 /* read all pin default configurations and save codec->init_pins */
947 static int read_pin_defaults(struct hda_codec
*codec
)
950 hda_nid_t nid
= codec
->start_nid
;
952 for (i
= 0; i
< codec
->num_nodes
; i
++, nid
++) {
953 struct hda_pincfg
*pin
;
954 unsigned int wcaps
= get_wcaps(codec
, nid
);
955 unsigned int wid_type
= get_wcaps_type(wcaps
);
956 if (wid_type
!= AC_WID_PIN
)
958 pin
= snd_array_new(&codec
->init_pins
);
962 pin
->cfg
= snd_hda_codec_read(codec
, nid
, 0,
963 AC_VERB_GET_CONFIG_DEFAULT
, 0);
964 pin
->ctrl
= snd_hda_codec_read(codec
, nid
, 0,
965 AC_VERB_GET_PIN_WIDGET_CONTROL
,
971 /* look up the given pin config list and return the item matching with NID */
972 static struct hda_pincfg
*look_up_pincfg(struct hda_codec
*codec
,
973 struct snd_array
*array
,
977 for (i
= 0; i
< array
->used
; i
++) {
978 struct hda_pincfg
*pin
= snd_array_elem(array
, i
);
985 /* write a config value for the given NID */
986 static void set_pincfg(struct hda_codec
*codec
, hda_nid_t nid
,
990 for (i
= 0; i
< 4; i
++) {
991 snd_hda_codec_write(codec
, nid
, 0,
992 AC_VERB_SET_CONFIG_DEFAULT_BYTES_0
+ i
,
998 /* set the current pin config value for the given NID.
999 * the value is cached, and read via snd_hda_codec_get_pincfg()
1001 int snd_hda_add_pincfg(struct hda_codec
*codec
, struct snd_array
*list
,
1002 hda_nid_t nid
, unsigned int cfg
)
1004 struct hda_pincfg
*pin
;
1005 unsigned int oldcfg
;
1007 if (get_wcaps_type(get_wcaps(codec
, nid
)) != AC_WID_PIN
)
1010 oldcfg
= snd_hda_codec_get_pincfg(codec
, nid
);
1011 pin
= look_up_pincfg(codec
, list
, nid
);
1013 pin
= snd_array_new(list
);
1020 /* change only when needed; e.g. if the pincfg is already present
1021 * in user_pins[], don't write it
1023 cfg
= snd_hda_codec_get_pincfg(codec
, nid
);
1025 set_pincfg(codec
, nid
, cfg
);
1030 * snd_hda_codec_set_pincfg - Override a pin default configuration
1031 * @codec: the HDA codec
1032 * @nid: NID to set the pin config
1033 * @cfg: the pin default config value
1035 * Override a pin default configuration value in the cache.
1036 * This value can be read by snd_hda_codec_get_pincfg() in a higher
1037 * priority than the real hardware value.
1039 int snd_hda_codec_set_pincfg(struct hda_codec
*codec
,
1040 hda_nid_t nid
, unsigned int cfg
)
1042 return snd_hda_add_pincfg(codec
, &codec
->driver_pins
, nid
, cfg
);
1044 EXPORT_SYMBOL_HDA(snd_hda_codec_set_pincfg
);
1047 * snd_hda_codec_get_pincfg - Obtain a pin-default configuration
1048 * @codec: the HDA codec
1049 * @nid: NID to get the pin config
1051 * Get the current pin config value of the given pin NID.
1052 * If the pincfg value is cached or overridden via sysfs or driver,
1053 * returns the cached value.
1055 unsigned int snd_hda_codec_get_pincfg(struct hda_codec
*codec
, hda_nid_t nid
)
1057 struct hda_pincfg
*pin
;
1059 #ifdef CONFIG_SND_HDA_HWDEP
1060 pin
= look_up_pincfg(codec
, &codec
->user_pins
, nid
);
1064 pin
= look_up_pincfg(codec
, &codec
->driver_pins
, nid
);
1067 pin
= look_up_pincfg(codec
, &codec
->init_pins
, nid
);
1072 EXPORT_SYMBOL_HDA(snd_hda_codec_get_pincfg
);
1074 /* restore all current pin configs */
1075 static void restore_pincfgs(struct hda_codec
*codec
)
1078 for (i
= 0; i
< codec
->init_pins
.used
; i
++) {
1079 struct hda_pincfg
*pin
= snd_array_elem(&codec
->init_pins
, i
);
1080 set_pincfg(codec
, pin
->nid
,
1081 snd_hda_codec_get_pincfg(codec
, pin
->nid
));
1086 * snd_hda_shutup_pins - Shut up all pins
1087 * @codec: the HDA codec
1089 * Clear all pin controls to shup up before suspend for avoiding click noise.
1090 * The controls aren't cached so that they can be resumed properly.
1092 void snd_hda_shutup_pins(struct hda_codec
*codec
)
1095 /* don't shut up pins when unloading the driver; otherwise it breaks
1096 * the default pin setup at the next load of the driver
1098 if (codec
->bus
->shutdown
)
1100 for (i
= 0; i
< codec
->init_pins
.used
; i
++) {
1101 struct hda_pincfg
*pin
= snd_array_elem(&codec
->init_pins
, i
);
1102 /* use read here for syncing after issuing each verb */
1103 snd_hda_codec_read(codec
, pin
->nid
, 0,
1104 AC_VERB_SET_PIN_WIDGET_CONTROL
, 0);
1106 codec
->pins_shutup
= 1;
1108 EXPORT_SYMBOL_HDA(snd_hda_shutup_pins
);
1111 /* Restore the pin controls cleared previously via snd_hda_shutup_pins() */
1112 static void restore_shutup_pins(struct hda_codec
*codec
)
1115 if (!codec
->pins_shutup
)
1117 if (codec
->bus
->shutdown
)
1119 for (i
= 0; i
< codec
->init_pins
.used
; i
++) {
1120 struct hda_pincfg
*pin
= snd_array_elem(&codec
->init_pins
, i
);
1121 snd_hda_codec_write(codec
, pin
->nid
, 0,
1122 AC_VERB_SET_PIN_WIDGET_CONTROL
,
1125 codec
->pins_shutup
= 0;
1129 static void init_hda_cache(struct hda_cache_rec
*cache
,
1130 unsigned int record_size
);
1131 static void free_hda_cache(struct hda_cache_rec
*cache
);
1133 /* restore the initial pin cfgs and release all pincfg lists */
1134 static void restore_init_pincfgs(struct hda_codec
*codec
)
1136 /* first free driver_pins and user_pins, then call restore_pincfg
1137 * so that only the values in init_pins are restored
1139 snd_array_free(&codec
->driver_pins
);
1140 #ifdef CONFIG_SND_HDA_HWDEP
1141 snd_array_free(&codec
->user_pins
);
1143 restore_pincfgs(codec
);
1144 snd_array_free(&codec
->init_pins
);
1148 * audio-converter setup caches
1150 struct hda_cvt_setup
{
1155 unsigned char active
; /* cvt is currently used */
1156 unsigned char dirty
; /* setups should be cleared */
1159 /* get or create a cache entry for the given audio converter NID */
1160 static struct hda_cvt_setup
*
1161 get_hda_cvt_setup(struct hda_codec
*codec
, hda_nid_t nid
)
1163 struct hda_cvt_setup
*p
;
1166 for (i
= 0; i
< codec
->cvt_setups
.used
; i
++) {
1167 p
= snd_array_elem(&codec
->cvt_setups
, i
);
1171 p
= snd_array_new(&codec
->cvt_setups
);
1180 static void snd_hda_codec_free(struct hda_codec
*codec
)
1184 restore_init_pincfgs(codec
);
1185 #ifdef CONFIG_SND_HDA_POWER_SAVE
1186 cancel_delayed_work(&codec
->power_work
);
1187 flush_workqueue(codec
->bus
->workq
);
1189 list_del(&codec
->list
);
1190 snd_array_free(&codec
->mixers
);
1191 snd_array_free(&codec
->nids
);
1192 snd_array_free(&codec
->conn_lists
);
1193 snd_array_free(&codec
->spdif_out
);
1194 codec
->bus
->caddr_tbl
[codec
->addr
] = NULL
;
1195 if (codec
->patch_ops
.free
)
1196 codec
->patch_ops
.free(codec
);
1197 module_put(codec
->owner
);
1198 free_hda_cache(&codec
->amp_cache
);
1199 free_hda_cache(&codec
->cmd_cache
);
1200 kfree(codec
->vendor_name
);
1201 kfree(codec
->chip_name
);
1202 kfree(codec
->modelname
);
1203 kfree(codec
->wcaps
);
1207 static void hda_set_power_state(struct hda_codec
*codec
, hda_nid_t fg
,
1208 unsigned int power_state
);
1211 * snd_hda_codec_new - create a HDA codec
1212 * @bus: the bus to assign
1213 * @codec_addr: the codec address
1214 * @codecp: the pointer to store the generated codec
1216 * Returns 0 if successful, or a negative error code.
1218 int /*__devinit*/ snd_hda_codec_new(struct hda_bus
*bus
,
1219 unsigned int codec_addr
,
1220 struct hda_codec
**codecp
)
1222 struct hda_codec
*codec
;
1226 if (snd_BUG_ON(!bus
))
1228 if (snd_BUG_ON(codec_addr
> HDA_MAX_CODEC_ADDRESS
))
1231 if (bus
->caddr_tbl
[codec_addr
]) {
1232 snd_printk(KERN_ERR
"hda_codec: "
1233 "address 0x%x is already occupied\n", codec_addr
);
1237 codec
= kzalloc(sizeof(*codec
), GFP_KERNEL
);
1238 if (codec
== NULL
) {
1239 snd_printk(KERN_ERR
"can't allocate struct hda_codec\n");
1244 codec
->addr
= codec_addr
;
1245 mutex_init(&codec
->spdif_mutex
);
1246 mutex_init(&codec
->control_mutex
);
1247 init_hda_cache(&codec
->amp_cache
, sizeof(struct hda_amp_info
));
1248 init_hda_cache(&codec
->cmd_cache
, sizeof(struct hda_cache_head
));
1249 snd_array_init(&codec
->mixers
, sizeof(struct hda_nid_item
), 32);
1250 snd_array_init(&codec
->nids
, sizeof(struct hda_nid_item
), 32);
1251 snd_array_init(&codec
->init_pins
, sizeof(struct hda_pincfg
), 16);
1252 snd_array_init(&codec
->driver_pins
, sizeof(struct hda_pincfg
), 16);
1253 snd_array_init(&codec
->cvt_setups
, sizeof(struct hda_cvt_setup
), 8);
1254 snd_array_init(&codec
->conn_lists
, sizeof(hda_nid_t
), 64);
1255 snd_array_init(&codec
->spdif_out
, sizeof(struct hda_spdif_out
), 16);
1256 if (codec
->bus
->modelname
) {
1257 codec
->modelname
= kstrdup(codec
->bus
->modelname
, GFP_KERNEL
);
1258 if (!codec
->modelname
) {
1259 snd_hda_codec_free(codec
);
1264 #ifdef CONFIG_SND_HDA_POWER_SAVE
1265 INIT_DELAYED_WORK(&codec
->power_work
, hda_power_work
);
1266 /* snd_hda_codec_new() marks the codec as power-up, and leave it as is.
1267 * the caller has to power down appropriatley after initialization
1270 hda_keep_power_on(codec
);
1273 list_add_tail(&codec
->list
, &bus
->codec_list
);
1274 bus
->caddr_tbl
[codec_addr
] = codec
;
1276 codec
->vendor_id
= snd_hda_param_read(codec
, AC_NODE_ROOT
,
1278 if (codec
->vendor_id
== -1)
1279 /* read again, hopefully the access method was corrected
1280 * in the last read...
1282 codec
->vendor_id
= snd_hda_param_read(codec
, AC_NODE_ROOT
,
1284 codec
->subsystem_id
= snd_hda_param_read(codec
, AC_NODE_ROOT
,
1285 AC_PAR_SUBSYSTEM_ID
);
1286 codec
->revision_id
= snd_hda_param_read(codec
, AC_NODE_ROOT
,
1289 setup_fg_nodes(codec
);
1290 if (!codec
->afg
&& !codec
->mfg
) {
1291 snd_printdd("hda_codec: no AFG or MFG node found\n");
1296 err
= read_widget_caps(codec
, codec
->afg
? codec
->afg
: codec
->mfg
);
1298 snd_printk(KERN_ERR
"hda_codec: cannot malloc\n");
1301 err
= read_pin_defaults(codec
);
1305 if (!codec
->subsystem_id
) {
1306 hda_nid_t nid
= codec
->afg
? codec
->afg
: codec
->mfg
;
1307 codec
->subsystem_id
=
1308 snd_hda_codec_read(codec
, nid
, 0,
1309 AC_VERB_GET_SUBSYSTEM_ID
, 0);
1312 /* power-up all before initialization */
1313 hda_set_power_state(codec
,
1314 codec
->afg
? codec
->afg
: codec
->mfg
,
1317 snd_hda_codec_proc_new(codec
);
1319 snd_hda_create_hwdep(codec
);
1321 sprintf(component
, "HDA:%08x,%08x,%08x", codec
->vendor_id
,
1322 codec
->subsystem_id
, codec
->revision_id
);
1323 snd_component_add(codec
->bus
->card
, component
);
1330 snd_hda_codec_free(codec
);
1333 EXPORT_SYMBOL_HDA(snd_hda_codec_new
);
1336 * snd_hda_codec_configure - (Re-)configure the HD-audio codec
1337 * @codec: the HDA codec
1339 * Start parsing of the given codec tree and (re-)initialize the whole
1342 * Returns 0 if successful or a negative error code.
1344 int snd_hda_codec_configure(struct hda_codec
*codec
)
1348 codec
->preset
= find_codec_preset(codec
);
1349 if (!codec
->vendor_name
|| !codec
->chip_name
) {
1350 err
= get_codec_name(codec
);
1355 if (is_generic_config(codec
)) {
1356 err
= snd_hda_parse_generic_codec(codec
);
1359 if (codec
->preset
&& codec
->preset
->patch
) {
1360 err
= codec
->preset
->patch(codec
);
1364 /* call the default parser */
1365 err
= snd_hda_parse_generic_codec(codec
);
1367 printk(KERN_ERR
"hda-codec: No codec parser is available\n");
1370 if (!err
&& codec
->patch_ops
.unsol_event
)
1371 err
= init_unsol_queue(codec
->bus
);
1372 /* audio codec should override the mixer name */
1373 if (!err
&& (codec
->afg
|| !*codec
->bus
->card
->mixername
))
1374 snprintf(codec
->bus
->card
->mixername
,
1375 sizeof(codec
->bus
->card
->mixername
),
1376 "%s %s", codec
->vendor_name
, codec
->chip_name
);
1379 EXPORT_SYMBOL_HDA(snd_hda_codec_configure
);
1382 * snd_hda_codec_setup_stream - set up the codec for streaming
1383 * @codec: the CODEC to set up
1384 * @nid: the NID to set up
1385 * @stream_tag: stream tag to pass, it's between 0x1 and 0xf.
1386 * @channel_id: channel id to pass, zero based.
1387 * @format: stream format.
1389 void snd_hda_codec_setup_stream(struct hda_codec
*codec
, hda_nid_t nid
,
1391 int channel_id
, int format
)
1393 struct hda_codec
*c
;
1394 struct hda_cvt_setup
*p
;
1395 unsigned int oldval
, newval
;
1402 snd_printdd("hda_codec_setup_stream: "
1403 "NID=0x%x, stream=0x%x, channel=%d, format=0x%x\n",
1404 nid
, stream_tag
, channel_id
, format
);
1405 p
= get_hda_cvt_setup(codec
, nid
);
1408 /* update the stream-id if changed */
1409 if (p
->stream_tag
!= stream_tag
|| p
->channel_id
!= channel_id
) {
1410 oldval
= snd_hda_codec_read(codec
, nid
, 0, AC_VERB_GET_CONV
, 0);
1411 newval
= (stream_tag
<< 4) | channel_id
;
1412 if (oldval
!= newval
)
1413 snd_hda_codec_write(codec
, nid
, 0,
1414 AC_VERB_SET_CHANNEL_STREAMID
,
1416 p
->stream_tag
= stream_tag
;
1417 p
->channel_id
= channel_id
;
1419 /* update the format-id if changed */
1420 if (p
->format_id
!= format
) {
1421 oldval
= snd_hda_codec_read(codec
, nid
, 0,
1422 AC_VERB_GET_STREAM_FORMAT
, 0);
1423 if (oldval
!= format
) {
1425 snd_hda_codec_write(codec
, nid
, 0,
1426 AC_VERB_SET_STREAM_FORMAT
,
1429 p
->format_id
= format
;
1434 /* make other inactive cvts with the same stream-tag dirty */
1435 type
= get_wcaps_type(get_wcaps(codec
, nid
));
1436 list_for_each_entry(c
, &codec
->bus
->codec_list
, list
) {
1437 for (i
= 0; i
< c
->cvt_setups
.used
; i
++) {
1438 p
= snd_array_elem(&c
->cvt_setups
, i
);
1439 if (!p
->active
&& p
->stream_tag
== stream_tag
&&
1440 get_wcaps_type(get_wcaps(codec
, p
->nid
)) == type
)
1445 EXPORT_SYMBOL_HDA(snd_hda_codec_setup_stream
);
1447 static void really_cleanup_stream(struct hda_codec
*codec
,
1448 struct hda_cvt_setup
*q
);
1451 * __snd_hda_codec_cleanup_stream - clean up the codec for closing
1452 * @codec: the CODEC to clean up
1453 * @nid: the NID to clean up
1454 * @do_now: really clean up the stream instead of clearing the active flag
1456 void __snd_hda_codec_cleanup_stream(struct hda_codec
*codec
, hda_nid_t nid
,
1459 struct hda_cvt_setup
*p
;
1464 if (codec
->no_sticky_stream
)
1467 snd_printdd("hda_codec_cleanup_stream: NID=0x%x\n", nid
);
1468 p
= get_hda_cvt_setup(codec
, nid
);
1470 /* here we just clear the active flag when do_now isn't set;
1471 * actual clean-ups will be done later in
1472 * purify_inactive_streams() called from snd_hda_codec_prpapre()
1475 really_cleanup_stream(codec
, p
);
1480 EXPORT_SYMBOL_HDA(__snd_hda_codec_cleanup_stream
);
1482 static void really_cleanup_stream(struct hda_codec
*codec
,
1483 struct hda_cvt_setup
*q
)
1485 hda_nid_t nid
= q
->nid
;
1486 snd_hda_codec_write(codec
, nid
, 0, AC_VERB_SET_CHANNEL_STREAMID
, 0);
1487 snd_hda_codec_write(codec
, nid
, 0, AC_VERB_SET_STREAM_FORMAT
, 0);
1488 memset(q
, 0, sizeof(*q
));
1492 /* clean up the all conflicting obsolete streams */
1493 static void purify_inactive_streams(struct hda_codec
*codec
)
1495 struct hda_codec
*c
;
1498 list_for_each_entry(c
, &codec
->bus
->codec_list
, list
) {
1499 for (i
= 0; i
< c
->cvt_setups
.used
; i
++) {
1500 struct hda_cvt_setup
*p
;
1501 p
= snd_array_elem(&c
->cvt_setups
, i
);
1503 really_cleanup_stream(c
, p
);
1509 /* clean up all streams; called from suspend */
1510 static void hda_cleanup_all_streams(struct hda_codec
*codec
)
1514 for (i
= 0; i
< codec
->cvt_setups
.used
; i
++) {
1515 struct hda_cvt_setup
*p
= snd_array_elem(&codec
->cvt_setups
, i
);
1517 really_cleanup_stream(codec
, p
);
1523 * amp access functions
1526 /* FIXME: more better hash key? */
1527 #define HDA_HASH_KEY(nid, dir, idx) (u32)((nid) + ((idx) << 16) + ((dir) << 24))
1528 #define HDA_HASH_PINCAP_KEY(nid) (u32)((nid) + (0x02 << 24))
1529 #define HDA_HASH_PARPCM_KEY(nid) (u32)((nid) + (0x03 << 24))
1530 #define HDA_HASH_PARSTR_KEY(nid) (u32)((nid) + (0x04 << 24))
1531 #define INFO_AMP_CAPS (1<<0)
1532 #define INFO_AMP_VOL(ch) (1 << (1 + (ch)))
1534 /* initialize the hash table */
1535 static void /*__devinit*/ init_hda_cache(struct hda_cache_rec
*cache
,
1536 unsigned int record_size
)
1538 memset(cache
, 0, sizeof(*cache
));
1539 memset(cache
->hash
, 0xff, sizeof(cache
->hash
));
1540 snd_array_init(&cache
->buf
, record_size
, 64);
1543 static void free_hda_cache(struct hda_cache_rec
*cache
)
1545 snd_array_free(&cache
->buf
);
1548 /* query the hash. allocate an entry if not found. */
1549 static struct hda_cache_head
*get_hash(struct hda_cache_rec
*cache
, u32 key
)
1551 u16 idx
= key
% (u16
)ARRAY_SIZE(cache
->hash
);
1552 u16 cur
= cache
->hash
[idx
];
1553 struct hda_cache_head
*info
;
1555 while (cur
!= 0xffff) {
1556 info
= snd_array_elem(&cache
->buf
, cur
);
1557 if (info
->key
== key
)
1564 /* query the hash. allocate an entry if not found. */
1565 static struct hda_cache_head
*get_alloc_hash(struct hda_cache_rec
*cache
,
1568 struct hda_cache_head
*info
= get_hash(cache
, key
);
1571 /* add a new hash entry */
1572 info
= snd_array_new(&cache
->buf
);
1575 cur
= snd_array_index(&cache
->buf
, info
);
1578 idx
= key
% (u16
)ARRAY_SIZE(cache
->hash
);
1579 info
->next
= cache
->hash
[idx
];
1580 cache
->hash
[idx
] = cur
;
1585 /* query and allocate an amp hash entry */
1586 static inline struct hda_amp_info
*
1587 get_alloc_amp_hash(struct hda_codec
*codec
, u32 key
)
1589 return (struct hda_amp_info
*)get_alloc_hash(&codec
->amp_cache
, key
);
1593 * query_amp_caps - query AMP capabilities
1594 * @codec: the HD-auio codec
1595 * @nid: the NID to query
1596 * @direction: either #HDA_INPUT or #HDA_OUTPUT
1598 * Query AMP capabilities for the given widget and direction.
1599 * Returns the obtained capability bits.
1601 * When cap bits have been already read, this doesn't read again but
1602 * returns the cached value.
1604 u32
query_amp_caps(struct hda_codec
*codec
, hda_nid_t nid
, int direction
)
1606 struct hda_amp_info
*info
;
1608 info
= get_alloc_amp_hash(codec
, HDA_HASH_KEY(nid
, direction
, 0));
1611 if (!(info
->head
.val
& INFO_AMP_CAPS
)) {
1612 if (!(get_wcaps(codec
, nid
) & AC_WCAP_AMP_OVRD
))
1614 info
->amp_caps
= snd_hda_param_read(codec
, nid
,
1615 direction
== HDA_OUTPUT
?
1616 AC_PAR_AMP_OUT_CAP
:
1619 info
->head
.val
|= INFO_AMP_CAPS
;
1621 return info
->amp_caps
;
1623 EXPORT_SYMBOL_HDA(query_amp_caps
);
1626 * snd_hda_override_amp_caps - Override the AMP capabilities
1627 * @codec: the CODEC to clean up
1628 * @nid: the NID to clean up
1629 * @direction: either #HDA_INPUT or #HDA_OUTPUT
1630 * @caps: the capability bits to set
1632 * Override the cached AMP caps bits value by the given one.
1633 * This function is useful if the driver needs to adjust the AMP ranges,
1634 * e.g. limit to 0dB, etc.
1636 * Returns zero if successful or a negative error code.
1638 int snd_hda_override_amp_caps(struct hda_codec
*codec
, hda_nid_t nid
, int dir
,
1641 struct hda_amp_info
*info
;
1643 info
= get_alloc_amp_hash(codec
, HDA_HASH_KEY(nid
, dir
, 0));
1646 info
->amp_caps
= caps
;
1647 info
->head
.val
|= INFO_AMP_CAPS
;
1650 EXPORT_SYMBOL_HDA(snd_hda_override_amp_caps
);
1653 query_caps_hash(struct hda_codec
*codec
, hda_nid_t nid
, u32 key
,
1654 unsigned int (*func
)(struct hda_codec
*, hda_nid_t
))
1656 struct hda_amp_info
*info
;
1658 info
= get_alloc_amp_hash(codec
, key
);
1661 if (!info
->head
.val
) {
1662 info
->head
.val
|= INFO_AMP_CAPS
;
1663 info
->amp_caps
= func(codec
, nid
);
1665 return info
->amp_caps
;
1668 static unsigned int read_pin_cap(struct hda_codec
*codec
, hda_nid_t nid
)
1670 return snd_hda_param_read(codec
, nid
, AC_PAR_PIN_CAP
);
1674 * snd_hda_query_pin_caps - Query PIN capabilities
1675 * @codec: the HD-auio codec
1676 * @nid: the NID to query
1678 * Query PIN capabilities for the given widget.
1679 * Returns the obtained capability bits.
1681 * When cap bits have been already read, this doesn't read again but
1682 * returns the cached value.
1684 u32
snd_hda_query_pin_caps(struct hda_codec
*codec
, hda_nid_t nid
)
1686 return query_caps_hash(codec
, nid
, HDA_HASH_PINCAP_KEY(nid
),
1689 EXPORT_SYMBOL_HDA(snd_hda_query_pin_caps
);
1692 * snd_hda_pin_sense - execute pin sense measurement
1693 * @codec: the CODEC to sense
1694 * @nid: the pin NID to sense
1696 * Execute necessary pin sense measurement and return its Presence Detect,
1697 * Impedance, ELD Valid etc. status bits.
1699 u32
snd_hda_pin_sense(struct hda_codec
*codec
, hda_nid_t nid
)
1703 if (!codec
->no_trigger_sense
) {
1704 pincap
= snd_hda_query_pin_caps(codec
, nid
);
1705 if (pincap
& AC_PINCAP_TRIG_REQ
) /* need trigger? */
1706 snd_hda_codec_read(codec
, nid
, 0,
1707 AC_VERB_SET_PIN_SENSE
, 0);
1709 return snd_hda_codec_read(codec
, nid
, 0,
1710 AC_VERB_GET_PIN_SENSE
, 0);
1712 EXPORT_SYMBOL_HDA(snd_hda_pin_sense
);
1715 * snd_hda_jack_detect - query pin Presence Detect status
1716 * @codec: the CODEC to sense
1717 * @nid: the pin NID to sense
1719 * Query and return the pin's Presence Detect status.
1721 int snd_hda_jack_detect(struct hda_codec
*codec
, hda_nid_t nid
)
1723 u32 sense
= snd_hda_pin_sense(codec
, nid
);
1724 return !!(sense
& AC_PINSENSE_PRESENCE
);
1726 EXPORT_SYMBOL_HDA(snd_hda_jack_detect
);
1729 * read the current volume to info
1730 * if the cache exists, read the cache value.
1732 static unsigned int get_vol_mute(struct hda_codec
*codec
,
1733 struct hda_amp_info
*info
, hda_nid_t nid
,
1734 int ch
, int direction
, int index
)
1738 if (info
->head
.val
& INFO_AMP_VOL(ch
))
1739 return info
->vol
[ch
];
1741 parm
= ch
? AC_AMP_GET_RIGHT
: AC_AMP_GET_LEFT
;
1742 parm
|= direction
== HDA_OUTPUT
? AC_AMP_GET_OUTPUT
: AC_AMP_GET_INPUT
;
1744 val
= snd_hda_codec_read(codec
, nid
, 0,
1745 AC_VERB_GET_AMP_GAIN_MUTE
, parm
);
1746 info
->vol
[ch
] = val
& 0xff;
1747 info
->head
.val
|= INFO_AMP_VOL(ch
);
1748 return info
->vol
[ch
];
1752 * write the current volume in info to the h/w and update the cache
1754 static void put_vol_mute(struct hda_codec
*codec
, struct hda_amp_info
*info
,
1755 hda_nid_t nid
, int ch
, int direction
, int index
,
1760 parm
= ch
? AC_AMP_SET_RIGHT
: AC_AMP_SET_LEFT
;
1761 parm
|= direction
== HDA_OUTPUT
? AC_AMP_SET_OUTPUT
: AC_AMP_SET_INPUT
;
1762 parm
|= index
<< AC_AMP_SET_INDEX_SHIFT
;
1764 snd_hda_codec_write(codec
, nid
, 0, AC_VERB_SET_AMP_GAIN_MUTE
, parm
);
1765 info
->vol
[ch
] = val
;
1769 * snd_hda_codec_amp_read - Read AMP value
1770 * @codec: HD-audio codec
1771 * @nid: NID to read the AMP value
1772 * @ch: channel (left=0 or right=1)
1773 * @direction: #HDA_INPUT or #HDA_OUTPUT
1774 * @index: the index value (only for input direction)
1776 * Read AMP value. The volume is between 0 to 0x7f, 0x80 = mute bit.
1778 int snd_hda_codec_amp_read(struct hda_codec
*codec
, hda_nid_t nid
, int ch
,
1779 int direction
, int index
)
1781 struct hda_amp_info
*info
;
1782 info
= get_alloc_amp_hash(codec
, HDA_HASH_KEY(nid
, direction
, index
));
1785 return get_vol_mute(codec
, info
, nid
, ch
, direction
, index
);
1787 EXPORT_SYMBOL_HDA(snd_hda_codec_amp_read
);
1790 * snd_hda_codec_amp_update - update the AMP value
1791 * @codec: HD-audio codec
1792 * @nid: NID to read the AMP value
1793 * @ch: channel (left=0 or right=1)
1794 * @direction: #HDA_INPUT or #HDA_OUTPUT
1795 * @idx: the index value (only for input direction)
1796 * @mask: bit mask to set
1797 * @val: the bits value to set
1799 * Update the AMP value with a bit mask.
1800 * Returns 0 if the value is unchanged, 1 if changed.
1802 int snd_hda_codec_amp_update(struct hda_codec
*codec
, hda_nid_t nid
, int ch
,
1803 int direction
, int idx
, int mask
, int val
)
1805 struct hda_amp_info
*info
;
1807 info
= get_alloc_amp_hash(codec
, HDA_HASH_KEY(nid
, direction
, idx
));
1810 if (snd_BUG_ON(mask
& ~0xff))
1813 val
|= get_vol_mute(codec
, info
, nid
, ch
, direction
, idx
) & ~mask
;
1814 if (info
->vol
[ch
] == val
)
1816 put_vol_mute(codec
, info
, nid
, ch
, direction
, idx
, val
);
1819 EXPORT_SYMBOL_HDA(snd_hda_codec_amp_update
);
1822 * snd_hda_codec_amp_stereo - update the AMP stereo values
1823 * @codec: HD-audio codec
1824 * @nid: NID to read the AMP value
1825 * @direction: #HDA_INPUT or #HDA_OUTPUT
1826 * @idx: the index value (only for input direction)
1827 * @mask: bit mask to set
1828 * @val: the bits value to set
1830 * Update the AMP values like snd_hda_codec_amp_update(), but for a
1831 * stereo widget with the same mask and value.
1833 int snd_hda_codec_amp_stereo(struct hda_codec
*codec
, hda_nid_t nid
,
1834 int direction
, int idx
, int mask
, int val
)
1838 if (snd_BUG_ON(mask
& ~0xff))
1840 for (ch
= 0; ch
< 2; ch
++)
1841 ret
|= snd_hda_codec_amp_update(codec
, nid
, ch
, direction
,
1845 EXPORT_SYMBOL_HDA(snd_hda_codec_amp_stereo
);
1849 * snd_hda_codec_resume_amp - Resume all AMP commands from the cache
1850 * @codec: HD-audio codec
1852 * Resume the all amp commands from the cache.
1854 void snd_hda_codec_resume_amp(struct hda_codec
*codec
)
1856 struct hda_amp_info
*buffer
= codec
->amp_cache
.buf
.list
;
1859 for (i
= 0; i
< codec
->amp_cache
.buf
.used
; i
++, buffer
++) {
1860 u32 key
= buffer
->head
.key
;
1862 unsigned int idx
, dir
, ch
;
1866 idx
= (key
>> 16) & 0xff;
1867 dir
= (key
>> 24) & 0xff;
1868 for (ch
= 0; ch
< 2; ch
++) {
1869 if (!(buffer
->head
.val
& INFO_AMP_VOL(ch
)))
1871 put_vol_mute(codec
, buffer
, nid
, ch
, dir
, idx
,
1876 EXPORT_SYMBOL_HDA(snd_hda_codec_resume_amp
);
1877 #endif /* CONFIG_PM */
1879 static u32
get_amp_max_value(struct hda_codec
*codec
, hda_nid_t nid
, int dir
,
1882 u32 caps
= query_amp_caps(codec
, nid
, dir
);
1884 caps
= (caps
& AC_AMPCAP_NUM_STEPS
) >> AC_AMPCAP_NUM_STEPS_SHIFT
;
1891 * snd_hda_mixer_amp_volume_info - Info callback for a standard AMP mixer
1893 * The control element is supposed to have the private_value field
1894 * set up via HDA_COMPOSE_AMP_VAL*() or related macros.
1896 int snd_hda_mixer_amp_volume_info(struct snd_kcontrol
*kcontrol
,
1897 struct snd_ctl_elem_info
*uinfo
)
1899 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
1900 u16 nid
= get_amp_nid(kcontrol
);
1901 u8 chs
= get_amp_channels(kcontrol
);
1902 int dir
= get_amp_direction(kcontrol
);
1903 unsigned int ofs
= get_amp_offset(kcontrol
);
1905 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_INTEGER
;
1906 uinfo
->count
= chs
== 3 ? 2 : 1;
1907 uinfo
->value
.integer
.min
= 0;
1908 uinfo
->value
.integer
.max
= get_amp_max_value(codec
, nid
, dir
, ofs
);
1909 if (!uinfo
->value
.integer
.max
) {
1910 printk(KERN_WARNING
"hda_codec: "
1911 "num_steps = 0 for NID=0x%x (ctl = %s)\n", nid
,
1917 EXPORT_SYMBOL_HDA(snd_hda_mixer_amp_volume_info
);
1920 static inline unsigned int
1921 read_amp_value(struct hda_codec
*codec
, hda_nid_t nid
,
1922 int ch
, int dir
, int idx
, unsigned int ofs
)
1925 val
= snd_hda_codec_amp_read(codec
, nid
, ch
, dir
, idx
);
1926 val
&= HDA_AMP_VOLMASK
;
1935 update_amp_value(struct hda_codec
*codec
, hda_nid_t nid
,
1936 int ch
, int dir
, int idx
, unsigned int ofs
,
1939 unsigned int maxval
;
1943 /* ofs = 0: raw max value */
1944 maxval
= get_amp_max_value(codec
, nid
, dir
, 0);
1947 return snd_hda_codec_amp_update(codec
, nid
, ch
, dir
, idx
,
1948 HDA_AMP_VOLMASK
, val
);
1952 * snd_hda_mixer_amp_volume_get - Get callback for a standard AMP mixer volume
1954 * The control element is supposed to have the private_value field
1955 * set up via HDA_COMPOSE_AMP_VAL*() or related macros.
1957 int snd_hda_mixer_amp_volume_get(struct snd_kcontrol
*kcontrol
,
1958 struct snd_ctl_elem_value
*ucontrol
)
1960 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
1961 hda_nid_t nid
= get_amp_nid(kcontrol
);
1962 int chs
= get_amp_channels(kcontrol
);
1963 int dir
= get_amp_direction(kcontrol
);
1964 int idx
= get_amp_index(kcontrol
);
1965 unsigned int ofs
= get_amp_offset(kcontrol
);
1966 long *valp
= ucontrol
->value
.integer
.value
;
1969 *valp
++ = read_amp_value(codec
, nid
, 0, dir
, idx
, ofs
);
1971 *valp
= read_amp_value(codec
, nid
, 1, dir
, idx
, ofs
);
1974 EXPORT_SYMBOL_HDA(snd_hda_mixer_amp_volume_get
);
1977 * snd_hda_mixer_amp_volume_put - Put callback for a standard AMP mixer volume
1979 * The control element is supposed to have the private_value field
1980 * set up via HDA_COMPOSE_AMP_VAL*() or related macros.
1982 int snd_hda_mixer_amp_volume_put(struct snd_kcontrol
*kcontrol
,
1983 struct snd_ctl_elem_value
*ucontrol
)
1985 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
1986 hda_nid_t nid
= get_amp_nid(kcontrol
);
1987 int chs
= get_amp_channels(kcontrol
);
1988 int dir
= get_amp_direction(kcontrol
);
1989 int idx
= get_amp_index(kcontrol
);
1990 unsigned int ofs
= get_amp_offset(kcontrol
);
1991 long *valp
= ucontrol
->value
.integer
.value
;
1994 snd_hda_power_up(codec
);
1996 change
= update_amp_value(codec
, nid
, 0, dir
, idx
, ofs
, *valp
);
2000 change
|= update_amp_value(codec
, nid
, 1, dir
, idx
, ofs
, *valp
);
2001 snd_hda_power_down(codec
);
2004 EXPORT_SYMBOL_HDA(snd_hda_mixer_amp_volume_put
);
2007 * snd_hda_mixer_amp_volume_put - TLV callback for a standard AMP mixer volume
2009 * The control element is supposed to have the private_value field
2010 * set up via HDA_COMPOSE_AMP_VAL*() or related macros.
2012 int snd_hda_mixer_amp_tlv(struct snd_kcontrol
*kcontrol
, int op_flag
,
2013 unsigned int size
, unsigned int __user
*_tlv
)
2015 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2016 hda_nid_t nid
= get_amp_nid(kcontrol
);
2017 int dir
= get_amp_direction(kcontrol
);
2018 unsigned int ofs
= get_amp_offset(kcontrol
);
2019 bool min_mute
= get_amp_min_mute(kcontrol
);
2020 u32 caps
, val1
, val2
;
2022 if (size
< 4 * sizeof(unsigned int))
2024 caps
= query_amp_caps(codec
, nid
, dir
);
2025 val2
= (caps
& AC_AMPCAP_STEP_SIZE
) >> AC_AMPCAP_STEP_SIZE_SHIFT
;
2026 val2
= (val2
+ 1) * 25;
2027 val1
= -((caps
& AC_AMPCAP_OFFSET
) >> AC_AMPCAP_OFFSET_SHIFT
);
2029 val1
= ((int)val1
) * ((int)val2
);
2031 val2
|= TLV_DB_SCALE_MUTE
;
2032 if (put_user(SNDRV_CTL_TLVT_DB_SCALE
, _tlv
))
2034 if (put_user(2 * sizeof(unsigned int), _tlv
+ 1))
2036 if (put_user(val1
, _tlv
+ 2))
2038 if (put_user(val2
, _tlv
+ 3))
2042 EXPORT_SYMBOL_HDA(snd_hda_mixer_amp_tlv
);
2045 * snd_hda_set_vmaster_tlv - Set TLV for a virtual master control
2046 * @codec: HD-audio codec
2047 * @nid: NID of a reference widget
2048 * @dir: #HDA_INPUT or #HDA_OUTPUT
2049 * @tlv: TLV data to be stored, at least 4 elements
2051 * Set (static) TLV data for a virtual master volume using the AMP caps
2052 * obtained from the reference NID.
2053 * The volume range is recalculated as if the max volume is 0dB.
2055 void snd_hda_set_vmaster_tlv(struct hda_codec
*codec
, hda_nid_t nid
, int dir
,
2061 caps
= query_amp_caps(codec
, nid
, dir
);
2062 nums
= (caps
& AC_AMPCAP_NUM_STEPS
) >> AC_AMPCAP_NUM_STEPS_SHIFT
;
2063 step
= (caps
& AC_AMPCAP_STEP_SIZE
) >> AC_AMPCAP_STEP_SIZE_SHIFT
;
2064 step
= (step
+ 1) * 25;
2065 tlv
[0] = SNDRV_CTL_TLVT_DB_SCALE
;
2066 tlv
[1] = 2 * sizeof(unsigned int);
2067 tlv
[2] = -nums
* step
;
2070 EXPORT_SYMBOL_HDA(snd_hda_set_vmaster_tlv
);
2072 /* find a mixer control element with the given name */
2073 static struct snd_kcontrol
*
2074 _snd_hda_find_mixer_ctl(struct hda_codec
*codec
,
2075 const char *name
, int idx
)
2077 struct snd_ctl_elem_id id
;
2078 memset(&id
, 0, sizeof(id
));
2079 id
.iface
= SNDRV_CTL_ELEM_IFACE_MIXER
;
2081 if (snd_BUG_ON(strlen(name
) >= sizeof(id
.name
)))
2083 strcpy(id
.name
, name
);
2084 return snd_ctl_find_id(codec
->bus
->card
, &id
);
2088 * snd_hda_find_mixer_ctl - Find a mixer control element with the given name
2089 * @codec: HD-audio codec
2090 * @name: ctl id name string
2092 * Get the control element with the given id string and IFACE_MIXER.
2094 struct snd_kcontrol
*snd_hda_find_mixer_ctl(struct hda_codec
*codec
,
2097 return _snd_hda_find_mixer_ctl(codec
, name
, 0);
2099 EXPORT_SYMBOL_HDA(snd_hda_find_mixer_ctl
);
2101 static int find_empty_mixer_ctl_idx(struct hda_codec
*codec
, const char *name
)
2104 for (idx
= 0; idx
< 16; idx
++) { /* 16 ctlrs should be large enough */
2105 if (!_snd_hda_find_mixer_ctl(codec
, name
, idx
))
2112 * snd_hda_ctl_add - Add a control element and assign to the codec
2113 * @codec: HD-audio codec
2114 * @nid: corresponding NID (optional)
2115 * @kctl: the control element to assign
2117 * Add the given control element to an array inside the codec instance.
2118 * All control elements belonging to a codec are supposed to be added
2119 * by this function so that a proper clean-up works at the free or
2120 * reconfiguration time.
2122 * If non-zero @nid is passed, the NID is assigned to the control element.
2123 * The assignment is shown in the codec proc file.
2125 * snd_hda_ctl_add() checks the control subdev id field whether
2126 * #HDA_SUBDEV_NID_FLAG bit is set. If set (and @nid is zero), the lower
2127 * bits value is taken as the NID to assign. The #HDA_NID_ITEM_AMP bit
2128 * specifies if kctl->private_value is a HDA amplifier value.
2130 int snd_hda_ctl_add(struct hda_codec
*codec
, hda_nid_t nid
,
2131 struct snd_kcontrol
*kctl
)
2134 unsigned short flags
= 0;
2135 struct hda_nid_item
*item
;
2137 if (kctl
->id
.subdevice
& HDA_SUBDEV_AMP_FLAG
) {
2138 flags
|= HDA_NID_ITEM_AMP
;
2140 nid
= get_amp_nid_(kctl
->private_value
);
2142 if ((kctl
->id
.subdevice
& HDA_SUBDEV_NID_FLAG
) != 0 && nid
== 0)
2143 nid
= kctl
->id
.subdevice
& 0xffff;
2144 if (kctl
->id
.subdevice
& (HDA_SUBDEV_NID_FLAG
|HDA_SUBDEV_AMP_FLAG
))
2145 kctl
->id
.subdevice
= 0;
2146 err
= snd_ctl_add(codec
->bus
->card
, kctl
);
2149 item
= snd_array_new(&codec
->mixers
);
2154 item
->flags
= flags
;
2157 EXPORT_SYMBOL_HDA(snd_hda_ctl_add
);
2160 * snd_hda_add_nid - Assign a NID to a control element
2161 * @codec: HD-audio codec
2162 * @nid: corresponding NID (optional)
2163 * @kctl: the control element to assign
2164 * @index: index to kctl
2166 * Add the given control element to an array inside the codec instance.
2167 * This function is used when #snd_hda_ctl_add cannot be used for 1:1
2168 * NID:KCTL mapping - for example "Capture Source" selector.
2170 int snd_hda_add_nid(struct hda_codec
*codec
, struct snd_kcontrol
*kctl
,
2171 unsigned int index
, hda_nid_t nid
)
2173 struct hda_nid_item
*item
;
2176 item
= snd_array_new(&codec
->nids
);
2180 item
->index
= index
;
2184 printk(KERN_ERR
"hda-codec: no NID for mapping control %s:%d:%d\n",
2185 kctl
->id
.name
, kctl
->id
.index
, index
);
2188 EXPORT_SYMBOL_HDA(snd_hda_add_nid
);
2191 * snd_hda_ctls_clear - Clear all controls assigned to the given codec
2192 * @codec: HD-audio codec
2194 void snd_hda_ctls_clear(struct hda_codec
*codec
)
2197 struct hda_nid_item
*items
= codec
->mixers
.list
;
2198 for (i
= 0; i
< codec
->mixers
.used
; i
++)
2199 snd_ctl_remove(codec
->bus
->card
, items
[i
].kctl
);
2200 snd_array_free(&codec
->mixers
);
2201 snd_array_free(&codec
->nids
);
2204 /* pseudo device locking
2205 * toggle card->shutdown to allow/disallow the device access (as a hack)
2207 static int hda_lock_devices(struct snd_card
*card
)
2209 spin_lock(&card
->files_lock
);
2210 if (card
->shutdown
) {
2211 spin_unlock(&card
->files_lock
);
2215 spin_unlock(&card
->files_lock
);
2219 static void hda_unlock_devices(struct snd_card
*card
)
2221 spin_lock(&card
->files_lock
);
2223 spin_unlock(&card
->files_lock
);
2227 * snd_hda_codec_reset - Clear all objects assigned to the codec
2228 * @codec: HD-audio codec
2230 * This frees the all PCM and control elements assigned to the codec, and
2231 * clears the caches and restores the pin default configurations.
2233 * When a device is being used, it returns -EBSY. If successfully freed,
2236 int snd_hda_codec_reset(struct hda_codec
*codec
)
2238 struct snd_card
*card
= codec
->bus
->card
;
2241 if (hda_lock_devices(card
) < 0)
2243 /* check whether the codec isn't used by any mixer or PCM streams */
2244 if (!list_empty(&card
->ctl_files
)) {
2245 hda_unlock_devices(card
);
2248 for (pcm
= 0; pcm
< codec
->num_pcms
; pcm
++) {
2249 struct hda_pcm
*cpcm
= &codec
->pcm_info
[pcm
];
2252 if (cpcm
->pcm
->streams
[0].substream_opened
||
2253 cpcm
->pcm
->streams
[1].substream_opened
) {
2254 hda_unlock_devices(card
);
2259 /* OK, let it free */
2261 #ifdef CONFIG_SND_HDA_POWER_SAVE
2262 cancel_delayed_work(&codec
->power_work
);
2263 flush_workqueue(codec
->bus
->workq
);
2265 snd_hda_ctls_clear(codec
);
2267 for (i
= 0; i
< codec
->num_pcms
; i
++) {
2268 if (codec
->pcm_info
[i
].pcm
) {
2269 snd_device_free(card
, codec
->pcm_info
[i
].pcm
);
2270 clear_bit(codec
->pcm_info
[i
].device
,
2271 codec
->bus
->pcm_dev_bits
);
2274 if (codec
->patch_ops
.free
)
2275 codec
->patch_ops
.free(codec
);
2276 codec
->proc_widget_hook
= NULL
;
2278 free_hda_cache(&codec
->amp_cache
);
2279 free_hda_cache(&codec
->cmd_cache
);
2280 init_hda_cache(&codec
->amp_cache
, sizeof(struct hda_amp_info
));
2281 init_hda_cache(&codec
->cmd_cache
, sizeof(struct hda_cache_head
));
2282 /* free only driver_pins so that init_pins + user_pins are restored */
2283 snd_array_free(&codec
->driver_pins
);
2284 restore_pincfgs(codec
);
2285 codec
->num_pcms
= 0;
2286 codec
->pcm_info
= NULL
;
2287 codec
->preset
= NULL
;
2288 memset(&codec
->patch_ops
, 0, sizeof(codec
->patch_ops
));
2289 codec
->slave_dig_outs
= NULL
;
2290 codec
->spdif_status_reset
= 0;
2291 module_put(codec
->owner
);
2292 codec
->owner
= NULL
;
2294 /* allow device access again */
2295 hda_unlock_devices(card
);
2300 * snd_hda_add_vmaster - create a virtual master control and add slaves
2301 * @codec: HD-audio codec
2302 * @name: vmaster control name
2303 * @tlv: TLV data (optional)
2304 * @slaves: slave control names (optional)
2306 * Create a virtual master control with the given name. The TLV data
2307 * must be either NULL or a valid data.
2309 * @slaves is a NULL-terminated array of strings, each of which is a
2310 * slave control name. All controls with these names are assigned to
2311 * the new virtual master control.
2313 * This function returns zero if successful or a negative error code.
2315 int snd_hda_add_vmaster(struct hda_codec
*codec
, char *name
,
2316 unsigned int *tlv
, const char * const *slaves
)
2318 struct snd_kcontrol
*kctl
;
2319 const char * const *s
;
2322 for (s
= slaves
; *s
&& !snd_hda_find_mixer_ctl(codec
, *s
); s
++)
2325 snd_printdd("No slave found for %s\n", name
);
2328 kctl
= snd_ctl_make_virtual_master(name
, tlv
);
2331 err
= snd_hda_ctl_add(codec
, 0, kctl
);
2335 for (s
= slaves
; *s
; s
++) {
2336 struct snd_kcontrol
*sctl
;
2339 sctl
= _snd_hda_find_mixer_ctl(codec
, *s
, i
);
2342 snd_printdd("Cannot find slave %s, "
2346 err
= snd_ctl_add_slave(kctl
, sctl
);
2354 EXPORT_SYMBOL_HDA(snd_hda_add_vmaster
);
2357 * snd_hda_mixer_amp_switch_info - Info callback for a standard AMP mixer switch
2359 * The control element is supposed to have the private_value field
2360 * set up via HDA_COMPOSE_AMP_VAL*() or related macros.
2362 int snd_hda_mixer_amp_switch_info(struct snd_kcontrol
*kcontrol
,
2363 struct snd_ctl_elem_info
*uinfo
)
2365 int chs
= get_amp_channels(kcontrol
);
2367 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_BOOLEAN
;
2368 uinfo
->count
= chs
== 3 ? 2 : 1;
2369 uinfo
->value
.integer
.min
= 0;
2370 uinfo
->value
.integer
.max
= 1;
2373 EXPORT_SYMBOL_HDA(snd_hda_mixer_amp_switch_info
);
2376 * snd_hda_mixer_amp_switch_get - Get callback for a standard AMP mixer switch
2378 * The control element is supposed to have the private_value field
2379 * set up via HDA_COMPOSE_AMP_VAL*() or related macros.
2381 int snd_hda_mixer_amp_switch_get(struct snd_kcontrol
*kcontrol
,
2382 struct snd_ctl_elem_value
*ucontrol
)
2384 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2385 hda_nid_t nid
= get_amp_nid(kcontrol
);
2386 int chs
= get_amp_channels(kcontrol
);
2387 int dir
= get_amp_direction(kcontrol
);
2388 int idx
= get_amp_index(kcontrol
);
2389 long *valp
= ucontrol
->value
.integer
.value
;
2392 *valp
++ = (snd_hda_codec_amp_read(codec
, nid
, 0, dir
, idx
) &
2393 HDA_AMP_MUTE
) ? 0 : 1;
2395 *valp
= (snd_hda_codec_amp_read(codec
, nid
, 1, dir
, idx
) &
2396 HDA_AMP_MUTE
) ? 0 : 1;
2399 EXPORT_SYMBOL_HDA(snd_hda_mixer_amp_switch_get
);
2402 * snd_hda_mixer_amp_switch_put - Put callback for a standard AMP mixer switch
2404 * The control element is supposed to have the private_value field
2405 * set up via HDA_COMPOSE_AMP_VAL*() or related macros.
2407 int snd_hda_mixer_amp_switch_put(struct snd_kcontrol
*kcontrol
,
2408 struct snd_ctl_elem_value
*ucontrol
)
2410 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2411 hda_nid_t nid
= get_amp_nid(kcontrol
);
2412 int chs
= get_amp_channels(kcontrol
);
2413 int dir
= get_amp_direction(kcontrol
);
2414 int idx
= get_amp_index(kcontrol
);
2415 long *valp
= ucontrol
->value
.integer
.value
;
2418 snd_hda_power_up(codec
);
2420 change
= snd_hda_codec_amp_update(codec
, nid
, 0, dir
, idx
,
2422 *valp
? 0 : HDA_AMP_MUTE
);
2426 change
|= snd_hda_codec_amp_update(codec
, nid
, 1, dir
, idx
,
2428 *valp
? 0 : HDA_AMP_MUTE
);
2429 hda_call_check_power_status(codec
, nid
);
2430 snd_hda_power_down(codec
);
2433 EXPORT_SYMBOL_HDA(snd_hda_mixer_amp_switch_put
);
2435 #ifdef CONFIG_SND_HDA_INPUT_BEEP
2437 * snd_hda_mixer_amp_switch_put_beep - Put callback for a beep AMP switch
2439 * This function calls snd_hda_enable_beep_device(), which behaves differently
2440 * depending on beep_mode option.
2442 int snd_hda_mixer_amp_switch_put_beep(struct snd_kcontrol
*kcontrol
,
2443 struct snd_ctl_elem_value
*ucontrol
)
2445 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2446 long *valp
= ucontrol
->value
.integer
.value
;
2448 snd_hda_enable_beep_device(codec
, *valp
);
2449 return snd_hda_mixer_amp_switch_put(kcontrol
, ucontrol
);
2451 EXPORT_SYMBOL_HDA(snd_hda_mixer_amp_switch_put_beep
);
2452 #endif /* CONFIG_SND_HDA_INPUT_BEEP */
2455 * bound volume controls
2457 * bind multiple volumes (# indices, from 0)
2460 #define AMP_VAL_IDX_SHIFT 19
2461 #define AMP_VAL_IDX_MASK (0x0f<<19)
2464 * snd_hda_mixer_bind_switch_get - Get callback for a bound volume control
2466 * The control element is supposed to have the private_value field
2467 * set up via HDA_BIND_MUTE*() macros.
2469 int snd_hda_mixer_bind_switch_get(struct snd_kcontrol
*kcontrol
,
2470 struct snd_ctl_elem_value
*ucontrol
)
2472 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2476 mutex_lock(&codec
->control_mutex
);
2477 pval
= kcontrol
->private_value
;
2478 kcontrol
->private_value
= pval
& ~AMP_VAL_IDX_MASK
; /* index 0 */
2479 err
= snd_hda_mixer_amp_switch_get(kcontrol
, ucontrol
);
2480 kcontrol
->private_value
= pval
;
2481 mutex_unlock(&codec
->control_mutex
);
2484 EXPORT_SYMBOL_HDA(snd_hda_mixer_bind_switch_get
);
2487 * snd_hda_mixer_bind_switch_put - Put callback for a bound volume control
2489 * The control element is supposed to have the private_value field
2490 * set up via HDA_BIND_MUTE*() macros.
2492 int snd_hda_mixer_bind_switch_put(struct snd_kcontrol
*kcontrol
,
2493 struct snd_ctl_elem_value
*ucontrol
)
2495 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2497 int i
, indices
, err
= 0, change
= 0;
2499 mutex_lock(&codec
->control_mutex
);
2500 pval
= kcontrol
->private_value
;
2501 indices
= (pval
& AMP_VAL_IDX_MASK
) >> AMP_VAL_IDX_SHIFT
;
2502 for (i
= 0; i
< indices
; i
++) {
2503 kcontrol
->private_value
= (pval
& ~AMP_VAL_IDX_MASK
) |
2504 (i
<< AMP_VAL_IDX_SHIFT
);
2505 err
= snd_hda_mixer_amp_switch_put(kcontrol
, ucontrol
);
2510 kcontrol
->private_value
= pval
;
2511 mutex_unlock(&codec
->control_mutex
);
2512 return err
< 0 ? err
: change
;
2514 EXPORT_SYMBOL_HDA(snd_hda_mixer_bind_switch_put
);
2517 * snd_hda_mixer_bind_ctls_info - Info callback for a generic bound control
2519 * The control element is supposed to have the private_value field
2520 * set up via HDA_BIND_VOL() or HDA_BIND_SW() macros.
2522 int snd_hda_mixer_bind_ctls_info(struct snd_kcontrol
*kcontrol
,
2523 struct snd_ctl_elem_info
*uinfo
)
2525 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2526 struct hda_bind_ctls
*c
;
2529 mutex_lock(&codec
->control_mutex
);
2530 c
= (struct hda_bind_ctls
*)kcontrol
->private_value
;
2531 kcontrol
->private_value
= *c
->values
;
2532 err
= c
->ops
->info(kcontrol
, uinfo
);
2533 kcontrol
->private_value
= (long)c
;
2534 mutex_unlock(&codec
->control_mutex
);
2537 EXPORT_SYMBOL_HDA(snd_hda_mixer_bind_ctls_info
);
2540 * snd_hda_mixer_bind_ctls_get - Get callback for a generic bound control
2542 * The control element is supposed to have the private_value field
2543 * set up via HDA_BIND_VOL() or HDA_BIND_SW() macros.
2545 int snd_hda_mixer_bind_ctls_get(struct snd_kcontrol
*kcontrol
,
2546 struct snd_ctl_elem_value
*ucontrol
)
2548 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2549 struct hda_bind_ctls
*c
;
2552 mutex_lock(&codec
->control_mutex
);
2553 c
= (struct hda_bind_ctls
*)kcontrol
->private_value
;
2554 kcontrol
->private_value
= *c
->values
;
2555 err
= c
->ops
->get(kcontrol
, ucontrol
);
2556 kcontrol
->private_value
= (long)c
;
2557 mutex_unlock(&codec
->control_mutex
);
2560 EXPORT_SYMBOL_HDA(snd_hda_mixer_bind_ctls_get
);
2563 * snd_hda_mixer_bind_ctls_put - Put callback for a generic bound control
2565 * The control element is supposed to have the private_value field
2566 * set up via HDA_BIND_VOL() or HDA_BIND_SW() macros.
2568 int snd_hda_mixer_bind_ctls_put(struct snd_kcontrol
*kcontrol
,
2569 struct snd_ctl_elem_value
*ucontrol
)
2571 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2572 struct hda_bind_ctls
*c
;
2573 unsigned long *vals
;
2574 int err
= 0, change
= 0;
2576 mutex_lock(&codec
->control_mutex
);
2577 c
= (struct hda_bind_ctls
*)kcontrol
->private_value
;
2578 for (vals
= c
->values
; *vals
; vals
++) {
2579 kcontrol
->private_value
= *vals
;
2580 err
= c
->ops
->put(kcontrol
, ucontrol
);
2585 kcontrol
->private_value
= (long)c
;
2586 mutex_unlock(&codec
->control_mutex
);
2587 return err
< 0 ? err
: change
;
2589 EXPORT_SYMBOL_HDA(snd_hda_mixer_bind_ctls_put
);
2592 * snd_hda_mixer_bind_tlv - TLV callback for a generic bound control
2594 * The control element is supposed to have the private_value field
2595 * set up via HDA_BIND_VOL() macro.
2597 int snd_hda_mixer_bind_tlv(struct snd_kcontrol
*kcontrol
, int op_flag
,
2598 unsigned int size
, unsigned int __user
*tlv
)
2600 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2601 struct hda_bind_ctls
*c
;
2604 mutex_lock(&codec
->control_mutex
);
2605 c
= (struct hda_bind_ctls
*)kcontrol
->private_value
;
2606 kcontrol
->private_value
= *c
->values
;
2607 err
= c
->ops
->tlv(kcontrol
, op_flag
, size
, tlv
);
2608 kcontrol
->private_value
= (long)c
;
2609 mutex_unlock(&codec
->control_mutex
);
2612 EXPORT_SYMBOL_HDA(snd_hda_mixer_bind_tlv
);
2614 struct hda_ctl_ops snd_hda_bind_vol
= {
2615 .info
= snd_hda_mixer_amp_volume_info
,
2616 .get
= snd_hda_mixer_amp_volume_get
,
2617 .put
= snd_hda_mixer_amp_volume_put
,
2618 .tlv
= snd_hda_mixer_amp_tlv
2620 EXPORT_SYMBOL_HDA(snd_hda_bind_vol
);
2622 struct hda_ctl_ops snd_hda_bind_sw
= {
2623 .info
= snd_hda_mixer_amp_switch_info
,
2624 .get
= snd_hda_mixer_amp_switch_get
,
2625 .put
= snd_hda_mixer_amp_switch_put
,
2626 .tlv
= snd_hda_mixer_amp_tlv
2628 EXPORT_SYMBOL_HDA(snd_hda_bind_sw
);
2631 * SPDIF out controls
2634 static int snd_hda_spdif_mask_info(struct snd_kcontrol
*kcontrol
,
2635 struct snd_ctl_elem_info
*uinfo
)
2637 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_IEC958
;
2642 static int snd_hda_spdif_cmask_get(struct snd_kcontrol
*kcontrol
,
2643 struct snd_ctl_elem_value
*ucontrol
)
2645 ucontrol
->value
.iec958
.status
[0] = IEC958_AES0_PROFESSIONAL
|
2646 IEC958_AES0_NONAUDIO
|
2647 IEC958_AES0_CON_EMPHASIS_5015
|
2648 IEC958_AES0_CON_NOT_COPYRIGHT
;
2649 ucontrol
->value
.iec958
.status
[1] = IEC958_AES1_CON_CATEGORY
|
2650 IEC958_AES1_CON_ORIGINAL
;
2654 static int snd_hda_spdif_pmask_get(struct snd_kcontrol
*kcontrol
,
2655 struct snd_ctl_elem_value
*ucontrol
)
2657 ucontrol
->value
.iec958
.status
[0] = IEC958_AES0_PROFESSIONAL
|
2658 IEC958_AES0_NONAUDIO
|
2659 IEC958_AES0_PRO_EMPHASIS_5015
;
2663 static int snd_hda_spdif_default_get(struct snd_kcontrol
*kcontrol
,
2664 struct snd_ctl_elem_value
*ucontrol
)
2666 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2667 int idx
= kcontrol
->private_value
;
2668 struct hda_spdif_out
*spdif
= snd_array_elem(&codec
->spdif_out
, idx
);
2670 ucontrol
->value
.iec958
.status
[0] = spdif
->status
& 0xff;
2671 ucontrol
->value
.iec958
.status
[1] = (spdif
->status
>> 8) & 0xff;
2672 ucontrol
->value
.iec958
.status
[2] = (spdif
->status
>> 16) & 0xff;
2673 ucontrol
->value
.iec958
.status
[3] = (spdif
->status
>> 24) & 0xff;
2678 /* convert from SPDIF status bits to HDA SPDIF bits
2679 * bit 0 (DigEn) is always set zero (to be filled later)
2681 static unsigned short convert_from_spdif_status(unsigned int sbits
)
2683 unsigned short val
= 0;
2685 if (sbits
& IEC958_AES0_PROFESSIONAL
)
2686 val
|= AC_DIG1_PROFESSIONAL
;
2687 if (sbits
& IEC958_AES0_NONAUDIO
)
2688 val
|= AC_DIG1_NONAUDIO
;
2689 if (sbits
& IEC958_AES0_PROFESSIONAL
) {
2690 if ((sbits
& IEC958_AES0_PRO_EMPHASIS
) ==
2691 IEC958_AES0_PRO_EMPHASIS_5015
)
2692 val
|= AC_DIG1_EMPHASIS
;
2694 if ((sbits
& IEC958_AES0_CON_EMPHASIS
) ==
2695 IEC958_AES0_CON_EMPHASIS_5015
)
2696 val
|= AC_DIG1_EMPHASIS
;
2697 if (!(sbits
& IEC958_AES0_CON_NOT_COPYRIGHT
))
2698 val
|= AC_DIG1_COPYRIGHT
;
2699 if (sbits
& (IEC958_AES1_CON_ORIGINAL
<< 8))
2700 val
|= AC_DIG1_LEVEL
;
2701 val
|= sbits
& (IEC958_AES1_CON_CATEGORY
<< 8);
2706 /* convert to SPDIF status bits from HDA SPDIF bits
2708 static unsigned int convert_to_spdif_status(unsigned short val
)
2710 unsigned int sbits
= 0;
2712 if (val
& AC_DIG1_NONAUDIO
)
2713 sbits
|= IEC958_AES0_NONAUDIO
;
2714 if (val
& AC_DIG1_PROFESSIONAL
)
2715 sbits
|= IEC958_AES0_PROFESSIONAL
;
2716 if (sbits
& IEC958_AES0_PROFESSIONAL
) {
2717 if (sbits
& AC_DIG1_EMPHASIS
)
2718 sbits
|= IEC958_AES0_PRO_EMPHASIS_5015
;
2720 if (val
& AC_DIG1_EMPHASIS
)
2721 sbits
|= IEC958_AES0_CON_EMPHASIS_5015
;
2722 if (!(val
& AC_DIG1_COPYRIGHT
))
2723 sbits
|= IEC958_AES0_CON_NOT_COPYRIGHT
;
2724 if (val
& AC_DIG1_LEVEL
)
2725 sbits
|= (IEC958_AES1_CON_ORIGINAL
<< 8);
2726 sbits
|= val
& (0x7f << 8);
2731 /* set digital convert verbs both for the given NID and its slaves */
2732 static void set_dig_out(struct hda_codec
*codec
, hda_nid_t nid
,
2737 snd_hda_codec_write_cache(codec
, nid
, 0, verb
, val
);
2738 d
= codec
->slave_dig_outs
;
2742 snd_hda_codec_write_cache(codec
, *d
, 0, verb
, val
);
2745 static inline void set_dig_out_convert(struct hda_codec
*codec
, hda_nid_t nid
,
2749 set_dig_out(codec
, nid
, AC_VERB_SET_DIGI_CONVERT_1
, dig1
);
2751 set_dig_out(codec
, nid
, AC_VERB_SET_DIGI_CONVERT_2
, dig2
);
2754 static int snd_hda_spdif_default_put(struct snd_kcontrol
*kcontrol
,
2755 struct snd_ctl_elem_value
*ucontrol
)
2757 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2758 int idx
= kcontrol
->private_value
;
2759 struct hda_spdif_out
*spdif
= snd_array_elem(&codec
->spdif_out
, idx
);
2760 hda_nid_t nid
= spdif
->nid
;
2764 mutex_lock(&codec
->spdif_mutex
);
2765 spdif
->status
= ucontrol
->value
.iec958
.status
[0] |
2766 ((unsigned int)ucontrol
->value
.iec958
.status
[1] << 8) |
2767 ((unsigned int)ucontrol
->value
.iec958
.status
[2] << 16) |
2768 ((unsigned int)ucontrol
->value
.iec958
.status
[3] << 24);
2769 val
= convert_from_spdif_status(spdif
->status
);
2770 val
|= spdif
->ctls
& 1;
2771 change
= spdif
->ctls
!= val
;
2773 if (change
&& nid
!= (u16
)-1)
2774 set_dig_out_convert(codec
, nid
, val
& 0xff, (val
>> 8) & 0xff);
2775 mutex_unlock(&codec
->spdif_mutex
);
2779 #define snd_hda_spdif_out_switch_info snd_ctl_boolean_mono_info
2781 static int snd_hda_spdif_out_switch_get(struct snd_kcontrol
*kcontrol
,
2782 struct snd_ctl_elem_value
*ucontrol
)
2784 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2785 int idx
= kcontrol
->private_value
;
2786 struct hda_spdif_out
*spdif
= snd_array_elem(&codec
->spdif_out
, idx
);
2788 ucontrol
->value
.integer
.value
[0] = spdif
->ctls
& AC_DIG1_ENABLE
;
2792 static inline void set_spdif_ctls(struct hda_codec
*codec
, hda_nid_t nid
,
2795 set_dig_out_convert(codec
, nid
, dig1
, dig2
);
2796 /* unmute amp switch (if any) */
2797 if ((get_wcaps(codec
, nid
) & AC_WCAP_OUT_AMP
) &&
2798 (dig1
& AC_DIG1_ENABLE
))
2799 snd_hda_codec_amp_stereo(codec
, nid
, HDA_OUTPUT
, 0,
2803 static int snd_hda_spdif_out_switch_put(struct snd_kcontrol
*kcontrol
,
2804 struct snd_ctl_elem_value
*ucontrol
)
2806 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2807 int idx
= kcontrol
->private_value
;
2808 struct hda_spdif_out
*spdif
= snd_array_elem(&codec
->spdif_out
, idx
);
2809 hda_nid_t nid
= spdif
->nid
;
2813 mutex_lock(&codec
->spdif_mutex
);
2814 val
= spdif
->ctls
& ~AC_DIG1_ENABLE
;
2815 if (ucontrol
->value
.integer
.value
[0])
2816 val
|= AC_DIG1_ENABLE
;
2817 change
= spdif
->ctls
!= val
;
2819 if (change
&& nid
!= (u16
)-1)
2820 set_spdif_ctls(codec
, nid
, val
& 0xff, -1);
2821 mutex_unlock(&codec
->spdif_mutex
);
2825 static struct snd_kcontrol_new dig_mixes
[] = {
2827 .access
= SNDRV_CTL_ELEM_ACCESS_READ
,
2828 .iface
= SNDRV_CTL_ELEM_IFACE_MIXER
,
2829 .name
= SNDRV_CTL_NAME_IEC958("", PLAYBACK
, CON_MASK
),
2830 .info
= snd_hda_spdif_mask_info
,
2831 .get
= snd_hda_spdif_cmask_get
,
2834 .access
= SNDRV_CTL_ELEM_ACCESS_READ
,
2835 .iface
= SNDRV_CTL_ELEM_IFACE_MIXER
,
2836 .name
= SNDRV_CTL_NAME_IEC958("", PLAYBACK
, PRO_MASK
),
2837 .info
= snd_hda_spdif_mask_info
,
2838 .get
= snd_hda_spdif_pmask_get
,
2841 .iface
= SNDRV_CTL_ELEM_IFACE_MIXER
,
2842 .name
= SNDRV_CTL_NAME_IEC958("", PLAYBACK
, DEFAULT
),
2843 .info
= snd_hda_spdif_mask_info
,
2844 .get
= snd_hda_spdif_default_get
,
2845 .put
= snd_hda_spdif_default_put
,
2848 .iface
= SNDRV_CTL_ELEM_IFACE_MIXER
,
2849 .name
= SNDRV_CTL_NAME_IEC958("", PLAYBACK
, SWITCH
),
2850 .info
= snd_hda_spdif_out_switch_info
,
2851 .get
= snd_hda_spdif_out_switch_get
,
2852 .put
= snd_hda_spdif_out_switch_put
,
2858 * snd_hda_create_spdif_out_ctls - create Output SPDIF-related controls
2859 * @codec: the HDA codec
2860 * @nid: audio out widget NID
2862 * Creates controls related with the SPDIF output.
2863 * Called from each patch supporting the SPDIF out.
2865 * Returns 0 if successful, or a negative error code.
2867 int snd_hda_create_spdif_out_ctls(struct hda_codec
*codec
,
2868 hda_nid_t associated_nid
,
2872 struct snd_kcontrol
*kctl
;
2873 struct snd_kcontrol_new
*dig_mix
;
2875 struct hda_spdif_out
*spdif
;
2877 idx
= find_empty_mixer_ctl_idx(codec
, "IEC958 Playback Switch");
2879 printk(KERN_ERR
"hda_codec: too many IEC958 outputs\n");
2882 spdif
= snd_array_new(&codec
->spdif_out
);
2883 for (dig_mix
= dig_mixes
; dig_mix
->name
; dig_mix
++) {
2884 kctl
= snd_ctl_new1(dig_mix
, codec
);
2887 kctl
->id
.index
= idx
;
2888 kctl
->private_value
= codec
->spdif_out
.used
- 1;
2889 err
= snd_hda_ctl_add(codec
, associated_nid
, kctl
);
2893 spdif
->nid
= cvt_nid
;
2894 spdif
->ctls
= snd_hda_codec_read(codec
, cvt_nid
, 0,
2895 AC_VERB_GET_DIGI_CONVERT_1
, 0);
2896 spdif
->status
= convert_to_spdif_status(spdif
->ctls
);
2899 EXPORT_SYMBOL_HDA(snd_hda_create_spdif_out_ctls
);
2901 struct hda_spdif_out
*snd_hda_spdif_out_of_nid(struct hda_codec
*codec
,
2905 for (i
= 0; i
< codec
->spdif_out
.used
; i
++) {
2906 struct hda_spdif_out
*spdif
=
2907 snd_array_elem(&codec
->spdif_out
, i
);
2908 if (spdif
->nid
== nid
)
2913 EXPORT_SYMBOL_HDA(snd_hda_spdif_out_of_nid
);
2915 void snd_hda_spdif_ctls_unassign(struct hda_codec
*codec
, int idx
)
2917 struct hda_spdif_out
*spdif
= snd_array_elem(&codec
->spdif_out
, idx
);
2919 mutex_lock(&codec
->spdif_mutex
);
2920 spdif
->nid
= (u16
)-1;
2921 mutex_unlock(&codec
->spdif_mutex
);
2923 EXPORT_SYMBOL_HDA(snd_hda_spdif_ctls_unassign
);
2925 void snd_hda_spdif_ctls_assign(struct hda_codec
*codec
, int idx
, hda_nid_t nid
)
2927 struct hda_spdif_out
*spdif
= snd_array_elem(&codec
->spdif_out
, idx
);
2930 mutex_lock(&codec
->spdif_mutex
);
2931 if (spdif
->nid
!= nid
) {
2934 set_spdif_ctls(codec
, nid
, val
& 0xff, (val
>> 8) & 0xff);
2936 mutex_unlock(&codec
->spdif_mutex
);
2938 EXPORT_SYMBOL_HDA(snd_hda_spdif_ctls_assign
);
2941 * SPDIF sharing with analog output
2943 static int spdif_share_sw_get(struct snd_kcontrol
*kcontrol
,
2944 struct snd_ctl_elem_value
*ucontrol
)
2946 struct hda_multi_out
*mout
= snd_kcontrol_chip(kcontrol
);
2947 ucontrol
->value
.integer
.value
[0] = mout
->share_spdif
;
2951 static int spdif_share_sw_put(struct snd_kcontrol
*kcontrol
,
2952 struct snd_ctl_elem_value
*ucontrol
)
2954 struct hda_multi_out
*mout
= snd_kcontrol_chip(kcontrol
);
2955 mout
->share_spdif
= !!ucontrol
->value
.integer
.value
[0];
2959 static struct snd_kcontrol_new spdif_share_sw
= {
2960 .iface
= SNDRV_CTL_ELEM_IFACE_MIXER
,
2961 .name
= "IEC958 Default PCM Playback Switch",
2962 .info
= snd_ctl_boolean_mono_info
,
2963 .get
= spdif_share_sw_get
,
2964 .put
= spdif_share_sw_put
,
2968 * snd_hda_create_spdif_share_sw - create Default PCM switch
2969 * @codec: the HDA codec
2970 * @mout: multi-out instance
2972 int snd_hda_create_spdif_share_sw(struct hda_codec
*codec
,
2973 struct hda_multi_out
*mout
)
2975 if (!mout
->dig_out_nid
)
2977 /* ATTENTION: here mout is passed as private_data, instead of codec */
2978 return snd_hda_ctl_add(codec
, mout
->dig_out_nid
,
2979 snd_ctl_new1(&spdif_share_sw
, mout
));
2981 EXPORT_SYMBOL_HDA(snd_hda_create_spdif_share_sw
);
2987 #define snd_hda_spdif_in_switch_info snd_hda_spdif_out_switch_info
2989 static int snd_hda_spdif_in_switch_get(struct snd_kcontrol
*kcontrol
,
2990 struct snd_ctl_elem_value
*ucontrol
)
2992 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
2994 ucontrol
->value
.integer
.value
[0] = codec
->spdif_in_enable
;
2998 static int snd_hda_spdif_in_switch_put(struct snd_kcontrol
*kcontrol
,
2999 struct snd_ctl_elem_value
*ucontrol
)
3001 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
3002 hda_nid_t nid
= kcontrol
->private_value
;
3003 unsigned int val
= !!ucontrol
->value
.integer
.value
[0];
3006 mutex_lock(&codec
->spdif_mutex
);
3007 change
= codec
->spdif_in_enable
!= val
;
3009 codec
->spdif_in_enable
= val
;
3010 snd_hda_codec_write_cache(codec
, nid
, 0,
3011 AC_VERB_SET_DIGI_CONVERT_1
, val
);
3013 mutex_unlock(&codec
->spdif_mutex
);
3017 static int snd_hda_spdif_in_status_get(struct snd_kcontrol
*kcontrol
,
3018 struct snd_ctl_elem_value
*ucontrol
)
3020 struct hda_codec
*codec
= snd_kcontrol_chip(kcontrol
);
3021 hda_nid_t nid
= kcontrol
->private_value
;
3025 val
= snd_hda_codec_read(codec
, nid
, 0, AC_VERB_GET_DIGI_CONVERT_1
, 0);
3026 sbits
= convert_to_spdif_status(val
);
3027 ucontrol
->value
.iec958
.status
[0] = sbits
;
3028 ucontrol
->value
.iec958
.status
[1] = sbits
>> 8;
3029 ucontrol
->value
.iec958
.status
[2] = sbits
>> 16;
3030 ucontrol
->value
.iec958
.status
[3] = sbits
>> 24;
3034 static struct snd_kcontrol_new dig_in_ctls
[] = {
3036 .iface
= SNDRV_CTL_ELEM_IFACE_MIXER
,
3037 .name
= SNDRV_CTL_NAME_IEC958("", CAPTURE
, SWITCH
),
3038 .info
= snd_hda_spdif_in_switch_info
,
3039 .get
= snd_hda_spdif_in_switch_get
,
3040 .put
= snd_hda_spdif_in_switch_put
,
3043 .access
= SNDRV_CTL_ELEM_ACCESS_READ
,
3044 .iface
= SNDRV_CTL_ELEM_IFACE_MIXER
,
3045 .name
= SNDRV_CTL_NAME_IEC958("", CAPTURE
, DEFAULT
),
3046 .info
= snd_hda_spdif_mask_info
,
3047 .get
= snd_hda_spdif_in_status_get
,
3053 * snd_hda_create_spdif_in_ctls - create Input SPDIF-related controls
3054 * @codec: the HDA codec
3055 * @nid: audio in widget NID
3057 * Creates controls related with the SPDIF input.
3058 * Called from each patch supporting the SPDIF in.
3060 * Returns 0 if successful, or a negative error code.
3062 int snd_hda_create_spdif_in_ctls(struct hda_codec
*codec
, hda_nid_t nid
)
3065 struct snd_kcontrol
*kctl
;
3066 struct snd_kcontrol_new
*dig_mix
;
3069 idx
= find_empty_mixer_ctl_idx(codec
, "IEC958 Capture Switch");
3071 printk(KERN_ERR
"hda_codec: too many IEC958 inputs\n");
3074 for (dig_mix
= dig_in_ctls
; dig_mix
->name
; dig_mix
++) {
3075 kctl
= snd_ctl_new1(dig_mix
, codec
);
3078 kctl
->private_value
= nid
;
3079 err
= snd_hda_ctl_add(codec
, nid
, kctl
);
3083 codec
->spdif_in_enable
=
3084 snd_hda_codec_read(codec
, nid
, 0,
3085 AC_VERB_GET_DIGI_CONVERT_1
, 0) &
3089 EXPORT_SYMBOL_HDA(snd_hda_create_spdif_in_ctls
);
3096 /* build a 32bit cache key with the widget id and the command parameter */
3097 #define build_cmd_cache_key(nid, verb) ((verb << 8) | nid)
3098 #define get_cmd_cache_nid(key) ((key) & 0xff)
3099 #define get_cmd_cache_cmd(key) (((key) >> 8) & 0xffff)
3102 * snd_hda_codec_write_cache - send a single command with caching
3103 * @codec: the HDA codec
3104 * @nid: NID to send the command
3105 * @direct: direct flag
3106 * @verb: the verb to send
3107 * @parm: the parameter for the verb
3109 * Send a single command without waiting for response.
3111 * Returns 0 if successful, or a negative error code.
3113 int snd_hda_codec_write_cache(struct hda_codec
*codec
, hda_nid_t nid
,
3114 int direct
, unsigned int verb
, unsigned int parm
)
3116 int err
= snd_hda_codec_write(codec
, nid
, direct
, verb
, parm
);
3117 struct hda_cache_head
*c
;
3122 /* parm may contain the verb stuff for get/set amp */
3123 verb
= verb
| (parm
>> 8);
3125 key
= build_cmd_cache_key(nid
, verb
);
3126 mutex_lock(&codec
->bus
->cmd_mutex
);
3127 c
= get_alloc_hash(&codec
->cmd_cache
, key
);
3130 mutex_unlock(&codec
->bus
->cmd_mutex
);
3133 EXPORT_SYMBOL_HDA(snd_hda_codec_write_cache
);
3136 * snd_hda_codec_update_cache - check cache and write the cmd only when needed
3137 * @codec: the HDA codec
3138 * @nid: NID to send the command
3139 * @direct: direct flag
3140 * @verb: the verb to send
3141 * @parm: the parameter for the verb
3143 * This function works like snd_hda_codec_write_cache(), but it doesn't send
3144 * command if the parameter is already identical with the cached value.
3145 * If not, it sends the command and refreshes the cache.
3147 * Returns 0 if successful, or a negative error code.
3149 int snd_hda_codec_update_cache(struct hda_codec
*codec
, hda_nid_t nid
,
3150 int direct
, unsigned int verb
, unsigned int parm
)
3152 struct hda_cache_head
*c
;
3155 /* parm may contain the verb stuff for get/set amp */
3156 verb
= verb
| (parm
>> 8);
3158 key
= build_cmd_cache_key(nid
, verb
);
3159 mutex_lock(&codec
->bus
->cmd_mutex
);
3160 c
= get_hash(&codec
->cmd_cache
, key
);
3161 if (c
&& c
->val
== parm
) {
3162 mutex_unlock(&codec
->bus
->cmd_mutex
);
3165 mutex_unlock(&codec
->bus
->cmd_mutex
);
3166 return snd_hda_codec_write_cache(codec
, nid
, direct
, verb
, parm
);
3168 EXPORT_SYMBOL_HDA(snd_hda_codec_update_cache
);
3171 * snd_hda_codec_resume_cache - Resume the all commands from the cache
3172 * @codec: HD-audio codec
3174 * Execute all verbs recorded in the command caches to resume.
3176 void snd_hda_codec_resume_cache(struct hda_codec
*codec
)
3178 struct hda_cache_head
*buffer
= codec
->cmd_cache
.buf
.list
;
3181 for (i
= 0; i
< codec
->cmd_cache
.buf
.used
; i
++, buffer
++) {
3182 u32 key
= buffer
->key
;
3185 snd_hda_codec_write(codec
, get_cmd_cache_nid(key
), 0,
3186 get_cmd_cache_cmd(key
), buffer
->val
);
3189 EXPORT_SYMBOL_HDA(snd_hda_codec_resume_cache
);
3192 * snd_hda_sequence_write_cache - sequence writes with caching
3193 * @codec: the HDA codec
3194 * @seq: VERB array to send
3196 * Send the commands sequentially from the given array.
3197 * Thte commands are recorded on cache for power-save and resume.
3198 * The array must be terminated with NID=0.
3200 void snd_hda_sequence_write_cache(struct hda_codec
*codec
,
3201 const struct hda_verb
*seq
)
3203 for (; seq
->nid
; seq
++)
3204 snd_hda_codec_write_cache(codec
, seq
->nid
, 0, seq
->verb
,
3207 EXPORT_SYMBOL_HDA(snd_hda_sequence_write_cache
);
3208 #endif /* CONFIG_PM */
3210 void snd_hda_codec_set_power_to_all(struct hda_codec
*codec
, hda_nid_t fg
,
3211 unsigned int power_state
,
3212 bool eapd_workaround
)
3214 hda_nid_t nid
= codec
->start_nid
;
3217 for (i
= 0; i
< codec
->num_nodes
; i
++, nid
++) {
3218 unsigned int wcaps
= get_wcaps(codec
, nid
);
3219 if (!(wcaps
& AC_WCAP_POWER
))
3221 /* don't power down the widget if it controls eapd and
3222 * EAPD_BTLENABLE is set.
3224 if (eapd_workaround
&& power_state
== AC_PWRST_D3
&&
3225 get_wcaps_type(wcaps
) == AC_WID_PIN
&&
3226 (snd_hda_query_pin_caps(codec
, nid
) & AC_PINCAP_EAPD
)) {
3227 int eapd
= snd_hda_codec_read(codec
, nid
, 0,
3228 AC_VERB_GET_EAPD_BTLENABLE
, 0);
3232 snd_hda_codec_write(codec
, nid
, 0, AC_VERB_SET_POWER_STATE
,
3236 if (power_state
== AC_PWRST_D0
) {
3237 unsigned long end_time
;
3239 /* wait until the codec reachs to D0 */
3240 end_time
= jiffies
+ msecs_to_jiffies(500);
3242 state
= snd_hda_codec_read(codec
, fg
, 0,
3243 AC_VERB_GET_POWER_STATE
, 0);
3244 if (state
== power_state
)
3247 } while (time_after_eq(end_time
, jiffies
));
3250 EXPORT_SYMBOL_HDA(snd_hda_codec_set_power_to_all
);
3253 * set power state of the codec
3255 static void hda_set_power_state(struct hda_codec
*codec
, hda_nid_t fg
,
3256 unsigned int power_state
)
3258 if (codec
->patch_ops
.set_power_state
) {
3259 codec
->patch_ops
.set_power_state(codec
, fg
, power_state
);
3263 /* this delay seems necessary to avoid click noise at power-down */
3264 if (power_state
== AC_PWRST_D3
)
3266 snd_hda_codec_read(codec
, fg
, 0, AC_VERB_SET_POWER_STATE
,
3268 snd_hda_codec_set_power_to_all(codec
, fg
, power_state
, true);
3271 #ifdef CONFIG_SND_HDA_HWDEP
3272 /* execute additional init verbs */
3273 static void hda_exec_init_verbs(struct hda_codec
*codec
)
3275 if (codec
->init_verbs
.list
)
3276 snd_hda_sequence_write(codec
, codec
->init_verbs
.list
);
3279 static inline void hda_exec_init_verbs(struct hda_codec
*codec
) {}
3284 * call suspend and power-down; used both from PM and power-save
3286 static void hda_call_codec_suspend(struct hda_codec
*codec
)
3288 if (codec
->patch_ops
.suspend
)
3289 codec
->patch_ops
.suspend(codec
, PMSG_SUSPEND
);
3290 hda_cleanup_all_streams(codec
);
3291 hda_set_power_state(codec
,
3292 codec
->afg
? codec
->afg
: codec
->mfg
,
3294 #ifdef CONFIG_SND_HDA_POWER_SAVE
3295 snd_hda_update_power_acct(codec
);
3296 cancel_delayed_work(&codec
->power_work
);
3297 codec
->power_on
= 0;
3298 codec
->power_transition
= 0;
3299 codec
->power_jiffies
= jiffies
;
3304 * kick up codec; used both from PM and power-save
3306 static void hda_call_codec_resume(struct hda_codec
*codec
)
3308 hda_set_power_state(codec
,
3309 codec
->afg
? codec
->afg
: codec
->mfg
,
3311 restore_pincfgs(codec
); /* restore all current pin configs */
3312 restore_shutup_pins(codec
);
3313 hda_exec_init_verbs(codec
);
3314 if (codec
->patch_ops
.resume
)
3315 codec
->patch_ops
.resume(codec
);
3317 if (codec
->patch_ops
.init
)
3318 codec
->patch_ops
.init(codec
);
3319 snd_hda_codec_resume_amp(codec
);
3320 snd_hda_codec_resume_cache(codec
);
3323 #endif /* CONFIG_PM */
3327 * snd_hda_build_controls - build mixer controls
3330 * Creates mixer controls for each codec included in the bus.
3332 * Returns 0 if successful, otherwise a negative error code.
3334 int /*__devinit*/ snd_hda_build_controls(struct hda_bus
*bus
)
3336 struct hda_codec
*codec
;
3338 list_for_each_entry(codec
, &bus
->codec_list
, list
) {
3339 int err
= snd_hda_codec_build_controls(codec
);
3341 printk(KERN_ERR
"hda_codec: cannot build controls "
3342 "for #%d (error %d)\n", codec
->addr
, err
);
3343 err
= snd_hda_codec_reset(codec
);
3346 "hda_codec: cannot revert codec\n");
3353 EXPORT_SYMBOL_HDA(snd_hda_build_controls
);
3355 int snd_hda_codec_build_controls(struct hda_codec
*codec
)
3358 hda_exec_init_verbs(codec
);
3359 /* continue to initialize... */
3360 if (codec
->patch_ops
.init
)
3361 err
= codec
->patch_ops
.init(codec
);
3362 if (!err
&& codec
->patch_ops
.build_controls
)
3363 err
= codec
->patch_ops
.build_controls(codec
);
3372 struct hda_rate_tbl
{
3374 unsigned int alsa_bits
;
3375 unsigned int hda_fmt
;
3378 /* rate = base * mult / div */
3379 #define HDA_RATE(base, mult, div) \
3380 (AC_FMT_BASE_##base##K | (((mult) - 1) << AC_FMT_MULT_SHIFT) | \
3381 (((div) - 1) << AC_FMT_DIV_SHIFT))
3383 static struct hda_rate_tbl rate_bits
[] = {
3384 /* rate in Hz, ALSA rate bitmask, HDA format value */
3386 /* autodetected value used in snd_hda_query_supported_pcm */
3387 { 8000, SNDRV_PCM_RATE_8000
, HDA_RATE(48, 1, 6) },
3388 { 11025, SNDRV_PCM_RATE_11025
, HDA_RATE(44, 1, 4) },
3389 { 16000, SNDRV_PCM_RATE_16000
, HDA_RATE(48, 1, 3) },
3390 { 22050, SNDRV_PCM_RATE_22050
, HDA_RATE(44, 1, 2) },
3391 { 32000, SNDRV_PCM_RATE_32000
, HDA_RATE(48, 2, 3) },
3392 { 44100, SNDRV_PCM_RATE_44100
, HDA_RATE(44, 1, 1) },
3393 { 48000, SNDRV_PCM_RATE_48000
, HDA_RATE(48, 1, 1) },
3394 { 88200, SNDRV_PCM_RATE_88200
, HDA_RATE(44, 2, 1) },
3395 { 96000, SNDRV_PCM_RATE_96000
, HDA_RATE(48, 2, 1) },
3396 { 176400, SNDRV_PCM_RATE_176400
, HDA_RATE(44, 4, 1) },
3397 { 192000, SNDRV_PCM_RATE_192000
, HDA_RATE(48, 4, 1) },
3398 #define AC_PAR_PCM_RATE_BITS 11
3399 /* up to bits 10, 384kHZ isn't supported properly */
3401 /* not autodetected value */
3402 { 9600, SNDRV_PCM_RATE_KNOT
, HDA_RATE(48, 1, 5) },
3404 { 0 } /* terminator */
3408 * snd_hda_calc_stream_format - calculate format bitset
3409 * @rate: the sample rate
3410 * @channels: the number of channels
3411 * @format: the PCM format (SNDRV_PCM_FORMAT_XXX)
3412 * @maxbps: the max. bps
3414 * Calculate the format bitset from the given rate, channels and th PCM format.
3416 * Return zero if invalid.
3418 unsigned int snd_hda_calc_stream_format(unsigned int rate
,
3419 unsigned int channels
,
3420 unsigned int format
,
3421 unsigned int maxbps
,
3422 unsigned short spdif_ctls
)
3425 unsigned int val
= 0;
3427 for (i
= 0; rate_bits
[i
].hz
; i
++)
3428 if (rate_bits
[i
].hz
== rate
) {
3429 val
= rate_bits
[i
].hda_fmt
;
3432 if (!rate_bits
[i
].hz
) {
3433 snd_printdd("invalid rate %d\n", rate
);
3437 if (channels
== 0 || channels
> 8) {
3438 snd_printdd("invalid channels %d\n", channels
);
3441 val
|= channels
- 1;
3443 switch (snd_pcm_format_width(format
)) {
3445 val
|= AC_FMT_BITS_8
;
3448 val
|= AC_FMT_BITS_16
;
3453 if (maxbps
>= 32 || format
== SNDRV_PCM_FORMAT_FLOAT_LE
)
3454 val
|= AC_FMT_BITS_32
;
3455 else if (maxbps
>= 24)
3456 val
|= AC_FMT_BITS_24
;
3458 val
|= AC_FMT_BITS_20
;
3461 snd_printdd("invalid format width %d\n",
3462 snd_pcm_format_width(format
));
3466 if (spdif_ctls
& AC_DIG1_NONAUDIO
)
3467 val
|= AC_FMT_TYPE_NON_PCM
;
3471 EXPORT_SYMBOL_HDA(snd_hda_calc_stream_format
);
3473 static unsigned int get_pcm_param(struct hda_codec
*codec
, hda_nid_t nid
)
3475 unsigned int val
= 0;
3476 if (nid
!= codec
->afg
&&
3477 (get_wcaps(codec
, nid
) & AC_WCAP_FORMAT_OVRD
))
3478 val
= snd_hda_param_read(codec
, nid
, AC_PAR_PCM
);
3479 if (!val
|| val
== -1)
3480 val
= snd_hda_param_read(codec
, codec
->afg
, AC_PAR_PCM
);
3481 if (!val
|| val
== -1)
3486 static unsigned int query_pcm_param(struct hda_codec
*codec
, hda_nid_t nid
)
3488 return query_caps_hash(codec
, nid
, HDA_HASH_PARPCM_KEY(nid
),
3492 static unsigned int get_stream_param(struct hda_codec
*codec
, hda_nid_t nid
)
3494 unsigned int streams
= snd_hda_param_read(codec
, nid
, AC_PAR_STREAM
);
3495 if (!streams
|| streams
== -1)
3496 streams
= snd_hda_param_read(codec
, codec
->afg
, AC_PAR_STREAM
);
3497 if (!streams
|| streams
== -1)
3502 static unsigned int query_stream_param(struct hda_codec
*codec
, hda_nid_t nid
)
3504 return query_caps_hash(codec
, nid
, HDA_HASH_PARSTR_KEY(nid
),
3509 * snd_hda_query_supported_pcm - query the supported PCM rates and formats
3510 * @codec: the HDA codec
3511 * @nid: NID to query
3512 * @ratesp: the pointer to store the detected rate bitflags
3513 * @formatsp: the pointer to store the detected formats
3514 * @bpsp: the pointer to store the detected format widths
3516 * Queries the supported PCM rates and formats. The NULL @ratesp, @formatsp
3517 * or @bsps argument is ignored.
3519 * Returns 0 if successful, otherwise a negative error code.
3521 int snd_hda_query_supported_pcm(struct hda_codec
*codec
, hda_nid_t nid
,
3522 u32
*ratesp
, u64
*formatsp
, unsigned int *bpsp
)
3524 unsigned int i
, val
, wcaps
;
3526 wcaps
= get_wcaps(codec
, nid
);
3527 val
= query_pcm_param(codec
, nid
);
3531 for (i
= 0; i
< AC_PAR_PCM_RATE_BITS
; i
++) {
3533 rates
|= rate_bits
[i
].alsa_bits
;
3536 snd_printk(KERN_ERR
"hda_codec: rates == 0 "
3537 "(nid=0x%x, val=0x%x, ovrd=%i)\n",
3539 (wcaps
& AC_WCAP_FORMAT_OVRD
) ? 1 : 0);
3545 if (formatsp
|| bpsp
) {
3547 unsigned int streams
, bps
;
3549 streams
= query_stream_param(codec
, nid
);
3554 if (streams
& AC_SUPFMT_PCM
) {
3555 if (val
& AC_SUPPCM_BITS_8
) {
3556 formats
|= SNDRV_PCM_FMTBIT_U8
;
3559 if (val
& AC_SUPPCM_BITS_16
) {
3560 formats
|= SNDRV_PCM_FMTBIT_S16_LE
;
3563 if (wcaps
& AC_WCAP_DIGITAL
) {
3564 if (val
& AC_SUPPCM_BITS_32
)
3565 formats
|= SNDRV_PCM_FMTBIT_IEC958_SUBFRAME_LE
;
3566 if (val
& (AC_SUPPCM_BITS_20
|AC_SUPPCM_BITS_24
))
3567 formats
|= SNDRV_PCM_FMTBIT_S32_LE
;
3568 if (val
& AC_SUPPCM_BITS_24
)
3570 else if (val
& AC_SUPPCM_BITS_20
)
3572 } else if (val
& (AC_SUPPCM_BITS_20
|AC_SUPPCM_BITS_24
|
3573 AC_SUPPCM_BITS_32
)) {
3574 formats
|= SNDRV_PCM_FMTBIT_S32_LE
;
3575 if (val
& AC_SUPPCM_BITS_32
)
3577 else if (val
& AC_SUPPCM_BITS_24
)
3579 else if (val
& AC_SUPPCM_BITS_20
)
3583 if (streams
& AC_SUPFMT_FLOAT32
) {
3584 formats
|= SNDRV_PCM_FMTBIT_FLOAT_LE
;
3588 if (streams
== AC_SUPFMT_AC3
) {
3589 /* should be exclusive */
3590 /* temporary hack: we have still no proper support
3591 * for the direct AC3 stream...
3593 formats
|= SNDRV_PCM_FMTBIT_U8
;
3597 snd_printk(KERN_ERR
"hda_codec: formats == 0 "
3598 "(nid=0x%x, val=0x%x, ovrd=%i, "
3601 (wcaps
& AC_WCAP_FORMAT_OVRD
) ? 1 : 0,
3606 *formatsp
= formats
;
3613 EXPORT_SYMBOL_HDA(snd_hda_query_supported_pcm
);
3616 * snd_hda_is_supported_format - Check the validity of the format
3617 * @codec: HD-audio codec
3618 * @nid: NID to check
3619 * @format: the HD-audio format value to check
3621 * Check whether the given node supports the format value.
3623 * Returns 1 if supported, 0 if not.
3625 int snd_hda_is_supported_format(struct hda_codec
*codec
, hda_nid_t nid
,
3626 unsigned int format
)
3629 unsigned int val
= 0, rate
, stream
;
3631 val
= query_pcm_param(codec
, nid
);
3635 rate
= format
& 0xff00;
3636 for (i
= 0; i
< AC_PAR_PCM_RATE_BITS
; i
++)
3637 if (rate_bits
[i
].hda_fmt
== rate
) {
3642 if (i
>= AC_PAR_PCM_RATE_BITS
)
3645 stream
= query_stream_param(codec
, nid
);
3649 if (stream
& AC_SUPFMT_PCM
) {
3650 switch (format
& 0xf0) {
3652 if (!(val
& AC_SUPPCM_BITS_8
))
3656 if (!(val
& AC_SUPPCM_BITS_16
))
3660 if (!(val
& AC_SUPPCM_BITS_20
))
3664 if (!(val
& AC_SUPPCM_BITS_24
))
3668 if (!(val
& AC_SUPPCM_BITS_32
))
3675 /* FIXME: check for float32 and AC3? */
3680 EXPORT_SYMBOL_HDA(snd_hda_is_supported_format
);
3685 static int hda_pcm_default_open_close(struct hda_pcm_stream
*hinfo
,
3686 struct hda_codec
*codec
,
3687 struct snd_pcm_substream
*substream
)
3692 static int hda_pcm_default_prepare(struct hda_pcm_stream
*hinfo
,
3693 struct hda_codec
*codec
,
3694 unsigned int stream_tag
,
3695 unsigned int format
,
3696 struct snd_pcm_substream
*substream
)
3698 snd_hda_codec_setup_stream(codec
, hinfo
->nid
, stream_tag
, 0, format
);
3702 static int hda_pcm_default_cleanup(struct hda_pcm_stream
*hinfo
,
3703 struct hda_codec
*codec
,
3704 struct snd_pcm_substream
*substream
)
3706 snd_hda_codec_cleanup_stream(codec
, hinfo
->nid
);
3710 static int set_pcm_default_values(struct hda_codec
*codec
,
3711 struct hda_pcm_stream
*info
)
3715 /* query support PCM information from the given NID */
3716 if (info
->nid
&& (!info
->rates
|| !info
->formats
)) {
3717 err
= snd_hda_query_supported_pcm(codec
, info
->nid
,
3718 info
->rates
? NULL
: &info
->rates
,
3719 info
->formats
? NULL
: &info
->formats
,
3720 info
->maxbps
? NULL
: &info
->maxbps
);
3724 if (info
->ops
.open
== NULL
)
3725 info
->ops
.open
= hda_pcm_default_open_close
;
3726 if (info
->ops
.close
== NULL
)
3727 info
->ops
.close
= hda_pcm_default_open_close
;
3728 if (info
->ops
.prepare
== NULL
) {
3729 if (snd_BUG_ON(!info
->nid
))
3731 info
->ops
.prepare
= hda_pcm_default_prepare
;
3733 if (info
->ops
.cleanup
== NULL
) {
3734 if (snd_BUG_ON(!info
->nid
))
3736 info
->ops
.cleanup
= hda_pcm_default_cleanup
;
3742 * codec prepare/cleanup entries
3744 int snd_hda_codec_prepare(struct hda_codec
*codec
,
3745 struct hda_pcm_stream
*hinfo
,
3746 unsigned int stream
,
3747 unsigned int format
,
3748 struct snd_pcm_substream
*substream
)
3751 mutex_lock(&codec
->bus
->prepare_mutex
);
3752 ret
= hinfo
->ops
.prepare(hinfo
, codec
, stream
, format
, substream
);
3754 purify_inactive_streams(codec
);
3755 mutex_unlock(&codec
->bus
->prepare_mutex
);
3758 EXPORT_SYMBOL_HDA(snd_hda_codec_prepare
);
3760 void snd_hda_codec_cleanup(struct hda_codec
*codec
,
3761 struct hda_pcm_stream
*hinfo
,
3762 struct snd_pcm_substream
*substream
)
3764 mutex_lock(&codec
->bus
->prepare_mutex
);
3765 hinfo
->ops
.cleanup(hinfo
, codec
, substream
);
3766 mutex_unlock(&codec
->bus
->prepare_mutex
);
3768 EXPORT_SYMBOL_HDA(snd_hda_codec_cleanup
);
3771 const char *snd_hda_pcm_type_name
[HDA_PCM_NTYPES
] = {
3772 "Audio", "SPDIF", "HDMI", "Modem"
3776 * get the empty PCM device number to assign
3778 * note the max device number is limited by HDA_MAX_PCMS, currently 10
3780 static int get_empty_pcm_device(struct hda_bus
*bus
, int type
)
3782 /* audio device indices; not linear to keep compatibility */
3783 static int audio_idx
[HDA_PCM_NTYPES
][5] = {
3784 [HDA_PCM_TYPE_AUDIO
] = { 0, 2, 4, 5, -1 },
3785 [HDA_PCM_TYPE_SPDIF
] = { 1, -1 },
3786 [HDA_PCM_TYPE_HDMI
] = { 3, 7, 8, 9, -1 },
3787 [HDA_PCM_TYPE_MODEM
] = { 6, -1 },
3791 if (type
>= HDA_PCM_NTYPES
) {
3792 snd_printk(KERN_WARNING
"Invalid PCM type %d\n", type
);
3796 for (i
= 0; audio_idx
[type
][i
] >= 0 ; i
++)
3797 if (!test_and_set_bit(audio_idx
[type
][i
], bus
->pcm_dev_bits
))
3798 return audio_idx
[type
][i
];
3800 snd_printk(KERN_WARNING
"Too many %s devices\n",
3801 snd_hda_pcm_type_name
[type
]);
3806 * attach a new PCM stream
3808 static int snd_hda_attach_pcm(struct hda_codec
*codec
, struct hda_pcm
*pcm
)
3810 struct hda_bus
*bus
= codec
->bus
;
3811 struct hda_pcm_stream
*info
;
3814 if (snd_BUG_ON(!pcm
->name
))
3816 for (stream
= 0; stream
< 2; stream
++) {
3817 info
= &pcm
->stream
[stream
];
3818 if (info
->substreams
) {
3819 err
= set_pcm_default_values(codec
, info
);
3824 return bus
->ops
.attach_pcm(bus
, codec
, pcm
);
3827 /* assign all PCMs of the given codec */
3828 int snd_hda_codec_build_pcms(struct hda_codec
*codec
)
3833 if (!codec
->num_pcms
) {
3834 if (!codec
->patch_ops
.build_pcms
)
3836 err
= codec
->patch_ops
.build_pcms(codec
);
3838 printk(KERN_ERR
"hda_codec: cannot build PCMs"
3839 "for #%d (error %d)\n", codec
->addr
, err
);
3840 err
= snd_hda_codec_reset(codec
);
3843 "hda_codec: cannot revert codec\n");
3848 for (pcm
= 0; pcm
< codec
->num_pcms
; pcm
++) {
3849 struct hda_pcm
*cpcm
= &codec
->pcm_info
[pcm
];
3852 if (!cpcm
->stream
[0].substreams
&& !cpcm
->stream
[1].substreams
)
3853 continue; /* no substreams assigned */
3856 dev
= get_empty_pcm_device(codec
->bus
, cpcm
->pcm_type
);
3858 continue; /* no fatal error */
3860 err
= snd_hda_attach_pcm(codec
, cpcm
);
3862 printk(KERN_ERR
"hda_codec: cannot attach "
3863 "PCM stream %d for codec #%d\n",
3865 continue; /* no fatal error */
3873 * snd_hda_build_pcms - build PCM information
3876 * Create PCM information for each codec included in the bus.
3878 * The build_pcms codec patch is requested to set up codec->num_pcms and
3879 * codec->pcm_info properly. The array is referred by the top-level driver
3880 * to create its PCM instances.
3881 * The allocated codec->pcm_info should be released in codec->patch_ops.free
3884 * At least, substreams, channels_min and channels_max must be filled for
3885 * each stream. substreams = 0 indicates that the stream doesn't exist.
3886 * When rates and/or formats are zero, the supported values are queried
3887 * from the given nid. The nid is used also by the default ops.prepare
3888 * and ops.cleanup callbacks.
3890 * The driver needs to call ops.open in its open callback. Similarly,
3891 * ops.close is supposed to be called in the close callback.
3892 * ops.prepare should be called in the prepare or hw_params callback
3893 * with the proper parameters for set up.
3894 * ops.cleanup should be called in hw_free for clean up of streams.
3896 * This function returns 0 if successful, or a negative error code.
3898 int __devinit
snd_hda_build_pcms(struct hda_bus
*bus
)
3900 struct hda_codec
*codec
;
3902 list_for_each_entry(codec
, &bus
->codec_list
, list
) {
3903 int err
= snd_hda_codec_build_pcms(codec
);
3909 EXPORT_SYMBOL_HDA(snd_hda_build_pcms
);
3912 * snd_hda_check_board_config - compare the current codec with the config table
3913 * @codec: the HDA codec
3914 * @num_configs: number of config enums
3915 * @models: array of model name strings
3916 * @tbl: configuration table, terminated by null entries
3918 * Compares the modelname or PCI subsystem id of the current codec with the
3919 * given configuration table. If a matching entry is found, returns its
3920 * config value (supposed to be 0 or positive).
3922 * If no entries are matching, the function returns a negative value.
3924 int snd_hda_check_board_config(struct hda_codec
*codec
,
3925 int num_configs
, const char * const *models
,
3926 const struct snd_pci_quirk
*tbl
)
3928 if (codec
->modelname
&& models
) {
3930 for (i
= 0; i
< num_configs
; i
++) {
3932 !strcmp(codec
->modelname
, models
[i
])) {
3933 snd_printd(KERN_INFO
"hda_codec: model '%s' is "
3934 "selected\n", models
[i
]);
3940 if (!codec
->bus
->pci
|| !tbl
)
3943 tbl
= snd_pci_quirk_lookup(codec
->bus
->pci
, tbl
);
3946 if (tbl
->value
>= 0 && tbl
->value
< num_configs
) {
3947 #ifdef CONFIG_SND_DEBUG_VERBOSE
3949 const char *model
= NULL
;
3951 model
= models
[tbl
->value
];
3953 sprintf(tmp
, "#%d", tbl
->value
);
3956 snd_printdd(KERN_INFO
"hda_codec: model '%s' is selected "
3957 "for config %x:%x (%s)\n",
3958 model
, tbl
->subvendor
, tbl
->subdevice
,
3959 (tbl
->name
? tbl
->name
: "Unknown device"));
3965 EXPORT_SYMBOL_HDA(snd_hda_check_board_config
);
3968 * snd_hda_check_board_codec_sid_config - compare the current codec
3969 subsystem ID with the
3972 This is important for Gateway notebooks with SB450 HDA Audio
3973 where the vendor ID of the PCI device is:
3974 ATI Technologies Inc SB450 HDA Audio [1002:437b]
3975 and the vendor/subvendor are found only at the codec.
3977 * @codec: the HDA codec
3978 * @num_configs: number of config enums
3979 * @models: array of model name strings
3980 * @tbl: configuration table, terminated by null entries
3982 * Compares the modelname or PCI subsystem id of the current codec with the
3983 * given configuration table. If a matching entry is found, returns its
3984 * config value (supposed to be 0 or positive).
3986 * If no entries are matching, the function returns a negative value.
3988 int snd_hda_check_board_codec_sid_config(struct hda_codec
*codec
,
3989 int num_configs
, const char * const *models
,
3990 const struct snd_pci_quirk
*tbl
)
3992 const struct snd_pci_quirk
*q
;
3994 /* Search for codec ID */
3995 for (q
= tbl
; q
->subvendor
; q
++) {
3996 unsigned long vendorid
= (q
->subdevice
) | (q
->subvendor
<< 16);
3998 if (vendorid
== codec
->subsystem_id
)
4007 if (tbl
->value
>= 0 && tbl
->value
< num_configs
) {
4008 #ifdef CONFIG_SND_DEBUG_VERBOSE
4010 const char *model
= NULL
;
4012 model
= models
[tbl
->value
];
4014 sprintf(tmp
, "#%d", tbl
->value
);
4017 snd_printdd(KERN_INFO
"hda_codec: model '%s' is selected "
4018 "for config %x:%x (%s)\n",
4019 model
, tbl
->subvendor
, tbl
->subdevice
,
4020 (tbl
->name
? tbl
->name
: "Unknown device"));
4026 EXPORT_SYMBOL_HDA(snd_hda_check_board_codec_sid_config
);
4029 * snd_hda_add_new_ctls - create controls from the array
4030 * @codec: the HDA codec
4031 * @knew: the array of struct snd_kcontrol_new
4033 * This helper function creates and add new controls in the given array.
4034 * The array must be terminated with an empty entry as terminator.
4036 * Returns 0 if successful, or a negative error code.
4038 int snd_hda_add_new_ctls(struct hda_codec
*codec
,
4039 const struct snd_kcontrol_new
*knew
)
4043 for (; knew
->name
; knew
++) {
4044 struct snd_kcontrol
*kctl
;
4045 int addr
= 0, idx
= 0;
4046 if (knew
->iface
== -1) /* skip this codec private value */
4049 kctl
= snd_ctl_new1(knew
, codec
);
4053 kctl
->id
.device
= addr
;
4055 kctl
->id
.index
= idx
;
4056 err
= snd_hda_ctl_add(codec
, 0, kctl
);
4059 /* try first with another device index corresponding to
4060 * the codec addr; if it still fails (or it's the
4061 * primary codec), then try another control index
4063 if (!addr
&& codec
->addr
)
4065 else if (!idx
&& !knew
->index
) {
4066 idx
= find_empty_mixer_ctl_idx(codec
,
4076 EXPORT_SYMBOL_HDA(snd_hda_add_new_ctls
);
4078 #ifdef CONFIG_SND_HDA_POWER_SAVE
4079 static void hda_power_work(struct work_struct
*work
)
4081 struct hda_codec
*codec
=
4082 container_of(work
, struct hda_codec
, power_work
.work
);
4083 struct hda_bus
*bus
= codec
->bus
;
4085 if (!codec
->power_on
|| codec
->power_count
) {
4086 codec
->power_transition
= 0;
4090 hda_call_codec_suspend(codec
);
4091 if (bus
->ops
.pm_notify
)
4092 bus
->ops
.pm_notify(bus
);
4095 static void hda_keep_power_on(struct hda_codec
*codec
)
4097 codec
->power_count
++;
4098 codec
->power_on
= 1;
4099 codec
->power_jiffies
= jiffies
;
4102 /* update the power on/off account with the current jiffies */
4103 void snd_hda_update_power_acct(struct hda_codec
*codec
)
4105 unsigned long delta
= jiffies
- codec
->power_jiffies
;
4106 if (codec
->power_on
)
4107 codec
->power_on_acct
+= delta
;
4109 codec
->power_off_acct
+= delta
;
4110 codec
->power_jiffies
+= delta
;
4114 * snd_hda_power_up - Power-up the codec
4115 * @codec: HD-audio codec
4117 * Increment the power-up counter and power up the hardware really when
4118 * not turned on yet.
4120 void snd_hda_power_up(struct hda_codec
*codec
)
4122 struct hda_bus
*bus
= codec
->bus
;
4124 codec
->power_count
++;
4125 if (codec
->power_on
|| codec
->power_transition
)
4128 snd_hda_update_power_acct(codec
);
4129 codec
->power_on
= 1;
4130 codec
->power_jiffies
= jiffies
;
4131 if (bus
->ops
.pm_notify
)
4132 bus
->ops
.pm_notify(bus
);
4133 hda_call_codec_resume(codec
);
4134 cancel_delayed_work(&codec
->power_work
);
4135 codec
->power_transition
= 0;
4137 EXPORT_SYMBOL_HDA(snd_hda_power_up
);
4139 #define power_save(codec) \
4140 ((codec)->bus->power_save ? *(codec)->bus->power_save : 0)
4143 * snd_hda_power_down - Power-down the codec
4144 * @codec: HD-audio codec
4146 * Decrement the power-up counter and schedules the power-off work if
4147 * the counter rearches to zero.
4149 void snd_hda_power_down(struct hda_codec
*codec
)
4151 --codec
->power_count
;
4152 if (!codec
->power_on
|| codec
->power_count
|| codec
->power_transition
)
4154 if (power_save(codec
)) {
4155 codec
->power_transition
= 1; /* avoid reentrance */
4156 queue_delayed_work(codec
->bus
->workq
, &codec
->power_work
,
4157 msecs_to_jiffies(power_save(codec
) * 1000));
4160 EXPORT_SYMBOL_HDA(snd_hda_power_down
);
4163 * snd_hda_check_amp_list_power - Check the amp list and update the power
4164 * @codec: HD-audio codec
4165 * @check: the object containing an AMP list and the status
4166 * @nid: NID to check / update
4168 * Check whether the given NID is in the amp list. If it's in the list,
4169 * check the current AMP status, and update the the power-status according
4170 * to the mute status.
4172 * This function is supposed to be set or called from the check_power_status
4175 int snd_hda_check_amp_list_power(struct hda_codec
*codec
,
4176 struct hda_loopback_check
*check
,
4179 const struct hda_amp_list
*p
;
4182 if (!check
->amplist
)
4184 for (p
= check
->amplist
; p
->nid
; p
++) {
4189 return 0; /* nothing changed */
4191 for (p
= check
->amplist
; p
->nid
; p
++) {
4192 for (ch
= 0; ch
< 2; ch
++) {
4193 v
= snd_hda_codec_amp_read(codec
, p
->nid
, ch
, p
->dir
,
4195 if (!(v
& HDA_AMP_MUTE
) && v
> 0) {
4196 if (!check
->power_on
) {
4197 check
->power_on
= 1;
4198 snd_hda_power_up(codec
);
4204 if (check
->power_on
) {
4205 check
->power_on
= 0;
4206 snd_hda_power_down(codec
);
4210 EXPORT_SYMBOL_HDA(snd_hda_check_amp_list_power
);
4214 * Channel mode helper
4218 * snd_hda_ch_mode_info - Info callback helper for the channel mode enum
4220 int snd_hda_ch_mode_info(struct hda_codec
*codec
,
4221 struct snd_ctl_elem_info
*uinfo
,
4222 const struct hda_channel_mode
*chmode
,
4225 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_ENUMERATED
;
4227 uinfo
->value
.enumerated
.items
= num_chmodes
;
4228 if (uinfo
->value
.enumerated
.item
>= num_chmodes
)
4229 uinfo
->value
.enumerated
.item
= num_chmodes
- 1;
4230 sprintf(uinfo
->value
.enumerated
.name
, "%dch",
4231 chmode
[uinfo
->value
.enumerated
.item
].channels
);
4234 EXPORT_SYMBOL_HDA(snd_hda_ch_mode_info
);
4237 * snd_hda_ch_mode_get - Get callback helper for the channel mode enum
4239 int snd_hda_ch_mode_get(struct hda_codec
*codec
,
4240 struct snd_ctl_elem_value
*ucontrol
,
4241 const struct hda_channel_mode
*chmode
,
4247 for (i
= 0; i
< num_chmodes
; i
++) {
4248 if (max_channels
== chmode
[i
].channels
) {
4249 ucontrol
->value
.enumerated
.item
[0] = i
;
4255 EXPORT_SYMBOL_HDA(snd_hda_ch_mode_get
);
4258 * snd_hda_ch_mode_put - Put callback helper for the channel mode enum
4260 int snd_hda_ch_mode_put(struct hda_codec
*codec
,
4261 struct snd_ctl_elem_value
*ucontrol
,
4262 const struct hda_channel_mode
*chmode
,
4268 mode
= ucontrol
->value
.enumerated
.item
[0];
4269 if (mode
>= num_chmodes
)
4271 if (*max_channelsp
== chmode
[mode
].channels
)
4273 /* change the current channel setting */
4274 *max_channelsp
= chmode
[mode
].channels
;
4275 if (chmode
[mode
].sequence
)
4276 snd_hda_sequence_write_cache(codec
, chmode
[mode
].sequence
);
4279 EXPORT_SYMBOL_HDA(snd_hda_ch_mode_put
);
4286 * snd_hda_input_mux_info_info - Info callback helper for the input-mux enum
4288 int snd_hda_input_mux_info(const struct hda_input_mux
*imux
,
4289 struct snd_ctl_elem_info
*uinfo
)
4293 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_ENUMERATED
;
4295 uinfo
->value
.enumerated
.items
= imux
->num_items
;
4296 if (!imux
->num_items
)
4298 index
= uinfo
->value
.enumerated
.item
;
4299 if (index
>= imux
->num_items
)
4300 index
= imux
->num_items
- 1;
4301 strcpy(uinfo
->value
.enumerated
.name
, imux
->items
[index
].label
);
4304 EXPORT_SYMBOL_HDA(snd_hda_input_mux_info
);
4307 * snd_hda_input_mux_info_put - Put callback helper for the input-mux enum
4309 int snd_hda_input_mux_put(struct hda_codec
*codec
,
4310 const struct hda_input_mux
*imux
,
4311 struct snd_ctl_elem_value
*ucontrol
,
4313 unsigned int *cur_val
)
4317 if (!imux
->num_items
)
4319 idx
= ucontrol
->value
.enumerated
.item
[0];
4320 if (idx
>= imux
->num_items
)
4321 idx
= imux
->num_items
- 1;
4322 if (*cur_val
== idx
)
4324 snd_hda_codec_write_cache(codec
, nid
, 0, AC_VERB_SET_CONNECT_SEL
,
4325 imux
->items
[idx
].index
);
4329 EXPORT_SYMBOL_HDA(snd_hda_input_mux_put
);
4333 * Multi-channel / digital-out PCM helper functions
4336 /* setup SPDIF output stream */
4337 static void setup_dig_out_stream(struct hda_codec
*codec
, hda_nid_t nid
,
4338 unsigned int stream_tag
, unsigned int format
)
4340 struct hda_spdif_out
*spdif
= snd_hda_spdif_out_of_nid(codec
, nid
);
4342 /* turn off SPDIF once; otherwise the IEC958 bits won't be updated */
4343 if (codec
->spdif_status_reset
&& (spdif
->ctls
& AC_DIG1_ENABLE
))
4344 set_dig_out_convert(codec
, nid
,
4345 spdif
->ctls
& ~AC_DIG1_ENABLE
& 0xff,
4347 snd_hda_codec_setup_stream(codec
, nid
, stream_tag
, 0, format
);
4348 if (codec
->slave_dig_outs
) {
4350 for (d
= codec
->slave_dig_outs
; *d
; d
++)
4351 snd_hda_codec_setup_stream(codec
, *d
, stream_tag
, 0,
4354 /* turn on again (if needed) */
4355 if (codec
->spdif_status_reset
&& (spdif
->ctls
& AC_DIG1_ENABLE
))
4356 set_dig_out_convert(codec
, nid
,
4357 spdif
->ctls
& 0xff, -1);
4360 static void cleanup_dig_out_stream(struct hda_codec
*codec
, hda_nid_t nid
)
4362 snd_hda_codec_cleanup_stream(codec
, nid
);
4363 if (codec
->slave_dig_outs
) {
4365 for (d
= codec
->slave_dig_outs
; *d
; d
++)
4366 snd_hda_codec_cleanup_stream(codec
, *d
);
4371 * snd_hda_bus_reboot_notify - call the reboot notifier of each codec
4372 * @bus: HD-audio bus
4374 void snd_hda_bus_reboot_notify(struct hda_bus
*bus
)
4376 struct hda_codec
*codec
;
4380 list_for_each_entry(codec
, &bus
->codec_list
, list
) {
4381 if (hda_codec_is_power_on(codec
) &&
4382 codec
->patch_ops
.reboot_notify
)
4383 codec
->patch_ops
.reboot_notify(codec
);
4386 EXPORT_SYMBOL_HDA(snd_hda_bus_reboot_notify
);
4389 * snd_hda_multi_out_dig_open - open the digital out in the exclusive mode
4391 int snd_hda_multi_out_dig_open(struct hda_codec
*codec
,
4392 struct hda_multi_out
*mout
)
4394 mutex_lock(&codec
->spdif_mutex
);
4395 if (mout
->dig_out_used
== HDA_DIG_ANALOG_DUP
)
4396 /* already opened as analog dup; reset it once */
4397 cleanup_dig_out_stream(codec
, mout
->dig_out_nid
);
4398 mout
->dig_out_used
= HDA_DIG_EXCLUSIVE
;
4399 mutex_unlock(&codec
->spdif_mutex
);
4402 EXPORT_SYMBOL_HDA(snd_hda_multi_out_dig_open
);
4405 * snd_hda_multi_out_dig_prepare - prepare the digital out stream
4407 int snd_hda_multi_out_dig_prepare(struct hda_codec
*codec
,
4408 struct hda_multi_out
*mout
,
4409 unsigned int stream_tag
,
4410 unsigned int format
,
4411 struct snd_pcm_substream
*substream
)
4413 mutex_lock(&codec
->spdif_mutex
);
4414 setup_dig_out_stream(codec
, mout
->dig_out_nid
, stream_tag
, format
);
4415 mutex_unlock(&codec
->spdif_mutex
);
4418 EXPORT_SYMBOL_HDA(snd_hda_multi_out_dig_prepare
);
4421 * snd_hda_multi_out_dig_cleanup - clean-up the digital out stream
4423 int snd_hda_multi_out_dig_cleanup(struct hda_codec
*codec
,
4424 struct hda_multi_out
*mout
)
4426 mutex_lock(&codec
->spdif_mutex
);
4427 cleanup_dig_out_stream(codec
, mout
->dig_out_nid
);
4428 mutex_unlock(&codec
->spdif_mutex
);
4431 EXPORT_SYMBOL_HDA(snd_hda_multi_out_dig_cleanup
);
4434 * snd_hda_multi_out_dig_close - release the digital out stream
4436 int snd_hda_multi_out_dig_close(struct hda_codec
*codec
,
4437 struct hda_multi_out
*mout
)
4439 mutex_lock(&codec
->spdif_mutex
);
4440 mout
->dig_out_used
= 0;
4441 mutex_unlock(&codec
->spdif_mutex
);
4444 EXPORT_SYMBOL_HDA(snd_hda_multi_out_dig_close
);
4447 * snd_hda_multi_out_analog_open - open analog outputs
4449 * Open analog outputs and set up the hw-constraints.
4450 * If the digital outputs can be opened as slave, open the digital
4453 int snd_hda_multi_out_analog_open(struct hda_codec
*codec
,
4454 struct hda_multi_out
*mout
,
4455 struct snd_pcm_substream
*substream
,
4456 struct hda_pcm_stream
*hinfo
)
4458 struct snd_pcm_runtime
*runtime
= substream
->runtime
;
4459 runtime
->hw
.channels_max
= mout
->max_channels
;
4460 if (mout
->dig_out_nid
) {
4461 if (!mout
->analog_rates
) {
4462 mout
->analog_rates
= hinfo
->rates
;
4463 mout
->analog_formats
= hinfo
->formats
;
4464 mout
->analog_maxbps
= hinfo
->maxbps
;
4466 runtime
->hw
.rates
= mout
->analog_rates
;
4467 runtime
->hw
.formats
= mout
->analog_formats
;
4468 hinfo
->maxbps
= mout
->analog_maxbps
;
4470 if (!mout
->spdif_rates
) {
4471 snd_hda_query_supported_pcm(codec
, mout
->dig_out_nid
,
4473 &mout
->spdif_formats
,
4474 &mout
->spdif_maxbps
);
4476 mutex_lock(&codec
->spdif_mutex
);
4477 if (mout
->share_spdif
) {
4478 if ((runtime
->hw
.rates
& mout
->spdif_rates
) &&
4479 (runtime
->hw
.formats
& mout
->spdif_formats
)) {
4480 runtime
->hw
.rates
&= mout
->spdif_rates
;
4481 runtime
->hw
.formats
&= mout
->spdif_formats
;
4482 if (mout
->spdif_maxbps
< hinfo
->maxbps
)
4483 hinfo
->maxbps
= mout
->spdif_maxbps
;
4485 mout
->share_spdif
= 0;
4486 /* FIXME: need notify? */
4489 mutex_unlock(&codec
->spdif_mutex
);
4491 return snd_pcm_hw_constraint_step(substream
->runtime
, 0,
4492 SNDRV_PCM_HW_PARAM_CHANNELS
, 2);
4494 EXPORT_SYMBOL_HDA(snd_hda_multi_out_analog_open
);
4497 * snd_hda_multi_out_analog_prepare - Preapre the analog outputs.
4499 * Set up the i/o for analog out.
4500 * When the digital out is available, copy the front out to digital out, too.
4502 int snd_hda_multi_out_analog_prepare(struct hda_codec
*codec
,
4503 struct hda_multi_out
*mout
,
4504 unsigned int stream_tag
,
4505 unsigned int format
,
4506 struct snd_pcm_substream
*substream
)
4508 const hda_nid_t
*nids
= mout
->dac_nids
;
4509 int chs
= substream
->runtime
->channels
;
4510 struct hda_spdif_out
*spdif
=
4511 snd_hda_spdif_out_of_nid(codec
, mout
->dig_out_nid
);
4514 mutex_lock(&codec
->spdif_mutex
);
4515 if (mout
->dig_out_nid
&& mout
->share_spdif
&&
4516 mout
->dig_out_used
!= HDA_DIG_EXCLUSIVE
) {
4518 snd_hda_is_supported_format(codec
, mout
->dig_out_nid
,
4520 !(spdif
->status
& IEC958_AES0_NONAUDIO
)) {
4521 mout
->dig_out_used
= HDA_DIG_ANALOG_DUP
;
4522 setup_dig_out_stream(codec
, mout
->dig_out_nid
,
4523 stream_tag
, format
);
4525 mout
->dig_out_used
= 0;
4526 cleanup_dig_out_stream(codec
, mout
->dig_out_nid
);
4529 mutex_unlock(&codec
->spdif_mutex
);
4532 snd_hda_codec_setup_stream(codec
, nids
[HDA_FRONT
], stream_tag
,
4534 if (!mout
->no_share_stream
&&
4535 mout
->hp_nid
&& mout
->hp_nid
!= nids
[HDA_FRONT
])
4536 /* headphone out will just decode front left/right (stereo) */
4537 snd_hda_codec_setup_stream(codec
, mout
->hp_nid
, stream_tag
,
4539 /* extra outputs copied from front */
4540 for (i
= 0; i
< ARRAY_SIZE(mout
->extra_out_nid
); i
++)
4541 if (!mout
->no_share_stream
&& mout
->extra_out_nid
[i
])
4542 snd_hda_codec_setup_stream(codec
,
4543 mout
->extra_out_nid
[i
],
4544 stream_tag
, 0, format
);
4547 for (i
= 1; i
< mout
->num_dacs
; i
++) {
4548 if (chs
>= (i
+ 1) * 2) /* independent out */
4549 snd_hda_codec_setup_stream(codec
, nids
[i
], stream_tag
,
4551 else if (!mout
->no_share_stream
) /* copy front */
4552 snd_hda_codec_setup_stream(codec
, nids
[i
], stream_tag
,
4557 EXPORT_SYMBOL_HDA(snd_hda_multi_out_analog_prepare
);
4560 * snd_hda_multi_out_analog_cleanup - clean up the setting for analog out
4562 int snd_hda_multi_out_analog_cleanup(struct hda_codec
*codec
,
4563 struct hda_multi_out
*mout
)
4565 const hda_nid_t
*nids
= mout
->dac_nids
;
4568 for (i
= 0; i
< mout
->num_dacs
; i
++)
4569 snd_hda_codec_cleanup_stream(codec
, nids
[i
]);
4571 snd_hda_codec_cleanup_stream(codec
, mout
->hp_nid
);
4572 for (i
= 0; i
< ARRAY_SIZE(mout
->extra_out_nid
); i
++)
4573 if (mout
->extra_out_nid
[i
])
4574 snd_hda_codec_cleanup_stream(codec
,
4575 mout
->extra_out_nid
[i
]);
4576 mutex_lock(&codec
->spdif_mutex
);
4577 if (mout
->dig_out_nid
&& mout
->dig_out_used
== HDA_DIG_ANALOG_DUP
) {
4578 cleanup_dig_out_stream(codec
, mout
->dig_out_nid
);
4579 mout
->dig_out_used
= 0;
4581 mutex_unlock(&codec
->spdif_mutex
);
4584 EXPORT_SYMBOL_HDA(snd_hda_multi_out_analog_cleanup
);
4587 * Helper for automatic pin configuration
4590 static int is_in_nid_list(hda_nid_t nid
, const hda_nid_t
*list
)
4592 for (; *list
; list
++)
4600 * Sort an associated group of pins according to their sequence numbers.
4602 static void sort_pins_by_sequence(hda_nid_t
*pins
, short *sequences
,
4609 for (i
= 0; i
< num_pins
; i
++) {
4610 for (j
= i
+ 1; j
< num_pins
; j
++) {
4611 if (sequences
[i
] > sequences
[j
]) {
4613 sequences
[i
] = sequences
[j
];
4624 /* add the found input-pin to the cfg->inputs[] table */
4625 static void add_auto_cfg_input_pin(struct auto_pin_cfg
*cfg
, hda_nid_t nid
,
4628 if (cfg
->num_inputs
< AUTO_CFG_MAX_INS
) {
4629 cfg
->inputs
[cfg
->num_inputs
].pin
= nid
;
4630 cfg
->inputs
[cfg
->num_inputs
].type
= type
;
4635 /* sort inputs in the order of AUTO_PIN_* type */
4636 static void sort_autocfg_input_pins(struct auto_pin_cfg
*cfg
)
4640 for (i
= 0; i
< cfg
->num_inputs
; i
++) {
4641 for (j
= i
+ 1; j
< cfg
->num_inputs
; j
++) {
4642 if (cfg
->inputs
[i
].type
> cfg
->inputs
[j
].type
) {
4643 struct auto_pin_cfg_item tmp
;
4644 tmp
= cfg
->inputs
[i
];
4645 cfg
->inputs
[i
] = cfg
->inputs
[j
];
4646 cfg
->inputs
[j
] = tmp
;
4653 * Parse all pin widgets and store the useful pin nids to cfg
4655 * The number of line-outs or any primary output is stored in line_outs,
4656 * and the corresponding output pins are assigned to line_out_pins[],
4657 * in the order of front, rear, CLFE, side, ...
4659 * If more extra outputs (speaker and headphone) are found, the pins are
4660 * assisnged to hp_pins[] and speaker_pins[], respectively. If no line-out jack
4661 * is detected, one of speaker of HP pins is assigned as the primary
4662 * output, i.e. to line_out_pins[0]. So, line_outs is always positive
4663 * if any analog output exists.
4665 * The analog input pins are assigned to inputs array.
4666 * The digital input/output pins are assigned to dig_in_pin and dig_out_pin,
4669 int snd_hda_parse_pin_def_config(struct hda_codec
*codec
,
4670 struct auto_pin_cfg
*cfg
,
4671 const hda_nid_t
*ignore_nids
)
4673 hda_nid_t nid
, end_nid
;
4674 short seq
, assoc_line_out
, assoc_speaker
;
4675 short sequences_line_out
[ARRAY_SIZE(cfg
->line_out_pins
)];
4676 short sequences_speaker
[ARRAY_SIZE(cfg
->speaker_pins
)];
4677 short sequences_hp
[ARRAY_SIZE(cfg
->hp_pins
)];
4680 memset(cfg
, 0, sizeof(*cfg
));
4682 memset(sequences_line_out
, 0, sizeof(sequences_line_out
));
4683 memset(sequences_speaker
, 0, sizeof(sequences_speaker
));
4684 memset(sequences_hp
, 0, sizeof(sequences_hp
));
4685 assoc_line_out
= assoc_speaker
= 0;
4687 end_nid
= codec
->start_nid
+ codec
->num_nodes
;
4688 for (nid
= codec
->start_nid
; nid
< end_nid
; nid
++) {
4689 unsigned int wid_caps
= get_wcaps(codec
, nid
);
4690 unsigned int wid_type
= get_wcaps_type(wid_caps
);
4691 unsigned int def_conf
;
4692 short assoc
, loc
, conn
, dev
;
4694 /* read all default configuration for pin complex */
4695 if (wid_type
!= AC_WID_PIN
)
4697 /* ignore the given nids (e.g. pc-beep returns error) */
4698 if (ignore_nids
&& is_in_nid_list(nid
, ignore_nids
))
4701 def_conf
= snd_hda_codec_get_pincfg(codec
, nid
);
4702 conn
= get_defcfg_connect(def_conf
);
4703 if (conn
== AC_JACK_PORT_NONE
)
4705 loc
= get_defcfg_location(def_conf
);
4706 dev
= get_defcfg_device(def_conf
);
4708 /* workaround for buggy BIOS setups */
4709 if (dev
== AC_JACK_LINE_OUT
) {
4710 if (conn
== AC_JACK_PORT_FIXED
)
4711 dev
= AC_JACK_SPEAKER
;
4715 case AC_JACK_LINE_OUT
:
4716 seq
= get_defcfg_sequence(def_conf
);
4717 assoc
= get_defcfg_association(def_conf
);
4719 if (!(wid_caps
& AC_WCAP_STEREO
))
4720 if (!cfg
->mono_out_pin
)
4721 cfg
->mono_out_pin
= nid
;
4724 if (!assoc_line_out
)
4725 assoc_line_out
= assoc
;
4726 else if (assoc_line_out
!= assoc
)
4728 if (cfg
->line_outs
>= ARRAY_SIZE(cfg
->line_out_pins
))
4730 cfg
->line_out_pins
[cfg
->line_outs
] = nid
;
4731 sequences_line_out
[cfg
->line_outs
] = seq
;
4734 case AC_JACK_SPEAKER
:
4735 seq
= get_defcfg_sequence(def_conf
);
4736 assoc
= get_defcfg_association(def_conf
);
4740 assoc_speaker
= assoc
;
4741 else if (assoc_speaker
!= assoc
)
4743 if (cfg
->speaker_outs
>= ARRAY_SIZE(cfg
->speaker_pins
))
4745 cfg
->speaker_pins
[cfg
->speaker_outs
] = nid
;
4746 sequences_speaker
[cfg
->speaker_outs
] = seq
;
4747 cfg
->speaker_outs
++;
4749 case AC_JACK_HP_OUT
:
4750 seq
= get_defcfg_sequence(def_conf
);
4751 assoc
= get_defcfg_association(def_conf
);
4752 if (cfg
->hp_outs
>= ARRAY_SIZE(cfg
->hp_pins
))
4754 cfg
->hp_pins
[cfg
->hp_outs
] = nid
;
4755 sequences_hp
[cfg
->hp_outs
] = (assoc
<< 4) | seq
;
4758 case AC_JACK_MIC_IN
:
4759 add_auto_cfg_input_pin(cfg
, nid
, AUTO_PIN_MIC
);
4761 case AC_JACK_LINE_IN
:
4762 add_auto_cfg_input_pin(cfg
, nid
, AUTO_PIN_LINE_IN
);
4765 add_auto_cfg_input_pin(cfg
, nid
, AUTO_PIN_CD
);
4768 add_auto_cfg_input_pin(cfg
, nid
, AUTO_PIN_AUX
);
4770 case AC_JACK_SPDIF_OUT
:
4771 case AC_JACK_DIG_OTHER_OUT
:
4772 if (cfg
->dig_outs
>= ARRAY_SIZE(cfg
->dig_out_pins
))
4774 cfg
->dig_out_pins
[cfg
->dig_outs
] = nid
;
4775 cfg
->dig_out_type
[cfg
->dig_outs
] =
4776 (loc
== AC_JACK_LOC_HDMI
) ?
4777 HDA_PCM_TYPE_HDMI
: HDA_PCM_TYPE_SPDIF
;
4780 case AC_JACK_SPDIF_IN
:
4781 case AC_JACK_DIG_OTHER_IN
:
4782 cfg
->dig_in_pin
= nid
;
4783 if (loc
== AC_JACK_LOC_HDMI
)
4784 cfg
->dig_in_type
= HDA_PCM_TYPE_HDMI
;
4786 cfg
->dig_in_type
= HDA_PCM_TYPE_SPDIF
;
4792 * If no line-out is defined but multiple HPs are found,
4793 * some of them might be the real line-outs.
4795 if (!cfg
->line_outs
&& cfg
->hp_outs
> 1) {
4797 while (i
< cfg
->hp_outs
) {
4798 /* The real HPs should have the sequence 0x0f */
4799 if ((sequences_hp
[i
] & 0x0f) == 0x0f) {
4803 /* Move it to the line-out table */
4804 cfg
->line_out_pins
[cfg
->line_outs
] = cfg
->hp_pins
[i
];
4805 sequences_line_out
[cfg
->line_outs
] = sequences_hp
[i
];
4808 memmove(cfg
->hp_pins
+ i
, cfg
->hp_pins
+ i
+ 1,
4809 sizeof(cfg
->hp_pins
[0]) * (cfg
->hp_outs
- i
));
4810 memmove(sequences_hp
+ i
, sequences_hp
+ i
+ 1,
4811 sizeof(sequences_hp
[0]) * (cfg
->hp_outs
- i
));
4813 memset(cfg
->hp_pins
+ cfg
->hp_outs
, 0,
4814 sizeof(hda_nid_t
) * (AUTO_CFG_MAX_OUTS
- cfg
->hp_outs
));
4816 cfg
->line_out_type
= AUTO_PIN_HP_OUT
;
4820 /* sort by sequence */
4821 sort_pins_by_sequence(cfg
->line_out_pins
, sequences_line_out
,
4823 sort_pins_by_sequence(cfg
->speaker_pins
, sequences_speaker
,
4825 sort_pins_by_sequence(cfg
->hp_pins
, sequences_hp
,
4829 * FIX-UP: if no line-outs are detected, try to use speaker or HP pin
4830 * as a primary output
4832 if (!cfg
->line_outs
) {
4833 if (cfg
->speaker_outs
) {
4834 cfg
->line_outs
= cfg
->speaker_outs
;
4835 memcpy(cfg
->line_out_pins
, cfg
->speaker_pins
,
4836 sizeof(cfg
->speaker_pins
));
4837 cfg
->speaker_outs
= 0;
4838 memset(cfg
->speaker_pins
, 0, sizeof(cfg
->speaker_pins
));
4839 cfg
->line_out_type
= AUTO_PIN_SPEAKER_OUT
;
4840 } else if (cfg
->hp_outs
) {
4841 cfg
->line_outs
= cfg
->hp_outs
;
4842 memcpy(cfg
->line_out_pins
, cfg
->hp_pins
,
4843 sizeof(cfg
->hp_pins
));
4845 memset(cfg
->hp_pins
, 0, sizeof(cfg
->hp_pins
));
4846 cfg
->line_out_type
= AUTO_PIN_HP_OUT
;
4850 /* Reorder the surround channels
4851 * ALSA sequence is front/surr/clfe/side
4853 * 4-ch: front/surr => OK as it is
4854 * 6-ch: front/clfe/surr
4855 * 8-ch: front/clfe/rear/side|fc
4857 switch (cfg
->line_outs
) {
4860 nid
= cfg
->line_out_pins
[1];
4861 cfg
->line_out_pins
[1] = cfg
->line_out_pins
[2];
4862 cfg
->line_out_pins
[2] = nid
;
4866 sort_autocfg_input_pins(cfg
);
4869 * debug prints of the parsed results
4871 snd_printd("autoconfig: line_outs=%d (0x%x/0x%x/0x%x/0x%x/0x%x) type:%s\n",
4872 cfg
->line_outs
, cfg
->line_out_pins
[0], cfg
->line_out_pins
[1],
4873 cfg
->line_out_pins
[2], cfg
->line_out_pins
[3],
4874 cfg
->line_out_pins
[4],
4875 cfg
->line_out_type
== AUTO_PIN_HP_OUT
? "hp" :
4876 (cfg
->line_out_type
== AUTO_PIN_SPEAKER_OUT
?
4877 "speaker" : "line"));
4878 snd_printd(" speaker_outs=%d (0x%x/0x%x/0x%x/0x%x/0x%x)\n",
4879 cfg
->speaker_outs
, cfg
->speaker_pins
[0],
4880 cfg
->speaker_pins
[1], cfg
->speaker_pins
[2],
4881 cfg
->speaker_pins
[3], cfg
->speaker_pins
[4]);
4882 snd_printd(" hp_outs=%d (0x%x/0x%x/0x%x/0x%x/0x%x)\n",
4883 cfg
->hp_outs
, cfg
->hp_pins
[0],
4884 cfg
->hp_pins
[1], cfg
->hp_pins
[2],
4885 cfg
->hp_pins
[3], cfg
->hp_pins
[4]);
4886 snd_printd(" mono: mono_out=0x%x\n", cfg
->mono_out_pin
);
4888 snd_printd(" dig-out=0x%x/0x%x\n",
4889 cfg
->dig_out_pins
[0], cfg
->dig_out_pins
[1]);
4890 snd_printd(" inputs:");
4891 for (i
= 0; i
< cfg
->num_inputs
; i
++) {
4892 snd_printd(" %s=0x%x",
4893 hda_get_autocfg_input_label(codec
, cfg
, i
),
4894 cfg
->inputs
[i
].pin
);
4897 if (cfg
->dig_in_pin
)
4898 snd_printd(" dig-in=0x%x\n", cfg
->dig_in_pin
);
4902 EXPORT_SYMBOL_HDA(snd_hda_parse_pin_def_config
);
4904 int snd_hda_get_input_pin_attr(unsigned int def_conf
)
4906 unsigned int loc
= get_defcfg_location(def_conf
);
4907 unsigned int conn
= get_defcfg_connect(def_conf
);
4908 if (conn
== AC_JACK_PORT_NONE
)
4909 return INPUT_PIN_ATTR_UNUSED
;
4910 /* Windows may claim the internal mic to be BOTH, too */
4911 if (conn
== AC_JACK_PORT_FIXED
|| conn
== AC_JACK_PORT_BOTH
)
4912 return INPUT_PIN_ATTR_INT
;
4913 if ((loc
& 0x30) == AC_JACK_LOC_INTERNAL
)
4914 return INPUT_PIN_ATTR_INT
;
4915 if ((loc
& 0x30) == AC_JACK_LOC_SEPARATE
)
4916 return INPUT_PIN_ATTR_DOCK
;
4917 if (loc
== AC_JACK_LOC_REAR
)
4918 return INPUT_PIN_ATTR_REAR
;
4919 if (loc
== AC_JACK_LOC_FRONT
)
4920 return INPUT_PIN_ATTR_FRONT
;
4921 return INPUT_PIN_ATTR_NORMAL
;
4923 EXPORT_SYMBOL_HDA(snd_hda_get_input_pin_attr
);
4926 * hda_get_input_pin_label - Give a label for the given input pin
4928 * When check_location is true, the function checks the pin location
4929 * for mic and line-in pins, and set an appropriate prefix like "Front",
4930 * "Rear", "Internal".
4933 const char *hda_get_input_pin_label(struct hda_codec
*codec
, hda_nid_t pin
,
4936 unsigned int def_conf
;
4937 static const char * const mic_names
[] = {
4938 "Internal Mic", "Dock Mic", "Mic", "Front Mic", "Rear Mic",
4942 def_conf
= snd_hda_codec_get_pincfg(codec
, pin
);
4944 switch (get_defcfg_device(def_conf
)) {
4945 case AC_JACK_MIC_IN
:
4946 if (!check_location
)
4948 attr
= snd_hda_get_input_pin_attr(def_conf
);
4951 return mic_names
[attr
- 1];
4952 case AC_JACK_LINE_IN
:
4953 if (!check_location
)
4955 attr
= snd_hda_get_input_pin_attr(def_conf
);
4958 if (attr
== INPUT_PIN_ATTR_DOCK
)
4965 case AC_JACK_SPDIF_IN
:
4967 case AC_JACK_DIG_OTHER_IN
:
4968 return "Digital In";
4973 EXPORT_SYMBOL_HDA(hda_get_input_pin_label
);
4975 /* Check whether the location prefix needs to be added to the label.
4976 * If all mic-jacks are in the same location (e.g. rear panel), we don't
4977 * have to put "Front" prefix to each label. In such a case, returns false.
4979 static int check_mic_location_need(struct hda_codec
*codec
,
4980 const struct auto_pin_cfg
*cfg
,
4986 defc
= snd_hda_codec_get_pincfg(codec
, cfg
->inputs
[input
].pin
);
4987 attr
= snd_hda_get_input_pin_attr(defc
);
4988 /* for internal or docking mics, we need locations */
4989 if (attr
<= INPUT_PIN_ATTR_NORMAL
)
4993 for (i
= 0; i
< cfg
->num_inputs
; i
++) {
4994 defc
= snd_hda_codec_get_pincfg(codec
, cfg
->inputs
[i
].pin
);
4995 attr2
= snd_hda_get_input_pin_attr(defc
);
4996 if (attr2
>= INPUT_PIN_ATTR_NORMAL
) {
4997 if (attr
&& attr
!= attr2
)
4998 return 1; /* different locations found */
5006 * hda_get_autocfg_input_label - Get a label for the given input
5008 * Get a label for the given input pin defined by the autocfg item.
5009 * Unlike hda_get_input_pin_label(), this function checks all inputs
5010 * defined in autocfg and avoids the redundant mic/line prefix as much as
5013 const char *hda_get_autocfg_input_label(struct hda_codec
*codec
,
5014 const struct auto_pin_cfg
*cfg
,
5017 int type
= cfg
->inputs
[input
].type
;
5018 int has_multiple_pins
= 0;
5020 if ((input
> 0 && cfg
->inputs
[input
- 1].type
== type
) ||
5021 (input
< cfg
->num_inputs
- 1 && cfg
->inputs
[input
+ 1].type
== type
))
5022 has_multiple_pins
= 1;
5023 if (has_multiple_pins
&& type
== AUTO_PIN_MIC
)
5024 has_multiple_pins
&= check_mic_location_need(codec
, cfg
, input
);
5025 return hda_get_input_pin_label(codec
, cfg
->inputs
[input
].pin
,
5028 EXPORT_SYMBOL_HDA(hda_get_autocfg_input_label
);
5031 * snd_hda_add_imux_item - Add an item to input_mux
5033 * When the same label is used already in the existing items, the number
5034 * suffix is appended to the label. This label index number is stored
5035 * to type_idx when non-NULL pointer is given.
5037 int snd_hda_add_imux_item(struct hda_input_mux
*imux
, const char *label
,
5038 int index
, int *type_idx
)
5040 int i
, label_idx
= 0;
5041 if (imux
->num_items
>= HDA_MAX_NUM_INPUTS
) {
5042 snd_printd(KERN_ERR
"hda_codec: Too many imux items!\n");
5045 for (i
= 0; i
< imux
->num_items
; i
++) {
5046 if (!strncmp(label
, imux
->items
[i
].label
, strlen(label
)))
5050 *type_idx
= label_idx
;
5052 snprintf(imux
->items
[imux
->num_items
].label
,
5053 sizeof(imux
->items
[imux
->num_items
].label
),
5054 "%s %d", label
, label_idx
);
5056 strlcpy(imux
->items
[imux
->num_items
].label
, label
,
5057 sizeof(imux
->items
[imux
->num_items
].label
));
5058 imux
->items
[imux
->num_items
].index
= index
;
5062 EXPORT_SYMBOL_HDA(snd_hda_add_imux_item
);
5071 * snd_hda_suspend - suspend the codecs
5074 * Returns 0 if successful.
5076 int snd_hda_suspend(struct hda_bus
*bus
)
5078 struct hda_codec
*codec
;
5080 list_for_each_entry(codec
, &bus
->codec_list
, list
) {
5081 if (hda_codec_is_power_on(codec
))
5082 hda_call_codec_suspend(codec
);
5083 if (codec
->patch_ops
.post_suspend
)
5084 codec
->patch_ops
.post_suspend(codec
);
5088 EXPORT_SYMBOL_HDA(snd_hda_suspend
);
5091 * snd_hda_resume - resume the codecs
5094 * Returns 0 if successful.
5096 * This function is defined only when POWER_SAVE isn't set.
5097 * In the power-save mode, the codec is resumed dynamically.
5099 int snd_hda_resume(struct hda_bus
*bus
)
5101 struct hda_codec
*codec
;
5103 list_for_each_entry(codec
, &bus
->codec_list
, list
) {
5104 if (codec
->patch_ops
.pre_resume
)
5105 codec
->patch_ops
.pre_resume(codec
);
5106 if (snd_hda_codec_needs_resume(codec
))
5107 hda_call_codec_resume(codec
);
5111 EXPORT_SYMBOL_HDA(snd_hda_resume
);
5112 #endif /* CONFIG_PM */
5119 * snd_array_new - get a new element from the given array
5120 * @array: the array object
5122 * Get a new element from the given array. If it exceeds the
5123 * pre-allocated array size, re-allocate the array.
5125 * Returns NULL if allocation failed.
5127 void *snd_array_new(struct snd_array
*array
)
5129 if (array
->used
>= array
->alloced
) {
5130 int num
= array
->alloced
+ array
->alloc_align
;
5131 int size
= (num
+ 1) * array
->elem_size
;
5132 int oldsize
= array
->alloced
* array
->elem_size
;
5134 if (snd_BUG_ON(num
>= 4096))
5136 nlist
= krealloc(array
->list
, size
, GFP_KERNEL
);
5139 memset(nlist
+ oldsize
, 0, size
- oldsize
);
5140 array
->list
= nlist
;
5141 array
->alloced
= num
;
5143 return snd_array_elem(array
, array
->used
++);
5145 EXPORT_SYMBOL_HDA(snd_array_new
);
5148 * snd_array_free - free the given array elements
5149 * @array: the array object
5151 void snd_array_free(struct snd_array
*array
)
5158 EXPORT_SYMBOL_HDA(snd_array_free
);
5161 * snd_print_pcm_rates - Print the supported PCM rates to the string buffer
5162 * @pcm: PCM caps bits
5163 * @buf: the string buffer to write
5164 * @buflen: the max buffer length
5166 * used by hda_proc.c and hda_eld.c
5168 void snd_print_pcm_rates(int pcm
, char *buf
, int buflen
)
5170 static unsigned int rates
[] = {
5171 8000, 11025, 16000, 22050, 32000, 44100, 48000, 88200,
5172 96000, 176400, 192000, 384000
5176 for (i
= 0, j
= 0; i
< ARRAY_SIZE(rates
); i
++)
5178 j
+= snprintf(buf
+ j
, buflen
- j
, " %d", rates
[i
]);
5180 buf
[j
] = '\0'; /* necessary when j == 0 */
5182 EXPORT_SYMBOL_HDA(snd_print_pcm_rates
);
5185 * snd_print_pcm_bits - Print the supported PCM fmt bits to the string buffer
5186 * @pcm: PCM caps bits
5187 * @buf: the string buffer to write
5188 * @buflen: the max buffer length
5190 * used by hda_proc.c and hda_eld.c
5192 void snd_print_pcm_bits(int pcm
, char *buf
, int buflen
)
5194 static unsigned int bits
[] = { 8, 16, 20, 24, 32 };
5197 for (i
= 0, j
= 0; i
< ARRAY_SIZE(bits
); i
++)
5198 if (pcm
& (AC_SUPPCM_BITS_8
<< i
))
5199 j
+= snprintf(buf
+ j
, buflen
- j
, " %d", bits
[i
]);
5201 buf
[j
] = '\0'; /* necessary when j == 0 */
5203 EXPORT_SYMBOL_HDA(snd_print_pcm_bits
);
5205 #ifdef CONFIG_SND_HDA_INPUT_JACK
5207 * Input-jack notification support
5209 struct hda_jack_item
{
5212 struct snd_jack
*jack
;
5215 static const char *get_jack_default_name(struct hda_codec
*codec
, hda_nid_t nid
,
5219 case SND_JACK_HEADPHONE
:
5221 case SND_JACK_MICROPHONE
:
5223 case SND_JACK_LINEOUT
:
5225 case SND_JACK_HEADSET
:
5227 case SND_JACK_VIDEOOUT
:
5234 static void hda_free_jack_priv(struct snd_jack
*jack
)
5236 struct hda_jack_item
*jacks
= jack
->private_data
;
5241 int snd_hda_input_jack_add(struct hda_codec
*codec
, hda_nid_t nid
, int type
,
5244 struct hda_jack_item
*jack
;
5247 snd_array_init(&codec
->jacks
, sizeof(*jack
), 32);
5248 jack
= snd_array_new(&codec
->jacks
);
5255 name
= get_jack_default_name(codec
, nid
, type
);
5256 err
= snd_jack_new(codec
->bus
->card
, name
, type
, &jack
->jack
);
5261 jack
->jack
->private_data
= jack
;
5262 jack
->jack
->private_free
= hda_free_jack_priv
;
5265 EXPORT_SYMBOL_HDA(snd_hda_input_jack_add
);
5267 void snd_hda_input_jack_report(struct hda_codec
*codec
, hda_nid_t nid
)
5269 struct hda_jack_item
*jacks
= codec
->jacks
.list
;
5275 for (i
= 0; i
< codec
->jacks
.used
; i
++, jacks
++) {
5276 unsigned int pin_ctl
;
5277 unsigned int present
;
5280 if (jacks
->nid
!= nid
)
5282 present
= snd_hda_jack_detect(codec
, nid
);
5284 if (type
== (SND_JACK_HEADPHONE
| SND_JACK_LINEOUT
)) {
5285 pin_ctl
= snd_hda_codec_read(codec
, nid
, 0,
5286 AC_VERB_GET_PIN_WIDGET_CONTROL
, 0);
5287 type
= (pin_ctl
& AC_PINCTL_HP_EN
) ?
5288 SND_JACK_HEADPHONE
: SND_JACK_LINEOUT
;
5290 snd_jack_report(jacks
->jack
, present
? type
: 0);
5293 EXPORT_SYMBOL_HDA(snd_hda_input_jack_report
);
5295 /* free jack instances manually when clearing/reconfiguring */
5296 void snd_hda_input_jack_free(struct hda_codec
*codec
)
5298 if (!codec
->bus
->shutdown
&& codec
->jacks
.list
) {
5299 struct hda_jack_item
*jacks
= codec
->jacks
.list
;
5301 for (i
= 0; i
< codec
->jacks
.used
; i
++, jacks
++) {
5303 snd_device_free(codec
->bus
->card
, jacks
->jack
);
5306 snd_array_free(&codec
->jacks
);
5308 EXPORT_SYMBOL_HDA(snd_hda_input_jack_free
);
5309 #endif /* CONFIG_SND_HDA_INPUT_JACK */
5311 MODULE_DESCRIPTION("HDA codec core");
5312 MODULE_LICENSE("GPL");