2 * Copyright (C) 2010 Red Hat, Inc.
4 * written by Gerd Hoffmann <kraxel@redhat.com>
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License as
8 * published by the Free Software Foundation; either version 2 or
9 * (at your option) version 3 of the License.
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, see <http://www.gnu.org/licenses/>.
22 #include "intel-hda.h"
23 #include "intel-hda-defs.h"
24 #include "audio/audio.h"
26 /* -------------------------------------------------------------------------- */
28 typedef struct desc_param
{
33 typedef struct desc_node
{
36 const desc_param
*params
;
44 typedef struct desc_codec
{
47 const desc_node
*nodes
;
51 static const desc_param
* hda_codec_find_param(const desc_node
*node
, uint32_t id
)
55 for (i
= 0; i
< node
->nparams
; i
++) {
56 if (node
->params
[i
].id
== id
) {
57 return &node
->params
[i
];
63 static const desc_node
* hda_codec_find_node(const desc_codec
*codec
, uint32_t nid
)
67 for (i
= 0; i
< codec
->nnodes
; i
++) {
68 if (codec
->nodes
[i
].nid
== nid
) {
69 return &codec
->nodes
[i
];
75 static void hda_codec_parse_fmt(uint32_t format
, struct audsettings
*as
)
77 if (format
& AC_FMT_TYPE_NON_PCM
) {
81 as
->freq
= (format
& AC_FMT_BASE_44K
) ? 44100 : 48000;
83 switch ((format
& AC_FMT_MULT_MASK
) >> AC_FMT_MULT_SHIFT
) {
84 case 1: as
->freq
*= 2; break;
85 case 2: as
->freq
*= 3; break;
86 case 3: as
->freq
*= 4; break;
89 switch ((format
& AC_FMT_DIV_MASK
) >> AC_FMT_DIV_SHIFT
) {
90 case 1: as
->freq
/= 2; break;
91 case 2: as
->freq
/= 3; break;
92 case 3: as
->freq
/= 4; break;
93 case 4: as
->freq
/= 5; break;
94 case 5: as
->freq
/= 6; break;
95 case 6: as
->freq
/= 7; break;
96 case 7: as
->freq
/= 8; break;
99 switch (format
& AC_FMT_BITS_MASK
) {
100 case AC_FMT_BITS_8
: as
->fmt
= AUD_FMT_S8
; break;
101 case AC_FMT_BITS_16
: as
->fmt
= AUD_FMT_S16
; break;
102 case AC_FMT_BITS_32
: as
->fmt
= AUD_FMT_S32
; break;
105 as
->nchannels
= ((format
& AC_FMT_CHAN_MASK
) >> AC_FMT_CHAN_SHIFT
) + 1;
108 /* -------------------------------------------------------------------------- */
110 * HDA codec descriptions
115 #define QEMU_HDA_ID_VENDOR 0x1af4
116 #define QEMU_HDA_ID_OUTPUT ((QEMU_HDA_ID_VENDOR << 16) | 0x10)
117 #define QEMU_HDA_ID_DUPLEX ((QEMU_HDA_ID_VENDOR << 16) | 0x20)
119 #define QEMU_HDA_PCM_FORMATS (AC_SUPPCM_BITS_16 | \
120 0x1fc /* 16 -> 96 kHz */)
121 #define QEMU_HDA_AMP_NONE (0)
122 #define QEMU_HDA_AMP_STEPS 0x4a
125 #define QEMU_HDA_AMP_CAPS \
127 (QEMU_HDA_AMP_STEPS << AC_AMPCAP_OFFSET_SHIFT) | \
128 (QEMU_HDA_AMP_STEPS << AC_AMPCAP_NUM_STEPS_SHIFT) | \
129 (3 << AC_AMPCAP_STEP_SIZE_SHIFT))
131 #define QEMU_HDA_AMP_CAPS QEMU_HDA_AMP_NONE
134 /* common: audio output widget */
135 static const desc_param common_params_audio_dac
[] = {
137 .id
= AC_PAR_AUDIO_WIDGET_CAP
,
138 .val
= ((AC_WID_AUD_OUT
<< AC_WCAP_TYPE_SHIFT
) |
139 AC_WCAP_FORMAT_OVRD
|
145 .val
= QEMU_HDA_PCM_FORMATS
,
148 .val
= AC_SUPFMT_PCM
,
150 .id
= AC_PAR_AMP_IN_CAP
,
151 .val
= QEMU_HDA_AMP_NONE
,
153 .id
= AC_PAR_AMP_OUT_CAP
,
154 .val
= QEMU_HDA_AMP_CAPS
,
158 /* common: pin widget (line-out) */
159 static const desc_param common_params_audio_lineout
[] = {
161 .id
= AC_PAR_AUDIO_WIDGET_CAP
,
162 .val
= ((AC_WID_PIN
<< AC_WCAP_TYPE_SHIFT
) |
166 .id
= AC_PAR_PIN_CAP
,
167 .val
= AC_PINCAP_OUT
,
169 .id
= AC_PAR_CONNLIST_LEN
,
172 .id
= AC_PAR_AMP_IN_CAP
,
173 .val
= QEMU_HDA_AMP_NONE
,
175 .id
= AC_PAR_AMP_OUT_CAP
,
176 .val
= QEMU_HDA_AMP_NONE
,
180 /* output: root node */
181 static const desc_param output_params_root
[] = {
183 .id
= AC_PAR_VENDOR_ID
,
184 .val
= QEMU_HDA_ID_OUTPUT
,
186 .id
= AC_PAR_SUBSYSTEM_ID
,
187 .val
= QEMU_HDA_ID_OUTPUT
,
192 .id
= AC_PAR_NODE_COUNT
,
197 /* output: audio function */
198 static const desc_param output_params_audio_func
[] = {
200 .id
= AC_PAR_FUNCTION_TYPE
,
201 .val
= AC_GRP_AUDIO_FUNCTION
,
203 .id
= AC_PAR_SUBSYSTEM_ID
,
204 .val
= QEMU_HDA_ID_OUTPUT
,
206 .id
= AC_PAR_NODE_COUNT
,
210 .val
= QEMU_HDA_PCM_FORMATS
,
213 .val
= AC_SUPFMT_PCM
,
215 .id
= AC_PAR_AMP_IN_CAP
,
216 .val
= QEMU_HDA_AMP_NONE
,
218 .id
= AC_PAR_AMP_OUT_CAP
,
219 .val
= QEMU_HDA_AMP_NONE
,
221 .id
= AC_PAR_GPIO_CAP
,
224 .id
= AC_PAR_AUDIO_FG_CAP
,
227 .id
= AC_PAR_POWER_STATE
,
233 static const desc_node output_nodes
[] = {
237 .params
= output_params_root
,
238 .nparams
= ARRAY_SIZE(output_params_root
),
242 .params
= output_params_audio_func
,
243 .nparams
= ARRAY_SIZE(output_params_audio_func
),
247 .params
= common_params_audio_dac
,
248 .nparams
= ARRAY_SIZE(common_params_audio_dac
),
253 .params
= common_params_audio_lineout
,
254 .nparams
= ARRAY_SIZE(common_params_audio_lineout
),
255 .config
= ((AC_JACK_PORT_COMPLEX
<< AC_DEFCFG_PORT_CONN_SHIFT
) |
256 (AC_JACK_LINE_OUT
<< AC_DEFCFG_DEVICE_SHIFT
) |
257 (AC_JACK_CONN_UNKNOWN
<< AC_DEFCFG_CONN_TYPE_SHIFT
) |
258 (AC_JACK_COLOR_GREEN
<< AC_DEFCFG_COLOR_SHIFT
) |
260 .pinctl
= AC_PINCTL_OUT_EN
,
261 .conn
= (uint32_t[]) { 2 },
266 static const desc_codec output
= {
268 .iid
= QEMU_HDA_ID_OUTPUT
,
269 .nodes
= output_nodes
,
270 .nnodes
= ARRAY_SIZE(output_nodes
),
273 /* duplex: root node */
274 static const desc_param duplex_params_root
[] = {
276 .id
= AC_PAR_VENDOR_ID
,
277 .val
= QEMU_HDA_ID_DUPLEX
,
279 .id
= AC_PAR_SUBSYSTEM_ID
,
280 .val
= QEMU_HDA_ID_DUPLEX
,
285 .id
= AC_PAR_NODE_COUNT
,
290 /* duplex: audio input widget */
291 static const desc_param duplex_params_audio_adc
[] = {
293 .id
= AC_PAR_AUDIO_WIDGET_CAP
,
294 .val
= ((AC_WID_AUD_IN
<< AC_WCAP_TYPE_SHIFT
) |
296 AC_WCAP_FORMAT_OVRD
|
301 .id
= AC_PAR_CONNLIST_LEN
,
305 .val
= QEMU_HDA_PCM_FORMATS
,
308 .val
= AC_SUPFMT_PCM
,
310 .id
= AC_PAR_AMP_IN_CAP
,
311 .val
= QEMU_HDA_AMP_CAPS
,
313 .id
= AC_PAR_AMP_OUT_CAP
,
314 .val
= QEMU_HDA_AMP_NONE
,
318 /* duplex: pin widget (line-in) */
319 static const desc_param duplex_params_audio_linein
[] = {
321 .id
= AC_PAR_AUDIO_WIDGET_CAP
,
322 .val
= ((AC_WID_PIN
<< AC_WCAP_TYPE_SHIFT
) |
325 .id
= AC_PAR_PIN_CAP
,
328 .id
= AC_PAR_AMP_IN_CAP
,
329 .val
= QEMU_HDA_AMP_NONE
,
331 .id
= AC_PAR_AMP_OUT_CAP
,
332 .val
= QEMU_HDA_AMP_NONE
,
336 /* duplex: audio function */
337 static const desc_param duplex_params_audio_func
[] = {
339 .id
= AC_PAR_FUNCTION_TYPE
,
340 .val
= AC_GRP_AUDIO_FUNCTION
,
342 .id
= AC_PAR_SUBSYSTEM_ID
,
343 .val
= QEMU_HDA_ID_DUPLEX
,
345 .id
= AC_PAR_NODE_COUNT
,
349 .val
= QEMU_HDA_PCM_FORMATS
,
352 .val
= AC_SUPFMT_PCM
,
354 .id
= AC_PAR_AMP_IN_CAP
,
355 .val
= QEMU_HDA_AMP_NONE
,
357 .id
= AC_PAR_AMP_OUT_CAP
,
358 .val
= QEMU_HDA_AMP_NONE
,
360 .id
= AC_PAR_GPIO_CAP
,
363 .id
= AC_PAR_AUDIO_FG_CAP
,
366 .id
= AC_PAR_POWER_STATE
,
372 static const desc_node duplex_nodes
[] = {
376 .params
= duplex_params_root
,
377 .nparams
= ARRAY_SIZE(duplex_params_root
),
381 .params
= duplex_params_audio_func
,
382 .nparams
= ARRAY_SIZE(duplex_params_audio_func
),
386 .params
= common_params_audio_dac
,
387 .nparams
= ARRAY_SIZE(common_params_audio_dac
),
392 .params
= common_params_audio_lineout
,
393 .nparams
= ARRAY_SIZE(common_params_audio_lineout
),
394 .config
= ((AC_JACK_PORT_COMPLEX
<< AC_DEFCFG_PORT_CONN_SHIFT
) |
395 (AC_JACK_LINE_OUT
<< AC_DEFCFG_DEVICE_SHIFT
) |
396 (AC_JACK_CONN_UNKNOWN
<< AC_DEFCFG_CONN_TYPE_SHIFT
) |
397 (AC_JACK_COLOR_GREEN
<< AC_DEFCFG_COLOR_SHIFT
) |
399 .pinctl
= AC_PINCTL_OUT_EN
,
400 .conn
= (uint32_t[]) { 2 },
404 .params
= duplex_params_audio_adc
,
405 .nparams
= ARRAY_SIZE(duplex_params_audio_adc
),
407 .conn
= (uint32_t[]) { 5 },
411 .params
= duplex_params_audio_linein
,
412 .nparams
= ARRAY_SIZE(duplex_params_audio_linein
),
413 .config
= ((AC_JACK_PORT_COMPLEX
<< AC_DEFCFG_PORT_CONN_SHIFT
) |
414 (AC_JACK_LINE_IN
<< AC_DEFCFG_DEVICE_SHIFT
) |
415 (AC_JACK_CONN_UNKNOWN
<< AC_DEFCFG_CONN_TYPE_SHIFT
) |
416 (AC_JACK_COLOR_RED
<< AC_DEFCFG_COLOR_SHIFT
) |
418 .pinctl
= AC_PINCTL_IN_EN
,
423 static const desc_codec duplex
= {
425 .iid
= QEMU_HDA_ID_DUPLEX
,
426 .nodes
= duplex_nodes
,
427 .nnodes
= ARRAY_SIZE(duplex_nodes
),
430 /* -------------------------------------------------------------------------- */
432 static const char *fmt2name
[] = {
433 [ AUD_FMT_U8
] = "PCM-U8",
434 [ AUD_FMT_S8
] = "PCM-S8",
435 [ AUD_FMT_U16
] = "PCM-U16",
436 [ AUD_FMT_S16
] = "PCM-S16",
437 [ AUD_FMT_U32
] = "PCM-U32",
438 [ AUD_FMT_S32
] = "PCM-S32",
441 typedef struct HDAAudioState HDAAudioState
;
442 typedef struct HDAAudioStream HDAAudioStream
;
444 struct HDAAudioStream
{
445 HDAAudioState
*state
;
446 const desc_node
*node
;
447 bool output
, running
;
451 uint32_t gain_left
, gain_right
;
452 bool mute_left
, mute_right
;
453 struct audsettings as
;
458 uint8_t buf
[HDA_BUFFER_SIZE
];
462 struct HDAAudioState
{
467 const desc_codec
*desc
;
468 HDAAudioStream st
[4];
469 bool running_compat
[16];
470 bool running_real
[2 * 16];
476 static void hda_audio_input_cb(void *opaque
, int avail
)
478 HDAAudioStream
*st
= opaque
;
483 while (avail
- recv
>= sizeof(st
->buf
)) {
484 if (st
->bpos
!= sizeof(st
->buf
)) {
485 len
= AUD_read(st
->voice
.in
, st
->buf
+ st
->bpos
,
486 sizeof(st
->buf
) - st
->bpos
);
489 if (st
->bpos
!= sizeof(st
->buf
)) {
493 rc
= hda_codec_xfer(&st
->state
->hda
, st
->stream
, false,
494 st
->buf
, sizeof(st
->buf
));
502 static void hda_audio_output_cb(void *opaque
, int avail
)
504 HDAAudioStream
*st
= opaque
;
509 while (avail
- sent
>= sizeof(st
->buf
)) {
510 if (st
->bpos
== sizeof(st
->buf
)) {
511 rc
= hda_codec_xfer(&st
->state
->hda
, st
->stream
, true,
512 st
->buf
, sizeof(st
->buf
));
518 len
= AUD_write(st
->voice
.out
, st
->buf
+ st
->bpos
,
519 sizeof(st
->buf
) - st
->bpos
);
522 if (st
->bpos
!= sizeof(st
->buf
)) {
528 static void hda_audio_set_running(HDAAudioStream
*st
, bool running
)
530 if (st
->node
== NULL
) {
533 if (st
->running
== running
) {
536 st
->running
= running
;
537 dprint(st
->state
, 1, "%s: %s (stream %d)\n", st
->node
->name
,
538 st
->running
? "on" : "off", st
->stream
);
540 AUD_set_active_out(st
->voice
.out
, st
->running
);
542 AUD_set_active_in(st
->voice
.in
, st
->running
);
546 static void hda_audio_set_amp(HDAAudioStream
*st
)
549 uint32_t left
, right
;
551 if (st
->node
== NULL
) {
555 muted
= st
->mute_left
&& st
->mute_right
;
556 left
= st
->mute_left
? 0 : st
->gain_left
;
557 right
= st
->mute_right
? 0 : st
->gain_right
;
559 left
= left
* 255 / QEMU_HDA_AMP_STEPS
;
560 right
= right
* 255 / QEMU_HDA_AMP_STEPS
;
563 AUD_set_volume_out(st
->voice
.out
, muted
, left
, right
);
565 AUD_set_volume_in(st
->voice
.in
, muted
, left
, right
);
569 static void hda_audio_setup(HDAAudioStream
*st
)
571 if (st
->node
== NULL
) {
575 dprint(st
->state
, 1, "%s: format: %d x %s @ %d Hz\n",
576 st
->node
->name
, st
->as
.nchannels
,
577 fmt2name
[st
->as
.fmt
], st
->as
.freq
);
580 st
->voice
.out
= AUD_open_out(&st
->state
->card
, st
->voice
.out
,
582 hda_audio_output_cb
, &st
->as
);
584 st
->voice
.in
= AUD_open_in(&st
->state
->card
, st
->voice
.in
,
586 hda_audio_input_cb
, &st
->as
);
590 static void hda_audio_command(HDACodecDevice
*hda
, uint32_t nid
, uint32_t data
)
592 HDAAudioState
*a
= DO_UPCAST(HDAAudioState
, hda
, hda
);
594 const desc_node
*node
= NULL
;
595 const desc_param
*param
;
596 uint32_t verb
, payload
, response
, count
, shift
;
598 if ((data
& 0x70000) == 0x70000) {
599 /* 12/8 id/payload */
600 verb
= (data
>> 8) & 0xfff;
601 payload
= data
& 0x00ff;
603 /* 4/16 id/payload */
604 verb
= (data
>> 8) & 0xf00;
605 payload
= data
& 0xffff;
608 node
= hda_codec_find_node(a
->desc
, nid
);
612 dprint(a
, 2, "%s: nid %d (%s), verb 0x%x, payload 0x%x\n",
613 __FUNCTION__
, nid
, node
->name
, verb
, payload
);
617 case AC_VERB_PARAMETERS
:
618 param
= hda_codec_find_param(node
, payload
);
622 hda_codec_response(hda
, true, param
->val
);
624 case AC_VERB_GET_SUBSYSTEM_ID
:
625 hda_codec_response(hda
, true, a
->desc
->iid
);
629 case AC_VERB_GET_CONNECT_LIST
:
630 param
= hda_codec_find_param(node
, AC_PAR_CONNLIST_LEN
);
631 count
= param
? param
->val
: 0;
634 while (payload
< count
&& shift
< 32) {
635 response
|= node
->conn
[payload
] << shift
;
639 hda_codec_response(hda
, true, response
);
643 case AC_VERB_GET_CONFIG_DEFAULT
:
644 hda_codec_response(hda
, true, node
->config
);
646 case AC_VERB_GET_PIN_WIDGET_CONTROL
:
647 hda_codec_response(hda
, true, node
->pinctl
);
649 case AC_VERB_SET_PIN_WIDGET_CONTROL
:
650 if (node
->pinctl
!= payload
) {
651 dprint(a
, 1, "unhandled pin control bit\n");
653 hda_codec_response(hda
, true, 0);
656 /* audio in/out widget */
657 case AC_VERB_SET_CHANNEL_STREAMID
:
658 st
= a
->st
+ node
->stindex
;
659 if (st
->node
== NULL
) {
662 hda_audio_set_running(st
, false);
663 st
->stream
= (payload
>> 4) & 0x0f;
664 st
->channel
= payload
& 0x0f;
665 dprint(a
, 2, "%s: stream %d, channel %d\n",
666 st
->node
->name
, st
->stream
, st
->channel
);
667 hda_audio_set_running(st
, a
->running_real
[st
->output
* 16 + st
->stream
]);
668 hda_codec_response(hda
, true, 0);
670 case AC_VERB_GET_CONV
:
671 st
= a
->st
+ node
->stindex
;
672 if (st
->node
== NULL
) {
675 response
= st
->stream
<< 4 | st
->channel
;
676 hda_codec_response(hda
, true, response
);
678 case AC_VERB_SET_STREAM_FORMAT
:
679 st
= a
->st
+ node
->stindex
;
680 if (st
->node
== NULL
) {
683 st
->format
= payload
;
684 hda_codec_parse_fmt(st
->format
, &st
->as
);
686 hda_codec_response(hda
, true, 0);
688 case AC_VERB_GET_STREAM_FORMAT
:
689 st
= a
->st
+ node
->stindex
;
690 if (st
->node
== NULL
) {
693 hda_codec_response(hda
, true, st
->format
);
695 case AC_VERB_GET_AMP_GAIN_MUTE
:
696 st
= a
->st
+ node
->stindex
;
697 if (st
->node
== NULL
) {
700 if (payload
& AC_AMP_GET_LEFT
) {
701 response
= st
->gain_left
| (st
->mute_left
? AC_AMP_MUTE
: 0);
703 response
= st
->gain_right
| (st
->mute_right
? AC_AMP_MUTE
: 0);
705 hda_codec_response(hda
, true, response
);
707 case AC_VERB_SET_AMP_GAIN_MUTE
:
708 st
= a
->st
+ node
->stindex
;
709 if (st
->node
== NULL
) {
712 dprint(a
, 1, "amp (%s): %s%s%s%s index %d gain %3d %s\n",
714 (payload
& AC_AMP_SET_OUTPUT
) ? "o" : "-",
715 (payload
& AC_AMP_SET_INPUT
) ? "i" : "-",
716 (payload
& AC_AMP_SET_LEFT
) ? "l" : "-",
717 (payload
& AC_AMP_SET_RIGHT
) ? "r" : "-",
718 (payload
& AC_AMP_SET_INDEX
) >> AC_AMP_SET_INDEX_SHIFT
,
719 (payload
& AC_AMP_GAIN
),
720 (payload
& AC_AMP_MUTE
) ? "muted" : "");
721 if (payload
& AC_AMP_SET_LEFT
) {
722 st
->gain_left
= payload
& AC_AMP_GAIN
;
723 st
->mute_left
= payload
& AC_AMP_MUTE
;
725 if (payload
& AC_AMP_SET_RIGHT
) {
726 st
->gain_right
= payload
& AC_AMP_GAIN
;
727 st
->mute_right
= payload
& AC_AMP_MUTE
;
729 hda_audio_set_amp(st
);
730 hda_codec_response(hda
, true, 0);
734 case AC_VERB_SET_POWER_STATE
:
735 case AC_VERB_GET_POWER_STATE
:
736 case AC_VERB_GET_SDI_SELECT
:
737 hda_codec_response(hda
, true, 0);
745 dprint(a
, 1, "%s: not handled: nid %d (%s), verb 0x%x, payload 0x%x\n",
746 __FUNCTION__
, nid
, node
? node
->name
: "?", verb
, payload
);
747 hda_codec_response(hda
, true, 0);
750 static void hda_audio_stream(HDACodecDevice
*hda
, uint32_t stnr
, bool running
, bool output
)
752 HDAAudioState
*a
= DO_UPCAST(HDAAudioState
, hda
, hda
);
755 a
->running_compat
[stnr
] = running
;
756 a
->running_real
[output
* 16 + stnr
] = running
;
757 for (s
= 0; s
< ARRAY_SIZE(a
->st
); s
++) {
758 if (a
->st
[s
].node
== NULL
) {
761 if (a
->st
[s
].output
!= output
) {
764 if (a
->st
[s
].stream
!= stnr
) {
767 hda_audio_set_running(&a
->st
[s
], running
);
771 static int hda_audio_init(HDACodecDevice
*hda
, const struct desc_codec
*desc
)
773 HDAAudioState
*a
= DO_UPCAST(HDAAudioState
, hda
, hda
);
775 const desc_node
*node
;
776 const desc_param
*param
;
780 a
->name
= a
->hda
.qdev
.info
->name
;
781 dprint(a
, 1, "%s: cad %d\n", __FUNCTION__
, a
->hda
.cad
);
783 AUD_register_card("hda", &a
->card
);
784 for (i
= 0; i
< a
->desc
->nnodes
; i
++) {
785 node
= a
->desc
->nodes
+ i
;
786 param
= hda_codec_find_param(node
, AC_PAR_AUDIO_WIDGET_CAP
);
789 type
= (param
->val
& AC_WCAP_TYPE
) >> AC_WCAP_TYPE_SHIFT
;
793 assert(node
->stindex
< ARRAY_SIZE(a
->st
));
794 st
= a
->st
+ node
->stindex
;
797 if (type
== AC_WID_AUD_OUT
) {
798 /* unmute output by default */
799 st
->gain_left
= QEMU_HDA_AMP_STEPS
;
800 st
->gain_right
= QEMU_HDA_AMP_STEPS
;
801 st
->bpos
= sizeof(st
->buf
);
806 st
->format
= AC_FMT_TYPE_PCM
| AC_FMT_BITS_16
|
807 (1 << AC_FMT_CHAN_SHIFT
);
808 hda_codec_parse_fmt(st
->format
, &st
->as
);
816 static int hda_audio_exit(HDACodecDevice
*hda
)
818 HDAAudioState
*a
= DO_UPCAST(HDAAudioState
, hda
, hda
);
822 dprint(a
, 1, "%s\n", __FUNCTION__
);
823 for (i
= 0; i
< ARRAY_SIZE(a
->st
); i
++) {
825 if (st
->node
== NULL
) {
829 AUD_close_out(&a
->card
, st
->voice
.out
);
831 AUD_close_in(&a
->card
, st
->voice
.in
);
834 AUD_remove_card(&a
->card
);
838 static int hda_audio_post_load(void *opaque
, int version
)
840 HDAAudioState
*a
= opaque
;
844 dprint(a
, 1, "%s\n", __FUNCTION__
);
846 /* assume running_compat[] is for output streams */
847 for (i
= 0; i
< ARRAY_SIZE(a
->running_compat
); i
++)
848 a
->running_real
[16 + i
] = a
->running_compat
[i
];
851 for (i
= 0; i
< ARRAY_SIZE(a
->st
); i
++) {
853 if (st
->node
== NULL
)
855 hda_codec_parse_fmt(st
->format
, &st
->as
);
857 hda_audio_set_amp(st
);
858 hda_audio_set_running(st
, a
->running_real
[st
->output
* 16 + st
->stream
]);
863 static const VMStateDescription vmstate_hda_audio_stream
= {
864 .name
= "hda-audio-stream",
866 .fields
= (VMStateField
[]) {
867 VMSTATE_UINT32(stream
, HDAAudioStream
),
868 VMSTATE_UINT32(channel
, HDAAudioStream
),
869 VMSTATE_UINT32(format
, HDAAudioStream
),
870 VMSTATE_UINT32(gain_left
, HDAAudioStream
),
871 VMSTATE_UINT32(gain_right
, HDAAudioStream
),
872 VMSTATE_BOOL(mute_left
, HDAAudioStream
),
873 VMSTATE_BOOL(mute_right
, HDAAudioStream
),
874 VMSTATE_UINT32(bpos
, HDAAudioStream
),
875 VMSTATE_BUFFER(buf
, HDAAudioStream
),
876 VMSTATE_END_OF_LIST()
880 static const VMStateDescription vmstate_hda_audio
= {
883 .post_load
= hda_audio_post_load
,
884 .fields
= (VMStateField
[]) {
885 VMSTATE_STRUCT_ARRAY(st
, HDAAudioState
, 4, 0,
886 vmstate_hda_audio_stream
,
888 VMSTATE_BOOL_ARRAY(running_compat
, HDAAudioState
, 16),
889 VMSTATE_BOOL_ARRAY_V(running_real
, HDAAudioState
, 2 * 16, 2),
890 VMSTATE_END_OF_LIST()
894 static Property hda_audio_properties
[] = {
895 DEFINE_PROP_UINT32("debug", HDAAudioState
, debug
, 0),
896 DEFINE_PROP_END_OF_LIST(),
899 static int hda_audio_init_output(HDACodecDevice
*hda
)
901 return hda_audio_init(hda
, &output
);
904 static int hda_audio_init_duplex(HDACodecDevice
*hda
)
906 return hda_audio_init(hda
, &duplex
);
909 static HDACodecDeviceInfo hda_audio_info_output
= {
910 .qdev
.name
= "hda-output",
911 .qdev
.desc
= "HDA Audio Codec, output-only",
912 .qdev
.size
= sizeof(HDAAudioState
),
913 .qdev
.vmsd
= &vmstate_hda_audio
,
914 .qdev
.props
= hda_audio_properties
,
915 .init
= hda_audio_init_output
,
916 .exit
= hda_audio_exit
,
917 .command
= hda_audio_command
,
918 .stream
= hda_audio_stream
,
921 static HDACodecDeviceInfo hda_audio_info_duplex
= {
922 .qdev
.name
= "hda-duplex",
923 .qdev
.desc
= "HDA Audio Codec, duplex",
924 .qdev
.size
= sizeof(HDAAudioState
),
925 .qdev
.vmsd
= &vmstate_hda_audio
,
926 .qdev
.props
= hda_audio_properties
,
927 .init
= hda_audio_init_duplex
,
928 .exit
= hda_audio_exit
,
929 .command
= hda_audio_command
,
930 .stream
= hda_audio_stream
,
933 static void hda_audio_register(void)
935 hda_codec_register(&hda_audio_info_output
);
936 hda_codec_register(&hda_audio_info_duplex
);
938 device_init(hda_audio_register
);