4 * Copyright (c) 2003-2005 Vassili Karpov (malc)
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to deal
8 * in the Software without restriction, including without limitation the rights
9 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10 * copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
27 #include "qemu-timer.h"
30 #define AUDIO_CAP "audio"
31 #include "audio_int.h"
33 /* #define DEBUG_PLIVE */
34 /* #define DEBUG_LIVE */
35 /* #define DEBUG_OUT */
36 /* #define DEBUG_CAPTURE */
38 #define SW_NAME(sw) (sw)->name ? (sw)->name : "unknown"
40 static struct audio_driver
*drvtab
[] = {
47 #ifdef CONFIG_COREAUDIO
48 &coreaudio_audio_driver
,
66 struct fixed_settings
{
70 audsettings_t settings
;
74 struct fixed_settings fixed_out
;
75 struct fixed_settings fixed_in
;
83 { /* DAC fixed settings */
90 AUD_FMT_S16
, /* fmt */
95 { /* ADC fixed settings */
102 AUD_FMT_S16
, /* fmt */
103 AUDIO_HOST_ENDIANNESS
109 0 /* log_to_monitor */
112 static AudioState glob_audio_state
;
114 volume_t nominal_volume
= {
125 /* http://www.df.lth.se/~john_e/gems/gem002d.html */
126 /* http://www.multi-platforms.com/Tips/PopCount.htm */
127 uint32_t popcount (uint32_t u
)
129 u
= ((u
&0x55555555) + ((u
>>1)&0x55555555));
130 u
= ((u
&0x33333333) + ((u
>>2)&0x33333333));
131 u
= ((u
&0x0f0f0f0f) + ((u
>>4)&0x0f0f0f0f));
132 u
= ((u
&0x00ff00ff) + ((u
>>8)&0x00ff00ff));
133 u
= ( u
&0x0000ffff) + (u
>>16);
137 inline uint32_t lsbindex (uint32_t u
)
139 return popcount ((u
&-u
)-1);
142 #ifdef AUDIO_IS_FLAWLESS_AND_NO_CHECKS_ARE_REQURIED
145 int audio_bug (const char *funcname
, int cond
)
150 AUD_log (NULL
, "A bug was just triggered in %s\n", funcname
);
153 AUD_log (NULL
, "Save all your work and restart without audio\n");
154 AUD_log (NULL
, "Please send bug report to malc@pulsesoft.com\n");
155 AUD_log (NULL
, "I am sorry\n");
157 AUD_log (NULL
, "Context:\n");
159 #if defined AUDIO_BREAKPOINT_ON_BUG
160 # if defined HOST_I386
161 # if defined __GNUC__
163 # elif defined _MSC_VER
178 static inline int audio_bits_to_index (int bits
)
191 audio_bug ("bits_to_index", 1);
192 AUD_log (NULL
, "invalid bits %d\n", bits
);
197 void *audio_calloc (const char *funcname
, int nmemb
, size_t size
)
203 cond
= !nmemb
|| !size
;
207 if (audio_bug ("audio_calloc", cond
)) {
208 AUD_log (NULL
, "%s passed invalid arguments to audio_calloc\n",
210 AUD_log (NULL
, "nmemb=%d size=%zu (len=%zu)\n", nmemb
, size
, len
);
214 return qemu_mallocz (len
);
217 static char *audio_alloc_prefix (const char *s
)
219 const char qemu_prefix
[] = "QEMU_";
228 r
= qemu_malloc (len
+ sizeof (qemu_prefix
));
232 char *u
= r
+ sizeof (qemu_prefix
) - 1;
234 strcpy (r
, qemu_prefix
);
237 for (i
= 0; i
< len
; ++i
) {
238 u
[i
] = toupper (u
[i
]);
244 static const char *audio_audfmt_to_string (audfmt_e fmt
)
266 dolog ("Bogus audfmt %d returning S16\n", fmt
);
270 static audfmt_e
audio_string_to_audfmt (const char *s
, audfmt_e defval
,
273 if (!strcasecmp (s
, "u8")) {
277 else if (!strcasecmp (s
, "u16")) {
281 else if (!strcasecmp (s
, "u32")) {
285 else if (!strcasecmp (s
, "s8")) {
289 else if (!strcasecmp (s
, "s16")) {
293 else if (!strcasecmp (s
, "s32")) {
298 dolog ("Bogus audio format `%s' using %s\n",
299 s
, audio_audfmt_to_string (defval
));
305 static audfmt_e
audio_get_conf_fmt (const char *envname
,
309 const char *var
= getenv (envname
);
314 return audio_string_to_audfmt (var
, defval
, defaultp
);
317 static int audio_get_conf_int (const char *key
, int defval
, int *defaultp
)
322 strval
= getenv (key
);
334 static const char *audio_get_conf_str (const char *key
,
338 const char *val
= getenv (key
);
349 void AUD_vlog (const char *cap
, const char *fmt
, va_list ap
)
351 if (conf
.log_to_monitor
) {
353 term_printf ("%s: ", cap
);
356 term_vprintf (fmt
, ap
);
360 fprintf (stderr
, "%s: ", cap
);
363 vfprintf (stderr
, fmt
, ap
);
367 void AUD_log (const char *cap
, const char *fmt
, ...)
372 AUD_vlog (cap
, fmt
, ap
);
376 static void audio_print_options (const char *prefix
,
377 struct audio_option
*opt
)
382 dolog ("No prefix specified\n");
387 dolog ("No options\n");
391 uprefix
= audio_alloc_prefix (prefix
);
393 for (; opt
->name
; opt
++) {
394 const char *state
= "default";
395 printf (" %s_%s: ", uprefix
, opt
->name
);
397 if (opt
->overriddenp
&& *opt
->overriddenp
) {
404 int *intp
= opt
->valp
;
405 printf ("boolean, %s = %d\n", state
, *intp
? 1 : 0);
411 int *intp
= opt
->valp
;
412 printf ("integer, %s = %d\n", state
, *intp
);
418 audfmt_e
*fmtp
= opt
->valp
;
420 "format, %s = %s, (one of: U8 S8 U16 S16 U32 S32)\n",
422 audio_audfmt_to_string (*fmtp
)
429 const char **strp
= opt
->valp
;
430 printf ("string, %s = %s\n",
432 *strp
? *strp
: "(not set)");
438 dolog ("Bad value tag for option %s_%s %d\n",
439 uprefix
, opt
->name
, opt
->tag
);
442 printf (" %s\n", opt
->descr
);
448 static void audio_process_options (const char *prefix
,
449 struct audio_option
*opt
)
452 const char qemu_prefix
[] = "QEMU_";
455 if (audio_bug (AUDIO_FUNC
, !prefix
)) {
456 dolog ("prefix = NULL\n");
460 if (audio_bug (AUDIO_FUNC
, !opt
)) {
461 dolog ("opt = NULL\n");
465 preflen
= strlen (prefix
);
467 for (; opt
->name
; opt
++) {
472 dolog ("Option value pointer for `%s' is not set\n",
477 len
= strlen (opt
->name
);
478 /* len of opt->name + len of prefix + size of qemu_prefix
479 * (includes trailing zero) + zero + underscore (on behalf of
481 optname
= qemu_malloc (len
+ preflen
+ sizeof (qemu_prefix
) + 1);
483 dolog ("Could not allocate memory for option name `%s'\n",
488 strcpy (optname
, qemu_prefix
);
490 /* copy while upper-casing, including trailing zero */
491 for (i
= 0; i
<= preflen
; ++i
) {
492 optname
[i
+ sizeof (qemu_prefix
) - 1] = toupper (prefix
[i
]);
494 strcat (optname
, "_");
495 strcat (optname
, opt
->name
);
502 int *intp
= opt
->valp
;
503 *intp
= audio_get_conf_int (optname
, *intp
, &def
);
509 audfmt_e
*fmtp
= opt
->valp
;
510 *fmtp
= audio_get_conf_fmt (optname
, *fmtp
, &def
);
516 const char **strp
= opt
->valp
;
517 *strp
= audio_get_conf_str (optname
, *strp
, &def
);
522 dolog ("Bad value tag for option `%s' - %d\n",
527 if (!opt
->overriddenp
) {
528 opt
->overriddenp
= &opt
->overridden
;
530 *opt
->overriddenp
= !def
;
535 static void audio_print_settings (audsettings_t
*as
)
537 dolog ("frequency=%d nchannels=%d fmt=", as
->freq
, as
->nchannels
);
541 AUD_log (NULL
, "S8");
544 AUD_log (NULL
, "U8");
547 AUD_log (NULL
, "S16");
550 AUD_log (NULL
, "U16");
553 AUD_log (NULL
, "invalid(%d)", as
->fmt
);
557 AUD_log (NULL
, " endianness=");
558 switch (as
->endianness
) {
560 AUD_log (NULL
, "little");
563 AUD_log (NULL
, "big");
566 AUD_log (NULL
, "invalid");
569 AUD_log (NULL
, "\n");
572 static int audio_validate_settings (audsettings_t
*as
)
576 invalid
= as
->nchannels
!= 1 && as
->nchannels
!= 2;
577 invalid
|= as
->endianness
!= 0 && as
->endianness
!= 1;
592 invalid
|= as
->freq
<= 0;
593 return invalid
? -1 : 0;
596 static int audio_pcm_info_eq (struct audio_pcm_info
*info
, audsettings_t
*as
)
598 int bits
= 8, sign
= 0;
618 return info
->freq
== as
->freq
619 && info
->nchannels
== as
->nchannels
620 && info
->sign
== sign
621 && info
->bits
== bits
622 && info
->swap_endianness
== (as
->endianness
!= AUDIO_HOST_ENDIANNESS
);
625 void audio_pcm_init_info (struct audio_pcm_info
*info
, audsettings_t
*as
)
627 int bits
= 8, sign
= 0, shift
= 0;
650 info
->freq
= as
->freq
;
653 info
->nchannels
= as
->nchannels
;
654 info
->shift
= (as
->nchannels
== 2) + shift
;
655 info
->align
= (1 << info
->shift
) - 1;
656 info
->bytes_per_second
= info
->freq
<< info
->shift
;
657 info
->swap_endianness
= (as
->endianness
!= AUDIO_HOST_ENDIANNESS
);
660 void audio_pcm_info_clear_buf (struct audio_pcm_info
*info
, void *buf
, int len
)
667 memset (buf
, 0x00, len
<< info
->shift
);
670 switch (info
->bits
) {
672 memset (buf
, 0x80, len
<< info
->shift
);
679 int shift
= info
->nchannels
- 1;
682 if (info
->swap_endianness
) {
686 for (i
= 0; i
< len
<< shift
; i
++) {
696 int shift
= info
->nchannels
- 1;
697 int32_t s
= INT32_MAX
;
699 if (info
->swap_endianness
) {
703 for (i
= 0; i
< len
<< shift
; i
++) {
710 AUD_log (NULL
, "audio_pcm_info_clear_buf: invalid bits %d\n",
720 static void noop_conv (st_sample_t
*dst
, const void *src
,
721 int samples
, volume_t
*vol
)
729 static CaptureVoiceOut
*audio_pcm_capture_find_specific (
734 CaptureVoiceOut
*cap
;
736 for (cap
= s
->cap_head
.lh_first
; cap
; cap
= cap
->entries
.le_next
) {
737 if (audio_pcm_info_eq (&cap
->hw
.info
, as
)) {
744 static void audio_notify_capture (CaptureVoiceOut
*cap
, audcnotification_e cmd
)
746 struct capture_callback
*cb
;
749 dolog ("notification %d sent\n", cmd
);
751 for (cb
= cap
->cb_head
.lh_first
; cb
; cb
= cb
->entries
.le_next
) {
752 cb
->ops
.notify (cb
->opaque
, cmd
);
756 static void audio_capture_maybe_changed (CaptureVoiceOut
*cap
, int enabled
)
758 if (cap
->hw
.enabled
!= enabled
) {
759 audcnotification_e cmd
;
760 cap
->hw
.enabled
= enabled
;
761 cmd
= enabled
? AUD_CNOTIFY_ENABLE
: AUD_CNOTIFY_DISABLE
;
762 audio_notify_capture (cap
, cmd
);
766 static void audio_recalc_and_notify_capture (CaptureVoiceOut
*cap
)
768 HWVoiceOut
*hw
= &cap
->hw
;
772 for (sw
= hw
->sw_head
.lh_first
; sw
; sw
= sw
->entries
.le_next
) {
778 audio_capture_maybe_changed (cap
, enabled
);
781 static void audio_detach_capture (HWVoiceOut
*hw
)
783 SWVoiceCap
*sc
= hw
->cap_head
.lh_first
;
786 SWVoiceCap
*sc1
= sc
->entries
.le_next
;
787 SWVoiceOut
*sw
= &sc
->sw
;
788 CaptureVoiceOut
*cap
= sc
->cap
;
789 int was_active
= sw
->active
;
792 st_rate_stop (sw
->rate
);
796 LIST_REMOVE (sw
, entries
);
797 LIST_REMOVE (sc
, entries
);
800 /* We have removed soft voice from the capture:
801 this might have changed the overall status of the capture
802 since this might have been the only active voice */
803 audio_recalc_and_notify_capture (cap
);
809 static int audio_attach_capture (AudioState
*s
, HWVoiceOut
*hw
)
811 CaptureVoiceOut
*cap
;
813 audio_detach_capture (hw
);
814 for (cap
= s
->cap_head
.lh_first
; cap
; cap
= cap
->entries
.le_next
) {
817 HWVoiceOut
*hw_cap
= &cap
->hw
;
819 sc
= audio_calloc (AUDIO_FUNC
, 1, sizeof (*sc
));
821 dolog ("Could not allocate soft capture voice (%zu bytes)\n",
831 sw
->active
= hw
->enabled
;
832 sw
->conv
= noop_conv
;
833 sw
->ratio
= ((int64_t) hw_cap
->info
.freq
<< 32) / sw
->info
.freq
;
834 sw
->rate
= st_rate_start (sw
->info
.freq
, hw_cap
->info
.freq
);
836 dolog ("Could not start rate conversion for `%s'\n", SW_NAME (sw
));
840 LIST_INSERT_HEAD (&hw_cap
->sw_head
, sw
, entries
);
841 LIST_INSERT_HEAD (&hw
->cap_head
, sc
, entries
);
843 asprintf (&sw
->name
, "for %p %d,%d,%d",
844 hw
, sw
->info
.freq
, sw
->info
.bits
, sw
->info
.nchannels
);
845 dolog ("Added %s active = %d\n", sw
->name
, sw
->active
);
848 audio_capture_maybe_changed (cap
, 1);
855 * Hard voice (capture)
857 static int audio_pcm_hw_find_min_in (HWVoiceIn
*hw
)
860 int m
= hw
->total_samples_captured
;
862 for (sw
= hw
->sw_head
.lh_first
; sw
; sw
= sw
->entries
.le_next
) {
864 m
= audio_MIN (m
, sw
->total_hw_samples_acquired
);
870 int audio_pcm_hw_get_live_in (HWVoiceIn
*hw
)
872 int live
= hw
->total_samples_captured
- audio_pcm_hw_find_min_in (hw
);
873 if (audio_bug (AUDIO_FUNC
, live
< 0 || live
> hw
->samples
)) {
874 dolog ("live=%d hw->samples=%d\n", live
, hw
->samples
);
881 * Soft voice (capture)
883 static int audio_pcm_sw_get_rpos_in (SWVoiceIn
*sw
)
885 HWVoiceIn
*hw
= sw
->hw
;
886 int live
= hw
->total_samples_captured
- sw
->total_hw_samples_acquired
;
889 if (audio_bug (AUDIO_FUNC
, live
< 0 || live
> hw
->samples
)) {
890 dolog ("live=%d hw->samples=%d\n", live
, hw
->samples
);
894 rpos
= hw
->wpos
- live
;
899 return hw
->samples
+ rpos
;
903 int audio_pcm_sw_read (SWVoiceIn
*sw
, void *buf
, int size
)
905 HWVoiceIn
*hw
= sw
->hw
;
906 int samples
, live
, ret
= 0, swlim
, isamp
, osamp
, rpos
, total
= 0;
907 st_sample_t
*src
, *dst
= sw
->buf
;
909 rpos
= audio_pcm_sw_get_rpos_in (sw
) % hw
->samples
;
911 live
= hw
->total_samples_captured
- sw
->total_hw_samples_acquired
;
912 if (audio_bug (AUDIO_FUNC
, live
< 0 || live
> hw
->samples
)) {
913 dolog ("live_in=%d hw->samples=%d\n", live
, hw
->samples
);
917 samples
= size
>> sw
->info
.shift
;
922 swlim
= (live
* sw
->ratio
) >> 32;
923 swlim
= audio_MIN (swlim
, samples
);
926 src
= hw
->conv_buf
+ rpos
;
927 isamp
= hw
->wpos
- rpos
;
930 isamp
= hw
->samples
- rpos
;
938 if (audio_bug (AUDIO_FUNC
, osamp
< 0)) {
939 dolog ("osamp=%d\n", osamp
);
943 st_rate_flow (sw
->rate
, src
, dst
, &isamp
, &osamp
);
945 rpos
= (rpos
+ isamp
) % hw
->samples
;
951 sw
->clip (buf
, sw
->buf
, ret
);
952 sw
->total_hw_samples_acquired
+= total
;
953 return ret
<< sw
->info
.shift
;
957 * Hard voice (playback)
959 static int audio_pcm_hw_find_min_out (HWVoiceOut
*hw
, int *nb_livep
)
965 for (sw
= hw
->sw_head
.lh_first
; sw
; sw
= sw
->entries
.le_next
) {
966 if (sw
->active
|| !sw
->empty
) {
967 m
= audio_MIN (m
, sw
->total_hw_samples_mixed
);
976 int audio_pcm_hw_get_live_out2 (HWVoiceOut
*hw
, int *nb_live
)
980 smin
= audio_pcm_hw_find_min_out (hw
, nb_live
);
988 if (audio_bug (AUDIO_FUNC
, live
< 0 || live
> hw
->samples
)) {
989 dolog ("live=%d hw->samples=%d\n", live
, hw
->samples
);
996 int audio_pcm_hw_get_live_out (HWVoiceOut
*hw
)
1001 live
= audio_pcm_hw_get_live_out2 (hw
, &nb_live
);
1002 if (audio_bug (AUDIO_FUNC
, live
< 0 || live
> hw
->samples
)) {
1003 dolog ("live=%d hw->samples=%d\n", live
, hw
->samples
);
1010 * Soft voice (playback)
1012 int audio_pcm_sw_write (SWVoiceOut
*sw
, void *buf
, int size
)
1014 int hwsamples
, samples
, isamp
, osamp
, wpos
, live
, dead
, left
, swlim
, blck
;
1015 int ret
= 0, pos
= 0, total
= 0;
1021 hwsamples
= sw
->hw
->samples
;
1023 live
= sw
->total_hw_samples_mixed
;
1024 if (audio_bug (AUDIO_FUNC
, live
< 0 || live
> hwsamples
)){
1025 dolog ("live=%d hw->samples=%d\n", live
, hwsamples
);
1029 if (live
== hwsamples
) {
1031 dolog ("%s is full %d\n", sw
->name
, live
);
1036 wpos
= (sw
->hw
->rpos
+ live
) % hwsamples
;
1037 samples
= size
>> sw
->info
.shift
;
1039 dead
= hwsamples
- live
;
1040 swlim
= ((int64_t) dead
<< 32) / sw
->ratio
;
1041 swlim
= audio_MIN (swlim
, samples
);
1043 sw
->conv (sw
->buf
, buf
, swlim
, &sw
->vol
);
1047 dead
= hwsamples
- live
;
1048 left
= hwsamples
- wpos
;
1049 blck
= audio_MIN (dead
, left
);
1058 sw
->hw
->mix_buf
+ wpos
,
1066 wpos
= (wpos
+ osamp
) % hwsamples
;
1070 sw
->total_hw_samples_mixed
+= total
;
1071 sw
->empty
= sw
->total_hw_samples_mixed
== 0;
1075 "%s: write size %d ret %d total sw %d\n",
1077 size
>> sw
->info
.shift
,
1079 sw
->total_hw_samples_mixed
1083 return ret
<< sw
->info
.shift
;
1087 static void audio_pcm_print_info (const char *cap
, struct audio_pcm_info
*info
)
1089 dolog ("%s: bits %d, sign %d, freq %d, nchan %d\n",
1090 cap
, info
->bits
, info
->sign
, info
->freq
, info
->nchannels
);
1095 #include "audio_template.h"
1097 #include "audio_template.h"
1099 int AUD_write (SWVoiceOut
*sw
, void *buf
, int size
)
1104 /* XXX: Consider options */
1108 if (!sw
->hw
->enabled
) {
1109 dolog ("Writing to disabled voice %s\n", SW_NAME (sw
));
1113 bytes
= sw
->hw
->pcm_ops
->write (sw
, buf
, size
);
1117 int AUD_read (SWVoiceIn
*sw
, void *buf
, int size
)
1122 /* XXX: Consider options */
1126 if (!sw
->hw
->enabled
) {
1127 dolog ("Reading from disabled voice %s\n", SW_NAME (sw
));
1131 bytes
= sw
->hw
->pcm_ops
->read (sw
, buf
, size
);
1135 int AUD_get_buffer_size_out (SWVoiceOut
*sw
)
1137 return sw
->hw
->samples
<< sw
->hw
->info
.shift
;
1140 void AUD_set_active_out (SWVoiceOut
*sw
, int on
)
1149 if (sw
->active
!= on
) {
1150 SWVoiceOut
*temp_sw
;
1154 hw
->pending_disable
= 0;
1157 hw
->pcm_ops
->ctl_out (hw
, VOICE_ENABLE
);
1164 for (temp_sw
= hw
->sw_head
.lh_first
; temp_sw
;
1165 temp_sw
= temp_sw
->entries
.le_next
) {
1166 nb_active
+= temp_sw
->active
!= 0;
1169 hw
->pending_disable
= nb_active
== 1;
1173 for (sc
= hw
->cap_head
.lh_first
; sc
; sc
= sc
->entries
.le_next
) {
1174 sc
->sw
.active
= hw
->enabled
;
1176 audio_capture_maybe_changed (sc
->cap
, 1);
1183 void AUD_set_active_in (SWVoiceIn
*sw
, int on
)
1192 if (sw
->active
!= on
) {
1198 hw
->pcm_ops
->ctl_in (hw
, VOICE_ENABLE
);
1200 sw
->total_hw_samples_acquired
= hw
->total_samples_captured
;
1206 for (temp_sw
= hw
->sw_head
.lh_first
; temp_sw
;
1207 temp_sw
= temp_sw
->entries
.le_next
) {
1208 nb_active
+= temp_sw
->active
!= 0;
1211 if (nb_active
== 1) {
1213 hw
->pcm_ops
->ctl_in (hw
, VOICE_DISABLE
);
1221 static int audio_get_avail (SWVoiceIn
*sw
)
1229 live
= sw
->hw
->total_samples_captured
- sw
->total_hw_samples_acquired
;
1230 if (audio_bug (AUDIO_FUNC
, live
< 0 || live
> sw
->hw
->samples
)) {
1231 dolog ("live=%d sw->hw->samples=%d\n", live
, sw
->hw
->samples
);
1236 "%s: get_avail live %d ret %" PRId64
"\n",
1238 live
, (((int64_t) live
<< 32) / sw
->ratio
) << sw
->info
.shift
1241 return (((int64_t) live
<< 32) / sw
->ratio
) << sw
->info
.shift
;
1244 static int audio_get_free (SWVoiceOut
*sw
)
1252 live
= sw
->total_hw_samples_mixed
;
1254 if (audio_bug (AUDIO_FUNC
, live
< 0 || live
> sw
->hw
->samples
)) {
1255 dolog ("live=%d sw->hw->samples=%d\n", live
, sw
->hw
->samples
);
1259 dead
= sw
->hw
->samples
- live
;
1262 dolog ("%s: get_free live %d dead %d ret %" PRId64
"\n",
1264 live
, dead
, (((int64_t) dead
<< 32) / sw
->ratio
) << sw
->info
.shift
);
1267 return (((int64_t) dead
<< 32) / sw
->ratio
) << sw
->info
.shift
;
1270 static void audio_capture_mix_and_clear (HWVoiceOut
*hw
, int rpos
, int samples
)
1277 for (sc
= hw
->cap_head
.lh_first
; sc
; sc
= sc
->entries
.le_next
) {
1278 SWVoiceOut
*sw
= &sc
->sw
;
1283 int till_end_of_hw
= hw
->samples
- rpos2
;
1284 int to_write
= audio_MIN (till_end_of_hw
, n
);
1285 int bytes
= to_write
<< hw
->info
.shift
;
1288 sw
->buf
= hw
->mix_buf
+ rpos2
;
1289 written
= audio_pcm_sw_write (sw
, NULL
, bytes
);
1290 if (written
- bytes
) {
1291 dolog ("Could not mix %d bytes into a capture "
1292 "buffer, mixed %d\n",
1297 rpos2
= (rpos2
+ to_write
) % hw
->samples
;
1302 n
= audio_MIN (samples
, hw
->samples
- rpos
);
1303 mixeng_clear (hw
->mix_buf
+ rpos
, n
);
1304 mixeng_clear (hw
->mix_buf
, samples
- n
);
1307 static void audio_run_out (AudioState
*s
)
1309 HWVoiceOut
*hw
= NULL
;
1312 while ((hw
= audio_pcm_hw_find_any_enabled_out (s
, hw
))) {
1314 int live
, free
, nb_live
, cleanup_required
, prev_rpos
;
1316 live
= audio_pcm_hw_get_live_out2 (hw
, &nb_live
);
1321 if (audio_bug (AUDIO_FUNC
, live
< 0 || live
> hw
->samples
)) {
1322 dolog ("live=%d hw->samples=%d\n", live
, hw
->samples
);
1326 if (hw
->pending_disable
&& !nb_live
) {
1329 dolog ("Disabling voice\n");
1332 hw
->pending_disable
= 0;
1333 hw
->pcm_ops
->ctl_out (hw
, VOICE_DISABLE
);
1334 for (sc
= hw
->cap_head
.lh_first
; sc
; sc
= sc
->entries
.le_next
) {
1336 audio_recalc_and_notify_capture (sc
->cap
);
1342 for (sw
= hw
->sw_head
.lh_first
; sw
; sw
= sw
->entries
.le_next
) {
1344 free
= audio_get_free (sw
);
1346 sw
->callback
.fn (sw
->callback
.opaque
, free
);
1353 prev_rpos
= hw
->rpos
;
1354 played
= hw
->pcm_ops
->run_out (hw
);
1355 if (audio_bug (AUDIO_FUNC
, hw
->rpos
>= hw
->samples
)) {
1356 dolog ("hw->rpos=%d hw->samples=%d played=%d\n",
1357 hw
->rpos
, hw
->samples
, played
);
1362 dolog ("played=%d\n", played
);
1366 hw
->ts_helper
+= played
;
1367 audio_capture_mix_and_clear (hw
, prev_rpos
, played
);
1370 cleanup_required
= 0;
1371 for (sw
= hw
->sw_head
.lh_first
; sw
; sw
= sw
->entries
.le_next
) {
1372 if (!sw
->active
&& sw
->empty
) {
1376 if (audio_bug (AUDIO_FUNC
, played
> sw
->total_hw_samples_mixed
)) {
1377 dolog ("played=%d sw->total_hw_samples_mixed=%d\n",
1378 played
, sw
->total_hw_samples_mixed
);
1379 played
= sw
->total_hw_samples_mixed
;
1382 sw
->total_hw_samples_mixed
-= played
;
1384 if (!sw
->total_hw_samples_mixed
) {
1386 cleanup_required
|= !sw
->active
&& !sw
->callback
.fn
;
1390 free
= audio_get_free (sw
);
1392 sw
->callback
.fn (sw
->callback
.opaque
, free
);
1397 if (cleanup_required
) {
1400 sw
= hw
->sw_head
.lh_first
;
1402 sw1
= sw
->entries
.le_next
;
1403 if (!sw
->active
&& !sw
->callback
.fn
) {
1405 dolog ("Finishing with old voice\n");
1407 audio_close_out (s
, sw
);
1415 static void audio_run_in (AudioState
*s
)
1417 HWVoiceIn
*hw
= NULL
;
1419 while ((hw
= audio_pcm_hw_find_any_enabled_in (s
, hw
))) {
1423 captured
= hw
->pcm_ops
->run_in (hw
);
1425 min
= audio_pcm_hw_find_min_in (hw
);
1426 hw
->total_samples_captured
+= captured
- min
;
1427 hw
->ts_helper
+= captured
;
1429 for (sw
= hw
->sw_head
.lh_first
; sw
; sw
= sw
->entries
.le_next
) {
1430 sw
->total_hw_samples_acquired
-= min
;
1435 avail
= audio_get_avail (sw
);
1437 sw
->callback
.fn (sw
->callback
.opaque
, avail
);
1444 static void audio_run_capture (AudioState
*s
)
1446 CaptureVoiceOut
*cap
;
1448 for (cap
= s
->cap_head
.lh_first
; cap
; cap
= cap
->entries
.le_next
) {
1449 int live
, rpos
, captured
;
1450 HWVoiceOut
*hw
= &cap
->hw
;
1453 captured
= live
= audio_pcm_hw_get_live_out (hw
);
1456 int left
= hw
->samples
- rpos
;
1457 int to_capture
= audio_MIN (live
, left
);
1459 struct capture_callback
*cb
;
1461 src
= hw
->mix_buf
+ rpos
;
1462 hw
->clip (cap
->buf
, src
, to_capture
);
1463 mixeng_clear (src
, to_capture
);
1465 for (cb
= cap
->cb_head
.lh_first
; cb
; cb
= cb
->entries
.le_next
) {
1466 cb
->ops
.capture (cb
->opaque
, cap
->buf
,
1467 to_capture
<< hw
->info
.shift
);
1469 rpos
= (rpos
+ to_capture
) % hw
->samples
;
1474 for (sw
= hw
->sw_head
.lh_first
; sw
; sw
= sw
->entries
.le_next
) {
1475 if (!sw
->active
&& sw
->empty
) {
1479 if (audio_bug (AUDIO_FUNC
, captured
> sw
->total_hw_samples_mixed
)) {
1480 dolog ("captured=%d sw->total_hw_samples_mixed=%d\n",
1481 captured
, sw
->total_hw_samples_mixed
);
1482 captured
= sw
->total_hw_samples_mixed
;
1485 sw
->total_hw_samples_mixed
-= captured
;
1486 sw
->empty
= sw
->total_hw_samples_mixed
== 0;
1491 static void audio_timer (void *opaque
)
1493 AudioState
*s
= opaque
;
1497 audio_run_capture (s
);
1499 qemu_mod_timer (s
->ts
, qemu_get_clock (vm_clock
) + conf
.period
.ticks
);
1502 static struct audio_option audio_options
[] = {
1504 {"DAC_FIXED_SETTINGS", AUD_OPT_BOOL
, &conf
.fixed_out
.enabled
,
1505 "Use fixed settings for host DAC", NULL
, 0},
1507 {"DAC_FIXED_FREQ", AUD_OPT_INT
, &conf
.fixed_out
.settings
.freq
,
1508 "Frequency for fixed host DAC", NULL
, 0},
1510 {"DAC_FIXED_FMT", AUD_OPT_FMT
, &conf
.fixed_out
.settings
.fmt
,
1511 "Format for fixed host DAC", NULL
, 0},
1513 {"DAC_FIXED_CHANNELS", AUD_OPT_INT
, &conf
.fixed_out
.settings
.nchannels
,
1514 "Number of channels for fixed DAC (1 - mono, 2 - stereo)", NULL
, 0},
1516 {"DAC_VOICES", AUD_OPT_INT
, &conf
.fixed_out
.nb_voices
,
1517 "Number of voices for DAC", NULL
, 0},
1520 {"ADC_FIXED_SETTINGS", AUD_OPT_BOOL
, &conf
.fixed_in
.enabled
,
1521 "Use fixed settings for host ADC", NULL
, 0},
1523 {"ADC_FIXED_FREQ", AUD_OPT_INT
, &conf
.fixed_in
.settings
.freq
,
1524 "Frequency for fixed host ADC", NULL
, 0},
1526 {"ADC_FIXED_FMT", AUD_OPT_FMT
, &conf
.fixed_in
.settings
.fmt
,
1527 "Format for fixed host ADC", NULL
, 0},
1529 {"ADC_FIXED_CHANNELS", AUD_OPT_INT
, &conf
.fixed_in
.settings
.nchannels
,
1530 "Number of channels for fixed ADC (1 - mono, 2 - stereo)", NULL
, 0},
1532 {"ADC_VOICES", AUD_OPT_INT
, &conf
.fixed_in
.nb_voices
,
1533 "Number of voices for ADC", NULL
, 0},
1536 {"TIMER_PERIOD", AUD_OPT_INT
, &conf
.period
.hz
,
1537 "Timer period in HZ (0 - use lowest possible)", NULL
, 0},
1539 {"PLIVE", AUD_OPT_BOOL
, &conf
.plive
,
1540 "(undocumented)", NULL
, 0},
1542 {"LOG_TO_MONITOR", AUD_OPT_BOOL
, &conf
.log_to_monitor
,
1543 "print logging messages to monitor instead of stderr", NULL
, 0},
1545 {NULL
, 0, NULL
, NULL
, NULL
, 0}
1548 static void audio_pp_nb_voices (const char *typ
, int nb
)
1552 printf ("Does not support %s\n", typ
);
1555 printf ("One %s voice\n", typ
);
1558 printf ("Theoretically supports many %s voices\n", typ
);
1561 printf ("Theoretically supports upto %d %s voices\n", nb
, typ
);
1567 void AUD_help (void)
1571 audio_process_options ("AUDIO", audio_options
);
1572 for (i
= 0; i
< sizeof (drvtab
) / sizeof (drvtab
[0]); i
++) {
1573 struct audio_driver
*d
= drvtab
[i
];
1575 audio_process_options (d
->name
, d
->options
);
1579 printf ("Audio options:\n");
1580 audio_print_options ("AUDIO", audio_options
);
1583 printf ("Available drivers:\n");
1585 for (i
= 0; i
< sizeof (drvtab
) / sizeof (drvtab
[0]); i
++) {
1586 struct audio_driver
*d
= drvtab
[i
];
1588 printf ("Name: %s\n", d
->name
);
1589 printf ("Description: %s\n", d
->descr
);
1591 audio_pp_nb_voices ("playback", d
->max_voices_out
);
1592 audio_pp_nb_voices ("capture", d
->max_voices_in
);
1595 printf ("Options:\n");
1596 audio_print_options (d
->name
, d
->options
);
1599 printf ("No options\n");
1605 "Options are settable through environment variables.\n"
1608 " set QEMU_AUDIO_DRV=wav\n"
1609 " set QEMU_WAV_PATH=c:\\tune.wav\n"
1611 " export QEMU_AUDIO_DRV=wav\n"
1612 " export QEMU_WAV_PATH=$HOME/tune.wav\n"
1613 "(for csh replace export with setenv in the above)\n"
1619 static int audio_driver_init (AudioState
*s
, struct audio_driver
*drv
)
1622 audio_process_options (drv
->name
, drv
->options
);
1624 s
->drv_opaque
= drv
->init ();
1626 if (s
->drv_opaque
) {
1627 audio_init_nb_voices_out (s
, drv
);
1628 audio_init_nb_voices_in (s
, drv
);
1633 dolog ("Could not init `%s' audio driver\n", drv
->name
);
1638 static void audio_vm_change_state_handler (void *opaque
, int running
)
1640 AudioState
*s
= opaque
;
1641 HWVoiceOut
*hwo
= NULL
;
1642 HWVoiceIn
*hwi
= NULL
;
1643 int op
= running
? VOICE_ENABLE
: VOICE_DISABLE
;
1645 while ((hwo
= audio_pcm_hw_find_any_enabled_out (s
, hwo
))) {
1646 hwo
->pcm_ops
->ctl_out (hwo
, op
);
1649 while ((hwi
= audio_pcm_hw_find_any_enabled_in (s
, hwi
))) {
1650 hwi
->pcm_ops
->ctl_in (hwi
, op
);
1654 static void audio_atexit (void)
1656 AudioState
*s
= &glob_audio_state
;
1657 HWVoiceOut
*hwo
= NULL
;
1658 HWVoiceIn
*hwi
= NULL
;
1660 while ((hwo
= audio_pcm_hw_find_any_enabled_out (s
, hwo
))) {
1663 hwo
->pcm_ops
->ctl_out (hwo
, VOICE_DISABLE
);
1664 hwo
->pcm_ops
->fini_out (hwo
);
1666 for (sc
= hwo
->cap_head
.lh_first
; sc
; sc
= sc
->entries
.le_next
) {
1667 CaptureVoiceOut
*cap
= sc
->cap
;
1668 struct capture_callback
*cb
;
1670 for (cb
= cap
->cb_head
.lh_first
; cb
; cb
= cb
->entries
.le_next
) {
1671 cb
->ops
.destroy (cb
->opaque
);
1676 while ((hwi
= audio_pcm_hw_find_any_enabled_in (s
, hwi
))) {
1677 hwi
->pcm_ops
->ctl_in (hwi
, VOICE_DISABLE
);
1678 hwi
->pcm_ops
->fini_in (hwi
);
1682 s
->drv
->fini (s
->drv_opaque
);
1686 static void audio_save (QEMUFile
*f
, void *opaque
)
1692 static int audio_load (QEMUFile
*f
, void *opaque
, int version_id
)
1697 if (version_id
!= 1) {
1704 void AUD_register_card (AudioState
*s
, const char *name
, QEMUSoundCard
*card
)
1707 card
->name
= qemu_strdup (name
);
1708 memset (&card
->entries
, 0, sizeof (card
->entries
));
1709 LIST_INSERT_HEAD (&s
->card_head
, card
, entries
);
1712 void AUD_remove_card (QEMUSoundCard
*card
)
1714 LIST_REMOVE (card
, entries
);
1716 qemu_free (card
->name
);
1719 AudioState
*AUD_init (void)
1723 const char *drvname
;
1724 AudioState
*s
= &glob_audio_state
;
1726 LIST_INIT (&s
->hw_head_out
);
1727 LIST_INIT (&s
->hw_head_in
);
1728 LIST_INIT (&s
->cap_head
);
1729 atexit (audio_atexit
);
1731 s
->ts
= qemu_new_timer (vm_clock
, audio_timer
, s
);
1733 dolog ("Could not create audio timer\n");
1737 audio_process_options ("AUDIO", audio_options
);
1739 s
->nb_hw_voices_out
= conf
.fixed_out
.nb_voices
;
1740 s
->nb_hw_voices_in
= conf
.fixed_in
.nb_voices
;
1742 if (s
->nb_hw_voices_out
<= 0) {
1743 dolog ("Bogus number of playback voices %d, setting to 1\n",
1744 s
->nb_hw_voices_out
);
1745 s
->nb_hw_voices_out
= 1;
1748 if (s
->nb_hw_voices_in
<= 0) {
1749 dolog ("Bogus number of capture voices %d, setting to 0\n",
1750 s
->nb_hw_voices_in
);
1751 s
->nb_hw_voices_in
= 0;
1756 drvname
= audio_get_conf_str ("QEMU_AUDIO_DRV", NULL
, &def
);
1762 for (i
= 0; i
< sizeof (drvtab
) / sizeof (drvtab
[0]); i
++) {
1763 if (!strcmp (drvname
, drvtab
[i
]->name
)) {
1764 done
= !audio_driver_init (s
, drvtab
[i
]);
1771 dolog ("Unknown audio driver `%s'\n", drvname
);
1772 dolog ("Run with -audio-help to list available drivers\n");
1777 for (i
= 0; !done
&& i
< sizeof (drvtab
) / sizeof (drvtab
[0]); i
++) {
1778 if (drvtab
[i
]->can_be_default
) {
1779 done
= !audio_driver_init (s
, drvtab
[i
]);
1785 done
= !audio_driver_init (s
, &no_audio_driver
);
1787 dolog ("Could not initialize audio subsystem\n");
1790 dolog ("warning: Using timer based audio emulation\n");
1795 VMChangeStateEntry
*e
;
1797 if (conf
.period
.hz
<= 0) {
1798 if (conf
.period
.hz
< 0) {
1799 dolog ("warning: Timer period is negative - %d "
1800 "treating as zero\n",
1803 conf
.period
.ticks
= 1;
1806 conf
.period
.ticks
= ticks_per_sec
/ conf
.period
.hz
;
1809 e
= qemu_add_vm_change_state_handler (audio_vm_change_state_handler
, s
);
1811 dolog ("warning: Could not register change state handler\n"
1812 "(Audio can continue looping even after stopping the VM)\n");
1816 qemu_del_timer (s
->ts
);
1820 LIST_INIT (&s
->card_head
);
1821 register_savevm ("audio", 0, 1, audio_save
, audio_load
, s
);
1822 qemu_mod_timer (s
->ts
, qemu_get_clock (vm_clock
) + conf
.period
.ticks
);
1826 CaptureVoiceOut
*AUD_add_capture (
1829 struct audio_capture_ops
*ops
,
1833 CaptureVoiceOut
*cap
;
1834 struct capture_callback
*cb
;
1838 s
= &glob_audio_state
;
1841 if (audio_validate_settings (as
)) {
1842 dolog ("Invalid settings were passed when trying to add capture\n");
1843 audio_print_settings (as
);
1847 cb
= audio_calloc (AUDIO_FUNC
, 1, sizeof (*cb
));
1849 dolog ("Could not allocate capture callback information, size %zu\n",
1854 cb
->opaque
= cb_opaque
;
1856 cap
= audio_pcm_capture_find_specific (s
, as
);
1858 LIST_INSERT_HEAD (&cap
->cb_head
, cb
, entries
);
1863 CaptureVoiceOut
*cap
;
1865 cap
= audio_calloc (AUDIO_FUNC
, 1, sizeof (*cap
));
1867 dolog ("Could not allocate capture voice, size %zu\n",
1873 LIST_INIT (&hw
->sw_head
);
1874 LIST_INIT (&cap
->cb_head
);
1876 /* XXX find a more elegant way */
1877 hw
->samples
= 4096 * 4;
1878 hw
->mix_buf
= audio_calloc (AUDIO_FUNC
, hw
->samples
,
1879 sizeof (st_sample_t
));
1881 dolog ("Could not allocate capture mix buffer (%d samples)\n",
1886 audio_pcm_init_info (&hw
->info
, as
);
1888 cap
->buf
= audio_calloc (AUDIO_FUNC
, hw
->samples
, 1 << hw
->info
.shift
);
1890 dolog ("Could not allocate capture buffer "
1891 "(%d samples, each %d bytes)\n",
1892 hw
->samples
, 1 << hw
->info
.shift
);
1896 hw
->clip
= mixeng_clip
1897 [hw
->info
.nchannels
== 2]
1899 [hw
->info
.swap_endianness
]
1900 [audio_bits_to_index (hw
->info
.bits
)];
1902 LIST_INSERT_HEAD (&s
->cap_head
, cap
, entries
);
1903 LIST_INSERT_HEAD (&cap
->cb_head
, cb
, entries
);
1906 while ((hw
= audio_pcm_hw_find_any_out (s
, hw
))) {
1907 audio_attach_capture (s
, hw
);
1912 qemu_free (cap
->hw
.mix_buf
);
1922 void AUD_del_capture (CaptureVoiceOut
*cap
, void *cb_opaque
)
1924 struct capture_callback
*cb
;
1926 for (cb
= cap
->cb_head
.lh_first
; cb
; cb
= cb
->entries
.le_next
) {
1927 if (cb
->opaque
== cb_opaque
) {
1928 cb
->ops
.destroy (cb_opaque
);
1929 LIST_REMOVE (cb
, entries
);
1932 if (!cap
->cb_head
.lh_first
) {
1933 SWVoiceOut
*sw
= cap
->hw
.sw_head
.lh_first
, *sw1
;
1936 SWVoiceCap
*sc
= (SWVoiceCap
*) sw
;
1937 #ifdef DEBUG_CAPTURE
1938 dolog ("freeing %s\n", sw
->name
);
1941 sw1
= sw
->entries
.le_next
;
1943 st_rate_stop (sw
->rate
);
1946 LIST_REMOVE (sw
, entries
);
1947 LIST_REMOVE (sc
, entries
);
1951 LIST_REMOVE (cap
, entries
);
1959 void AUD_set_volume_out (SWVoiceOut
*sw
, int mute
, uint8_t lvol
, uint8_t rvol
)
1962 sw
->vol
.mute
= mute
;
1963 sw
->vol
.l
= nominal_volume
.l
* lvol
/ 255;
1964 sw
->vol
.r
= nominal_volume
.r
* rvol
/ 255;
1968 void AUD_set_volume_in (SWVoiceIn
*sw
, int mute
, uint8_t lvol
, uint8_t rvol
)
1971 sw
->vol
.mute
= mute
;
1972 sw
->vol
.l
= nominal_volume
.l
* lvol
/ 255;
1973 sw
->vol
.r
= nominal_volume
.r
* rvol
/ 255;