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1
/*
2
 * QEMU Audio subsystem
3
 *
4
 * Copyright (c) 2003-2005 Vassili Karpov (malc)
5
 *
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:
12
 *
13
 * The above copyright notice and this permission notice shall be included in
14
 * all copies or substantial portions of the Software.
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 *
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
22
 * THE SOFTWARE.
23
 */
24
#include "hw/hw.h"
25
#include "audio.h"
26
#include "console.h"
27
#include "qemu-timer.h"
28
#include "sysemu.h"
29

    
30
#define AUDIO_CAP "audio"
31
#include "audio_int.h"
32

    
33
/* #define DEBUG_PLIVE */
34
/* #define DEBUG_LIVE */
35
/* #define DEBUG_OUT */
36
/* #define DEBUG_CAPTURE */
37

    
38
#define SW_NAME(sw) (sw)->name ? (sw)->name : "unknown"
39

    
40
static struct audio_driver *drvtab[] = {
41
#ifdef CONFIG_OSS
42
    &oss_audio_driver,
43
#endif
44
#ifdef CONFIG_ALSA
45
    &alsa_audio_driver,
46
#endif
47
#ifdef CONFIG_COREAUDIO
48
    &coreaudio_audio_driver,
49
#endif
50
#ifdef CONFIG_DSOUND
51
    &dsound_audio_driver,
52
#endif
53
#ifdef CONFIG_FMOD
54
    &fmod_audio_driver,
55
#endif
56
#ifdef CONFIG_SDL
57
    &sdl_audio_driver,
58
#endif
59
    &no_audio_driver,
60
    &wav_audio_driver
61
};
62

    
63
struct fixed_settings {
64
    int enabled;
65
    int nb_voices;
66
    int greedy;
67
    audsettings_t settings;
68
};
69

    
70
static struct {
71
    struct fixed_settings fixed_out;
72
    struct fixed_settings fixed_in;
73
    union {
74
        int hz;
75
        int64_t ticks;
76
    } period;
77
    int plive;
78
    int log_to_monitor;
79
} conf = {
80
    {                           /* DAC fixed settings */
81
        1,                      /* enabled */
82
        1,                      /* nb_voices */
83
        1,                      /* greedy */
84
        {
85
            44100,              /* freq */
86
            2,                  /* nchannels */
87
            AUD_FMT_S16,        /* fmt */
88
            AUDIO_HOST_ENDIANNESS
89
        }
90
    },
91

    
92
    {                           /* ADC fixed settings */
93
        1,                      /* enabled */
94
        1,                      /* nb_voices */
95
        1,                      /* greedy */
96
        {
97
            44100,              /* freq */
98
            2,                  /* nchannels */
99
            AUD_FMT_S16,        /* fmt */
100
            AUDIO_HOST_ENDIANNESS
101
        }
102
    },
103

    
104
    { 0 },                      /* period */
105
    0,                          /* plive */
106
    0                           /* log_to_monitor */
107
};
108

    
109
static AudioState glob_audio_state;
110

    
111
volume_t nominal_volume = {
112
    0,
113
#ifdef FLOAT_MIXENG
114
    1.0,
115
    1.0
116
#else
117
    UINT_MAX,
118
    UINT_MAX
119
#endif
120
};
121

    
122
/* http://www.df.lth.se/~john_e/gems/gem002d.html */
123
/* http://www.multi-platforms.com/Tips/PopCount.htm */
124
uint32_t popcount (uint32_t u)
125
{
126
    u = ((u&0x55555555) + ((u>>1)&0x55555555));
127
    u = ((u&0x33333333) + ((u>>2)&0x33333333));
128
    u = ((u&0x0f0f0f0f) + ((u>>4)&0x0f0f0f0f));
129
    u = ((u&0x00ff00ff) + ((u>>8)&0x00ff00ff));
130
    u = ( u&0x0000ffff) + (u>>16);
131
    return u;
132
}
133

    
134
inline uint32_t lsbindex (uint32_t u)
135
{
136
    return popcount ((u&-u)-1);
137
}
138

    
139
#ifdef AUDIO_IS_FLAWLESS_AND_NO_CHECKS_ARE_REQURIED
140
#error No its not
141
#else
142
int audio_bug (const char *funcname, int cond)
143
{
144
    if (cond) {
145
        static int shown;
146

    
147
        AUD_log (NULL, "A bug was just triggered in %s\n", funcname);
148
        if (!shown) {
149
            shown = 1;
150
            AUD_log (NULL, "Save all your work and restart without audio\n");
151
            AUD_log (NULL, "Please send bug report to malc@pulsesoft.com\n");
152
            AUD_log (NULL, "I am sorry\n");
153
        }
154
        AUD_log (NULL, "Context:\n");
155

    
156
#if defined AUDIO_BREAKPOINT_ON_BUG
157
#  if defined HOST_I386
158
#    if defined __GNUC__
159
        __asm__ ("int3");
160
#    elif defined _MSC_VER
161
        _asm _emit 0xcc;
162
#    else
163
        abort ();
164
#    endif
165
#  else
166
        abort ();
167
#  endif
168
#endif
169
    }
170

    
171
    return cond;
172
}
173
#endif
174

    
175
static inline int audio_bits_to_index (int bits)
176
{
177
    switch (bits) {
178
    case 8:
179
        return 0;
180

    
181
    case 16:
182
        return 1;
183

    
184
    case 32:
185
        return 2;
186

    
187
    default:
188
        audio_bug ("bits_to_index", 1);
189
        AUD_log (NULL, "invalid bits %d\n", bits);
190
        return 0;
191
    }
192
}
193

    
194
void *audio_calloc (const char *funcname, int nmemb, size_t size)
195
{
196
    int cond;
197
    size_t len;
198

    
199
    len = nmemb * size;
200
    cond = !nmemb || !size;
201
    cond |= nmemb < 0;
202
    cond |= len < size;
203

    
204
    if (audio_bug ("audio_calloc", cond)) {
205
        AUD_log (NULL, "%s passed invalid arguments to audio_calloc\n",
206
                 funcname);
207
        AUD_log (NULL, "nmemb=%d size=%zu (len=%zu)\n", nmemb, size, len);
208
        return NULL;
209
    }
210

    
211
    return qemu_mallocz (len);
212
}
213

    
214
static char *audio_alloc_prefix (const char *s)
215
{
216
    const char qemu_prefix[] = "QEMU_";
217
    size_t len;
218
    char *r;
219

    
220
    if (!s) {
221
        return NULL;
222
    }
223

    
224
    len = strlen (s);
225
    r = qemu_malloc (len + sizeof (qemu_prefix));
226

    
227
    if (r) {
228
        size_t i;
229
        char *u = r + sizeof (qemu_prefix) - 1;
230

    
231
        strcpy (r, qemu_prefix);
232
        strcat (r, s);
233

    
234
        for (i = 0; i < len; ++i) {
235
            u[i] = toupper (u[i]);
236
        }
237
    }
238
    return r;
239
}
240

    
241
const char *audio_audfmt_to_string (audfmt_e fmt)
242
{
243
    switch (fmt) {
244
    case AUD_FMT_U8:
245
        return "U8";
246

    
247
    case AUD_FMT_U16:
248
        return "U16";
249

    
250
    case AUD_FMT_S8:
251
        return "S8";
252

    
253
    case AUD_FMT_S16:
254
        return "S16";
255

    
256
    case AUD_FMT_U32:
257
        return "U32";
258

    
259
    case AUD_FMT_S32:
260
        return "S32";
261
    }
262

    
263
    dolog ("Bogus audfmt %d returning S16\n", fmt);
264
    return "S16";
265
}
266

    
267
audfmt_e audio_string_to_audfmt (const char *s, audfmt_e defval, int *defaultp)
268
{
269
    if (!strcasecmp (s, "u8")) {
270
        *defaultp = 0;
271
        return AUD_FMT_U8;
272
    }
273
    else if (!strcasecmp (s, "u16")) {
274
        *defaultp = 0;
275
        return AUD_FMT_U16;
276
    }
277
    else if (!strcasecmp (s, "u32")) {
278
        *defaultp = 0;
279
        return AUD_FMT_U32;
280
    }
281
    else if (!strcasecmp (s, "s8")) {
282
        *defaultp = 0;
283
        return AUD_FMT_S8;
284
    }
285
    else if (!strcasecmp (s, "s16")) {
286
        *defaultp = 0;
287
        return AUD_FMT_S16;
288
    }
289
    else if (!strcasecmp (s, "s32")) {
290
        *defaultp = 0;
291
        return AUD_FMT_S32;
292
    }
293
    else {
294
        dolog ("Bogus audio format `%s' using %s\n",
295
               s, audio_audfmt_to_string (defval));
296
        *defaultp = 1;
297
        return defval;
298
    }
299
}
300

    
301
static audfmt_e audio_get_conf_fmt (const char *envname,
302
                                    audfmt_e defval,
303
                                    int *defaultp)
304
{
305
    const char *var = getenv (envname);
306
    if (!var) {
307
        *defaultp = 1;
308
        return defval;
309
    }
310
    return audio_string_to_audfmt (var, defval, defaultp);
311
}
312

    
313
static int audio_get_conf_int (const char *key, int defval, int *defaultp)
314
{
315
    int val;
316
    char *strval;
317

    
318
    strval = getenv (key);
319
    if (strval) {
320
        *defaultp = 0;
321
        val = atoi (strval);
322
        return val;
323
    }
324
    else {
325
        *defaultp = 1;
326
        return defval;
327
    }
328
}
329

    
330
static const char *audio_get_conf_str (const char *key,
331
                                       const char *defval,
332
                                       int *defaultp)
333
{
334
    const char *val = getenv (key);
335
    if (!val) {
336
        *defaultp = 1;
337
        return defval;
338
    }
339
    else {
340
        *defaultp = 0;
341
        return val;
342
    }
343
}
344

    
345
void AUD_vlog (const char *cap, const char *fmt, va_list ap)
346
{
347
    if (conf.log_to_monitor) {
348
        if (cap) {
349
            term_printf ("%s: ", cap);
350
        }
351

    
352
        term_vprintf (fmt, ap);
353
    }
354
    else {
355
        if (cap) {
356
            fprintf (stderr, "%s: ", cap);
357
        }
358

    
359
        vfprintf (stderr, fmt, ap);
360
    }
361
}
362

    
363
void AUD_log (const char *cap, const char *fmt, ...)
364
{
365
    va_list ap;
366

    
367
    va_start (ap, fmt);
368
    AUD_vlog (cap, fmt, ap);
369
    va_end (ap);
370
}
371

    
372
static void audio_print_options (const char *prefix,
373
                                 struct audio_option *opt)
374
{
375
    char *uprefix;
376

    
377
    if (!prefix) {
378
        dolog ("No prefix specified\n");
379
        return;
380
    }
381

    
382
    if (!opt) {
383
        dolog ("No options\n");
384
        return;
385
    }
386

    
387
    uprefix = audio_alloc_prefix (prefix);
388

    
389
    for (; opt->name; opt++) {
390
        const char *state = "default";
391
        printf ("  %s_%s: ", uprefix, opt->name);
392

    
393
        if (opt->overriddenp && *opt->overriddenp) {
394
            state = "current";
395
        }
396

    
397
        switch (opt->tag) {
398
        case AUD_OPT_BOOL:
399
            {
400
                int *intp = opt->valp;
401
                printf ("boolean, %s = %d\n", state, *intp ? 1 : 0);
402
            }
403
            break;
404

    
405
        case AUD_OPT_INT:
406
            {
407
                int *intp = opt->valp;
408
                printf ("integer, %s = %d\n", state, *intp);
409
            }
410
            break;
411

    
412
        case AUD_OPT_FMT:
413
            {
414
                audfmt_e *fmtp = opt->valp;
415
                printf (
416
                    "format, %s = %s, (one of: U8 S8 U16 S16)\n",
417
                    state,
418
                    audio_audfmt_to_string (*fmtp)
419
                    );
420
            }
421
            break;
422

    
423
        case AUD_OPT_STR:
424
            {
425
                const char **strp = opt->valp;
426
                printf ("string, %s = %s\n",
427
                        state,
428
                        *strp ? *strp : "(not set)");
429
            }
430
            break;
431

    
432
        default:
433
            printf ("???\n");
434
            dolog ("Bad value tag for option %s_%s %d\n",
435
                   uprefix, opt->name, opt->tag);
436
            break;
437
        }
438
        printf ("    %s\n", opt->descr);
439
    }
440

    
441
    qemu_free (uprefix);
442
}
443

    
444
static void audio_process_options (const char *prefix,
445
                                   struct audio_option *opt)
446
{
447
    char *optname;
448
    const char qemu_prefix[] = "QEMU_";
449
    size_t preflen;
450

    
451
    if (audio_bug (AUDIO_FUNC, !prefix)) {
452
        dolog ("prefix = NULL\n");
453
        return;
454
    }
455

    
456
    if (audio_bug (AUDIO_FUNC, !opt)) {
457
        dolog ("opt = NULL\n");
458
        return;
459
    }
460

    
461
    preflen = strlen (prefix);
462

    
463
    for (; opt->name; opt++) {
464
        size_t len, i;
465
        int def;
466

    
467
        if (!opt->valp) {
468
            dolog ("Option value pointer for `%s' is not set\n",
469
                   opt->name);
470
            continue;
471
        }
472

    
473
        len = strlen (opt->name);
474
        /* len of opt->name + len of prefix + size of qemu_prefix
475
         * (includes trailing zero) + zero + underscore (on behalf of
476
         * sizeof) */
477
        optname = qemu_malloc (len + preflen + sizeof (qemu_prefix) + 1);
478
        if (!optname) {
479
            dolog ("Could not allocate memory for option name `%s'\n",
480
                   opt->name);
481
            continue;
482
        }
483

    
484
        strcpy (optname, qemu_prefix);
485

    
486
        /* copy while upper-casing, including trailing zero */
487
        for (i = 0; i <= preflen; ++i) {
488
            optname[i + sizeof (qemu_prefix) - 1] = toupper (prefix[i]);
489
        }
490
        strcat (optname, "_");
491
        strcat (optname, opt->name);
492

    
493
        def = 1;
494
        switch (opt->tag) {
495
        case AUD_OPT_BOOL:
496
        case AUD_OPT_INT:
497
            {
498
                int *intp = opt->valp;
499
                *intp = audio_get_conf_int (optname, *intp, &def);
500
            }
501
            break;
502

    
503
        case AUD_OPT_FMT:
504
            {
505
                audfmt_e *fmtp = opt->valp;
506
                *fmtp = audio_get_conf_fmt (optname, *fmtp, &def);
507
            }
508
            break;
509

    
510
        case AUD_OPT_STR:
511
            {
512
                const char **strp = opt->valp;
513
                *strp = audio_get_conf_str (optname, *strp, &def);
514
            }
515
            break;
516

    
517
        default:
518
            dolog ("Bad value tag for option `%s' - %d\n",
519
                   optname, opt->tag);
520
            break;
521
        }
522

    
523
        if (!opt->overriddenp) {
524
            opt->overriddenp = &opt->overridden;
525
        }
526
        *opt->overriddenp = !def;
527
        qemu_free (optname);
528
    }
529
}
530

    
531
static void audio_print_settings (audsettings_t *as)
532
{
533
    dolog ("frequency=%d nchannels=%d fmt=", as->freq, as->nchannels);
534

    
535
    switch (as->fmt) {
536
    case AUD_FMT_S8:
537
        AUD_log (NULL, "S8");
538
        break;
539
    case AUD_FMT_U8:
540
        AUD_log (NULL, "U8");
541
        break;
542
    case AUD_FMT_S16:
543
        AUD_log (NULL, "S16");
544
        break;
545
    case AUD_FMT_U16:
546
        AUD_log (NULL, "U16");
547
        break;
548
    default:
549
        AUD_log (NULL, "invalid(%d)", as->fmt);
550
        break;
551
    }
552

    
553
    AUD_log (NULL, " endianness=");
554
    switch (as->endianness) {
555
    case 0:
556
        AUD_log (NULL, "little");
557
        break;
558
    case 1:
559
        AUD_log (NULL, "big");
560
        break;
561
    default:
562
        AUD_log (NULL, "invalid");
563
        break;
564
    }
565
    AUD_log (NULL, "\n");
566
}
567

    
568
static int audio_validate_settings (audsettings_t *as)
569
{
570
    int invalid;
571

    
572
    invalid = as->nchannels != 1 && as->nchannels != 2;
573
    invalid |= as->endianness != 0 && as->endianness != 1;
574

    
575
    switch (as->fmt) {
576
    case AUD_FMT_S8:
577
    case AUD_FMT_U8:
578
    case AUD_FMT_S16:
579
    case AUD_FMT_U16:
580
    case AUD_FMT_S32:
581
    case AUD_FMT_U32:
582
        break;
583
    default:
584
        invalid = 1;
585
        break;
586
    }
587

    
588
    invalid |= as->freq <= 0;
589
    return invalid ? -1 : 0;
590
}
591

    
592
static int audio_pcm_info_eq (struct audio_pcm_info *info, audsettings_t *as)
593
{
594
    int bits = 8, sign = 0;
595

    
596
    switch (as->fmt) {
597
    case AUD_FMT_S8:
598
        sign = 1;
599
    case AUD_FMT_U8:
600
        break;
601

    
602
    case AUD_FMT_S16:
603
        sign = 1;
604
    case AUD_FMT_U16:
605
        bits = 16;
606
        break;
607

    
608
    case AUD_FMT_S32:
609
        sign = 1;
610
    case AUD_FMT_U32:
611
        bits = 32;
612
        break;
613
    }
614
    return info->freq == as->freq
615
        && info->nchannels == as->nchannels
616
        && info->sign == sign
617
        && info->bits == bits
618
        && info->swap_endianness == (as->endianness != AUDIO_HOST_ENDIANNESS);
619
}
620

    
621
void audio_pcm_init_info (struct audio_pcm_info *info, audsettings_t *as)
622
{
623
    int bits = 8, sign = 0, shift = 0;
624

    
625
    switch (as->fmt) {
626
    case AUD_FMT_S8:
627
        sign = 1;
628
    case AUD_FMT_U8:
629
        break;
630

    
631
    case AUD_FMT_S16:
632
        sign = 1;
633
    case AUD_FMT_U16:
634
        bits = 16;
635
        shift = 1;
636
        break;
637

    
638
    case AUD_FMT_S32:
639
        sign = 1;
640
    case AUD_FMT_U32:
641
        bits = 32;
642
        shift = 2;
643
        break;
644
    }
645

    
646
    info->freq = as->freq;
647
    info->bits = bits;
648
    info->sign = sign;
649
    info->nchannels = as->nchannels;
650
    info->shift = (as->nchannels == 2) + shift;
651
    info->align = (1 << info->shift) - 1;
652
    info->bytes_per_second = info->freq << info->shift;
653
    info->swap_endianness = (as->endianness != AUDIO_HOST_ENDIANNESS);
654
}
655

    
656
void audio_pcm_info_clear_buf (struct audio_pcm_info *info, void *buf, int len)
657
{
658
    if (!len) {
659
        return;
660
    }
661

    
662
    if (info->sign) {
663
        memset (buf, 0x00, len << info->shift);
664
    }
665
    else {
666
        switch (info->bits) {
667
        case 8:
668
            memset (buf, 0x80, len << info->shift);
669
            break;
670

    
671
        case 16:
672
            {
673
                int i;
674
                uint16_t *p = buf;
675
                int shift = info->nchannels - 1;
676
                short s = INT16_MAX;
677

    
678
                if (info->swap_endianness) {
679
                    s = bswap16 (s);
680
                }
681

    
682
                for (i = 0; i < len << shift; i++) {
683
                    p[i] = s;
684
                }
685
            }
686
            break;
687

    
688
        case 32:
689
            {
690
                int i;
691
                uint32_t *p = buf;
692
                int shift = info->nchannels - 1;
693
                int32_t s = INT32_MAX;
694

    
695
                if (info->swap_endianness) {
696
                    s = bswap32 (s);
697
                }
698

    
699
                for (i = 0; i < len << shift; i++) {
700
                    p[i] = s;
701
                }
702
            }
703
            break;
704

    
705
        default:
706
            AUD_log (NULL, "audio_pcm_info_clear_buf: invalid bits %d\n",
707
                     info->bits);
708
            break;
709
        }
710
    }
711
}
712

    
713
/*
714
 * Capture
715
 */
716
static void noop_conv (st_sample_t *dst, const void *src,
717
                       int samples, volume_t *vol)
718
{
719
    (void) src;
720
    (void) dst;
721
    (void) samples;
722
    (void) vol;
723
}
724

    
725
static CaptureVoiceOut *audio_pcm_capture_find_specific (
726
    AudioState *s,
727
    audsettings_t *as
728
    )
729
{
730
    CaptureVoiceOut *cap;
731

    
732
    for (cap = s->cap_head.lh_first; cap; cap = cap->entries.le_next) {
733
        if (audio_pcm_info_eq (&cap->hw.info, as)) {
734
            return cap;
735
        }
736
    }
737
    return NULL;
738
}
739

    
740
static void audio_notify_capture (CaptureVoiceOut *cap, audcnotification_e cmd)
741
{
742
    struct capture_callback *cb;
743

    
744
#ifdef DEBUG_CAPTURE
745
    dolog ("notification %d sent\n", cmd);
746
#endif
747
    for (cb = cap->cb_head.lh_first; cb; cb = cb->entries.le_next) {
748
        cb->ops.notify (cb->opaque, cmd);
749
    }
750
}
751

    
752
static void audio_capture_maybe_changed (CaptureVoiceOut *cap, int enabled)
753
{
754
    if (cap->hw.enabled != enabled) {
755
        audcnotification_e cmd;
756
        cap->hw.enabled = enabled;
757
        cmd = enabled ? AUD_CNOTIFY_ENABLE : AUD_CNOTIFY_DISABLE;
758
        audio_notify_capture (cap, cmd);
759
    }
760
}
761

    
762
static void audio_recalc_and_notify_capture (CaptureVoiceOut *cap)
763
{
764
    HWVoiceOut *hw = &cap->hw;
765
    SWVoiceOut *sw;
766
    int enabled = 0;
767

    
768
    for (sw = hw->sw_head.lh_first; sw; sw = sw->entries.le_next) {
769
        if (sw->active) {
770
            enabled = 1;
771
            break;
772
        }
773
    }
774
    audio_capture_maybe_changed (cap, enabled);
775
}
776

    
777
static void audio_detach_capture (HWVoiceOut *hw)
778
{
779
    SWVoiceCap *sc = hw->cap_head.lh_first;
780

    
781
    while (sc) {
782
        SWVoiceCap *sc1 = sc->entries.le_next;
783
        SWVoiceOut *sw = &sc->sw;
784
        CaptureVoiceOut *cap = sc->cap;
785
        int was_active = sw->active;
786

    
787
        if (sw->rate) {
788
            st_rate_stop (sw->rate);
789
            sw->rate = NULL;
790
        }
791

    
792
        LIST_REMOVE (sw, entries);
793
        LIST_REMOVE (sc, entries);
794
        qemu_free (sc);
795
        if (was_active) {
796
            /* We have removed soft voice from the capture:
797
               this might have changed the overall status of the capture
798
               since this might have been the only active voice */
799
            audio_recalc_and_notify_capture (cap);
800
        }
801
        sc = sc1;
802
    }
803
}
804

    
805
static int audio_attach_capture (AudioState *s, HWVoiceOut *hw)
806
{
807
    CaptureVoiceOut *cap;
808

    
809
    audio_detach_capture (hw);
810
    for (cap = s->cap_head.lh_first; cap; cap = cap->entries.le_next) {
811
        SWVoiceCap *sc;
812
        SWVoiceOut *sw;
813
        HWVoiceOut *hw_cap = &cap->hw;
814

    
815
        sc = audio_calloc (AUDIO_FUNC, 1, sizeof (*sc));
816
        if (!sc) {
817
            dolog ("Could not allocate soft capture voice (%zu bytes)\n",
818
                   sizeof (*sc));
819
            return -1;
820
        }
821

    
822
        sc->cap = cap;
823
        sw = &sc->sw;
824
        sw->hw = hw_cap;
825
        sw->info = hw->info;
826
        sw->empty = 1;
827
        sw->active = hw->enabled;
828
        sw->conv = noop_conv;
829
        sw->ratio = ((int64_t) hw_cap->info.freq << 32) / sw->info.freq;
830
        sw->rate = st_rate_start (sw->info.freq, hw_cap->info.freq);
831
        if (!sw->rate) {
832
            dolog ("Could not start rate conversion for `%s'\n", SW_NAME (sw));
833
            qemu_free (sw);
834
            return -1;
835
        }
836
        LIST_INSERT_HEAD (&hw_cap->sw_head, sw, entries);
837
        LIST_INSERT_HEAD (&hw->cap_head, sc, entries);
838
#ifdef DEBUG_CAPTURE
839
        asprintf (&sw->name, "for %p %d,%d,%d",
840
                  hw, sw->info.freq, sw->info.bits, sw->info.nchannels);
841
        dolog ("Added %s active = %d\n", sw->name, sw->active);
842
#endif
843
        if (sw->active) {
844
            audio_capture_maybe_changed (cap, 1);
845
        }
846
    }
847
    return 0;
848
}
849

    
850
/*
851
 * Hard voice (capture)
852
 */
853
static int audio_pcm_hw_find_min_in (HWVoiceIn *hw)
854
{
855
    SWVoiceIn *sw;
856
    int m = hw->total_samples_captured;
857

    
858
    for (sw = hw->sw_head.lh_first; sw; sw = sw->entries.le_next) {
859
        if (sw->active) {
860
            m = audio_MIN (m, sw->total_hw_samples_acquired);
861
        }
862
    }
863
    return m;
864
}
865

    
866
int audio_pcm_hw_get_live_in (HWVoiceIn *hw)
867
{
868
    int live = hw->total_samples_captured - audio_pcm_hw_find_min_in (hw);
869
    if (audio_bug (AUDIO_FUNC, live < 0 || live > hw->samples)) {
870
        dolog ("live=%d hw->samples=%d\n", live, hw->samples);
871
        return 0;
872
    }
873
    return live;
874
}
875

    
876
/*
877
 * Soft voice (capture)
878
 */
879
static int audio_pcm_sw_get_rpos_in (SWVoiceIn *sw)
880
{
881
    HWVoiceIn *hw = sw->hw;
882
    int live = hw->total_samples_captured - sw->total_hw_samples_acquired;
883
    int rpos;
884

    
885
    if (audio_bug (AUDIO_FUNC, live < 0 || live > hw->samples)) {
886
        dolog ("live=%d hw->samples=%d\n", live, hw->samples);
887
        return 0;
888
    }
889

    
890
    rpos = hw->wpos - live;
891
    if (rpos >= 0) {
892
        return rpos;
893
    }
894
    else {
895
        return hw->samples + rpos;
896
    }
897
}
898

    
899
int audio_pcm_sw_read (SWVoiceIn *sw, void *buf, int size)
900
{
901
    HWVoiceIn *hw = sw->hw;
902
    int samples, live, ret = 0, swlim, isamp, osamp, rpos, total = 0;
903
    st_sample_t *src, *dst = sw->buf;
904

    
905
    rpos = audio_pcm_sw_get_rpos_in (sw) % hw->samples;
906

    
907
    live = hw->total_samples_captured - sw->total_hw_samples_acquired;
908
    if (audio_bug (AUDIO_FUNC, live < 0 || live > hw->samples)) {
909
        dolog ("live_in=%d hw->samples=%d\n", live, hw->samples);
910
        return 0;
911
    }
912

    
913
    samples = size >> sw->info.shift;
914
    if (!live) {
915
        return 0;
916
    }
917

    
918
    swlim = (live * sw->ratio) >> 32;
919
    swlim = audio_MIN (swlim, samples);
920

    
921
    while (swlim) {
922
        src = hw->conv_buf + rpos;
923
        isamp = hw->wpos - rpos;
924
        /* XXX: <= ? */
925
        if (isamp <= 0) {
926
            isamp = hw->samples - rpos;
927
        }
928

    
929
        if (!isamp) {
930
            break;
931
        }
932
        osamp = swlim;
933

    
934
        if (audio_bug (AUDIO_FUNC, osamp < 0)) {
935
            dolog ("osamp=%d\n", osamp);
936
            return 0;
937
        }
938

    
939
        st_rate_flow (sw->rate, src, dst, &isamp, &osamp);
940
        swlim -= osamp;
941
        rpos = (rpos + isamp) % hw->samples;
942
        dst += osamp;
943
        ret += osamp;
944
        total += isamp;
945
    }
946

    
947
    sw->clip (buf, sw->buf, ret);
948
    sw->total_hw_samples_acquired += total;
949
    return ret << sw->info.shift;
950
}
951

    
952
/*
953
 * Hard voice (playback)
954
 */
955
static int audio_pcm_hw_find_min_out (HWVoiceOut *hw, int *nb_livep)
956
{
957
    SWVoiceOut *sw;
958
    int m = INT_MAX;
959
    int nb_live = 0;
960

    
961
    for (sw = hw->sw_head.lh_first; sw; sw = sw->entries.le_next) {
962
        if (sw->active || !sw->empty) {
963
            m = audio_MIN (m, sw->total_hw_samples_mixed);
964
            nb_live += 1;
965
        }
966
    }
967

    
968
    *nb_livep = nb_live;
969
    return m;
970
}
971

    
972
int audio_pcm_hw_get_live_out2 (HWVoiceOut *hw, int *nb_live)
973
{
974
    int smin;
975

    
976
    smin = audio_pcm_hw_find_min_out (hw, nb_live);
977

    
978
    if (!*nb_live) {
979
        return 0;
980
    }
981
    else {
982
        int live = smin;
983

    
984
        if (audio_bug (AUDIO_FUNC, live < 0 || live > hw->samples)) {
985
            dolog ("live=%d hw->samples=%d\n", live, hw->samples);
986
            return 0;
987
        }
988
        return live;
989
    }
990
}
991

    
992
int audio_pcm_hw_get_live_out (HWVoiceOut *hw)
993
{
994
    int nb_live;
995
    int live;
996

    
997
    live = audio_pcm_hw_get_live_out2 (hw, &nb_live);
998
    if (audio_bug (AUDIO_FUNC, live < 0 || live > hw->samples)) {
999
        dolog ("live=%d hw->samples=%d\n", live, hw->samples);
1000
        return 0;
1001
    }
1002
    return live;
1003
}
1004

    
1005
/*
1006
 * Soft voice (playback)
1007
 */
1008
int audio_pcm_sw_write (SWVoiceOut *sw, void *buf, int size)
1009
{
1010
    int hwsamples, samples, isamp, osamp, wpos, live, dead, left, swlim, blck;
1011
    int ret = 0, pos = 0, total = 0;
1012

    
1013
    if (!sw) {
1014
        return size;
1015
    }
1016

    
1017
    hwsamples = sw->hw->samples;
1018

    
1019
    live = sw->total_hw_samples_mixed;
1020
    if (audio_bug (AUDIO_FUNC, live < 0 || live > hwsamples)){
1021
        dolog ("live=%d hw->samples=%d\n", live, hwsamples);
1022
        return 0;
1023
    }
1024

    
1025
    if (live == hwsamples) {
1026
#ifdef DEBUG_OUT
1027
        dolog ("%s is full %d\n", sw->name, live);
1028
#endif
1029
        return 0;
1030
    }
1031

    
1032
    wpos = (sw->hw->rpos + live) % hwsamples;
1033
    samples = size >> sw->info.shift;
1034

    
1035
    dead = hwsamples - live;
1036
    swlim = ((int64_t) dead << 32) / sw->ratio;
1037
    swlim = audio_MIN (swlim, samples);
1038
    if (swlim) {
1039
        sw->conv (sw->buf, buf, swlim, &sw->vol);
1040
    }
1041

    
1042
    while (swlim) {
1043
        dead = hwsamples - live;
1044
        left = hwsamples - wpos;
1045
        blck = audio_MIN (dead, left);
1046
        if (!blck) {
1047
            break;
1048
        }
1049
        isamp = swlim;
1050
        osamp = blck;
1051
        st_rate_flow_mix (
1052
            sw->rate,
1053
            sw->buf + pos,
1054
            sw->hw->mix_buf + wpos,
1055
            &isamp,
1056
            &osamp
1057
            );
1058
        ret += isamp;
1059
        swlim -= isamp;
1060
        pos += isamp;
1061
        live += osamp;
1062
        wpos = (wpos + osamp) % hwsamples;
1063
        total += osamp;
1064
    }
1065

    
1066
    sw->total_hw_samples_mixed += total;
1067
    sw->empty = sw->total_hw_samples_mixed == 0;
1068

    
1069
#ifdef DEBUG_OUT
1070
    dolog (
1071
        "%s: write size %d ret %d total sw %d\n",
1072
        SW_NAME (sw),
1073
        size >> sw->info.shift,
1074
        ret,
1075
        sw->total_hw_samples_mixed
1076
        );
1077
#endif
1078

    
1079
    return ret << sw->info.shift;
1080
}
1081

    
1082
#ifdef DEBUG_AUDIO
1083
static void audio_pcm_print_info (const char *cap, struct audio_pcm_info *info)
1084
{
1085
    dolog ("%s: bits %d, sign %d, freq %d, nchan %d\n",
1086
           cap, info->bits, info->sign, info->freq, info->nchannels);
1087
}
1088
#endif
1089

    
1090
#define DAC
1091
#include "audio_template.h"
1092
#undef DAC
1093
#include "audio_template.h"
1094

    
1095
int AUD_write (SWVoiceOut *sw, void *buf, int size)
1096
{
1097
    int bytes;
1098

    
1099
    if (!sw) {
1100
        /* XXX: Consider options */
1101
        return size;
1102
    }
1103

    
1104
    if (!sw->hw->enabled) {
1105
        dolog ("Writing to disabled voice %s\n", SW_NAME (sw));
1106
        return 0;
1107
    }
1108

    
1109
    bytes = sw->hw->pcm_ops->write (sw, buf, size);
1110
    return bytes;
1111
}
1112

    
1113
int AUD_read (SWVoiceIn *sw, void *buf, int size)
1114
{
1115
    int bytes;
1116

    
1117
    if (!sw) {
1118
        /* XXX: Consider options */
1119
        return size;
1120
    }
1121

    
1122
    if (!sw->hw->enabled) {
1123
        dolog ("Reading from disabled voice %s\n", SW_NAME (sw));
1124
        return 0;
1125
    }
1126

    
1127
    bytes = sw->hw->pcm_ops->read (sw, buf, size);
1128
    return bytes;
1129
}
1130

    
1131
int AUD_get_buffer_size_out (SWVoiceOut *sw)
1132
{
1133
    return sw->hw->samples << sw->hw->info.shift;
1134
}
1135

    
1136
void AUD_set_active_out (SWVoiceOut *sw, int on)
1137
{
1138
    HWVoiceOut *hw;
1139

    
1140
    if (!sw) {
1141
        return;
1142
    }
1143

    
1144
    hw = sw->hw;
1145
    if (sw->active != on) {
1146
        SWVoiceOut *temp_sw;
1147
        SWVoiceCap *sc;
1148

    
1149
        if (on) {
1150
            hw->pending_disable = 0;
1151
            if (!hw->enabled) {
1152
                hw->enabled = 1;
1153
                hw->pcm_ops->ctl_out (hw, VOICE_ENABLE);
1154
            }
1155
        }
1156
        else {
1157
            if (hw->enabled) {
1158
                int nb_active = 0;
1159

    
1160
                for (temp_sw = hw->sw_head.lh_first; temp_sw;
1161
                     temp_sw = temp_sw->entries.le_next) {
1162
                    nb_active += temp_sw->active != 0;
1163
                }
1164

    
1165
                hw->pending_disable = nb_active == 1;
1166
            }
1167
        }
1168

    
1169
        for (sc = hw->cap_head.lh_first; sc; sc = sc->entries.le_next) {
1170
            sc->sw.active = hw->enabled;
1171
            if (hw->enabled) {
1172
                audio_capture_maybe_changed (sc->cap, 1);
1173
            }
1174
        }
1175
        sw->active = on;
1176
    }
1177
}
1178

    
1179
void AUD_set_active_in (SWVoiceIn *sw, int on)
1180
{
1181
    HWVoiceIn *hw;
1182

    
1183
    if (!sw) {
1184
        return;
1185
    }
1186

    
1187
    hw = sw->hw;
1188
    if (sw->active != on) {
1189
        SWVoiceIn *temp_sw;
1190

    
1191
        if (on) {
1192
            if (!hw->enabled) {
1193
                hw->enabled = 1;
1194
                hw->pcm_ops->ctl_in (hw, VOICE_ENABLE);
1195
            }
1196
            sw->total_hw_samples_acquired = hw->total_samples_captured;
1197
        }
1198
        else {
1199
            if (hw->enabled) {
1200
                int nb_active = 0;
1201

    
1202
                for (temp_sw = hw->sw_head.lh_first; temp_sw;
1203
                     temp_sw = temp_sw->entries.le_next) {
1204
                    nb_active += temp_sw->active != 0;
1205
                }
1206

    
1207
                if (nb_active == 1) {
1208
                    hw->enabled = 0;
1209
                    hw->pcm_ops->ctl_in (hw, VOICE_DISABLE);
1210
                }
1211
            }
1212
        }
1213
        sw->active = on;
1214
    }
1215
}
1216

    
1217
static int audio_get_avail (SWVoiceIn *sw)
1218
{
1219
    int live;
1220

    
1221
    if (!sw) {
1222
        return 0;
1223
    }
1224

    
1225
    live = sw->hw->total_samples_captured - sw->total_hw_samples_acquired;
1226
    if (audio_bug (AUDIO_FUNC, live < 0 || live > sw->hw->samples)) {
1227
        dolog ("live=%d sw->hw->samples=%d\n", live, sw->hw->samples);
1228
        return 0;
1229
    }
1230

    
1231
    ldebug (
1232
        "%s: get_avail live %d ret %" PRId64 "\n",
1233
        SW_NAME (sw),
1234
        live, (((int64_t) live << 32) / sw->ratio) << sw->info.shift
1235
        );
1236

    
1237
    return (((int64_t) live << 32) / sw->ratio) << sw->info.shift;
1238
}
1239

    
1240
static int audio_get_free (SWVoiceOut *sw)
1241
{
1242
    int live, dead;
1243

    
1244
    if (!sw) {
1245
        return 0;
1246
    }
1247

    
1248
    live = sw->total_hw_samples_mixed;
1249

    
1250
    if (audio_bug (AUDIO_FUNC, live < 0 || live > sw->hw->samples)) {
1251
        dolog ("live=%d sw->hw->samples=%d\n", live, sw->hw->samples);
1252
        return 0;
1253
    }
1254

    
1255
    dead = sw->hw->samples - live;
1256

    
1257
#ifdef DEBUG_OUT
1258
    dolog ("%s: get_free live %d dead %d ret %" PRId64 "\n",
1259
           SW_NAME (sw),
1260
           live, dead, (((int64_t) dead << 32) / sw->ratio) << sw->info.shift);
1261
#endif
1262

    
1263
    return (((int64_t) dead << 32) / sw->ratio) << sw->info.shift;
1264
}
1265

    
1266
static void audio_capture_mix_and_clear (HWVoiceOut *hw, int rpos, int samples)
1267
{
1268
    int n;
1269

    
1270
    if (hw->enabled) {
1271
        SWVoiceCap *sc;
1272

    
1273
        for (sc = hw->cap_head.lh_first; sc; sc = sc->entries.le_next) {
1274
            SWVoiceOut *sw = &sc->sw;
1275
            int rpos2 = rpos;
1276

    
1277
            n = samples;
1278
            while (n) {
1279
                int till_end_of_hw = hw->samples - rpos2;
1280
                int to_write = audio_MIN (till_end_of_hw, n);
1281
                int bytes = to_write << hw->info.shift;
1282
                int written;
1283

    
1284
                sw->buf = hw->mix_buf + rpos2;
1285
                written = audio_pcm_sw_write (sw, NULL, bytes);
1286
                if (written - bytes) {
1287
                    dolog ("Could not mix %d bytes into a capture "
1288
                           "buffer, mixed %d\n",
1289
                           bytes, written);
1290
                    break;
1291
                }
1292
                n -= to_write;
1293
                rpos2 = (rpos2 + to_write) % hw->samples;
1294
            }
1295
        }
1296
    }
1297

    
1298
    n = audio_MIN (samples, hw->samples - rpos);
1299
    mixeng_clear (hw->mix_buf + rpos, n);
1300
    mixeng_clear (hw->mix_buf, samples - n);
1301
}
1302

    
1303
static void audio_run_out (AudioState *s)
1304
{
1305
    HWVoiceOut *hw = NULL;
1306
    SWVoiceOut *sw;
1307

    
1308
    while ((hw = audio_pcm_hw_find_any_enabled_out (s, hw))) {
1309
        int played;
1310
        int live, free, nb_live, cleanup_required, prev_rpos;
1311

    
1312
        live = audio_pcm_hw_get_live_out2 (hw, &nb_live);
1313
        if (!nb_live) {
1314
            live = 0;
1315
        }
1316

    
1317
        if (audio_bug (AUDIO_FUNC, live < 0 || live > hw->samples)) {
1318
            dolog ("live=%d hw->samples=%d\n", live, hw->samples);
1319
            continue;
1320
        }
1321

    
1322
        if (hw->pending_disable && !nb_live) {
1323
            SWVoiceCap *sc;
1324
#ifdef DEBUG_OUT
1325
            dolog ("Disabling voice\n");
1326
#endif
1327
            hw->enabled = 0;
1328
            hw->pending_disable = 0;
1329
            hw->pcm_ops->ctl_out (hw, VOICE_DISABLE);
1330
            for (sc = hw->cap_head.lh_first; sc; sc = sc->entries.le_next) {
1331
                sc->sw.active = 0;
1332
                audio_recalc_and_notify_capture (sc->cap);
1333
            }
1334
            continue;
1335
        }
1336

    
1337
        if (!live) {
1338
            for (sw = hw->sw_head.lh_first; sw; sw = sw->entries.le_next) {
1339
                if (sw->active) {
1340
                    free = audio_get_free (sw);
1341
                    if (free > 0) {
1342
                        sw->callback.fn (sw->callback.opaque, free);
1343
                    }
1344
                }
1345
            }
1346
            continue;
1347
        }
1348

    
1349
        prev_rpos = hw->rpos;
1350
        played = hw->pcm_ops->run_out (hw);
1351
        if (audio_bug (AUDIO_FUNC, hw->rpos >= hw->samples)) {
1352
            dolog ("hw->rpos=%d hw->samples=%d played=%d\n",
1353
                   hw->rpos, hw->samples, played);
1354
            hw->rpos = 0;
1355
        }
1356

    
1357
#ifdef DEBUG_OUT
1358
        dolog ("played=%d\n", played);
1359
#endif
1360

    
1361
        if (played) {
1362
            hw->ts_helper += played;
1363
            audio_capture_mix_and_clear (hw, prev_rpos, played);
1364
        }
1365

    
1366
        cleanup_required = 0;
1367
        for (sw = hw->sw_head.lh_first; sw; sw = sw->entries.le_next) {
1368
            if (!sw->active && sw->empty) {
1369
                continue;
1370
            }
1371

    
1372
            if (audio_bug (AUDIO_FUNC, played > sw->total_hw_samples_mixed)) {
1373
                dolog ("played=%d sw->total_hw_samples_mixed=%d\n",
1374
                       played, sw->total_hw_samples_mixed);
1375
                played = sw->total_hw_samples_mixed;
1376
            }
1377

    
1378
            sw->total_hw_samples_mixed -= played;
1379

    
1380
            if (!sw->total_hw_samples_mixed) {
1381
                sw->empty = 1;
1382
                cleanup_required |= !sw->active && !sw->callback.fn;
1383
            }
1384

    
1385
            if (sw->active) {
1386
                free = audio_get_free (sw);
1387
                if (free > 0) {
1388
                    sw->callback.fn (sw->callback.opaque, free);
1389
                }
1390
            }
1391
        }
1392

    
1393
        if (cleanup_required) {
1394
            SWVoiceOut *sw1;
1395

    
1396
            sw = hw->sw_head.lh_first;
1397
            while (sw) {
1398
                sw1 = sw->entries.le_next;
1399
                if (!sw->active && !sw->callback.fn) {
1400
#ifdef DEBUG_PLIVE
1401
                    dolog ("Finishing with old voice\n");
1402
#endif
1403
                    audio_close_out (s, sw);
1404
                }
1405
                sw = sw1;
1406
            }
1407
        }
1408
    }
1409
}
1410

    
1411
static void audio_run_in (AudioState *s)
1412
{
1413
    HWVoiceIn *hw = NULL;
1414

    
1415
    while ((hw = audio_pcm_hw_find_any_enabled_in (s, hw))) {
1416
        SWVoiceIn *sw;
1417
        int captured, min;
1418

    
1419
        captured = hw->pcm_ops->run_in (hw);
1420

    
1421
        min = audio_pcm_hw_find_min_in (hw);
1422
        hw->total_samples_captured += captured - min;
1423
        hw->ts_helper += captured;
1424

    
1425
        for (sw = hw->sw_head.lh_first; sw; sw = sw->entries.le_next) {
1426
            sw->total_hw_samples_acquired -= min;
1427

    
1428
            if (sw->active) {
1429
                int avail;
1430

    
1431
                avail = audio_get_avail (sw);
1432
                if (avail > 0) {
1433
                    sw->callback.fn (sw->callback.opaque, avail);
1434
                }
1435
            }
1436
        }
1437
    }
1438
}
1439

    
1440
static void audio_run_capture (AudioState *s)
1441
{
1442
    CaptureVoiceOut *cap;
1443

    
1444
    for (cap = s->cap_head.lh_first; cap; cap = cap->entries.le_next) {
1445
        int live, rpos, captured;
1446
        HWVoiceOut *hw = &cap->hw;
1447
        SWVoiceOut *sw;
1448

    
1449
        captured = live = audio_pcm_hw_get_live_out (hw);
1450
        rpos = hw->rpos;
1451
        while (live) {
1452
            int left = hw->samples - rpos;
1453
            int to_capture = audio_MIN (live, left);
1454
            st_sample_t *src;
1455
            struct capture_callback *cb;
1456

    
1457
            src = hw->mix_buf + rpos;
1458
            hw->clip (cap->buf, src, to_capture);
1459
            mixeng_clear (src, to_capture);
1460

    
1461
            for (cb = cap->cb_head.lh_first; cb; cb = cb->entries.le_next) {
1462
                cb->ops.capture (cb->opaque, cap->buf,
1463
                                 to_capture << hw->info.shift);
1464
            }
1465
            rpos = (rpos + to_capture) % hw->samples;
1466
            live -= to_capture;
1467
        }
1468
        hw->rpos = rpos;
1469

    
1470
        for (sw = hw->sw_head.lh_first; sw; sw = sw->entries.le_next) {
1471
            if (!sw->active && sw->empty) {
1472
                continue;
1473
            }
1474

    
1475
            if (audio_bug (AUDIO_FUNC, captured > sw->total_hw_samples_mixed)) {
1476
                dolog ("captured=%d sw->total_hw_samples_mixed=%d\n",
1477
                       captured, sw->total_hw_samples_mixed);
1478
                captured = sw->total_hw_samples_mixed;
1479
            }
1480

    
1481
            sw->total_hw_samples_mixed -= captured;
1482
            sw->empty = sw->total_hw_samples_mixed == 0;
1483
        }
1484
    }
1485
}
1486

    
1487
static void audio_timer (void *opaque)
1488
{
1489
    AudioState *s = opaque;
1490

    
1491
    audio_run_out (s);
1492
    audio_run_in (s);
1493
    audio_run_capture (s);
1494

    
1495
    qemu_mod_timer (s->ts, qemu_get_clock (vm_clock) + conf.period.ticks);
1496
}
1497

    
1498
static struct audio_option audio_options[] = {
1499
    /* DAC */
1500
    {"DAC_FIXED_SETTINGS", AUD_OPT_BOOL, &conf.fixed_out.enabled,
1501
     "Use fixed settings for host DAC", NULL, 0},
1502

    
1503
    {"DAC_FIXED_FREQ", AUD_OPT_INT, &conf.fixed_out.settings.freq,
1504
     "Frequency for fixed host DAC", NULL, 0},
1505

    
1506
    {"DAC_FIXED_FMT", AUD_OPT_FMT, &conf.fixed_out.settings.fmt,
1507
     "Format for fixed host DAC", NULL, 0},
1508

    
1509
    {"DAC_FIXED_CHANNELS", AUD_OPT_INT, &conf.fixed_out.settings.nchannels,
1510
     "Number of channels for fixed DAC (1 - mono, 2 - stereo)", NULL, 0},
1511

    
1512
    {"DAC_VOICES", AUD_OPT_INT, &conf.fixed_out.nb_voices,
1513
     "Number of voices for DAC", NULL, 0},
1514

    
1515
    /* ADC */
1516
    {"ADC_FIXED_SETTINGS", AUD_OPT_BOOL, &conf.fixed_in.enabled,
1517
     "Use fixed settings for host ADC", NULL, 0},
1518

    
1519
    {"ADC_FIXED_FREQ", AUD_OPT_INT, &conf.fixed_in.settings.freq,
1520
     "Frequency for fixed host ADC", NULL, 0},
1521

    
1522
    {"ADC_FIXED_FMT", AUD_OPT_FMT, &conf.fixed_in.settings.fmt,
1523
     "Format for fixed host ADC", NULL, 0},
1524

    
1525
    {"ADC_FIXED_CHANNELS", AUD_OPT_INT, &conf.fixed_in.settings.nchannels,
1526
     "Number of channels for fixed ADC (1 - mono, 2 - stereo)", NULL, 0},
1527

    
1528
    {"ADC_VOICES", AUD_OPT_INT, &conf.fixed_in.nb_voices,
1529
     "Number of voices for ADC", NULL, 0},
1530

    
1531
    /* Misc */
1532
    {"TIMER_PERIOD", AUD_OPT_INT, &conf.period.hz,
1533
     "Timer period in HZ (0 - use lowest possible)", NULL, 0},
1534

    
1535
    {"PLIVE", AUD_OPT_BOOL, &conf.plive,
1536
     "(undocumented)", NULL, 0},
1537

    
1538
    {"LOG_TO_MONITOR", AUD_OPT_BOOL, &conf.log_to_monitor,
1539
     "print logging messages to montior instead of stderr", NULL, 0},
1540

    
1541
    {NULL, 0, NULL, NULL, NULL, 0}
1542
};
1543

    
1544
static void audio_pp_nb_voices (const char *typ, int nb)
1545
{
1546
    switch (nb) {
1547
    case 0:
1548
        printf ("Does not support %s\n", typ);
1549
        break;
1550
    case 1:
1551
        printf ("One %s voice\n", typ);
1552
        break;
1553
    case INT_MAX:
1554
        printf ("Theoretically supports many %s voices\n", typ);
1555
        break;
1556
    default:
1557
        printf ("Theoretically supports upto %d %s voices\n", nb, typ);
1558
        break;
1559
    }
1560

    
1561
}
1562

    
1563
void AUD_help (void)
1564
{
1565
    size_t i;
1566

    
1567
    audio_process_options ("AUDIO", audio_options);
1568
    for (i = 0; i < sizeof (drvtab) / sizeof (drvtab[0]); i++) {
1569
        struct audio_driver *d = drvtab[i];
1570
        if (d->options) {
1571
            audio_process_options (d->name, d->options);
1572
        }
1573
    }
1574

    
1575
    printf ("Audio options:\n");
1576
    audio_print_options ("AUDIO", audio_options);
1577
    printf ("\n");
1578

    
1579
    printf ("Available drivers:\n");
1580

    
1581
    for (i = 0; i < sizeof (drvtab) / sizeof (drvtab[0]); i++) {
1582
        struct audio_driver *d = drvtab[i];
1583

    
1584
        printf ("Name: %s\n", d->name);
1585
        printf ("Description: %s\n", d->descr);
1586

    
1587
        audio_pp_nb_voices ("playback", d->max_voices_out);
1588
        audio_pp_nb_voices ("capture", d->max_voices_in);
1589

    
1590
        if (d->options) {
1591
            printf ("Options:\n");
1592
            audio_print_options (d->name, d->options);
1593
        }
1594
        else {
1595
            printf ("No options\n");
1596
        }
1597
        printf ("\n");
1598
    }
1599

    
1600
    printf (
1601
        "Options are settable through environment variables.\n"
1602
        "Example:\n"
1603
#ifdef _WIN32
1604
        "  set QEMU_AUDIO_DRV=wav\n"
1605
        "  set QEMU_WAV_PATH=c:\\tune.wav\n"
1606
#else
1607
        "  export QEMU_AUDIO_DRV=wav\n"
1608
        "  export QEMU_WAV_PATH=$HOME/tune.wav\n"
1609
        "(for csh replace export with setenv in the above)\n"
1610
#endif
1611
        "  qemu ...\n\n"
1612
        );
1613
}
1614

    
1615
static int audio_driver_init (AudioState *s, struct audio_driver *drv)
1616
{
1617
    if (drv->options) {
1618
        audio_process_options (drv->name, drv->options);
1619
    }
1620
    s->drv_opaque = drv->init ();
1621

    
1622
    if (s->drv_opaque) {
1623
        audio_init_nb_voices_out (s, drv);
1624
        audio_init_nb_voices_in (s, drv);
1625
        s->drv = drv;
1626
        return 0;
1627
    }
1628
    else {
1629
        dolog ("Could not init `%s' audio driver\n", drv->name);
1630
        return -1;
1631
    }
1632
}
1633

    
1634
static void audio_vm_change_state_handler (void *opaque, int running)
1635
{
1636
    AudioState *s = opaque;
1637
    HWVoiceOut *hwo = NULL;
1638
    HWVoiceIn *hwi = NULL;
1639
    int op = running ? VOICE_ENABLE : VOICE_DISABLE;
1640

    
1641
    while ((hwo = audio_pcm_hw_find_any_enabled_out (s, hwo))) {
1642
        hwo->pcm_ops->ctl_out (hwo, op);
1643
    }
1644

    
1645
    while ((hwi = audio_pcm_hw_find_any_enabled_in (s, hwi))) {
1646
        hwi->pcm_ops->ctl_in (hwi, op);
1647
    }
1648
}
1649

    
1650
static void audio_atexit (void)
1651
{
1652
    AudioState *s = &glob_audio_state;
1653
    HWVoiceOut *hwo = NULL;
1654
    HWVoiceIn *hwi = NULL;
1655

    
1656
    while ((hwo = audio_pcm_hw_find_any_enabled_out (s, hwo))) {
1657
        SWVoiceCap *sc;
1658

    
1659
        hwo->pcm_ops->ctl_out (hwo, VOICE_DISABLE);
1660
        hwo->pcm_ops->fini_out (hwo);
1661

    
1662
        for (sc = hwo->cap_head.lh_first; sc; sc = sc->entries.le_next) {
1663
            CaptureVoiceOut *cap = sc->cap;
1664
            struct capture_callback *cb;
1665

    
1666
            for (cb = cap->cb_head.lh_first; cb; cb = cb->entries.le_next) {
1667
                cb->ops.destroy (cb->opaque);
1668
            }
1669
        }
1670
    }
1671

    
1672
    while ((hwi = audio_pcm_hw_find_any_enabled_in (s, hwi))) {
1673
        hwi->pcm_ops->ctl_in (hwi, VOICE_DISABLE);
1674
        hwi->pcm_ops->fini_in (hwi);
1675
    }
1676

    
1677
    if (s->drv) {
1678
        s->drv->fini (s->drv_opaque);
1679
    }
1680
}
1681

    
1682
static void audio_save (QEMUFile *f, void *opaque)
1683
{
1684
    (void) f;
1685
    (void) opaque;
1686
}
1687

    
1688
static int audio_load (QEMUFile *f, void *opaque, int version_id)
1689
{
1690
    (void) f;
1691
    (void) opaque;
1692

    
1693
    if (version_id != 1) {
1694
        return -EINVAL;
1695
    }
1696

    
1697
    return 0;
1698
}
1699

    
1700
void AUD_register_card (AudioState *s, const char *name, QEMUSoundCard *card)
1701
{
1702
    card->audio = s;
1703
    card->name = qemu_strdup (name);
1704
    memset (&card->entries, 0, sizeof (card->entries));
1705
    LIST_INSERT_HEAD (&s->card_head, card, entries);
1706
}
1707

    
1708
void AUD_remove_card (QEMUSoundCard *card)
1709
{
1710
    LIST_REMOVE (card, entries);
1711
    card->audio = NULL;
1712
    qemu_free (card->name);
1713
}
1714

    
1715
AudioState *AUD_init (void)
1716
{
1717
    size_t i;
1718
    int done = 0;
1719
    const char *drvname;
1720
    AudioState *s = &glob_audio_state;
1721

    
1722
    LIST_INIT (&s->hw_head_out);
1723
    LIST_INIT (&s->hw_head_in);
1724
    LIST_INIT (&s->cap_head);
1725
    atexit (audio_atexit);
1726

    
1727
    s->ts = qemu_new_timer (vm_clock, audio_timer, s);
1728
    if (!s->ts) {
1729
        dolog ("Could not create audio timer\n");
1730
        return NULL;
1731
    }
1732

    
1733
    audio_process_options ("AUDIO", audio_options);
1734

    
1735
    s->nb_hw_voices_out = conf.fixed_out.nb_voices;
1736
    s->nb_hw_voices_in = conf.fixed_in.nb_voices;
1737

    
1738
    if (s->nb_hw_voices_out <= 0) {
1739
        dolog ("Bogus number of playback voices %d, setting to 1\n",
1740
               s->nb_hw_voices_out);
1741
        s->nb_hw_voices_out = 1;
1742
    }
1743

    
1744
    if (s->nb_hw_voices_in <= 0) {
1745
        dolog ("Bogus number of capture voices %d, setting to 0\n",
1746
               s->nb_hw_voices_in);
1747
        s->nb_hw_voices_in = 0;
1748
    }
1749

    
1750
    {
1751
        int def;
1752
        drvname = audio_get_conf_str ("QEMU_AUDIO_DRV", NULL, &def);
1753
    }
1754

    
1755
    if (drvname) {
1756
        int found = 0;
1757

    
1758
        for (i = 0; i < sizeof (drvtab) / sizeof (drvtab[0]); i++) {
1759
            if (!strcmp (drvname, drvtab[i]->name)) {
1760
                done = !audio_driver_init (s, drvtab[i]);
1761
                found = 1;
1762
                break;
1763
            }
1764
        }
1765

    
1766
        if (!found) {
1767
            dolog ("Unknown audio driver `%s'\n", drvname);
1768
            dolog ("Run with -audio-help to list available drivers\n");
1769
        }
1770
    }
1771

    
1772
    if (!done) {
1773
        for (i = 0; !done && i < sizeof (drvtab) / sizeof (drvtab[0]); i++) {
1774
            if (drvtab[i]->can_be_default) {
1775
                done = !audio_driver_init (s, drvtab[i]);
1776
            }
1777
        }
1778
    }
1779

    
1780
    if (!done) {
1781
        done = !audio_driver_init (s, &no_audio_driver);
1782
        if (!done) {
1783
            dolog ("Could not initialize audio subsystem\n");
1784
        }
1785
        else {
1786
            dolog ("warning: Using timer based audio emulation\n");
1787
        }
1788
    }
1789

    
1790
    if (done) {
1791
        VMChangeStateEntry *e;
1792

    
1793
        if (conf.period.hz <= 0) {
1794
            if (conf.period.hz < 0) {
1795
                dolog ("warning: Timer period is negative - %d "
1796
                       "treating as zero\n",
1797
                       conf.period.hz);
1798
            }
1799
            conf.period.ticks = 1;
1800
        }
1801
        else {
1802
            conf.period.ticks = ticks_per_sec / conf.period.hz;
1803
        }
1804

    
1805
        e = qemu_add_vm_change_state_handler (audio_vm_change_state_handler, s);
1806
        if (!e) {
1807
            dolog ("warning: Could not register change state handler\n"
1808
                   "(Audio can continue looping even after stopping the VM)\n");
1809
        }
1810
    }
1811
    else {
1812
        qemu_del_timer (s->ts);
1813
        return NULL;
1814
    }
1815

    
1816
    LIST_INIT (&s->card_head);
1817
    register_savevm ("audio", 0, 1, audio_save, audio_load, s);
1818
    qemu_mod_timer (s->ts, qemu_get_clock (vm_clock) + conf.period.ticks);
1819
    return s;
1820
}
1821

    
1822
CaptureVoiceOut *AUD_add_capture (
1823
    AudioState *s,
1824
    audsettings_t *as,
1825
    struct audio_capture_ops *ops,
1826
    void *cb_opaque
1827
    )
1828
{
1829
    CaptureVoiceOut *cap;
1830
    struct capture_callback *cb;
1831

    
1832
    if (!s) {
1833
        /* XXX suppress */
1834
        s = &glob_audio_state;
1835
    }
1836

    
1837
    if (audio_validate_settings (as)) {
1838
        dolog ("Invalid settings were passed when trying to add capture\n");
1839
        audio_print_settings (as);
1840
        goto err0;
1841
    }
1842

    
1843
    cb = audio_calloc (AUDIO_FUNC, 1, sizeof (*cb));
1844
    if (!cb) {
1845
        dolog ("Could not allocate capture callback information, size %zu\n",
1846
               sizeof (*cb));
1847
        goto err0;
1848
    }
1849
    cb->ops = *ops;
1850
    cb->opaque = cb_opaque;
1851

    
1852
    cap = audio_pcm_capture_find_specific (s, as);
1853
    if (cap) {
1854
        LIST_INSERT_HEAD (&cap->cb_head, cb, entries);
1855
        return cap;
1856
    }
1857
    else {
1858
        HWVoiceOut *hw;
1859
        CaptureVoiceOut *cap;
1860

    
1861
        cap = audio_calloc (AUDIO_FUNC, 1, sizeof (*cap));
1862
        if (!cap) {
1863
            dolog ("Could not allocate capture voice, size %zu\n",
1864
                   sizeof (*cap));
1865
            goto err1;
1866
        }
1867

    
1868
        hw = &cap->hw;
1869
        LIST_INIT (&hw->sw_head);
1870
        LIST_INIT (&cap->cb_head);
1871

    
1872
        /* XXX find a more elegant way */
1873
        hw->samples = 4096 * 4;
1874
        hw->mix_buf = audio_calloc (AUDIO_FUNC, hw->samples,
1875
                                    sizeof (st_sample_t));
1876
        if (!hw->mix_buf) {
1877
            dolog ("Could not allocate capture mix buffer (%d samples)\n",
1878
                   hw->samples);
1879
            goto err2;
1880
        }
1881

    
1882
        audio_pcm_init_info (&hw->info, as);
1883

    
1884
        cap->buf = audio_calloc (AUDIO_FUNC, hw->samples, 1 << hw->info.shift);
1885
        if (!cap->buf) {
1886
            dolog ("Could not allocate capture buffer "
1887
                   "(%d samples, each %d bytes)\n",
1888
                   hw->samples, 1 << hw->info.shift);
1889
            goto err3;
1890
        }
1891

    
1892
        hw->clip = mixeng_clip
1893
            [hw->info.nchannels == 2]
1894
            [hw->info.sign]
1895
            [hw->info.swap_endianness]
1896
            [audio_bits_to_index (hw->info.bits)];
1897

    
1898
        LIST_INSERT_HEAD (&s->cap_head, cap, entries);
1899
        LIST_INSERT_HEAD (&cap->cb_head, cb, entries);
1900

    
1901
        hw = NULL;
1902
        while ((hw = audio_pcm_hw_find_any_out (s, hw))) {
1903
            audio_attach_capture (s, hw);
1904
        }
1905
        return cap;
1906

    
1907
    err3:
1908
        qemu_free (cap->hw.mix_buf);
1909
    err2:
1910
        qemu_free (cap);
1911
    err1:
1912
        qemu_free (cb);
1913
    err0:
1914
        return NULL;
1915
    }
1916
}
1917

    
1918
void AUD_del_capture (CaptureVoiceOut *cap, void *cb_opaque)
1919
{
1920
    struct capture_callback *cb;
1921

    
1922
    for (cb = cap->cb_head.lh_first; cb; cb = cb->entries.le_next) {
1923
        if (cb->opaque == cb_opaque) {
1924
            cb->ops.destroy (cb_opaque);
1925
            LIST_REMOVE (cb, entries);
1926
            qemu_free (cb);
1927

    
1928
            if (!cap->cb_head.lh_first) {
1929
                SWVoiceOut *sw = cap->hw.sw_head.lh_first, *sw1;
1930

    
1931
                while (sw) {
1932
                    SWVoiceCap *sc = (SWVoiceCap *) sw;
1933
#ifdef DEBUG_CAPTURE
1934
                    dolog ("freeing %s\n", sw->name);
1935
#endif
1936

    
1937
                    sw1 = sw->entries.le_next;
1938
                    if (sw->rate) {
1939
                        st_rate_stop (sw->rate);
1940
                        sw->rate = NULL;
1941
                    }
1942
                    LIST_REMOVE (sw, entries);
1943
                    LIST_REMOVE (sc, entries);
1944
                    qemu_free (sc);
1945
                    sw = sw1;
1946
                }
1947
                LIST_REMOVE (cap, entries);
1948
                qemu_free (cap);
1949
            }
1950
            return;
1951
        }
1952
    }
1953
}