audio.c 48.6 KB
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/*
 * QEMU Audio subsystem
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 *
 * Copyright (c) 2003-2005 Vassili Karpov (malc)
 *
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 * Permission is hereby granted, free of charge, to any person obtaining a copy
 * of this software and associated documentation files (the "Software"), to deal
 * in the Software without restriction, including without limitation the rights
 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
 * copies of the Software, and to permit persons to whom the Software is
 * furnished to do so, subject to the following conditions:
 *
 * The above copyright notice and this permission notice shall be included in
 * all copies or substantial portions of the Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
 * THE SOFTWARE.
 */
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#include "hw/hw.h"
#include "audio.h"
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#include "monitor.h"
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#include "qemu-timer.h"
#include "sysemu.h"
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#define AUDIO_CAP "audio"
#include "audio_int.h"
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/* #define DEBUG_PLIVE */
/* #define DEBUG_LIVE */
/* #define DEBUG_OUT */
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/* #define DEBUG_CAPTURE */
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#define SW_NAME(sw) (sw)->name ? (sw)->name : "unknown"

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/* Order of CONFIG_AUDIO_DRIVERS is import.
   The 1st one is the one used by default, that is the reason
    that we generate the list.
*/
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static struct audio_driver *drvtab[] = {
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    CONFIG_AUDIO_DRIVERS
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    &no_audio_driver,
    &wav_audio_driver
};
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struct fixed_settings {
    int enabled;
    int nb_voices;
    int greedy;
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    struct audsettings settings;
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};

static struct {
    struct fixed_settings fixed_out;
    struct fixed_settings fixed_in;
    union {
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        int hertz;
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        int64_t ticks;
    } period;
    int plive;
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    int log_to_monitor;
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} conf = {
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    .fixed_out = { /* DAC fixed settings */
        .enabled = 1,
        .nb_voices = 1,
        .greedy = 1,
        .settings = {
            .freq = 44100,
            .nchannels = 2,
            .fmt = AUD_FMT_S16,
            .endianness =  AUDIO_HOST_ENDIANNESS,
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        }
    },

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    .fixed_in = { /* ADC fixed settings */
        .enabled = 1,
        .nb_voices = 1,
        .greedy = 1,
        .settings = {
            .freq = 44100,
            .nchannels = 2,
            .fmt = AUD_FMT_S16,
            .endianness = AUDIO_HOST_ENDIANNESS,
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        }
    },

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    .period = { .hertz = 250 },
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    .plive = 0,
    .log_to_monitor = 0,
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};

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static AudioState glob_audio_state;

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struct mixeng_volume nominal_volume = {
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    .mute = 0,
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#ifdef FLOAT_MIXENG
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    .r = 1.0,
    .l = 1.0,
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#else
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    .r = 1ULL << 32,
    .l = 1ULL << 32,
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#endif
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};

/* http://www.df.lth.se/~john_e/gems/gem002d.html */
/* http://www.multi-platforms.com/Tips/PopCount.htm */
uint32_t popcount (uint32_t u)
{
    u = ((u&0x55555555) + ((u>>1)&0x55555555));
    u = ((u&0x33333333) + ((u>>2)&0x33333333));
    u = ((u&0x0f0f0f0f) + ((u>>4)&0x0f0f0f0f));
    u = ((u&0x00ff00ff) + ((u>>8)&0x00ff00ff));
    u = ( u&0x0000ffff) + (u>>16);
    return u;
}

inline uint32_t lsbindex (uint32_t u)
{
    return popcount ((u&-u)-1);
}

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#ifdef AUDIO_IS_FLAWLESS_AND_NO_CHECKS_ARE_REQURIED
#error No its not
#else
int audio_bug (const char *funcname, int cond)
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{
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    if (cond) {
        static int shown;

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

#if defined AUDIO_BREAKPOINT_ON_BUG
#  if defined HOST_I386
#    if defined __GNUC__
        __asm__ ("int3");
#    elif defined _MSC_VER
        _asm _emit 0xcc;
#    else
        abort ();
#    endif
#  else
        abort ();
#  endif
#endif
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    }

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    return cond;
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}
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#endif
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static inline int audio_bits_to_index (int bits)
{
    switch (bits) {
    case 8:
        return 0;

    case 16:
        return 1;

    case 32:
        return 2;

    default:
        audio_bug ("bits_to_index", 1);
        AUD_log (NULL, "invalid bits %d\n", bits);
        return 0;
    }
}

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void *audio_calloc (const char *funcname, int nmemb, size_t size)
{
    int cond;
    size_t len;

    len = nmemb * size;
    cond = !nmemb || !size;
    cond |= nmemb < 0;
    cond |= len < size;

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

    return qemu_mallocz (len);
}

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static char *audio_alloc_prefix (const char *s)
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{
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    const char qemu_prefix[] = "QEMU_";
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    size_t len, i;
    char *r, *u;
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    if (!s) {
        return NULL;
    }
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    len = strlen (s);
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    r = qemu_malloc (len + sizeof (qemu_prefix));
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    u = r + sizeof (qemu_prefix) - 1;
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    pstrcpy (r, len + sizeof (qemu_prefix), qemu_prefix);
    pstrcat (r, len + sizeof (qemu_prefix), s);
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    for (i = 0; i < len; ++i) {
        u[i] = qemu_toupper(u[i]);
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    }
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    return r;
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}

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static const char *audio_audfmt_to_string (audfmt_e fmt)
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{
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    switch (fmt) {
    case AUD_FMT_U8:
        return "U8";
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    case AUD_FMT_U16:
        return "U16";
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    case AUD_FMT_S8:
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        return "S8";
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    case AUD_FMT_S16:
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        return "S16";
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    case AUD_FMT_U32:
        return "U32";

    case AUD_FMT_S32:
        return "S32";
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    }

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

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static audfmt_e audio_string_to_audfmt (const char *s, audfmt_e defval,
                                        int *defaultp)
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{
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    if (!strcasecmp (s, "u8")) {
        *defaultp = 0;
        return AUD_FMT_U8;
    }
    else if (!strcasecmp (s, "u16")) {
        *defaultp = 0;
        return AUD_FMT_U16;
    }
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    else if (!strcasecmp (s, "u32")) {
        *defaultp = 0;
        return AUD_FMT_U32;
    }
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    else if (!strcasecmp (s, "s8")) {
        *defaultp = 0;
        return AUD_FMT_S8;
    }
    else if (!strcasecmp (s, "s16")) {
        *defaultp = 0;
        return AUD_FMT_S16;
    }
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    else if (!strcasecmp (s, "s32")) {
        *defaultp = 0;
        return AUD_FMT_S32;
    }
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    else {
        dolog ("Bogus audio format `%s' using %s\n",
               s, audio_audfmt_to_string (defval));
        *defaultp = 1;
        return defval;
    }
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}

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static audfmt_e audio_get_conf_fmt (const char *envname,
                                    audfmt_e defval,
                                    int *defaultp)
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{
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    const char *var = getenv (envname);
    if (!var) {
        *defaultp = 1;
        return defval;
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    }
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    return audio_string_to_audfmt (var, defval, defaultp);
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}

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static int audio_get_conf_int (const char *key, int defval, int *defaultp)
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{
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    int val;
    char *strval;
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    strval = getenv (key);
    if (strval) {
        *defaultp = 0;
        val = atoi (strval);
        return val;
    }
    else {
        *defaultp = 1;
        return defval;
    }
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}

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static const char *audio_get_conf_str (const char *key,
                                       const char *defval,
                                       int *defaultp)
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{
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    const char *val = getenv (key);
    if (!val) {
        *defaultp = 1;
        return defval;
    }
    else {
        *defaultp = 0;
        return val;
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    }
}

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void AUD_vlog (const char *cap, const char *fmt, va_list ap)
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{
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    if (conf.log_to_monitor) {
        if (cap) {
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            monitor_printf(cur_mon, "%s: ", cap);
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        }

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        monitor_vprintf(cur_mon, fmt, ap);
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    }
    else {
        if (cap) {
            fprintf (stderr, "%s: ", cap);
        }

        vfprintf (stderr, fmt, ap);
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    }
}

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void AUD_log (const char *cap, const char *fmt, ...)
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{
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    va_list ap;

    va_start (ap, fmt);
    AUD_vlog (cap, fmt, ap);
    va_end (ap);
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}

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static void audio_print_options (const char *prefix,
                                 struct audio_option *opt)
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{
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    char *uprefix;

    if (!prefix) {
        dolog ("No prefix specified\n");
        return;
    }

    if (!opt) {
        dolog ("No options\n");
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        return;
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    }
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    uprefix = audio_alloc_prefix (prefix);
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    for (; opt->name; opt++) {
        const char *state = "default";
        printf ("  %s_%s: ", uprefix, opt->name);
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        if (opt->overriddenp && *opt->overriddenp) {
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            state = "current";
        }
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        switch (opt->tag) {
        case AUD_OPT_BOOL:
            {
                int *intp = opt->valp;
                printf ("boolean, %s = %d\n", state, *intp ? 1 : 0);
            }
            break;

        case AUD_OPT_INT:
            {
                int *intp = opt->valp;
                printf ("integer, %s = %d\n", state, *intp);
            }
            break;

        case AUD_OPT_FMT:
            {
                audfmt_e *fmtp = opt->valp;
                printf (
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                    "format, %s = %s, (one of: U8 S8 U16 S16 U32 S32)\n",
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                    state,
                    audio_audfmt_to_string (*fmtp)
                    );
            }
            break;

        case AUD_OPT_STR:
            {
                const char **strp = opt->valp;
                printf ("string, %s = %s\n",
                        state,
                        *strp ? *strp : "(not set)");
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            }
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            break;

        default:
            printf ("???\n");
            dolog ("Bad value tag for option %s_%s %d\n",
                   uprefix, opt->name, opt->tag);
            break;
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        }
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        printf ("    %s\n", opt->descr);
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    }
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    qemu_free (uprefix);
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}

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static void audio_process_options (const char *prefix,
                                   struct audio_option *opt)
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{
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    char *optname;
    const char qemu_prefix[] = "QEMU_";
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    size_t preflen, optlen;
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    if (audio_bug (AUDIO_FUNC, !prefix)) {
        dolog ("prefix = NULL\n");
        return;
    }
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    if (audio_bug (AUDIO_FUNC, !opt)) {
        dolog ("opt = NULL\n");
        return;
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    }

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    preflen = strlen (prefix);
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    for (; opt->name; opt++) {
        size_t len, i;
        int def;

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

        len = strlen (opt->name);
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        /* len of opt->name + len of prefix + size of qemu_prefix
         * (includes trailing zero) + zero + underscore (on behalf of
         * sizeof) */
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        optlen = len + preflen + sizeof (qemu_prefix) + 1;
        optname = qemu_malloc (optlen);
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        pstrcpy (optname, optlen, qemu_prefix);
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        /* copy while upper-casing, including trailing zero */
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        for (i = 0; i <= preflen; ++i) {
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            optname[i + sizeof (qemu_prefix) - 1] = qemu_toupper(prefix[i]);
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        }
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        pstrcat (optname, optlen, "_");
        pstrcat (optname, optlen, opt->name);
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        def = 1;
        switch (opt->tag) {
        case AUD_OPT_BOOL:
        case AUD_OPT_INT:
            {
                int *intp = opt->valp;
                *intp = audio_get_conf_int (optname, *intp, &def);
            }
            break;

        case AUD_OPT_FMT:
            {
                audfmt_e *fmtp = opt->valp;
                *fmtp = audio_get_conf_fmt (optname, *fmtp, &def);
            }
            break;

        case AUD_OPT_STR:
            {
                const char **strp = opt->valp;
                *strp = audio_get_conf_str (optname, *strp, &def);
            }
            break;

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

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        if (!opt->overriddenp) {
            opt->overriddenp = &opt->overridden;
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        }
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        *opt->overriddenp = !def;
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        qemu_free (optname);
    }
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}

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static void audio_print_settings (struct audsettings *as)
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{
    dolog ("frequency=%d nchannels=%d fmt=", as->freq, as->nchannels);

    switch (as->fmt) {
    case AUD_FMT_S8:
        AUD_log (NULL, "S8");
        break;
    case AUD_FMT_U8:
        AUD_log (NULL, "U8");
        break;
    case AUD_FMT_S16:
        AUD_log (NULL, "S16");
        break;
    case AUD_FMT_U16:
        AUD_log (NULL, "U16");
        break;
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    case AUD_FMT_S32:
        AUD_log (NULL, "S32");
        break;
    case AUD_FMT_U32:
        AUD_log (NULL, "U32");
        break;
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    default:
        AUD_log (NULL, "invalid(%d)", as->fmt);
        break;
    }
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    AUD_log (NULL, " endianness=");
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    switch (as->endianness) {
    case 0:
        AUD_log (NULL, "little");
        break;
    case 1:
        AUD_log (NULL, "big");
        break;
    default:
        AUD_log (NULL, "invalid");
        break;
    }
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    AUD_log (NULL, "\n");
}

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static int audio_validate_settings (struct audsettings *as)
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{
    int invalid;

    invalid = as->nchannels != 1 && as->nchannels != 2;
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    invalid |= as->endianness != 0 && as->endianness != 1;
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    switch (as->fmt) {
    case AUD_FMT_S8:
    case AUD_FMT_U8:
    case AUD_FMT_S16:
    case AUD_FMT_U16:
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    case AUD_FMT_S32:
    case AUD_FMT_U32:
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        break;
    default:
        invalid = 1;
        break;
    }

    invalid |= as->freq <= 0;
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    return invalid ? -1 : 0;
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}

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static int audio_pcm_info_eq (struct audio_pcm_info *info, struct audsettings *as)
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{
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    int bits = 8, sign = 0;
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    switch (as->fmt) {
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    case AUD_FMT_S8:
        sign = 1;
    case AUD_FMT_U8:
        break;

    case AUD_FMT_S16:
        sign = 1;
    case AUD_FMT_U16:
        bits = 16;
        break;
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    case AUD_FMT_S32:
        sign = 1;
    case AUD_FMT_U32:
        bits = 32;
        break;
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    }
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    return info->freq == as->freq
        && info->nchannels == as->nchannels
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        && info->sign == sign
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        && info->bits == bits
        && info->swap_endianness == (as->endianness != AUDIO_HOST_ENDIANNESS);
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}
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void audio_pcm_init_info (struct audio_pcm_info *info, struct audsettings *as)
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{
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    int bits = 8, sign = 0, shift = 0;
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    switch (as->fmt) {
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    case AUD_FMT_S8:
        sign = 1;
    case AUD_FMT_U8:
        break;

    case AUD_FMT_S16:
        sign = 1;
    case AUD_FMT_U16:
        bits = 16;
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        shift = 1;
        break;

    case AUD_FMT_S32:
        sign = 1;
    case AUD_FMT_U32:
        bits = 32;
        shift = 2;
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        break;
    }

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    info->freq = as->freq;
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    info->bits = bits;
    info->sign = sign;
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    info->nchannels = as->nchannels;
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    info->shift = (as->nchannels == 2) + shift;
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    info->align = (1 << info->shift) - 1;
    info->bytes_per_second = info->freq << info->shift;
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    info->swap_endianness = (as->endianness != AUDIO_HOST_ENDIANNESS);
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}

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void audio_pcm_info_clear_buf (struct audio_pcm_info *info, void *buf, int len)
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{
647 648 649 650 651
    if (!len) {
        return;
    }

    if (info->sign) {
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        memset (buf, 0x00, len << info->shift);
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    }
    else {
655 656
        switch (info->bits) {
        case 8:
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            memset (buf, 0x80, len << info->shift);
658
            break;
659

660 661 662 663 664 665 666 667 668 669 670 671 672 673
        case 16:
            {
                int i;
                uint16_t *p = buf;
                int shift = info->nchannels - 1;
                short s = INT16_MAX;

                if (info->swap_endianness) {
                    s = bswap16 (s);
                }

                for (i = 0; i < len << shift; i++) {
                    p[i] = s;
                }
674
            }
675 676 677 678 679 680 681 682 683 684 685 686
            break;

        case 32:
            {
                int i;
                uint32_t *p = buf;
                int shift = info->nchannels - 1;
                int32_t s = INT32_MAX;

                if (info->swap_endianness) {
                    s = bswap32 (s);
                }
687

688 689 690
                for (i = 0; i < len << shift; i++) {
                    p[i] = s;
                }
691
            }
692 693 694 695 696 697
            break;

        default:
            AUD_log (NULL, "audio_pcm_info_clear_buf: invalid bits %d\n",
                     info->bits);
            break;
698
        }
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    }
}

702 703 704
/*
 * Capture
 */
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static void noop_conv (struct st_sample *dst, const void *src,
                       int samples, struct mixeng_volume *vol)
707 708 709 710 711 712 713 714
{
    (void) src;
    (void) dst;
    (void) samples;
    (void) vol;
}

static CaptureVoiceOut *audio_pcm_capture_find_specific (
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    struct audsettings *as
716 717 718
    )
{
    CaptureVoiceOut *cap;
719
    AudioState *s = &glob_audio_state;
720 721

    for (cap = s->cap_head.lh_first; cap; cap = cap->entries.le_next) {
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        if (audio_pcm_info_eq (&cap->hw.info, as)) {
723 724 725 726 727 728
            return cap;
        }
    }
    return NULL;
}

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static void audio_notify_capture (CaptureVoiceOut *cap, audcnotification_e cmd)
730
{
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    struct capture_callback *cb;

#ifdef DEBUG_CAPTURE
    dolog ("notification %d sent\n", cmd);
#endif
    for (cb = cap->cb_head.lh_first; cb; cb = cb->entries.le_next) {
        cb->ops.notify (cb->opaque, cmd);
    }
}
740

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static void audio_capture_maybe_changed (CaptureVoiceOut *cap, int enabled)
{
    if (cap->hw.enabled != enabled) {
        audcnotification_e cmd;
745
        cap->hw.enabled = enabled;
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        cmd = enabled ? AUD_CNOTIFY_ENABLE : AUD_CNOTIFY_DISABLE;
        audio_notify_capture (cap, cmd);
748 749 750 751 752 753 754 755 756
    }
}

static void audio_recalc_and_notify_capture (CaptureVoiceOut *cap)
{
    HWVoiceOut *hw = &cap->hw;
    SWVoiceOut *sw;
    int enabled = 0;

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    for (sw = hw->sw_head.lh_first; sw; sw = sw->entries.le_next) {
758 759 760 761 762
        if (sw->active) {
            enabled = 1;
            break;
        }
    }
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    audio_capture_maybe_changed (cap, enabled);
764 765 766 767
}

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

    while (sc) {
        SWVoiceCap *sc1 = sc->entries.le_next;
        SWVoiceOut *sw = &sc->sw;
        CaptureVoiceOut *cap = sc->cap;
        int was_active = sw->active;
775 776 777 778 779 780 781

        if (sw->rate) {
            st_rate_stop (sw->rate);
            sw->rate = NULL;
        }

        LIST_REMOVE (sw, entries);
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        LIST_REMOVE (sc, entries);
        qemu_free (sc);
        if (was_active) {
            /* We have removed soft voice from the capture:
               this might have changed the overall status of the capture
               since this might have been the only active voice */
            audio_recalc_and_notify_capture (cap);
        }
        sc = sc1;
791 792 793
    }
}

794
static int audio_attach_capture (HWVoiceOut *hw)
795
{
796
    AudioState *s = &glob_audio_state;
797 798 799 800
    CaptureVoiceOut *cap;

    audio_detach_capture (hw);
    for (cap = s->cap_head.lh_first; cap; cap = cap->entries.le_next) {
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        SWVoiceCap *sc;
802
        SWVoiceOut *sw;
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        HWVoiceOut *hw_cap = &cap->hw;
804

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        sc = audio_calloc (AUDIO_FUNC, 1, sizeof (*sc));
        if (!sc) {
807
            dolog ("Could not allocate soft capture voice (%zu bytes)\n",
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                   sizeof (*sc));
809 810 811
            return -1;
        }

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        sc->cap = cap;
        sw = &sc->sw;
814
        sw->hw = hw_cap;
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        sw->info = hw->info;
816 817 818 819 820 821 822 823 824 825 826
        sw->empty = 1;
        sw->active = hw->enabled;
        sw->conv = noop_conv;
        sw->ratio = ((int64_t) hw_cap->info.freq << 32) / sw->info.freq;
        sw->rate = st_rate_start (sw->info.freq, hw_cap->info.freq);
        if (!sw->rate) {
            dolog ("Could not start rate conversion for `%s'\n", SW_NAME (sw));
            qemu_free (sw);
            return -1;
        }
        LIST_INSERT_HEAD (&hw_cap->sw_head, sw, entries);
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        LIST_INSERT_HEAD (&hw->cap_head, sc, entries);
#ifdef DEBUG_CAPTURE
        asprintf (&sw->name, "for %p %d,%d,%d",
                  hw, sw->info.freq, sw->info.bits, sw->info.nchannels);
        dolog ("Added %s active = %d\n", sw->name, sw->active);
#endif
833
        if (sw->active) {
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            audio_capture_maybe_changed (cap, 1);
835 836 837 838 839
        }
    }
    return 0;
}

840 841 842
/*
 * Hard voice (capture)
 */
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static int audio_pcm_hw_find_min_in (HWVoiceIn *hw)
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{
845 846 847 848 849 850 851
    SWVoiceIn *sw;
    int m = hw->total_samples_captured;

    for (sw = hw->sw_head.lh_first; sw; sw = sw->entries.le_next) {
        if (sw->active) {
            m = audio_MIN (m, sw->total_hw_samples_acquired);
        }
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    }
853
    return m;
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}

856
int audio_pcm_hw_get_live_in (HWVoiceIn *hw)
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{
858 859 860 861
    int live = hw->total_samples_captured - audio_pcm_hw_find_min_in (hw);
    if (audio_bug (AUDIO_FUNC, live < 0 || live > hw->samples)) {
        dolog ("live=%d hw->samples=%d\n", live, hw->samples);
        return 0;
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    }
863
    return live;
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}

866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882
/*
 * Soft voice (capture)
 */
static int audio_pcm_sw_get_rpos_in (SWVoiceIn *sw)
{
    HWVoiceIn *hw = sw->hw;
    int live = hw->total_samples_captured - sw->total_hw_samples_acquired;
    int rpos;

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

    rpos = hw->wpos - live;
    if (rpos >= 0) {
        return rpos;
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    }
    else {
885
        return hw->samples + rpos;
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    }
}

889
int audio_pcm_sw_read (SWVoiceIn *sw, void *buf, int size)
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{
891 892
    HWVoiceIn *hw = sw->hw;
    int samples, live, ret = 0, swlim, isamp, osamp, rpos, total = 0;
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    struct st_sample *src, *dst = sw->buf;
894 895 896 897 898 899 900 901 902 903 904 905 906

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

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

    samples = size >> sw->info.shift;
    if (!live) {
        return 0;
    }
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908 909
    swlim = (live * sw->ratio) >> 32;
    swlim = audio_MIN (swlim, samples);
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911 912 913 914 915 916 917
    while (swlim) {
        src = hw->conv_buf + rpos;
        isamp = hw->wpos - rpos;
        /* XXX: <= ? */
        if (isamp <= 0) {
            isamp = hw->samples - rpos;
        }
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919 920 921 922
        if (!isamp) {
            break;
        }
        osamp = swlim;
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923

924 925
        if (audio_bug (AUDIO_FUNC, osamp < 0)) {
            dolog ("osamp=%d\n", osamp);
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            return 0;
927
        }
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929 930 931 932 933 934 935
        st_rate_flow (sw->rate, src, dst, &isamp, &osamp);
        swlim -= osamp;
        rpos = (rpos + isamp) % hw->samples;
        dst += osamp;
        ret += osamp;
        total += isamp;
    }
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    sw->clip (buf, sw->buf, ret);
938 939
    sw->total_hw_samples_acquired += total;
    return ret << sw->info.shift;
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}

942 943 944
/*
 * Hard voice (playback)
 */
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static int audio_pcm_hw_find_min_out (HWVoiceOut *hw, int *nb_livep)
946
{
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947 948 949
    SWVoiceOut *sw;
    int m = INT_MAX;
    int nb_live = 0;
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950

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    for (sw = hw->sw_head.lh_first; sw; sw = sw->entries.le_next) {
        if (sw->active || !sw->empty) {
            m = audio_MIN (m, sw->total_hw_samples_mixed);
            nb_live += 1;
        }
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    }
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957 958 959

    *nb_livep = nb_live;
    return m;
960
}
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961

962 963 964
int audio_pcm_hw_get_live_out2 (HWVoiceOut *hw, int *nb_live)
{
    int smin;
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965

966 967 968 969
    smin = audio_pcm_hw_find_min_out (hw, nb_live);

    if (!*nb_live) {
        return 0;
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    }
    else {
972 973 974 975 976
        int live = smin;

        if (audio_bug (AUDIO_FUNC, live < 0 || live > hw->samples)) {
            dolog ("live=%d hw->samples=%d\n", live, hw->samples);
            return 0;
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        }
978
        return live;
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    }
980 981 982 983 984 985
}

int audio_pcm_hw_get_live_out (HWVoiceOut *hw)
{
    int nb_live;
    int live;
B
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987 988 989 990
    live = audio_pcm_hw_get_live_out2 (hw, &nb_live);
    if (audio_bug (AUDIO_FUNC, live < 0 || live > hw->samples)) {
        dolog ("live=%d hw->samples=%d\n", live, hw->samples);
        return 0;
B
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    }
992
    return live;
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993 994
}

995 996 997 998
/*
 * Soft voice (playback)
 */
int audio_pcm_sw_write (SWVoiceOut *sw, void *buf, int size)
B
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999
{
1000 1001
    int hwsamples, samples, isamp, osamp, wpos, live, dead, left, swlim, blck;
    int ret = 0, pos = 0, total = 0;
B
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1002

1003 1004 1005
    if (!sw) {
        return size;
    }
B
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1006

1007
    hwsamples = sw->hw->samples;
B
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1008

1009 1010 1011 1012 1013
    live = sw->total_hw_samples_mixed;
    if (audio_bug (AUDIO_FUNC, live < 0 || live > hwsamples)){
        dolog ("live=%d hw->samples=%d\n", live, hwsamples);
        return 0;
    }
B
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1014

1015
    if (live == hwsamples) {
B
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1016 1017 1018
#ifdef DEBUG_OUT
        dolog ("%s is full %d\n", sw->name, live);
#endif
1019 1020
        return 0;
    }
B
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1021

1022 1023
    wpos = (sw->hw->rpos + live) % hwsamples;
    samples = size >> sw->info.shift;
B
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1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060
    dead = hwsamples - live;
    swlim = ((int64_t) dead << 32) / sw->ratio;
    swlim = audio_MIN (swlim, samples);
    if (swlim) {
        sw->conv (sw->buf, buf, swlim, &sw->vol);
    }

    while (swlim) {
        dead = hwsamples - live;
        left = hwsamples - wpos;
        blck = audio_MIN (dead, left);
        if (!blck) {
            break;
        }
        isamp = swlim;
        osamp = blck;
        st_rate_flow_mix (
            sw->rate,
            sw->buf + pos,
            sw->hw->mix_buf + wpos,
            &isamp,
            &osamp
            );
        ret += isamp;
        swlim -= isamp;
        pos += isamp;
        live += osamp;
        wpos = (wpos + osamp) % hwsamples;
        total += osamp;
    }

    sw->total_hw_samples_mixed += total;
    sw->empty = sw->total_hw_samples_mixed == 0;

#ifdef DEBUG_OUT
    dolog (
B
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1061 1062
        "%s: write size %d ret %d total sw %d\n",
        SW_NAME (sw),
1063 1064
        size >> sw->info.shift,
        ret,
B
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1065
        sw->total_hw_samples_mixed
1066 1067 1068 1069
        );
#endif

    return ret << sw->info.shift;
B
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1070 1071
}

1072 1073
#ifdef DEBUG_AUDIO
static void audio_pcm_print_info (const char *cap, struct audio_pcm_info *info)
B
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1074
{
1075 1076
    dolog ("%s: bits %d, sign %d, freq %d, nchan %d\n",
           cap, info->bits, info->sign, info->freq, info->nchannels);
B
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1077
}
1078
#endif
B
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1079

1080 1081 1082 1083 1084 1085
#define DAC
#include "audio_template.h"
#undef DAC
#include "audio_template.h"

int AUD_write (SWVoiceOut *sw, void *buf, int size)
B
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1086
{
1087
    int bytes;
B
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1088

1089 1090 1091 1092
    if (!sw) {
        /* XXX: Consider options */
        return size;
    }
B
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1093

1094
    if (!sw->hw->enabled) {
B
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1095
        dolog ("Writing to disabled voice %s\n", SW_NAME (sw));
B
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1096 1097 1098
        return 0;
    }

1099 1100 1101 1102 1103 1104 1105
    bytes = sw->hw->pcm_ops->write (sw, buf, size);
    return bytes;
}

int AUD_read (SWVoiceIn *sw, void *buf, int size)
{
    int bytes;
B
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1106

1107 1108 1109
    if (!sw) {
        /* XXX: Consider options */
        return size;
B
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1110
    }
1111 1112

    if (!sw->hw->enabled) {
B
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1113
        dolog ("Reading from disabled voice %s\n", SW_NAME (sw));
1114
        return 0;
B
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1115
    }
1116 1117 1118

    bytes = sw->hw->pcm_ops->read (sw, buf, size);
    return bytes;
B
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1119 1120
}

1121
int AUD_get_buffer_size_out (SWVoiceOut *sw)
B
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1122
{
B
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1123
    return sw->hw->samples << sw->hw->info.shift;
1124 1125 1126 1127 1128
}

void AUD_set_active_out (SWVoiceOut *sw, int on)
{
    HWVoiceOut *hw;
B
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1129

1130
    if (!sw) {
B
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1131
        return;
1132
    }
B
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1133 1134

    hw = sw->hw;
1135
    if (sw->active != on) {
1136
        AudioState *s = &glob_audio_state;
1137
        SWVoiceOut *temp_sw;
B
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1138
        SWVoiceCap *sc;
1139 1140 1141 1142 1143

        if (on) {
            hw->pending_disable = 0;
            if (!hw->enabled) {
                hw->enabled = 1;
1144 1145 1146
                if (s->vm_running) {
                    hw->pcm_ops->ctl_out (hw, VOICE_ENABLE);
                }
1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159
            }
        }
        else {
            if (hw->enabled) {
                int nb_active = 0;

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

                hw->pending_disable = nb_active == 1;
            }
B
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        }
B
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1161 1162 1163

        for (sc = hw->cap_head.lh_first; sc; sc = sc->entries.le_next) {
            sc->sw.active = hw->enabled;
1164
            if (hw->enabled) {
B
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                audio_capture_maybe_changed (sc->cap, 1);
1166 1167
            }
        }
1168 1169 1170 1171 1172 1173 1174 1175 1176 1177
        sw->active = on;
    }
}

void AUD_set_active_in (SWVoiceIn *sw, int on)
{
    HWVoiceIn *hw;

    if (!sw) {
        return;
B
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1178 1179
    }

1180
    hw = sw->hw;
B
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1181
    if (sw->active != on) {
1182
        AudioState *s = &glob_audio_state;
1183 1184
        SWVoiceIn *temp_sw;

B
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1185 1186 1187
        if (on) {
            if (!hw->enabled) {
                hw->enabled = 1;
1188 1189 1190
                if (s->vm_running) {
                    hw->pcm_ops->ctl_in (hw, VOICE_ENABLE);
                }
B
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1191
            }
1192
            sw->total_hw_samples_acquired = hw->total_samples_captured;
B
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1193 1194
        }
        else {
1195
            if (hw->enabled) {
B
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1196
                int nb_active = 0;
1197 1198 1199 1200

                for (temp_sw = hw->sw_head.lh_first; temp_sw;
                     temp_sw = temp_sw->entries.le_next) {
                    nb_active += temp_sw->active != 0;
B
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1201 1202 1203
                }

                if (nb_active == 1) {
1204 1205
                    hw->enabled = 0;
                    hw->pcm_ops->ctl_in (hw, VOICE_DISABLE);
B
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1206 1207 1208 1209 1210 1211 1212
                }
            }
        }
        sw->active = on;
    }
}

1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227
static int audio_get_avail (SWVoiceIn *sw)
{
    int live;

    if (!sw) {
        return 0;
    }

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

    ldebug (
B
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1228
        "%s: get_avail live %d ret %" PRId64 "\n",
B
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1229
        SW_NAME (sw),
1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247
        live, (((int64_t) live << 32) / sw->ratio) << sw->info.shift
        );

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

static int audio_get_free (SWVoiceOut *sw)
{
    int live, dead;

    if (!sw) {
        return 0;
    }

    live = sw->total_hw_samples_mixed;

    if (audio_bug (AUDIO_FUNC, live < 0 || live > sw->hw->samples)) {
        dolog ("live=%d sw->hw->samples=%d\n", live, sw->hw->samples);
B
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        return 0;
1249 1250 1251 1252 1253
    }

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

#ifdef DEBUG_OUT
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    dolog ("%s: get_free live %d dead %d ret %" PRId64 "\n",
B
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           SW_NAME (sw),
1256
           live, dead, (((int64_t) dead << 32) / sw->ratio) << sw->info.shift);
B
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#endif
1258 1259 1260 1261

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

1262 1263 1264 1265 1266
static void audio_capture_mix_and_clear (HWVoiceOut *hw, int rpos, int samples)
{
    int n;

    if (hw->enabled) {
B
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        SWVoiceCap *sc;
1268

B
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        for (sc = hw->cap_head.lh_first; sc; sc = sc->entries.le_next) {
            SWVoiceOut *sw = &sc->sw;
1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282
            int rpos2 = rpos;

            n = samples;
            while (n) {
                int till_end_of_hw = hw->samples - rpos2;
                int to_write = audio_MIN (till_end_of_hw, n);
                int bytes = to_write << hw->info.shift;
                int written;

                sw->buf = hw->mix_buf + rpos2;
                written = audio_pcm_sw_write (sw, NULL, bytes);
                if (written - bytes) {
B
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                    dolog ("Could not mix %d bytes into a capture "
                           "buffer, mixed %d\n",
                           bytes, written);
1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298
                    break;
                }
                n -= to_write;
                rpos2 = (rpos2 + to_write) % hw->samples;
            }
        }
    }

    n = audio_MIN (samples, hw->samples - rpos);
    mixeng_clear (hw->mix_buf + rpos, n);
    mixeng_clear (hw->mix_buf, samples - n);
}

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static void audio_run_out (AudioState *s)
1300 1301 1302 1303
{
    HWVoiceOut *hw = NULL;
    SWVoiceOut *sw;

1304
    while ((hw = audio_pcm_hw_find_any_enabled_out (hw))) {
1305
        int played;
1306
        int live, free, nb_live, cleanup_required, prev_rpos;
1307 1308 1309 1310 1311

        live = audio_pcm_hw_get_live_out2 (hw, &nb_live);
        if (!nb_live) {
            live = 0;
        }
B
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1313 1314
        if (audio_bug (AUDIO_FUNC, live < 0 || live > hw->samples)) {
            dolog ("live=%d hw->samples=%d\n", live, hw->samples);
B
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            continue;
1316 1317 1318
        }

        if (hw->pending_disable && !nb_live) {
B
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            SWVoiceCap *sc;
1320 1321
#ifdef DEBUG_OUT
            dolog ("Disabling voice\n");
B
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#endif
1323 1324 1325
            hw->enabled = 0;
            hw->pending_disable = 0;
            hw->pcm_ops->ctl_out (hw, VOICE_DISABLE);
B
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            for (sc = hw->cap_head.lh_first; sc; sc = sc->entries.le_next) {
                sc->sw.active = 0;
                audio_recalc_and_notify_capture (sc->cap);
1329
            }
1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344
            continue;
        }

        if (!live) {
            for (sw = hw->sw_head.lh_first; sw; sw = sw->entries.le_next) {
                if (sw->active) {
                    free = audio_get_free (sw);
                    if (free > 0) {
                        sw->callback.fn (sw->callback.opaque, free);
                    }
                }
            }
            continue;
        }

1345
        prev_rpos = hw->rpos;
1346 1347 1348 1349 1350 1351 1352 1353
        played = hw->pcm_ops->run_out (hw);
        if (audio_bug (AUDIO_FUNC, hw->rpos >= hw->samples)) {
            dolog ("hw->rpos=%d hw->samples=%d played=%d\n",
                   hw->rpos, hw->samples, played);
            hw->rpos = 0;
        }

#ifdef DEBUG_OUT
B
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        dolog ("played=%d\n", played);
B
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#endif
1356 1357 1358

        if (played) {
            hw->ts_helper += played;
1359
            audio_capture_mix_and_clear (hw, prev_rpos, played);
1360 1361
        }

B
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        cleanup_required = 0;
1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377
        for (sw = hw->sw_head.lh_first; sw; sw = sw->entries.le_next) {
            if (!sw->active && sw->empty) {
                continue;
            }

            if (audio_bug (AUDIO_FUNC, played > sw->total_hw_samples_mixed)) {
                dolog ("played=%d sw->total_hw_samples_mixed=%d\n",
                       played, sw->total_hw_samples_mixed);
                played = sw->total_hw_samples_mixed;
            }

            sw->total_hw_samples_mixed -= played;

            if (!sw->total_hw_samples_mixed) {
                sw->empty = 1;
B
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                cleanup_required |= !sw->active && !sw->callback.fn;
1379 1380 1381 1382 1383 1384 1385 1386 1387
            }

            if (sw->active) {
                free = audio_get_free (sw);
                if (free > 0) {
                    sw->callback.fn (sw->callback.opaque, free);
                }
            }
        }
B
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1388 1389

        if (cleanup_required) {
B
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            SWVoiceOut *sw1;

            sw = hw->sw_head.lh_first;
            while (sw) {
                sw1 = sw->entries.le_next;
B
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1395 1396 1397 1398
                if (!sw->active && !sw->callback.fn) {
#ifdef DEBUG_PLIVE
                    dolog ("Finishing with old voice\n");
#endif
1399
                    audio_close_out (sw);
B
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1400
                }
B
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                sw = sw1;
B
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            }
        }
1404 1405 1406
    }
}

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static void audio_run_in (AudioState *s)
1408 1409 1410
{
    HWVoiceIn *hw = NULL;

1411
    while ((hw = audio_pcm_hw_find_any_enabled_in (hw))) {
1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435
        SWVoiceIn *sw;
        int captured, min;

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

        min = audio_pcm_hw_find_min_in (hw);
        hw->total_samples_captured += captured - min;
        hw->ts_helper += captured;

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

            if (sw->active) {
                int avail;

                avail = audio_get_avail (sw);
                if (avail > 0) {
                    sw->callback.fn (sw->callback.opaque, avail);
                }
            }
        }
    }
}

1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449
static void audio_run_capture (AudioState *s)
{
    CaptureVoiceOut *cap;

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

        captured = live = audio_pcm_hw_get_live_out (hw);
        rpos = hw->rpos;
        while (live) {
            int left = hw->samples - rpos;
            int to_capture = audio_MIN (live, left);
M
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            struct st_sample *src;
1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482
            struct capture_callback *cb;

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

            for (cb = cap->cb_head.lh_first; cb; cb = cb->entries.le_next) {
                cb->ops.capture (cb->opaque, cap->buf,
                                 to_capture << hw->info.shift);
            }
            rpos = (rpos + to_capture) % hw->samples;
            live -= to_capture;
        }
        hw->rpos = rpos;

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

            if (audio_bug (AUDIO_FUNC, captured > sw->total_hw_samples_mixed)) {
                dolog ("captured=%d sw->total_hw_samples_mixed=%d\n",
                       captured, sw->total_hw_samples_mixed);
                captured = sw->total_hw_samples_mixed;
            }

            sw->total_hw_samples_mixed -= captured;
            sw->empty = sw->total_hw_samples_mixed == 0;
        }
    }
}

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static void audio_timer (void *opaque)
{
    AudioState *s = opaque;

    audio_run_out (s);
    audio_run_in (s);
1489
    audio_run_capture (s);
B
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1490 1491 1492 1493

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

1494 1495
static struct audio_option audio_options[] = {
    /* DAC */
1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515
    {.name  = "DAC_FIXED_SETTINGS",
     .tag   = AUD_OPT_BOOL,
     .valp  = &conf.fixed_out.enabled,
     .descr = "Use fixed settings for host DAC"},
    {.name  = "DAC_FIXED_FREQ",
     .tag   = AUD_OPT_INT,
     .valp  = &conf.fixed_out.settings.freq,
     .descr = "Frequency for fixed host DAC"},
    {.name  = "DAC_FIXED_FMT",
     .tag   = AUD_OPT_FMT,
     .valp  = &conf.fixed_out.settings.fmt,
     .descr = "Format for fixed host DAC"},
    {.name  = "DAC_FIXED_CHANNELS",
     .tag   = AUD_OPT_INT,
     .valp  = &conf.fixed_out.settings.nchannels,
     .descr = "Number of channels for fixed DAC (1 - mono, 2 - stereo)"},
    {.name  = "DAC_VOICES",
     .tag   = AUD_OPT_INT,
     .valp  = &conf.fixed_out.nb_voices,
     .descr = "Number of voices for DAC"},
1516
    /* ADC */
1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536
    {.name  = "ADC_FIXED_SETTINGS",
     .tag   = AUD_OPT_BOOL,
     .valp  = &conf.fixed_in.enabled,
     .descr = "Use fixed settings for host ADC"},
    {.name  = "ADC_FIXED_FREQ",
     .tag   = AUD_OPT_INT,
     .valp  = &conf.fixed_in.settings.freq,
     .descr = "Frequency for fixed host ADC"},
    {.name  = "ADC_FIXED_FMT",
     .tag   = AUD_OPT_FMT,
     .valp  = &conf.fixed_in.settings.fmt,
     .descr = "Format for fixed host ADC"},
    {.name  = "ADC_FIXED_CHANNELS",
     .tag   = AUD_OPT_INT,
     .valp  = &conf.fixed_in.settings.nchannels,
     .descr = "Number of channels for fixed ADC (1 - mono, 2 - stereo)"},
    {.name  = "ADC_VOICES",
     .tag   = AUD_OPT_INT,
     .valp  = &conf.fixed_in.nb_voices,
     .descr = "Number of voices for ADC"},
1537
    /* Misc */
1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550
    {.name  = "TIMER_PERIOD",
     .tag   = AUD_OPT_INT,
     .valp  = &conf.period.hertz,
     .descr = "Timer period in HZ (0 - use lowest possible)"},
    {.name  = "PLIVE",
     .tag   = AUD_OPT_BOOL,
     .valp  = &conf.plive,
     .descr = "(undocumented)"},
    {.name  = "LOG_TO_MONITOR",
     .tag   = AUD_OPT_BOOL,
     .valp  = &conf.log_to_monitor,
     .descr = ".descr = print logging messages to monitor instead of stderr"},
    { /* End of list */ }
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1551 1552
};

B
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1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571
static void audio_pp_nb_voices (const char *typ, int nb)
{
    switch (nb) {
    case 0:
        printf ("Does not support %s\n", typ);
        break;
    case 1:
        printf ("One %s voice\n", typ);
        break;
    case INT_MAX:
        printf ("Theoretically supports many %s voices\n", typ);
        break;
    default:
        printf ("Theoretically supports upto %d %s voices\n", nb, typ);
        break;
    }

}

1572 1573 1574 1575 1576
void AUD_help (void)
{
    size_t i;

    audio_process_options ("AUDIO", audio_options);
1577
    for (i = 0; i < ARRAY_SIZE (drvtab); i++) {
1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589
        struct audio_driver *d = drvtab[i];
        if (d->options) {
            audio_process_options (d->name, d->options);
        }
    }

    printf ("Audio options:\n");
    audio_print_options ("AUDIO", audio_options);
    printf ("\n");

    printf ("Available drivers:\n");

1590
    for (i = 0; i < ARRAY_SIZE (drvtab); i++) {
1591 1592 1593 1594 1595
        struct audio_driver *d = drvtab[i];

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

B
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        audio_pp_nb_voices ("playback", d->max_voices_out);
        audio_pp_nb_voices ("capture", d->max_voices_in);
1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613

        if (d->options) {
            printf ("Options:\n");
            audio_print_options (d->name, d->options);
        }
        else {
            printf ("No options\n");
        }
        printf ("\n");
    }

    printf (
        "Options are settable through environment variables.\n"
        "Example:\n"
#ifdef _WIN32
        "  set QEMU_AUDIO_DRV=wav\n"
B
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        "  set QEMU_WAV_PATH=c:\\tune.wav\n"
1615 1616 1617 1618 1619 1620 1621 1622 1623
#else
        "  export QEMU_AUDIO_DRV=wav\n"
        "  export QEMU_WAV_PATH=$HOME/tune.wav\n"
        "(for csh replace export with setenv in the above)\n"
#endif
        "  qemu ...\n\n"
        );
}

B
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1624
static int audio_driver_init (AudioState *s, struct audio_driver *drv)
B
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1625
{
1626 1627 1628
    if (drv->options) {
        audio_process_options (drv->name, drv->options);
    }
B
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1629
    s->drv_opaque = drv->init ();
1630

B
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1631
    if (s->drv_opaque) {
1632 1633
        audio_init_nb_voices_out (drv);
        audio_init_nb_voices_in (drv);
B
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1634
        s->drv = drv;
1635
        return 0;
B
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1636 1637
    }
    else {
1638 1639
        dolog ("Could not init `%s' audio driver\n", drv->name);
        return -1;
B
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1640 1641 1642
    }
}

1643 1644
static void audio_vm_change_state_handler (void *opaque, int running,
                                           int reason)
B
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1645
{
B
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1646
    AudioState *s = opaque;
1647 1648
    HWVoiceOut *hwo = NULL;
    HWVoiceIn *hwi = NULL;
B
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1649
    int op = running ? VOICE_ENABLE : VOICE_DISABLE;
1650

1651
    s->vm_running = running;
1652
    while ((hwo = audio_pcm_hw_find_any_enabled_out (hwo))) {
B
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1653
        hwo->pcm_ops->ctl_out (hwo, op);
1654
    }
B
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1655

1656
    while ((hwi = audio_pcm_hw_find_any_enabled_in (hwi))) {
B
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1657
        hwi->pcm_ops->ctl_in (hwi, op);
B
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1658 1659 1660 1661 1662
    }
}

static void audio_atexit (void)
{
B
bellard 已提交
1663
    AudioState *s = &glob_audio_state;
1664 1665 1666
    HWVoiceOut *hwo = NULL;
    HWVoiceIn *hwi = NULL;

1667
    while ((hwo = audio_pcm_hw_find_any_enabled_out (hwo))) {
B
bellard 已提交
1668
        SWVoiceCap *sc;
1669

B
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1670
        hwo->pcm_ops->ctl_out (hwo, VOICE_DISABLE);
1671
        hwo->pcm_ops->fini_out (hwo);
1672

B
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1673 1674 1675 1676 1677 1678 1679
        for (sc = hwo->cap_head.lh_first; sc; sc = sc->entries.le_next) {
            CaptureVoiceOut *cap = sc->cap;
            struct capture_callback *cb;

            for (cb = cap->cb_head.lh_first; cb; cb = cb->entries.le_next) {
                cb->ops.destroy (cb->opaque);
            }
1680
        }
1681
    }
B
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1682

1683
    while ((hwi = audio_pcm_hw_find_any_enabled_in (hwi))) {
B
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1684
        hwi->pcm_ops->ctl_in (hwi, VOICE_DISABLE);
1685
        hwi->pcm_ops->fini_in (hwi);
B
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1686
    }
B
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1687 1688 1689 1690

    if (s->drv) {
        s->drv->fini (s->drv_opaque);
    }
B
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1691 1692 1693 1694
}

static void audio_save (QEMUFile *f, void *opaque)
{
1695 1696
    (void) f;
    (void) opaque;
B
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1697 1698 1699 1700
}

static int audio_load (QEMUFile *f, void *opaque, int version_id)
{
1701 1702 1703 1704
    (void) f;
    (void) opaque;

    if (version_id != 1) {
B
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1705
        return -EINVAL;
1706
    }
B
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1707 1708 1709 1710

    return 0;
}

1711
static void audio_init (void)
B
bellard 已提交
1712
{
1713
    size_t i;
B
bellard 已提交
1714 1715
    int done = 0;
    const char *drvname;
B
bellard 已提交
1716
    AudioState *s = &glob_audio_state;
1717

P
Paul Brook 已提交
1718
    if (s->drv) {
1719
        return;
P
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1720 1721
    }

B
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1722 1723
    LIST_INIT (&s->hw_head_out);
    LIST_INIT (&s->hw_head_in);
1724
    LIST_INIT (&s->cap_head);
B
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1725 1726 1727 1728
    atexit (audio_atexit);

    s->ts = qemu_new_timer (vm_clock, audio_timer, s);
    if (!s->ts) {
P
Paul Brook 已提交
1729
        hw_error("Could not create audio timer\n");
B
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1730 1731
    }

1732 1733
    audio_process_options ("AUDIO", audio_options);

B
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1734 1735 1736
    s->nb_hw_voices_out = conf.fixed_out.nb_voices;
    s->nb_hw_voices_in = conf.fixed_in.nb_voices;

1737
    if (s->nb_hw_voices_out <= 0) {
B
bellard 已提交
1738
        dolog ("Bogus number of playback voices %d, setting to 1\n",
1739 1740 1741 1742 1743
               s->nb_hw_voices_out);
        s->nb_hw_voices_out = 1;
    }

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

1749 1750 1751 1752
    {
        int def;
        drvname = audio_get_conf_str ("QEMU_AUDIO_DRV", NULL, &def);
    }
B
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1753 1754 1755

    if (drvname) {
        int found = 0;
1756

1757
        for (i = 0; i < ARRAY_SIZE (drvtab); i++) {
B
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1758
            if (!strcmp (drvname, drvtab[i]->name)) {
B
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1759
                done = !audio_driver_init (s, drvtab[i]);
B
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1760 1761 1762 1763
                found = 1;
                break;
            }
        }
1764

B
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1765 1766
        if (!found) {
            dolog ("Unknown audio driver `%s'\n", drvname);
1767
            dolog ("Run with -audio-help to list available drivers\n");
B
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1768 1769 1770 1771
        }
    }

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

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

P
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1789
    VMChangeStateEntry *e;
B
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1790

P
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1791 1792 1793 1794 1795
    if (conf.period.hertz <= 0) {
        if (conf.period.hertz < 0) {
            dolog ("warning: Timer period is negative - %d "
                   "treating as zero\n",
                   conf.period.hertz);
B
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1796
        }
P
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1797 1798 1799
        conf.period.ticks = 1;
    } else {
        conf.period.ticks = ticks_per_sec / conf.period.hertz;
1800
    }
P
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1801 1802 1803 1804 1805

    e = qemu_add_vm_change_state_handler (audio_vm_change_state_handler, s);
    if (!e) {
        dolog ("warning: Could not register change state handler\n"
               "(Audio can continue looping even after stopping the VM)\n");
1806 1807
    }

B
bellard 已提交
1808 1809 1810
    LIST_INIT (&s->card_head);
    register_savevm ("audio", 0, 1, audio_save, audio_load, s);
    qemu_mod_timer (s->ts, qemu_get_clock (vm_clock) + conf.period.ticks);
B
bellard 已提交
1811
}
1812

1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827
void AUD_register_card (const char *name, QEMUSoundCard *card)
{
    audio_init ();
    card->name = qemu_strdup (name);
    memset (&card->entries, 0, sizeof (card->entries));
    LIST_INSERT_HEAD (&glob_audio_state.card_head, card, entries);
}

void AUD_remove_card (QEMUSoundCard *card)
{
    LIST_REMOVE (card, entries);
    qemu_free (card->name);
}


B
bellard 已提交
1828
CaptureVoiceOut *AUD_add_capture (
M
malc 已提交
1829
    struct audsettings *as,
1830 1831 1832 1833
    struct audio_capture_ops *ops,
    void *cb_opaque
    )
{
1834
    AudioState *s = &glob_audio_state;
1835 1836 1837
    CaptureVoiceOut *cap;
    struct capture_callback *cb;

B
bellard 已提交
1838
    if (audio_validate_settings (as)) {
1839 1840
        dolog ("Invalid settings were passed when trying to add capture\n");
        audio_print_settings (as);
B
bellard 已提交
1841
        goto err0;
1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852
    }

    cb = audio_calloc (AUDIO_FUNC, 1, sizeof (*cb));
    if (!cb) {
        dolog ("Could not allocate capture callback information, size %zu\n",
               sizeof (*cb));
        goto err0;
    }
    cb->ops = *ops;
    cb->opaque = cb_opaque;

1853
    cap = audio_pcm_capture_find_specific (as);
1854 1855
    if (cap) {
        LIST_INSERT_HEAD (&cap->cb_head, cb, entries);
B
bellard 已提交
1856
        return cap;
1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875
    }
    else {
        HWVoiceOut *hw;
        CaptureVoiceOut *cap;

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

        hw = &cap->hw;
        LIST_INIT (&hw->sw_head);
        LIST_INIT (&cap->cb_head);

        /* XXX find a more elegant way */
        hw->samples = 4096 * 4;
        hw->mix_buf = audio_calloc (AUDIO_FUNC, hw->samples,
M
malc 已提交
1876
                                    sizeof (struct st_sample));
1877 1878 1879 1880 1881 1882
        if (!hw->mix_buf) {
            dolog ("Could not allocate capture mix buffer (%d samples)\n",
                   hw->samples);
            goto err2;
        }

B
bellard 已提交
1883
        audio_pcm_init_info (&hw->info, as);
1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895

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

        hw->clip = mixeng_clip
            [hw->info.nchannels == 2]
            [hw->info.sign]
B
bellard 已提交
1896
            [hw->info.swap_endianness]
1897
            [audio_bits_to_index (hw->info.bits)];
1898 1899 1900 1901 1902

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

        hw = NULL;
1903 1904
        while ((hw = audio_pcm_hw_find_any_out (hw))) {
            audio_attach_capture (hw);
1905
        }
B
bellard 已提交
1906
        return cap;
1907 1908 1909 1910 1911 1912 1913 1914

    err3:
        qemu_free (cap->hw.mix_buf);
    err2:
        qemu_free (cap);
    err1:
        qemu_free (cb);
    err0:
B
bellard 已提交
1915 1916 1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930
        return NULL;
    }
}

void AUD_del_capture (CaptureVoiceOut *cap, void *cb_opaque)
{
    struct capture_callback *cb;

    for (cb = cap->cb_head.lh_first; cb; cb = cb->entries.le_next) {
        if (cb->opaque == cb_opaque) {
            cb->ops.destroy (cb_opaque);
            LIST_REMOVE (cb, entries);
            qemu_free (cb);

            if (!cap->cb_head.lh_first) {
                SWVoiceOut *sw = cap->hw.sw_head.lh_first, *sw1;
B
bellard 已提交
1931

B
bellard 已提交
1932
                while (sw) {
B
bellard 已提交
1933
                    SWVoiceCap *sc = (SWVoiceCap *) sw;
B
bellard 已提交
1934 1935 1936
#ifdef DEBUG_CAPTURE
                    dolog ("freeing %s\n", sw->name);
#endif
B
bellard 已提交
1937

B
bellard 已提交
1938 1939 1940 1941 1942 1943
                    sw1 = sw->entries.le_next;
                    if (sw->rate) {
                        st_rate_stop (sw->rate);
                        sw->rate = NULL;
                    }
                    LIST_REMOVE (sw, entries);
B
bellard 已提交
1944 1945
                    LIST_REMOVE (sc, entries);
                    qemu_free (sc);
B
bellard 已提交
1946 1947 1948 1949 1950 1951 1952
                    sw = sw1;
                }
                LIST_REMOVE (cap, entries);
                qemu_free (cap);
            }
            return;
        }
1953 1954
    }
}
1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968 1969 1970 1971 1972

void AUD_set_volume_out (SWVoiceOut *sw, int mute, uint8_t lvol, uint8_t rvol)
{
    if (sw) {
        sw->vol.mute = mute;
        sw->vol.l = nominal_volume.l * lvol / 255;
        sw->vol.r = nominal_volume.r * rvol / 255;
    }
}

void AUD_set_volume_in (SWVoiceIn *sw, int mute, uint8_t lvol, uint8_t rvol)
{
    if (sw) {
        sw->vol.mute = mute;
        sw->vol.l = nominal_volume.l * lvol / 255;
        sw->vol.r = nominal_volume.r * rvol / 255;
    }
}