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SDL_audio.c

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957 lines (832 loc) · 26.5 KB
 
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/*
SDL - Simple DirectMedia Layer
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Copyright (C) 1997-2006 Sam Lantinga
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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Sam Lantinga
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slouken@libsdl.org
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*/
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#include "SDL_config.h"
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/* Allow access to a raw mixing buffer */
#include "SDL.h"
#include "SDL_audio_c.h"
#include "SDL_audiomem.h"
#include "SDL_sysaudio.h"
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#define _THIS SDL_AudioDevice *this
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static SDL_AudioDriver current_audio;
static SDL_AudioDevice *open_devices[16];
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/* !!! FIXME: These are wordy and unlocalized... */
#define DEFAULT_OUTPUT_DEVNAME "System audio output device"
#define DEFAULT_INPUT_DEVNAME "System audio capture device"
/*
* Not all of these will be compiled and linked in, but it's convenient
* to have a complete list here and saves yet-another block of #ifdefs...
* Please see bootstrap[], below, for the actual #ifdef mess.
*/
extern AudioBootStrap BSD_AUDIO_bootstrap;
extern AudioBootStrap DSP_bootstrap;
extern AudioBootStrap DMA_bootstrap;
extern AudioBootStrap ALSA_bootstrap;
extern AudioBootStrap QNXNTOAUDIO_bootstrap;
extern AudioBootStrap SUNAUDIO_bootstrap;
extern AudioBootStrap DMEDIA_bootstrap;
extern AudioBootStrap ARTS_bootstrap;
extern AudioBootStrap ESD_bootstrap;
extern AudioBootStrap NAS_bootstrap;
extern AudioBootStrap DSOUND_bootstrap;
extern AudioBootStrap WAVEOUT_bootstrap;
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extern AudioBootStrap PAUDIO_bootstrap;
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extern AudioBootStrap BEOSAUDIO_bootstrap;
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extern AudioBootStrap COREAUDIO_bootstrap;
extern AudioBootStrap SNDMGR_bootstrap;
extern AudioBootStrap MINTAUDIO_GSXB_bootstrap;
extern AudioBootStrap MINTAUDIO_MCSN_bootstrap;
extern AudioBootStrap MINTAUDIO_STFA_bootstrap;
extern AudioBootStrap MINTAUDIO_XBIOS_bootstrap;
extern AudioBootStrap MINTAUDIO_DMA8_bootstrap;
extern AudioBootStrap DISKAUD_bootstrap;
extern AudioBootStrap DUMMYAUD_bootstrap;
extern AudioBootStrap DCAUD_bootstrap;
extern AudioBootStrap MMEAUDIO_bootstrap;
extern AudioBootStrap DART_bootstrap;
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/* Available audio drivers */
static AudioBootStrap *bootstrap[] = {
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#if SDL_AUDIO_DRIVER_BSD
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&BSD_AUDIO_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_OSS
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&DSP_bootstrap,
&DMA_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_ALSA
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&ALSA_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_QNXNTO
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&QNXNTOAUDIO_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_SUNAUDIO
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&SUNAUDIO_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_DMEDIA
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&DMEDIA_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_ARTS
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&ARTS_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_ESD
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&ESD_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_NAS
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&NAS_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_DSOUND
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&DSOUND_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_WAVEOUT
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&WAVEOUT_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_PAUDIO
&PAUDIO_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_BEOSAUDIO
&BEOSAUDIO_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_COREAUDIO
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&COREAUDIO_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_SNDMGR
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&SNDMGR_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_MINT
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&MINTAUDIO_GSXB_bootstrap,
&MINTAUDIO_MCSN_bootstrap,
&MINTAUDIO_STFA_bootstrap,
&MINTAUDIO_XBIOS_bootstrap,
&MINTAUDIO_DMA8_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_DISK
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&DISKAUD_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_DUMMY
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&DUMMYAUD_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_DC
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&DCAUD_bootstrap,
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#endif
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#if SDL_AUDIO_DRIVER_MMEAUDIO
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&MMEAUDIO_bootstrap,
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#endif
#if SDL_AUDIO_DRIVER_DART
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&DART_bootstrap,
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#endif
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NULL
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};
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static SDL_AudioDevice *get_audio_device(SDL_AudioDeviceID id)
{
id--;
if ( (id >= SDL_arraysize(open_devices)) || (open_devices[id] == NULL) ) {
SDL_SetError("Invalid audio device ID");
return NULL;
}
return open_devices[id];
}
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/* stubs for audio drivers that don't need a specific entry point... */
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static int SDL_AudioDetectDevices_Default(int iscapture) { return -1; }
static void SDL_AudioThreadInit_Default(_THIS) { /* no-op. */ }
static void SDL_AudioWaitDevice_Default(_THIS) { /* no-op. */ }
static void SDL_AudioPlayDevice_Default(_THIS) { /* no-op. */ }
static Uint8 *SDL_AudioGetDeviceBuf_Default(_THIS) { return NULL; }
static void SDL_AudioWaitDone_Default(_THIS) { /* no-op. */ }
static void SDL_AudioCloseDevice_Default(_THIS) { /* no-op. */ }
static void SDL_AudioDeinitialize_Default(void) { /* no-op. */ }
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static int
SDL_AudioOpenDevice_Default(_THIS, const char *devname, int iscapture)
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{
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return 0;
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}
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static const char *SDL_AudioGetDeviceName_Default(int index, int iscapture)
{
SDL_SetError("No such device");
return NULL;
}
static void
SDL_AudioLockDevice_Default(SDL_AudioDevice * device)
{
if (device->thread && (SDL_ThreadID() == device->threadid)) {
return;
}
SDL_mutexP(device->mixer_lock);
}
static void
SDL_AudioUnlockDevice_Default(SDL_AudioDevice * device)
{
if (device->thread && (SDL_ThreadID() == device->threadid)) {
return;
}
SDL_mutexV(device->mixer_lock);
}
static void finalize_audio_entry_points(void)
{
/*
* Fill in stub functions for unused driver entry points. This lets us
* blindly call them without having to check for validity first.
*/
#define FILL_STUB(x) \
if (current_audio.impl.x == NULL) { \
current_audio.impl.x = SDL_Audio##x##_Default; \
}
FILL_STUB(DetectDevices);
FILL_STUB(GetDeviceName);
FILL_STUB(OpenDevice);
FILL_STUB(ThreadInit);
FILL_STUB(WaitDevice);
FILL_STUB(PlayDevice);
FILL_STUB(GetDeviceBuf);
FILL_STUB(WaitDone);
FILL_STUB(CloseDevice);
FILL_STUB(LockDevice);
FILL_STUB(UnlockDevice);
FILL_STUB(Deinitialize);
#undef FILL_STUB
}
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/* The general mixing thread function */
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int SDLCALL
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SDL_RunAudio(void *devicep)
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{
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SDL_AudioDevice *device = (SDL_AudioDevice *) devicep;
const int legacy_device = (device == open_devices[0]);
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Uint8 *stream;
int stream_len;
void *udata;
void (SDLCALL * fill) (void *userdata, Uint8 * stream, int len);
int silence;
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/* Perform any thread setup */
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device->threadid = SDL_ThreadID();
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current_audio.impl.ThreadInit(device);
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/* Set up the mixing function */
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fill = device->spec.callback;
udata = device->spec.userdata;
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if (device->convert.needed) {
if (device->convert.src_format == AUDIO_U8) {
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silence = 0x80;
} else {
silence = 0;
}
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stream_len = device->convert.len;
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} else {
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silence = device->spec.silence;
stream_len = device->spec.size;
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}
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/* Loop, filling the audio buffers */
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while (device->enabled) {
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/* Fill the current buffer with sound */
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if (device->convert.needed) {
if (device->convert.buf) {
stream = device->convert.buf;
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} else {
continue;
}
} else {
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stream = current_audio.impl.GetDeviceBuf(device);
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if (stream == NULL) {
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stream = device->fake_stream;
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}
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}
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/* New code should fill buffer or set it to silence themselves. */
if (legacy_device) {
SDL_memset(stream, silence, stream_len);
}
if (!device->paused) {
SDL_mutexP(device->mixer_lock);
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(*fill) (udata, stream, stream_len);
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SDL_mutexV(device->mixer_lock);
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}
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/* Convert the audio if necessary */
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if (device->convert.needed) {
SDL_ConvertAudio(&device->convert);
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stream = current_audio.impl.GetDeviceBuf(device);
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if (stream == NULL) {
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stream = device->fake_stream;
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}
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SDL_memcpy(stream, device->convert.buf, device->convert.len_cvt);
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}
/* Ready current buffer for play and change current buffer */
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if (stream != device->fake_stream) {
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current_audio.impl.PlayDevice(device);
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}
/* Wait for an audio buffer to become available */
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if (stream == device->fake_stream) {
SDL_Delay((device->spec.samples * 1000) / device->spec.freq);
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} else {
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current_audio.impl.WaitDevice(device);
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}
}
/* Wait for the audio to drain.. */
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current_audio.impl.WaitDone(device);
return (0);
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}
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static SDL_AudioFormat
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SDL_ParseAudioFormat(const char *string)
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{
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#define CHECK_FMT_STRING(x) if (strcmp(string, #x) == 0) return AUDIO_##x
CHECK_FMT_STRING(U8);
CHECK_FMT_STRING(S8);
CHECK_FMT_STRING(U16LSB);
CHECK_FMT_STRING(S16LSB);
CHECK_FMT_STRING(U16MSB);
CHECK_FMT_STRING(S16MSB);
CHECK_FMT_STRING(U16SYS);
CHECK_FMT_STRING(S16SYS);
CHECK_FMT_STRING(U16);
CHECK_FMT_STRING(S16);
CHECK_FMT_STRING(S32LSB);
CHECK_FMT_STRING(S32MSB);
CHECK_FMT_STRING(S32SYS);
CHECK_FMT_STRING(S32);
CHECK_FMT_STRING(F32LSB);
CHECK_FMT_STRING(F32MSB);
CHECK_FMT_STRING(F32SYS);
CHECK_FMT_STRING(F32);
#undef CHECK_FMT_STRING
return 0;
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}
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int
SDL_GetNumAudioDrivers(void)
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{
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return (SDL_arraysize(bootstrap) - 1);
}
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const char *
SDL_GetAudioDriver(int index)
{
if (index >= 0 && index < SDL_GetNumAudioDrivers()) {
return (bootstrap[index]->name);
}
return (NULL);
}
int
SDL_AudioInit(const char *driver_name)
{
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int i = 0;
int initialized = 0;
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int tried_to_init = 0;
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if (SDL_WasInit(SDL_INIT_AUDIO)) {
SDL_AudioQuit(); /* shutdown driver if already running. */
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}
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SDL_memset(&current_audio, '\0', sizeof (current_audio));
SDL_memset(open_devices, '\0', sizeof (open_devices));
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/* Select the proper audio driver */
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if (driver_name == NULL) {
driver_name = SDL_getenv("SDL_AUDIODRIVER");
}
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for (i = 0; (!initialized) && (bootstrap[i]); ++i) {
/* make sure we should even try this driver before doing so... */
const AudioBootStrap *backend = bootstrap[i];
if ( ((driver_name) && (SDL_strcasecmp(backend->name, driver_name))) ||
((!driver_name) && (backend->demand_only)) ) {
continue;
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}
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tried_to_init = 1;
SDL_memset(&current_audio, 0, sizeof (current_audio));
current_audio.name = backend->name;
current_audio.desc = backend->desc;
initialized = backend->init(&current_audio.impl);
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}
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if (!initialized) {
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/* specific drivers will set the error message if they fail... */
if (!tried_to_init) {
if (driver_name) {
SDL_SetError("%s not available", driver_name);
} else {
SDL_SetError("No available audio device");
}
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}
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SDL_memset(&current_audio, 0, sizeof (current_audio));
return (-1); /* No driver was available, so fail. */
}
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finalize_audio_entry_points();
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return (0);
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}
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/*
* Get the current audio driver name
*/
const char *
SDL_GetCurrentAudioDriver()
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{
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return current_audio.name;
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}
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int
SDL_GetNumAudioDevices(int iscapture)
{
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if (!SDL_WasInit(SDL_INIT_AUDIO)) {
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return -1;
}
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if ((iscapture) && (!current_audio.impl.HasCaptureSupport)) {
return 0;
}
if ((iscapture) && (current_audio.impl.OnlyHasDefaultInputDevice)) {
return 1;
}
if ((!iscapture) && (current_audio.impl.OnlyHasDefaultOutputDevice)) {
return 1;
}
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return current_audio.impl.DetectDevices(iscapture);
}
const char *
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SDL_GetAudioDeviceName(int index, int iscapture)
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{
if (!SDL_WasInit(SDL_INIT_AUDIO)) {
SDL_SetError("Audio subsystem is not initialized");
return NULL;
}
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if ((iscapture) && (!current_audio.impl.HasCaptureSupport)) {
SDL_SetError("No capture support");
return NULL;
}
if (index < 0) {
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SDL_SetError("No such device");
return NULL;
}
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if ((iscapture) && (current_audio.impl.OnlyHasDefaultInputDevice)) {
return DEFAULT_INPUT_DEVNAME;
}
if ((!iscapture) && (current_audio.impl.OnlyHasDefaultOutputDevice)) {
return DEFAULT_OUTPUT_DEVNAME;
}
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return current_audio.impl.GetDeviceName(index, iscapture);
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}
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static void
close_audio_device(SDL_AudioDevice *device)
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475
{
Oct 1, 2006
Oct 1, 2006
476
477
478
device->enabled = 0;
if (device->thread != NULL) {
SDL_WaitThread(device->thread, NULL);
Jul 10, 2006
Jul 10, 2006
479
}
Oct 1, 2006
Oct 1, 2006
480
481
482
483
484
485
486
487
488
489
if (device->mixer_lock != NULL) {
SDL_DestroyMutex(device->mixer_lock);
}
if (device->fake_stream != NULL) {
SDL_FreeAudioMem(device->fake_stream);
}
if (device->convert.needed) {
SDL_FreeAudioMem(device->convert.buf);
}
if (device->opened) {
Oct 3, 2006
Oct 3, 2006
490
current_audio.impl.CloseDevice(device);
Oct 1, 2006
Oct 1, 2006
491
492
493
494
device->opened = 0;
}
SDL_FreeAudioMem(device);
}
Jul 10, 2006
Jul 10, 2006
495
Oct 1, 2006
Oct 1, 2006
496
497
498
499
500
501
502
503
504
505
506
507
508
509
/*
* Sanity check desired AudioSpec for SDL_OpenAudio() in (orig).
* Fills in a sanitized copy in (prepared).
* Returns non-zero if okay, zero on fatal parameters in (orig).
*/
static int
prepare_audiospec(const SDL_AudioSpec *orig, SDL_AudioSpec *prepared)
{
SDL_memcpy(prepared, orig, sizeof (SDL_AudioSpec));
if (orig->callback == NULL) {
SDL_SetError("SDL_OpenAudio() passed a NULL callback");
return 0;
Jul 10, 2006
Jul 10, 2006
510
511
}
Oct 1, 2006
Oct 1, 2006
512
513
514
515
if (orig->freq == 0) {
const char *env = SDL_getenv("SDL_AUDIO_FREQUENCY");
if ( (!env) || ((prepared->freq = SDL_atoi(env)) == 0) ) {
prepared->freq = 22050; /* a reasonable default */
Jul 10, 2006
Jul 10, 2006
516
517
}
}
Oct 1, 2006
Oct 1, 2006
518
519
520
521
522
if (orig->format == 0) {
const char *env = SDL_getenv("SDL_AUDIO_FORMAT");
if ((!env) || ((prepared->format = SDL_ParseAudioFormat(env)) == 0)) {
prepared->format = AUDIO_S16; /* a reasonable default */
Jul 10, 2006
Jul 10, 2006
523
524
}
}
Oct 1, 2006
Oct 1, 2006
525
526
527
528
529
530
switch (orig->channels) {
case 0: {
const char *env = SDL_getenv("SDL_AUDIO_CHANNELS");
if ( (!env) || ((prepared->channels = SDL_atoi(env)) == 0) ) {
prepared->channels = 2; /* a reasonable default */
Jul 10, 2006
Jul 10, 2006
531
}
Oct 1, 2006
Oct 1, 2006
532
break;
Jul 10, 2006
Jul 10, 2006
533
534
535
536
537
538
539
}
case 1: /* Mono */
case 2: /* Stereo */
case 4: /* surround */
case 6: /* surround with center and lfe */
break;
default:
Oct 1, 2006
Oct 1, 2006
540
541
542
543
544
545
546
547
548
549
550
551
552
553
554
SDL_SetError("Unsupported number of audio channels.");
return 0;
}
if (orig->samples == 0) {
const char *env = SDL_getenv("SDL_AUDIO_SAMPLES");
if ( (!env) || ((prepared->samples = (Uint16) SDL_atoi(env)) == 0) ) {
/* Pick a default of ~46 ms at desired frequency */
/* !!! FIXME: remove this when the non-Po2 resampling is in. */
const int samples = (prepared->freq / 1000) * 46;
int power2 = 1;
while (power2 < samples) {
power2 *= 2;
}
prepared->samples = power2;
Jul 10, 2006
Jul 10, 2006
555
556
}
}
Oct 1, 2006
Oct 1, 2006
557
558
559
560
561
562
563
564
565
566
567
568
569
570
571
572
/* Calculate the silence and size of the audio specification */
SDL_CalculateAudioSpec(prepared);
return 1;
}
static SDL_AudioDeviceID
open_audio_device(const char *devname, int iscapture,
const SDL_AudioSpec *_desired, SDL_AudioSpec *obtained,
int min_id)
{
SDL_AudioDeviceID id = 0;
SDL_AudioSpec desired;
SDL_AudioDevice *device;
Oct 4, 2006
Oct 4, 2006
573
int i = 0;
Oct 1, 2006
Oct 1, 2006
574
575
576
577
578
579
if (!SDL_WasInit(SDL_INIT_AUDIO)) {
SDL_SetError("Audio subsystem is not initialized");
return 0;
}
Oct 4, 2006
Oct 4, 2006
580
581
582
583
584
if ((iscapture) && (!current_audio.impl.HasCaptureSupport)) {
SDL_SetError("No capture support");
return 0;
}
Oct 1, 2006
Oct 1, 2006
585
586
587
588
if (!prepare_audiospec(_desired, &desired)) {
return 0;
}
Oct 3, 2006
Oct 3, 2006
589
590
591
592
593
/* If app doesn't care about a specific device, let the user override. */
if (devname == NULL) {
devname = SDL_getenv("SDL_AUDIO_DEVICE_NAME");
}
Oct 4, 2006
Oct 4, 2006
594
595
596
597
598
599
600
601
602
603
604
605
606
607
608
609
610
611
612
613
/*
* Catch device names at the high level for the simple case...
* This lets us have a basic "device enumeration" for systems that
* don't have multiple devices, but makes sure the device name is
* always NULL when it hits the low level.
*
* Also make sure that the simple case prevents multiple simultaneous
* opens of the default system device.
*/
if ((iscapture) && (current_audio.impl.OnlyHasDefaultInputDevice)) {
if ((devname) && (SDL_strcmp(devname, DEFAULT_INPUT_DEVNAME) != 0)) {
SDL_SetError("No such device");
return 0;
}
devname = NULL;
for (i = 0; i < SDL_arraysize(open_devices); i++) {
if ((open_devices[i]) && (open_devices[i]->iscapture)) {
SDL_SetError("Audio device already open");
Oct 8, 2006
Oct 8, 2006
614
return 0;
Oct 4, 2006
Oct 4, 2006
615
616
617
618
619
620
621
622
623
624
625
626
627
628
}
}
}
if ((!iscapture) && (current_audio.impl.OnlyHasDefaultOutputDevice)) {
if ((devname) && (SDL_strcmp(devname, DEFAULT_OUTPUT_DEVNAME) != 0)) {
SDL_SetError("No such device");
return 0;
}
devname = NULL;
for (i = 0; i < SDL_arraysize(open_devices); i++) {
if ((open_devices[i]) && (!open_devices[i]->iscapture)) {
SDL_SetError("Audio device already open");
Oct 8, 2006
Oct 8, 2006
629
return 0;
Oct 4, 2006
Oct 4, 2006
630
631
632
633
}
}
}
Oct 1, 2006
Oct 1, 2006
634
635
636
637
device = (SDL_AudioDevice *) SDL_AllocAudioMem(sizeof (SDL_AudioDevice));
if (device == NULL) {
SDL_OutOfMemory();
return 0;
Jul 10, 2006
Jul 10, 2006
638
}
Oct 1, 2006
Oct 1, 2006
639
640
641
642
SDL_memset(device, '\0', sizeof (SDL_AudioDevice));
SDL_memcpy(&device->spec, &desired, sizeof (SDL_AudioSpec));
device->enabled = 1;
device->paused = 1;
Oct 4, 2006
Oct 4, 2006
643
device->iscapture = iscapture;
Oct 1, 2006
Oct 1, 2006
644
Jul 10, 2006
Jul 10, 2006
645
/* Create a semaphore for locking the sound buffers */
Oct 4, 2006
Oct 4, 2006
646
647
648
649
650
651
652
if (!current_audio.impl.SkipMixerLock) {
device->mixer_lock = SDL_CreateMutex();
if (device->mixer_lock == NULL) {
close_audio_device(device);
SDL_SetError("Couldn't create mixer lock");
return 0;
}
Jul 10, 2006
Jul 10, 2006
653
}
Apr 26, 2001
Apr 26, 2001
654
Oct 3, 2006
Oct 3, 2006
655
if (!current_audio.impl.OpenDevice(device, devname, iscapture)) {
Oct 1, 2006
Oct 1, 2006
656
657
close_audio_device(device);
return 0;
Jul 10, 2006
Jul 10, 2006
658
}
Oct 4, 2006
Oct 4, 2006
659
device->opened = 1;
Jul 10, 2006
Jul 10, 2006
660
661
/* If the audio driver changes the buffer size, accept it */
Oct 1, 2006
Oct 1, 2006
662
663
664
if (device->spec.samples != desired.samples) {
desired.samples = device->spec.samples;
SDL_CalculateAudioSpec(&device->spec);
Jul 10, 2006
Jul 10, 2006
665
666
667
}
/* Allocate a fake audio memory buffer */
Oct 1, 2006
Oct 1, 2006
668
669
670
device->fake_stream = SDL_AllocAudioMem(device->spec.size);
if (device->fake_stream == NULL) {
close_audio_device(device);
Jul 10, 2006
Jul 10, 2006
671
SDL_OutOfMemory();
Oct 1, 2006
Oct 1, 2006
672
return 0;
Jul 10, 2006
Jul 10, 2006
673
674
675
676
}
/* See if we need to do any conversion */
if (obtained != NULL) {
Oct 1, 2006
Oct 1, 2006
677
678
679
680
SDL_memcpy(obtained, &device->spec, sizeof(SDL_AudioSpec));
} else if (desired.freq != device->spec.freq ||
desired.format != device->spec.format ||
desired.channels != device->spec.channels) {
Jul 10, 2006
Jul 10, 2006
681
/* Build an audio conversion block */
Oct 1, 2006
Oct 1, 2006
682
683
684
685
686
687
688
if (SDL_BuildAudioCVT(&device->convert,
desired.format, desired.channels,
desired.freq,
device->spec.format, device->spec.channels,
device->spec.freq) < 0) {
close_audio_device(device);
return 0;
Jul 10, 2006
Jul 10, 2006
689
}
Oct 1, 2006
Oct 1, 2006
690
691
692
693
694
695
696
if (device->convert.needed) {
device->convert.len = desired.size;
device->convert.buf =
(Uint8 *) SDL_AllocAudioMem(device->convert.len *
device->convert.len_mult);
if (device->convert.buf == NULL) {
close_audio_device(device);
Jul 10, 2006
Jul 10, 2006
697
SDL_OutOfMemory();
Oct 1, 2006
Oct 1, 2006
698
return 0;
Jul 10, 2006
Jul 10, 2006
699
700
701
}
}
}
Oct 1, 2006
Oct 1, 2006
702
703
704
705
706
707
708
709
710
711
712
713
714
715
716
/* Find an available device ID and store the structure... */
for (id = min_id-1; id < SDL_arraysize(open_devices); id++) {
if (open_devices[id] == NULL) {
open_devices[id] = device;
break;
}
}
if (id == SDL_arraysize(open_devices)) {
SDL_SetError("Too many open audio devices");
close_audio_device(device);
return 0;
}
Jul 10, 2006
Jul 10, 2006
717
/* Start the audio thread if necessary */
Oct 4, 2006
Oct 4, 2006
718
if (!current_audio.impl.ProvidesOwnCallbackThread) {
Jul 10, 2006
Jul 10, 2006
719
/* Start the audio thread */
Oct 1, 2006
Oct 1, 2006
720
/* !!! FIXME: this is nasty. */
Feb 21, 2006
Feb 21, 2006
721
#if (defined(__WIN32__) && !defined(_WIN32_WCE)) && !defined(HAVE_LIBC)
Feb 6, 2006
Feb 6, 2006
722
#undef SDL_CreateThread
Oct 1, 2006
Oct 1, 2006
723
device->thread = SDL_CreateThread(SDL_RunAudio, device, NULL, NULL);
Feb 6, 2006
Feb 6, 2006
724
#else
Oct 1, 2006
Oct 1, 2006
725
device->thread = SDL_CreateThread(SDL_RunAudio, device);
Jul 10, 2006
Jul 10, 2006
726
#endif
Oct 1, 2006
Oct 1, 2006
727
728
if (device->thread == NULL) {
SDL_CloseAudioDevice(id+1);
Jul 10, 2006
Jul 10, 2006
729
SDL_SetError("Couldn't create audio thread");
Oct 1, 2006
Oct 1, 2006
730
return 0;
Jul 10, 2006
Jul 10, 2006
731
732
}
}
Oct 4, 2006
Oct 4, 2006
733
Oct 1, 2006
Oct 1, 2006
734
return id+1;
Apr 26, 2001
Apr 26, 2001
735
736
}
Oct 1, 2006
Oct 1, 2006
737
738
739
int
SDL_OpenAudio(const SDL_AudioSpec * desired, SDL_AudioSpec * obtained)
Apr 26, 2001
Apr 26, 2001
740
{
Oct 1, 2006
Oct 1, 2006
741
SDL_AudioDeviceID id = 0;
Jul 10, 2006
Jul 10, 2006
742
Oct 1, 2006
Oct 1, 2006
743
744
745
746
747
748
749
750
751
752
753
754
755
756
757
758
759
760
761
762
763
764
765
766
767
768
769
770
771
772
773
774
775
776
777
778
779
/* Start up the audio driver, if necessary. This is legacy behaviour! */
if (!SDL_WasInit(SDL_INIT_AUDIO)) {
if (SDL_InitSubSystem(SDL_INIT_AUDIO) < 0) {
return (-1);
}
}
/* SDL_OpenAudio() is legacy and can only act on Device ID #1. */
if (open_devices[0] != NULL) {
SDL_SetError("Audio device is already opened");
return (-1);
}
id = open_audio_device(NULL, 0, desired, obtained, 1);
if (id > 1) { /* this should never happen in theory... */
SDL_CloseAudioDevice(id);
SDL_SetError("Internal error"); /* MUST be Device ID #1! */
return (-1);
}
return ((id == 0) ? -1 : 0);
}
SDL_AudioDeviceID
SDL_OpenAudioDevice(const char *device, int iscapture,
const SDL_AudioSpec *desired, SDL_AudioSpec *obtained)
{
return open_audio_device(device, iscapture, desired, obtained, 2);
}
SDL_audiostatus
SDL_GetAudioDeviceStatus(SDL_AudioDeviceID devid)
{
SDL_AudioDevice *device = get_audio_device(devid);
SDL_audiostatus status = SDL_AUDIO_STOPPED;
if (device && device->enabled) {
if (device->paused) {
Jul 10, 2006
Jul 10, 2006
780
781
782
783
784
785
status = SDL_AUDIO_PAUSED;
} else {
status = SDL_AUDIO_PLAYING;
}
}
return (status);
Apr 26, 2001
Apr 26, 2001
786
787
}
Oct 1, 2006
Oct 1, 2006
788
789
790
791
792
793
794
795
796
797
798
799
800
801
802
803
SDL_audiostatus
SDL_GetAudioStatus(void)
{
return SDL_GetAudioDeviceStatus(1);
}
void
SDL_PauseAudioDevice(SDL_AudioDeviceID devid, int pause_on)
{
SDL_AudioDevice *device = get_audio_device(devid);
if (device) {
device->paused = pause_on;
}
}
Jul 10, 2006
Jul 10, 2006
804
805
void
SDL_PauseAudio(int pause_on)
Apr 26, 2001
Apr 26, 2001
806
{
Oct 1, 2006
Oct 1, 2006
807
808
809
SDL_PauseAudioDevice(1, pause_on);
}
Apr 26, 2001
Apr 26, 2001
810
Oct 1, 2006
Oct 1, 2006
811
812
813
void
SDL_LockAudioDevice(SDL_AudioDeviceID devid)
{
Oct 4, 2006
Oct 4, 2006
814
815
816
817
/* Obtain a lock on the mixing buffers */
SDL_AudioDevice *device = get_audio_device(devid);
if (device) {
current_audio.impl.LockDevice(device);
Jul 10, 2006
Jul 10, 2006
818
}
Apr 26, 2001
Apr 26, 2001
819
820
}
Jul 10, 2006
Jul 10, 2006
821
822
void
SDL_LockAudio(void)
Apr 26, 2001
Apr 26, 2001
823
{
Oct 1, 2006
Oct 1, 2006
824
825
SDL_LockAudioDevice(1);
}
Apr 26, 2001
Apr 26, 2001
826
Oct 1, 2006
Oct 1, 2006
827
828
829
void
SDL_UnlockAudioDevice(SDL_AudioDeviceID devid)
{
Oct 4, 2006
Oct 4, 2006
830
831
832
833
/* Obtain a lock on the mixing buffers */
SDL_AudioDevice *device = get_audio_device(devid);
if (device) {
current_audio.impl.UnlockDevice(device);
Jul 10, 2006
Jul 10, 2006
834
}
Apr 26, 2001
Apr 26, 2001
835
836
}
Jul 10, 2006
Jul 10, 2006
837
838
void
SDL_UnlockAudio(void)
Apr 26, 2001
Apr 26, 2001
839
{
Oct 1, 2006
Oct 1, 2006
840
841
SDL_UnlockAudioDevice(1);
}
Apr 26, 2001
Apr 26, 2001
842
Oct 1, 2006
Oct 1, 2006
843
844
845
846
847
848
849
void
SDL_CloseAudioDevice(SDL_AudioDeviceID devid)
{
SDL_AudioDevice *device = get_audio_device(devid);
if (device) {
close_audio_device(device);
open_devices[devid-1] = NULL;
Jul 10, 2006
Jul 10, 2006
850
}
Apr 26, 2001
Apr 26, 2001
851
852
}
Jul 10, 2006
Jul 10, 2006
853
854
void
SDL_CloseAudio(void)
Apr 26, 2001
Apr 26, 2001
855
{
Oct 1, 2006
Oct 1, 2006
856
SDL_CloseAudioDevice(1);
Apr 26, 2001
Apr 26, 2001
857
858
}
Jul 10, 2006
Jul 10, 2006
859
860
void
SDL_AudioQuit(void)
Apr 26, 2001
Apr 26, 2001
861
{
Oct 1, 2006
Oct 1, 2006
862
863
864
SDL_AudioDeviceID i;
for (i = 0; i < SDL_arraysize(open_devices); i++) {
SDL_CloseAudioDevice(i);
Jul 10, 2006
Jul 10, 2006
865
}
Oct 1, 2006
Oct 1, 2006
866
Oct 3, 2006
Oct 3, 2006
867
/* Free the driver data */
Oct 3, 2006
Oct 3, 2006
868
current_audio.impl.Deinitialize();
Oct 1, 2006
Oct 1, 2006
869
870
SDL_memset(&current_audio, '\0', sizeof (current_audio));
SDL_memset(open_devices, '\0', sizeof (open_devices));
Apr 26, 2001
Apr 26, 2001
871
872
}
Aug 24, 2006
Aug 24, 2006
873
#define NUM_FORMATS 10
Apr 26, 2001
Apr 26, 2001
874
875
static int format_idx;
static int format_idx_sub;
Aug 24, 2006
Aug 24, 2006
876
static SDL_AudioFormat format_list[NUM_FORMATS][NUM_FORMATS] = {
Jul 10, 2006
Jul 10, 2006
877
{AUDIO_U8, AUDIO_S8, AUDIO_S16LSB, AUDIO_S16MSB, AUDIO_U16LSB,
Aug 24, 2006
Aug 24, 2006
878
AUDIO_U16MSB, AUDIO_S32LSB, AUDIO_S32MSB, AUDIO_F32LSB, AUDIO_F32MSB},
Jul 10, 2006
Jul 10, 2006
879
{AUDIO_S8, AUDIO_U8, AUDIO_S16LSB, AUDIO_S16MSB, AUDIO_U16LSB,
Aug 24, 2006
Aug 24, 2006
880
881
882
883
884
885
886
887
888
AUDIO_U16MSB, AUDIO_S32LSB, AUDIO_S32MSB, AUDIO_F32LSB, AUDIO_F32MSB},
{AUDIO_S16LSB, AUDIO_S16MSB, AUDIO_U16LSB, AUDIO_U16MSB, AUDIO_S32LSB,
AUDIO_S32MSB, AUDIO_F32LSB, AUDIO_F32MSB, AUDIO_U8, AUDIO_S8},
{AUDIO_S16MSB, AUDIO_S16LSB, AUDIO_U16MSB, AUDIO_U16LSB, AUDIO_S32MSB,
AUDIO_S32LSB, AUDIO_F32MSB, AUDIO_F32LSB, AUDIO_U8, AUDIO_S8},
{AUDIO_U16LSB, AUDIO_U16MSB, AUDIO_S16LSB, AUDIO_S16MSB, AUDIO_S32LSB,
AUDIO_S32MSB, AUDIO_F32LSB, AUDIO_F32MSB, AUDIO_U8, AUDIO_S8},
{AUDIO_U16MSB, AUDIO_U16LSB, AUDIO_S16MSB, AUDIO_S16LSB, AUDIO_S32MSB,
AUDIO_S32LSB, AUDIO_F32MSB, AUDIO_F32LSB, AUDIO_U8, AUDIO_S8},
Aug 31, 2006
Aug 31, 2006
889
890
891
892
893
894
895
896
{AUDIO_S32LSB, AUDIO_S32MSB, AUDIO_F32LSB, AUDIO_F32MSB, AUDIO_S16LSB,
AUDIO_S16MSB, AUDIO_U16LSB, AUDIO_U16MSB, AUDIO_U8, AUDIO_S8},
{AUDIO_S32MSB, AUDIO_S32LSB, AUDIO_F32MSB, AUDIO_F32LSB, AUDIO_S16MSB,
AUDIO_S16LSB, AUDIO_U16MSB, AUDIO_U16LSB, AUDIO_U8, AUDIO_S8},
{AUDIO_F32LSB, AUDIO_F32MSB, AUDIO_S32LSB, AUDIO_S32MSB, AUDIO_S16LSB,
AUDIO_S16MSB, AUDIO_U16LSB, AUDIO_U16MSB, AUDIO_U8, AUDIO_S8},
{AUDIO_F32MSB, AUDIO_F32LSB, AUDIO_S32MSB, AUDIO_S32LSB, AUDIO_S16MSB,
AUDIO_S16LSB, AUDIO_U16MSB, AUDIO_U16LSB, AUDIO_U8, AUDIO_S8},
Apr 26, 2001
Apr 26, 2001
897
898
};
Aug 24, 2006
Aug 24, 2006
899
900
SDL_AudioFormat
SDL_FirstAudioFormat(SDL_AudioFormat format)
Apr 26, 2001
Apr 26, 2001
901
{
Jul 10, 2006
Jul 10, 2006
902
903
904
905
906
907
908
for (format_idx = 0; format_idx < NUM_FORMATS; ++format_idx) {
if (format_list[format_idx][0] == format) {
break;
}
}
format_idx_sub = 0;
return (SDL_NextAudioFormat());
Apr 26, 2001
Apr 26, 2001
909
910
}
Aug 24, 2006
Aug 24, 2006
911
SDL_AudioFormat
Jul 10, 2006
Jul 10, 2006
912
SDL_NextAudioFormat(void)
Apr 26, 2001
Apr 26, 2001
913
{
Jul 10, 2006
Jul 10, 2006
914
915
916
917
if ((format_idx == NUM_FORMATS) || (format_idx_sub == NUM_FORMATS)) {
return (0);
}
return (format_list[format_idx][format_idx_sub++]);
Apr 26, 2001
Apr 26, 2001
918
919
}
Jul 10, 2006
Jul 10, 2006
920
921
void
SDL_CalculateAudioSpec(SDL_AudioSpec * spec)
Apr 26, 2001
Apr 26, 2001
922
{
Jul 10, 2006
Jul 10, 2006
923
924
925
926
927
928
929
930
switch (spec->format) {
case AUDIO_U8:
spec->silence = 0x80;
break;
default:
spec->silence = 0x00;
break;
}
Oct 1, 2006
Oct 1, 2006
931
spec->size = SDL_AUDIO_BITSIZE(spec->format) / 8;
Jul 10, 2006
Jul 10, 2006
932
933
spec->size *= spec->channels;
spec->size *= spec->samples;
Apr 26, 2001
Apr 26, 2001
934
}
Jul 10, 2006
Jul 10, 2006
935
Oct 1, 2006
Oct 1, 2006
936
937
938
939
940
941
942
943
944
945
946
947
948
949
950
951
952
953
954
955
956
/*
* Moved here from SDL_mixer.c, since it relies on internals of an opened
* audio device (and is deprecated, by the way!).
*/
void
SDL_MixAudio(Uint8 * dst, const Uint8 * src, Uint32 len, int volume)
{
/* Mix the user-level audio format */
SDL_AudioDevice *device = get_audio_device(1);
if (device != NULL) {
SDL_AudioFormat format;
if (device->convert.needed) {
format = device->convert.src_format;
} else {
format = device->spec.format;
}
SDL_MixAudioFormat(dst, src, format, len, volume);
}
}
Jul 10, 2006
Jul 10, 2006
957
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