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https://github.com/nzp-team/fteqw.git
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6bea300f30
git-svn-id: https://svn.code.sf.net/p/fteqw/code/trunk@5728 fc73d0e0-1445-4013-8a0c-d673dee63da5
228 lines
5.7 KiB
C
228 lines
5.7 KiB
C
#include "quakedef.h"
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#ifdef AUDIO_PULSE
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#if 0
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#include <pulse/simple.h>
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#else
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typedef struct pa_simple pa_simple;
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typedef enum pa_stream_direction {PA_STREAM_PLAYBACK=1} pa_stream_direction_t;
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typedef enum pa_sample_format {
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PA_SAMPLE_U8,
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PA_SAMPLE_ALAW,
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PA_SAMPLE_ULAW,
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PA_SAMPLE_S16LE,
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PA_SAMPLE_S16BE,
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PA_SAMPLE_FLOAT32LE,
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PA_SAMPLE_FLOAT32BE,
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PA_SAMPLE_S32LE,
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PA_SAMPLE_S32BE,
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PA_SAMPLE_S24LE,
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PA_SAMPLE_S24BE,
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PA_SAMPLE_S24_32LE,
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PA_SAMPLE_S24_32BE,
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PA_SAMPLE_MAX,
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PA_SAMPLE_INVALID = -1
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} pa_sample_format_t;
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typedef struct pa_sample_spec {
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pa_sample_format_t format;
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uint32_t rate;
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uint8_t channels;
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} pa_sample_spec;
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typedef struct pa_channel_map pa_channel_map;
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typedef struct pa_buffer_attr pa_buffer_attr;
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typedef uint64_t pa_usec_t;
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#if __BYTE_ORDER == __BIG_ENDIAN
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#define PA_SAMPLE_FLOAT32 PA_SAMPLE_FLOAT32BE
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#define PA_SAMPLE_S16NE PA_SAMPLE_S16BE
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#else
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#define PA_SAMPLE_FLOAT32 PA_SAMPLE_FLOAT32LE
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#define PA_SAMPLE_S16NE PA_SAMPLE_S16LE
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#endif
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#endif
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static pa_simple *(*qpa_simple_new)(const char *server,const char *name,pa_stream_direction_t dir, const char *dev, const char *stream_name, const pa_sample_spec *ss, const pa_channel_map *map, const pa_buffer_attr *attr, int *error);
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static pa_usec_t (*qpa_simple_get_latency)(pa_simple *s, int *error);
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static int (*qpa_simple_write)(pa_simple *s, const void *data, size_t bytes, int *error);
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static void (*qpa_simple_free)(pa_simple *s);
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static qboolean Pulse_Init(void)
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{
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static qboolean tried;
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static void *pulsemodule;
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static dllfunction_t funcs[] =
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{
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{(void**)&qpa_simple_new, "pa_simple_new"},
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{(void**)&qpa_simple_get_latency, "pa_simple_get_latency"},
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{(void**)&qpa_simple_write, "pa_simple_write"},
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{(void**)&qpa_simple_free, "pa_simple_free"},
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{NULL, NULL}
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};
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if (COM_CheckParm("-nopulse"))
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return false;
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if (!tried)
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{
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tried = true;
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pulsemodule = Sys_LoadLibrary("libpulse-simple.so.0", funcs);
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}
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return pulsemodule!=NULL;
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}
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static unsigned int Pulse_GetDMAPos(soundcardinfo_t *sc)
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{
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sc->sn.samplepos = sc->snd_sent / sc->sn.samplebytes;
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return sc->sn.samplepos;
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}
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static void Pulse_Submit(soundcardinfo_t *sc, int start, int end)
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{
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}
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static void Pulse_Shutdown(soundcardinfo_t *sc)
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{
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sc->selfpainting = false;
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if (sc->thread)
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Sys_WaitOnThread(sc->thread);
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sc->thread = NULL;
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*sc->name = '\0';
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}
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static void *Pulse_Lock(soundcardinfo_t *sc, unsigned int *sampidx)
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{
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return sc->sn.buffer;
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}
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static void Pulse_Unlock(soundcardinfo_t *sc, void *buffer)
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{
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}
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static int Pulse_Thread(void *arg)
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{
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char buffer[256];
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soundcardinfo_t *sc = arg;
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void *cond = sc->handle;
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int err = 0;
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int showlatency = 64;
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pa_simple *pulse;
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pa_sample_spec ss;
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ss.rate = sc->sn.speed;
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switch(sc->sn.sampleformat)
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{
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case QSF_INVALID:
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case QSF_EXTERNALMIXER:
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case QSF_S8: //no signed 8bit formats here
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ss.format = PA_SAMPLE_INVALID;
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break;
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case QSF_U8:
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ss.format = PA_SAMPLE_U8;
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break;
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case QSF_S16:
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ss.format = PA_SAMPLE_S16NE;
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break;
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case QSF_F32:
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ss.format = PA_SAMPLE_FLOAT32;
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break;
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}
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ss.channels = sc->sn.numchannels;
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pulse = qpa_simple_new( NULL, // Use the default server.
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FULLENGINENAME, // Our application's name.
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PA_STREAM_PLAYBACK,
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NULL, // Use the default device.
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"Game Audio", // Description of our stream.
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&ss, // Our sample format.
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NULL, // Use default channel map
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NULL, // Use default buffering attributes.
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NULL // Ignore error code.
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);
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if (pulse)
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sc->selfpainting = true; //its going!
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Sys_LockConditional(cond);
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Sys_ConditionSignal(cond);
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Sys_UnlockConditional(cond);
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while(sc->selfpainting)
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{
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sc->sn.buffer = buffer;
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sc->sn.samples = sizeof(buffer)/sc->sn.samplebytes;
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sc->samplequeue = sc->sn.samples;
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S_MixerThread(sc);
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sc->snd_sent += sc->sn.samplebytes*sc->samplequeue;
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if (qpa_simple_write(pulse, buffer, sc->sn.samplebytes*sc->samplequeue, &err) < 0)
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{
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Con_Printf("pa_simple_write failed\n");
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sc->selfpainting = false; //some sort of error
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}
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if (showlatency > 0)
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if (--showlatency == 0)
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{ //we delay this print so that we have a chance of finding out the real value
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pa_usec_t latency = qpa_simple_get_latency(pulse, &err);
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Con_Printf("PulseAudio latency is about %.3f seconds\n", latency/1000000.0);
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}
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}
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if (pulse)
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qpa_simple_free(pulse);
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return 0;
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}
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static qboolean Pulse_InitCard(soundcardinfo_t *sc, const char *snddev)
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{ //FIXME: implement snd_multipledevices somehow.
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if (!Pulse_Init())
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return false;
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sc->inactive_sound = true; //linux sound devices always play sound, even when we're not the active app...
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sc->sn.samplebytes = 4;
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sc->sn.sampleformat = QSF_F32;
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sc->sn.buffer = NULL;
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sc->sn.samplepos = 0;
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sc->Submit = Pulse_Submit;
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sc->GetDMAPos = Pulse_GetDMAPos;
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sc->Lock = Pulse_Lock;
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sc->Unlock = Pulse_Unlock;
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sc->Shutdown = Pulse_Shutdown;
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sc->handle = Sys_CreateConditional();
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Sys_LockConditional(sc->handle);
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sc->thread = Sys_CreateThread("pulse", Pulse_Thread, sc, THREADP_HIGHEST, 0);
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if (sc->thread)
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{
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if (!Sys_ConditionWait(sc->handle))
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sc->selfpainting = false;
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//thread is up and running now.
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}
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Sys_UnlockConditional(sc->handle);
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Sys_DestroyConditional(sc->handle);
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if (!sc->selfpainting)
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{ //err, thread signalled itself to die?
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Pulse_Shutdown(sc);
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return false;
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}
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return true;
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}
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#define SDRVNAME "Pulse"
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static qboolean QDECL Pulse_Enumerate(void (QDECL *cb) (const char *drivername, const char *devicecode, const char *readablename))
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{
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if (!Pulse_Init())
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return true; //sucessfully enumerated no devices
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return false; //not implemented (we'll get a default device only)
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}
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sounddriver_t Pulse_Output =
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{
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SDRVNAME,
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Pulse_InitCard,
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Pulse_Enumerate
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};
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#endif
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