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itgmania212121/stepmania/src/arch/Sound/RageSoundDriver_ALSA9_Software.cpp
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#include "global.h"
#include "RageSoundDriver_ALSA9_Software.h"
#include "RageLog.h"
#include "RageSound.h"
#include "RageSoundManager.h"
#include "RageUtil.h"
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#include "RageTimer.h"
#include "ALSA9Dynamic.h"
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#include "archutils/Unix/GetSysInfo.h"
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#include <sys/time.h>
#include <sys/resource.h>
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const int channels = 2;
const int samplerate = 44100;
const int samples_per_frame = channels;
const int bytes_per_frame = sizeof(Sint16) * samples_per_frame;
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/* Linux 2.6 has a fine-grained scheduler; use a small buffer size. Otherwise, use a larger one. */
static const unsigned max_writeahead_linux_26 = 512;
static const unsigned safe_writeahead = 1024*8;
static unsigned max_writeahead;
const int num_chunks = 8;
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int RageSound_ALSA9_Software::MixerThread_start(void *p)
{
((RageSound_ALSA9_Software *) p)->MixerThread();
return 0;
}
void RageSound_ALSA9_Software::MixerThread()
{
/* SOUNDMAN will be set once RageSoundManager's ctor returns and
* assigns it; we might get here before that happens, though. */
while(!SOUNDMAN && !shutdown) SDL_Delay(10);
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setpriority( PRIO_PROCESS, getpid(), -15 );
// RageTimer UnderrunTest;
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while(!shutdown)
{
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while( GetData() )
;
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const float delay_ms = 1000 * float(max_writeahead) / samplerate;
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SDL_Delay( int(delay_ms) / 4 );
// if( UnderrunTest.PeekDeltaTime() > 10 )
// {
// UnderrunTest.GetDeltaTime();
// SDL_Delay( 250 );
// }
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}
}
/* Returns the number of frames processed */
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bool RageSound_ALSA9_Software::GetData()
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{
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const int chunksize = max_writeahead / num_chunks;
const int frames_to_fill = min( chunksize, pcm->GetNumFramesToFill( max_writeahead ) );
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if( frames_to_fill <= 0 )
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return false;
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/* Sint16 represents a single sample
* each frame contains one sample per channel
*/
static Sint16 *buf = NULL;
if (!buf)
buf = new Sint16[max_writeahead*samples_per_frame*4];
static SoundMixBuffer mix;
mix.SetVolume( SOUNDMAN->GetMixVolume() );
LockMutex L(SOUNDMAN->lock);
for(unsigned i = 0; i < sounds.size(); ++i)
{
if(sounds[i]->stopping)
continue;
/* Call the callback.
* Get the units straight,
* <bytes> = GetPCM(<bytes*>, <bytes>, <frames>)
*/
unsigned got = sounds[i]->snd->GetPCM( (char *) buf, frames_to_fill*bytes_per_frame, pcm->GetPlayPos() ) / sizeof(Sint16);
mix.write((Sint16 *) buf, got);
if( int(got) < frames_to_fill )
{
/* This sound is finishing. */
sounds[i]->stopping = true;
}
}
L.Unlock();
memset( buf, 0, sizeof(Sint16) * frames_to_fill * samples_per_frame );
mix.read( buf );
pcm->Write( buf, frames_to_fill );
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return true;
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}
void RageSound_ALSA9_Software::StartMixing(RageSound *snd)
{
sound *s = new sound;
s->snd = snd;
LockMutex L(SOUNDMAN->lock);
sounds.push_back(s);
}
void RageSound_ALSA9_Software::Update(float delta)
{
LockMutex L(SOUNDMAN->lock);
/* SoundStopped might erase sounds out from under us, so make a copy
* of the sound list. */
vector<sound *> snds = sounds;
for(unsigned i = 0; i < snds.size(); ++i)
{
if(!sounds[i]->stopping) continue;
if(GetPosition(snds[i]->snd) < sounds[i]->flush_pos)
continue; /* stopping but still flushing */
/* This sound is done. */
snds[i]->snd->StopPlaying();
}
}
void RageSound_ALSA9_Software::StopMixing(RageSound *snd)
{
LockMutex L(SOUNDMAN->lock);
/* Find the sound. */
unsigned i;
for(i = 0; i < sounds.size(); ++i)
if(sounds[i]->snd == snd) break;
if(i == sounds.size())
{
LOG->Trace("not stopping a sound because it's not playing");
return;
}
delete sounds[i];
sounds.erase(sounds.begin()+i, sounds.begin()+i+1);
}
int RageSound_ALSA9_Software::GetPosition(const RageSound *snd) const
{
return pcm->GetPosition();
}
RageSound_ALSA9_Software::RageSound_ALSA9_Software()
{
CString err = LoadALSA();
if( err != "" )
RageException::ThrowNonfatal("Driver unusable: %s", err.c_str());
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try {
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shutdown = false;
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max_writeahead = safe_writeahead;
CString sys;
int vers;
GetKernel( sys, vers );
LOG->Trace( "OS: %s ver %06x", sys.c_str(), vers );
if( sys == "Linux" && vers >= 0x020600 )
max_writeahead = max_writeahead_linux_26;
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pcm = new Alsa9Buf( Alsa9Buf::HW_DONT_CARE, channels, samplerate );
MixingThread.SetName( "RageSound_ALSA9_Software" );
MixingThread.Create( MixerThread_start, this );
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} catch(...) {
UnloadALSA();
throw;
}
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}
RageSound_ALSA9_Software::~RageSound_ALSA9_Software()
{
/* Signal the mixing thread to quit. */
shutdown = true;
LOG->Trace("Shutting down mixer thread ...");
MixingThread.Wait();
LOG->Trace("Mixer thread shut down.");
delete pcm;
UnloadALSA();
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}
float RageSound_ALSA9_Software::GetPlayLatency() const
{
return float(max_writeahead)/samplerate;
}
/*
* Copyright (c) 2002 by the person(s) listed below. All rights reserved.
*
* Glenn Maynard (RageSoundDriver_WaveOut)
*/