#include "global.h" #include "RageSoundDriver_ALSA9_Software.h" #include "RageLog.h" #include "RageSound.h" #include "RageSoundManager.h" #include "RageUtil.h" #include "RageTimer.h" #include "ALSA9Dynamic.h" #include "PrefsManager.h" #include "archutils/Unix/GetSysInfo.h" #include #include static const int channels = 2; int samplerate = 44100; static const int samples_per_frame = channels; static const int bytes_per_frame = sizeof(Sint16) * samples_per_frame; /* Linux 2.6 has a fine-grained scheduler. We can almost always use a smaller buffer * size than in 2.4. XXX: Some cards can handle smaller buffer sizes than others. */ static const unsigned max_writeahead_linux_26 = 512; static const unsigned safe_writeahead = 1024*4; static unsigned max_writeahead; const int num_chunks = 8; 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); setpriority( PRIO_PROCESS, 0, -15 ); // RageTimer UnderrunTest; while(!shutdown) { while( !shutdown && GetData() ) ; const float delay_ms = 1000 * float(max_writeahead) / samplerate; SDL_Delay( int(delay_ms) / 4 ); // if( UnderrunTest.PeekDeltaTime() > 10 ) // { // UnderrunTest.GetDeltaTime(); // SDL_Delay( 250 ); // } } } /* Returns the number of frames processed */ bool RageSound_ALSA9_Software::GetData() { const int chunksize = max_writeahead / num_chunks; const int frames_to_fill = pcm->GetNumFramesToFill( max_writeahead, chunksize ); if( frames_to_fill <= 0 ) return false; static Sint16 *buf = NULL; if (!buf) buf = new Sint16[max_writeahead*samples_per_frame]; const int64_t play_pos = pcm->GetPlayPos(); const int64_t cur_play_pos = pcm->GetPosition(); this->Mix( buf, frames_to_fill, play_pos, cur_play_pos ); pcm->Write( buf, frames_to_fill ); return true; } int64_t RageSound_ALSA9_Software::GetPosition(const RageSoundBase *snd) const { return pcm->GetPosition(); } void RageSound_ALSA9_Software::SetupDecodingThread() { setpriority( PRIO_PROCESS, 0, -5 ); } RageSound_ALSA9_Software::RageSound_ALSA9_Software() { CString err = LoadALSA(); if( err != "" ) RageException::ThrowNonfatal("Driver unusable: %s", err.c_str()); try { shutdown = false; max_writeahead = safe_writeahead; CString sys; int vers; GetKernel( sys, vers ); LOG->Trace( "OS: %s ver %06i", sys.c_str(), vers ); if( sys == "Linux" && vers >= 20600 ) max_writeahead = max_writeahead_linux_26; if( PREFSMAN->m_iSoundWriteAhead ) max_writeahead = PREFSMAN->m_iSoundWriteAhead; pcm = new Alsa9Buf( Alsa9Buf::HW_DONT_CARE, channels ); samplerate = pcm->FindSampleRate( samplerate ); pcm->SetSampleRate( samplerate ); LOG->Info( "ALSA: Software mixing at %ihz", samplerate ); MixingThread.SetName( "RageSound_ALSA9_Software" ); MixingThread.Create( MixerThread_start, this ); } catch(...) { UnloadALSA(); throw; } } 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(); } float RageSound_ALSA9_Software::GetPlayLatency() const { return float(max_writeahead)/samplerate; } int RageSound_ALSA9_Software::GetSampleRate( int rate ) const { return samplerate; } /* * Copyright (c) 2002-2004 by the person(s) listed below. All rights reserved. * * Glenn Maynard */