mirror of
https://github.com/dborth/snes9xgx.git
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167 lines
4.0 KiB
C++
167 lines
4.0 KiB
C++
/****************************************************************************
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* Snes9x Nintendo Wii/Gamecube Port
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*
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* softdev July 2006
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* Tantric 2008-2010
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*
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* audio.cpp
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*
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* Audio driver
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* Audio is fixed to 32Khz/16bit/Stereo
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***************************************************************************/
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#include <gccore.h>
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#include <ogcsys.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <asndlib.h>
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#include "video.h"
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#include "snes9x/snes9x.h"
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#include "snes9x/memmap.h"
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#include "snes9x/cpuexec.h"
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#include "snes9x/ppu.h"
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#include "snes9x/apu/apu.h"
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#include "snes9x/display.h"
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#include "snes9x/gfx.h"
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#include "snes9x/spc7110.h"
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#include "snes9x/controls.h"
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extern int ConfigRequested;
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/*** Double buffered audio ***/
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#define AUDIOBUFFER 2048
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static unsigned char soundbuffer[2][AUDIOBUFFER] __attribute__ ((__aligned__ (32)));
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static int whichab = 0; /*** Audio buffer flip switch ***/
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#define AUDIOSTACK 16384
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static lwpq_t audioqueue;
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static lwp_t athread;
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static uint8 astack[AUDIOSTACK];
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static mutex_t audiomutex = LWP_MUTEX_NULL;
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/****************************************************************************
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* Audio Threading
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***************************************************************************/
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static void *
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AudioThread (void *arg)
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{
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LWP_InitQueue (&audioqueue);
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while (1)
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{
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if (ConfigRequested)
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memset (soundbuffer[whichab], 0, AUDIOBUFFER);
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else
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{
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LWP_MutexLock(audiomutex);
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S9xMixSamples (soundbuffer[whichab], AUDIOBUFFER >> 1);
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LWP_MutexUnlock(audiomutex);
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}
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DCFlushRange (soundbuffer[whichab], AUDIOBUFFER);
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LWP_ThreadSleep (audioqueue);
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}
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return NULL;
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}
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/****************************************************************************
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* MixSamples
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* This continually calls S9xMixSamples On each DMA Completion
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***************************************************************************/
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static void
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GCMixSamples ()
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{
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if (!ConfigRequested)
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{
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whichab ^= 1;
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AUDIO_InitDMA ((u32) soundbuffer[whichab], AUDIOBUFFER);
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LWP_ThreadSignal (audioqueue);
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}
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}
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static void FinalizeSamplesCallback (void *data)
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{
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LWP_MutexLock(audiomutex);
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S9xFinalizeSamples();
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LWP_MutexUnlock(audiomutex);
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}
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/****************************************************************************
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* InitAudio
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***************************************************************************/
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void
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InitAudio ()
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{
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#ifdef NO_SOUND
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AUDIO_Init (NULL);
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AUDIO_SetDSPSampleRate(AI_SAMPLERATE_32KHZ);
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AUDIO_RegisterDMACallback(GCMixSamples);
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#else
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ASND_Init();
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#endif
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LWP_MutexInit(&audiomutex, false);
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LWP_CreateThread (&athread, AudioThread, NULL, astack, AUDIOSTACK, 70);
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}
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/****************************************************************************
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* SwitchAudioMode
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*
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* Switches between menu sound and emulator sound
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***************************************************************************/
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void
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SwitchAudioMode(int mode)
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{
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if(mode == 0) // emulator
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{
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#ifndef NO_SOUND
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ASND_Pause(1);
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AUDIO_StopDMA();
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AUDIO_SetDSPSampleRate(AI_SAMPLERATE_32KHZ);
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AUDIO_RegisterDMACallback(GCMixSamples);
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#endif
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memset(soundbuffer[0],0,AUDIOBUFFER);
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memset(soundbuffer[1],0,AUDIOBUFFER);
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DCFlushRange(soundbuffer[0],AUDIOBUFFER);
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DCFlushRange(soundbuffer[1],AUDIOBUFFER);
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AUDIO_InitDMA((u32)soundbuffer[whichab],AUDIOBUFFER);
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AUDIO_StartDMA();
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S9xSetSamplesAvailableCallback(FinalizeSamplesCallback, NULL);
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}
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else // menu
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{
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S9xSetSamplesAvailableCallback(NULL, NULL);
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#ifndef NO_SOUND
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ASND_Init();
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ASND_Pause(0);
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#else
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AUDIO_StopDMA();
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#endif
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}
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}
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/****************************************************************************
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* ShutdownAudio
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*
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* Shuts down audio subsystem. Useful to avoid unpleasant sounds if a
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* crash occurs during shutdown.
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***************************************************************************/
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void ShutdownAudio()
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{
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AUDIO_StopDMA();
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}
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/****************************************************************************
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* AudioStart
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*
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* Called to kick off the Audio Queue
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***************************************************************************/
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void
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AudioStart ()
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{
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GCMixSamples ();
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}
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