furnace/src/engine/platform/pce.cpp

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#include "pce.h"
#include "../engine.h"
#include <math.h>
//#define rWrite(a,v) pendingWrites[a]=v;
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#define rWrite(a,v) if (!skipRegisterWrites) {writes.emplace(a,v); if (dumpWrites) {addWrite(a,v);} }
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#define chWrite(c,a,v) \
if (!skipRegisterWrites) { \
if (curChan!=c) { \
curChan=c; \
rWrite(0,curChan); \
} \
rWrite(a,v); \
}
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#define FREQ_BASE 1712.0f*2
void DivPlatformPCE::acquire(short* bufL, short* bufR, size_t start, size_t len) {
for (size_t h=start; h<start+len; h++) {
// PCM part
for (int i=0; i<6; i++) {
if (chan[i].pcm && chan[i].dacSample!=-1) {
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chan[i].dacPeriod-=6;
if (chan[i].dacPeriod<1) {
DivSample* s=parent->song.sample[chan[i].dacSample];
chWrite(i,0x07,0);
if (s->depth==8) {
chWrite(i,0x04,0xdf);
chWrite(i,0x06,(((unsigned char)s->rendData[chan[i].dacPos++]+0x80)>>3));
} else {
chWrite(i,0x04,0xdf);
chWrite(i,0x06,(((unsigned short)s->rendData[chan[i].dacPos++]+0x8000)>>11));
}
if (chan[i].dacPos>=s->rendLength) {
if (s->loopStart>=0 && s->loopStart<=(int)s->rendLength) {
chan[i].dacPos=s->loopStart;
} else {
chan[i].dacSample=-1;
}
}
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chan[i].dacPeriod+=chan[i].dacRate;
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}
}
}
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// PCE part
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cycles=0;
while (!writes.empty() && cycles<24) {
QueuedWrite w=writes.front();
pce->Write(cycles,w.addr,w.val);
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//cycles+=2;
writes.pop();
}
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memset(tempL,0,24*sizeof(int));
memset(tempR,0,24*sizeof(int));
pce->Update(24);
pce->ResetTS(0);
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tempL[0]=(tempL[0]>>1)+(tempL[0]>>2);
tempR[0]=(tempR[0]>>1)+(tempR[0]>>2);
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if (tempL[0]<-32768) tempL[0]=-32768;
if (tempL[0]>32767) tempL[0]=32767;
if (tempR[0]<-32768) tempR[0]=-32768;
if (tempR[0]>32767) tempR[0]=32767;
//printf("tempL: %d tempR: %d\n",tempL,tempR);
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bufL[h]=tempL[0];
bufR[h]=tempR[0];
}
}
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void DivPlatformPCE::updateWave(int ch) {
DivWavetable* wt=parent->getWave(chan[ch].wave);
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chWrite(ch,0x04,0x5f);
chWrite(ch,0x04,0x1f);
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for (int i=0; i<32; i++) {
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if (wt->max<1 || wt->len<1) {
chWrite(ch,0x06,0);
} else {
chWrite(ch,0x06,wt->data[i*wt->len/32]*31/wt->max);
}
}
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if (chan[ch].active) {
chWrite(ch,0x04,0x80|chan[ch].outVol);
}
}
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// TODO: in octave 6 the noise table changes to a tonal one
static unsigned char noiseFreq[12]={
4,13,15,18,21,23,25,27,29,31,0,2
};
void DivPlatformPCE::tick() {
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for (int i=0; i<6; i++) {
chan[i].std.next();
if (chan[i].std.hadVol) {
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chan[i].outVol=((chan[i].vol&31)*chan[i].std.vol)>>5;
chWrite(i,0x04,0x80|chan[i].outVol);
}
if (chan[i].std.hadArp) {
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if (!chan[i].inPorta) {
if (chan[i].std.arpMode) {
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chan[i].baseFreq=round(FREQ_BASE/pow(2.0f,((float)(chan[i].std.arp)/12.0f)));
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// noise
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chWrite(i,0x07,chan[i].noise?(0x80|noiseFreq[(chan[i].std.arp)%12]):0);
} else {
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chan[i].baseFreq=round(FREQ_BASE/pow(2.0f,((float)(chan[i].note+chan[i].std.arp-12)/12.0f)));
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chWrite(i,0x07,chan[i].noise?(0x80|noiseFreq[(chan[i].note+chan[i].std.arp-12)%12]):0);
}
}
chan[i].freqChanged=true;
} else {
if (chan[i].std.arpMode && chan[i].std.finishedArp) {
chan[i].baseFreq=round(FREQ_BASE/pow(2.0f,((float)(chan[i].note)/12.0f)));
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chWrite(i,0x07,chan[i].noise?(0x80|noiseFreq[chan[i].note%12]):0);
chan[i].freqChanged=true;
}
}
if (chan[i].std.hadWave) {
if (chan[i].wave!=chan[i].std.wave) {
chan[i].wave=chan[i].std.wave;
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updateWave(i);
if (!chan[i].keyOff) chan[i].keyOn=true;
}
}
if (chan[i].freqChanged || chan[i].keyOn || chan[i].keyOff) {
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//DivInstrument* ins=parent->getIns(chan[i].ins);
chan[i].freq=parent->calcFreq(chan[i].baseFreq,chan[i].pitch,true);
if (chan[i].furnaceDac) {
chan[i].dacRate=chan[i].freq;
}
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if (chan[i].freq>4095) chan[i].freq=4095;
if (chan[i].note>0x5d) chan[i].freq=0x01;
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chWrite(i,0x02,chan[i].freq&0xff);
chWrite(i,0x03,chan[i].freq>>8);
if (chan[i].keyOn) {
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if (chan[i].wave<0) {
chan[i].wave=0;
updateWave(i);
}
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//rWrite(16+i*5,0x80);
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//chWrite(i,0x04,0x80|chan[i].vol);
}
if (chan[i].keyOff) {
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chWrite(i,0x04,0);
}
if (chan[i].keyOn) chan[i].keyOn=false;
if (chan[i].keyOff) chan[i].keyOff=false;
chan[i].freqChanged=false;
}
}
}
int DivPlatformPCE::dispatch(DivCommand c) {
switch (c.cmd) {
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case DIV_CMD_NOTE_ON: {
DivInstrument* ins=parent->getIns(chan[c.chan].ins);
if (ins->type==DIV_INS_AMIGA) {
chan[c.chan].pcm=true;
} else if (chan[c.chan].furnaceDac) {
chan[c.chan].pcm=false;
}
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if (chan[c.chan].pcm) {
if (ins->type==DIV_INS_AMIGA) {
chan[c.chan].dacSample=ins->amiga.initSample;
if (chan[c.chan].dacSample<0 || chan[c.chan].dacSample>=parent->song.sampleLen) {
chan[c.chan].dacSample=-1;
break;
}
chan[c.chan].dacPos=0;
chan[c.chan].dacPeriod=0;
if (c.value!=DIV_NOTE_NULL) {
chan[c.chan].baseFreq=round(FREQ_BASE/pow(2.0f,((float)c.value/12.0f)));
chan[c.chan].freqChanged=true;
chan[c.chan].note=c.value;
}
chan[c.chan].active=true;
chan[c.chan].keyOn=true;
chan[c.chan].furnaceDac=true;
} else {
chan[c.chan].dacSample=12*sampleBank+c.value%12;
if (chan[c.chan].dacSample>=parent->song.sampleLen) {
chan[c.chan].dacSample=-1;
break;
}
chan[c.chan].dacPos=0;
chan[c.chan].dacPeriod=0;
chan[c.chan].dacRate=1789773/parent->song.sample[chan[c.chan].dacSample]->rate;
chan[c.chan].furnaceDac=false;
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}
break;
}
if (c.value!=DIV_NOTE_NULL) {
chan[c.chan].baseFreq=round(FREQ_BASE/pow(2.0f,((float)c.value/12.0f)));
chan[c.chan].freqChanged=true;
chan[c.chan].note=c.value;
chWrite(c.chan,0x07,chan[c.chan].noise?(0x80|noiseFreq[chan[c.chan].note%12]):0);
}
chan[c.chan].active=true;
chan[c.chan].keyOn=true;
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chWrite(c.chan,0x04,0x80|chan[c.chan].vol);
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chan[c.chan].std.init(ins);
break;
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}
case DIV_CMD_NOTE_OFF:
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chan[c.chan].dacSample=-1;
chan[c.chan].pcm=false;
chan[c.chan].active=false;
chan[c.chan].keyOff=true;
chan[c.chan].std.init(NULL);
break;
case DIV_CMD_INSTRUMENT:
if (chan[c.chan].ins!=c.value || c.value2==1) {
chan[c.chan].ins=c.value;
}
break;
case DIV_CMD_VOLUME:
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if (chan[c.chan].vol!=c.value) {
chan[c.chan].vol=c.value;
if (!chan[c.chan].std.hasVol) {
chan[c.chan].outVol=c.value;
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if (chan[c.chan].active) chWrite(c.chan,0x04,0x80|chan[c.chan].outVol);
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}
}
break;
case DIV_CMD_GET_VOLUME:
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if (chan[c.chan].std.hasVol) {
return chan[c.chan].vol;
}
return chan[c.chan].outVol;
break;
case DIV_CMD_PITCH:
chan[c.chan].pitch=c.value;
chan[c.chan].freqChanged=true;
break;
case DIV_CMD_WAVE:
chan[c.chan].wave=c.value;
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updateWave(c.chan);
chan[c.chan].keyOn=true;
break;
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case DIV_CMD_PCE_LFO_MODE:
rWrite(0x09,c.value);
break;
case DIV_CMD_PCE_LFO_SPEED:
rWrite(0x08,c.value);
break;
case DIV_CMD_NOTE_PORTA: {
int destFreq=round(FREQ_BASE/pow(2.0f,((float)c.value2/12.0f)));
bool return2=false;
if (destFreq>chan[c.chan].baseFreq) {
chan[c.chan].baseFreq+=c.value;
if (chan[c.chan].baseFreq>=destFreq) {
chan[c.chan].baseFreq=destFreq;
return2=true;
}
} else {
chan[c.chan].baseFreq-=c.value;
if (chan[c.chan].baseFreq<=destFreq) {
chan[c.chan].baseFreq=destFreq;
return2=true;
}
}
chan[c.chan].freqChanged=true;
if (return2) {
chan[c.chan].inPorta=false;
return 2;
}
break;
}
case DIV_CMD_STD_NOISE_MODE:
chan[c.chan].noise=c.value;
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chWrite(c.chan,0x07,chan[c.chan].noise?(0x80|chan[c.chan].note):0);
break;
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case DIV_CMD_SAMPLE_MODE:
chan[c.chan].pcm=c.value;
break;
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case DIV_CMD_SAMPLE_BANK:
sampleBank=c.value;
if (sampleBank>(parent->song.sample.size()/12)) {
sampleBank=parent->song.sample.size()/12;
}
break;
case DIV_CMD_PANNING: {
chan[c.chan].pan=c.value;
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chWrite(c.chan,0x05,isMuted[c.chan]?0:chan[c.chan].pan);
break;
}
case DIV_CMD_LEGATO:
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chan[c.chan].baseFreq=round(FREQ_BASE/pow(2.0f,((float)(c.value+((chan[c.chan].std.willArp && !chan[c.chan].std.arpMode)?(chan[c.chan].std.arp-12):(0)))/12.0f)));
chan[c.chan].freqChanged=true;
chan[c.chan].note=c.value;
break;
case DIV_CMD_PRE_PORTA:
chan[c.chan].std.init(parent->getIns(chan[c.chan].ins));
chan[c.chan].inPorta=c.value;
break;
case DIV_CMD_GET_VOLMAX:
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return 31;
break;
case DIV_ALWAYS_SET_VOLUME:
return 1;
break;
default:
break;
}
return 1;
}
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void DivPlatformPCE::muteChannel(int ch, bool mute) {
isMuted[ch]=mute;
chWrite(ch,0x05,isMuted[ch]?0:chan[ch].pan);
}
void DivPlatformPCE::forceIns() {
for (int i=0; i<6; i++) {
chan[i].insChanged=true;
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chan[i].freqChanged=true;
updateWave(i);
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chWrite(i,0x05,isMuted[i]?0:chan[i].pan);
}
}
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void DivPlatformPCE::reset() {
while (!writes.empty()) writes.pop();
for (int i=0; i<6; i++) {
chan[i]=DivPlatformPCE::Channel();
}
pce->Power(0);
lastPan=0xff;
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memset(tempL,0,32*sizeof(int));
memset(tempR,0,32*sizeof(int));
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cycles=0;
curChan=-1;
sampleBank=0;
// set global volume
rWrite(0,0);
rWrite(0x01,0xff);
// set per-channel initial panning
for (int i=0; i<6; i++) {
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chWrite(i,0x05,isMuted[i]?0:chan[i].pan);
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}
delay=500;
}
bool DivPlatformPCE::isStereo() {
return true;
}
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bool DivPlatformPCE::keyOffAffectsArp(int ch) {
return true;
}
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void DivPlatformPCE::notifyWaveChange(int wave) {
for (int i=0; i<6; i++) {
if (chan[i].wave==wave) {
updateWave(i);
}
}
}
void DivPlatformPCE::notifyInsDeletion(void* ins) {
for (int i=0; i<6; i++) {
chan[i].std.notifyInsDeletion((DivInstrument*)ins);
}
}
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void DivPlatformPCE::setPAL(bool pal) {
if (pal) { // technically there is no PAL PC Engine but oh well...
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rate=1773448/6;
} else {
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rate=1789773/6;
}
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}
int DivPlatformPCE::init(DivEngine* p, int channels, int sugRate, bool pal) {
parent=p;
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dumpWrites=false;
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skipRegisterWrites=false;
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for (int i=0; i<6; i++) {
isMuted[i]=false;
}
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setPAL(pal);
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pce=new PCE_PSG(tempL,tempR,PCE_PSG::REVISION_HUC6280);
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reset();
return 6;
}
void DivPlatformPCE::quit() {
delete pce;
}
DivPlatformPCE::~DivPlatformPCE() {
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}