update apu sweep units
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@ -67,6 +67,7 @@ static int32 RectDutyCount[2];
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static uint8 sweepon[2];
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/*static*/ int32 curfreq[2];
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static uint8 SweepCount[2];
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static uint8 SweepReload[2];
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static uint16 nreg=0;
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@ -206,22 +207,15 @@ void LogDPCM(int romaddress, int dpcmsize){
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static void SQReload(int x, uint8 V)
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{
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if(EnabledChannels&(1<<x))
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{
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if(x)
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DoSQ2();
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else
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DoSQ1();
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lengthcount[x]=lengthtable[(V>>3)&0x1f];
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}
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if(EnabledChannels&(1<<x))
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lengthcount[x]=lengthtable[(V>>3)&0x1f];
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sweepon[x]=PSG[(x<<2)|1]&0x80;
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curfreq[x]=PSG[(x<<2)|0x2]|((V&7)<<8);
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SweepCount[x]=((PSG[(x<<2)|0x1]>>4)&7)+1;
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RectDutyCount[x]=7;
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EnvUnits[x].reloaddec=1;
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//reloadfreq[x]=1;
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/* use the low 8 bits data from pulse period
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* instead of from the sweep period */
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/* https://forums.nesdev.com/viewtopic.php?t=219&p=1431 */
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curfreq[x]=(curfreq[x] & 0xff)|((V&7)<<8);
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RectDutyCount[x]=7;
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EnvUnits[x].reloaddec=1;
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}
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static DECLFW(Write_PSG)
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@ -237,7 +231,9 @@ static DECLFW(Write_PSG)
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V = (V&0x3F)|((V&0x80)>>1)|((V&0x40)<<1);
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break;
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case 0x1:
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DoSQ1();
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sweepon[0]=V&0x80;
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SweepReload[0]=1;
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break;
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case 0x2:
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DoSQ1();
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@ -245,6 +241,7 @@ static DECLFW(Write_PSG)
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curfreq[0]|=V;
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break;
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case 0x3:
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DoSQ1();
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SQReload(0,V);
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break;
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case 0x4:
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@ -255,7 +252,9 @@ static DECLFW(Write_PSG)
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V = (V&0x3F)|((V&0x80)>>1)|((V&0x40)<<1);
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break;
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case 0x5:
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DoSQ2();
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sweepon[1]=V&0x80;
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SweepReload[1]=1;
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break;
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case 0x6:
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DoSQ2();
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@ -263,6 +262,7 @@ static DECLFW(Write_PSG)
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curfreq[1]|=V;
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break;
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case 0x7:
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DoSQ2();
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SQReload(1,V);
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break;
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case 0xa:
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@ -421,44 +421,28 @@ static void FrameSoundStuff(int V)
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/* Frequency Sweep Code Here */
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/* xxxx 0000 */
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/* xxxx = hz. 120/(x+1)*/
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if(sweepon[P])
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/* http://wiki.nesdev.com/w/index.php/APU_Sweep */
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/* https://forums.nesdev.com/viewtopic.php?t=219&p=1431 */
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if (SweepCount[P] > 0) SweepCount[P]--;
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if (SweepCount[P] <= 0)
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{
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int32 mod=0;
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if(SweepCount[P]>0) SweepCount[P]--;
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if(SweepCount[P]<=0)
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int sweepShift = (PSG[(P << 2) + 0x1] & 7);
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if (sweepon[P] && sweepShift && curfreq[P] >= 8)
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{
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SweepCount[P]=((PSG[(P<<2)+0x1]>>4)&7)+1; //+1;
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if(PSG[(P<<2)+0x1]&0x8)
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{
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mod-=(P^1)+((curfreq[P])>>(PSG[(P<<2)+0x1]&7));
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if(curfreq[P] && (PSG[(P<<2)+0x1]&7)/* && sweepon[P]&0x80*/)
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{
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curfreq[P]+=mod;
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}
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}
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else
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{
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mod=curfreq[P]>>(PSG[(P<<2)+0x1]&7);
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if((mod+curfreq[P])&0x800)
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{
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sweepon[P]=0;
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// curfreq[P]=0; // fixes R.C.Pro Am II title music
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}
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else
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{
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if(curfreq[P] && (PSG[(P<<2)+0x1]&7)/* && sweepon[P]&0x80*/)
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{
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curfreq[P]+=mod;
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}
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}
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}
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int32 mod = (curfreq[P] >> sweepShift);
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if (PSG[(P << 2) + 0x1] & 0x8)
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curfreq[P] -= (mod + (P ^ 1));
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else if ((mod + curfreq[P]) < 0x800)
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curfreq[P] += mod;
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}
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SweepCount[P] = (((PSG[(P << 2) + 0x1] >> 4) & 7) + 1);
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}
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else /* Sweeping is disabled: */
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if (SweepReload[P])
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{
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//curfreq[P]&=0xFF00;
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//curfreq[P]|=PSG[(P<<2)|0x2]; //|((PSG[(P<<2)|3]&7)<<8);
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SweepCount[P] = (((PSG[(P << 2) + 0x1] >> 4) & 7) + 1);
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SweepReload[P] = 0;
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}
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}
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}
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