reverted r1342
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dbf5319806
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fb1e6fa613
66
src/ppu.cpp
66
src/ppu.cpp
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@ -49,7 +49,6 @@
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#define SpriteON (PPU[1]&0x10) //Show Sprite
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#define SpriteON (PPU[1]&0x10) //Show Sprite
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#define ScreenON (PPU[1]&0x08) //Show screen
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#define ScreenON (PPU[1]&0x08) //Show screen
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#define PPUON (PPU[1]&0x18) //PPU should operate
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#define PPUON (PPU[1]&0x18) //PPU should operate
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#define GRAYSCALE (PPU[1]&0x01) //Grayscale (AND palette entries with 0x30)
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#define SpriteLeft8 (PPU[1]&0x04)
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#define SpriteLeft8 (PPU[1]&0x04)
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#define BGLeft8 (PPU[1]&0x02)
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#define BGLeft8 (PPU[1]&0x02)
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@ -342,31 +341,14 @@ int FCEUPPU_GetAttr(int ntnum, int xt, int yt) {
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//new ppu-----
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//new ppu-----
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inline void FFCEUX_PPUWrite_Default(uint32 A, uint8 V) {
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inline void FFCEUX_PPUWrite_Default(uint32 A, uint8 V) {
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uint32 tmp = A;
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uint32 tmp = A;
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if(tmp>=0x3F00)
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if(tmp>=0x3F00)
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{
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{
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// hmmm....
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// hmmm....
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switch (tmp & 0x1F)
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if(!(tmp&0xf))
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{
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case 0x10: case 0x14: case 0x18: case 0x1C:
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PALRAM[tmp & 0x0C] =
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PALRAM[tmp & 0x1C] = V & 0x3F;
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break;
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case 0x0: case 0x4: case 0x8: case 0xC:
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PALRAM[tmp & 0x1F] =
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PALRAM[(tmp & 0x1F) | 0x10] = V & 0x3F;
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break;
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default:
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PALRAM[tmp & 0x1F] = V & 0x3F;
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}
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/* if(!(tmp&0xf))
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PALRAM[0x00]=PALRAM[0x04]=PALRAM[0x08]=PALRAM[0x0C]=V&0x3F;
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PALRAM[0x00]=PALRAM[0x04]=PALRAM[0x08]=PALRAM[0x0C]=V&0x3F;
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else if(tmp&3) PALRAM[(tmp&0x1f)]=V&0x3f;*/
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else if(tmp&3) PALRAM[(tmp&0x1f)]=V&0x3f;
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}
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}
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else if(tmp<0x2000)
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else if(tmp<0x2000)
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{
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{
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if(PPUCHRRAM&(1<<(tmp>>10)))
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if(PPUCHRRAM&(1<<(tmp>>10)))
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@ -475,20 +457,7 @@ static DECLFR(A2007)
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if(newppu) {
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if(newppu) {
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//mbg
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//mbg
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ret = VRAMBuffer;
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ret = VRAMBuffer;
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RefreshAddr = ppur.get_2007access() & 0x3FFF;
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RefreshAddr = ppur.get_2007access();
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if ((RefreshAddr & 0x3F00) == 0x3F00)
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{
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//if it is in the palette range bypass the
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//delayed read, and what gets filled in the temp
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//buffer is the address - 0x1000, also
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//if grayscale is set then the return is AND with 0x30
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//to get a gray color reading
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ret = PALRAM[RefreshAddr & 0x1F];
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if (GRAYSCALE)
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ret &= 0x30;
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VRAMBuffer = CALL_PPUREAD(RefreshAddr - 0x1000);
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}
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else
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VRAMBuffer = CALL_PPUREAD(RefreshAddr);
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VRAMBuffer = CALL_PPUREAD(RefreshAddr);
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ppur.increment2007(INC32!=0);
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ppur.increment2007(INC32!=0);
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RefreshAddr = ppur.get_2007access();
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RefreshAddr = ppur.get_2007access();
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@ -508,18 +477,10 @@ static DECLFR(A2007)
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{
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{
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VRAMBuffer=VPage[tmp>>10][tmp];
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VRAMBuffer=VPage[tmp>>10][tmp];
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}
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}
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else if (tmp < 0x3F00)
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{
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VRAMBuffer=vnapage[(tmp>>10)&0x3][tmp&0x3FF];
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}
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else
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else
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{
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{
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ret = PALRAM[RefreshAddr & 0x1F];
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if (GRAYSCALE)
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ret &= 0x30;
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VRAMBuffer=vnapage[(tmp>>10)&0x3][tmp&0x3FF];
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VRAMBuffer=vnapage[(tmp>>10)&0x3][tmp&0x3FF];
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}
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}
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}
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}
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#ifdef FCEUDEF_DEBUGGER
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#ifdef FCEUDEF_DEBUGGER
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if(!fceuindbg)
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if(!fceuindbg)
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@ -666,7 +627,7 @@ static DECLFW(B2007)
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uint32 tmp=RefreshAddr&0x3FFF;
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uint32 tmp=RefreshAddr&0x3FFF;
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if(newppu) {
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if(newppu) {
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RefreshAddr = ppur.get_2007access() & 0x3FFF;
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RefreshAddr = ppur.get_2007access();
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CALL_PPUWRITE(RefreshAddr,V);
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CALL_PPUWRITE(RefreshAddr,V);
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//printf("%04x ",RefreshAddr);
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//printf("%04x ",RefreshAddr);
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ppur.increment2007(INC32!=0);
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ppur.increment2007(INC32!=0);
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@ -678,26 +639,11 @@ static DECLFW(B2007)
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PPUGenLatch=V;
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PPUGenLatch=V;
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if(tmp>=0x3F00)
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if(tmp>=0x3F00)
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{
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{
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switch (tmp & 0x1F)
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{
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case 0x10: case 0x14: case 0x18: case 0x1C:
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PALRAM[tmp & 0x0C] =
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PALRAM[tmp & 0x1C] = V & 0x3F;
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break;
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case 0x0: case 0x4: case 0x8: case 0xC:
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PALRAM[tmp & 0x1F] =
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PALRAM[(tmp & 0x1F) | 0x10] = V & 0x3F;
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break;
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default:
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PALRAM[tmp & 0x1F] = V & 0x3F;
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}
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/*
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// hmmm....
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// hmmm....
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if(!(tmp&0xf))
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if(!(tmp&0xf))
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PALRAM[0x00]=PALRAM[0x04]=PALRAM[0x08]=PALRAM[0x0C]=V&0x3F;
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PALRAM[0x00]=PALRAM[0x04]=PALRAM[0x08]=PALRAM[0x0C]=V&0x3F;
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else if(tmp&3) PALRAM[(tmp&0x1f)]=V&0x3f;*/
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else if(tmp&3) PALRAM[(tmp&0x1f)]=V&0x3f;
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}
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}
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else if(tmp<0x2000)
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else if(tmp<0x2000)
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{
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{
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if(PPUCHRRAM&(1<<(tmp>>10)))
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if(PPUCHRRAM&(1<<(tmp>>10)))
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