mirror of https://github.com/PCSX2/pcsx2.git
psxmode: prepare mdec
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@ -18,7 +18,7 @@
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/* This code was based on the FPSE v0.08 Mdec decoder*/
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#if 0
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#include "PrecompiledHeader.h"
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#include <stdio.h>
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#include <string.h>
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@ -26,6 +26,25 @@
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#include "IopCommon.h"
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#include "Mdec.h"
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struct {
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u32 command;
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u32 status;
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u16 *rl;
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int rlsize;
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} mdec;
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struct config_mdec {
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u32 Mdec;
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};
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struct config_mdec Config;
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u32 mdecArr2[0x100000] = { 0 };
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u32 mdecMem[0x100000]; //watherver large size. //Memory only used to get DMA data and not really for anything else.
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//Sould be optimized(the funcs. that use it) to read IOP RAM direcly.
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#define PSXM(x) ((uptr)mdecMem + x)
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int iq_y[DCTSIZE2],iq_uv[DCTSIZE2];
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static void idct1(int *block)
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@ -150,7 +169,11 @@ void idct(int *block,int k)
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}
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void mdecInit(void) {
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mdec.rl = (u16*)&psxM[0x100000];
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Config.Mdec = 1; //XXXXXXXXXXXXXXXXX 0 or 1
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mdec.rl = (u16*)PSXM(0);
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//mdec.rl = (u16*)&psxM[0x100000];
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mdec.command = 0;
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mdec.status = 0;
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round_init();
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@ -189,21 +212,34 @@ u32 mdecRead1(void) {
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void psxDma0(u32 adr, u32 bcr, u32 chcr) {
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int cmd = mdec.command;
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int size;
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MDEC_LOG("DMA0 %lx %lx %lx", adr, bcr, chcr);
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if (chcr != 0x01000201) return;
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size = (bcr>>16)*(bcr&0xffff);
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// bcr LSBs are the blocksize in words
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// bcr MSBs are the number of block
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int size = (bcr >> 16)*(bcr & 0xffff);
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if (size < 0) {
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// Need to investigate what happen if the transfer is huge
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Console.Error("psxDma0 DMA transfer overflow !");
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return;
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}
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for (int i = 0; i<(size); i++) {
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*(u32*)PSXM(((i + 0) * 4)) = iopMemRead32(adr + ((i + 0) * 4));
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if (i <20)
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MDEC_LOG(" data %08X %08X ", iopMemRead32((adr & 0x00FFFFFF) + (i * 4)), *(u32*)PSXM((i * 4)));
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}
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if (cmd == 0x40000001) {
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u8 *p = (u8*)PSXM(adr);
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u8 *p = (u8*)PSXM(0); //u8 *p = (u8*)PSXM(adr);
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iqtab_init(iq_y, p);
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iqtab_init(iq_uv, p + 64);
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}
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else if ((cmd & 0xf5ff0000) == 0x30000000) {
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mdec.rl = (u16*)PSXM(adr);
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mdec.rl = (u16*)PSXM(0); //mdec.rl = (u16*)PSXM(adr);
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}
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HW_DMA0_CHCR &= ~0x01000000;
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@ -213,15 +249,22 @@ void psxDma0(u32 adr, u32 bcr, u32 chcr) {
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void psxDma1(u32 adr, u32 bcr, u32 chcr) {
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int blk[DCTSIZE2*6];
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unsigned short *image;
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int size;
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MDEC_LOG("DMA1 %lx %lx %lx (cmd = %lx)", adr, bcr, chcr, mdec.command);
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if (chcr != 0x01000200) return;
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// bcr LSBs are the blocksize in words
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// bcr MSBs are the number of block
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int size = (bcr >> 16)*(bcr & 0xffff);
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int size2 = (bcr >> 16)*(bcr & 0xffff);
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if (size < 0) {
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// Need to investigate what happen if the transfer is huge
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Console.Error("psxDma1 DMA transfer overflow !");
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return;
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}
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image = (u16*)mdecArr2;//(u16*)PSXM(0); //image = (u16*)PSXM(adr);
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size = (bcr>>16)*(bcr&0xffff);
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image = (u16*)PSXM(adr);
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if (mdec.command&0x08000000) {
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for (;size>0;size-=(16*16)/2,image+=(16*16)) {
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mdec.rl = rl2blk(blk,mdec.rl);
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@ -234,6 +277,12 @@ void psxDma1(u32 adr, u32 bcr, u32 chcr) {
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}
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}
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for (int i = 0; i<(size2); i++) {
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iopMemWrite32(((adr & 0x00FFFFFF) + (i * 4) + 0), mdecArr2[i]);
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if (i <20)
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MDEC_LOG(" data %08X %08X ", iopMemRead32((adr & 0x00FFFFFF) + (i * 4)), mdecArr2[i]);
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}
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HW_DMA1_CHCR &= ~0x01000000;
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psxDmaInterrupt(1);
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}
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@ -407,15 +456,12 @@ void yuv2rgb24(int *blk,unsigned char *image) {
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}
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}
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int SaveState::mdecFreeze() {
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Freeze(mdec);
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Freeze(iq_y);
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Freeze(iq_uv);
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return 0;
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}
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#endif
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//todo: psxmode: add mdec savestate support
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//int SaveState::mdecFreeze() {
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// Freeze(mdec);
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// Freeze(iq_y);
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// Freeze(iq_uv);
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//
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// return 0;
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//
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//}
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24
pcsx2/Mdec.h
24
pcsx2/Mdec.h
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@ -85,14 +85,15 @@
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image[n+1] = ROUND(Y); \
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image[n+0] = ROUND(Y);
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void mdecInit();
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void mdecWrite0(u32 data);
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void mdecWrite1(u32 data);
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u32 mdecRead0();
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u32 mdecRead1();
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void psxDma0(u32 madr, u32 bcr, u32 chcr);
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void psxDma1(u32 madr, u32 bcr, u32 chcr);
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int mdecFreeze(gzFile f, int Mode);
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extern void mdecInit();
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extern void mdecWrite0(u32 data);
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extern void mdecWrite1(u32 data);
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extern u32 mdecRead0();
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extern u32 mdecRead1();
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extern void psxDma0(u32 madr, u32 bcr, u32 chcr);
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extern void psxDma1(u32 madr, u32 bcr, u32 chcr);
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//int mdecFreeze(gzFile f, int Mode);
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u16* rl2blk(int *blk,u16 *mdec_rl);
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void iqtab_init(int *iqtab,unsigned char *iq_y);
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@ -100,11 +101,4 @@ void round_init(void);
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void yuv2rgb24(int *blk,unsigned char *image);
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void yuv2rgb15(int *blk,u16 *image);
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struct {
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u32 command;
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u32 status;
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u16 *rl;
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int rlsize;
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} mdec;
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#endif /* __MDEC_H__ */
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