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| version 1.12, 2004/03/02 16:31:21 | version 1.18, 2004/03/10 07:41:48 |
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| Line 796 REG8 MEMCALL i286_memoryread(UINT32 addr | Line 796 REG8 MEMCALL i286_memoryread(UINT32 addr |
| UINT32 pos; | UINT32 pos; |
| addr &= CPU_ADRSMASK; | |
| if (addr < I286_MEMREADMAX) { | if (addr < I286_MEMREADMAX) { |
| return(mem[addr]); | return(mem[addr]); |
| } | } |
| else if (addr >= USE_HIMEM) { | else if (addr >= USE_HIMEM) { |
| pos = addr - 0x100000; | pos = (addr & CPU_ADRSMASK) - 0x100000; |
| if (pos < CPU_EXTMEMSIZE) { | if (pos < CPU_EXTMEMSIZE) { |
| return(CPU_EXTMEM[pos]); | return(CPU_EXTMEM[pos]); |
| } | } |
| Line 814 REG8 MEMCALL i286_memoryread(UINT32 addr | Line 813 REG8 MEMCALL i286_memoryread(UINT32 addr |
| } | } |
| #endif | #endif |
| else { | else { |
| // TRACEOUT(("out of mem (read8): %x", addr)); | |
| return(0xff); | return(0xff); |
| } | } |
| } | } |
| Line 827 REG16 MEMCALL i286_memoryread_w(UINT32 a | Line 827 REG16 MEMCALL i286_memoryread_w(UINT32 a |
| UINT32 pos; | UINT32 pos; |
| REG16 ret; | REG16 ret; |
| addr &= CPU_ADRSMASK; | |
| if (addr < (I286_MEMREADMAX - 1)) { | if (addr < (I286_MEMREADMAX - 1)) { |
| return(LOADINTELWORD(mem + addr)); | return(LOADINTELWORD(mem + addr)); |
| } | } |
| else if ((addr + 1) & 0x7fff) { // non 32kb boundary | else if ((addr + 1) & 0x7fff) { // non 32kb boundary |
| if (addr >= USE_HIMEM) { | if (addr >= USE_HIMEM) { |
| pos = addr - 0x100000; | pos = (addr & CPU_ADRSMASK) - 0x100000; |
| if (pos < CPU_EXTMEMSIZE) { | if (pos < CPU_EXTMEMSIZE) { |
| return(LOADINTELWORD(CPU_EXTMEM + pos)); | return(LOADINTELWORD(CPU_EXTMEM + pos)); |
| } | } |
| Line 846 REG16 MEMCALL i286_memoryread_w(UINT32 a | Line 845 REG16 MEMCALL i286_memoryread_w(UINT32 a |
| } | } |
| #endif | #endif |
| else { | else { |
| // TRACEOUT(("out of mem (read16): %x", addr)); | |
| return(0xffff); | return(0xffff); |
| } | } |
| } | } |
| Line 863 UINT32 MEMCALL i286_memoryread_d(UINT32 | Line 863 UINT32 MEMCALL i286_memoryread_d(UINT32 |
| UINT32 pos; | UINT32 pos; |
| UINT32 ret; | UINT32 ret; |
| addr &= CPU_ADRSMASK; | |
| if (addr < (I286_MEMREADMAX - 3)) { | if (addr < (I286_MEMREADMAX - 3)) { |
| return(LOADINTELDWORD(mem + addr)); | return(LOADINTELDWORD(mem + addr)); |
| } | } |
| else if (addr >= USE_HIMEM) { | else if (addr >= USE_HIMEM) { |
| pos = addr - 0x100000; | pos = (addr & CPU_ADRSMASK) - 0x100000; |
| if ((pos + 3) < CPU_EXTMEMSIZE) { | if ((pos + 3) < CPU_EXTMEMSIZE) { |
| return(LOADINTELDWORD(CPU_EXTMEM + pos)); | return(LOADINTELDWORD(CPU_EXTMEM + pos)); |
| } | } |
| Line 889 void MEMCALL i286_memorywrite(UINT32 add | Line 888 void MEMCALL i286_memorywrite(UINT32 add |
| UINT32 pos; | UINT32 pos; |
| addr &= CPU_ADRSMASK; | |
| if (addr < I286_MEMWRITEMAX) { | if (addr < I286_MEMWRITEMAX) { |
| mem[addr] = (BYTE)value; | mem[addr] = (BYTE)value; |
| } | } |
| else if (addr >= USE_HIMEM) { | else if (addr >= USE_HIMEM) { |
| pos = addr - 0x100000; | pos = (addr & CPU_ADRSMASK) - 0x100000; |
| if (pos < CPU_EXTMEMSIZE) { | if (pos < CPU_EXTMEMSIZE) { |
| CPU_EXTMEM[pos] = (BYTE)value; | CPU_EXTMEM[pos] = (BYTE)value; |
| } | } |
| Line 907 void MEMCALL i286_memorywrite(UINT32 add | Line 905 void MEMCALL i286_memorywrite(UINT32 add |
| } | } |
| #endif | #endif |
| else { | else { |
| TRACEOUT(("mem_w %x %x", addr, value)); | // TRACEOUT(("out of mem (write8): %x", addr)); |
| } | } |
| } | } |
| else { | else { |
| Line 919 void MEMCALL i286_memorywrite_w(UINT32 a | Line 917 void MEMCALL i286_memorywrite_w(UINT32 a |
| UINT32 pos; | UINT32 pos; |
| addr &= CPU_ADRSMASK; | |
| if (addr < (I286_MEMWRITEMAX - 1)) { | if (addr < (I286_MEMWRITEMAX - 1)) { |
| STOREINTELWORD(mem + addr, value); | STOREINTELWORD(mem + addr, value); |
| } | } |
| else if ((addr + 1) & 0x7fff) { // non 32kb boundary | else if ((addr + 1) & 0x7fff) { // non 32kb boundary |
| if (addr >= USE_HIMEM) { | if (addr >= USE_HIMEM) { |
| pos = addr - 0x100000; | pos = (addr & CPU_ADRSMASK) - 0x100000; |
| if (pos < CPU_EXTMEMSIZE) { | if (pos < CPU_EXTMEMSIZE) { |
| STOREINTELWORD(CPU_EXTMEM + pos, value); | STOREINTELWORD(CPU_EXTMEM + pos, value); |
| } | } |
| Line 937 void MEMCALL i286_memorywrite_w(UINT32 a | Line 934 void MEMCALL i286_memorywrite_w(UINT32 a |
| mem9821_ww(addr, value); | mem9821_ww(addr, value); |
| } | } |
| #endif | #endif |
| else { | |
| // TRACEOUT(("out of mem (write16): %x", addr)); | |
| } | |
| } | } |
| else { | else { |
| memfn.wr16[(addr >> 15) & 0x1f](addr, value); | memfn.wr16[(addr >> 15) & 0x1f](addr, value); |
| Line 952 void MEMCALL i286_memorywrite_d(UINT32 a | Line 952 void MEMCALL i286_memorywrite_d(UINT32 a |
| UINT32 pos; | UINT32 pos; |
| addr &= CPU_ADRSMASK; | |
| if (addr < (I286_MEMWRITEMAX - 3)) { | if (addr < (I286_MEMWRITEMAX - 3)) { |
| STOREINTELDWORD(mem + addr, value); | STOREINTELDWORD(mem + addr, value); |
| return; | return; |
| } | } |
| else if (addr >= USE_HIMEM) { | else if (addr >= USE_HIMEM) { |
| pos = addr - 0x100000; | pos = (addr & CPU_ADRSMASK) - 0x100000; |
| if ((pos + 3) < CPU_EXTMEMSIZE) { | if ((pos + 3) < CPU_EXTMEMSIZE) { |
| STOREINTELDWORD(CPU_EXTMEM + pos, value); | STOREINTELDWORD(CPU_EXTMEM + pos, value); |
| return; | return; |
| Line 975 void MEMCALL i286_memorywrite_d(UINT32 a | Line 974 void MEMCALL i286_memorywrite_d(UINT32 a |
| } | } |
| } | } |
| #ifdef NP2_MEMORY_ASM | #if 0 |
| REG8 MEMCALL i286_membyte_read(UINT seg, UINT off) { | REG8 MEMCALL i286_membyte_read(UINT seg, UINT off) { |
| UINT32 address; | UINT32 address; |
| Line 1027 void MEMCALL i286_memword_write(UINT seg | Line 1026 void MEMCALL i286_memword_write(UINT seg |
| i286_memorywrite_w(address, value); | i286_memorywrite_w(address, value); |
| } | } |
| } | } |
| #endif /* NP2_MEMORY_ASM */ | #endif |
| void MEMCALL i286_memstr_read(UINT seg, UINT off, void *dat, UINT leng) { | void MEMCALL memp_read(UINT32 address, void *dat, UINT leng) { |
| BYTE *out; | BYTE *out = (BYTE *)dat; |
| UINT32 adrs; | UINT pos; |
| UINT size; | UINT diff; |
| out = (BYTE *)dat; | /* fast memory access */ |
| adrs = seg << 4; | if (address + leng < I286_MEMREADMAX) { |
| off = LOW16(off); | CopyMemory(dat, mem + address, leng); |
| if ((I286_MEMREADMAX >= 0x10000) && | return; |
| (adrs < (I286_MEMREADMAX - 0x10000))) { | } else if (address >= USE_HIMEM) { |
| if (leng) { | pos = (address & CPU_ADRSMASK) - 0x100000; |
| size = 0x10000 - off; | if (pos + leng < CPU_EXTMEMSIZE) { |
| if (size >= leng) { | CopyMemory(dat, CPU_EXTMEM + pos, leng); |
| CopyMemory(out, mem + adrs + off, leng); | return; |
| return; | |
| } | |
| CopyMemory(out, mem + adrs + off, size); | |
| out += size; | |
| leng -= size; | |
| } | |
| while(leng >= 0x10000) { | |
| CopyMemory(out, mem + adrs, 0x10000); | |
| out += 0x10000; | |
| leng -= 0x10000; | |
| } | } |
| if (leng) { | if (pos < CPU_EXTMEMSIZE) { |
| CopyMemory(out, mem + adrs, leng); | diff = CPU_EXTMEMSIZE - pos; |
| CopyMemory(out, CPU_EXTMEM + pos, diff); | |
| out += diff; | |
| leng -= diff; | |
| address += diff; | |
| } | } |
| } | } |
| else { | |
| while(leng--) { | /* slow memory access */ |
| *out++ = i286_memoryread(adrs + off); | while (leng-- > 0) { |
| off = LOW16(off + 1); | *out++ = i286_memoryread(address++); |
| } | |
| } | } |
| } | } |
| void MEMCALL i286_memstr_write(UINT seg, UINT off, const void *dat, UINT leng) { | void MEMCALL memp_write(UINT32 address, const void *dat, UINT leng) { |
| BYTE *out; | const BYTE *out = (BYTE *)dat; |
| UINT32 adrs; | UINT pos; |
| UINT size; | UINT diff; |
| out = (BYTE *)dat; | /* fast memory access */ |
| adrs = seg << 4; | if (address + leng < I286_MEMREADMAX) { |
| off = LOW16(off); | CopyMemory(mem + address, dat, leng); |
| if ((I286_MEMWRITEMAX >= 0x10000) && | return; |
| (adrs < (I286_MEMWRITEMAX - 0x10000))) { | } else if (address >= USE_HIMEM) { |
| if (leng) { | pos = (address & CPU_ADRSMASK) - 0x100000; |
| size = 0x10000 - off; | if (pos + leng < CPU_EXTMEMSIZE) { |
| if (size >= leng) { | CopyMemory(CPU_EXTMEM + pos, dat, leng); |
| CopyMemory(mem + adrs + off, out, leng); | return; |
| return; | } |
| } | if (pos < CPU_EXTMEMSIZE) { |
| CopyMemory(mem + adrs + off, out, size); | diff = CPU_EXTMEMSIZE - pos; |
| out += size; | CopyMemory(CPU_EXTMEM + pos, dat, diff); |
| leng -= size; | out += diff; |
| leng -= diff; | |
| address += diff; | |
| } | } |
| while(leng >= 0x10000) { | } |
| CopyMemory(mem + adrs, out, 0x10000); | |
| out += 0x10000; | /* slow memory access */ |
| leng -= 0x10000; | while (leng-- > 0) { |
| i286_memorywrite(address++, *out++); | |
| } | |
| } | |
| // ---- Logical Space (BIOS) | |
| static UINT32 physicaladdr(UINT32 addr) { | |
| UINT32 pde; | |
| UINT32 pte; | |
| if (CPU_STAT_PAGING) { | |
| pde = i286_memoryread_d(CPU_STAT_PDE_BASE + ((addr >> 20) & 0xffc)); | |
| if (!(pde & CPU_PDE_PRESENT)) { | |
| goto retdummy; | |
| } | } |
| if (leng) { | pte = cpu_memoryread_d((pde & CPU_PDE_BASEADDR_MASK) + ((addr >> 10) & 0xffc)); |
| CopyMemory(mem + adrs, out, leng); | if (!(pte & CPU_PTE_PRESENT)) { |
| goto retdummy; | |
| } | } |
| addr = (pte & CPU_PTE_BASEADDR_MASK) + (addr & 0x00000fff); | |
| } | |
| return(addr); | |
| retdummy: | |
| return(0x01000000); // てきとーにメモリが存在しない場所 | |
| } | |
| REG8 MEMCALL meml_read8(UINT seg, UINT off) { | |
| UINT32 addr; | |
| addr = (seg << 4) + LOW16(off); | |
| if (CPU_STAT_PAGING) { | |
| addr = physicaladdr(addr); | |
| } | |
| return(i286_memoryread(addr)); | |
| } | |
| REG16 MEMCALL meml_read16(UINT seg, UINT off) { | |
| UINT32 addr; | |
| addr = (seg << 4) + LOW16(off); | |
| if (!CPU_STAT_PAGING) { | |
| return(i286_memoryread_w(addr)); | |
| } | |
| else if ((addr + 1) & 0xfff) { | |
| return(i286_memoryread_w(physicaladdr(addr))); | |
| } | |
| return(meml_read8(seg, off) + (meml_read8(seg, off + 1) << 8)); | |
| } | |
| void MEMCALL meml_write8(UINT seg, UINT off, REG8 dat) { | |
| UINT32 addr; | |
| addr = (seg << 4) + LOW16(off); | |
| if (CPU_STAT_PAGING) { | |
| addr = physicaladdr(addr); | |
| } | |
| i286_memorywrite(addr, dat); | |
| } | |
| void MEMCALL meml_write16(UINT seg, UINT off, REG16 dat) { | |
| UINT32 addr; | |
| addr = (seg << 4) + LOW16(off); | |
| if (!CPU_STAT_PAGING) { | |
| i286_memorywrite_w(addr, dat); | |
| } | |
| else if ((addr + 1) & 0xfff) { | |
| i286_memorywrite_w(physicaladdr(addr), dat); | |
| } | } |
| else { | else { |
| while(leng--) { | meml_write8(seg, off, (REG8)dat); |
| i286_memorywrite(adrs + off, *out++); | meml_write8(seg, off + 1, (REG8)(dat >> 8)); |
| off = LOW16(off + 1); | |
| } | |
| } | } |
| } | } |
| void MEMCALL i286_memx_read(UINT32 address, void *dat, UINT leng) { | void MEMCALL meml_readstr(UINT seg, UINT off, void *dat, UINT leng) { |
| if ((address + leng) < I286_MEMREADMAX) { | UINT32 adrs; |
| CopyMemory(dat, mem + address, leng); | UINT size; |
| while(leng) { | |
| off = LOW16(off); | |
| adrs = (seg << 4) + off; | |
| size = 0x1000 - (adrs & 0xfff); | |
| size = min(size, leng); | |
| size = min(size, 0x10000 - off); | |
| memp_read(physicaladdr(adrs), dat, size); | |
| off += size; | |
| dat = ((BYTE *)dat) + size; | |
| leng -= size; | |
| } | |
| } | |
| void MEMCALL meml_writestr(UINT seg, UINT off, const void *dat, UINT leng) { | |
| UINT32 adrs; | |
| UINT size; | |
| while(leng) { | |
| off = LOW16(off); | |
| adrs = (seg << 4) + off; | |
| size = 0x1000 - (adrs & 0xfff); | |
| size = min(size, leng); | |
| size = min(size, 0x10000 - off); | |
| memp_write(physicaladdr(adrs), dat, size); | |
| off += size; | |
| dat = ((BYTE *)dat) + size; | |
| leng -= size; | |
| } | |
| } | |
| void MEMCALL meml_read(UINT32 address, void *dat, UINT leng) { | |
| UINT size; | |
| if (!CPU_STAT_PAGING) { | |
| memp_read(address, dat, leng); | |
| } | } |
| else { | else { |
| BYTE *out = (BYTE *)dat; | while(leng) { |
| if (address < I286_MEMREADMAX) { | size = 0x1000 - (address & 0xfff); |
| CopyMemory(out, mem + address, I286_MEMREADMAX - address); | size = min(size, leng); |
| out += I286_MEMREADMAX - address; | memp_read(physicaladdr(address), dat, size); |
| leng -= I286_MEMREADMAX - address; | address += size; |
| address = I286_MEMREADMAX; | dat = ((BYTE *)dat) + size; |
| } | leng -= size; |
| while(leng--) { | |
| *out++ = i286_memoryread(address++); | |
| } | } |
| } | } |
| } | } |
| void MEMCALL i286_memx_write(UINT32 address, const void *dat, UINT leng) { | void MEMCALL meml_write(UINT32 address, const void *dat, UINT leng) { |
| const BYTE *out; | UINT size; |
| if ((address + leng) < I286_MEMWRITEMAX) { | if (!CPU_STAT_PAGING) { |
| CopyMemory(mem + address, dat, leng); | memp_write(address, dat, leng); |
| } | } |
| else { | else { |
| out = (BYTE *)dat; | while(leng) { |
| if (address < I286_MEMWRITEMAX) { | size = 0x1000 - (address & 0xfff); |
| CopyMemory(mem + address, out, I286_MEMWRITEMAX - address); | size = min(size, leng); |
| out += I286_MEMWRITEMAX - address; | memp_write(physicaladdr(address), dat, size); |
| leng -= I286_MEMWRITEMAX - address; | address += size; |
| address = I286_MEMWRITEMAX; | dat = ((BYTE *)dat) + size; |
| } | leng -= size; |
| while(leng--) { | |
| i286_memorywrite(address++, *out++); | |
| } | } |
| } | } |
| } | } |
| #endif | #endif |