| version 1.1, 2003/12/08 00:55:31 | version 1.10, 2004/02/05 16:41:32 | 
| Line 31 | Line 31 | 
 | #include "cpu.h" | #include "cpu.h" | 
 | #include "memory.h" | #include "memory.h" | 
 |  |  | 
 | // ¤¢¤È¤Ç¡Ä |  | 
 | extern DWORD cpumem_addrmask; |  | 
 |  |  | 
 | BYTE *cpumem = 0; |  | 
 | DWORD extmem_size = 0; |  | 
 | BYTE protectmem_size = 0; |  | 
 |  |  | 
 | /* |  | 
 | * initialize 1MB-16MB memory |  | 
 | */ |  | 
 |  |  | 
 | int |  | 
 | init_cpumem(BYTE usemem) |  | 
 | { |  | 
 | DWORD size; |  | 
 |  |  | 
 | if (usemem > 13) |  | 
 | usemem = 13; |  | 
 | size = usemem << 20; |  | 
 |  |  | 
 | if (extmem_size != size - (LOWMEM - 0x100000)) { |  | 
 | if (cpumem) { |  | 
 | free(cpumem); |  | 
 | cpumem = 0; |  | 
 | } |  | 
 |  |  | 
 | if (size <= LOWMEM - 0x100000) { |  | 
 | extmem_size = 0; |  | 
 | cpumem = 0; |  | 
 | } else { |  | 
 | extmem_size = size - (LOWMEM - 0x100000); |  | 
 | cpumem = (BYTE*)malloc(extmem_size); |  | 
 | if (cpumem == NULL) { |  | 
 | protectmem_size = 0; |  | 
 | return FAILURE; |  | 
 | } |  | 
 | } |  | 
 | } |  | 
 |  |  | 
 | if (cpumem) |  | 
 | memset(cpumem, 0, extmem_size); |  | 
 |  |  | 
 | protectmem_size = usemem; |  | 
 | return SUCCESS; |  | 
 | } |  | 
 |  |  | 
 |  |  | 
 | /* | /* | 
 | * memory access check | * memory access check | 
 | */ | */ | 
 | void | void | 
| cpu_memoryread_check(descriptor_t* sd, DWORD madr, DWORD length, int e) | cpu_memoryread_check(descriptor_t* sd, DWORD offset, DWORD length, int e) | 
 | { | { | 
 |  | DWORD uplimit; | 
 |  |  | 
| if (!CPU_STAT_PM) { | if (CPU_STAT_PM) { | 
| if ((madr > sd->u.seg.segend - length + 1) |  | 
| || (length - 1 > sd->u.seg.limit)) { |  | 
| EXCEPTION(e, 0); |  | 
| } |  | 
| } else { |  | 
 | /* invalid */ | /* invalid */ | 
 | if (!sd->valid) { | if (!sd->valid) { | 
 |  | VERBOSE(("cpu_memoryread_check: invalid")); | 
 | EXCEPTION(GP_EXCEPTION, 0); | EXCEPTION(GP_EXCEPTION, 0); | 
 | } | } | 
 |  |  | 
 | /* not present */ | /* not present */ | 
 | if (!sd->p) { | if (!sd->p) { | 
 |  | VERBOSE(("cpu_memoryread_check: not present")); | 
 | EXCEPTION(e, 0); | EXCEPTION(e, 0); | 
 | } | } | 
 |  |  | 
| Line 106  cpu_memoryread_check(descriptor_t* sd, D | Line 58  cpu_memoryread_check(descriptor_t* sd, D | 
 | case 2:  case 3:        /* rw */ | case 2:  case 3:        /* rw */ | 
 | case 10: case 11:       /* rx */ | case 10: case 11:       /* rx */ | 
 | case 14: case 15:       /* rxc */ | case 14: case 15:       /* rxc */ | 
| if ((madr > sd->u.seg.segend - length + 1) | if (offset > sd->u.seg.limit - length + 1) { | 
| || (length - 1 > sd->u.seg.limit)) { | VERBOSE(("cpu_memoryread_check: offset(%08x) > sd->u.seg.limit(%08x) - length(%08x) + 1", offset, sd->u.seg.limit, length)); | 
|  | EXCEPTION(e, 0); | 
|  | } | 
|  | if (length - 1 > sd->u.seg.limit) { | 
|  | VERBOSE(("cpu_memoryread_check: length(%08x) - 1 > sd->u.seg.limit(%08x)", length, sd->u.seg.limit)); | 
 | EXCEPTION(e, 0); | EXCEPTION(e, 0); | 
 | } | } | 
 | break; | break; | 
 |  |  | 
 | case 4:  case 5:        /* ro (expand down) */ | case 4:  case 5:        /* ro (expand down) */ | 
 | case 6:  case 7:        /* rw (expand down) */ | case 6:  case 7:        /* rw (expand down) */ | 
| { | uplimit = sd->d ? 0xffffffff : 0x0000ffff; | 
| DWORD uplimit = sd->d ? 0xffffffff : 0x0000ffff; | if (offset <= sd->u.seg.limit) { | 
| if ((madr <= sd->u.seg.segend) | VERBOSE(("cpu_memoryread_check: offset(%08x) <= sd->u.seg.limit(%08x)", offset, sd->u.seg.limit)); | 
| || (madr > uplimit) | EXCEPTION(e, 0); | 
| || (uplimit - madr < length - 1)) { | } | 
|  | if (offset > uplimit) { | 
|  | VERBOSE(("cpu_memoryread_check: offset(%08x) > uplimit(%08x)", offset, uplimit)); | 
|  | EXCEPTION(e, 0); | 
|  | } | 
|  | if (uplimit - offset < length - 1) { | 
|  | VERBOSE(("cpu_memoryread_check: uplimit(%08x) - offset(%08x) < length(%08x) - 1", uplimit, offset, length)); | 
 | EXCEPTION(e, 0); | EXCEPTION(e, 0); | 
 | } | } | 
 | } |  | 
 | break; | break; | 
 |  |  | 
 | default: | default: | 
 |  | VERBOSE(("cpu_memoryread_check: invalid type (type = %d)", sd->type)); | 
 | EXCEPTION(e, 0); | EXCEPTION(e, 0); | 
 | break; | break; | 
 | } | } | 
 | } | } | 
| #if 0   /* XXX */ | sd->flag |= CPU_DESC_FLAG_READABLE; | 
| sd->flag |= CPU_DESC_READABLE; |  | 
| #endif |  | 
 | } | } | 
 |  |  | 
 | void | void | 
| cpu_memorywrite_check(descriptor_t* sd, DWORD madr, DWORD length, int e) | cpu_memorywrite_check(descriptor_t* sd, DWORD offset, DWORD length, int e) | 
 | { | { | 
 |  | DWORD uplimit; | 
 |  |  | 
| if (!CPU_STAT_PM) { | if (CPU_STAT_PM) { | 
| if ((madr > sd->u.seg.segend - length + 1) |  | 
| || (length - 1 > sd->u.seg.limit)) { |  | 
| EXCEPTION(e, 0); |  | 
| } |  | 
| } else { |  | 
 | /* invalid */ | /* invalid */ | 
 | if (!sd->valid) { | if (!sd->valid) { | 
 |  | VERBOSE(("cpu_memorywrite_check: invalid")); | 
 | EXCEPTION(GP_EXCEPTION, 0); | EXCEPTION(GP_EXCEPTION, 0); | 
 | } | } | 
 |  |  | 
 | /* not present */ | /* not present */ | 
 | if (!sd->p) { | if (!sd->p) { | 
 |  | VERBOSE(("cpu_memorywrite_check: not present")); | 
 |  | EXCEPTION(e, 0); | 
 |  | } | 
 |  |  | 
 |  | if (!sd->s) { | 
 |  | VERBOSE(("cpu_memorywrite_check: system segment")); | 
 | EXCEPTION(e, 0); | EXCEPTION(e, 0); | 
 | } | } | 
 |  |  | 
 | switch (sd->type) { | switch (sd->type) { | 
 | case 2: case 3: /* rw */ | case 2: case 3: /* rw */ | 
| if ((madr > sd->u.seg.segend - length + 1) | if (offset > sd->u.seg.limit - length + 1) { | 
| || (length - 1 > sd->u.seg.limit)) { | VERBOSE(("cpu_memorywrite_check: offset(%08x) > sd->u.seg.limit(%08x) - length(%08x) + 1", offset, sd->u.seg.limit, length)); | 
|  | EXCEPTION(e, 0); | 
|  | } | 
|  | if (length - 1 > sd->u.seg.limit) { | 
|  | VERBOSE(("cpu_memorywrite_check: length(%08x) - 1 > sd->u.seg.limit(%08x)", length, sd->u.seg.limit)); | 
 | EXCEPTION(e, 0); | EXCEPTION(e, 0); | 
 | } | } | 
 | break; | break; | 
 |  |  | 
 | case 6: case 7: /* rw (expand down) */ | case 6: case 7: /* rw (expand down) */ | 
| { | uplimit = sd->d ? 0xffffffff : 0x0000ffff; | 
| DWORD uplimit = sd->d ? 0xffffffff : 0x0000ffff; | if (offset <= sd->u.seg.limit) { | 
| if ((madr <= sd->u.seg.segend) | VERBOSE(("cpu_memorywrite_check: offset(%08x) <= sd->u.seg.limit(%08x)", offset, sd->u.seg.limit)); | 
| || (madr > uplimit) | EXCEPTION(e, 0); | 
| || (uplimit - madr < length - 1)) { | } | 
|  | if (offset > uplimit) { | 
|  | VERBOSE(("cpu_memorywrite_check: offset(%08x) > uplimit(%08x)", offset, uplimit)); | 
|  | EXCEPTION(e, 0); | 
|  | } | 
|  | if (uplimit - offset < length - 1) { | 
|  | VERBOSE(("cpu_memorywrite_check: uplimit(%08x) - offset(%08x) < length(%08x) - 1", uplimit, offset, length)); | 
 | EXCEPTION(e, 0); | EXCEPTION(e, 0); | 
 | } | } | 
 | } |  | 
 | break; | break; | 
 |  |  | 
 | default: | default: | 
 |  | VERBOSE(("cpu_memorywrite_check: invalid type (type = %d)", sd->type)); | 
 | EXCEPTION(e, 0); | EXCEPTION(e, 0); | 
 | break; | break; | 
 | } | } | 
 | } | } | 
| #if 0   /* XXX */ | sd->flag |= CPU_DESC_FLAG_WRITABLE; | 
| sd->flag |= CPU_DESC_WRITABLE; |  | 
| #endif |  | 
 | } | } | 
 |  |  | 
 | BOOL | BOOL | 
 | cpu_stack_push_check(descriptor_t* sdp, DWORD esp, DWORD length) | cpu_stack_push_check(descriptor_t* sdp, DWORD esp, DWORD length) | 
 | { | { | 
 |  | DWORD limit; | 
 |  |  | 
 | if (!CPU_STAT_PM) | if (!CPU_STAT_PM) | 
 | return TRUE; | return TRUE; | 
 |  |  | 
 | if (!sdp->valid || !sdp->p) | if (!sdp->valid || !sdp->p) | 
 | return FALSE; | return FALSE; | 
 | #ifdef _DEBUG |  | 
 | if (!sdp->s || sdp->u.seg.c || !sdp->u.seg.wr) | if (!sdp->s || sdp->u.seg.c || !sdp->u.seg.wr) | 
 | return FALSE; | return FALSE; | 
 | #endif |  | 
 |  |  | 
| if (!sdp->d) | if (!sdp->d) { | 
 | esp &= 0xffff; | esp &= 0xffff; | 
 |  | limit = 0xffff; | 
 |  | } else { | 
 |  | limit = 0xffffffff; | 
 |  | } | 
 | if (sdp->u.seg.ec) { | if (sdp->u.seg.ec) { | 
| DWORD limit = (sdp->d) ? 0xffffffff : 0xffff; | /* expand-down stack */ | 
 | if ((esp == 0) | if ((esp == 0) | 
 | || (esp < length) | || (esp < length) | 
| || (esp - length <= sdp->u.seg.segend) | || (esp - length <= sdp->u.seg.limit) | 
 | || (esp > limit)) | || (esp > limit)) | 
 | return FALSE; | return FALSE; | 
 | } else { | } else { | 
| Line 214  cpu_stack_push_check(descriptor_t* sdp, | Line 188  cpu_stack_push_check(descriptor_t* sdp, | 
 | return FALSE; | return FALSE; | 
 | } else { | } else { | 
 | if ((esp < length) | if ((esp < length) | 
| || (esp - 1 > sdp->u.seg.segend)) | || (esp - 1 > sdp->u.seg.limit)) | 
 | return FALSE; | return FALSE; | 
 | } | } | 
 | } | } | 
| Line 231  cpu_stack_pop_check(descriptor_t* sdp, D | Line 205  cpu_stack_pop_check(descriptor_t* sdp, D | 
 |  |  | 
 | if (!sdp->valid || !sdp->p) | if (!sdp->valid || !sdp->p) | 
 | return FALSE; | return FALSE; | 
 | #ifdef _DEBUG |  | 
 | if (!sdp->s || sdp->u.seg.c || !sdp->u.seg.wr) | if (!sdp->s || sdp->u.seg.c || !sdp->u.seg.wr) | 
 | return FALSE; | return FALSE; | 
 | #endif |  | 
 |  |  | 
 | if (!sdp->d) { | if (!sdp->d) { | 
 | esp &= 0xffff; | esp &= 0xffff; | 
| Line 243  cpu_stack_pop_check(descriptor_t* sdp, D | Line 215  cpu_stack_pop_check(descriptor_t* sdp, D | 
 | limit = 0xffffffff; | limit = 0xffffffff; | 
 | } | } | 
 | if (sdp->u.seg.ec) { | if (sdp->u.seg.ec) { | 
 |  | /* expand-down stack */ | 
 | if ((esp == limit) | if ((esp == limit) | 
| || ((limit  - esp) + 1 < length)) | || ((limit - esp) + 1 < length)) | 
 | return FALSE; | return FALSE; | 
 | } else { | } else { | 
 | /* expand-up stack */ | /* expand-up stack */ | 
 | if ((esp == limit) | if ((esp == limit) | 
 | || (sdp->u.seg.segend == 0) | || (sdp->u.seg.segend == 0) | 
| || (esp > sdp->u.seg.segend) | || (esp > sdp->u.seg.limit) | 
| || ((sdp->u.seg.segend - esp) + 1 < length)) | || ((sdp->u.seg.limit - esp) + 1 < length)) | 
 | return FALSE; | return FALSE; | 
 | } | } | 
 | return TRUE; | return TRUE; | 
| Line 262  cpu_stack_pop_check(descriptor_t* sdp, D | Line 235  cpu_stack_pop_check(descriptor_t* sdp, D | 
 | * code fetch | * code fetch | 
 | */ | */ | 
 | BYTE MEMCALL | BYTE MEMCALL | 
| cpu_codefetch(DWORD madr) | cpu_codefetch(DWORD offset) | 
 | { | { | 
 | descriptor_t *sd; | descriptor_t *sd; | 
 | DWORD addr; | DWORD addr; | 
 |  |  | 
 | sd = &CPU_STAT_SREG(CPU_CS_INDEX); | sd = &CPU_STAT_SREG(CPU_CS_INDEX); | 
| if (!CPU_INST_AS32) | if (offset <= sd->u.seg.limit) { | 
| madr &= 0xffff; | addr = CPU_STAT_SREGBASE(CPU_CS_INDEX) + offset; | 
| if (madr <= sd->u.seg.segend) { |  | 
| addr = CPU_STAT_SREGBASE(CPU_CS_INDEX) + madr; |  | 
 | if (!CPU_STAT_PM) | if (!CPU_STAT_PM) | 
 | return cpu_memoryread(addr); | return cpu_memoryread(addr); | 
 | return cpu_lcmemoryread(addr); | return cpu_lcmemoryread(addr); | 
| Line 281  cpu_codefetch(DWORD madr) | Line 252  cpu_codefetch(DWORD madr) | 
 | } | } | 
 |  |  | 
 | WORD MEMCALL | WORD MEMCALL | 
| cpu_codefetch_w(DWORD madr) | cpu_codefetch_w(DWORD offset) | 
 | { | { | 
 | descriptor_t *sd; | descriptor_t *sd; | 
 | DWORD addr; | DWORD addr; | 
 |  |  | 
 | sd = &CPU_STAT_SREG(CPU_CS_INDEX); | sd = &CPU_STAT_SREG(CPU_CS_INDEX); | 
|  | if (offset <= sd->u.seg.limit - 1) { | 
| if (!CPU_INST_AS32) | addr = CPU_STAT_SREGBASE(CPU_CS_INDEX) + offset; | 
| madr &= 0xffff; |  | 
| if (madr <= sd->u.seg.segend) { |  | 
| addr = CPU_STAT_SREGBASE(CPU_CS_INDEX) + madr; |  | 
 | if (!CPU_STAT_PM) | if (!CPU_STAT_PM) | 
 | return cpu_memoryread_w(addr); | return cpu_memoryread_w(addr); | 
 | return cpu_lcmemoryread_w(addr); | return cpu_lcmemoryread_w(addr); | 
| Line 301  cpu_codefetch_w(DWORD madr) | Line 269  cpu_codefetch_w(DWORD madr) | 
 | } | } | 
 |  |  | 
 | DWORD MEMCALL | DWORD MEMCALL | 
| cpu_codefetch_d(DWORD madr) | cpu_codefetch_d(DWORD offset) | 
 | { | { | 
 | descriptor_t *sd; | descriptor_t *sd; | 
 | DWORD addr; | DWORD addr; | 
 |  |  | 
 | sd = &CPU_STAT_SREG(CPU_CS_INDEX); | sd = &CPU_STAT_SREG(CPU_CS_INDEX); | 
| if (!CPU_INST_AS32) | if (offset <= sd->u.seg.limit - 3) { | 
| madr &= 0xffff; | addr = CPU_STAT_SREGBASE(CPU_CS_INDEX) + offset; | 
| if (madr <= sd->u.seg.segend) { |  | 
| addr = CPU_STAT_SREGBASE(CPU_CS_INDEX) + madr; |  | 
 | if (!CPU_STAT_PM) | if (!CPU_STAT_PM) | 
 | return cpu_memoryread_d(addr); | return cpu_memoryread_d(addr); | 
 | return cpu_lcmemoryread_d(addr); | return cpu_lcmemoryread_d(addr); | 
| Line 324  cpu_codefetch_d(DWORD madr) | Line 290  cpu_codefetch_d(DWORD madr) | 
 | * virtual address -> linear address | * virtual address -> linear address | 
 | */ | */ | 
 | BYTE MEMCALL | BYTE MEMCALL | 
| cpu_vmemoryread(int idx, DWORD madr) | cpu_vmemoryread(int idx, DWORD offset) | 
 | { | { | 
 | descriptor_t *sd; | descriptor_t *sd; | 
 | DWORD addr; | DWORD addr; | 
 |  | int exc; | 
 |  |  | 
 | __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | 
 |  |  | 
 | sd = &CPU_STAT_SREG(idx); | sd = &CPU_STAT_SREG(idx); | 
 | if (!sd->valid) { | if (!sd->valid) { | 
| EXCEPTION(GP_EXCEPTION, 0); | exc = GP_EXCEPTION; | 
|  | goto err; | 
 | } | } | 
 |  |  | 
| if (!CPU_INST_AS32) | if (!(sd->flag & CPU_DESC_FLAG_READABLE)) { | 
| madr &= 0xffff; | cpu_memoryread_check(sd, offset, 1, | 
| for (;;) { |  | 
| if ((sd->flag & CPU_DESC_READABLE) |  | 
| || (madr <= sd->u.seg.segend)) { |  | 
| addr = CPU_STAT_SREGBASE(idx) + madr; |  | 
| if (!CPU_STAT_PM) |  | 
| return cpu_memoryread(addr); |  | 
| return cpu_lmemoryread(addr); |  | 
| } |  | 
| cpu_memoryread_check(sd, madr, 1, |  | 
 | (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | 
 |  | } else { | 
 |  | switch (sd->type) { | 
 |  | case 4: case 5: case 6: case 7: | 
 |  | if (offset <= sd->u.seg.limit) { | 
 |  | if (idx == CPU_SS_INDEX) | 
 |  | exc = SS_EXCEPTION; | 
 |  | else | 
 |  | exc = GP_EXCEPTION; | 
 |  | goto err; | 
 |  | } | 
 |  | break; | 
 |  |  | 
 |  | default: | 
 |  | if (offset > sd->u.seg.limit) { | 
 |  | if (idx == CPU_SS_INDEX) | 
 |  | exc = SS_EXCEPTION; | 
 |  | else | 
 |  | exc = GP_EXCEPTION; | 
 |  | goto err; | 
 |  | } | 
 |  | break; | 
 |  | } | 
 | } | } | 
| /*NOTREACHED*/ | addr = CPU_STAT_SREGBASE(idx) + offset; | 
|  | if (!CPU_STAT_PM) | 
|  | return cpu_memoryread(addr); | 
|  | return cpu_lmemoryread(addr, CPU_STAT_USER_MODE); | 
|  |  | 
|  | err: | 
|  | EXCEPTION(exc, 0); | 
|  | return 0;       /* compiler happy */ | 
 | } | } | 
 |  |  | 
 | WORD MEMCALL | WORD MEMCALL | 
| cpu_vmemoryread_w(int idx, DWORD madr) | cpu_vmemoryread_w(int idx, DWORD offset) | 
 | { | { | 
 | descriptor_t *sd; | descriptor_t *sd; | 
 | DWORD addr; | DWORD addr; | 
 |  | int exc; | 
 |  |  | 
 | __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | 
 |  |  | 
 | sd = &CPU_STAT_SREG(idx); | sd = &CPU_STAT_SREG(idx); | 
 | if (!sd->valid) { | if (!sd->valid) { | 
| EXCEPTION(GP_EXCEPTION, 0); | exc = GP_EXCEPTION; | 
|  | goto err; | 
 | } | } | 
 |  |  | 
| if (!CPU_INST_AS32) | if (!(sd->flag & CPU_DESC_FLAG_READABLE)) { | 
| madr &= 0xffff; | cpu_memoryread_check(sd, offset, 2, | 
| for (;;) { |  | 
| if ((sd->flag & CPU_DESC_READABLE) |  | 
| || (madr <= sd->u.seg.segend - 1)) { |  | 
| addr = CPU_STAT_SREGBASE(idx) + madr; |  | 
| if (!CPU_STAT_PM) |  | 
| return cpu_memoryread_w(addr); |  | 
| return cpu_lmemoryread_w(addr); |  | 
| } |  | 
| cpu_memoryread_check(sd, madr, 2, |  | 
 | (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | 
| } | } else { | 
| /*NOTREACHED*/ | switch (sd->type) { | 
|  | case 4: case 5: case 6: case 7: | 
|  | if (offset - 1 <= sd->u.seg.limit) { | 
|  | if (idx == CPU_SS_INDEX) | 
|  | exc = SS_EXCEPTION; | 
|  | else | 
|  | exc = GP_EXCEPTION; | 
|  | goto err; | 
|  | } | 
|  | break; | 
|  |  | 
|  | default: | 
|  | if (offset > sd->u.seg.limit - 1) { | 
|  | if (idx == CPU_SS_INDEX) | 
|  | exc = SS_EXCEPTION; | 
|  | else | 
|  | exc = GP_EXCEPTION; | 
|  | goto err; | 
|  | } | 
|  | break; | 
|  | } | 
|  | } | 
|  | addr = CPU_STAT_SREGBASE(idx) + offset; | 
|  | if (!CPU_STAT_PM) | 
|  | return cpu_memoryread_w(addr); | 
|  | return cpu_lmemoryread_w(addr, CPU_STAT_USER_MODE); | 
|  |  | 
|  | err: | 
|  | EXCEPTION(exc, 0); | 
|  | return 0;       /* compiler happy */ | 
 | } | } | 
 |  |  | 
 | DWORD MEMCALL | DWORD MEMCALL | 
| cpu_vmemoryread_d(int idx, DWORD madr) | cpu_vmemoryread_d(int idx, DWORD offset) | 
 | { | { | 
 | descriptor_t *sd; | descriptor_t *sd; | 
 | DWORD addr; | DWORD addr; | 
 |  | int exc; | 
 |  |  | 
 | __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | 
 |  |  | 
 | sd = &CPU_STAT_SREG(idx); | sd = &CPU_STAT_SREG(idx); | 
 | if (!sd->valid) { | if (!sd->valid) { | 
| EXCEPTION(GP_EXCEPTION, 0); | exc = GP_EXCEPTION; | 
|  | goto err; | 
 | } | } | 
 |  |  | 
| if (!CPU_INST_AS32) | if (!(sd->flag & CPU_DESC_FLAG_READABLE)) { | 
| madr &= 0xffff; | cpu_memoryread_check(sd, offset, 4, | 
| for (;;) { |  | 
| if ((sd->flag & CPU_DESC_READABLE) |  | 
| || (madr <= sd->u.seg.segend - 3)) { |  | 
| addr = CPU_STAT_SREGBASE(idx) + madr; |  | 
| if (!CPU_STAT_PM) |  | 
| return cpu_memoryread_d(addr); |  | 
| return cpu_lmemoryread_d(addr); |  | 
| } |  | 
| cpu_memoryread_check(sd, madr, 4, |  | 
 | (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | 
 |  | } else { | 
 |  | switch (sd->type) { | 
 |  | case 4: case 5: case 6: case 7: | 
 |  | if (offset - 3 <= sd->u.seg.limit) { | 
 |  | if (idx == CPU_SS_INDEX) | 
 |  | exc = SS_EXCEPTION; | 
 |  | else | 
 |  | exc = GP_EXCEPTION; | 
 |  | goto err; | 
 |  | } | 
 |  | break; | 
 |  |  | 
 |  | default: | 
 |  | if (offset > sd->u.seg.limit - 3) { | 
 |  | if (idx == CPU_SS_INDEX) | 
 |  | exc = SS_EXCEPTION; | 
 |  | else | 
 |  | exc = GP_EXCEPTION; | 
 |  | goto err; | 
 |  | } | 
 |  | break; | 
 |  | } | 
 | } | } | 
| /*NOTREACHED*/ | addr = CPU_STAT_SREGBASE(idx) + offset; | 
|  | if (!CPU_STAT_PM) | 
|  | return cpu_memoryread_d(addr); | 
|  | return cpu_lmemoryread_d(addr, CPU_STAT_USER_MODE); | 
|  |  | 
|  | err: | 
|  | EXCEPTION(exc, 0); | 
|  | return 0;       /* compiler happy */ | 
 | } | } | 
 |  |  | 
 | /* vaddr memory write */ | /* vaddr memory write */ | 
 | void MEMCALL | void MEMCALL | 
| cpu_vmemorywrite(int idx, DWORD madr, BYTE val) | cpu_vmemorywrite(int idx, DWORD offset, BYTE val) | 
 | { | { | 
 | descriptor_t *sd; | descriptor_t *sd; | 
 | DWORD addr; | DWORD addr; | 
 |  | int exc; | 
 |  |  | 
 | __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | 
 |  |  | 
 | sd = &CPU_STAT_SREG(idx); | sd = &CPU_STAT_SREG(idx); | 
 | if (!sd->valid) { | if (!sd->valid) { | 
| EXCEPTION(GP_EXCEPTION, 0); | exc = GP_EXCEPTION; | 
|  | goto err; | 
 | } | } | 
 |  |  | 
| if (!CPU_INST_AS32) | if (!(sd->flag & CPU_DESC_FLAG_WRITABLE)) { | 
| madr &= 0xffff; | cpu_memorywrite_check(sd, offset, 1, | 
| for (;;) { | (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | 
| if ((sd->flag & CPU_DESC_WRITABLE) | } else { | 
| || (madr <= sd->u.seg.segend)) { | switch (sd->type) { | 
| addr = CPU_STAT_SREGBASE(idx) + madr; | case 6: case 7: | 
| if (!CPU_STAT_PM) { | if (offset <= sd->u.seg.limit) { | 
| /* real mode */ | if (idx == CPU_SS_INDEX) | 
| cpu_memorywrite(addr, val); | exc = SS_EXCEPTION; | 
| } else { | else | 
| /* protected mode */ | exc = GP_EXCEPTION; | 
| cpu_lmemorywrite(addr, val); | goto err; | 
 | } | } | 
| return; | break; | 
|  |  | 
|  | default: | 
|  | if (offset > sd->u.seg.limit) { | 
|  | if (idx == CPU_SS_INDEX) | 
|  | exc = SS_EXCEPTION; | 
|  | else | 
|  | exc = GP_EXCEPTION; | 
|  | goto err; | 
|  | } | 
|  | break; | 
 | } | } | 
 | cpu_memorywrite_check(sd, madr, 1, |  | 
 | (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); |  | 
 | } | } | 
| /*NOTREACHED*/ | addr = CPU_STAT_SREGBASE(idx) + offset; | 
|  | if (!CPU_STAT_PM) { | 
|  | /* real mode */ | 
|  | cpu_memorywrite(addr, val); | 
|  | } else { | 
|  | /* protected mode */ | 
|  | cpu_lmemorywrite(addr, val, CPU_STAT_USER_MODE); | 
|  | } | 
|  | return; | 
|  |  | 
|  | err: | 
|  | EXCEPTION(exc, 0); | 
 | } | } | 
 |  |  | 
 | void MEMCALL | void MEMCALL | 
| cpu_vmemorywrite_w(int idx, DWORD madr, WORD val) | cpu_vmemorywrite_w(int idx, DWORD offset, WORD val) | 
 | { | { | 
 | descriptor_t *sd; | descriptor_t *sd; | 
 | DWORD addr; | DWORD addr; | 
 |  | int exc; | 
 |  |  | 
 | __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | 
 |  |  | 
 | sd = &CPU_STAT_SREG(idx); | sd = &CPU_STAT_SREG(idx); | 
 | if (!sd->valid) { | if (!sd->valid) { | 
| EXCEPTION(GP_EXCEPTION, 0); | exc = GP_EXCEPTION; | 
|  | goto err; | 
 | } | } | 
 |  |  | 
| if (!CPU_INST_AS32) | if (!(sd->flag & CPU_DESC_FLAG_WRITABLE)) { | 
| madr &= 0xffff; | cpu_memorywrite_check(sd, offset, 2, | 
| for (;;) { | (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | 
| if ((sd->flag & CPU_DESC_WRITABLE) | } else { | 
| || (madr <= sd->u.seg.segend - 1)) { | switch (sd->type) { | 
| addr = CPU_STAT_SREGBASE(idx) + madr; | case 6: case 7: | 
| if (!CPU_STAT_PM) { | if (offset - 1 <= sd->u.seg.limit) { | 
| /* real mode */ | if (idx == CPU_SS_INDEX) | 
| cpu_memorywrite_w(addr, val); | exc = SS_EXCEPTION; | 
| } else { | else | 
| /* protected mode */ | exc = GP_EXCEPTION; | 
| cpu_lmemorywrite_w(addr, val); | goto err; | 
 | } | } | 
| return; | break; | 
|  |  | 
|  | default: | 
|  | if (offset > sd->u.seg.limit - 1) { | 
|  | if (idx == CPU_SS_INDEX) | 
|  | exc = SS_EXCEPTION; | 
|  | else | 
|  | exc = GP_EXCEPTION; | 
|  | goto err; | 
|  | } | 
|  | break; | 
 | } | } | 
 | cpu_memorywrite_check(sd, madr, 2, |  | 
 | (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); |  | 
 | } | } | 
| /*NOTREACHED*/ | addr = CPU_STAT_SREGBASE(idx) + offset; | 
|  | if (!CPU_STAT_PM) { | 
|  | /* real mode */ | 
|  | cpu_memorywrite_w(addr, val); | 
|  | } else { | 
|  | /* protected mode */ | 
|  | cpu_lmemorywrite_w(addr, val, CPU_STAT_USER_MODE); | 
|  | } | 
|  | return; | 
|  |  | 
|  | err: | 
|  | EXCEPTION(exc, 0); | 
 | } | } | 
 |  |  | 
 | void MEMCALL | void MEMCALL | 
| cpu_vmemorywrite_d(int idx, DWORD madr, DWORD val) | cpu_vmemorywrite_d(int idx, DWORD offset, DWORD val) | 
 | { | { | 
 | descriptor_t *sd; | descriptor_t *sd; | 
 | DWORD addr; | DWORD addr; | 
 |  | int exc; | 
 |  |  | 
 | __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | 
 |  |  | 
 | sd = &CPU_STAT_SREG(idx); | sd = &CPU_STAT_SREG(idx); | 
 | if (!sd->valid) { | if (!sd->valid) { | 
| EXCEPTION(GP_EXCEPTION, 0); | exc = GP_EXCEPTION; | 
|  | goto err; | 
 | } | } | 
 |  |  | 
| if (!CPU_INST_AS32) | if (!(sd->flag & CPU_DESC_FLAG_WRITABLE)) { | 
| madr &= 0xffff; | cpu_memorywrite_check(sd, offset, 4, | 
| for (;;) { |  | 
| if ((sd->flag & CPU_DESC_WRITABLE) |  | 
| || (madr <= sd->u.seg.segend - 3)) { |  | 
| addr = CPU_STAT_SREGBASE(idx) + madr; |  | 
| if (!CPU_STAT_PM) { |  | 
| /* real mode */ |  | 
| cpu_memorywrite_d(addr, val); |  | 
| } else { |  | 
| /* protected mode */ |  | 
| cpu_lmemorywrite_d(addr, val); |  | 
| } |  | 
| return; |  | 
| } |  | 
| cpu_memorywrite_check(sd, madr, 4, |  | 
 | (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | 
 | } |  | 
 | /*NOTREACHED*/ |  | 
 | } |  | 
 |  |  | 
 | /* |  | 
 | * physical address memory function |  | 
 | */ |  | 
 | void MEMCALL |  | 
 | cpu_memorywrite_d(DWORD address, DWORD value) |  | 
 | { |  | 
 | DWORD adr = address & cpumem_addrmask; |  | 
 |  |  | 
 | if (adr < LOWMEM - 3) { |  | 
 | __i286_memorywrite_d(adr, value); |  | 
 | } else if (adr < LOWMEM) { |  | 
 | cpu_memorywrite_w(adr, value & 0xffff); |  | 
 | cpu_memorywrite_w(adr + 2, (value >> 16) & 0xffff); |  | 
 | } else { |  | 
 | adr -= LOWMEM; |  | 
 | if (adr < extmem_size) { |  | 
 | SETDWORD(cpumem + adr, value); |  | 
 | } else { |  | 
 | ia32_panic("cpu_memorywrite_d: out of universe."); |  | 
 | } |  | 
 | } |  | 
 | } |  | 
 |  |  | 
 | void MEMCALL |  | 
 | cpu_memorywrite_w(DWORD address, WORD value) |  | 
 | { |  | 
 | DWORD adr = address & cpumem_addrmask; |  | 
 |  |  | 
 | if (adr < LOWMEM - 1) { |  | 
 | __i286_memorywrite_w(adr, value); |  | 
 | } else if (adr < LOWMEM) { |  | 
 | __i286_memorywrite(adr, value & 0xff); |  | 
 | cpumem[adr - (LOWMEM - 1)] = (value >> 8) & 0xff; |  | 
 | } else { |  | 
 | adr -= LOWMEM; |  | 
 | if (adr < extmem_size) { |  | 
 | SETWORD(cpumem + adr, value); |  | 
 | } else { |  | 
 | ia32_panic("cpu_memorywrite_w: out of universe."); |  | 
 | } |  | 
 | } |  | 
 | } |  | 
 |  |  | 
 | void MEMCALL |  | 
 | cpu_memorywrite(DWORD address, BYTE value) |  | 
 | { |  | 
 | DWORD adr = address & cpumem_addrmask; |  | 
 |  |  | 
 | if (adr < LOWMEM) { |  | 
 | __i286_memorywrite(adr, value); |  | 
 | } else { | } else { | 
| adr -= LOWMEM; | switch (sd->type) { | 
| if (adr < extmem_size) { | case 6: case 7: | 
| cpumem[adr] = value; | if (offset - 3 <= sd->u.seg.limit) { | 
| } else { | if (idx == CPU_SS_INDEX) | 
| ia32_panic("cpu_memorywrite: out of universe."); | exc = SS_EXCEPTION; | 
| } | else | 
| } | exc = GP_EXCEPTION; | 
| } | goto err; | 
|  | } | 
| DWORD MEMCALL | break; | 
| cpu_memoryread_d(DWORD address) |  | 
| { |  | 
| DWORD adr = address & cpumem_addrmask; |  | 
| DWORD val; |  | 
|  |  | 
| if (adr < LOWMEM - 3) { |  | 
| val = __i286_memoryread_d(adr); |  | 
| } else if (adr < LOWMEM) { |  | 
| val = cpu_memoryread_w(adr); |  | 
| val |= (DWORD)cpu_memoryread_w(adr + 2) << 16; |  | 
| } else { |  | 
| adr -= LOWMEM; |  | 
| if (adr < extmem_size) { |  | 
| val = GETDWORD(cpumem + adr); |  | 
| } else { |  | 
| val = (DWORD)-1; |  | 
| ia32_panic("cpu_memoryread_d: out of universe."); |  | 
| } |  | 
| } |  | 
| return val; |  | 
| } |  | 
|  |  | 
| WORD MEMCALL |  | 
| cpu_memoryread_w(DWORD address) |  | 
| { |  | 
| DWORD adr = address & cpumem_addrmask; |  | 
| WORD val; |  | 
 |  |  | 
| if (adr < LOWMEM - 1) { | default: | 
| val = __i286_memoryread_w(adr); | if (offset > sd->u.seg.limit - 3) { | 
| } else if (adr < LOWMEM) { | if (idx == CPU_SS_INDEX) | 
| val = cpu_memoryread(adr); | exc = SS_EXCEPTION; | 
| val |= (WORD)cpumem[adr - (LOWMEM - 1)] << 8; | else | 
| } else { | exc = GP_EXCEPTION; | 
| adr -= LOWMEM; | goto err; | 
| if (adr < extmem_size) { | } | 
| val = GETWORD(cpumem + adr); | break; | 
| } else { |  | 
| val = (WORD)-1; |  | 
| ia32_panic("cpu_memoryread_w: out of universe."); |  | 
 | } | } | 
 | } | } | 
| return val; | addr = CPU_STAT_SREGBASE(idx) + offset; | 
| } | if (!CPU_STAT_PM) { | 
|  | /* real mode */ | 
| BYTE MEMCALL | cpu_memorywrite_d(addr, val); | 
| cpu_memoryread(DWORD address) |  | 
| { |  | 
| DWORD adr = address & cpumem_addrmask; |  | 
| BYTE val; |  | 
|  |  | 
| if (adr < LOWMEM) { |  | 
| val = __i286_memoryread(adr); |  | 
 | } else { | } else { | 
| adr -= LOWMEM; | /* protected mode */ | 
| if (adr < extmem_size) { | cpu_lmemorywrite_d(addr, val, CPU_STAT_USER_MODE); | 
| val = cpumem[adr]; |  | 
| } else { |  | 
| val = (BYTE)-1; |  | 
| ia32_panic("cpu_memoryread: out of universe."); |  | 
| } |  | 
 | } | } | 
| return val; | return; | 
|  |  | 
|  | err: | 
|  | EXCEPTION(exc, 0); | 
 | } | } |