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| version 1.8, 2004/01/27 15:54:45 | version 1.34, 2012/02/05 22:19:47 |
|---|---|
| Line 1 | Line 1 |
| /* $Id$ */ | |
| /* | /* |
| * Copyright (c) 2002-2003 NONAKA Kimihiro | * Copyright (c) 2002-2004 NONAKA Kimihiro |
| * All rights reserved. | * All rights reserved. |
| * | * |
| * Redistribution and use in source and binary forms, with or without | * Redistribution and use in source and binary forms, with or without |
| Line 12 | Line 10 |
| * 2. Redistributions in binary form must reproduce the above copyright | * 2. Redistributions in binary form must reproduce the above copyright |
| * notice, this list of conditions and the following disclaimer in the | * notice, this list of conditions and the following disclaimer in the |
| * documentation and/or other materials provided with the distribution. | * documentation and/or other materials provided with the distribution. |
| * 3. The name of the author may not be used to endorse or promote products | |
| * derived from this software without specific prior written permission. | |
| * | * |
| * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR |
| * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES |
| Line 31 | Line 27 |
| #include "cpu.h" | #include "cpu.h" |
| #include "memory.h" | #include "memory.h" |
| #define cpumem i386core.e.ext | |
| #define extmem_size i386core.e.extsize | |
| /* | /* |
| * initialize 1MB-16MB memory | * memory access check |
| */ | */ |
| static int MEMCALL check_limit_upstairs(descriptor_t *sdp, UINT32 offset, UINT len); | |
| int | static void MEMCALL cpu_memoryread_check(descriptor_t *sdp, UINT32 offset, UINT len, int e); |
| init_cpumem(UINT8 usemem) | static void MEMCALL cpu_memorywrite_check(descriptor_t *sdp, UINT32 offset, UINT len, int e); |
| { | |
| UINT32 size; | static int MEMCALL |
| check_limit_upstairs(descriptor_t *sdp, UINT32 offset, UINT len) | |
| size = usemem << 20; | { |
| if (size >= (LOWMEM - 0x100000)) { | UINT32 limit; |
| size -= (LOWMEM - 0x100000); | UINT32 end; |
| } | |
| else { | __ASSERT(sdp != NULL); |
| size = 0; | __ASSERT(len > 0); |
| } | |
| if (extmem_size != size) { | len--; |
| if (cpumem) { | end = offset + len; |
| free(cpumem); | |
| cpumem = 0; | if (SEG_IS_DATA(sdp) && SEG_IS_EXPANDDOWN_DATA(sdp)) { |
| /* expand-down data segment */ | |
| limit = SEG_IS_32BIT(sdp) ? 0xffffffff : 0x0000ffff; | |
| if (sdp->u.seg.limit == 0) { | |
| /* | |
| * 32bit 16bit | |
| * +-------+ +-------+ FFFFFFFFh | |
| * | | | | | |
| * | | + [1] + 0000FFFFh | |
| * | valid | | | | |
| * | | +-------+ 0000FFFFh - len -1 | |
| * | | | valid | | |
| * +-------+ +-------+ 00000000h | |
| */ | |
| if (!SEG_IS_32BIT(sdp)) { | |
| if ((len > limit) /* len check */ | |
| || (end > limit)) { /* [1] */ | |
| goto exc; | |
| } | |
| } else { | |
| sdp->flag |= CPU_DESC_FLAG_WHOLEADR; | |
| } | |
| } else { | |
| /* | |
| * 32bit 16bit | |
| * +-------+ +-------+ FFFFFFFFh | |
| * | [2] | | | | |
| * +-------+ +.......+ FFFFFFFFh - len - 1 | |
| * | | | [2] | | |
| * | | +.......+ 0000FFFFh | |
| * | valid | | | | |
| * | | +-------+ 0000FFFFh - len - 1 | |
| * | | | valid | | |
| * +-------+ +-------+ seg.limit | |
| * | [1] | | [1] | | |
| * +-------+ +-------+ 00000000h | |
| */ | |
| if ((len > limit - sdp->u.seg.limit) /* len check */ | |
| || (end < offset) /* wrap check */ | |
| || (offset < sdp->u.seg.limit) /* [1] */ | |
| || (end > limit)) { /* [2] */ | |
| goto exc; | |
| } | |
| } | } |
| if (size) { | } else { |
| cpumem = (BYTE *)malloc(size); | /* expand-up data or code segment */ |
| if (cpumem == NULL) { | if (sdp->u.seg.limit == 0xffffffff) { |
| size = 0; | /* |
| * 16/32bit | |
| * +-------+ FFFFFFFFh | |
| * | | | |
| * | | | |
| * | valid | | |
| * | | | |
| * | | | |
| * +-------+ 00000000h | |
| */ | |
| sdp->flag |= CPU_DESC_FLAG_WHOLEADR; | |
| } else { | |
| /* | |
| * 16/32bit | |
| * +-------+ FFFFFFFFh | |
| * | | | |
| * | | | |
| * | [1] | | |
| * +.......+ seg.limit | |
| * | | | |
| * +-------+ seg.limit - len - 1 | |
| * | valid | | |
| * +-------+ 00000000h | |
| */ | |
| if ((len > sdp->u.seg.limit) /* len check */ | |
| || (end < offset) /* wrap check */ | |
| || (end > sdp->u.seg.limit + 1)) { /* [1] */ | |
| goto exc; | |
| } | } |
| } | } |
| extmem_size = size; | |
| } | } |
| return SUCCESS; | return 1; /* Ok! */ |
| exc: | |
| VERBOSE(("check_limit_upstairs: check failure: offset = 0x%08x, len = %d", offset, len + 1)); | |
| #if defined(DEBUG) | |
| segdesc_dump(sdp); | |
| #endif | |
| return 0; | |
| } | } |
| static void MEMCALL | |
| /* | cpu_memoryread_check(descriptor_t *sdp, UINT32 offset, UINT len, int e) |
| * memory access check | |
| */ | |
| void | |
| cpu_memoryread_check(descriptor_t* sd, DWORD offset, DWORD length, int e) | |
| { | { |
| DWORD uplimit; | |
| if (CPU_STAT_PM) { | __ASSERT(sdp != NULL); |
| /* invalid */ | __ASSERT(len > 0); |
| if (!sd->valid) { | |
| VERBOSE(("cpu_memoryread_check: invalid")); | |
| EXCEPTION(GP_EXCEPTION, 0); | |
| } | |
| /* not present */ | if (!SEG_IS_VALID(sdp)) { |
| if (!sd->p) { | e = GP_EXCEPTION; |
| VERBOSE(("cpu_memoryread_check: not present")); | goto exc; |
| EXCEPTION(e, 0); | } |
| } | if (!SEG_IS_PRESENT(sdp) |
| || SEG_IS_SYSTEM(sdp) | |
| || (SEG_IS_CODE(sdp) && !SEG_IS_READABLE_CODE(sdp))) { | |
| goto exc; | |
| } | |
| switch (sd->type) { | switch (sdp->type) { |
| case 0: case 1: /* ro */ | case 0: case 1: /* ro */ |
| case 2: case 3: /* rw */ | case 2: case 3: /* rw */ |
| case 10: case 11: /* rx */ | case 4: case 5: /* ro (expand down) */ |
| case 14: case 15: /* rxc */ | case 6: case 7: /* rw (expand down) */ |
| if (offset > sd->u.seg.limit - length + 1) { | case 10: case 11: /* rx */ |
| VERBOSE(("cpu_memoryread_check: offset(%08x) > sd->u.seg.limit(%08x) - length(%08x) + 1", offset, sd->u.seg.limit, length)); | case 14: case 15: /* rxc */ |
| EXCEPTION(e, 0); | if (!check_limit_upstairs(sdp, offset, len)) |
| } | goto exc; |
| if (length - 1 > sd->u.seg.limit) { | break; |
| VERBOSE(("cpu_memoryread_check: length(%08x) - 1 > sd->u.seg.limit(%08x)", length, sd->u.seg.limit)); | |
| EXCEPTION(e, 0); | |
| } | |
| break; | |
| case 4: case 5: /* ro (expand down) */ | default: |
| case 6: case 7: /* rw (expand down) */ | goto exc; |
| uplimit = sd->d ? 0xffffffff : 0x0000ffff; | |
| if (offset <= sd->u.seg.limit) { | |
| VERBOSE(("cpu_memoryread_check: offset(%08x) <= sd->u.seg.limit(%08x)", offset, sd->u.seg.limit)); | |
| EXCEPTION(e, 0); | |
| } | |
| 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); | |
| } | |
| break; | |
| default: | |
| VERBOSE(("cpu_memoryread_check: invalid type (type = %d)", sd->type)); | |
| EXCEPTION(e, 0); | |
| break; | |
| } | |
| } | } |
| sd->flag |= CPU_DESC_FLAG_READABLE; | sdp->flag |= CPU_DESC_FLAG_READABLE; |
| return; | |
| exc: | |
| VERBOSE(("cpu_memoryread_check: check failure: offset = 0x%08x, len = %d", offset, len)); | |
| #if defined(DEBUG) | |
| segdesc_dump(sdp); | |
| #endif | |
| EXCEPTION(e, 0); | |
| } | } |
| void | static void MEMCALL |
| cpu_memorywrite_check(descriptor_t* sd, DWORD offset, DWORD length, int e) | cpu_memorywrite_check(descriptor_t *sdp, UINT32 offset, UINT len, int e) |
| { | { |
| DWORD uplimit; | |
| if (CPU_STAT_PM) { | |
| /* invalid */ | |
| if (!sd->valid) { | |
| VERBOSE(("cpu_memorywrite_check: invalid")); | |
| EXCEPTION(GP_EXCEPTION, 0); | |
| } | |
| /* not present */ | __ASSERT(sdp != NULL); |
| if (!sd->p) { | __ASSERT(len > 0); |
| VERBOSE(("cpu_memorywrite_check: not present")); | |
| EXCEPTION(e, 0); | |
| } | |
| if (!sd->s) { | if (!SEG_IS_VALID(sdp)) { |
| VERBOSE(("cpu_memorywrite_check: system segment")); | e = GP_EXCEPTION; |
| EXCEPTION(e, 0); | goto exc; |
| } | } |
| if (!SEG_IS_PRESENT(sdp) | |
| switch (sd->type) { | || SEG_IS_SYSTEM(sdp) |
| case 2: case 3: /* rw */ | || SEG_IS_CODE(sdp) |
| if (offset > sd->u.seg.limit - length + 1) { | || (SEG_IS_DATA(sdp) && !SEG_IS_WRITABLE_DATA(sdp))) { |
| VERBOSE(("cpu_memorywrite_check: offset(%08x) > sd->u.seg.limit(%08x) - length(%08x) + 1", offset, sd->u.seg.limit, length)); | goto exc; |
| 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); | |
| } | |
| break; | |
| case 6: case 7: /* rw (expand down) */ | switch (sdp->type) { |
| uplimit = sd->d ? 0xffffffff : 0x0000ffff; | case 2: case 3: /* rw */ |
| if (offset <= sd->u.seg.limit) { | case 6: case 7: /* rw (expand down) */ |
| VERBOSE(("cpu_memorywrite_check: offset(%08x) <= sd->u.seg.limit(%08x)", offset, sd->u.seg.limit)); | if (!check_limit_upstairs(sdp, offset, len)) |
| EXCEPTION(e, 0); | goto exc; |
| } | break; |
| 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); | |
| } | |
| break; | |
| default: | default: |
| VERBOSE(("cpu_memorywrite_check: invalid type (type = %d)", sd->type)); | goto exc; |
| EXCEPTION(e, 0); | |
| break; | |
| } | |
| } | } |
| sd->flag |= CPU_DESC_FLAG_WRITABLE; | sdp->flag |= CPU_DESC_FLAG_WRITABLE | CPU_DESC_FLAG_READABLE; |
| return; | |
| exc: | |
| VERBOSE(("cpu_memorywrite_check: check failure: offset = 0x%08x, len = %d", offset, len)); | |
| #if defined(DEBUG) | |
| segdesc_dump(sdp); | |
| #endif | |
| EXCEPTION(e, 0); | |
| } | } |
| BOOL | void MEMCALL |
| cpu_stack_push_check(descriptor_t* sdp, DWORD esp, DWORD length) | cpu_stack_push_check(UINT16 s, descriptor_t *sdp, UINT32 sp, UINT len) |
| { | { |
| DWORD limit; | UINT32 limit; |
| UINT32 start; | |
| if (!CPU_STAT_PM) | __ASSERT(sdp != NULL); |
| return TRUE; | __ASSERT(len > 0); |
| if (!sdp->valid || !sdp->p) | len--; |
| return FALSE; | |
| if (!sdp->s || sdp->u.seg.c || !sdp->u.seg.wr) | if (!SEG_IS_VALID(sdp) |
| return FALSE; | || !SEG_IS_PRESENT(sdp) |
| || SEG_IS_SYSTEM(sdp) | |
| if (!sdp->d) { | || SEG_IS_CODE(sdp) |
| esp &= 0xffff; | || !SEG_IS_WRITABLE_DATA(sdp)) { |
| limit = 0xffff; | goto exc; |
| } else { | |
| limit = 0xffffffff; | |
| } | } |
| if (sdp->u.seg.ec) { | |
| start = sp - len; | |
| limit = SEG_IS_32BIT(sdp) ? 0xffffffff : 0x0000ffff; | |
| if (SEG_IS_EXPANDDOWN_DATA(sdp)) { | |
| /* expand-down stack */ | /* expand-down stack */ |
| if ((esp == 0) | if (!SEG_IS_32BIT(sdp)) { |
| || (esp < length) | if (sp > limit) { /* [*] */ |
| || (esp - length <= sdp->u.seg.limit) | goto exc; |
| || (esp > limit)) | } |
| return FALSE; | } |
| if (sdp->u.seg.limit == 0) { | |
| /* | |
| * 32bit 16bit | |
| * +-------+ +-------+ FFFFFFFFh | |
| * | | | [*] | | |
| * | | +-------+ 0000FFFFh | |
| * | valid | | | | |
| * | | | valid | | |
| * | | | | | |
| * +-------+ +-------+ 00000000h | |
| */ | |
| if (!SEG_IS_32BIT(sdp)) { | |
| if (sp > limit) { /* [1] */ | |
| goto exc; | |
| } | |
| } else { | |
| sdp->flag |= CPU_DESC_FLAG_WHOLEADR; | |
| } | |
| } else { | |
| /* | |
| * 32bit 16bit | |
| * +-------+ +-------+ FFFFFFFFh | |
| * | | | [*] | | |
| * | valid | +-------+ 0000FFFFh | |
| * | | | valid | | |
| * +-------+ +-------+ seg.limit + len - 1 | |
| * | | | | | |
| * +..[1]..+ +..[1]..+ seg.limit | |
| * | | | | | |
| * +-------+ +-------+ 00000000h | |
| */ | |
| if ((len > limit - sdp->u.seg.limit) /* len check */ | |
| || (start > sp) /* wrap check */ | |
| || (start < sdp->u.seg.limit)) { /* [1] */ | |
| goto exc; | |
| } | |
| } | |
| } else { | } else { |
| /* expand-up stack */ | /* expand-up stack */ |
| if (esp == 0) { | if (sdp->u.seg.limit == limit) { |
| if ((sdp->d && (sdp->u.seg.segend != 0xffffffff)) | /* |
| || (!sdp->d && (sdp->u.seg.segend != 0xffff))) | * 32bit 16bit |
| return FALSE; | * +-------+ +-------+ FFFFFFFFh |
| * | | | [1] | | |
| * | | +-------+ 0000FFFFh | |
| * | valid | | | | |
| * | | | valid | | |
| * | | | | | |
| * +-------+ +-------+ 00000000h | |
| */ | |
| if (!SEG_IS_32BIT(sdp)) { | |
| if (sp > limit) { /* [1] */ | |
| goto exc; | |
| } | |
| } else { | |
| sdp->flag |= CPU_DESC_FLAG_WHOLEADR; | |
| } | |
| } else { | } else { |
| if ((esp < length) | /* |
| || (esp - 1 > sdp->u.seg.limit)) | * 32bit 16bit |
| return FALSE; | * +-------+ +-------+ FFFFFFFFh |
| * | | | | | |
| * | [1] | + [1] + 0000FFFFh | |
| * | | | | | |
| * +-------+ +-------+ seg.limit | |
| * | valid | | valid | | |
| * +.......+ +.......+ len - 1 | |
| * | [+] | | [+] | | |
| * +-------+ +-------+ 00000000h | |
| * | |
| * [+]: wrap check | |
| */ | |
| if ((len > sdp->u.seg.limit) /* len check */ | |
| || (start > sp) /* wrap check */ | |
| || (sp > sdp->u.seg.limit + 1)) { /* [1] */ | |
| goto exc; | |
| } | |
| } | } |
| } | } |
| return TRUE; | return; |
| exc: | |
| VERBOSE(("cpu_stack_push_check: check failure: selector = 0x%04x, sp = 0x%08x, len = %d", s, sp, len)); | |
| #if defined(DEBUG) | |
| segdesc_dump(sdp); | |
| #endif | |
| EXCEPTION(SS_EXCEPTION, s & 0xfffc); | |
| } | } |
| BOOL | void MEMCALL |
| cpu_stack_pop_check(descriptor_t* sdp, DWORD esp, DWORD length) | cpu_stack_pop_check(UINT16 s, descriptor_t *sdp, UINT32 sp, UINT len) |
| { | { |
| DWORD limit; | |
| if (!CPU_STAT_PM) | __ASSERT(sdp != NULL); |
| return TRUE; | __ASSERT(len > 0); |
| if (!sdp->valid || !sdp->p) | if (!SEG_IS_VALID(sdp) |
| return FALSE; | || !SEG_IS_PRESENT(sdp) |
| if (!sdp->s || sdp->u.seg.c || !sdp->u.seg.wr) | || SEG_IS_SYSTEM(sdp) |
| return FALSE; | || SEG_IS_CODE(sdp) |
| || !SEG_IS_WRITABLE_DATA(sdp)) { | |
| if (!sdp->d) { | goto exc; |
| esp &= 0xffff; | |
| limit = 0xffff; | |
| } else { | |
| limit = 0xffffffff; | |
| } | |
| if (sdp->u.seg.ec) { | |
| /* expand-down stack */ | |
| if ((esp == limit) | |
| || ((limit - esp) + 1 < length)) | |
| return FALSE; | |
| } else { | |
| /* expand-up stack */ | |
| if ((esp == limit) | |
| || (sdp->u.seg.segend == 0) | |
| || (esp > sdp->u.seg.limit) | |
| || ((sdp->u.seg.limit - esp) + 1 < length)) | |
| return FALSE; | |
| } | } |
| return TRUE; | |
| } | |
| #undef OVERRUN_CHECK | if (!check_limit_upstairs(sdp, sp, len)) |
| goto exc; | |
| return; | |
| #if defined(OVERRUN_CHECK) | exc: |
| #define OVERRUN_EXCEPTION() EXCEPTION(GP_EXCEPTION, 0) | VERBOSE(("cpu_stack_pop_check: check failure: selector = 0x%04x, sp = 0x%08x, len = %d", s, sp, len)); |
| #else | #if defined(DEBUG) |
| #define OVERRUN_EXCEPTION() | segdesc_dump(sdp); |
| #endif | #endif |
| EXCEPTION(SS_EXCEPTION, s & 0xfffc); | |
| } | |
| /* | /* |
| * code fetch | * code fetch |
| */ | */ |
| BYTE MEMCALL | UINT8 MEMCALL |
| cpu_codefetch(DWORD offset) | cpu_codefetch(UINT32 offset) |
| { | { |
| descriptor_t *sd; | const int ucrw = CPU_PAGE_READ_CODE | CPU_STAT_USER_MODE; |
| DWORD addr; | descriptor_t *sdp; |
| UINT32 addr; | |
| sdp = &CPU_CS_DESC; | |
| addr = sdp->u.seg.segbase + offset; | |
| if (!CPU_STAT_PM) | |
| return cpu_memoryread(addr); | |
| if (offset <= sdp->u.seg.limit) | |
| return cpu_lmemoryread(addr, ucrw); | |
| sd = &CPU_STAT_SREG(CPU_CS_INDEX); | |
| if (offset <= sd->u.seg.limit) { | |
| addr = CPU_STAT_SREGBASE(CPU_CS_INDEX) + offset; | |
| if (!CPU_STAT_PM) | |
| return cpu_memoryread(addr); | |
| return cpu_lcmemoryread(addr); | |
| } | |
| EXCEPTION(GP_EXCEPTION, 0); | EXCEPTION(GP_EXCEPTION, 0); |
| return 0; /* compiler happy */ | return 0; /* compiler happy */ |
| } | } |
| WORD MEMCALL | UINT16 MEMCALL |
| cpu_codefetch_w(DWORD offset) | cpu_codefetch_w(UINT32 offset) |
| { | { |
| descriptor_t *sd; | const int ucrw = CPU_PAGE_READ_CODE | CPU_STAT_USER_MODE; |
| DWORD addr; | descriptor_t *sdp; |
| UINT32 addr; | |
| sdp = &CPU_CS_DESC; | |
| addr = sdp->u.seg.segbase + offset; | |
| if (!CPU_STAT_PM) | |
| return cpu_memoryread_w(addr); | |
| if (offset <= sdp->u.seg.limit - 1) | |
| return cpu_lmemoryread_w(addr, ucrw); | |
| sd = &CPU_STAT_SREG(CPU_CS_INDEX); | |
| if (offset <= sd->u.seg.limit - 1) { | |
| addr = CPU_STAT_SREGBASE(CPU_CS_INDEX) + offset; | |
| if (!CPU_STAT_PM) | |
| return cpu_memoryread_w(addr); | |
| return cpu_lcmemoryread_w(addr); | |
| } | |
| EXCEPTION(GP_EXCEPTION, 0); | EXCEPTION(GP_EXCEPTION, 0); |
| return 0; /* compiler happy */ | return 0; /* compiler happy */ |
| } | } |
| DWORD MEMCALL | UINT32 MEMCALL |
| cpu_codefetch_d(DWORD offset) | cpu_codefetch_d(UINT32 offset) |
| { | { |
| descriptor_t *sd; | const int ucrw = CPU_PAGE_READ_CODE | CPU_STAT_USER_MODE; |
| DWORD addr; | descriptor_t *sdp; |
| UINT32 addr; | |
| sdp = &CPU_CS_DESC; | |
| addr = sdp->u.seg.segbase + offset; | |
| if (!CPU_STAT_PM) | |
| return cpu_memoryread_d(addr); | |
| if (offset <= sdp->u.seg.limit - 3) | |
| return cpu_lmemoryread_d(addr, ucrw); | |
| sd = &CPU_STAT_SREG(CPU_CS_INDEX); | |
| if (offset <= sd->u.seg.limit - 3) { | |
| addr = CPU_STAT_SREGBASE(CPU_CS_INDEX) + offset; | |
| if (!CPU_STAT_PM) | |
| return cpu_memoryread_d(addr); | |
| return cpu_lcmemoryread_d(addr); | |
| } | |
| EXCEPTION(GP_EXCEPTION, 0); | EXCEPTION(GP_EXCEPTION, 0); |
| return 0; /* compiler happy */ | return 0; /* compiler happy */ |
| } | } |
| /* | /* |
| * virtual address -> linear address | * additional physical address memory access functions |
| */ | */ |
| BYTE MEMCALL | UINT64 MEMCALL |
| cpu_vmemoryread(int idx, DWORD offset) | cpu_memoryread_q(UINT32 paddr) |
| { | { |
| descriptor_t *sd; | UINT64 value; |
| DWORD addr; | |
| int exc; | |
| __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | |
| sd = &CPU_STAT_SREG(idx); | value = cpu_memoryread_d(paddr); |
| if (!sd->valid) { | value += (UINT64)cpu_memoryread_d(paddr + 4) << 32; |
| exc = GP_EXCEPTION; | |
| goto err; | |
| } | |
| if (!(sd->flag & CPU_DESC_FLAG_READABLE)) { | return value; |
| cpu_memoryread_check(sd, offset, 1, | } |
| (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: | void MEMCALL |
| if (offset > sd->u.seg.limit) { | cpu_memorywrite_q(UINT32 paddr, UINT64 value) |
| 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(addr); | |
| return cpu_lmemoryread(addr); | |
| err: | cpu_memorywrite_d(paddr, (UINT32)value); |
| EXCEPTION(exc, 0); | cpu_memorywrite_d(paddr + 4, (UINT32)(value >> 32)); |
| return 0; /* compiler happy */ | |
| } | } |
| WORD MEMCALL | REG80 MEMCALL |
| cpu_vmemoryread_w(int idx, DWORD offset) | cpu_memoryread_f(UINT32 paddr) |
| { | { |
| descriptor_t *sd; | REG80 value; |
| DWORD addr; | int i; |
| int exc; | |
| __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | for (i = 0; i < (int)sizeof(REG80); ++i) { |
| value.b[i] = cpu_memoryread(paddr + i); | |
| sd = &CPU_STAT_SREG(idx); | |
| if (!sd->valid) { | |
| exc = GP_EXCEPTION; | |
| goto err; | |
| } | } |
| return value; | |
| if (!(sd->flag & CPU_DESC_FLAG_READABLE)) { | |
| cpu_memoryread_check(sd, offset, 2, | |
| (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | |
| } else { | |
| 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); | |
| err: | |
| EXCEPTION(exc, 0); | |
| return 0; /* compiler happy */ | |
| } | } |
| DWORD MEMCALL | void MEMCALL |
| cpu_vmemoryread_d(int idx, DWORD offset) | cpu_memorywrite_f(UINT32 paddr, const REG80 *value) |
| { | { |
| descriptor_t *sd; | int i; |
| DWORD addr; | |
| int exc; | |
| __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | |
| sd = &CPU_STAT_SREG(idx); | for (i = 0; i < (int)sizeof(REG80); ++i) { |
| if (!sd->valid) { | cpu_memorywrite(paddr + i, value->b[i]); |
| exc = GP_EXCEPTION; | |
| goto err; | |
| } | } |
| } | |
| if (!(sd->flag & CPU_DESC_FLAG_READABLE)) { | /* |
| cpu_memoryread_check(sd, offset, 4, | * virtual address memory access functions |
| (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | */ |
| } else { | #define CHOOSE_EXCEPTION(sreg) \ |
| switch (sd->type) { | (((sreg) == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION) |
| 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: | #include "cpu_mem.mcr" |
| if (offset > sd->u.seg.limit - 3) { | |
| 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_d(addr); | |
| return cpu_lmemoryread_d(addr); | |
| err: | DECLARE_VIRTUAL_ADDRESS_MEMORY_RW_FUNCTIONS(b, UINT8, 1) |
| EXCEPTION(exc, 0); | DECLARE_VIRTUAL_ADDRESS_MEMORY_RMW_FUNCTIONS(b, UINT8, 1) |
| return 0; /* compiler happy */ | DECLARE_VIRTUAL_ADDRESS_MEMORY_RW_FUNCTIONS(w, UINT16, 2) |
| } | DECLARE_VIRTUAL_ADDRESS_MEMORY_RMW_FUNCTIONS(w, UINT16, 2) |
| DECLARE_VIRTUAL_ADDRESS_MEMORY_RW_FUNCTIONS(d, UINT32, 4) | |
| DECLARE_VIRTUAL_ADDRESS_MEMORY_RMW_FUNCTIONS(d, UINT32, 4) | |
| DECLARE_VIRTUAL_ADDRESS_MEMORY_RW_FUNCTIONS(q, UINT64, 8) | |
| /* vaddr memory write */ | REG80 MEMCALL |
| void MEMCALL | cpu_vmemoryread_f(int idx, UINT32 offset) |
| cpu_vmemorywrite(int idx, DWORD offset, BYTE val) | |
| { | { |
| descriptor_t *sd; | descriptor_t *sdp; |
| DWORD addr; | UINT32 addr; |
| int exc; | int exc; |
| __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); |
| sd = &CPU_STAT_SREG(idx); | sdp = &CPU_STAT_SREG(idx); |
| if (!sd->valid) { | addr = sdp->u.seg.segbase + offset; |
| exc = GP_EXCEPTION; | |
| goto err; | |
| } | |
| if (!(sd->flag & CPU_DESC_FLAG_WRITABLE)) { | if (!CPU_STAT_PM) |
| cpu_memorywrite_check(sd, offset, 1, | return cpu_memoryread_f(addr); |
| (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | |
| } else { | |
| switch (sd->type) { | |
| 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 (!SEG_IS_VALID(sdp)) { |
| if (offset > sd->u.seg.limit) { | exc = GP_EXCEPTION; |
| if (idx == CPU_SS_INDEX) | goto err; |
| exc = SS_EXCEPTION; | |
| else | |
| exc = GP_EXCEPTION; | |
| goto err; | |
| } | |
| break; | |
| } | |
| } | |
| addr = CPU_STAT_SREGBASE(idx) + offset; | |
| if (!CPU_STAT_PM) { | |
| /* real mode */ | |
| cpu_memorywrite(addr, val); | |
| } else { | |
| /* protected mode */ | |
| cpu_lmemorywrite(addr, val); | |
| } | } |
| return; | if (!(sdp->flag & CPU_DESC_FLAG_READABLE)) { |
| cpu_memoryread_check(sdp, offset, 10, CHOOSE_EXCEPTION(idx)); | |
| } else if (!(sdp->flag & CPU_DESC_FLAG_WHOLEADR)) { | |
| if (!check_limit_upstairs(sdp, offset, 10)) | |
| goto range_failure; | |
| } | |
| return cpu_lmemoryread_f(addr, CPU_PAGE_READ_DATA | CPU_STAT_USER_MODE); | |
| range_failure: | |
| VERBOSE(("cpu_vmemoryread_f: type = %d, offset = %08x, limit = %08x", sdp->type, offset, sdp->u.seg.limit)); | |
| exc = CHOOSE_EXCEPTION(idx); | |
| err: | err: |
| EXCEPTION(exc, 0); | EXCEPTION(exc, 0); |
| { | |
| REG80 dummy; | |
| memset(&dummy, 0, sizeof(dummy)); | |
| return dummy; /* compiler happy */ | |
| } | |
| } | } |
| void MEMCALL | void MEMCALL |
| cpu_vmemorywrite_w(int idx, DWORD offset, WORD val) | cpu_vmemorywrite_f(int idx, UINT32 offset, const REG80 *value) |
| { | { |
| descriptor_t *sd; | descriptor_t *sdp; |
| DWORD addr; | UINT32 addr; |
| int exc; | int exc; |
| __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); |
| sd = &CPU_STAT_SREG(idx); | sdp = &CPU_STAT_SREG(idx); |
| if (!sd->valid) { | addr = sdp->u.seg.segbase + offset; |
| exc = GP_EXCEPTION; | |
| goto err; | |
| } | |
| if (!(sd->flag & CPU_DESC_FLAG_WRITABLE)) { | |
| cpu_memorywrite_check(sd, offset, 2, | |
| (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | |
| } else { | |
| switch (sd->type) { | |
| 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) { | if (!CPU_STAT_PM) { |
| /* real mode */ | cpu_memorywrite_f(addr, value); |
| cpu_memorywrite_w(addr, val); | return; |
| } else { | |
| /* protected mode */ | |
| cpu_lmemorywrite_w(addr, val); | |
| } | } |
| return; | |
| err: | |
| EXCEPTION(exc, 0); | |
| } | |
| void MEMCALL | |
| cpu_vmemorywrite_d(int idx, DWORD offset, DWORD val) | |
| { | |
| descriptor_t *sd; | |
| DWORD addr; | |
| int exc; | |
| __ASSERT((unsigned int)idx < CPU_SEGREG_NUM); | if (!SEG_IS_VALID(sdp)) { |
| sd = &CPU_STAT_SREG(idx); | |
| if (!sd->valid) { | |
| exc = GP_EXCEPTION; | exc = GP_EXCEPTION; |
| goto err; | goto err; |
| } | } |
| if (!(sdp->flag & CPU_DESC_FLAG_WRITABLE)) { | |
| if (!(sd->flag & CPU_DESC_FLAG_WRITABLE)) { | cpu_memorywrite_check(sdp, offset, 10, CHOOSE_EXCEPTION(idx)); |
| cpu_memorywrite_check(sd, offset, 4, | } else if (!(sdp->flag & CPU_DESC_FLAG_WHOLEADR)) { |
| (idx == CPU_SS_INDEX) ? SS_EXCEPTION : GP_EXCEPTION); | if (!check_limit_upstairs(sdp, offset, 10)) |
| } else { | goto range_failure; |
| switch (sd->type) { | |
| 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; | |
| } | |
| } | |
| addr = CPU_STAT_SREGBASE(idx) + offset; | |
| if (!CPU_STAT_PM) { | |
| /* real mode */ | |
| cpu_memorywrite_d(addr, val); | |
| } else { | |
| /* protected mode */ | |
| cpu_lmemorywrite_d(addr, val); | |
| } | } |
| cpu_lmemorywrite_f(addr, value, CPU_PAGE_WRITE_DATA | CPU_STAT_USER_MODE); | |
| return; | return; |
| range_failure: | |
| VERBOSE(("cpu_vmemorywrite_f: type = %d, offset = %08x, limit = %08x", sdp->type, offset, sdp->u.seg.limit)); | |
| exc = CHOOSE_EXCEPTION(idx); | |
| err: | err: |
| EXCEPTION(exc, 0); | EXCEPTION(exc, 0); |
| } | } |
| /* | |
| * physical address memory function | |
| */ | |
| void MEMCALL | |
| cpu_memorywrite_d(DWORD address, DWORD value) | |
| { | |
| DWORD adr = address & CPU_STAT_ADRSMASK; | |
| DWORD diff; | |
| DWORD off; | |
| if (adr < LOWMEM - 3) { | |
| __i286_memorywrite_d(adr, value); | |
| } else if (adr < LOWMEM) { | |
| diff = LOWMEM - adr; | |
| switch (diff) { | |
| default: | |
| ia32_panic("cpu_memorywrite_d: diff(%d)", diff); | |
| break; | |
| case 3: | |
| __i286_memorywrite_w(adr, value & 0xffff); | |
| value >>= 16; | |
| __i286_memorywrite(adr + 2, value & 0xff); | |
| value >>= 8; | |
| break; | |
| case 2: | |
| __i286_memorywrite_w(adr, value & 0xffff); | |
| value >>= 16; | |
| break; | |
| case 1: | |
| __i286_memorywrite(adr, value & 0xff); | |
| value >>= 8; | |
| break; | |
| } | |
| if (extmem_size > 0) { | |
| off = 0; | |
| switch (4 - diff) { | |
| case 3: | |
| cpumem[off++] = value & 0xff; | |
| if (off >= extmem_size) { | |
| OVERRUN_EXCEPTION(); | |
| break; | |
| } | |
| value >>= 8; | |
| /*FALLTHROUGH*/ | |
| case 2: | |
| cpumem[off++] = value & 0xff; | |
| if (off >= extmem_size) { | |
| OVERRUN_EXCEPTION(); | |
| break; | |
| } | |
| value >>= 8; | |
| /*FALLTHROUGH*/ | |
| case 1: | |
| cpumem[off] = value & 0xff; | |
| break; | |
| } | |
| } else { | |
| OVERRUN_EXCEPTION(); | |
| } | |
| } else if (extmem_size > 0) { | |
| adr -= LOWMEM; | |
| if (adr < extmem_size - 3) { | |
| STOREINTELDWORD(cpumem + adr, value); | |
| } else if (adr < extmem_size) { | |
| diff = extmem_size - adr; | |
| switch (diff) { | |
| default: | |
| ia32_panic("cpu_memorywrite_d: diff(%d)", diff); | |
| break; | |
| case 3: | |
| cpumem[adr] = value & 0xff; | |
| value >>= 8; | |
| adr++; | |
| /*FALLTHROUGH*/ | |
| case 2: | |
| cpumem[adr] = value & 0xff; | |
| value >>= 8; | |
| adr++; | |
| /*FALLTHROUGH*/ | |
| case 1: | |
| cpumem[adr] = value & 0xff; | |
| break; | |
| } | |
| OVERRUN_EXCEPTION(); | |
| } else { | |
| OVERRUN_EXCEPTION(); | |
| } | |
| } else { | |
| OVERRUN_EXCEPTION(); | |
| } | |
| } | |
| void MEMCALL | |
| cpu_memorywrite_w(DWORD address, WORD value) | |
| { | |
| DWORD adr = address & CPU_STAT_ADRSMASK; | |
| if (adr < LOWMEM - 1) { | |
| __i286_memorywrite_w(adr, value); | |
| } else if (adr < LOWMEM) { | |
| __i286_memorywrite(adr, value & 0xff); | |
| if (extmem_size > 0) { | |
| cpumem[0] = (value >> 8) & 0xff; | |
| } else { | |
| OVERRUN_EXCEPTION(); | |
| } | |
| } else if (extmem_size > 0) { | |
| adr -= LOWMEM; | |
| if (adr < extmem_size - 1) { | |
| STOREINTELWORD(cpumem + adr, value); | |
| } else if (adr == extmem_size - 1) { | |
| cpumem[adr] = value & 0xff; | |
| OVERRUN_EXCEPTION(); | |
| } else { | |
| OVERRUN_EXCEPTION(); | |
| } | |
| } else { | |
| OVERRUN_EXCEPTION(); | |
| } | |
| } | |
| void MEMCALL | |
| cpu_memorywrite(DWORD address, BYTE value) | |
| { | |
| DWORD adr = address & CPU_STAT_ADRSMASK; | |
| if (adr < LOWMEM) { | |
| __i286_memorywrite(adr, value); | |
| } else if (extmem_size > 0) { | |
| adr -= LOWMEM; | |
| if (adr < extmem_size) { | |
| cpumem[adr] = value; | |
| } else { | |
| OVERRUN_EXCEPTION(); | |
| } | |
| } else { | |
| OVERRUN_EXCEPTION(); | |
| } | |
| } | |
| DWORD MEMCALL | |
| cpu_memoryread_d(DWORD address) | |
| { | |
| DWORD adr = address & CPU_STAT_ADRSMASK; | |
| DWORD val; | |
| DWORD diff; | |
| int shift; | |
| if (adr < LOWMEM - 3) { | |
| val = __i286_memoryread_d(adr); | |
| } else if (adr < LOWMEM) { | |
| diff = LOWMEM - adr; | |
| switch (diff) { | |
| default: | |
| ia32_panic("cpu_memoryread_d: diff(%d)", diff); | |
| val = 0; /* compiler happy */ | |
| break; | |
| case 3: | |
| val = __i286_memoryread_w(adr); | |
| val |= (DWORD)__i286_memoryread(adr + 2) << 16; | |
| if (extmem_size > 0) { | |
| val |= (DWORD)cpumem[0] << 24; | |
| } else { | |
| val |= 0xff000000; | |
| OVERRUN_EXCEPTION(); | |
| } | |
| break; | |
| case 2: | |
| val = __i286_memoryread_w(adr); | |
| if (extmem_size > 1) { | |
| val |= ((DWORD)LOADINTELWORD(cpumem)) << 16; | |
| } else if (extmem_size > 0) { | |
| val |= 0xff000000 | ((DWORD)cpumem[0] << 16); | |
| OVERRUN_EXCEPTION(); | |
| } else { | |
| val |= 0xffff0000; | |
| OVERRUN_EXCEPTION(); | |
| } | |
| break; | |
| case 1: | |
| val = __i286_memoryread(adr); | |
| if (extmem_size > 2) { | |
| val |= (DWORD)LOADINTELWORD(cpumem) << 8; | |
| val |= (DWORD)cpumem[2] << 24; | |
| } else if (extmem_size > 1) { | |
| val |= ((DWORD)LOADINTELWORD(cpumem)) << 8; | |
| val |= 0xff000000; | |
| OVERRUN_EXCEPTION(); | |
| } else if (extmem_size > 0) { | |
| val |= 0xffff0000 | ((DWORD)cpumem[0] << 8); | |
| OVERRUN_EXCEPTION(); | |
| } else { | |
| val |= 0xffffff00; | |
| OVERRUN_EXCEPTION(); | |
| } | |
| break; | |
| } | |
| } else if (extmem_size > 0) { | |
| adr -= LOWMEM; | |
| if (adr < extmem_size - 3) { | |
| val = LOADINTELDWORD(cpumem + adr); | |
| } else if (adr < extmem_size) { | |
| diff = extmem_size - adr; | |
| val = 0; | |
| shift = 0; | |
| switch (diff) { | |
| default: | |
| ia32_panic("cpu_memoryread_d: diff(%d)", diff); | |
| break; | |
| case 3: | |
| val |= (DWORD)cpumem[adr]; | |
| shift += 8; | |
| adr++; | |
| /*FALLTHROUGH*/ | |
| case 2: | |
| val |= (DWORD)cpumem[adr] << shift; | |
| shift += 8; | |
| adr++; | |
| /*FALLTHROUGH*/ | |
| case 1: | |
| val |= (DWORD)cpumem[adr] << shift; | |
| shift += 8; | |
| break; | |
| } | |
| val |= ((DWORD)-1) << shift; | |
| OVERRUN_EXCEPTION(); | |
| } else { | |
| val = (DWORD)-1; | |
| OVERRUN_EXCEPTION(); | |
| } | |
| } else { | |
| val = (DWORD)-1; | |
| OVERRUN_EXCEPTION(); | |
| } | |
| return val; | |
| } | |
| WORD MEMCALL | |
| cpu_memoryread_w(DWORD address) | |
| { | |
| DWORD adr = address & CPU_STAT_ADRSMASK; | |
| WORD val; | |
| if (adr < LOWMEM - 1) { | |
| val = __i286_memoryread_w(adr); | |
| } else if (adr < LOWMEM) { | |
| val = __i286_memoryread(adr); | |
| if (extmem_size > 0) { | |
| val |= (WORD)cpumem[0] << 8; | |
| } else { | |
| val |= 0xff00; | |
| OVERRUN_EXCEPTION(); | |
| } | |
| } else if (extmem_size > 0) { | |
| adr -= LOWMEM; | |
| if (adr < extmem_size - 1) { | |
| val = LOADINTELWORD(cpumem + adr); | |
| } else if (adr == extmem_size - 1) { | |
| val = 0xff00 | cpumem[adr]; | |
| OVERRUN_EXCEPTION(); | |
| } else { | |
| val = (WORD)-1; | |
| OVERRUN_EXCEPTION(); | |
| } | |
| } else { | |
| val = (WORD)-1; | |
| OVERRUN_EXCEPTION(); | |
| } | |
| return val; | |
| } | |
| BYTE MEMCALL | |
| cpu_memoryread(DWORD address) | |
| { | |
| DWORD adr = address & CPU_STAT_ADRSMASK; | |
| BYTE val; | |
| if (adr < LOWMEM) { | |
| val = __i286_memoryread(adr); | |
| } else if (extmem_size > 0) { | |
| adr -= LOWMEM; | |
| if (adr < extmem_size) { | |
| val = cpumem[adr]; | |
| } else { | |
| val = (BYTE)-1; | |
| OVERRUN_EXCEPTION(); | |
| } | |
| } else { | |
| val = (BYTE)-1; | |
| OVERRUN_EXCEPTION(); | |
| } | |
| return val; | |
| } |