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#include "mi.h"
00025
00026 PVOID
00027 MmDbgReadCheck (
00028 IN PVOID VirtualAddress
00029 )
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00056 {
00057
if ((VirtualAddress >= (PVOID)
KSEG0_BASE) &&
00058 (VirtualAddress < (PVOID)
KSEG2_BASE)) {
00059
return VirtualAddress;
00060 }
00061
00062
if (!
MmIsAddressValid (VirtualAddress)) {
00063
return NULL;
00064 }
00065
00066
return VirtualAddress;
00067 }
00068
00069 PVOID
00070 MmDbgWriteCheck (
00071 IN PVOID VirtualAddress,
00072 IN PHARDWARE_PTE Opaque
00073 )
00074
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00110 {
00111
MMPTE PteContents;
00112
PMMPTE PointerPte;
00113
PMMPTE InputPte;
00114
00115 InputPte = (
PMMPTE)Opaque;
00116
00117 InputPte->
u.Long = 0;
00118
00119
if ((VirtualAddress >= (PVOID)
KSEG0_BASE) &&
00120 (VirtualAddress < (PVOID)
KSEG2_BASE)) {
00121
return VirtualAddress;
00122 }
00123
00124
if (!
MmIsAddressValid (VirtualAddress)) {
00125
return NULL;
00126 }
00127
00128 PointerPte =
MiGetPteAddress (VirtualAddress);
00129
if ((VirtualAddress <= MM_HIGHEST_USER_ADDRESS) &&
00130 (PointerPte->
u.Hard.PageFrameNumber <
MM_PAGES_IN_KSEG0)) {
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00145
return (PVOID)
00146 ((ULONG)
MmGetPhysicalAddress(VirtualAddress).LowPart +
KSEG0_BASE);
00147 }
00148
00149
if (PointerPte->
u.Hard.Write == 0) {
00150
00151
00152
00153
00154
00155 PteContents = *PointerPte;
00156
00157 *InputPte = PteContents;
00158
00159
00160
00161
00162
00163 PteContents.
u.Hard.Write = 1;
00164
00165 *PointerPte = PteContents;
00166
00167
00168
00169
00170
00171
00172
00173
00174
KiFlushSingleTb(
TRUE, VirtualAddress);
00175
00176 }
00177
00178
return VirtualAddress;
00179 }
00180
00181
VOID
00182 MmDbgReleaseAddress (
00183 IN PVOID VirtualAddress,
00184 IN PHARDWARE_PTE Opaque
00185 )
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00212 {
00213
MMPTE TempPte;
00214
PMMPTE PointerPte;
00215
PMMPTE InputPte;
00216
00217 InputPte = (
PMMPTE)Opaque;
00218
00219
ASSERT (
MmIsAddressValid (VirtualAddress));
00220
00221
if (InputPte->
u.Long != 0) {
00222
00223 PointerPte =
MiGetPteAddress (VirtualAddress);
00224
00225 TempPte = *InputPte;
00226
00227
00228
00229
00230 *PointerPte = TempPte;
00231
00232
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00238
00239
KiFlushSingleTb(
TRUE, VirtualAddress);
00240 }
00241
00242
return;
00243 }
00244
00245 PVOID64
00246 MmDbgReadCheck64 (
00247 IN PVOID64 VirtualAddress
00248 )
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00276
00277 {
00278
#ifdef VLM_SUPPORT
00279
00280
if (!MmIsAddressValid64 (VirtualAddress)) {
00281
return NULL;
00282 }
00283
00284
return VirtualAddress;
00285
#else
00286
return NULL;
00287
#endif
00288
}
00289
00290 PVOID64
00291 MmDbgWriteCheck64 (
00292 IN PVOID64 VirtualAddress
00293 )
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00321 {
00322
#ifdef VLM_SUPPORT
00323
PMMPTE PointerPte;
00324
00325
if (!MmIsAddressValid64 (VirtualAddress)) {
00326
return NULL;
00327 }
00328
00329 PointerPte =
MiGetPteAddress64 (VirtualAddress);
00330
00331
if (PointerPte->
u.Hard.Write == 0) {
00332
return NULL;
00333 }
00334
00335
return VirtualAddress;
00336
#else
00337
return NULL;
00338
#endif
00339
}
00340
00341 PVOID64
00342 MmDbgTranslatePhysicalAddress64 (
00343 IN PHYSICAL_ADDRESS PhysicalAddress
00344 )
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00375
00376 {
00377
switch (
KeProcessorLevel) {
00378
00379
case PROCESSOR_ALPHA_21064:
00380
case PROCESSOR_ALPHA_21066:
00381
case PROCESSOR_ALPHA_21068:
00382 PhysicalAddress.QuadPart &= 0x00000003ffffffff;
00383 PhysicalAddress.QuadPart |= 0xfffffc0000000000;
00384
break;
00385
00386
case PROCESSOR_ALPHA_21164:
00387
case PROCESSOR_ALPHA_21164PC:
00388 PhysicalAddress.QuadPart &= 0x000000ffffffffff;
00389 PhysicalAddress.QuadPart |= 0xfffffc0000000000;
00390
break;
00391
00392
case PROCESSOR_ALPHA_21264:
00393 PhysicalAddress.QuadPart &= 0x00000fffffffffff;
00394 PhysicalAddress.QuadPart |= 0xffff800000000000;
00395
break;
00396
00397
default:
00398
return NULL64;
00399
00400 }
00401
00402
return (PVOID64)PhysicalAddress.QuadPart;
00403 }