Microsoft (R) Windows Debugger Version 6.12.0002.633 AMD64
Copyright (c) Microsoft Corporation. All rights reserved.
Loading Dump File [F:\a\Minidump\D M P\DMP\011511-30638-01.dmp]
Mini Kernel Dump File: Only registers and stack trace are available
Symbol search path is: SRV*c:\websymbols*http://msdl.microsoft.com/download/symbols
Executable search path is:
Windows 7 Kernel Version 7600 MP (8 procs) Free x64
Product: WinNt, suite: TerminalServer SingleUserTS
Built by: 7600.16617.amd64fre.win7_gdr.100618-1621
Machine Name:
Kernel base = 0xfffff800`02c5b000 PsLoadedModuleList = 0xfffff800`02e98e50
Debug session time: Sat Jan 15 02:33:36.789 2011 (UTC - 5:00)
System Uptime: 2 days 4:43:55.757
Loading Kernel Symbols
...............................................................
................................................................
.................................................
Loading User Symbols
Loading unloaded module list
.............
*******************************************************************************
* *
* Bugcheck Analysis *
* *
*******************************************************************************
Use !analyze -v to get detailed debugging information.
BugCheck 7A, {fffff6fc00018248, ffffffffc0000185, 18bf13860, fffff80003049e00}
*** WARNING: Unable to verify timestamp for win32k.sys
*** ERROR: Module load completed but symbols could not be loaded for win32k.sys
GetPointerFromAddress: unable to read from fffff80002f03220
Probably caused by : memory_corruption
Followup: memory_corruption
---------
4: kd> !analyze -v
*******************************************************************************
* *
* Bugcheck Analysis *
* *
*******************************************************************************
KERNEL_DATA_INPAGE_ERROR (7a)
The requested page of kernel data could not be read in. Typically caused by
a bad block in the paging file or disk controller error. Also see
KERNEL_STACK_INPAGE_ERROR.
If the error status is 0xC000000E, 0xC000009C, 0xC000009D or 0xC0000185,
it means the disk subsystem has experienced a failure.
If the error status is 0xC000009A, then it means the request failed because
a filesystem failed to make forward progress.
Arguments:
Arg1: fffff6fc00018248, lock type that was held (value 1,2,3, or PTE address)
Arg2: ffffffffc0000185, error status (normally i/o status code)
Arg3: 000000018bf13860, current process (virtual address for lock type 3, or PTE)
Arg4: fffff80003049e00, virtual address that could not be in-paged (or PTE contents if arg1 is a PTE address)
Debugging Details:
------------------
ERROR_CODE: (NTSTATUS) 0xc0000185 - The I/O device reported an I/O error.
DISK_HARDWARE_ERROR: There was error with disk hardware
BUGCHECK_STR: 0x7a_c0000185
CUSTOMER_CRASH_COUNT: 1
DEFAULT_BUCKET_ID: CODE_CORRUPTION
PROCESS_NAME: System
CURRENT_IRQL: 0
TRAP_FRAME: fffff88003369760 -- (.trap 0xfffff88003369760)
NOTE: The trap frame does not contain all registers.
Some register values may be zeroed or incorrect.
rax=fffff8a003d985d0 rbx=0000000000000000 rcx=fffffa8006b82550
rdx=fffff8a003d985d0 rsi=0000000000000000 rdi=0000000000000000
rip=fffff80003049e00 rsp=fffff880033698f8 rbp=0000000000000001
r8=0000000000000000 r9=0000000000000000 r10=fffffa800549b3c8
r11=0000000000000003 r12=0000000000000000 r13=0000000000000000
r14=0000000000000000 r15=0000000000000000
iopl=0 nv up ei pl zr na po nc
nt!PnpProcessAssignResourcesWorker:
fffff800`03049e00 0000 add byte ptr [rax],al ds:0011:fffff8a0`03d985d0=??
Resetting default scope
LOCK_ADDRESS: fffff80002ecf400 -- (!locks fffff80002ecf400)
Resource @ nt!PiEngineLock (0xfffff80002ecf400) Available
WARNING: SystemResourcesList->Flink chain invalid. Resource may be corrupted, or already deleted.
WARNING: SystemResourcesList->Blink chain invalid. Resource may be corrupted, or already deleted.
1 total locks
PNP_TRIAGE:
Lock address : 0xfffff80002ecf400
Thread Count : 0
Thread address: 0x0000000000000000
Thread wait : 0x0
LAST_CONTROL_TRANSFER: from fffff80002d40168 to fffff80002ccb740
STACK_TEXT:
fffff880`03369448 fffff800`02d40168 : 00000000`0000007a fffff6fc`00018248 ffffffff`c0000185 00000001`8bf13860 : nt!KeBugCheckEx
fffff880`03369450 fffff800`02cbd52b : fffffa80`07cf7310 fffff880`033695c0 fffff800`02e58440 fffffa80`046b2100 : nt! ?? ::FNODOBFM::`string'+0x34c0e
fffff880`03369530 fffff800`02ce65c4 : 00000000`00000000 00000000`00000000 ffffffff`ffffffff 00000000`00000114 : nt!MiIssueHardFault+0x28b
fffff880`03369600 fffff800`02cc982e : 00000000`00000000 00000000`000006f8 00000000`00000000 00000000`00000000 : nt!MmAccessFault+0x11c4
fffff880`03369760 fffff800`03049e00 : fffff800`030a9556 fffffa80`000006bf 00000000`000006f8 00000000`00000000 : nt!KiPageFault+0x16e
fffff880`033698f8 fffff800`030a9556 : fffffa80`000006bf 00000000`000006f8 00000000`00000000 00000000`000007ff : nt!PnpProcessAssignResourcesWorker
fffff880`03369900 fffff800`030b8165 : fffffa80`0a762bf0 fffffa80`06b82550 00000000`00000000 fffff800`00000000 : nt!PnpProcessAssignResources+0x76
fffff880`03369950 fffff800`030b88d8 : fffff800`02eccd80 00000000`00000000 00000000`00000000 fffff800`030b8840 : nt!PipProcessDevNodeTree+0xb5
fffff880`03369bc0 fffff800`02dcd3a7 : 00000001`00000003 00000000`00000000 00000000`00000001 00000000`00000000 : nt!PiProcessReenumeration+0x98
fffff880`03369c10 fffff800`02cd8961 : fffff800`02dcd080 fffff800`02fc7c01 fffffa80`0554a000 00000000`00000000 : nt!PnpDeviceActionWorker+0x327
fffff880`03369cb0 fffff800`02f6fc06 : da00da00`9a739a73 fffffa80`0554a040 00000000`00000080 fffffa80`054ab890 : nt!ExpWorkerThread+0x111
fffff880`03369d40 fffff800`02ca9c26 : fffff880`03171180 fffffa80`0554a040 fffff880`0317c0c0 8fcd8fcd`85de85de : nt!PspSystemThreadStartup+0x5a
fffff880`03369d80 00000000`00000000 : 00000000`00000000 00000000`00000000 00000000`00000000 00000000`00000000 : nt!KxStartSystemThread+0x16
STACK_COMMAND: kb
CHKIMG_EXTENSION: !chkimg -lo 50 -d !nt
fffff80003049000-fffff8000304900d 14 bytes - nt!MiInitializeSpecialPool
[ f6 c1 20 74 16 48 8b 05:06 00 00 00 00 00 00 00 ]
fffff80003049011-fffff8000304902a 26 bytes - nt!MiInitializeSpecialPool+11 (+0x11)
[ 80 fc f6 ff ff 48 89 08:00 00 00 00 00 00 00 3e ]
fffff8000304902c-fffff8000304902d 2 bytes - nt!MiInitializeSpecialPool+2c (+0x1b)
[ 00 01:68 12 ]
fffff8000304902f-fffff80003049034 6 bytes - nt!MiInitializeSpecialPool+2f (+0x03)
[ c7 05 57 a4 eb ff:00 08 00 00 00 08 ]
fffff80003049036 - nt!MiInitializeSpecialPool+36 (+0x07)
[ 40:00 ]
fffff80003049038-fffff8000304904a 19 bytes - nt!MiInitializeSpecialPool+38 (+0x02)
[ 00 48 89 0d 00 9a e3 ff:05 00 00 00 05 00 00 00 ]
fffff8000304904c-fffff8000304904d 2 bytes - nt!MiInitializeSpecialPool+4c (+0x14)
[ 48 b9:00 00 ]
fffff80003049050-fffff80003049073 36 bytes - nt!MiInitializeSpecialPool+50 (+0x04)
[ 00 00 ff ff ff ff 48 09:83 a8 eb 00 00 00 00 00 ]
fffff80003049075-fffff800030490b0 60 bytes - nt!MiApplyRawFixups+5 (+0x25)
[ 48 89 6c 24 10 48 89 74:00 00 00 a5 15 00 00 05 ]
fffff800030490b2-fffff800030490e2 49 bytes - nt!MiApplyRawFixups+42 (+0x3d)
[ 48 03 cf 66 c1 ea 0c e8:00 00 08 00 00 00 01 00 ]
fffff800030490e4-fffff80003049104 33 bytes - nt!MiApplyRawFixups+74 (+0x32)
[ 4c 8b cf 4c 8b c6 8d 4a:00 30 84 77 cc 04 00 00 ]
fffff80003049107-fffff80003049114 14 bytes - nt!AlpcpFreeCompletionBuffer+7 (+0x23)
[ 44 8b d2 45 8d 48 3f 48:00 73 00 76 00 63 00 68 ]
fffff80003049116 - nt!AlpcpFreeCompletionBuffer+16 (+0x0f)
[ 00:2e ]
fffff80003049118-fffff800030491ae 151 bytes - nt!AlpcpFreeCompletionBuffer+18 (+0x02)
[ 41 c1 ea 06 48 c1 e8 05:65 00 78 00 65 00 00 00 ]
fffff800030491b0-fffff800030491cb 28 bytes - nt!AlpcpAllocateSnapshotMessageLog+40 (+0x98)
[ 48 8b 42 18 48 8b 4a 10:00 00 00 00 00 00 00 00 ]
fffff800030491cd-fffff8000304928c 192 bytes - nt!AlpcpAllocateSnapshotMessageLog+5d (+0x1d)
[ 4c 89 40 08 48 8b 05 50:00 00 00 0a 70 3c 15 00 ]
fffff8000304928e-fffff8000304929e 17 bytes - nt!AlpcpAllocateMessageLog+5e (+0xc1)
[ 74 2e 49 8b 08 4c 8d 0d:00 00 06 00 00 00 00 00 ]
fffff800030492a0-fffff800030492e4 69 bytes - nt!AlpcpAllocateMessageLog+70 (+0x12)
[ 4c 89 40 08 48 8b 05 7d:cf e0 6f 00 00 00 00 00 ]
fffff800030492e6 - nt!KeUpdatePrimaryThreadContext+16 (+0x46)
[ 10:00 ]
fffff800030492e8-fffff8000304930d 38 bytes - nt!KeUpdatePrimaryThreadContext+18 (+0x02)
[ 41 23 c0 41 3b c0 75 42:73 e5 7b 47 80 b4 cb 01 ]
fffff80003049310-fffff80003049315 6 bytes - nt!KeUpdatePrimaryThreadContext+40 (+0x28)
[ 00 49 f7 c3 55 03:06 00 00 00 00 00 ]
fffff80003049318-fffff8000304931f 8 bytes - nt!KeUpdatePrimaryThreadContext+48 (+0x08)
[ 74 0b f0 0f ba ab f0 04:00 00 00 00 00 00 00 00 ]
fffff80003049322-fffff80003049371 80 bytes - nt!KeUpdatePrimaryThreadContext+52 (+0x0a)
[ 07 eb 09 f0 0f ba b3 f0:00 00 00 00 00 00 00 08 ]
fffff80003049374-fffff8000304937c 9 bytes - nt!KeBuildPrimaryThreadContext+24 (+0x52)
[ 48 8b 38 4c 3b c3 0f 84:05 00 00 00 00 60 2f 00 ]
fffff80003049380-fffff80003049384 5 bytes - nt!KeBuildPrimaryThreadContext+30 (+0x0c)
[ 41 c7 40 30 13:10 00 00 00 08 ]
fffff80003049386 - nt!KeBuildPrimaryThreadContext+36 (+0x06)
[ 10:00 ]
fffff80003049388-fffff8000304938c 5 bytes - nt!KeBuildPrimaryThreadContext+38 (+0x02)
[ 48 8b 87 08 01:fb 96 97 0c 00 ]
fffff8000304938f-fffff8000304939a 12 bytes - nt!KeBuildPrimaryThreadContext+3f (+0x07)
[ 49 89 80 f8 00 00 00 48:00 d7 77 dc e3 fd b3 cb ]
fffff8000304939d-fffff800030493a2 6 bytes - nt!KeBuildPrimaryThreadContext+4d (+0x0e)
[ 49 89 80 98 00 00:00 00 00 23 24 07 ]
fffff800030493a4-fffff800030493a8 5 bytes - nt!KeBuildPrimaryThreadContext+54 (+0x07)
[ 48 8b 87 b0 00:00 00 00 00 18 ]
fffff800030493aa-fffff800030493b0 7 bytes - nt!KeBuildPrimaryThreadContext+5a (+0x06)
[ 00 49 89 80 a0 00 00:20 00 68 f5 1c 03 08 ]
fffff800030493b2-fffff800030493b5 4 bytes - nt!KeBuildPrimaryThreadContext+62 (+0x08)
[ 4d 89 a0 d8:00 00 18 13 ]
fffff800030493b8-fffff800030493c1 10 bytes - nt!KeBuildPrimaryThreadContext+68 (+0x06)
[ 00 48 8b 44 24 50 49 89:dc 02 00 00 70 00 00 00 ]
fffff800030493c5-fffff800030493d3 15 bytes - nt!KeBuildPrimaryThreadContext+75 (+0x0d)
[ 48 8b 44 24 58 49 89 80:30 70 00 00 f0 e9 05 00 ]
fffff800030493d6-fffff80003049442 109 bytes - nt!KeBuildPrimaryThreadContext+86 (+0x11)
[ 00 b9 55 03 ff ff 48 23:84 00 00 00 84 00 98 cc ]
fffff80003049444-fffff80003049453 16 bytes - nt!KeBuildPrimaryThreadContext+f4 (+0x6e)
[ 48 8b 42 40 66 39 58 02:00 30 84 77 18 13 00 00 ]
fffff80003049455-fffff80003049464 16 bytes - nt!KeBuildPrimaryThreadContext+105 (+0x11)
[ 29 c8 ff 48 8b 56 50 48:00 00 00 31 00 00 00 05 ]
fffff80003049467-fffff8000304946b 5 bytes - nt!KeBuildPrimaryThreadContext+117 (+0x12)
[ 48 89 82 68 01:00 00 00 00 00 ]
fffff8000304946e-fffff80003049471 4 bytes - nt!KeBuildPrimaryThreadContext+11e (+0x07)
[ 48 8b 87 a8:00 00 00 00 ]
fffff80003049475-fffff8000304948e 26 bytes - nt!KeBuildPrimaryThreadContext+125 (+0x07)
[ 48 89 82 80 01 00 00 48:00 00 00 43 d3 df e3 fd ]
fffff80003049490-fffff8000304949a 11 bytes - nt!KeBuildPrimaryThreadContext+140 (+0x1b)
[ 00 48 8b 44 24 50 48 89:08 00 00 00 08 00 00 00 ]
fffff8000304949c-fffff800030494a6 11 bytes - nt!KeBuildPrimaryThreadContext+14c (+0x0c)
[ 00 48 8b 44 24 58 48 89:05 00 00 00 06 00 00 00 ]
fffff800030494a8-fffff800030494ab 4 bytes - nt!KeBuildPrimaryThreadContext+158 (+0x0c)
[ 00 8b 87 80:c2 c2 04 00 ]
fffff800030494af-fffff800030494b2 4 bytes - nt!KeBuildPrimaryThreadContext+15f (+0x07)
[ b9 55 03 00:00 61 61 02 ]
fffff800030494b4-fffff800030494d1 30 bytes - nt!KeBuildPrimaryThreadContext+164 (+0x05)
[ 48 85 c1 75 0b 8b 82 00:00 00 00 00 54 fa df e3 ]
fffff800030494d3-fffff800030494d4 2 bytes - nt!KeBuildPrimaryThreadContext+183 (+0x1f)
[ 01 00:00 08 ]
fffff800030494d6-fffff800030494d9 4 bytes - nt!KeBuildPrimaryThreadContext+186 (+0x03)
[ 48 89 9a f8:00 00 13 11 ]
fffff800030494dc-fffff800030494f2 23 bytes - nt!KeBuildPrimaryThreadContext+18c (+0x06)
[ 00 48 8b 47 58 48 8b cb:05 00 00 00 06 00 00 00 ]
fffff800030494f6-fffff8000304950d 24 bytes - nt!KeBuildPrimaryThreadContext+1a6 (+0x1a)
[ 48 8b 47 60 48 8b cb 48:00 00 e9 59 e1 e3 fd b3 ]
fffff8000304950f-fffff80003049524 22 bytes - nt!KeBuildPrimaryThreadContext+1bf (+0x19)
[ 48 8b 47 68 48 8b cb 48:00 08 00 00 00 08 00 00 ]
WARNING: !chkimg output was truncated to 50 lines. Invoke !chkimg without '-lo [num_lines]' to view entire output.
3893 errors : !nt (fffff80003049000-fffff80003049ffe)
MODULE_NAME: memory_corruption
IMAGE_NAME: memory_corruption
FOLLOWUP_NAME: memory_corruption
DEBUG_FLR_IMAGE_TIMESTAMP: 0
MEMORY_CORRUPTOR: LARGE_4096
FAILURE_BUCKET_ID: X64_MEMORY_CORRUPTION_LARGE_4096
BUCKET_ID: X64_MEMORY_CORRUPTION_LARGE_4096
Followup: memory_corruption
---------
Microsoft (R) Windows Debugger Version 6.12.0002.633 AMD64
Copyright (c) Microsoft Corporation. All rights reserved.
Loading Dump File [F:\a\Minidump\D M P\DMP\011211-26254-01.dmp]
Mini Kernel Dump File: Only registers and stack trace are available
Symbol search path is: SRV*c:\websymbols*http://msdl.microsoft.com/download/symbols
Executable search path is:
Windows 7 Kernel Version 7600 MP (8 procs) Free x64
Product: WinNt, suite: TerminalServer SingleUserTS
Built by: 7600.16617.amd64fre.win7_gdr.100618-1621
Machine Name:
Kernel base = 0xfffff800`02c12000 PsLoadedModuleList = 0xfffff800`02e4fe50
Debug session time: Wed Jan 12 21:47:49.848 2011 (UTC - 5:00)
System Uptime: 1 days 3:34:46.860
Loading Kernel Symbols
...............................................................
................................................................
..............................................
Loading User Symbols
Loading unloaded module list
............
*******************************************************************************
* *
* Bugcheck Analysis *
* *
*******************************************************************************
Use !analyze -v to get detailed debugging information.
BugCheck A, {fffff80012df88fa, 2, 1, fffff80002d253f6}
Probably caused by : ntkrnlmp.exe ( nt!PpmParkComputeDiff+1a6 )
Followup: MachineOwner
---------
1: kd> !analyze -v
*******************************************************************************
* *
* Bugcheck Analysis *
* *
*******************************************************************************
IRQL_NOT_LESS_OR_EQUAL (a)
An attempt was made to access a pageable (or completely invalid) address at an
interrupt request level (IRQL) that is too high. This is usually
caused by drivers using improper addresses.
If a kernel debugger is available get the stack backtrace.
Arguments:
Arg1: fffff80012df88fa, memory referenced
Arg2: 0000000000000002, IRQL
Arg3: 0000000000000001, bitfield :
bit 0 : value 0 = read operation, 1 = write operation
bit 3 : value 0 = not an execute operation, 1 = execute operation (only on chips which support this level of status)
Arg4: fffff80002d253f6, address which referenced memory
Debugging Details:
------------------
WRITE_ADDRESS: GetPointerFromAddress: unable to read from fffff80002eba0e0
fffff80012df88fa
CURRENT_IRQL: 2
FAULTING_IP:
nt!PpmParkComputeDiff+1a6
fffff800`02d253f6 6644896f02 mov word ptr [rdi+2],r13w
CUSTOMER_CRASH_COUNT: 1
DEFAULT_BUCKET_ID: VERIFIER_ENABLED_VISTA_MINIDUMP
BUGCHECK_STR: 0xA
PROCESS_NAME: hl2.exe
TRAP_FRAME: fffff88002f22b40 -- (.trap 0xfffff88002f22b40)
NOTE: The trap frame does not contain all registers.
Some register values may be zeroed or incorrect.
rax=0000000000000004 rbx=0000000000000000 rcx=0000000000000004
rdx=0000000000000004 rsi=0000000000000000 rdi=0000000000000000
rip=fffff80002d253f6 rsp=fffff88002f22cd0 rbp=0000000000000001
r8=0000000000000000 r9=fffff80002df88d0 r10=0000000000000000
r11=0000000000000000 r12=0000000000000000 r13=0000000000000000
r14=0000000000000000 r15=0000000000000000
iopl=0 nv up ei ng nz na pe nc
nt!PpmParkComputeDiff+0x1a6:
fffff800`02d253f6 6644896f02 mov word ptr [rdi+2],r13w ds:0202:00000000`00000002=????
Resetting default scope
LAST_CONTROL_TRANSFER: from fffff80002c81ca9 to fffff80002c82740
STACK_TEXT:
fffff880`02f229f8 fffff800`02c81ca9 : 00000000`0000000a fffff800`12df88fa 00000000`00000002 00000000`00000001 : nt!KeBugCheckEx
fffff880`02f22a00 fffff800`02c80920 : 00000000`00000000 00000000`00000000 00000000`00000000 fffff880`02f22e80 : nt!KiBugCheckDispatch+0x69
fffff880`02f22b40 fffff800`02d253f6 : 00000000`75752450 00000000`00000022 00000000`00000000 00000000`00000002 : nt!KiPageFault+0x260
fffff880`02f22cd0 fffff800`02d3d1e6 : fffff880`009e0005 fffffa80`05510130 00000000`ffffffff 00000000`00000001 : nt!PpmParkComputeDiff+0x1a6
fffff880`02f22da0 fffff800`02d3b2bc : fffff880`009ed180 00000000`00000000 fffff800`02e24310 0000004b`ba45546e : nt!PpmPerfCalculateCoreParkingMask+0x716
fffff880`02f22ed0 fffff800`02c8dbfc : fffff880`009ed180 fffffa80`00611d55 00000000`00000000 00000000`00000055 : nt!PpmCheckRun+0x8c
fffff880`02f22f00 fffff800`02c88865 : 526f526f`95fd95fd fffffa80`0ae6c060 00000000`00000000 fffff800`02d3b230 : nt!KiRetireDpcList+0x1bc
fffff880`02f22fb0 fffff800`02c8867c : 00000000`00000000 00000000`00000000 00000000`00000000 00000000`00000000 : nt!KxRetireDpcList+0x5
fffff880`0a39cbf0 00000000`00000000 : 00000000`00000000 00000000`00000000 00000000`00000000 00000000`00000000 : nt!KiDispatchInterruptContinue
STACK_COMMAND: kb
FOLLOWUP_IP:
nt!PpmParkComputeDiff+1a6
fffff800`02d253f6 6644896f02 mov word ptr [rdi+2],r13w
SYMBOL_STACK_INDEX: 3
SYMBOL_NAME: nt!PpmParkComputeDiff+1a6
FOLLOWUP_NAME: MachineOwner
MODULE_NAME: nt
IMAGE_NAME: ntkrnlmp.exe
DEBUG_FLR_IMAGE_TIMESTAMP: 4c1c44a9
FAILURE_BUCKET_ID: X64_0xA_VRF_nt!PpmParkComputeDiff+1a6
BUCKET_ID: X64_0xA_VRF_nt!PpmParkComputeDiff+1a6
Followup: MachineOwner
---------