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394 lines
7.0 KiB
394 lines
7.0 KiB
#include <ntddk.h>
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#include "tdriver.h"
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#include "bugcheck.h"
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/////////////////////////////////////////////////////////////////////
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////////////////////////////////////////////////// Bugcheck functions
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/////////////////////////////////////////////////////////////////////
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VOID
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BgChkForceCustomBugcheck (
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PVOID NotUsed
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)
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/*++
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Routine Description:
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This function breaks into debugger and waits for the user to set the
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value for bugcheck data. Then it will bugcheck using the specified code
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and data. It is useful to test the mini triage feature.
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Arguments:
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None.
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Return Value:
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None.
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Environment:
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Kernel mode.
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--*/
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{
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ULONG BugcheckData [5];
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DbgPrint ("Buggy: `ed %p' to enter the bugcheck code and data \n", BugcheckData );
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DbgBreakPoint();
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KeBugCheckEx (
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BugcheckData [ 0 ],
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BugcheckData [ 1 ],
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BugcheckData [ 2 ],
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BugcheckData [ 3 ],
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BugcheckData [ 4 ] );
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}
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VOID BgChkProcessHasLockedPages (
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PVOID NotUsed
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)
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{
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PMDL Mdl;
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PVOID Address;
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DbgPrint ("Buggy: ProcessHasLockedPages \n");
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Mdl = IoAllocateMdl(
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(PVOID)0x10000, // adress
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0x1000, // size
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FALSE, // not secondary buffer
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FALSE, // do not charge quota
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NULL); // no irp
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if (Mdl != NULL) {
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DbgPrint ("Buggy: mdl created \n");
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}
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#if 0
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try {
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MmProbeAndLockPages (
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Mdl,
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KernelMode,
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IoReadAccess);
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DbgPrint ("Buggy: locked pages \n");
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}
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except (EXCEPTION_EXECUTE_HANDLER) {
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DbgPrint ("Buggy: exception raised while locking \n");
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}
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#endif
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}
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VOID BgChkNoMoreSystemPtes (
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PVOID NotUsed
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)
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{
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DWORDLONG Index;
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PHYSICAL_ADDRESS Address;
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ULONG Count = 0;
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char Buffer [1024];
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DbgPrint ("Buggy: NoMoresystemPtes\n");
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for (Index = 0; Index < (DWORDLONG)0x80000000 * 4; Index += 0x10000) {
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Address.QuadPart = (DWORDLONG)Index;
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if (MmMapIoSpace (Address, 0x10000, FALSE)) {
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Count += 0x10000;
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}
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}
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DbgPrint ("Finished eating system PTEs %08X ... \n", Count);
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}
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VOID BgChkBadPoolHeader (
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PVOID NotUsed
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)
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{
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PULONG Block;
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DbgPrint ("Buggy: BadPoolHeader\n");
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Block = (PULONG) ExAllocatePoolWithTag (
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NonPagedPool,
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128,
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TD_POOL_TAG);
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//
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// Trash 4 bytes in the block header.
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//
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*(Block - 1) = 0xBADBAD01;
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//
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// This free operation should bugcheck.
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//
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ExFreePool (Block);
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}
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VOID BgChkDriverCorruptedSystemPtes (
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PVOID NotUsed
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)
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{
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PVOID Block;
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DbgPrint ("Buggy: DriverCorruptedSystemPtes\n");
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Block = (PULONG) ExAllocatePoolWithTag (
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NonPagedPool,
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0x2000,
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TD_POOL_TAG);
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MmUnmapIoSpace (Block, 0x2000);
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}
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VOID BgChkDriverCorruptedExPool (
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PVOID NotUsed
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)
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{
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PULONG Block;
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DbgPrint ("Buggy: DriverCorruptedExPool\n");
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Block = (PULONG) ExAllocatePoolWithTag (
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NonPagedPool,
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128,
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TD_POOL_TAG);
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//
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// Trash 8 bytes in the block header.
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//
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*(Block - 2) = 0xBADBAD01;
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*(Block - 1) = 0xBADBAD01;
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//
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// This free operation should bugcheck.
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//
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ExFreePool (Block);
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}
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VOID BgChkDriverCorruptedMmPool (
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PVOID NotUsed
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)
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{
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DbgPrint ("Buggy: DriverCorruptedMmPool\n");
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ExFreePool (NULL);
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}
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VOID BgChkIrqlNotLessOrEqual (
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PVOID NotUsed
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)
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{
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KIRQL irql;
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VOID *pPagedData;
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DbgPrint ("Buggy: IrqlNotLessOrEqual\n");
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pPagedData = ExAllocatePoolWithTag(
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PagedPool,
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16,
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TD_POOL_TAG);
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if( pPagedData == NULL )
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{
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DbgPrint( "Cannot allocate 16 bytes of paged pool\n" );
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return;
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}
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KeRaiseIrql( DISPATCH_LEVEL, &irql );
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*((ULONG*)pPagedData) = 16;
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KeLowerIrql( irql );
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}
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VOID BgChkPageFaultBeyondEndOfAllocation (
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PVOID NotUsed
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)
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{
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PVOID *pHalfPage;
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PVOID *pLastUlongToWrite;
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ULONG *pCrtULONG;
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DbgPrint ("Buggy: PageFaultBeyondEndOfAllocation\n");
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//
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// allocate half a page
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//
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pHalfPage = ExAllocatePoolWithTag(
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NonPagedPool,
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PAGE_SIZE >> 1,
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TD_POOL_TAG);
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if( pHalfPage == NULL )
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{
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DbgPrint ("Buggy: cannot allocate half page of NP pool\n");
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}
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else
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{
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//
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// touch a page more
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//
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pCrtULONG = (ULONG*)pHalfPage;
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while( (ULONG_PTR)pCrtULONG < (ULONG_PTR)pHalfPage + (PAGE_SIZE >> 1) + 2 * PAGE_SIZE )
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{
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*pCrtULONG = PtrToUlong( pCrtULONG );
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pCrtULONG ++;
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}
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ExFreePool( pHalfPage );
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}
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}
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VOID BgChkDriverVerifierDetectedViolation (
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PVOID NotUsed
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)
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{
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PVOID *pHalfPage;
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PVOID *pLastUlongToWrite;
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ULONG *pCrtULONG;
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DbgPrint ("Buggy: DriverVerifierDetectedViolation\n");
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//
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// allocate half a page
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//
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pHalfPage = ExAllocatePoolWithTag(
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NonPagedPool,
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PAGE_SIZE >> 1,
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TD_POOL_TAG);
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if( pHalfPage == NULL )
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{
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DbgPrint ("Buggy: cannot allocate half page of NP pool\n");
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}
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else
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{
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//
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// touch 1 ULONG more
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//
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pCrtULONG = (ULONG*)pHalfPage;
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while( (ULONG_PTR)pCrtULONG < (ULONG_PTR)pHalfPage + (PAGE_SIZE >> 1) + sizeof( ULONG) )
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{
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*pCrtULONG = PtrToUlong( pCrtULONG );
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pCrtULONG ++;
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}
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//
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// free -> BC
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//
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ExFreePool( pHalfPage );
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}
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}
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VOID
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BgChkCorruptSystemPtes(
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PVOID NotUsed
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)
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/*++
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Routine Description:
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This function corrupts system PTEs area on purpose. This is
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done so that we can test if the crache is mini triaged correctly.
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Arguments:
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None.
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Return Value:
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None.
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Environment:
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Kernel mode.
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--*/
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{
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PULONG puCrtAdress = (PULONG)LongToPtr(0xC0300000);
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ULONG uCrtValue;
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int nCrtStep;
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#define NUM_ULONGS_TO_CORRUPT 0x100
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#define FIRST_ULONG_VALUE 0xABCDDCBA
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#define NUM_ULONGS_SKIP_EACH_STEP 16
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uCrtValue = FIRST_ULONG_VALUE;
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for( nCrtStep = 0; nCrtStep < NUM_ULONGS_TO_CORRUPT; nCrtStep++ )
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{
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*puCrtAdress = uCrtValue;
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puCrtAdress += NUM_ULONGS_SKIP_EACH_STEP;
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uCrtValue++;
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}
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}
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VOID
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BgChkHangCurrentProcessor (
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PVOID NotUsed
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)
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/*++
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Routine Description:
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This routine will hang the current processor.
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Arguments:
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None.
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Return Value:
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None.
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Environment:
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Kernel mode.
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--*/
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{
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KIRQL PreviousIrql;
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KeRaiseIrql( DISPATCH_LEVEL, &PreviousIrql );
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while ( TRUE ) {
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//
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// this will hang the current processor
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//
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}
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}
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