mirror of
https://github.com/reactos/reactos.git
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6afbc8f483
svn path=/branches/reactos-yarotows/; revision=45219
402 lines
12 KiB
C
402 lines
12 KiB
C
/*
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* PROJECT: ReactOS Kernel
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* LICENSE: GPL - See COPYING in the top level directory
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* FILE: ntoskrnl/ps/debug.c
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* PURPOSE: Process Manager: Debugging Support (Set/Get Context)
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* PROGRAMMERS: Alex Ionescu (alex.ionescu@reactos.org)
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* Thomas Weidenmueller (w3seek@reactos.org)
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*/
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/* INCLUDES ****************************************************************/
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#include <ntoskrnl.h>
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#define NDEBUG
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#include <debug.h>
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/* PRIVATE FUNCTIONS *********************************************************/
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#if DBG
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VOID
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NTAPI
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PspDumpThreads(BOOLEAN IncludeSystem)
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{
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PLIST_ENTRY CurrentThread, CurrentProcess;
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PEPROCESS Process;
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PETHREAD Thread;
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ULONG nThreads = 0;
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/* Loop all Active Processes */
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CurrentProcess = PsActiveProcessHead.Flink;
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while(CurrentProcess != &PsActiveProcessHead)
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{
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/* Get the process */
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Process = CONTAINING_RECORD(CurrentProcess, EPROCESS, ActiveProcessLinks);
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/* Skip the Initial Process if requested */
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if((Process != PsInitialSystemProcess) ||
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(Process == PsInitialSystemProcess && IncludeSystem))
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{
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/* Loop all its threads */
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CurrentThread = Process->ThreadListHead.Flink;
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while(CurrentThread != &Process->ThreadListHead)
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{
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/* Get teh Thread */
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Thread = CONTAINING_RECORD(CurrentThread, ETHREAD, ThreadListEntry);
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nThreads++;
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/* Print the Info */
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DbgPrint("State %d Affinity %08x Priority %d PID.TID %d.%d Name %.8s Stack: \n",
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Thread->Tcb.State,
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Thread->Tcb.Affinity,
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Thread->Tcb.Priority,
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Thread->Cid.UniqueProcess,
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Thread->Cid.UniqueThread,
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Thread->ThreadsProcess->ImageFileName);
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/* Make sure it's not running */
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if(Thread->Tcb.State == Ready ||
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Thread->Tcb.State == Standby ||
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Thread->Tcb.State == Waiting)
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{
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ULONG i = 0;
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PULONG Esp = (PULONG)Thread->Tcb.KernelStack;
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PULONG Ebp = (PULONG)Esp[4];
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/* Print EBP */
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DbgPrint("Ebp 0x%.8X\n", Ebp);
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/* Walk it */
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while(Ebp != 0 && Ebp >= (PULONG)Thread->Tcb.StackLimit)
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{
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/* Print what's on the stack */
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DbgPrint("%.8X %.8X%s", Ebp[0], Ebp[1], (i % 8) == 7 ? "\n" : " ");
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Ebp = (PULONG)Ebp[0];
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i++;
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}
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/* Print a new line if there's nothing */
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if((i % 8) != 0) DbgPrint("\n");
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}
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/* Move to the next Thread */
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CurrentThread = CurrentThread->Flink;
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}
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}
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/* Move to the next Process */
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CurrentProcess = CurrentProcess->Flink;
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}
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}
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#endif
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/* PUBLIC FUNCTIONS **********************************************************/
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/*
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* @implemented
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*/
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NTSTATUS
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NTAPI
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PsGetContextThread(IN PETHREAD Thread,
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IN OUT PCONTEXT ThreadContext,
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IN KPROCESSOR_MODE PreviousMode)
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{
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GET_SET_CTX_CONTEXT GetSetContext;
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ULONG Size = 0, Flags = 0;
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NTSTATUS Status;
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/* Enter SEH */
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_SEH2_TRY
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{
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/* Set default ength */
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Size = sizeof(CONTEXT);
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/* Read the flags */
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Flags = ProbeForReadUlong(&ThreadContext->ContextFlags);
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#ifdef _M_IX86
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/* Check if the caller wanted extended registers */
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if ((Flags & CONTEXT_EXTENDED_REGISTERS) !=
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CONTEXT_EXTENDED_REGISTERS)
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{
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/* Cut them out of the size */
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Size = FIELD_OFFSET(CONTEXT, ExtendedRegisters);
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}
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#endif
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/* Check if we came from user mode */
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if (PreviousMode != KernelMode)
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{
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/* Probe the context */
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ProbeForWrite(ThreadContext, Size, sizeof(ULONG));
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}
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}
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_SEH2_EXCEPT(EXCEPTION_EXECUTE_HANDLER)
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{
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/* Return the exception code */
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_SEH2_YIELD(return _SEH2_GetExceptionCode());
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}
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_SEH2_END;
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/* Initialize the wait event */
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KeInitializeEvent(&GetSetContext.Event, NotificationEvent, FALSE);
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/* Set the flags and previous mode */
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GetSetContext.Context.ContextFlags = Flags;
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GetSetContext.Mode = PreviousMode;
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/* Check if we're running in the same thread */
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if (Thread == PsGetCurrentThread())
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{
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/* Setup APC parameters manually */
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GetSetContext.Apc.SystemArgument1 = NULL;
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GetSetContext.Apc.SystemArgument2 = Thread;
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/* Enter a guarded region to simulate APC_LEVEL */
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KeEnterGuardedRegion();
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/* Manually call the APC */
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PspGetOrSetContextKernelRoutine(&GetSetContext.Apc,
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NULL,
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NULL,
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&GetSetContext.Apc.SystemArgument1,
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&GetSetContext.Apc.SystemArgument2);
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/* Leave the guarded region */
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KeLeaveGuardedRegion();
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/* We are done */
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Status = STATUS_SUCCESS;
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}
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else
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{
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/* Initialize the APC */
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KeInitializeApc(&GetSetContext.Apc,
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&Thread->Tcb,
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OriginalApcEnvironment,
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PspGetOrSetContextKernelRoutine,
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NULL,
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NULL,
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KernelMode,
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NULL);
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/* Queue it as a Get APC */
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if (!KeInsertQueueApc(&GetSetContext.Apc, NULL, Thread, 2))
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{
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/* It was already queued, so fail */
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Status = STATUS_UNSUCCESSFUL;
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}
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else
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{
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/* Wait for the APC to complete */
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Status = KeWaitForSingleObject(&GetSetContext.Event,
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0,
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KernelMode,
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FALSE,
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NULL);
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}
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}
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_SEH2_TRY
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{
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/* Copy the context */
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RtlCopyMemory(ThreadContext, &GetSetContext.Context, Size);
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}
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_SEH2_EXCEPT(EXCEPTION_EXECUTE_HANDLER)
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{
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/* Get the exception code */
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Status = _SEH2_GetExceptionCode();
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}
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_SEH2_END;
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/* Return status */
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return Status;
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}
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/*
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* @implemented
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*/
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NTSTATUS
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NTAPI
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PsSetContextThread(IN PETHREAD Thread,
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IN OUT PCONTEXT ThreadContext,
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IN KPROCESSOR_MODE PreviousMode)
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{
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GET_SET_CTX_CONTEXT GetSetContext;
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ULONG Size = 0, Flags = 0;
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NTSTATUS Status;
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/* Enter SEH */
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_SEH2_TRY
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{
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/* Set default length */
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Size = sizeof(CONTEXT);
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/* Read the flags */
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Flags = ProbeForReadUlong(&ThreadContext->ContextFlags);
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#ifdef _M_IX86
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/* Check if the caller wanted extended registers */
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if ((Flags & CONTEXT_EXTENDED_REGISTERS) !=
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CONTEXT_EXTENDED_REGISTERS)
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{
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/* Cut them out of the size */
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Size = FIELD_OFFSET(CONTEXT, ExtendedRegisters);
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}
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#endif
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/* Check if we came from user mode */
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if (PreviousMode != KernelMode)
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{
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/* Probe the context */
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ProbeForRead(ThreadContext, Size, sizeof(ULONG));
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}
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/* Copy the context */
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RtlCopyMemory(&GetSetContext.Context, ThreadContext, Size);
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}
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_SEH2_EXCEPT(EXCEPTION_EXECUTE_HANDLER)
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{
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/* Return the exception code */
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_SEH2_YIELD(return _SEH2_GetExceptionCode());
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}
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_SEH2_END;
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/* Initialize the wait event */
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KeInitializeEvent(&GetSetContext.Event, NotificationEvent, FALSE);
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/* Set the flags and previous mode */
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GetSetContext.Context.ContextFlags = Flags;
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GetSetContext.Mode = PreviousMode;
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/* Check if we're running in the same thread */
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if (Thread == PsGetCurrentThread())
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{
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/* Setup APC parameters manually */
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GetSetContext.Apc.SystemArgument1 = UlongToPtr(1);
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GetSetContext.Apc.SystemArgument2 = Thread;
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/* Enter a guarded region to simulate APC_LEVEL */
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KeEnterGuardedRegion();
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/* Manually call the APC */
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PspGetOrSetContextKernelRoutine(&GetSetContext.Apc,
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NULL,
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NULL,
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&GetSetContext.Apc.SystemArgument1,
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&GetSetContext.Apc.SystemArgument2);
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/* Leave the guarded region */
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KeLeaveGuardedRegion();
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/* We are done */
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Status = STATUS_SUCCESS;
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}
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else
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{
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/* Initialize the APC */
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KeInitializeApc(&GetSetContext.Apc,
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&Thread->Tcb,
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OriginalApcEnvironment,
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PspGetOrSetContextKernelRoutine,
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NULL,
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NULL,
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KernelMode,
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NULL);
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/* Queue it as a Get APC */
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if (!KeInsertQueueApc(&GetSetContext.Apc, UlongToPtr(1), Thread, 2))
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{
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/* It was already queued, so fail */
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Status = STATUS_UNSUCCESSFUL;
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}
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else
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{
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/* Wait for the APC to complete */
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Status = KeWaitForSingleObject(&GetSetContext.Event,
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0,
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KernelMode,
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FALSE,
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NULL);
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}
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}
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/* Return status */
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return Status;
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}
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NTSTATUS
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NTAPI
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NtGetContextThread(IN HANDLE ThreadHandle,
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IN OUT PCONTEXT ThreadContext)
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{
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PETHREAD Thread;
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NTSTATUS Status;
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KPROCESSOR_MODE PreviousMode = ExGetPreviousMode();
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PAGED_CODE();
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/* Get the Thread Object */
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Status = ObReferenceObjectByHandle(ThreadHandle,
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THREAD_GET_CONTEXT,
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PsThreadType,
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PreviousMode,
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(PVOID*)&Thread,
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NULL);
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if (!NT_SUCCESS(Status)) return Status;
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/* Make sure it's not a system thread */
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if (Thread->SystemThread)
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{
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/* Fail */
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Status = STATUS_INVALID_HANDLE;
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}
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else
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{
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/* Call the kernel API */
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Status = PsGetContextThread(Thread, ThreadContext, PreviousMode);
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}
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/* Dereference it and return */
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ObDereferenceObject(Thread);
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return Status;
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}
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NTSTATUS
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NTAPI
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NtSetContextThread(IN HANDLE ThreadHandle,
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IN PCONTEXT ThreadContext)
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{
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PETHREAD Thread;
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NTSTATUS Status;
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KPROCESSOR_MODE PreviousMode = ExGetPreviousMode();
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PAGED_CODE();
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/* Get the Thread Object */
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Status = ObReferenceObjectByHandle(ThreadHandle,
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THREAD_SET_CONTEXT,
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PsThreadType,
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PreviousMode,
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(PVOID*)&Thread,
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NULL);
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if (!NT_SUCCESS(Status)) return Status;
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/* Make sure it's not a system thread */
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if (Thread->SystemThread)
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{
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/* Fail */
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Status = STATUS_INVALID_HANDLE;
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}
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else
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{
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/* Call the kernel API */
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Status = PsSetContextThread(Thread, ThreadContext, PreviousMode);
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}
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/* Dereference it and return */
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ObDereferenceObject(Thread);
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return Status;
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}
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/* EOF */
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