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321 lines
9.8 KiB
321 lines
9.8 KiB
/**
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*** Copyright (C) 1996-97 Intel Corporation. All rights reserved.
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***
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*** The information and source code contained herein is the exclusive
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*** property of Intel Corporation and may not be disclosed, examined
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*** or reproduced in whole or in part without explicit written authorization
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*** from the company.
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**/
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/*++
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Copyright (c) 1995 Intel Corporation
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Copyright (c) 1990-2001, Microsoft Corporation
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Module Name:
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chandler.c
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Abstract:
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This module implements the C specific exception handler that provides
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structured condition handling for the C language.
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Author:
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William K. Cheung (wcheung) 29-Dec-1995
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Based on the version by David N. Cutler (davec) 11-Sep-1990
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Environment:
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Any mode.
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Revision History:
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--*/
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#ifndef _IA64_
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#define _IA64_
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#endif
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#include "nt.h"
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#include <excpt.h>
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//
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// Define procedure prototypes for exception filter and termination handler
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// execution routines defined in jmpunwnd.s
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//
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VOID _NLG_Notify (
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IN PVOID uoffDestination,
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IN FRAME_POINTERS uoffFramePointer,
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IN ULONG dwCode
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);
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LONG
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__C_ExecuteExceptionFilter (
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ULONGLONG MemoryStack,
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ULONGLONG BackingStore,
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NTSTATUS ExceptionCode,
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PEXCEPTION_POINTERS ExceptionPointers,
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ULONGLONG ExceptionFilter,
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ULONGLONG GlobalPointer
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);
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VOID
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__C_ExecuteTerminationHandler (
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ULONGLONG MemoryStack,
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ULONGLONG BackingStore,
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BOOLEAN AbnormalTermination,
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ULONGLONG TerminationHandler,
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ULONGLONG GlobalPointer
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);
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EXCEPTION_DISPOSITION
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__C_specific_handler (
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IN PEXCEPTION_RECORD ExceptionRecord,
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IN ULONGLONG MemoryStackFp,
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IN ULONGLONG BackingStoreFp,
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IN OUT PCONTEXT ContextRecord,
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IN OUT PDISPATCHER_CONTEXT DispatcherContext,
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IN ULONGLONG TargetGp
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)
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/*++
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Routine Description:
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This function scans the scope tables associated with the specified
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procedure and calls exception and termination handlers as necessary.
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Arguments:
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ExceptionRecord - Supplies a pointer to an exception record.
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MemoryStackFp - Supplies a pointer to memory stack frame of the
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establisher function.
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BackingStoreFp - Supplies a pointer to RSE stack frame of the
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establisher function.
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ContextRecord - Supplies a pointer to a context record.
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DispatcherContext - Supplies a pointer to the exception dispatcher or
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unwind dispatcher context.
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TargetGp - Global pointer of the current module.
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Return Value:
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If the exception is handled by one of the exception filter routines, then
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there is no return from this routine and RtlUnwind is called. Otherwise,
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an exception disposition value of continue execution or continue search is
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returned.
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--*/
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{
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ULONGLONG ImageBase;
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ULONGLONG ControlPc;
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ULONGLONG TargetPc;
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ULONGLONG Handler;
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ULONG TargetHandler;
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LONG Value;
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EXCEPTION_POINTERS ExceptionPointers;
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PRUNTIME_FUNCTION FunctionEntry;
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ULONG Index;
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PSCOPE_TABLE ScopeTable;
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FRAME_POINTERS EstablisherFrame = { MemoryStackFp, BackingStoreFp };
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//
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// Get address of where control left the establisher, the address of the
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// function table entry that describes the function, and the address of
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// the scope table.
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//
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FunctionEntry = DispatcherContext->FunctionEntry;
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ImageBase = DispatcherContext->ImageBase;
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ScopeTable = (PSCOPE_TABLE) (ImageBase + *(PULONG)
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GetLanguageSpecificData(FunctionEntry, ImageBase));
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ControlPc = DispatcherContext->ControlPc - ImageBase;
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//
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// If an unwind is not in progress, then scan the scope table and call
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// the appropriate exception filter routines. Otherwise, scan the scope
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// table and call the appropriate termination handlers using the target
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// PC obtained from the context record.
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// are called.
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//
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if (IS_DISPATCHING(ExceptionRecord->ExceptionFlags)) {
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//
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// Scan the scope table and call the appropriate exception filter
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// routines.
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//
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ExceptionPointers.ExceptionRecord = ExceptionRecord;
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ExceptionPointers.ContextRecord = ContextRecord;
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for (Index = 0; Index < ScopeTable->Count; Index += 1) {
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if ((ControlPc >= ScopeTable->ScopeRecord[Index].BeginAddress) &&
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(ControlPc < ScopeTable->ScopeRecord[Index].EndAddress) &&
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(ScopeTable->ScopeRecord[Index].JumpTarget != 0)) {
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//
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// Call the exception filter routine.
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//
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ULONG Offset = ScopeTable->ScopeRecord[Index].HandlerAddress;
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switch (Offset & 0x7) {
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case 7:
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Value = EXCEPTION_EXECUTE_HANDLER;
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break;
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case 5:
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Value = EXCEPTION_CONTINUE_SEARCH;
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break;
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case 3:
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Value = EXCEPTION_CONTINUE_EXECUTION;
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break;
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default:
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Value = __C_ExecuteExceptionFilter(
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MemoryStackFp,
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BackingStoreFp,
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ExceptionRecord->ExceptionCode,
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&ExceptionPointers,
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(ImageBase + Offset),
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TargetGp);
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break;
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}
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//
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// If the return value is less than zero, then dismiss the
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// exception. Otherwise, if the value is greater than zero,
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// then unwind to the target exception handler. Otherwise,
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// continue the search for an exception filter.
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//
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if (Value < 0) {
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return ExceptionContinueExecution;
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} else if (Value > 0) {
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//
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// Tell the debugger we are about to pass control to an
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// exception handler and pass the handler's address to
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// NLG_Notify.
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//
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Handler = ImageBase + ScopeTable->ScopeRecord[Index].JumpTarget;
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_NLG_Notify((PVOID)Handler, EstablisherFrame, 0x1);
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RtlUnwind2(EstablisherFrame,
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(PVOID)Handler,
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ExceptionRecord,
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// IA64 assumption:
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// RtlUnwind2 will not use this as an address
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(PVOID)(unsigned __int64)ExceptionRecord->ExceptionCode,
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ContextRecord);
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}
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}
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}
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} else {
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//
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// Scan the scope table and call the appropriate termination handler
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// routines.
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//
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PUNWIND_INFO Unw;
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Unw = (PUNWIND_INFO)(FunctionEntry->UnwindInfoAddress + ImageBase);
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TargetPc = ContextRecord->StIIP - ImageBase;
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TargetHandler = 0;
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if (Unw->Flags & 0x1000) {
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for (Index = 0; Index < ScopeTable->Count; Index += 1) {
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if ((TargetPc >= ScopeTable->ScopeRecord[Index].BeginAddress) &&
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(TargetPc < ScopeTable->ScopeRecord[Index].EndAddress))
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{
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TargetHandler = ScopeTable->ScopeRecord[Index].HandlerAddress;
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break;
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}
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}
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}
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for (Index = 0; Index < ScopeTable->Count; Index += 1) {
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if ((ControlPc >= ScopeTable->ScopeRecord[Index].BeginAddress) &&
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(ControlPc < ScopeTable->ScopeRecord[Index].EndAddress)) {
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//
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// If the target PC is within the same scope the control PC
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// is within, then this is an uplevel goto out of an inner try
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// scope or a long jump back into a try scope. Terminate the
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// scan termination handlers.
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//
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// N.B. The target PC can be just beyond the end of the scope,
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// in which case it is a leave from the scope.
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//
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if ((TargetPc >= ScopeTable->ScopeRecord[Index].BeginAddress) &&
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(TargetPc < ScopeTable->ScopeRecord[Index].EndAddress)) {
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break;
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} else {
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//
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// If the scope table entry describes an exception filter
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// and the associated exception handler is the target of
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// the unwind, then terminate the scan for termination
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// handlers. Otherwise, if the scope table entry describes
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// a termination handler, then record the address of the
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// end of the scope as the new control PC address and call
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// the termination handler.
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//
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if (ScopeTable->ScopeRecord[Index].JumpTarget != 0) {
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if (TargetPc == ScopeTable->ScopeRecord[Index].JumpTarget) {
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break;
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}
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} else {
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if (TargetHandler == ScopeTable->ScopeRecord[Index].HandlerAddress) {
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break;
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}
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DispatcherContext->ControlPc = ImageBase +
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ScopeTable->ScopeRecord[Index].EndAddress;
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Handler = ImageBase + ScopeTable->ScopeRecord[Index].HandlerAddress;
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__C_ExecuteTerminationHandler(
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MemoryStackFp,
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BackingStoreFp,
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TRUE,
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Handler,
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TargetGp);
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}
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}
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}
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}
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}
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//
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// Continue search for exception or termination handlers.
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//
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return ExceptionContinueSearch;
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}
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