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			241 lines
		
	
	
		
			7.3 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			241 lines
		
	
	
		
			7.3 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
//===- Win32/Signals.cpp - Win32 Signals Implementation ---------*- C++ -*-===//
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// 
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//                     The LLVM Compiler Infrastructure
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//
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// This file was developed by Jeff Cohen and is distributed under the 
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// University of Illinois Open Source License. See LICENSE.TXT for details.
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// 
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//===----------------------------------------------------------------------===//
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//
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// This file provides the Win32 specific implementation of the Signals class.
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//
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//===----------------------------------------------------------------------===//
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#include "Win32.h"
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#include <llvm/System/Signals.h>
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#include <stdio.h>
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#include <vector>
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#ifdef __MINGW
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#include <imagehlp.h>
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#else
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#include <dbghelp.h>
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#endif
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#include <psapi.h>
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#pragma comment(lib, "psapi.lib")
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#pragma comment(lib, "dbghelp.lib")
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// Forward declare.
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static LONG WINAPI LLVMUnhandledExceptionFilter(LPEXCEPTION_POINTERS ep);
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static BOOL WINAPI LLVMConsoleCtrlHandler(DWORD dwCtrlType);
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static std::vector<llvm::sys::Path> *FilesToRemove = NULL;
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static std::vector<llvm::sys::Path> *DirectoriesToRemove = NULL;
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static bool RegisteredUnhandledExceptionFilter = false;
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static bool CleanupExecuted = false;
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static PTOP_LEVEL_EXCEPTION_FILTER OldFilter = NULL;
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// Windows creates a new thread to execute the console handler when an event
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// (such as CTRL/C) occurs.  This causes concurrency issues with the above
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// globals which this critical section addresses.
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static CRITICAL_SECTION CriticalSection;
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namespace llvm {
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//===----------------------------------------------------------------------===//
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//=== WARNING: Implementation here must contain only Win32 specific code 
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//===          and must not be UNIX code
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//===----------------------------------------------------------------------===//
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static void RegisterHandler() { 
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  if (RegisteredUnhandledExceptionFilter) {
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    EnterCriticalSection(&CriticalSection);
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    return;
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  }
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  // Now's the time to create the critical section.  This is the first time
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  // through here, and there's only one thread.
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  InitializeCriticalSection(&CriticalSection);
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  // Enter it immediately.  Now if someone hits CTRL/C, the console handler
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  // can't proceed until the globals are updated.
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  EnterCriticalSection(&CriticalSection);
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  RegisteredUnhandledExceptionFilter = true;
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  OldFilter = SetUnhandledExceptionFilter(LLVMUnhandledExceptionFilter);
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  SetConsoleCtrlHandler(LLVMConsoleCtrlHandler, TRUE);
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  // IMPORTANT NOTE: Caller must call LeaveCriticalSection(&CriticalSection) or
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  // else multi-threading problems will ensue.
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}
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// RemoveFileOnSignal - The public API
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void sys::RemoveFileOnSignal(const std::string &Filename) {
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  RegisterHandler();
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  if (CleanupExecuted)
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    throw std::string("Process terminating -- cannot register for removal");
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  if (FilesToRemove == NULL)
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    FilesToRemove = new std::vector<sys::Path>;
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  FilesToRemove->push_back(sys::Path(Filename));
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  LeaveCriticalSection(&CriticalSection);
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}
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// RemoveDirectoryOnSignal - The public API
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void sys::RemoveDirectoryOnSignal(const sys::Path& path) {
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  RegisterHandler();
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  if (CleanupExecuted)
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    throw std::string("Process terminating -- cannot register for removal");
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  if (path.isDirectory()) {
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    if (DirectoriesToRemove == NULL)
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      DirectoriesToRemove = new std::vector<sys::Path>;
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    DirectoriesToRemove->push_back(path);
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  }
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  LeaveCriticalSection(&CriticalSection);
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}
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/// PrintStackTraceOnErrorSignal - When an error signal (such as SIBABRT or
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/// SIGSEGV) is delivered to the process, print a stack trace and then exit.
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void sys::PrintStackTraceOnErrorSignal() {
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  RegisterHandler();
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  LeaveCriticalSection(&CriticalSection);
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}
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}
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static void Cleanup() {
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  EnterCriticalSection(&CriticalSection);
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  // Prevent other thread from registering new files and directories for
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  // removal, should we be executing because of the console handler callback.
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  CleanupExecuted = true;
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  // FIXME: open files cannot be deleted.
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  if (FilesToRemove != NULL)
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    while (!FilesToRemove->empty()) {
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      try {
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        FilesToRemove->back().destroyFile();
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      } catch (...) {
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      }
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      FilesToRemove->pop_back();
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    }
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  if (DirectoriesToRemove != NULL)
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    while (!DirectoriesToRemove->empty()) {
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      try {
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        DirectoriesToRemove->back().destroyDirectory(true);
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      } catch (...) {
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      }
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      DirectoriesToRemove->pop_back();
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    }
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  LeaveCriticalSection(&CriticalSection);
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}
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static LONG WINAPI LLVMUnhandledExceptionFilter(LPEXCEPTION_POINTERS ep) {
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  try {
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    Cleanup();
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    // Initialize the STACKFRAME structure.
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    STACKFRAME StackFrame;
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    memset(&StackFrame, 0, sizeof(StackFrame));
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    StackFrame.AddrPC.Offset = ep->ContextRecord->Eip;
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    StackFrame.AddrPC.Mode = AddrModeFlat;
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    StackFrame.AddrStack.Offset = ep->ContextRecord->Esp;
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    StackFrame.AddrStack.Mode = AddrModeFlat;
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    StackFrame.AddrFrame.Offset = ep->ContextRecord->Ebp;
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    StackFrame.AddrFrame.Mode = AddrModeFlat;
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    HANDLE hProcess = GetCurrentProcess();
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    HANDLE hThread = GetCurrentThread();
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    // Initialize the symbol handler.
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    SymSetOptions(SYMOPT_DEFERRED_LOADS|SYMOPT_LOAD_LINES);
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    SymInitialize(hProcess, NULL, TRUE);
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    while (true) {
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      if (!StackWalk(IMAGE_FILE_MACHINE_I386, hProcess, hThread, &StackFrame,
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                     ep->ContextRecord, NULL, SymFunctionTableAccess,
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                     SymGetModuleBase, NULL)) {
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        break;
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      }
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      if (StackFrame.AddrFrame.Offset == 0)
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        break;
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      // Print the PC in hexadecimal.
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      DWORD PC = StackFrame.AddrPC.Offset;
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      fprintf(stderr, "%08X", PC);
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      // Print the parameters.  Assume there are four.
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      fprintf(stderr, " (0x%08X 0x%08X 0x%08X 0x%08X)", StackFrame.Params[0],
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              StackFrame.Params[1], StackFrame.Params[2], StackFrame.Params[3]);
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      // Verify the PC belongs to a module in this process.
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      if (!SymGetModuleBase(hProcess, PC)) {
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        fputs(" <unknown module>\n", stderr);
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        continue;
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      }
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      // Print the symbol name.
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      char buffer[512];
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      IMAGEHLP_SYMBOL *symbol = reinterpret_cast<IMAGEHLP_SYMBOL *>(buffer);
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      memset(symbol, 0, sizeof(IMAGEHLP_SYMBOL));
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      symbol->SizeOfStruct = sizeof(IMAGEHLP_SYMBOL);
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      symbol->MaxNameLength = 512 - sizeof(IMAGEHLP_SYMBOL);
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      DWORD dwDisp;
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      if (!SymGetSymFromAddr(hProcess, PC, &dwDisp, symbol)) {
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        fputc('\n', stderr);
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        continue;
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      }
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      buffer[511] = 0;
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      if (dwDisp > 0)
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        fprintf(stderr, ", %s()+%04d bytes(s)", symbol->Name, dwDisp);
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      else
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        fprintf(stderr, ", %s", symbol->Name);
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      // Print the source file and line number information.
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      IMAGEHLP_LINE line;
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      memset(&line, 0, sizeof(line));
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      line.SizeOfStruct = sizeof(line);
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      if (SymGetLineFromAddr(hProcess, PC, &dwDisp, &line)) {
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        fprintf(stderr, ", %s, line %d", line.FileName, line.LineNumber);
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        if (dwDisp > 0)
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          fprintf(stderr, "+%04d byte(s)", dwDisp);
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      }
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      fputc('\n', stderr);
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    }
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  } catch (...) {
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      assert(!"Crashed in LLVMUnhandledExceptionFilter");
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  }
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  // Allow dialog box to pop up allowing choice to start debugger.
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  if (OldFilter)
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    return (*OldFilter)(ep);
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  else
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    return EXCEPTION_CONTINUE_SEARCH;
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}
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static BOOL WINAPI LLVMConsoleCtrlHandler(DWORD dwCtrlType) {
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  Cleanup();
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  // Allow normal processing to take place; i.e., the process dies.
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  return FALSE;
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}
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// vim: sw=2 smartindent smarttab tw=80 autoindent expandtab
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