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Add Windows x64 stack walking support. Patch by Aaron Ballman!
git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@140906 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -23,14 +23,131 @@
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#endif
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#include <psapi.h>
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#ifdef __MINGW32__
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#ifdef _MSC_VER
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#pragma comment(lib, "psapi.lib")
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#pragma comment(lib, "dbghelp.lib")
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#elif __MINGW32__
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#if ((HAVE_LIBIMAGEHLP != 1) || (HAVE_LIBPSAPI != 1))
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#error "libimagehlp.a & libpsapi.a should be present"
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#endif
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#else
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#pragma comment(lib, "psapi.lib")
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#pragma comment(lib, "dbghelp.lib")
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#endif
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// The version of g++ that comes with MinGW does *not* properly understand
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// the ll format specifier for printf. However, MinGW passes the format
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// specifiers on to the MSVCRT entirely, and the CRT understands the ll
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// specifier. So these warnings are spurious in this case. Since we compile
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// with -Wall, this will generate these warnings which should be ignored. So
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// we will turn off the warnings for this just file. However, MinGW also does
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// not support push and pop for diagnostics, so we have to manually turn it
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// back on at the end of the file.
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#pragma GCC diagnostic ignored "-Wformat"
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#pragma GCC diagnostic ignored "-Wformat-extra-args"
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// MinGW does not have updated support for the 64-bit versions of the DebugHlp
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// APIs. So we will have to load them manually. The structures and method
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// signatures were pulled from DbgHelp.h in the Windows Platform SDK, and
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// adjusted for brevity.
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typedef struct _IMAGEHLP_LINE64 {
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DWORD SizeOfStruct;
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PVOID Key;
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DWORD LineNumber;
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PCHAR FileName;
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DWORD64 Address;
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} IMAGEHLP_LINE64, *PIMAGEHLP_LINE64;
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typedef struct _IMAGEHLP_SYMBOL64 {
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DWORD SizeOfStruct;
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DWORD64 Address;
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DWORD Size;
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DWORD Flags;
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DWORD MaxNameLength;
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CHAR Name[1];
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} IMAGEHLP_SYMBOL64, *PIMAGEHLP_SYMBOL64;
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typedef struct _tagADDRESS64 {
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DWORD64 Offset;
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WORD Segment;
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ADDRESS_MODE Mode;
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} ADDRESS64, *LPADDRESS64;
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typedef struct _KDHELP64 {
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DWORD64 Thread;
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DWORD ThCallbackStack;
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DWORD ThCallbackBStore;
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DWORD NextCallback;
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DWORD FramePointer;
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DWORD64 KiCallUserMode;
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DWORD64 KeUserCallbackDispatcher;
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DWORD64 SystemRangeStart;
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DWORD64 KiUserExceptionDispatcher;
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DWORD64 StackBase;
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DWORD64 StackLimit;
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DWORD64 Reserved[5];
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} KDHELP64, *PKDHELP64;
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typedef struct _tagSTACKFRAME64 {
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ADDRESS64 AddrPC;
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ADDRESS64 AddrReturn;
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ADDRESS64 AddrFrame;
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ADDRESS64 AddrStack;
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ADDRESS64 AddrBStore;
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PVOID FuncTableEntry;
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DWORD64 Params[4];
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BOOL Far;
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BOOL Virtual;
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DWORD64 Reserved[3];
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KDHELP64 KdHelp;
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} STACKFRAME64, *LPSTACKFRAME64;
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typedef BOOL (__stdcall *PREAD_PROCESS_MEMORY_ROUTINE64)(HANDLE hProcess,
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DWORD64 qwBaseAddress, PVOID lpBuffer, DWORD nSize,
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LPDWORD lpNumberOfBytesRead);
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typedef PVOID (__stdcall *PFUNCTION_TABLE_ACCESS_ROUTINE64)( HANDLE ahProcess,
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DWORD64 AddrBase);
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typedef DWORD64 (__stdcall *PGET_MODULE_BASE_ROUTINE64)(HANDLE hProcess,
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DWORD64 Address);
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typedef DWORD64 (__stdcall *PTRANSLATE_ADDRESS_ROUTINE64)(HANDLE hProcess,
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HANDLE hThread, LPADDRESS64 lpaddr);
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typedef BOOL (WINAPI *fpStackWalk64)(DWORD, HANDLE, HANDLE, LPSTACKFRAME64,
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PVOID, PREAD_PROCESS_MEMORY_ROUTINE64,
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PFUNCTION_TABLE_ACCESS_ROUTINE64,
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PGET_MODULE_BASE_ROUTINE64,
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PTRANSLATE_ADDRESS_ROUTINE64);
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static fpStackWalk64 StackWalk64;
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typedef DWORD64 (WINAPI *fpSymGetModuleBase64)(HANDLE, DWORD64);
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static fpSymGetModuleBase64 SymGetModuleBase64;
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typedef BOOL (WINAPI *fpSymGetSymFromAddr64)(HANDLE, DWORD64,
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PDWORD64, PIMAGEHLP_SYMBOL64);
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static fpSymGetSymFromAddr64 SymGetSymFromAddr64;
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typedef BOOL (WINAPI *fpSymGetLineFromAddr64)(HANDLE, DWORD64,
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PDWORD, PIMAGEHLP_LINE64);
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static fpSymGetLineFromAddr64 SymGetLineFromAddr64;
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typedef PVOID (WINAPI *fpSymFunctionTableAccess64)(HANDLE, DWORD64);
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static fpSymFunctionTableAccess64 SymFunctionTableAccess64;
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static bool load64BitDebugHelp(void) {
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HMODULE hLib = ::LoadLibrary("Dbghelp.dll");
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if (hLib) {
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StackWalk64 = (fpStackWalk64)
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::GetProcAddress(hLib, "StackWalk64");
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SymGetModuleBase64 = (fpSymGetModuleBase64)
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::GetProcAddress(hLib, "SymGetModuleBase64");
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SymGetSymFromAddr64 = (fpSymGetSymFromAddr64)
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::GetProcAddress(hLib, "SymGetSymFromAddr64");
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SymGetLineFromAddr64 = (fpSymGetLineFromAddr64)
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::GetProcAddress(hLib, "SymGetLineFromAddr64");
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SymFunctionTableAccess64 = (fpSymFunctionTableAccess64)
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::GetProcAddress(hLib, "SymFunctionTableAccess64");
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}
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return StackWalk64 != NULL;
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}
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#endif // __MINGW32__
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// Forward declare.
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static LONG WINAPI LLVMUnhandledExceptionFilter(LPEXCEPTION_POINTERS ep);
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@ -90,6 +207,18 @@ static int CRTReportHook(int ReportType, char *Message, int *Return) {
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#endif
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static void RegisterHandler() {
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#if __MINGW32__
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// On MinGW, we need to load up the symbols explicitly, because the
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// Win32 framework they include does not have support for the 64-bit
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// versions of the APIs we need. If we cannot load up the APIs (which
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// would be unexpected as they should exist on every version of Windows
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// we support), we will bail out since there would be nothing to report.
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if (!load64BitDebugHelp()) {
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assert(false && "These APIs should always be available");
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return;
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}
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#endif
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if (RegisteredUnhandledExceptionFilter) {
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EnterCriticalSection(&CriticalSection);
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return;
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@ -213,20 +342,28 @@ void llvm::sys::RunInterruptHandlers() {
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static LONG WINAPI LLVMUnhandledExceptionFilter(LPEXCEPTION_POINTERS ep) {
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Cleanup();
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#ifdef _WIN64
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// TODO: provide a x64 friendly version of the following
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#else
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// Initialize the STACKFRAME structure.
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STACKFRAME StackFrame;
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STACKFRAME64 StackFrame;
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memset(&StackFrame, 0, sizeof(StackFrame));
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DWORD machineType;
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#if defined(_M_X64)
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machineType = IMAGE_FILE_MACHINE_AMD64;
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StackFrame.AddrPC.Offset = ep->ContextRecord->Rip;
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StackFrame.AddrPC.Mode = AddrModeFlat;
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StackFrame.AddrStack.Offset = ep->ContextRecord->Rsp;
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StackFrame.AddrStack.Mode = AddrModeFlat;
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StackFrame.AddrFrame.Offset = ep->ContextRecord->Rbp;
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StackFrame.AddrFrame.Mode = AddrModeFlat;
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#elif defined(_M_IX86)
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machineType = IMAGE_FILE_MACHINE_I386;
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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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#endif
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HANDLE hProcess = GetCurrentProcess();
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HANDLE hThread = GetCurrentThread();
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@ -236,9 +373,9 @@ static LONG WINAPI LLVMUnhandledExceptionFilter(LPEXCEPTION_POINTERS ep) {
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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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if (!StackWalk64(machineType, hProcess, hThread, &StackFrame,
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ep->ContextRecord, NULL, SymFunctionTableAccess64,
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SymGetModuleBase64, NULL)) {
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break;
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}
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@ -246,54 +383,66 @@ static LONG WINAPI LLVMUnhandledExceptionFilter(LPEXCEPTION_POINTERS ep) {
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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, "%08lX", PC);
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DWORD64 PC = StackFrame.AddrPC.Offset;
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#if defined(_M_X64)
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fprintf(stderr, "0x%016llX", PC);
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#elif defined(_M_IX86)
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fprintf(stderr, "0x%08lX", static_cast<DWORD>(PC));
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#endif
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// Print the parameters. Assume there are four.
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#if defined(_M_X64)
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fprintf(stderr, " (0x%016llX 0x%016llX 0x%016llX 0x%016llX)",
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StackFrame.Params[0],
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StackFrame.Params[1],
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StackFrame.Params[2],
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StackFrame.Params[3]);
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#elif defined(_M_IX86)
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fprintf(stderr, " (0x%08lX 0x%08lX 0x%08lX 0x%08lX)",
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StackFrame.Params[0],
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StackFrame.Params[1], StackFrame.Params[2], StackFrame.Params[3]);
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static_cast<DWORD>(StackFrame.Params[0]),
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static_cast<DWORD>(StackFrame.Params[1]),
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static_cast<DWORD>(StackFrame.Params[2]),
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static_cast<DWORD>(StackFrame.Params[3]));
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#endif
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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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if (!SymGetModuleBase64(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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IMAGEHLP_SYMBOL64 *symbol = reinterpret_cast<IMAGEHLP_SYMBOL64 *>(buffer);
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memset(symbol, 0, sizeof(IMAGEHLP_SYMBOL64));
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symbol->SizeOfStruct = sizeof(IMAGEHLP_SYMBOL64);
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symbol->MaxNameLength = 512 - sizeof(IMAGEHLP_SYMBOL64);
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DWORD dwDisp;
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if (!SymGetSymFromAddr(hProcess, PC, &dwDisp, symbol)) {
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DWORD64 dwDisp;
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if (!SymGetSymFromAddr64(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()+%04lu bytes(s)", symbol->Name, dwDisp);
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fprintf(stderr, ", %s() + 0x%llX 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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IMAGEHLP_LINE64 line;
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DWORD dwLineDisp;
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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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if (SymGetLineFromAddr64(hProcess, PC, &dwLineDisp, &line)) {
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fprintf(stderr, ", %s, line %lu", line.FileName, line.LineNumber);
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if (dwDisp > 0)
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fprintf(stderr, "+%04lu byte(s)", dwDisp);
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if (dwLineDisp > 0)
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fprintf(stderr, " + 0x%lX byte(s)", dwLineDisp);
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}
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fputc('\n', stderr);
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}
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#endif
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if (ExitOnUnhandledExceptions)
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_exit(-3);
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@ -326,3 +475,12 @@ static BOOL WINAPI LLVMConsoleCtrlHandler(DWORD dwCtrlType) {
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LeaveCriticalSection(&CriticalSection);
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return FALSE;
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}
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#if __MINGW32__
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// We turned these warnings off for this file so that MinGW-g++ doesn't
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// complain about the ll format specifiers used. Now we are turning the
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// warnings back on. If MinGW starts to support diagnostic stacks, we can
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// replace this with a pop.
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#pragma GCC diagnostic warning "-Wformat"
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#pragma GCC diagnostic warning "-Wformat-extra-args"
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#endif
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