520 lines
15 KiB
C
520 lines
15 KiB
C
/******************************************************************************
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Copyright (C) 2015 by Hugh Bailey <obs.jim@gmail.com>
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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******************************************************************************/
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#include <windows.h>
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#include <time.h>
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#include <dbghelp.h>
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#include <shellapi.h>
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#include <tlhelp32.h>
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#include <inttypes.h>
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#include "obs-config.h"
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#include "util/dstr.h"
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#include "util/platform.h"
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#include "util/windows/win-version.h"
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typedef BOOL(WINAPI *ENUMERATELOADEDMODULES64)(
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HANDLE process,
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PENUMLOADED_MODULES_CALLBACK64 enum_loaded_modules_callback,
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PVOID user_context);
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typedef DWORD(WINAPI *SYMSETOPTIONS)(DWORD sym_options);
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typedef BOOL(WINAPI *SYMINITIALIZE)(HANDLE process, PCTSTR user_search_path,
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BOOL invade_process);
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typedef BOOL(WINAPI *SYMCLEANUP)(HANDLE process);
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typedef BOOL(WINAPI *STACKWALK64)(
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DWORD machine_type, HANDLE process, HANDLE thread,
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LPSTACKFRAME64 stack_frame, PVOID context_record,
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PREAD_PROCESS_MEMORY_ROUTINE64 read_memory_routine,
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PFUNCTION_TABLE_ACCESS_ROUTINE64 function_table_access_routine,
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PGET_MODULE_BASE_ROUTINE64 get_module_base_routine,
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PTRANSLATE_ADDRESS_ROUTINE64 translate_address);
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typedef BOOL(WINAPI *SYMREFRESHMODULELIST)(HANDLE process);
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typedef PVOID(WINAPI *SYMFUNCTIONTABLEACCESS64)(HANDLE process,
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DWORD64 addr_base);
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typedef DWORD64(WINAPI *SYMGETMODULEBASE64)(HANDLE process, DWORD64 addr);
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typedef BOOL(WINAPI *SYMFROMADDR)(HANDLE process, DWORD64 address,
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PDWORD64 displacement, PSYMBOL_INFOW symbol);
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typedef BOOL(WINAPI *SYMGETMODULEINFO64)(HANDLE process, DWORD64 addr,
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PIMAGEHLP_MODULE64 module_info);
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typedef DWORD64(WINAPI *SYMLOADMODULE64)(HANDLE process, HANDLE file,
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PSTR image_name, PSTR module_name,
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DWORD64 base_of_dll,
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DWORD size_of_dll);
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typedef BOOL(WINAPI *MINIDUMPWRITEDUMP)(
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HANDLE process, DWORD process_id, HANDLE file, MINIDUMP_TYPE dump_type,
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PMINIDUMP_EXCEPTION_INFORMATION exception_param,
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PMINIDUMP_USER_STREAM_INFORMATION user_stream_param,
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PMINIDUMP_CALLBACK_INFORMATION callback_param);
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typedef HINSTANCE(WINAPI *SHELLEXECUTEA)(HWND hwnd, LPCTSTR operation,
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LPCTSTR file, LPCTSTR parameters,
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LPCTSTR directory, INT show_flags);
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struct stack_trace {
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CONTEXT context;
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DWORD64 instruction_ptr;
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STACKFRAME64 frame;
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DWORD image_type;
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};
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struct exception_handler_data {
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SYMINITIALIZE sym_initialize;
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SYMCLEANUP sym_cleanup;
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SYMSETOPTIONS sym_set_options;
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SYMFUNCTIONTABLEACCESS64 sym_function_table_access64;
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SYMGETMODULEBASE64 sym_get_module_base64;
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SYMFROMADDR sym_from_addr;
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SYMGETMODULEINFO64 sym_get_module_info64;
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SYMREFRESHMODULELIST sym_refresh_module_list;
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STACKWALK64 stack_walk64;
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ENUMERATELOADEDMODULES64 enumerate_loaded_modules64;
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MINIDUMPWRITEDUMP minidump_write_dump;
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HMODULE dbghelp;
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SYMBOL_INFOW *sym_info;
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PEXCEPTION_POINTERS exception;
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struct win_version_info win_version;
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SYSTEMTIME time_info;
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HANDLE process;
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struct stack_trace main_trace;
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struct dstr str;
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struct dstr cpu_info;
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struct dstr module_name;
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struct dstr module_list;
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};
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static inline void
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exception_handler_data_free(struct exception_handler_data *data)
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{
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LocalFree(data->sym_info);
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dstr_free(&data->str);
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dstr_free(&data->cpu_info);
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dstr_free(&data->module_name);
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dstr_free(&data->module_list);
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FreeLibrary(data->dbghelp);
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}
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static inline void *get_proc(HMODULE module, const char *func)
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{
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return (void *)GetProcAddress(module, func);
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}
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#define GET_DBGHELP_IMPORT(target, str) \
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do { \
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data->target = get_proc(data->dbghelp, str); \
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if (!data->target) \
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return false; \
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} while (false)
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static inline bool get_dbghelp_imports(struct exception_handler_data *data)
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{
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data->dbghelp = LoadLibraryW(L"DbgHelp");
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if (!data->dbghelp)
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return false;
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GET_DBGHELP_IMPORT(sym_initialize, "SymInitialize");
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GET_DBGHELP_IMPORT(sym_cleanup, "SymCleanup");
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GET_DBGHELP_IMPORT(sym_set_options, "SymSetOptions");
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GET_DBGHELP_IMPORT(sym_function_table_access64,
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"SymFunctionTableAccess64");
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GET_DBGHELP_IMPORT(sym_get_module_base64, "SymGetModuleBase64");
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GET_DBGHELP_IMPORT(sym_from_addr, "SymFromAddrW");
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GET_DBGHELP_IMPORT(sym_get_module_info64, "SymGetModuleInfo64");
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GET_DBGHELP_IMPORT(sym_refresh_module_list, "SymRefreshModuleList");
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GET_DBGHELP_IMPORT(stack_walk64, "StackWalk64");
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GET_DBGHELP_IMPORT(enumerate_loaded_modules64,
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"EnumerateLoadedModulesW64");
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GET_DBGHELP_IMPORT(minidump_write_dump, "MiniDumpWriteDump");
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return true;
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}
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static inline void init_instruction_data(struct stack_trace *trace)
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{
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#ifdef _WIN64
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trace->instruction_ptr = trace->context.Rip;
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trace->frame.AddrPC.Offset = trace->instruction_ptr;
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trace->frame.AddrFrame.Offset = trace->context.Rbp;
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trace->frame.AddrStack.Offset = trace->context.Rsp;
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trace->image_type = IMAGE_FILE_MACHINE_AMD64;
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#else
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trace->instruction_ptr = trace->context.Eip;
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trace->frame.AddrPC.Offset = trace->instruction_ptr;
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trace->frame.AddrFrame.Offset = trace->context.Ebp;
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trace->frame.AddrStack.Offset = trace->context.Esp;
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trace->image_type = IMAGE_FILE_MACHINE_I386;
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#endif
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trace->frame.AddrFrame.Mode = AddrModeFlat;
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trace->frame.AddrPC.Mode = AddrModeFlat;
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trace->frame.AddrStack.Mode = AddrModeFlat;
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}
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extern bool sym_initialize_called;
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static inline void init_sym_info(struct exception_handler_data *data)
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{
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data->sym_set_options(SYMOPT_UNDNAME | SYMOPT_FAIL_CRITICAL_ERRORS |
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SYMOPT_LOAD_ANYTHING);
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if (!sym_initialize_called)
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data->sym_initialize(data->process, NULL, true);
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else
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data->sym_refresh_module_list(data->process);
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data->sym_info = LocalAlloc(LPTR, sizeof(*data->sym_info) + 256);
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data->sym_info->SizeOfStruct = sizeof(SYMBOL_INFO);
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data->sym_info->MaxNameLen = 256;
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}
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static inline void init_version_info(struct exception_handler_data *data)
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{
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get_win_ver(&data->win_version);
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}
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#define PROCESSOR_REG_KEY L"HARDWARE\\DESCRIPTION\\System\\CentralProcessor\\0"
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#define CPU_ERROR "<unable to query>"
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static inline void init_cpu_info(struct exception_handler_data *data)
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{
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HKEY key;
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LSTATUS status;
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status = RegOpenKeyW(HKEY_LOCAL_MACHINE, PROCESSOR_REG_KEY, &key);
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if (status == ERROR_SUCCESS) {
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wchar_t str[1024];
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DWORD size = 1024;
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status = RegQueryValueExW(key, L"ProcessorNameString", NULL,
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NULL, (LPBYTE)str, &size);
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if (status == ERROR_SUCCESS)
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dstr_from_wcs(&data->cpu_info, str);
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else
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dstr_copy(&data->cpu_info, CPU_ERROR);
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} else {
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dstr_copy(&data->cpu_info, CPU_ERROR);
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}
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}
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static BOOL CALLBACK enum_all_modules(PCTSTR module_name, DWORD64 module_base,
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ULONG module_size,
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struct exception_handler_data *data)
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{
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char name_utf8[MAX_PATH];
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os_wcs_to_utf8(module_name, 0, name_utf8, MAX_PATH);
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if (data->main_trace.instruction_ptr >= module_base &&
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data->main_trace.instruction_ptr < module_base + module_size) {
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dstr_copy(&data->module_name, name_utf8);
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strlwr(data->module_name.array);
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}
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#ifdef _WIN64
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dstr_catf(&data->module_list, "%016" PRIX64 "-%016" PRIX64 " %s\r\n",
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module_base, module_base + module_size, name_utf8);
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#else
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dstr_catf(&data->module_list, "%08" PRIX64 "-%08" PRIX64 " %s\r\n",
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module_base, module_base + module_size, name_utf8);
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#endif
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return true;
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}
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static inline void init_module_info(struct exception_handler_data *data)
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{
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data->enumerate_loaded_modules64(
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data->process, (PENUMLOADED_MODULES_CALLBACK64)enum_all_modules,
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data);
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}
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extern const char *get_win_release_id();
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static inline void write_header(struct exception_handler_data *data)
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{
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char date_time[80];
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time_t now = time(0);
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struct tm ts;
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ts = *localtime(&now);
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strftime(date_time, sizeof(date_time), "%Y-%m-%d, %X", &ts);
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const char *obs_bitness;
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if (sizeof(void *) == 8)
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obs_bitness = "64";
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else
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obs_bitness = "32";
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const char *release_id = get_win_release_id();
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dstr_catf(&data->str,
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"Unhandled exception: %x\r\n"
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"Date/Time: %s\r\n"
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"Fault address: %" PRIX64 " (%s)\r\n"
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"libobs version: " OBS_VERSION " (%s-bit)\r\n"
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"Windows version: %d.%d build %d (release: %s; revision: %d; "
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"%s-bit)\r\n"
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"CPU: %s\r\n\r\n",
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data->exception->ExceptionRecord->ExceptionCode, date_time,
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data->main_trace.instruction_ptr, data->module_name.array,
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obs_bitness, data->win_version.major, data->win_version.minor,
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data->win_version.build, release_id, data->win_version.revis,
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is_64_bit_windows() ? "64" : "32", data->cpu_info.array);
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}
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struct module_info {
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DWORD64 addr;
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char name_utf8[MAX_PATH];
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};
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static BOOL CALLBACK enum_module(PCTSTR module_name, DWORD64 module_base,
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ULONG module_size, struct module_info *info)
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{
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if (info->addr >= module_base &&
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info->addr < module_base + module_size) {
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os_wcs_to_utf8(module_name, 0, info->name_utf8, MAX_PATH);
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strlwr(info->name_utf8);
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return false;
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}
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return true;
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}
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static inline void get_module_name(struct exception_handler_data *data,
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struct module_info *info)
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{
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data->enumerate_loaded_modules64(
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data->process, (PENUMLOADED_MODULES_CALLBACK64)enum_module,
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info);
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}
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static inline bool walk_stack(struct exception_handler_data *data,
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HANDLE thread, struct stack_trace *trace)
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{
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struct module_info module_info = {0};
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DWORD64 func_offset;
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char sym_name[256];
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char *p;
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bool success = data->stack_walk64(trace->image_type, data->process,
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thread, &trace->frame,
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&trace->context, NULL,
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data->sym_function_table_access64,
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data->sym_get_module_base64, NULL);
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if (!success)
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return false;
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module_info.addr = trace->frame.AddrPC.Offset;
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get_module_name(data, &module_info);
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if (!!module_info.name_utf8[0]) {
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p = strrchr(module_info.name_utf8, '\\');
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p = p ? (p + 1) : module_info.name_utf8;
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} else {
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strcpy(module_info.name_utf8, "<unknown>");
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p = module_info.name_utf8;
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}
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success = !!data->sym_from_addr(data->process,
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trace->frame.AddrPC.Offset,
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&func_offset, data->sym_info);
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if (success)
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os_wcs_to_utf8(data->sym_info->Name, 0, sym_name, 256);
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#ifdef _WIN64
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#define SUCCESS_FORMAT \
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"%016I64X %016I64X %016I64X %016I64X " \
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"%016I64X %016I64X %s!%s+0x%I64x\r\n"
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#define FAIL_FORMAT \
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"%016I64X %016I64X %016I64X %016I64X " \
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"%016I64X %016I64X %s!0x%I64x\r\n"
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#else
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#define SUCCESS_FORMAT \
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"%08.8I64X %08.8I64X %08.8I64X %08.8I64X " \
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"%08.8I64X %08.8I64X %s!%s+0x%I64x\r\n"
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#define FAIL_FORMAT \
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"%08.8I64X %08.8I64X %08.8I64X %08.8I64X " \
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"%08.8I64X %08.8I64X %s!0x%I64x\r\n"
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trace->frame.AddrStack.Offset &= 0xFFFFFFFFF;
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trace->frame.AddrPC.Offset &= 0xFFFFFFFFF;
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trace->frame.Params[0] &= 0xFFFFFFFF;
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trace->frame.Params[1] &= 0xFFFFFFFF;
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trace->frame.Params[2] &= 0xFFFFFFFF;
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trace->frame.Params[3] &= 0xFFFFFFFF;
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#endif
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if (success && (data->sym_info->Flags & SYMFLAG_EXPORT) == 0) {
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dstr_catf(&data->str, SUCCESS_FORMAT,
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trace->frame.AddrStack.Offset,
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trace->frame.AddrPC.Offset, trace->frame.Params[0],
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trace->frame.Params[1], trace->frame.Params[2],
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trace->frame.Params[3], p, sym_name, func_offset);
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} else {
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dstr_catf(&data->str, FAIL_FORMAT,
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trace->frame.AddrStack.Offset,
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trace->frame.AddrPC.Offset, trace->frame.Params[0],
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trace->frame.Params[1], trace->frame.Params[2],
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trace->frame.Params[3], p,
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trace->frame.AddrPC.Offset);
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}
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return true;
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}
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#ifdef _WIN64
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#define TRACE_TOP \
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"Stack EIP Arg0 " \
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"Arg1 Arg2 Arg3 Address\r\n"
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#else
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#define TRACE_TOP \
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"Stack EIP Arg0 " \
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"Arg1 Arg2 Arg3 Address\r\n"
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#endif
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static inline void write_thread_trace(struct exception_handler_data *data,
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THREADENTRY32 *entry, bool first_thread)
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{
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bool crash_thread = entry->th32ThreadID == GetCurrentThreadId();
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struct stack_trace trace = {0};
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struct stack_trace *ptrace;
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HANDLE thread;
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if (first_thread != crash_thread)
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return;
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if (entry->th32OwnerProcessID != GetCurrentProcessId())
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return;
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thread = OpenThread(THREAD_ALL_ACCESS, false, entry->th32ThreadID);
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if (!thread)
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return;
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trace.context.ContextFlags = CONTEXT_ALL;
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GetThreadContext(thread, &trace.context);
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init_instruction_data(&trace);
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dstr_catf(&data->str, "\r\nThread %lX%s\r\n" TRACE_TOP,
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entry->th32ThreadID, crash_thread ? " (Crashed)" : "");
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ptrace = crash_thread ? &data->main_trace : &trace;
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while (walk_stack(data, thread, ptrace))
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;
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CloseHandle(thread);
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}
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static inline void write_thread_traces(struct exception_handler_data *data)
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{
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THREADENTRY32 entry = {0};
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HANDLE snapshot = CreateToolhelp32Snapshot(TH32CS_SNAPTHREAD,
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GetCurrentProcessId());
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bool success;
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if (snapshot == INVALID_HANDLE_VALUE)
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return;
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entry.dwSize = sizeof(entry);
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success = !!Thread32First(snapshot, &entry);
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while (success) {
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write_thread_trace(data, &entry, true);
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success = !!Thread32Next(snapshot, &entry);
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}
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success = !!Thread32First(snapshot, &entry);
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while (success) {
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write_thread_trace(data, &entry, false);
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success = !!Thread32Next(snapshot, &entry);
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}
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CloseHandle(snapshot);
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}
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static inline void write_module_list(struct exception_handler_data *data)
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{
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dstr_cat(&data->str, "\r\nLoaded modules:\r\n");
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#ifdef _WIN64
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dstr_cat(&data->str, "Base Address Module\r\n");
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#else
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dstr_cat(&data->str, "Base Address Module\r\n");
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#endif
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dstr_cat_dstr(&data->str, &data->module_list);
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}
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/* ------------------------------------------------------------------------- */
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static inline void handle_exception(struct exception_handler_data *data,
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PEXCEPTION_POINTERS exception)
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{
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if (!get_dbghelp_imports(data))
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return;
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data->exception = exception;
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data->process = GetCurrentProcess();
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data->main_trace.context = *exception->ContextRecord;
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GetSystemTime(&data->time_info);
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init_sym_info(data);
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init_version_info(data);
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init_cpu_info(data);
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init_instruction_data(&data->main_trace);
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init_module_info(data);
|
|
|
|
write_header(data);
|
|
write_thread_traces(data);
|
|
write_module_list(data);
|
|
}
|
|
|
|
static LONG CALLBACK exception_handler(PEXCEPTION_POINTERS exception)
|
|
{
|
|
struct exception_handler_data data = {0};
|
|
static bool inside_handler = false;
|
|
|
|
/* don't use if a debugger is present */
|
|
if (IsDebuggerPresent())
|
|
return EXCEPTION_CONTINUE_SEARCH;
|
|
|
|
if (inside_handler)
|
|
return EXCEPTION_CONTINUE_SEARCH;
|
|
|
|
inside_handler = true;
|
|
|
|
handle_exception(&data, exception);
|
|
bcrash(data.str.array);
|
|
exception_handler_data_free(&data);
|
|
|
|
inside_handler = false;
|
|
|
|
return EXCEPTION_CONTINUE_SEARCH;
|
|
}
|
|
|
|
void initialize_crash_handler(void)
|
|
{
|
|
static bool initialized = false;
|
|
|
|
if (!initialized) {
|
|
SetUnhandledExceptionFilter(exception_handler);
|
|
initialized = true;
|
|
}
|
|
}
|