mirror of https://github.com/odrling/Aegisub
491 lines
15 KiB
C++
491 lines
15 KiB
C++
#define WIN32_LEAN_AND_MEAN
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#include <Windows.h>
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#include <CommCtrl.h>
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#include <ShlObj.h>
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#include <DbgHelp.h>
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#include <Psapi.h>
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#include <ShellAPI.h>
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#include <process.h>
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#include <malloc.h>
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#include <string>
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#include <vector>
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#include <time.h>
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#include <stdio.h>
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#include "resource.h"
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std::wstring CanonicalFileName(std::wstring const &fn)
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{
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DWORD bufsize = GetLongPathNameW(fn.c_str(), 0, 0);
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wchar_t *fnbuf = (LPWSTR)malloc(sizeof(*fnbuf)*bufsize);
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bufsize = GetLongPathNameW(fn.c_str(), fnbuf, bufsize);
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auto canfn = std::wstring(fnbuf, fnbuf+bufsize);
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free(fnbuf);
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return canfn;
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}
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std::wstring GetDumpfileFolder()
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{
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std::wstring dumpfile_folder;
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wchar_t appdata_folder[MAX_PATH+1] = {0};
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SHGetFolderPathW(0, CSIDL_APPDATA, 0, SHGFP_TYPE_CURRENT, appdata_folder);
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dumpfile_folder = std::wstring(appdata_folder);
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dumpfile_folder += L"\\Aegisub\\";
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if (CreateDirectoryW(dumpfile_folder.c_str(), 0) == 0 && GetLastError() == ERROR_PATH_NOT_FOUND)
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return std::wstring(); // nowhere to write, somehow there is no %appdata%
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dumpfile_folder += L"dumps\\";
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CreateDirectoryW(dumpfile_folder.c_str(), 0);
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return dumpfile_folder;
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}
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std::wstring IntToWstring(int n)
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{
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wchar_t buf[16];
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swprintf_s(buf, L"%d", n);
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return std::wstring(buf);
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}
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// reinventing the wheel because the C or C++ std libs don't seem to have
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// a function that does something as simple as this.
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// note: atoi() and family don't do this, they don't really report success/failure.
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template <typename UIntType>
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bool try_str2uint(wchar_t *s, UIntType &res)
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{
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res = 0;
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while (*s != 0)
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{
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if (*s >= L'0' && *s <= L'9')
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{
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res *= 10;
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res += (*s - L'0');
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}
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else
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{
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// invalid character
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return false;
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}
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++s;
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}
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return true;
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}
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// ideally identical to the one used by aegisub
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// but otherwise the "base" part is fixed
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// todo: move this to some shared include file
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struct AegisubCrashInfo {
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struct {
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EXCEPTION_POINTERS *exception_pointers;
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DWORD exception_thread_id;
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size_t sz; // size of entire containing struct
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} base;
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wchar_t unhandled_cpp_exception_text[1024];
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};
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// DNM = Dumper Notify Message
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#define DNM_COMPLETED (WM_APP + 0)
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#define DNM_ERROR (WM_APP + 1)
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#define DNM_DUMPSTARTED (WM_APP + 2)
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#define DNM_DUMPFINISHED (WM_APP + 3)
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#define DNM_INFOMSG (WM_APP + 4)
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// Data being passed to the worker thread
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struct DumperThreadData {
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HWND hwndDlg;
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DWORD target_pid;
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INT_PTR target_infoblock;
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};
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// Miniclass to make sure the dialog gets sent a message when the thread ends,
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// regardless of the reason or manner
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struct EnsureDialogNotifiedOfThreadCompletion {
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HWND hwnd;
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EnsureDialogNotifiedOfThreadCompletion(HWND hwnd) : hwnd(hwnd) { }
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~EnsureDialogNotifiedOfThreadCompletion()
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{
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SendMessageW(hwnd, DNM_COMPLETED, 0, 0);
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}
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void error(int code, wchar_t const *message)
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{
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SendMessageW(hwnd, DNM_ERROR, (WPARAM)code, (LPARAM)message);
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}
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};
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struct WindowsHandle {
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HANDLE handle;
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explicit WindowsHandle(HANDLE handle) : handle(handle) { }
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~WindowsHandle() { if (handle != 0) CloseHandle(handle); }
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operator HANDLE() { return handle; }
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};
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// fake IsWow64Process function for old 32 bit systems (NT 5.1 and earlier miss it)
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BOOL WINAPI FakeIsWow64Process(HANDLE hProcess, PBOOL Wow64Process)
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{
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*Wow64Process = FALSE;
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return TRUE;
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}
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// Thread that will actually find and make dumps of Aegisub processes
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void __cdecl dumper_thread(void *data)
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{
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DumperThreadData *dtd = static_cast<DumperThreadData *>(data);
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EnsureDialogNotifiedOfThreadCompletion completion_notify(dtd->hwndDlg);
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std::wstring aegisub_filename_prefix;
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std::vector<DWORD> process_ids;
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BOOL dumper_proc_is_wow64 = FALSE;
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BOOL (WINAPI * IsWow64Process)(HANDLE hProcess, PBOOL Wow64Process);
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{
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HMODULE kernel32 = LoadLibraryW(L"kernel32.dll");
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IsWow64Process = (BOOL(WINAPI*)(HANDLE, PBOOL))GetProcAddress(kernel32, "IsWow64Process");
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if (IsWow64Process == 0) IsWow64Process = FakeIsWow64Process;
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}
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IsWow64Process(GetCurrentProcess(), &dumper_proc_is_wow64);
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if (dtd->target_pid == 0)
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{
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SendMessageW(dtd->hwndDlg, DNM_INFOMSG, 0, (LPARAM)L"Searching for active processes...");
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// Find Aegisub's install dir based on where we are located
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DWORD bufsize = MAX_PATH;
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LPWSTR modfnbuf = (LPWSTR)malloc(sizeof(*modfnbuf)*bufsize);
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DWORD modfnlen = GetModuleFileNameW(0, modfnbuf, bufsize);
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if (modfnlen > bufsize)
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{
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bufsize = modfnlen;
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modfnbuf = (LPWSTR)realloc(modfnbuf, sizeof(*modfnbuf)*bufsize);
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modfnlen = GetModuleFileNameW(0, modfnbuf, bufsize);
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}
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aegisub_filename_prefix = CanonicalFileName(std::wstring(modfnbuf, modfnbuf+modfnlen));
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free(modfnbuf);
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// Chomp it at the last backslash and append "aegisub"
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size_t backslash_pos = aegisub_filename_prefix.rfind(L'\\');
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if (backslash_pos == std::wstring::npos)
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{
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completion_notify.error(2, L"Something is wrong with the installation path");
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return;
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}
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aegisub_filename_prefix.erase(backslash_pos+1);
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// Get pids of all processes
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size_t pidlist_size = 128;
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size_t pidlist_count = 0;
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do {
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process_ids.resize(pidlist_size);
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DWORD bytes_returned = 0;
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if (EnumProcesses(&process_ids[0], sizeof(DWORD)*pidlist_size, &bytes_returned) == 0)
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{
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completion_notify.error(4, L"An error occurred trying to enumerate processes on the system");
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return;
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}
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pidlist_count = bytes_returned / sizeof(DWORD);
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} while (pidlist_count == pidlist_size);
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process_ids.resize(pidlist_count);
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}
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else // target_pid given
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{
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SendMessageW(dtd->hwndDlg, DNM_INFOMSG, 0, (LPARAM)L"Searching for crash target...");
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// just add the single PID to the list, most of the magic happens in the dumping loop
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process_ids.push_back(dtd->target_pid);
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}
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// Figure out where we should be writing dump files to
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std::wstring dumpfile_folder = GetDumpfileFolder();
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if (dumpfile_folder.empty())
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{
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completion_notify.error(3, L"Could not access folder for writing dump files to");
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return;
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}
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// Build a string useful for making filenames more unique
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std::wstring timestring;
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{
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time_t t = time(0);
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tm curtime;
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localtime_s(&curtime, &t);
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wchar_t fmttime[20] = {0};
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swprintf_s(fmttime, L"%4d%02d%02d-%02d%02d%02d",
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curtime.tm_year+1900, curtime.tm_mon, curtime.tm_mday,
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curtime.tm_hour, curtime.tm_min, curtime.tm_sec);
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timestring = std::wstring(fmttime);
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}
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// Check each process for being interesting (i.e. probably an Aegisub process)
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const DWORD mypid = GetCurrentProcessId();
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for (auto ppid = process_ids.begin(); ppid != process_ids.end(); ++ppid)
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{
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if (*ppid == mypid)
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continue;
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WindowsHandle proc(OpenProcess(PROCESS_QUERY_INFORMATION|PROCESS_VM_READ, FALSE, *ppid));
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if (proc == 0)
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continue;
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// Get process name
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std::wstring procfn;
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{
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DWORD bufsize = MAX_PATH;
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LPWSTR modfnbuf = (LPWSTR)malloc(sizeof(*modfnbuf)*bufsize);
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DWORD modfnlen = GetModuleFileNameExW(proc, 0, modfnbuf, bufsize);
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if (modfnlen == 0)
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{
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DWORD err = GetLastError();
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continue;
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}
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if (modfnlen > bufsize)
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{
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bufsize = modfnlen;
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modfnbuf = (LPWSTR)realloc(modfnbuf, sizeof(*modfnbuf)*bufsize);
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modfnlen = GetModuleFileNameExW(proc, 0, modfnbuf, bufsize);
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}
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procfn = CanonicalFileName(std::wstring(modfnbuf, modfnbuf+modfnlen));
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free(modfnbuf);
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}
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// Check it's relevant
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if (dtd->target_pid == 0 && procfn.find(aegisub_filename_prefix) != 0)
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continue;
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// Pick a filename to write
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std::wstring procfn_basename;
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{
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// Chop off everything up to and including last backslash
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size_t pos = procfn.rfind(L'\\');
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if (pos != std::wstring::npos)
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procfn_basename = procfn.substr(pos+1);
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else
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procfn_basename = procfn;
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}
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// Tell about our exploits
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SendMessageW(dtd->hwndDlg, DNM_DUMPSTARTED, (WPARAM)*ppid, (LPARAM)procfn_basename.c_str());
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MINIDUMP_EXCEPTION_INFORMATION exception_information = {0};
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MINIDUMP_USER_STREAM_INFORMATION *user_stream_information = 0;
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if (dtd->target_pid != 0)
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{
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// sanity check: we can't easily work with different-bitness processes
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BOOL target_proc_is_wow64 = FALSE;
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IsWow64Process(proc, &target_proc_is_wow64);
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if (target_proc_is_wow64 != dumper_proc_is_wow64)
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{
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SendMessageW(dtd->hwndDlg, DNM_INFOMSG, 0, (LPARAM)(
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target_proc_is_wow64
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? L"Target process is 32 bit, but crash dumper is 64 bit. Cannot include all information in dump."
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: L"Target process is 64 bit, but crash dumper is 32 bit. Cannot include all infromation in dump."
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));
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goto skip_advanced_dump;
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}
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AegisubCrashInfo crashinfo;
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if (ReadProcessMemory(proc, (LPCVOID)dtd->target_infoblock, &crashinfo, sizeof(crashinfo.base), 0) == FALSE ||
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ReadProcessMemory(proc, (LPCVOID)dtd->target_infoblock, &crashinfo, crashinfo.base.sz, 0) == FALSE)
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{
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SendMessageW(dtd->hwndDlg, DNM_INFOMSG, 0, (LPARAM)L"Failed to read detailed crash information. Proceeding with basic dump.");
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goto skip_advanced_dump;
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}
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// fill in exception_pointers stuff
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exception_information.ThreadId = crashinfo.base.exception_thread_id;
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exception_information.ExceptionPointers = crashinfo.base.exception_pointers;
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exception_information.ClientPointers = TRUE;
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// use complex information if available
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if (sizeof(crashinfo) != crashinfo.base.sz)
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{
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SendMessageW(dtd->hwndDlg, DNM_INFOMSG, 0, (LPARAM)L"Detailed crash information is unsupported version, only using exception information (if present).");
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}
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else
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{
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// design pattern: allocate some memory and don't plan to ever free it
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user_stream_information = new MINIDUMP_USER_STREAM_INFORMATION;
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user_stream_information->UserStreamArray = new MINIDUMP_USER_STREAM[1];
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user_stream_information->UserStreamCount = 1;
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user_stream_information->UserStreamArray[0].Type = CommentStreamW;
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user_stream_information->UserStreamArray[0].Buffer = crashinfo.unhandled_cpp_exception_text;
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user_stream_information->UserStreamArray[0].BufferSize = sizeof(crashinfo.unhandled_cpp_exception_text);
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}
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}
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skip_advanced_dump:
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std::wstring dumpfile_name =
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dumpfile_folder +
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procfn_basename + L'-' +
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IntToWstring(*ppid) + L'-' +
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timestring +
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L".dmp";
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WindowsHandle dumpfile(CreateFileW(dumpfile_name.c_str(), GENERIC_WRITE, 0, 0, CREATE_ALWAYS, FILE_ATTRIBUTE_NORMAL, 0));
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MiniDumpWriteDump(
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proc,
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*ppid,
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dumpfile,
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MINIDUMP_TYPE(MiniDumpWithThreadInfo|MiniDumpIgnoreInaccessibleMemory|MiniDumpWithIndirectlyReferencedMemory),
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exception_information.ExceptionPointers ? &exception_information : 0,
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user_stream_information,
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0);
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SendMessageW(dtd->hwndDlg, DNM_DUMPFINISHED, 0, (LPARAM)dumpfile_name.c_str());
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}
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}
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int numdumps = 0;
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int numerrors = 0;
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void AddStringToListbox(HWND hwndDlg, std::wstring const &str)
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{
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SendDlgItemMessageW(hwndDlg, IDC_LOGLIST, LB_ADDSTRING, 0, (LPARAM)str.c_str());
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}
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INT_PTR CALLBACK dialog_msghandler(HWND hwndDlg, UINT uMsg, WPARAM wParam, LPARAM lParam)
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{
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switch (uMsg)
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{
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case DNM_COMPLETED:
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EnableWindow(GetDlgItem(hwndDlg, IDCLOSE), TRUE);
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if (numerrors > 0)
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AddStringToListbox(hwndDlg, L"Finished with errors.");
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else if (numdumps > 0)
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AddStringToListbox(hwndDlg, std::wstring(L"Completed ") + IntToWstring(numdumps) + (numdumps>1?L" minidumps.":L" minidump."));
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else
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AddStringToListbox(hwndDlg, L"Finished, found no processes to dump.");
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return TRUE;
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case DNM_ERROR:
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numerrors += 1;
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AddStringToListbox(hwndDlg, std::wstring(L"An error occurred: ") + (wchar_t const *)lParam);
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return TRUE;
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case DNM_DUMPSTARTED:
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numdumps += 1;
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AddStringToListbox(hwndDlg, std::wstring(L"Beginning dump of pid ") + IntToWstring(wParam) + L" (" + (wchar_t const *)lParam + L")");
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return TRUE;
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case DNM_DUMPFINISHED:
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AddStringToListbox(hwndDlg, std::wstring(L" Finished dump: ") + (wchar_t const *)lParam);
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return TRUE;
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case DNM_INFOMSG:
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AddStringToListbox(hwndDlg, (wchar_t const *)lParam);
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return true;
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case WM_COMMAND:
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if (LOWORD(wParam) == IDCLOSE && HIWORD(wParam) == BN_CLICKED)
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{
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PostQuitMessage(0);
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return TRUE;
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}
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break;
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case WM_NOTIFY:
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{
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NMHDR &nm = *(NMHDR*)lParam;
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if (nm.idFrom == IDC_DUMPFOLDERLINK && (nm.code == NM_CLICK || nm.code == NM_RETURN))
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{
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std::wstring dumpfile_folder = GetDumpfileFolder();
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ShellExecuteW(hwndDlg, L"open", dumpfile_folder.c_str(), 0, 0, SW_SHOWNORMAL);
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return TRUE;
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}
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}
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break;
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}
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return FALSE;
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}
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#pragma comment(linker,"/manifestdependency:\"type='win32' name='Microsoft.Windows.Common-Controls' ""version='6.0.0.0' processorArchitecture='*' publicKeyToken='6595b64144ccf1df' language='*'\"")
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int WINAPI WinMain(HINSTANCE hInstance, HINSTANCE hPrevInstance, LPSTR lpCmdLine, int nCmdShow)
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{
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CoInitializeEx(0, COINIT_MULTITHREADED);
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INITCOMMONCONTROLSEX iccx = {
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sizeof(INITCOMMONCONTROLSEX),
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ICC_LINK_CLASS|ICC_STANDARD_CLASSES
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};
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if (InitCommonControlsEx(&iccx) == FALSE)
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ExitProcess(1);
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HWND hwndDlg = CreateDialogW(hInstance, MAKEINTRESOURCE(IDD_W32DUMPER), 0, dialog_msghandler);
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if (hwndDlg == 0)
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ExitProcess(2);
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// todo: figure out a commandline format and parse it
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// todo: what about exception data? shared memory?
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// idea: SetUnhandledExceptionFilter() in Aegisub.
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// When it hits, fill in a global storage struct with various useful information including
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// pointer to EXCEPTION_POINTERS struct, then launch w32dumper with arguments:
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// -crash <pid> <address_of_global_struct>
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// Since the size of the struct is known and Aegisub will be OpenProcess()'d with VM_READ
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// privileges anyway, we can ReadProcessMemory() the struct out and parse it for interesting
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// information. The EXCEPTION_POINTERS pointer will be to the address in Aegisub's VM but
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// that's okay, MiniDumpWriteDump() can handle that.
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// Last problem is then to make sure that Aegisub stays in the correct state (with exception
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// pointers valid and all that), maybe just wait for the w32dumper process, then abort? Will
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// other threads continue running then? If so, should they all be suspended?
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//
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// linkdump:
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// SetUnhandledExceptionFilter: <http://msdn.microsoft.com/en-us/library/windows/desktop/ms680634%28v=vs.85%29.aspx>
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// ReadProcessMemory: <http://msdn.microsoft.com/en-us/library/windows/desktop/ms680553%28v=vs.85%29.aspx>
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DumperThreadData dtd = { hwndDlg };
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{
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int argc = 0;
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// this will allocate a bit of memory, it's a waste of time to free it since the allocation
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// disappears anyway when the process exits, and this process generally shouldn't be long-lived
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// and this isn't a recurring allocation either.
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wchar_t **argv = CommandLineToArgvW(GetCommandLineW(), &argc);
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// accept command line args "-crash <pid> <infoblock_address>"
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// infoblock_address is given as decimal, for simplicity
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if (argc >= 4 && wcscmp(argv[1], L"-crash") == 0)
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{
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if (try_str2uint(argv[2], dtd.target_pid) && try_str2uint(argv[3], dtd.target_infoblock))
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{
|
|
// well we got some values, the thread will act on them, no more to do here...
|
|
}
|
|
else
|
|
{
|
|
dtd.target_pid = 0;
|
|
dtd.target_infoblock = 0;
|
|
}
|
|
}
|
|
}
|
|
|
|
uintptr_t dumper_thread_handle = _beginthread(dumper_thread, 0, &dtd);
|
|
ShowWindow(hwndDlg, SW_SHOWNORMAL);
|
|
|
|
MSG msg;
|
|
BOOL gmret;
|
|
while ((gmret = GetMessageW(&msg, 0, 0, 0)) != 0)
|
|
{
|
|
if (gmret == -1)
|
|
{
|
|
ExitProcess(3);
|
|
}
|
|
else if (!IsDialogMessageW(hwndDlg, &msg))
|
|
{
|
|
TranslateMessage(&msg);
|
|
DispatchMessageW(&msg);
|
|
}
|
|
}
|
|
|
|
CoUninitialize();
|
|
|
|
return gmret;
|
|
}
|