#include "fastfetch.h" #include "common/mallocHelper.h" #include "common/processing.h" #include "common/io.h" #include "common/windows/unicode.h" #include "common/windows/nt.h" #include #include #include enum { FF_PIPE_BUFSIZ = 8192 }; static void argvToCmdline(char* const argv[], FFstrbuf* result) { // From https://gist.github.com/jin-x/cdd641d98887524b091fb1f82a68717d FF_STRBUF_AUTO_DESTROY temp = ffStrbufCreate(); for (int i = 0; argv[i] != NULL; i++) { ffStrbufSetS(&temp, argv[i]); // Add slash (\) before double quotes (") and duplicate slashes before it for ( uint32_t pos = ffStrbufFirstIndexC(&temp, '"'), cnt; pos != temp.length; pos = ffStrbufNextIndexC(&temp, pos + cnt * 2, '"')) { cnt = 1; while (pos > 0 && temp.chars[pos - 1] == '\\') { ++cnt, --pos; } ffStrbufInsertNC(&temp, pos, cnt, '\\'); } // Add quotes around string if whitespace chars are present (with slash duplicating at the end of string) if (ffStrbufFirstIndexS(&temp, " \t") != temp.length) { uint32_t pos = temp.length; uint32_t cnt = 0; while (pos > 0 && temp.chars[pos - 1] == '\\') { ++cnt, --pos; } if (cnt > 0) { ffStrbufAppendNC(&temp, cnt, '\\'); } ffStrbufPrependC(&temp, '"'); ffStrbufAppendC(&temp, '"'); } // Add space delimiter if (i > 0) { ffStrbufAppendC(result, ' '); } ffStrbufAppend(result, &temp); ffStrbufClear(&temp); } } const char* ffProcessSpawn(char* const argv[], bool useStdErr, FFProcessHandle* outHandle) { const int32_t timeout = instance.config.general.processingTimeout; wchar_t pipeName[32]; static unsigned pidCounter = 0; swprintf(pipeName, ARRAY_SIZE(pipeName), L"\\\\.\\pipe\\FASTFETCH-%u-%u", instance.state.platform.pid, ++pidCounter); FF_AUTO_CLOSE_FD HANDLE hChildPipeRead = CreateNamedPipeW( pipeName, PIPE_ACCESS_INBOUND | FILE_FLAG_FIRST_PIPE_INSTANCE | (timeout < 0 ? 0 : FILE_FLAG_OVERLAPPED), 0, 1, FF_PIPE_BUFSIZ, FF_PIPE_BUFSIZ, 0, NULL); if (hChildPipeRead == INVALID_HANDLE_VALUE) { return "CreateNamedPipeW(L\"\\\\.\\pipe\\FASTFETCH-$(PID)\") failed"; } HANDLE hChildPipeWrite = CreateFileW( pipeName, GENERIC_WRITE, 0, &(SECURITY_ATTRIBUTES) { .nLength = sizeof(SECURITY_ATTRIBUTES), .lpSecurityDescriptor = NULL, .bInheritHandle = TRUE, }, OPEN_EXISTING, 0, NULL); if (hChildPipeWrite == INVALID_HANDLE_VALUE) { return "CreateFileW(L\"\\\\.\\pipe\\FASTFETCH-$(PID)\") failed"; } PROCESS_INFORMATION piProcInfo = {}; STARTUPINFOW siStartInfo = { .cb = sizeof(siStartInfo), .dwFlags = STARTF_USESTDHANDLES, }; if (useStdErr) { siStartInfo.hStdOutput = ffGetNullFD(); siStartInfo.hStdError = hChildPipeWrite; } else { siStartInfo.hStdOutput = hChildPipeWrite; siStartInfo.hStdError = ffGetNullFD(); } FF_AUTO_FREE wchar_t* cmdline = NULL; { FF_STRBUF_AUTO_DESTROY buf = ffStrbufCreate(); argvToCmdline(argv, &buf); uint32_t cmdlineBytes = (buf.length + 1) * sizeof(wchar_t); cmdline = malloc(cmdlineBytes); if (!NT_SUCCESS(RtlUTF8ToUnicodeN(cmdline, cmdlineBytes, NULL, buf.chars, buf.length + 1))) { return "RtlUTF8ToUnicodeN() failed"; } } BOOL success = CreateProcessW( NULL, // application name cmdline, // command line NULL, // process security attributes NULL, // primary thread security attributes TRUE, // handles are inherited 0, // creation flags NULL, // use parent's environment NULL, // use parent's current directory &siStartInfo, // STARTUPINFO pointer &piProcInfo // receives PROCESS_INFORMATION ); NtClose(hChildPipeWrite); if (!success) { if (GetLastError() == ERROR_FILE_NOT_FOUND) { return "command not found"; } return "CreateProcessW() failed"; } NtClose(piProcInfo.hThread); // we don't need the thread handle outHandle->pid = piProcInfo.hProcess; outHandle->pipeRead = hChildPipeRead; hChildPipeRead = INVALID_HANDLE_VALUE; // ownership transferred, don't close it return NULL; } static void terminateChildProcess(HANDLE hProcess, HANDLE hChildPipeRead, HANDLE hReadEvent, IO_STATUS_BLOCK* piosb) { IO_STATUS_BLOCK cancelIosb = {}; if (NT_SUCCESS(NtCancelIoFileEx(hChildPipeRead, piosb, &cancelIosb))) { if (hReadEvent) { NtWaitForSingleObject(hReadEvent, FALSE, &(LARGE_INTEGER) { .QuadPart = -100000 }); // wait for cancellation to complete } } NtTerminateProcess(hProcess, 1); } const char* ffProcessReadOutput(FFProcessHandle* handle, FFstrbuf* buffer) { assert(handle->pipeRead != INVALID_HANDLE_VALUE); assert(handle->pid != INVALID_HANDLE_VALUE); int32_t timeout = instance.config.general.processingTimeout; FF_AUTO_CLOSE_FD HANDLE hProcess = handle->pid; FF_AUTO_CLOSE_FD HANDLE hChildPipeRead = handle->pipeRead; FF_AUTO_CLOSE_FD HANDLE hReadEvent = NULL; handle->pid = INVALID_HANDLE_VALUE; handle->pipeRead = INVALID_HANDLE_VALUE; if (timeout >= 0 && !NT_SUCCESS(NtCreateEvent(&hReadEvent, EVENT_ALL_ACCESS, NULL, SynchronizationEvent, FALSE))) { return "NtCreateEvent() failed"; } char str[FF_PIPE_BUFSIZ]; uint32_t nRead = 0; IO_STATUS_BLOCK iosb = {}; do { NTSTATUS status = NtReadFile( hChildPipeRead, hReadEvent, NULL, NULL, &iosb, str, (ULONG) sizeof(str), NULL, NULL); if (status == STATUS_PENDING) { switch (NtWaitForSingleObject(hReadEvent, FALSE, &(LARGE_INTEGER) { .QuadPart = (int64_t) timeout * -10000 })) { case STATUS_WAIT_0: status = iosb.Status; break; case STATUS_TIMEOUT: { terminateChildProcess(hProcess, hChildPipeRead, hReadEvent, &iosb); return "NtReadFile(hChildPipeRead) timed out"; } default: terminateChildProcess(hProcess, hChildPipeRead, hReadEvent, &iosb); return "NtWaitForSingleObject(hReadEvent) failed"; } } if (status == STATUS_PIPE_BROKEN || status == STATUS_END_OF_FILE) { goto exit; } if (!NT_SUCCESS(status)) { terminateChildProcess(hProcess, hChildPipeRead, NULL, &iosb); return "NtReadFile(hChildPipeRead) failed"; } nRead = (uint32_t) iosb.Information; ffStrbufAppendNS(buffer, nRead, str); } while (nRead > 0); exit: { PROCESS_BASIC_INFORMATION info = {}; ULONG size; if (NT_SUCCESS(NtQueryInformationProcess(hProcess, ProcessBasicInformation, &info, sizeof(info), &size))) { assert(size == sizeof(info)); if (info.ExitStatus != STILL_ACTIVE && info.ExitStatus != 0) { return "Child process exited with an error"; } } else { return "NtQueryInformationProcess(ProcessBasicInformation) failed"; } } return NULL; } bool ffProcessGetInfoWindows(uint32_t pid, uint32_t* ppid, FFstrbuf* pname, FFstrbuf* exe, const char** exeName, FFstrbuf* exePath, bool* gui) { FF_AUTO_CLOSE_FD HANDLE hProcess = NtCurrentProcess(); if (pid != 0) { if (!NT_SUCCESS(NtOpenProcess(&hProcess, PROCESS_QUERY_LIMITED_INFORMATION, &(OBJECT_ATTRIBUTES) { .Length = sizeof(OBJECT_ATTRIBUTES), }, &(CLIENT_ID) { .UniqueProcess = (HANDLE) (uintptr_t) pid }))) { return false; } } if (ppid) { PROCESS_BASIC_INFORMATION info = {}; ULONG size; if (NT_SUCCESS(NtQueryInformationProcess(hProcess, ProcessBasicInformation, &info, sizeof(info), &size))) { assert(size == sizeof(info)); *ppid = (uint32_t) info.InheritedFromUniqueProcessId; } else { return false; } } if (exe) { // TODO: It's possible to query the command line with `NtQueryInformationProcess(60/*ProcessCommandLineInformation*/)` since Windows 8.1 alignas(UNICODE_STRING) uint8_t buffer[4096]; ULONG size; if (NT_SUCCESS(NtQueryInformationProcess(hProcess, ProcessImageFileNameWin32, &buffer, sizeof(buffer), &size))) { UNICODE_STRING* imagePath = (UNICODE_STRING*) buffer; ffStrbufSetNWS(exe, imagePath->Length / sizeof(wchar_t), imagePath->Buffer); if (exePath) { ffStrbufSet(exePath, exe); } if (pname && exeName) { *exeName = exe->chars + ffStrbufLastIndexC(exe, '\\') + 1; ffStrbufSetS(pname, *exeName); } } else { return false; } } if (gui) { SECTION_IMAGE_INFORMATION info = {}; ULONG size; if (NT_SUCCESS(NtQueryInformationProcess(hProcess, ProcessImageInformation, &info, sizeof(info), &size))) { assert(size == sizeof(info)); *gui = info.SubSystemType == IMAGE_SUBSYSTEM_WINDOWS_GUI; } else { return false; } } return true; }