1//===- Win32/Process.cpp - Win32 Process Implementation ------- -*- C++ -*-===// 2// 3// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4// See https://llvm.org/LICENSE.txt for license information. 5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6// 7//===----------------------------------------------------------------------===// 8// 9// This file provides the Win32 specific implementation of the Process class. 10// 11//===----------------------------------------------------------------------===// 12 13#include "llvm/Support/Allocator.h" 14#include "llvm/Support/CommandLine.h" 15#include "llvm/Support/ConvertUTF.h" 16#include "llvm/Support/ErrorHandling.h" 17#include "llvm/Support/StringSaver.h" 18#include "llvm/Support/WindowsError.h" 19#include <malloc.h> 20#include <optional> 21 22// The Windows.h header must be after LLVM and standard headers. 23#include "llvm/Support/Windows/WindowsSupport.h" 24 25#include <direct.h> 26#include <io.h> 27#include <psapi.h> 28#include <shellapi.h> 29 30#if !defined(__MINGW32__) 31#pragma comment(lib, "psapi.lib") 32#pragma comment(lib, "shell32.lib") 33#endif 34 35//===----------------------------------------------------------------------===// 36//=== WARNING: Implementation here must contain only Win32 specific code 37//=== and must not be UNIX code 38//===----------------------------------------------------------------------===// 39 40using namespace llvm; 41 42Process::Pid Process::getProcessId() { 43 static_assert(sizeof(Pid) >= sizeof(DWORD), 44 "Process::Pid should be big enough to store DWORD"); 45 return Pid(::GetCurrentProcessId()); 46} 47 48// This function retrieves the page size using GetNativeSystemInfo() and is 49// present solely so it can be called once to initialize the self_process member 50// below. 51static unsigned computePageSize() { 52 // GetNativeSystemInfo() provides the physical page size which may differ 53 // from GetSystemInfo() in 32-bit applications running under WOW64. 54 SYSTEM_INFO info; 55 GetNativeSystemInfo(&info); 56 // FIXME: FileOffset in MapViewOfFile() should be aligned to not dwPageSize, 57 // but dwAllocationGranularity. 58 return static_cast<unsigned>(info.dwPageSize); 59} 60 61Expected<unsigned> Process::getPageSize() { 62 static unsigned Ret = computePageSize(); 63 return Ret; 64} 65 66size_t Process::GetMallocUsage() { 67 _HEAPINFO hinfo; 68 hinfo._pentry = NULL; 69 70 size_t size = 0; 71 72 while (_heapwalk(&hinfo) == _HEAPOK) 73 size += hinfo._size; 74 75 return size; 76} 77 78void Process::GetTimeUsage(TimePoint<> &elapsed, 79 std::chrono::nanoseconds &user_time, 80 std::chrono::nanoseconds &sys_time) { 81 elapsed = std::chrono::system_clock::now(); 82 ; 83 84 FILETIME ProcCreate, ProcExit, KernelTime, UserTime; 85 if (GetProcessTimes(GetCurrentProcess(), &ProcCreate, &ProcExit, &KernelTime, 86 &UserTime) == 0) 87 return; 88 89 user_time = toDuration(UserTime); 90 sys_time = toDuration(KernelTime); 91} 92 93// Some LLVM programs such as bugpoint produce core files as a normal part of 94// their operation. To prevent the disk from filling up, this configuration 95// item does what's necessary to prevent their generation. 96void Process::PreventCoreFiles() { 97 // Windows does have the concept of core files, called minidumps. However, 98 // disabling minidumps for a particular application extends past the lifetime 99 // of that application, which is the incorrect behavior for this API. 100 // Additionally, the APIs require elevated privileges to disable and re- 101 // enable minidumps, which makes this untenable. For more information, see 102 // WerAddExcludedApplication and WerRemoveExcludedApplication (Vista and 103 // later). 104 // 105 // Windows also has modal pop-up message boxes. As this method is used by 106 // bugpoint, preventing these pop-ups is additionally important. 107 SetErrorMode(SEM_FAILCRITICALERRORS | SEM_NOGPFAULTERRORBOX | 108 SEM_NOOPENFILEERRORBOX); 109 110 coreFilesPrevented = true; 111} 112 113/// Returns the environment variable \arg Name's value as a string encoded in 114/// UTF-8. \arg Name is assumed to be in UTF-8 encoding. 115std::optional<std::string> Process::GetEnv(StringRef Name) { 116 // Convert the argument to UTF-16 to pass it to _wgetenv(). 117 SmallVector<wchar_t, 128> NameUTF16; 118 if (windows::UTF8ToUTF16(Name, NameUTF16)) 119 return std::nullopt; 120 121 // Environment variable can be encoded in non-UTF8 encoding, and there's no 122 // way to know what the encoding is. The only reliable way to look up 123 // multibyte environment variable is to use GetEnvironmentVariableW(). 124 SmallVector<wchar_t, MAX_PATH> Buf; 125 size_t Size = MAX_PATH; 126 do { 127 Buf.resize_for_overwrite(Size); 128 SetLastError(NO_ERROR); 129 Size = GetEnvironmentVariableW(NameUTF16.data(), Buf.data(), Buf.size()); 130 if (Size == 0 && GetLastError() == ERROR_ENVVAR_NOT_FOUND) 131 return std::nullopt; 132 133 // Try again with larger buffer. 134 } while (Size > Buf.size()); 135 Buf.truncate(Size); 136 137 // Convert the result from UTF-16 to UTF-8. 138 SmallVector<char, MAX_PATH> Res; 139 if (windows::UTF16ToUTF8(Buf.data(), Size, Res)) 140 return std::nullopt; 141 return std::string(Res.data()); 142} 143 144/// Perform wildcard expansion of Arg, or just push it into Args if it doesn't 145/// have wildcards or doesn't match any files. 146static std::error_code WildcardExpand(StringRef Arg, 147 SmallVectorImpl<const char *> &Args, 148 StringSaver &Saver) { 149 std::error_code EC; 150 151 // Don't expand Arg if it does not contain any wildcard characters. This is 152 // the common case. Also don't wildcard expand /?. Always treat it as an 153 // option. Paths that start with \\?\ are absolute paths, and aren't 154 // expected to be used with wildcard expressions. 155 if (Arg.find_first_of("*?") == StringRef::npos || Arg == "/?" || 156 Arg == "-?" || Arg.starts_with("\\\\?\\")) { 157 Args.push_back(Arg.data()); 158 return EC; 159 } 160 161 // Convert back to UTF-16 so we can call FindFirstFileW. 162 SmallVector<wchar_t, MAX_PATH> ArgW; 163 EC = windows::UTF8ToUTF16(Arg, ArgW); 164 if (EC) 165 return EC; 166 167 // Search for matching files. 168 // FIXME: This assumes the wildcard is only in the file name and not in the 169 // directory portion of the file path. For example, it doesn't handle 170 // "*\foo.c" nor "s?c\bar.cpp". 171 WIN32_FIND_DATAW FileData; 172 HANDLE FindHandle = FindFirstFileW(ArgW.data(), &FileData); 173 if (FindHandle == INVALID_HANDLE_VALUE) { 174 Args.push_back(Arg.data()); 175 return EC; 176 } 177 178 // Extract any directory part of the argument. 179 SmallString<MAX_PATH> Dir = Arg; 180 sys::path::remove_filename(Dir); 181 const int DirSize = Dir.size(); 182 183 do { 184 SmallString<MAX_PATH> FileName; 185 EC = windows::UTF16ToUTF8(FileData.cFileName, wcslen(FileData.cFileName), 186 FileName); 187 if (EC) 188 break; 189 190 // Append FileName to Dir, and remove it afterwards. 191 llvm::sys::path::append(Dir, FileName); 192 Args.push_back(Saver.save(Dir.str()).data()); 193 Dir.resize(DirSize); 194 } while (FindNextFileW(FindHandle, &FileData)); 195 196 FindClose(FindHandle); 197 return EC; 198} 199 200static std::error_code GetExecutableName(SmallVectorImpl<char> &Filename) { 201 // The first argument may contain just the name of the executable (e.g., 202 // "clang") rather than the full path, so swap it with the full path. 203 wchar_t ModuleName[MAX_PATH]; 204 size_t Length = ::GetModuleFileNameW(NULL, ModuleName, MAX_PATH); 205 if (Length == 0 || Length == MAX_PATH) { 206 return mapWindowsError(GetLastError()); 207 } 208 209 // If the first argument is a shortened (8.3) name (which is possible even 210 // if we got the module name), the driver will have trouble distinguishing it 211 // (e.g., clang.exe v. clang++.exe), so expand it now. 212 Length = GetLongPathNameW(ModuleName, ModuleName, MAX_PATH); 213 if (Length == 0) 214 return mapWindowsError(GetLastError()); 215 if (Length > MAX_PATH) { 216 // We're not going to try to deal with paths longer than MAX_PATH, so we'll 217 // treat this as an error. GetLastError() returns ERROR_SUCCESS, which 218 // isn't useful, so we'll hardcode an appropriate error value. 219 return mapWindowsError(ERROR_INSUFFICIENT_BUFFER); 220 } 221 222 std::error_code EC = windows::UTF16ToUTF8(ModuleName, Length, Filename); 223 if (EC) 224 return EC; 225 226 // Make a copy of the filename since assign makes the StringRef invalid. 227 std::string Base = sys::path::filename(Filename.data()).str(); 228 Filename.assign(Base.begin(), Base.end()); 229 return std::error_code(); 230} 231 232std::error_code 233windows::GetCommandLineArguments(SmallVectorImpl<const char *> &Args, 234 BumpPtrAllocator &Alloc) { 235 const wchar_t *CmdW = GetCommandLineW(); 236 assert(CmdW); 237 std::error_code EC; 238 SmallString<MAX_PATH> Cmd; 239 EC = windows::UTF16ToUTF8(CmdW, wcslen(CmdW), Cmd); 240 if (EC) 241 return EC; 242 243 SmallVector<const char *, 20> TmpArgs; 244 StringSaver Saver(Alloc); 245 cl::TokenizeWindowsCommandLineFull(Cmd, Saver, TmpArgs, /*MarkEOLs=*/false); 246 247 for (const char *Arg : TmpArgs) { 248 EC = WildcardExpand(Arg, Args, Saver); 249 if (EC) 250 return EC; 251 } 252 253 if (Args.size() == 0) 254 return std::make_error_code(std::errc::invalid_argument); 255 256 SmallVector<char, MAX_PATH> Arg0(Args[0], Args[0] + strlen(Args[0])); 257 SmallVector<char, MAX_PATH> Filename; 258 sys::path::remove_filename(Arg0); 259 EC = GetExecutableName(Filename); 260 if (EC) 261 return EC; 262 sys::path::make_preferred(Arg0); 263 sys::path::append(Arg0, Filename); 264 Args[0] = Saver.save(Arg0).data(); 265 return std::error_code(); 266} 267 268std::error_code Process::FixupStandardFileDescriptors() { 269 return std::error_code(); 270} 271 272std::error_code Process::SafelyCloseFileDescriptor(int FD) { 273 if (::close(FD) < 0) 274 return errnoAsErrorCode(); 275 return std::error_code(); 276} 277 278bool Process::StandardInIsUserInput() { return FileDescriptorIsDisplayed(0); } 279 280bool Process::StandardOutIsDisplayed() { return FileDescriptorIsDisplayed(1); } 281 282bool Process::StandardErrIsDisplayed() { return FileDescriptorIsDisplayed(2); } 283 284bool Process::FileDescriptorIsDisplayed(int fd) { 285 DWORD Mode; // Unused 286 return (GetConsoleMode((HANDLE)_get_osfhandle(fd), &Mode) != 0); 287} 288 289unsigned Process::StandardOutColumns() { 290 unsigned Columns = 0; 291 CONSOLE_SCREEN_BUFFER_INFO csbi; 292 if (GetConsoleScreenBufferInfo(GetStdHandle(STD_OUTPUT_HANDLE), &csbi)) 293 Columns = csbi.dwSize.X; 294 return Columns; 295} 296 297unsigned Process::StandardErrColumns() { 298 unsigned Columns = 0; 299 CONSOLE_SCREEN_BUFFER_INFO csbi; 300 if (GetConsoleScreenBufferInfo(GetStdHandle(STD_ERROR_HANDLE), &csbi)) 301 Columns = csbi.dwSize.X; 302 return Columns; 303} 304 305// The terminal always has colors. 306bool Process::FileDescriptorHasColors(int fd) { 307 return FileDescriptorIsDisplayed(fd); 308} 309 310bool Process::StandardOutHasColors() { return FileDescriptorHasColors(1); } 311 312bool Process::StandardErrHasColors() { return FileDescriptorHasColors(2); } 313 314static bool UseANSI = false; 315void Process::UseANSIEscapeCodes(bool enable) { 316#if defined(ENABLE_VIRTUAL_TERMINAL_PROCESSING) 317 if (enable) { 318 HANDLE Console = GetStdHandle(STD_OUTPUT_HANDLE); 319 DWORD Mode; 320 GetConsoleMode(Console, &Mode); 321 Mode |= ENABLE_VIRTUAL_TERMINAL_PROCESSING; 322 SetConsoleMode(Console, Mode); 323 } 324#endif 325 UseANSI = enable; 326} 327 328namespace { 329class DefaultColors { 330private: 331 WORD defaultColor; 332 333public: 334 DefaultColors() : defaultColor(GetCurrentColor()) {} 335 static unsigned GetCurrentColor() { 336 CONSOLE_SCREEN_BUFFER_INFO csbi; 337 if (GetConsoleScreenBufferInfo(GetStdHandle(STD_OUTPUT_HANDLE), &csbi)) 338 return csbi.wAttributes; 339 return 0; 340 } 341 WORD operator()() const { return defaultColor; } 342}; 343 344DefaultColors defaultColors; 345 346WORD fg_color(WORD color) { 347 return color & (FOREGROUND_BLUE | FOREGROUND_GREEN | FOREGROUND_INTENSITY | 348 FOREGROUND_RED); 349} 350 351WORD bg_color(WORD color) { 352 return color & (BACKGROUND_BLUE | BACKGROUND_GREEN | BACKGROUND_INTENSITY | 353 BACKGROUND_RED); 354} 355} // namespace 356 357bool Process::ColorNeedsFlush() { return !UseANSI; } 358 359const char *Process::OutputBold(bool bg) { 360 if (UseANSI) 361 return "\033[1m"; 362 363 WORD colors = DefaultColors::GetCurrentColor(); 364 if (bg) 365 colors |= BACKGROUND_INTENSITY; 366 else 367 colors |= FOREGROUND_INTENSITY; 368 SetConsoleTextAttribute(GetStdHandle(STD_OUTPUT_HANDLE), colors); 369 return 0; 370} 371 372const char *Process::OutputColor(char code, bool bold, bool bg) { 373 if (UseANSI) 374 return colorcodes[bg ? 1 : 0][bold ? 1 : 0][code & 15]; 375 376 WORD current = DefaultColors::GetCurrentColor(); 377 WORD colors; 378 if (bg) { 379 colors = ((code & 1) ? BACKGROUND_RED : 0) | 380 ((code & 2) ? BACKGROUND_GREEN : 0) | 381 ((code & 4) ? BACKGROUND_BLUE : 0); 382 if (bold) 383 colors |= BACKGROUND_INTENSITY; 384 colors |= fg_color(current); 385 } else { 386 colors = ((code & 1) ? FOREGROUND_RED : 0) | 387 ((code & 2) ? FOREGROUND_GREEN : 0) | 388 ((code & 4) ? FOREGROUND_BLUE : 0); 389 if (bold) 390 colors |= FOREGROUND_INTENSITY; 391 colors |= bg_color(current); 392 } 393 SetConsoleTextAttribute(GetStdHandle(STD_OUTPUT_HANDLE), colors); 394 return 0; 395} 396 397static WORD GetConsoleTextAttribute(HANDLE hConsoleOutput) { 398 CONSOLE_SCREEN_BUFFER_INFO info; 399 GetConsoleScreenBufferInfo(GetStdHandle(STD_OUTPUT_HANDLE), &info); 400 return info.wAttributes; 401} 402 403const char *Process::OutputReverse() { 404 if (UseANSI) 405 return "\033[7m"; 406 407 const WORD attributes = 408 GetConsoleTextAttribute(GetStdHandle(STD_OUTPUT_HANDLE)); 409 410 const WORD foreground_mask = FOREGROUND_BLUE | FOREGROUND_GREEN | 411 FOREGROUND_RED | FOREGROUND_INTENSITY; 412 const WORD background_mask = BACKGROUND_BLUE | BACKGROUND_GREEN | 413 BACKGROUND_RED | BACKGROUND_INTENSITY; 414 const WORD color_mask = foreground_mask | background_mask; 415 416 WORD new_attributes = 417 ((attributes & FOREGROUND_BLUE) ? BACKGROUND_BLUE : 0) | 418 ((attributes & FOREGROUND_GREEN) ? BACKGROUND_GREEN : 0) | 419 ((attributes & FOREGROUND_RED) ? BACKGROUND_RED : 0) | 420 ((attributes & FOREGROUND_INTENSITY) ? BACKGROUND_INTENSITY : 0) | 421 ((attributes & BACKGROUND_BLUE) ? FOREGROUND_BLUE : 0) | 422 ((attributes & BACKGROUND_GREEN) ? FOREGROUND_GREEN : 0) | 423 ((attributes & BACKGROUND_RED) ? FOREGROUND_RED : 0) | 424 ((attributes & BACKGROUND_INTENSITY) ? FOREGROUND_INTENSITY : 0) | 0; 425 new_attributes = (attributes & ~color_mask) | (new_attributes & color_mask); 426 427 SetConsoleTextAttribute(GetStdHandle(STD_OUTPUT_HANDLE), new_attributes); 428 return 0; 429} 430 431const char *Process::ResetColor() { 432 if (UseANSI) 433 return "\033[0m"; 434 SetConsoleTextAttribute(GetStdHandle(STD_OUTPUT_HANDLE), defaultColors()); 435 return 0; 436} 437 438static unsigned GetRandomNumberSeed() { 439 // Generate a random number seed from the millisecond-resolution Windows 440 // system clock and the current process id. 441 FILETIME Time; 442 GetSystemTimeAsFileTime(&Time); 443 DWORD Pid = GetCurrentProcessId(); 444 return hash_combine(Time.dwHighDateTime, Time.dwLowDateTime, Pid); 445} 446 447static unsigned GetPseudoRandomNumber() { 448 // Arrange to call srand once when this function is first used, and 449 // otherwise (if GetRandomNumber always succeeds in using 450 // CryptGenRandom) don't bother at all. 451 static int x = (static_cast<void>(::srand(GetRandomNumberSeed())), 0); 452 (void)x; 453 return ::rand(); 454} 455 456unsigned Process::GetRandomNumber() { 457 // Try to use CryptGenRandom. 458 HCRYPTPROV HCPC; 459 if (::CryptAcquireContextW(&HCPC, NULL, NULL, PROV_RSA_FULL, 460 CRYPT_VERIFYCONTEXT)) { 461 ScopedCryptContext CryptoProvider(HCPC); 462 unsigned Ret; 463 if (::CryptGenRandom(CryptoProvider, sizeof(Ret), 464 reinterpret_cast<BYTE *>(&Ret))) 465 return Ret; 466 } 467 468 // If that fails, fall back to pseudo-random numbers. 469 return GetPseudoRandomNumber(); 470} 471 472typedef NTSTATUS(WINAPI *RtlGetVersionPtr)(PRTL_OSVERSIONINFOW); 473#define STATUS_SUCCESS ((NTSTATUS)0x00000000L) 474 475static RTL_OSVERSIONINFOEXW GetWindowsVer() { 476 auto getVer = []() -> RTL_OSVERSIONINFOEXW { 477 HMODULE hMod = ::GetModuleHandleW(L"ntdll.dll"); 478 assert(hMod); 479 480 auto getVer = 481 (RtlGetVersionPtr)(void *)::GetProcAddress(hMod, "RtlGetVersion"); 482 assert(getVer); 483 484 RTL_OSVERSIONINFOEXW info{}; 485 info.dwOSVersionInfoSize = sizeof(info); 486 NTSTATUS r = getVer((PRTL_OSVERSIONINFOW)&info); 487 (void)r; 488 assert(r == STATUS_SUCCESS); 489 490 return info; 491 }; 492 static RTL_OSVERSIONINFOEXW info = getVer(); 493 return info; 494} 495 496llvm::VersionTuple llvm::GetWindowsOSVersion() { 497 RTL_OSVERSIONINFOEXW info = GetWindowsVer(); 498 return llvm::VersionTuple(info.dwMajorVersion, info.dwMinorVersion, 0, 499 info.dwBuildNumber); 500} 501 502bool llvm::RunningWindows8OrGreater() { 503 // Windows 8 is version 6.2, service pack 0. 504 return GetWindowsOSVersion() >= llvm::VersionTuple(6, 2, 0, 0); 505} 506 507bool llvm::RunningWindows11OrGreater() { 508 RTL_OSVERSIONINFOEXW info = GetWindowsVer(); 509 auto ver = llvm::VersionTuple(info.dwMajorVersion, info.dwMinorVersion, 0, 510 info.dwBuildNumber); 511 512 // Windows Server 2022 513 if (info.wProductType == VER_NT_SERVER) 514 return ver >= llvm::VersionTuple(10, 0, 0, 20348); 515 516 // Windows 11 517 return ver >= llvm::VersionTuple(10, 0, 0, 22000); 518} 519 520[[noreturn]] void Process::ExitNoCleanup(int RetCode) { 521 TerminateProcess(GetCurrentProcess(), RetCode); 522 llvm_unreachable("TerminateProcess doesn't return"); 523} 524