xref: /freebsd/contrib/llvm-project/llvm/lib/Support/Windows/Process.inc (revision 2c2ec6bbc9cc7762a250ffe903bda6c2e44d25ff)
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