1//===- llvm/Support/Unix/Path.inc - Unix Path 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 implements the Unix specific implementation of the Path API.
10//
11//===----------------------------------------------------------------------===//
12
13//===----------------------------------------------------------------------===//
14//=== WARNING: Implementation here must contain only generic UNIX code that
15//===          is guaranteed to work on *all* UNIX variants.
16//===----------------------------------------------------------------------===//
17
18#include "Unix.h"
19#include <limits.h>
20#include <stdio.h>
21#if HAVE_SYS_STAT_H
22#include <sys/stat.h>
23#endif
24#if HAVE_FCNTL_H
25#include <fcntl.h>
26#endif
27#ifdef HAVE_UNISTD_H
28#include <unistd.h>
29#endif
30#ifdef HAVE_SYS_MMAN_H
31#include <sys/mman.h>
32#endif
33
34#include <dirent.h>
35#include <pwd.h>
36
37#ifdef __APPLE__
38#include <mach-o/dyld.h>
39#include <sys/attr.h>
40#include <copyfile.h>
41#elif defined(__DragonFly__)
42#include <sys/mount.h>
43#endif
44
45// Both stdio.h and cstdio are included via different paths and
46// stdcxx's cstdio doesn't include stdio.h, so it doesn't #undef the macros
47// either.
48#undef ferror
49#undef feof
50
51// For GNU Hurd
52#if defined(__GNU__) && !defined(PATH_MAX)
53# define PATH_MAX 4096
54# define MAXPATHLEN 4096
55#endif
56
57#include <sys/types.h>
58#if !defined(__APPLE__) && !defined(__OpenBSD__) && !defined(__FreeBSD__) &&   \
59    !defined(__linux__) && !defined(__FreeBSD_kernel__) && !defined(_AIX)
60#include <sys/statvfs.h>
61#define STATVFS statvfs
62#define FSTATVFS fstatvfs
63#define STATVFS_F_FRSIZE(vfs) vfs.f_frsize
64#else
65#if defined(__OpenBSD__) || defined(__FreeBSD__)
66#include <sys/mount.h>
67#include <sys/param.h>
68#elif defined(__linux__)
69#if defined(HAVE_LINUX_MAGIC_H)
70#include <linux/magic.h>
71#else
72#if defined(HAVE_LINUX_NFS_FS_H)
73#include <linux/nfs_fs.h>
74#endif
75#if defined(HAVE_LINUX_SMB_H)
76#include <linux/smb.h>
77#endif
78#endif
79#include <sys/vfs.h>
80#elif defined(_AIX)
81#include <sys/statfs.h>
82
83// <sys/vmount.h> depends on `uint` to be a typedef from <sys/types.h> to
84// `uint_t`; however, <sys/types.h> does not always declare `uint`. We provide
85// the typedef prior to including <sys/vmount.h> to work around this issue.
86typedef uint_t uint;
87#include <sys/vmount.h>
88#else
89#include <sys/mount.h>
90#endif
91#define STATVFS statfs
92#define FSTATVFS fstatfs
93#define STATVFS_F_FRSIZE(vfs) static_cast<uint64_t>(vfs.f_bsize)
94#endif
95
96#if defined(__NetBSD__) || defined(__DragonFly__) || defined(__GNU__)
97#define STATVFS_F_FLAG(vfs) (vfs).f_flag
98#else
99#define STATVFS_F_FLAG(vfs) (vfs).f_flags
100#endif
101
102using namespace llvm;
103
104namespace llvm {
105namespace sys  {
106namespace fs {
107
108const file_t kInvalidFile = -1;
109
110#if defined(__FreeBSD__) || defined(__NetBSD__) || defined(__OpenBSD__) ||     \
111    defined(__minix) || defined(__FreeBSD_kernel__) || defined(__linux__) ||   \
112    defined(__CYGWIN__) || defined(__DragonFly__) || defined(_AIX) || defined(__GNU__)
113static int
114test_dir(char ret[PATH_MAX], const char *dir, const char *bin)
115{
116  struct stat sb;
117  char fullpath[PATH_MAX];
118
119  int chars = snprintf(fullpath, PATH_MAX, "%s/%s", dir, bin);
120  // We cannot write PATH_MAX characters because the string will be terminated
121  // with a null character. Fail if truncation happened.
122  if (chars >= PATH_MAX)
123    return 1;
124  if (!realpath(fullpath, ret))
125    return 1;
126  if (stat(fullpath, &sb) != 0)
127    return 1;
128
129  return 0;
130}
131
132static char *
133getprogpath(char ret[PATH_MAX], const char *bin)
134{
135  char *pv, *s, *t;
136
137  /* First approach: absolute path. */
138  if (bin[0] == '/') {
139    if (test_dir(ret, "/", bin) == 0)
140      return ret;
141    return nullptr;
142  }
143
144  /* Second approach: relative path. */
145  if (strchr(bin, '/')) {
146    char cwd[PATH_MAX];
147    if (!getcwd(cwd, PATH_MAX))
148      return nullptr;
149    if (test_dir(ret, cwd, bin) == 0)
150      return ret;
151    return nullptr;
152  }
153
154  /* Third approach: $PATH */
155  if ((pv = getenv("PATH")) == nullptr)
156    return nullptr;
157  s = pv = strdup(pv);
158  if (!pv)
159    return nullptr;
160  while ((t = strsep(&s, ":")) != nullptr) {
161    if (test_dir(ret, t, bin) == 0) {
162      free(pv);
163      return ret;
164    }
165  }
166  free(pv);
167  return nullptr;
168}
169#endif // __FreeBSD__ || __NetBSD__ || __FreeBSD_kernel__
170
171/// GetMainExecutable - Return the path to the main executable, given the
172/// value of argv[0] from program startup.
173std::string getMainExecutable(const char *argv0, void *MainAddr) {
174#if defined(__APPLE__)
175  // On OS X the executable path is saved to the stack by dyld. Reading it
176  // from there is much faster than calling dladdr, especially for large
177  // binaries with symbols.
178  char exe_path[MAXPATHLEN];
179  uint32_t size = sizeof(exe_path);
180  if (_NSGetExecutablePath(exe_path, &size) == 0) {
181    char link_path[MAXPATHLEN];
182    if (realpath(exe_path, link_path))
183      return link_path;
184  }
185#elif defined(__FreeBSD__) || defined(__NetBSD__) || defined(__OpenBSD__) ||   \
186    defined(__minix) || defined(__DragonFly__) ||                              \
187    defined(__FreeBSD_kernel__) || defined(_AIX)
188  StringRef curproc("/proc/curproc/file");
189  char exe_path[PATH_MAX];
190  // /proc is not mounted by default under FreeBSD, but gives more accurate
191  // information than argv[0] when it is.
192  if (sys::fs::exists(curproc)) {
193    ssize_t len = readlink(curproc.str().c_str(), exe_path, sizeof(exe_path));
194    if (len > 0) {
195      // Null terminate the string for realpath. readlink never null
196      // terminates its output.
197      len = std::min(len, ssize_t(sizeof(exe_path) - 1));
198      exe_path[len] = '\0';
199      return exe_path;
200    }
201  }
202  // If we don't have procfs mounted, fall back to argv[0]
203  if (getprogpath(exe_path, argv0) != NULL)
204    return exe_path;
205#elif defined(__linux__) || defined(__CYGWIN__)
206  char exe_path[MAXPATHLEN];
207  StringRef aPath("/proc/self/exe");
208  if (sys::fs::exists(aPath)) {
209    // /proc is not always mounted under Linux (chroot for example).
210    ssize_t len = readlink(aPath.str().c_str(), exe_path, sizeof(exe_path));
211    if (len < 0)
212      return "";
213
214    // Null terminate the string for realpath. readlink never null
215    // terminates its output.
216    len = std::min(len, ssize_t(sizeof(exe_path) - 1));
217    exe_path[len] = '\0';
218
219    // On Linux, /proc/self/exe always looks through symlinks. However, on
220    // GNU/Hurd, /proc/self/exe is a symlink to the path that was used to start
221    // the program, and not the eventual binary file. Therefore, call realpath
222    // so this behaves the same on all platforms.
223#if _POSIX_VERSION >= 200112 || defined(__GLIBC__)
224    char *real_path = realpath(exe_path, NULL);
225    std::string ret = std::string(real_path);
226    free(real_path);
227    return ret;
228#else
229    char real_path[MAXPATHLEN];
230    realpath(exe_path, real_path);
231    return std::string(real_path);
232#endif
233  } else {
234    // Fall back to the classical detection.
235    if (getprogpath(exe_path, argv0))
236      return exe_path;
237  }
238#elif defined(HAVE_DLFCN_H) && defined(HAVE_DLADDR)
239  // Use dladdr to get executable path if available.
240  Dl_info DLInfo;
241  int err = dladdr(MainAddr, &DLInfo);
242  if (err == 0)
243    return "";
244
245  // If the filename is a symlink, we need to resolve and return the location of
246  // the actual executable.
247  char link_path[MAXPATHLEN];
248  if (realpath(DLInfo.dli_fname, link_path))
249    return link_path;
250#else
251#error GetMainExecutable is not implemented on this host yet.
252#endif
253  return "";
254}
255
256TimePoint<> basic_file_status::getLastAccessedTime() const {
257  return toTimePoint(fs_st_atime, fs_st_atime_nsec);
258}
259
260TimePoint<> basic_file_status::getLastModificationTime() const {
261  return toTimePoint(fs_st_mtime, fs_st_mtime_nsec);
262}
263
264UniqueID file_status::getUniqueID() const {
265  return UniqueID(fs_st_dev, fs_st_ino);
266}
267
268uint32_t file_status::getLinkCount() const {
269  return fs_st_nlinks;
270}
271
272ErrorOr<space_info> disk_space(const Twine &Path) {
273  struct STATVFS Vfs;
274  if (::STATVFS(const_cast<char *>(Path.str().c_str()), &Vfs))
275    return std::error_code(errno, std::generic_category());
276  auto FrSize = STATVFS_F_FRSIZE(Vfs);
277  space_info SpaceInfo;
278  SpaceInfo.capacity = static_cast<uint64_t>(Vfs.f_blocks) * FrSize;
279  SpaceInfo.free = static_cast<uint64_t>(Vfs.f_bfree) * FrSize;
280  SpaceInfo.available = static_cast<uint64_t>(Vfs.f_bavail) * FrSize;
281  return SpaceInfo;
282}
283
284std::error_code current_path(SmallVectorImpl<char> &result) {
285  result.clear();
286
287  const char *pwd = ::getenv("PWD");
288  llvm::sys::fs::file_status PWDStatus, DotStatus;
289  if (pwd && llvm::sys::path::is_absolute(pwd) &&
290      !llvm::sys::fs::status(pwd, PWDStatus) &&
291      !llvm::sys::fs::status(".", DotStatus) &&
292      PWDStatus.getUniqueID() == DotStatus.getUniqueID()) {
293    result.append(pwd, pwd + strlen(pwd));
294    return std::error_code();
295  }
296
297#ifdef MAXPATHLEN
298  result.reserve(MAXPATHLEN);
299#else
300// For GNU Hurd
301  result.reserve(1024);
302#endif
303
304  while (true) {
305    if (::getcwd(result.data(), result.capacity()) == nullptr) {
306      // See if there was a real error.
307      if (errno != ENOMEM)
308        return std::error_code(errno, std::generic_category());
309      // Otherwise there just wasn't enough space.
310      result.reserve(result.capacity() * 2);
311    } else
312      break;
313  }
314
315  result.set_size(strlen(result.data()));
316  return std::error_code();
317}
318
319std::error_code set_current_path(const Twine &path) {
320  SmallString<128> path_storage;
321  StringRef p = path.toNullTerminatedStringRef(path_storage);
322
323  if (::chdir(p.begin()) == -1)
324    return std::error_code(errno, std::generic_category());
325
326  return std::error_code();
327}
328
329std::error_code create_directory(const Twine &path, bool IgnoreExisting,
330                                 perms Perms) {
331  SmallString<128> path_storage;
332  StringRef p = path.toNullTerminatedStringRef(path_storage);
333
334  if (::mkdir(p.begin(), Perms) == -1) {
335    if (errno != EEXIST || !IgnoreExisting)
336      return std::error_code(errno, std::generic_category());
337  }
338
339  return std::error_code();
340}
341
342// Note that we are using symbolic link because hard links are not supported by
343// all filesystems (SMB doesn't).
344std::error_code create_link(const Twine &to, const Twine &from) {
345  // Get arguments.
346  SmallString<128> from_storage;
347  SmallString<128> to_storage;
348  StringRef f = from.toNullTerminatedStringRef(from_storage);
349  StringRef t = to.toNullTerminatedStringRef(to_storage);
350
351  if (::symlink(t.begin(), f.begin()) == -1)
352    return std::error_code(errno, std::generic_category());
353
354  return std::error_code();
355}
356
357std::error_code create_hard_link(const Twine &to, const Twine &from) {
358  // Get arguments.
359  SmallString<128> from_storage;
360  SmallString<128> to_storage;
361  StringRef f = from.toNullTerminatedStringRef(from_storage);
362  StringRef t = to.toNullTerminatedStringRef(to_storage);
363
364  if (::link(t.begin(), f.begin()) == -1)
365    return std::error_code(errno, std::generic_category());
366
367  return std::error_code();
368}
369
370std::error_code remove(const Twine &path, bool IgnoreNonExisting) {
371  SmallString<128> path_storage;
372  StringRef p = path.toNullTerminatedStringRef(path_storage);
373
374  struct stat buf;
375  if (lstat(p.begin(), &buf) != 0) {
376    if (errno != ENOENT || !IgnoreNonExisting)
377      return std::error_code(errno, std::generic_category());
378    return std::error_code();
379  }
380
381  // Note: this check catches strange situations. In all cases, LLVM should
382  // only be involved in the creation and deletion of regular files.  This
383  // check ensures that what we're trying to erase is a regular file. It
384  // effectively prevents LLVM from erasing things like /dev/null, any block
385  // special file, or other things that aren't "regular" files.
386  if (!S_ISREG(buf.st_mode) && !S_ISDIR(buf.st_mode) && !S_ISLNK(buf.st_mode))
387    return make_error_code(errc::operation_not_permitted);
388
389  if (::remove(p.begin()) == -1) {
390    if (errno != ENOENT || !IgnoreNonExisting)
391      return std::error_code(errno, std::generic_category());
392  }
393
394  return std::error_code();
395}
396
397static bool is_local_impl(struct STATVFS &Vfs) {
398#if defined(__linux__) || defined(__GNU__)
399#ifndef NFS_SUPER_MAGIC
400#define NFS_SUPER_MAGIC 0x6969
401#endif
402#ifndef SMB_SUPER_MAGIC
403#define SMB_SUPER_MAGIC 0x517B
404#endif
405#ifndef CIFS_MAGIC_NUMBER
406#define CIFS_MAGIC_NUMBER 0xFF534D42
407#endif
408#ifdef __GNU__
409  switch ((uint32_t)Vfs.__f_type) {
410#else
411  switch ((uint32_t)Vfs.f_type) {
412#endif
413  case NFS_SUPER_MAGIC:
414  case SMB_SUPER_MAGIC:
415  case CIFS_MAGIC_NUMBER:
416    return false;
417  default:
418    return true;
419  }
420#elif defined(__CYGWIN__)
421  // Cygwin doesn't expose this information; would need to use Win32 API.
422  return false;
423#elif defined(__Fuchsia__)
424  // Fuchsia doesn't yet support remote filesystem mounts.
425  return true;
426#elif defined(__HAIKU__)
427  // Haiku doesn't expose this information.
428  return false;
429#elif defined(__sun)
430  // statvfs::f_basetype contains a null-terminated FSType name of the mounted target
431  StringRef fstype(Vfs.f_basetype);
432  // NFS is the only non-local fstype??
433  return !fstype.equals("nfs");
434#elif defined(_AIX)
435  // Call mntctl; try more than twice in case of timing issues with a concurrent
436  // mount.
437  int Ret;
438  size_t BufSize = 2048u;
439  std::unique_ptr<char[]> Buf;
440  int Tries = 3;
441  while (Tries--) {
442    Buf = llvm::make_unique<char[]>(BufSize);
443    Ret = mntctl(MCTL_QUERY, BufSize, Buf.get());
444    if (Ret != 0)
445      break;
446    BufSize = *reinterpret_cast<unsigned int *>(Buf.get());
447    Buf.reset();
448  }
449
450  if (Ret == -1)
451    // There was an error; "remote" is the conservative answer.
452    return false;
453
454  // Look for the correct vmount entry.
455  char *CurObjPtr = Buf.get();
456  while (Ret--) {
457    struct vmount *Vp = reinterpret_cast<struct vmount *>(CurObjPtr);
458    static_assert(sizeof(Vfs.f_fsid) == sizeof(Vp->vmt_fsid),
459                  "fsid length mismatch");
460    if (memcmp(&Vfs.f_fsid, &Vp->vmt_fsid, sizeof Vfs.f_fsid) == 0)
461      return (Vp->vmt_flags & MNT_REMOTE) == 0;
462
463    CurObjPtr += Vp->vmt_length;
464  }
465
466  // vmount entry not found; "remote" is the conservative answer.
467  return false;
468#else
469  return !!(STATVFS_F_FLAG(Vfs) & MNT_LOCAL);
470#endif
471}
472
473std::error_code is_local(const Twine &Path, bool &Result) {
474  struct STATVFS Vfs;
475  if (::STATVFS(const_cast<char *>(Path.str().c_str()), &Vfs))
476    return std::error_code(errno, std::generic_category());
477
478  Result = is_local_impl(Vfs);
479  return std::error_code();
480}
481
482std::error_code is_local(int FD, bool &Result) {
483  struct STATVFS Vfs;
484  if (::FSTATVFS(FD, &Vfs))
485    return std::error_code(errno, std::generic_category());
486
487  Result = is_local_impl(Vfs);
488  return std::error_code();
489}
490
491std::error_code rename(const Twine &from, const Twine &to) {
492  // Get arguments.
493  SmallString<128> from_storage;
494  SmallString<128> to_storage;
495  StringRef f = from.toNullTerminatedStringRef(from_storage);
496  StringRef t = to.toNullTerminatedStringRef(to_storage);
497
498  if (::rename(f.begin(), t.begin()) == -1)
499    return std::error_code(errno, std::generic_category());
500
501  return std::error_code();
502}
503
504std::error_code resize_file(int FD, uint64_t Size) {
505#if defined(HAVE_POSIX_FALLOCATE)
506  // If we have posix_fallocate use it. Unlike ftruncate it always allocates
507  // space, so we get an error if the disk is full.
508  if (int Err = ::posix_fallocate(FD, 0, Size)) {
509#ifdef _AIX
510    constexpr int NotSupportedError = ENOTSUP;
511#else
512    constexpr int NotSupportedError = EOPNOTSUPP;
513#endif
514    if (Err != EINVAL && Err != NotSupportedError)
515      return std::error_code(Err, std::generic_category());
516  }
517#endif
518  // Use ftruncate as a fallback. It may or may not allocate space. At least on
519  // OS X with HFS+ it does.
520  if (::ftruncate(FD, Size) == -1)
521    return std::error_code(errno, std::generic_category());
522
523  return std::error_code();
524}
525
526static int convertAccessMode(AccessMode Mode) {
527  switch (Mode) {
528  case AccessMode::Exist:
529    return F_OK;
530  case AccessMode::Write:
531    return W_OK;
532  case AccessMode::Execute:
533    return R_OK | X_OK; // scripts also need R_OK.
534  }
535  llvm_unreachable("invalid enum");
536}
537
538std::error_code access(const Twine &Path, AccessMode Mode) {
539  SmallString<128> PathStorage;
540  StringRef P = Path.toNullTerminatedStringRef(PathStorage);
541
542  if (::access(P.begin(), convertAccessMode(Mode)) == -1)
543    return std::error_code(errno, std::generic_category());
544
545  if (Mode == AccessMode::Execute) {
546    // Don't say that directories are executable.
547    struct stat buf;
548    if (0 != stat(P.begin(), &buf))
549      return errc::permission_denied;
550    if (!S_ISREG(buf.st_mode))
551      return errc::permission_denied;
552  }
553
554  return std::error_code();
555}
556
557bool can_execute(const Twine &Path) {
558  return !access(Path, AccessMode::Execute);
559}
560
561bool equivalent(file_status A, file_status B) {
562  assert(status_known(A) && status_known(B));
563  return A.fs_st_dev == B.fs_st_dev &&
564         A.fs_st_ino == B.fs_st_ino;
565}
566
567std::error_code equivalent(const Twine &A, const Twine &B, bool &result) {
568  file_status fsA, fsB;
569  if (std::error_code ec = status(A, fsA))
570    return ec;
571  if (std::error_code ec = status(B, fsB))
572    return ec;
573  result = equivalent(fsA, fsB);
574  return std::error_code();
575}
576
577static void expandTildeExpr(SmallVectorImpl<char> &Path) {
578  StringRef PathStr(Path.begin(), Path.size());
579  if (PathStr.empty() || !PathStr.startswith("~"))
580    return;
581
582  PathStr = PathStr.drop_front();
583  StringRef Expr =
584      PathStr.take_until([](char c) { return path::is_separator(c); });
585  StringRef Remainder = PathStr.substr(Expr.size() + 1);
586  SmallString<128> Storage;
587  if (Expr.empty()) {
588    // This is just ~/..., resolve it to the current user's home dir.
589    if (!path::home_directory(Storage)) {
590      // For some reason we couldn't get the home directory.  Just exit.
591      return;
592    }
593
594    // Overwrite the first character and insert the rest.
595    Path[0] = Storage[0];
596    Path.insert(Path.begin() + 1, Storage.begin() + 1, Storage.end());
597    return;
598  }
599
600  // This is a string of the form ~username/, look up this user's entry in the
601  // password database.
602  struct passwd *Entry = nullptr;
603  std::string User = Expr.str();
604  Entry = ::getpwnam(User.c_str());
605
606  if (!Entry) {
607    // Unable to look up the entry, just return back the original path.
608    return;
609  }
610
611  Storage = Remainder;
612  Path.clear();
613  Path.append(Entry->pw_dir, Entry->pw_dir + strlen(Entry->pw_dir));
614  llvm::sys::path::append(Path, Storage);
615}
616
617
618void expand_tilde(const Twine &path, SmallVectorImpl<char> &dest) {
619  dest.clear();
620  if (path.isTriviallyEmpty())
621    return;
622
623  path.toVector(dest);
624  expandTildeExpr(dest);
625
626  return;
627}
628
629static file_type typeForMode(mode_t Mode) {
630  if (S_ISDIR(Mode))
631    return file_type::directory_file;
632  else if (S_ISREG(Mode))
633    return file_type::regular_file;
634  else if (S_ISBLK(Mode))
635    return file_type::block_file;
636  else if (S_ISCHR(Mode))
637    return file_type::character_file;
638  else if (S_ISFIFO(Mode))
639    return file_type::fifo_file;
640  else if (S_ISSOCK(Mode))
641    return file_type::socket_file;
642  else if (S_ISLNK(Mode))
643    return file_type::symlink_file;
644  return file_type::type_unknown;
645}
646
647static std::error_code fillStatus(int StatRet, const struct stat &Status,
648                                  file_status &Result) {
649  if (StatRet != 0) {
650    std::error_code EC(errno, std::generic_category());
651    if (EC == errc::no_such_file_or_directory)
652      Result = file_status(file_type::file_not_found);
653    else
654      Result = file_status(file_type::status_error);
655    return EC;
656  }
657
658  uint32_t atime_nsec, mtime_nsec;
659#if defined(HAVE_STRUCT_STAT_ST_MTIMESPEC_TV_NSEC)
660  atime_nsec = Status.st_atimespec.tv_nsec;
661  mtime_nsec = Status.st_mtimespec.tv_nsec;
662#elif defined(HAVE_STRUCT_STAT_ST_MTIM_TV_NSEC)
663  atime_nsec = Status.st_atim.tv_nsec;
664  mtime_nsec = Status.st_mtim.tv_nsec;
665#else
666  atime_nsec = mtime_nsec = 0;
667#endif
668
669  perms Perms = static_cast<perms>(Status.st_mode) & all_perms;
670  Result = file_status(typeForMode(Status.st_mode), Perms, Status.st_dev,
671                       Status.st_nlink, Status.st_ino,
672                       Status.st_atime, atime_nsec, Status.st_mtime, mtime_nsec,
673                       Status.st_uid, Status.st_gid, Status.st_size);
674
675  return std::error_code();
676}
677
678std::error_code status(const Twine &Path, file_status &Result, bool Follow) {
679  SmallString<128> PathStorage;
680  StringRef P = Path.toNullTerminatedStringRef(PathStorage);
681
682  struct stat Status;
683  int StatRet = (Follow ? ::stat : ::lstat)(P.begin(), &Status);
684  return fillStatus(StatRet, Status, Result);
685}
686
687std::error_code status(int FD, file_status &Result) {
688  struct stat Status;
689  int StatRet = ::fstat(FD, &Status);
690  return fillStatus(StatRet, Status, Result);
691}
692
693std::error_code setPermissions(const Twine &Path, perms Permissions) {
694  SmallString<128> PathStorage;
695  StringRef P = Path.toNullTerminatedStringRef(PathStorage);
696
697  if (::chmod(P.begin(), Permissions))
698    return std::error_code(errno, std::generic_category());
699  return std::error_code();
700}
701
702std::error_code setLastAccessAndModificationTime(int FD, TimePoint<> AccessTime,
703                                                 TimePoint<> ModificationTime) {
704#if defined(HAVE_FUTIMENS)
705  timespec Times[2];
706  Times[0] = sys::toTimeSpec(AccessTime);
707  Times[1] = sys::toTimeSpec(ModificationTime);
708  if (::futimens(FD, Times))
709    return std::error_code(errno, std::generic_category());
710  return std::error_code();
711#elif defined(HAVE_FUTIMES)
712  timeval Times[2];
713  Times[0] = sys::toTimeVal(
714      std::chrono::time_point_cast<std::chrono::microseconds>(AccessTime));
715  Times[1] =
716      sys::toTimeVal(std::chrono::time_point_cast<std::chrono::microseconds>(
717          ModificationTime));
718  if (::futimes(FD, Times))
719    return std::error_code(errno, std::generic_category());
720  return std::error_code();
721#else
722#warning Missing futimes() and futimens()
723  return make_error_code(errc::function_not_supported);
724#endif
725}
726
727std::error_code mapped_file_region::init(int FD, uint64_t Offset,
728                                         mapmode Mode) {
729  assert(Size != 0);
730
731  int flags = (Mode == readwrite) ? MAP_SHARED : MAP_PRIVATE;
732  int prot = (Mode == readonly) ? PROT_READ : (PROT_READ | PROT_WRITE);
733#if defined(__APPLE__)
734  //----------------------------------------------------------------------
735  // Newer versions of MacOSX have a flag that will allow us to read from
736  // binaries whose code signature is invalid without crashing by using
737  // the MAP_RESILIENT_CODESIGN flag. Also if a file from removable media
738  // is mapped we can avoid crashing and return zeroes to any pages we try
739  // to read if the media becomes unavailable by using the
740  // MAP_RESILIENT_MEDIA flag.  These flags are only usable when mapping
741  // with PROT_READ, so take care not to specify them otherwise.
742  //----------------------------------------------------------------------
743  if (Mode == readonly) {
744#if defined(MAP_RESILIENT_CODESIGN)
745    flags |= MAP_RESILIENT_CODESIGN;
746#endif
747#if defined(MAP_RESILIENT_MEDIA)
748    flags |= MAP_RESILIENT_MEDIA;
749#endif
750  }
751#endif // #if defined (__APPLE__)
752
753  Mapping = ::mmap(nullptr, Size, prot, flags, FD, Offset);
754  if (Mapping == MAP_FAILED)
755    return std::error_code(errno, std::generic_category());
756  return std::error_code();
757}
758
759mapped_file_region::mapped_file_region(int fd, mapmode mode, size_t length,
760                                       uint64_t offset, std::error_code &ec)
761    : Size(length), Mapping(), Mode(mode) {
762  (void)Mode;
763  ec = init(fd, offset, mode);
764  if (ec)
765    Mapping = nullptr;
766}
767
768mapped_file_region::~mapped_file_region() {
769  if (Mapping)
770    ::munmap(Mapping, Size);
771}
772
773size_t mapped_file_region::size() const {
774  assert(Mapping && "Mapping failed but used anyway!");
775  return Size;
776}
777
778char *mapped_file_region::data() const {
779  assert(Mapping && "Mapping failed but used anyway!");
780  return reinterpret_cast<char*>(Mapping);
781}
782
783const char *mapped_file_region::const_data() const {
784  assert(Mapping && "Mapping failed but used anyway!");
785  return reinterpret_cast<const char*>(Mapping);
786}
787
788int mapped_file_region::alignment() {
789  return Process::getPageSize();
790}
791
792std::error_code detail::directory_iterator_construct(detail::DirIterState &it,
793                                                     StringRef path,
794                                                     bool follow_symlinks) {
795  SmallString<128> path_null(path);
796  DIR *directory = ::opendir(path_null.c_str());
797  if (!directory)
798    return std::error_code(errno, std::generic_category());
799
800  it.IterationHandle = reinterpret_cast<intptr_t>(directory);
801  // Add something for replace_filename to replace.
802  path::append(path_null, ".");
803  it.CurrentEntry = directory_entry(path_null.str(), follow_symlinks);
804  return directory_iterator_increment(it);
805}
806
807std::error_code detail::directory_iterator_destruct(detail::DirIterState &it) {
808  if (it.IterationHandle)
809    ::closedir(reinterpret_cast<DIR *>(it.IterationHandle));
810  it.IterationHandle = 0;
811  it.CurrentEntry = directory_entry();
812  return std::error_code();
813}
814
815static file_type direntType(dirent* Entry) {
816  // Most platforms provide the file type in the dirent: Linux/BSD/Mac.
817  // The DTTOIF macro lets us reuse our status -> type conversion.
818#if defined(_DIRENT_HAVE_D_TYPE) && defined(DTTOIF)
819  return typeForMode(DTTOIF(Entry->d_type));
820#else
821  // Other platforms such as Solaris require a stat() to get the type.
822  return file_type::type_unknown;
823#endif
824}
825
826std::error_code detail::directory_iterator_increment(detail::DirIterState &It) {
827  errno = 0;
828  dirent *CurDir = ::readdir(reinterpret_cast<DIR *>(It.IterationHandle));
829  if (CurDir == nullptr && errno != 0) {
830    return std::error_code(errno, std::generic_category());
831  } else if (CurDir != nullptr) {
832    StringRef Name(CurDir->d_name);
833    if ((Name.size() == 1 && Name[0] == '.') ||
834        (Name.size() == 2 && Name[0] == '.' && Name[1] == '.'))
835      return directory_iterator_increment(It);
836    It.CurrentEntry.replace_filename(Name, direntType(CurDir));
837  } else
838    return directory_iterator_destruct(It);
839
840  return std::error_code();
841}
842
843ErrorOr<basic_file_status> directory_entry::status() const {
844  file_status s;
845  if (auto EC = fs::status(Path, s, FollowSymlinks))
846    return EC;
847  return s;
848}
849
850#if !defined(F_GETPATH)
851static bool hasProcSelfFD() {
852  // If we have a /proc filesystem mounted, we can quickly establish the
853  // real name of the file with readlink
854  static const bool Result = (::access("/proc/self/fd", R_OK) == 0);
855  return Result;
856}
857#endif
858
859static int nativeOpenFlags(CreationDisposition Disp, OpenFlags Flags,
860                           FileAccess Access) {
861  int Result = 0;
862  if (Access == FA_Read)
863    Result |= O_RDONLY;
864  else if (Access == FA_Write)
865    Result |= O_WRONLY;
866  else if (Access == (FA_Read | FA_Write))
867    Result |= O_RDWR;
868
869  // This is for compatibility with old code that assumed F_Append implied
870  // would open an existing file.  See Windows/Path.inc for a longer comment.
871  if (Flags & F_Append)
872    Disp = CD_OpenAlways;
873
874  if (Disp == CD_CreateNew) {
875    Result |= O_CREAT; // Create if it doesn't exist.
876    Result |= O_EXCL;  // Fail if it does.
877  } else if (Disp == CD_CreateAlways) {
878    Result |= O_CREAT; // Create if it doesn't exist.
879    Result |= O_TRUNC; // Truncate if it does.
880  } else if (Disp == CD_OpenAlways) {
881    Result |= O_CREAT; // Create if it doesn't exist.
882  } else if (Disp == CD_OpenExisting) {
883    // Nothing special, just don't add O_CREAT and we get these semantics.
884  }
885
886  if (Flags & F_Append)
887    Result |= O_APPEND;
888
889#ifdef O_CLOEXEC
890  if (!(Flags & OF_ChildInherit))
891    Result |= O_CLOEXEC;
892#endif
893
894  return Result;
895}
896
897std::error_code openFile(const Twine &Name, int &ResultFD,
898                         CreationDisposition Disp, FileAccess Access,
899                         OpenFlags Flags, unsigned Mode) {
900  int OpenFlags = nativeOpenFlags(Disp, Flags, Access);
901
902  SmallString<128> Storage;
903  StringRef P = Name.toNullTerminatedStringRef(Storage);
904  // Call ::open in a lambda to avoid overload resolution in RetryAfterSignal
905  // when open is overloaded, such as in Bionic.
906  auto Open = [&]() { return ::open(P.begin(), OpenFlags, Mode); };
907  if ((ResultFD = sys::RetryAfterSignal(-1, Open)) < 0)
908    return std::error_code(errno, std::generic_category());
909#ifndef O_CLOEXEC
910  if (!(Flags & OF_ChildInherit)) {
911    int r = fcntl(ResultFD, F_SETFD, FD_CLOEXEC);
912    (void)r;
913    assert(r == 0 && "fcntl(F_SETFD, FD_CLOEXEC) failed");
914  }
915#endif
916  return std::error_code();
917}
918
919Expected<int> openNativeFile(const Twine &Name, CreationDisposition Disp,
920                             FileAccess Access, OpenFlags Flags,
921                             unsigned Mode) {
922
923  int FD;
924  std::error_code EC = openFile(Name, FD, Disp, Access, Flags, Mode);
925  if (EC)
926    return errorCodeToError(EC);
927  return FD;
928}
929
930std::error_code openFileForRead(const Twine &Name, int &ResultFD,
931                                OpenFlags Flags,
932                                SmallVectorImpl<char> *RealPath) {
933  std::error_code EC =
934      openFile(Name, ResultFD, CD_OpenExisting, FA_Read, Flags, 0666);
935  if (EC)
936    return EC;
937
938  // Attempt to get the real name of the file, if the user asked
939  if(!RealPath)
940    return std::error_code();
941  RealPath->clear();
942#if defined(F_GETPATH)
943  // When F_GETPATH is availble, it is the quickest way to get
944  // the real path name.
945  char Buffer[MAXPATHLEN];
946  if (::fcntl(ResultFD, F_GETPATH, Buffer) != -1)
947    RealPath->append(Buffer, Buffer + strlen(Buffer));
948#else
949  char Buffer[PATH_MAX];
950  if (hasProcSelfFD()) {
951    char ProcPath[64];
952    snprintf(ProcPath, sizeof(ProcPath), "/proc/self/fd/%d", ResultFD);
953    ssize_t CharCount = ::readlink(ProcPath, Buffer, sizeof(Buffer));
954    if (CharCount > 0)
955      RealPath->append(Buffer, Buffer + CharCount);
956  } else {
957    SmallString<128> Storage;
958    StringRef P = Name.toNullTerminatedStringRef(Storage);
959
960    // Use ::realpath to get the real path name
961    if (::realpath(P.begin(), Buffer) != nullptr)
962      RealPath->append(Buffer, Buffer + strlen(Buffer));
963  }
964#endif
965  return std::error_code();
966}
967
968Expected<file_t> openNativeFileForRead(const Twine &Name, OpenFlags Flags,
969                                       SmallVectorImpl<char> *RealPath) {
970  file_t ResultFD;
971  std::error_code EC = openFileForRead(Name, ResultFD, Flags, RealPath);
972  if (EC)
973    return errorCodeToError(EC);
974  return ResultFD;
975}
976
977void closeFile(file_t &F) {
978  ::close(F);
979  F = kInvalidFile;
980}
981
982template <typename T>
983static std::error_code remove_directories_impl(const T &Entry,
984                                               bool IgnoreErrors) {
985  std::error_code EC;
986  directory_iterator Begin(Entry, EC, false);
987  directory_iterator End;
988  while (Begin != End) {
989    auto &Item = *Begin;
990    ErrorOr<basic_file_status> st = Item.status();
991    if (!st && !IgnoreErrors)
992      return st.getError();
993
994    if (is_directory(*st)) {
995      EC = remove_directories_impl(Item, IgnoreErrors);
996      if (EC && !IgnoreErrors)
997        return EC;
998    }
999
1000    EC = fs::remove(Item.path(), true);
1001    if (EC && !IgnoreErrors)
1002      return EC;
1003
1004    Begin.increment(EC);
1005    if (EC && !IgnoreErrors)
1006      return EC;
1007  }
1008  return std::error_code();
1009}
1010
1011std::error_code remove_directories(const Twine &path, bool IgnoreErrors) {
1012  auto EC = remove_directories_impl(path, IgnoreErrors);
1013  if (EC && !IgnoreErrors)
1014    return EC;
1015  EC = fs::remove(path, true);
1016  if (EC && !IgnoreErrors)
1017    return EC;
1018  return std::error_code();
1019}
1020
1021std::error_code real_path(const Twine &path, SmallVectorImpl<char> &dest,
1022                          bool expand_tilde) {
1023  dest.clear();
1024  if (path.isTriviallyEmpty())
1025    return std::error_code();
1026
1027  if (expand_tilde) {
1028    SmallString<128> Storage;
1029    path.toVector(Storage);
1030    expandTildeExpr(Storage);
1031    return real_path(Storage, dest, false);
1032  }
1033
1034  SmallString<128> Storage;
1035  StringRef P = path.toNullTerminatedStringRef(Storage);
1036  char Buffer[PATH_MAX];
1037  if (::realpath(P.begin(), Buffer) == nullptr)
1038    return std::error_code(errno, std::generic_category());
1039  dest.append(Buffer, Buffer + strlen(Buffer));
1040  return std::error_code();
1041}
1042
1043} // end namespace fs
1044
1045namespace path {
1046
1047bool home_directory(SmallVectorImpl<char> &result) {
1048  char *RequestedDir = getenv("HOME");
1049  if (!RequestedDir) {
1050    struct passwd *pw = getpwuid(getuid());
1051    if (pw && pw->pw_dir)
1052      RequestedDir = pw->pw_dir;
1053  }
1054  if (!RequestedDir)
1055    return false;
1056
1057  result.clear();
1058  result.append(RequestedDir, RequestedDir + strlen(RequestedDir));
1059  return true;
1060}
1061
1062static bool getDarwinConfDir(bool TempDir, SmallVectorImpl<char> &Result) {
1063  #if defined(_CS_DARWIN_USER_TEMP_DIR) && defined(_CS_DARWIN_USER_CACHE_DIR)
1064  // On Darwin, use DARWIN_USER_TEMP_DIR or DARWIN_USER_CACHE_DIR.
1065  // macros defined in <unistd.h> on darwin >= 9
1066  int ConfName = TempDir ? _CS_DARWIN_USER_TEMP_DIR
1067                         : _CS_DARWIN_USER_CACHE_DIR;
1068  size_t ConfLen = confstr(ConfName, nullptr, 0);
1069  if (ConfLen > 0) {
1070    do {
1071      Result.resize(ConfLen);
1072      ConfLen = confstr(ConfName, Result.data(), Result.size());
1073    } while (ConfLen > 0 && ConfLen != Result.size());
1074
1075    if (ConfLen > 0) {
1076      assert(Result.back() == 0);
1077      Result.pop_back();
1078      return true;
1079    }
1080
1081    Result.clear();
1082  }
1083  #endif
1084  return false;
1085}
1086
1087static const char *getEnvTempDir() {
1088  // Check whether the temporary directory is specified by an environment
1089  // variable.
1090  const char *EnvironmentVariables[] = {"TMPDIR", "TMP", "TEMP", "TEMPDIR"};
1091  for (const char *Env : EnvironmentVariables) {
1092    if (const char *Dir = std::getenv(Env))
1093      return Dir;
1094  }
1095
1096  return nullptr;
1097}
1098
1099static const char *getDefaultTempDir(bool ErasedOnReboot) {
1100#ifdef P_tmpdir
1101  if ((bool)P_tmpdir)
1102    return P_tmpdir;
1103#endif
1104
1105  if (ErasedOnReboot)
1106    return "/tmp";
1107  return "/var/tmp";
1108}
1109
1110void system_temp_directory(bool ErasedOnReboot, SmallVectorImpl<char> &Result) {
1111  Result.clear();
1112
1113  if (ErasedOnReboot) {
1114    // There is no env variable for the cache directory.
1115    if (const char *RequestedDir = getEnvTempDir()) {
1116      Result.append(RequestedDir, RequestedDir + strlen(RequestedDir));
1117      return;
1118    }
1119  }
1120
1121  if (getDarwinConfDir(ErasedOnReboot, Result))
1122    return;
1123
1124  const char *RequestedDir = getDefaultTempDir(ErasedOnReboot);
1125  Result.append(RequestedDir, RequestedDir + strlen(RequestedDir));
1126}
1127
1128} // end namespace path
1129
1130namespace fs {
1131
1132#ifdef __APPLE__
1133/// This implementation tries to perform an APFS CoW clone of the file,
1134/// which can be much faster and uses less space.
1135/// Unfortunately fcopyfile(3) does not support COPYFILE_CLONE, so the
1136/// file descriptor variant of this function still uses the default
1137/// implementation.
1138std::error_code copy_file(const Twine &From, const Twine &To) {
1139  uint32_t Flag = COPYFILE_DATA;
1140  if (__builtin_available(macos 10.12, *)) {
1141    bool IsSymlink;
1142    if (std::error_code Error = is_symlink_file(From, IsSymlink))
1143      return Error;
1144    // COPYFILE_CLONE clones the symlink instead of following it
1145    // and returns EEXISTS if the target file already exists.
1146    if (!IsSymlink && !exists(To))
1147      Flag = COPYFILE_CLONE;
1148  }
1149
1150  int Status =
1151      copyfile(From.str().c_str(), To.str().c_str(), /* State */ NULL, Flag);
1152
1153  if (Status == 0)
1154    return std::error_code();
1155  return std::error_code(errno, std::generic_category());
1156}
1157#endif // __APPLE__
1158
1159} // end namespace fs
1160
1161} // end namespace sys
1162} // end namespace llvm
1163