1 //===----------------------------------------------------------------------===//
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 #include <__assert>
10 #include <__utility/unreachable.h>
11 #include <array>
12 #include <climits>
13 #include <cstdlib>
14 #include <filesystem>
15 #include <iterator>
16 #include <string_view>
17 #include <type_traits>
18 #include <vector>
19 
20 #include "filesystem_common.h"
21 
22 #include "posix_compat.h"
23 
24 #if defined(_LIBCPP_WIN32API)
25 # define WIN32_LEAN_AND_MEAN
26 # define NOMINMAX
27 # include <windows.h>
28 #else
29 # include <dirent.h>
30 # include <sys/stat.h>
31 # include <sys/statvfs.h>
32 # include <unistd.h>
33 #endif
34 #include <time.h>
35 #include <fcntl.h> /* values for fchmodat */
36 
37 #if __has_include(<sys/sendfile.h>)
38 # include <sys/sendfile.h>
39 # define _LIBCPP_FILESYSTEM_USE_SENDFILE
40 #elif defined(__APPLE__) || __has_include(<copyfile.h>)
41 # include <copyfile.h>
42 # define _LIBCPP_FILESYSTEM_USE_COPYFILE
43 #else
44 # include <fstream>
45 # define _LIBCPP_FILESYSTEM_USE_FSTREAM
46 #endif
47 
48 #if !defined(CLOCK_REALTIME) && !defined(_LIBCPP_WIN32API)
49 # include <sys/time.h> // for gettimeofday and timeval
50 #endif
51 
52 #if defined(__ELF__) && defined(_LIBCPP_LINK_RT_LIB)
53 # pragma comment(lib, "rt")
54 #endif
55 
56 _LIBCPP_BEGIN_NAMESPACE_FILESYSTEM
57 
58 namespace {
59 
60 bool isSeparator(path::value_type C) {
61   if (C == '/')
62     return true;
63 #if defined(_LIBCPP_WIN32API)
64   if (C == '\\')
65     return true;
66 #endif
67   return false;
68 }
69 
70 bool isDriveLetter(path::value_type C) {
71   return (C >= 'a' && C <= 'z') || (C >= 'A' && C <= 'Z');
72 }
73 
74 namespace parser {
75 
76 using string_view_t = path::__string_view;
77 using string_view_pair = pair<string_view_t, string_view_t>;
78 using PosPtr = path::value_type const*;
79 
80 struct PathParser {
81   enum ParserState : unsigned char {
82     // Zero is a special sentinel value used by default constructed iterators.
83     PS_BeforeBegin = path::iterator::_BeforeBegin,
84     PS_InRootName = path::iterator::_InRootName,
85     PS_InRootDir = path::iterator::_InRootDir,
86     PS_InFilenames = path::iterator::_InFilenames,
87     PS_InTrailingSep = path::iterator::_InTrailingSep,
88     PS_AtEnd = path::iterator::_AtEnd
89   };
90 
91   const string_view_t Path;
92   string_view_t RawEntry;
93   ParserState State;
94 
95 private:
96   PathParser(string_view_t P, ParserState State) noexcept : Path(P),
97                                                             State(State) {}
98 
99 public:
100   PathParser(string_view_t P, string_view_t E, unsigned char S)
101       : Path(P), RawEntry(E), State(static_cast<ParserState>(S)) {
102     // S cannot be '0' or PS_BeforeBegin.
103   }
104 
105   static PathParser CreateBegin(string_view_t P) noexcept {
106     PathParser PP(P, PS_BeforeBegin);
107     PP.increment();
108     return PP;
109   }
110 
111   static PathParser CreateEnd(string_view_t P) noexcept {
112     PathParser PP(P, PS_AtEnd);
113     return PP;
114   }
115 
116   PosPtr peek() const noexcept {
117     auto TkEnd = getNextTokenStartPos();
118     auto End = getAfterBack();
119     return TkEnd == End ? nullptr : TkEnd;
120   }
121 
122   void increment() noexcept {
123     const PosPtr End = getAfterBack();
124     const PosPtr Start = getNextTokenStartPos();
125     if (Start == End)
126       return makeState(PS_AtEnd);
127 
128     switch (State) {
129     case PS_BeforeBegin: {
130       PosPtr TkEnd = consumeRootName(Start, End);
131       if (TkEnd)
132         return makeState(PS_InRootName, Start, TkEnd);
133     }
134       _LIBCPP_FALLTHROUGH();
135     case PS_InRootName: {
136       PosPtr TkEnd = consumeAllSeparators(Start, End);
137       if (TkEnd)
138         return makeState(PS_InRootDir, Start, TkEnd);
139       else
140         return makeState(PS_InFilenames, Start, consumeName(Start, End));
141     }
142     case PS_InRootDir:
143       return makeState(PS_InFilenames, Start, consumeName(Start, End));
144 
145     case PS_InFilenames: {
146       PosPtr SepEnd = consumeAllSeparators(Start, End);
147       if (SepEnd != End) {
148         PosPtr TkEnd = consumeName(SepEnd, End);
149         if (TkEnd)
150           return makeState(PS_InFilenames, SepEnd, TkEnd);
151       }
152       return makeState(PS_InTrailingSep, Start, SepEnd);
153     }
154 
155     case PS_InTrailingSep:
156       return makeState(PS_AtEnd);
157 
158     case PS_AtEnd:
159       __libcpp_unreachable();
160     }
161   }
162 
163   void decrement() noexcept {
164     const PosPtr REnd = getBeforeFront();
165     const PosPtr RStart = getCurrentTokenStartPos() - 1;
166     if (RStart == REnd) // we're decrementing the begin
167       return makeState(PS_BeforeBegin);
168 
169     switch (State) {
170     case PS_AtEnd: {
171       // Try to consume a trailing separator or root directory first.
172       if (PosPtr SepEnd = consumeAllSeparators(RStart, REnd)) {
173         if (SepEnd == REnd)
174           return makeState(PS_InRootDir, Path.data(), RStart + 1);
175         PosPtr TkStart = consumeRootName(SepEnd, REnd);
176         if (TkStart == REnd)
177           return makeState(PS_InRootDir, RStart, RStart + 1);
178         return makeState(PS_InTrailingSep, SepEnd + 1, RStart + 1);
179       } else {
180         PosPtr TkStart = consumeRootName(RStart, REnd);
181         if (TkStart == REnd)
182           return makeState(PS_InRootName, TkStart + 1, RStart + 1);
183         TkStart = consumeName(RStart, REnd);
184         return makeState(PS_InFilenames, TkStart + 1, RStart + 1);
185       }
186     }
187     case PS_InTrailingSep:
188       return makeState(PS_InFilenames, consumeName(RStart, REnd) + 1,
189                        RStart + 1);
190     case PS_InFilenames: {
191       PosPtr SepEnd = consumeAllSeparators(RStart, REnd);
192       if (SepEnd == REnd)
193         return makeState(PS_InRootDir, Path.data(), RStart + 1);
194       PosPtr TkStart = consumeRootName(SepEnd ? SepEnd : RStart, REnd);
195       if (TkStart == REnd) {
196         if (SepEnd)
197           return makeState(PS_InRootDir, SepEnd + 1, RStart + 1);
198         return makeState(PS_InRootName, TkStart + 1, RStart + 1);
199       }
200       TkStart = consumeName(SepEnd, REnd);
201       return makeState(PS_InFilenames, TkStart + 1, SepEnd + 1);
202     }
203     case PS_InRootDir:
204       return makeState(PS_InRootName, Path.data(), RStart + 1);
205     case PS_InRootName:
206     case PS_BeforeBegin:
207       __libcpp_unreachable();
208     }
209   }
210 
211   /// \brief Return a view with the "preferred representation" of the current
212   ///   element. For example trailing separators are represented as a '.'
213   string_view_t operator*() const noexcept {
214     switch (State) {
215     case PS_BeforeBegin:
216     case PS_AtEnd:
217       return PATHSTR("");
218     case PS_InRootDir:
219       if (RawEntry[0] == '\\')
220         return PATHSTR("\\");
221       else
222         return PATHSTR("/");
223     case PS_InTrailingSep:
224       return PATHSTR("");
225     case PS_InRootName:
226     case PS_InFilenames:
227       return RawEntry;
228     }
229     __libcpp_unreachable();
230   }
231 
232   explicit operator bool() const noexcept {
233     return State != PS_BeforeBegin && State != PS_AtEnd;
234   }
235 
236   PathParser& operator++() noexcept {
237     increment();
238     return *this;
239   }
240 
241   PathParser& operator--() noexcept {
242     decrement();
243     return *this;
244   }
245 
246   bool atEnd() const noexcept {
247     return State == PS_AtEnd;
248   }
249 
250   bool inRootDir() const noexcept {
251     return State == PS_InRootDir;
252   }
253 
254   bool inRootName() const noexcept {
255     return State == PS_InRootName;
256   }
257 
258   bool inRootPath() const noexcept {
259     return inRootName() || inRootDir();
260   }
261 
262 private:
263   void makeState(ParserState NewState, PosPtr Start, PosPtr End) noexcept {
264     State = NewState;
265     RawEntry = string_view_t(Start, End - Start);
266   }
267   void makeState(ParserState NewState) noexcept {
268     State = NewState;
269     RawEntry = {};
270   }
271 
272   PosPtr getAfterBack() const noexcept { return Path.data() + Path.size(); }
273 
274   PosPtr getBeforeFront() const noexcept { return Path.data() - 1; }
275 
276   /// \brief Return a pointer to the first character after the currently
277   ///   lexed element.
278   PosPtr getNextTokenStartPos() const noexcept {
279     switch (State) {
280     case PS_BeforeBegin:
281       return Path.data();
282     case PS_InRootName:
283     case PS_InRootDir:
284     case PS_InFilenames:
285       return &RawEntry.back() + 1;
286     case PS_InTrailingSep:
287     case PS_AtEnd:
288       return getAfterBack();
289     }
290     __libcpp_unreachable();
291   }
292 
293   /// \brief Return a pointer to the first character in the currently lexed
294   ///   element.
295   PosPtr getCurrentTokenStartPos() const noexcept {
296     switch (State) {
297     case PS_BeforeBegin:
298     case PS_InRootName:
299       return &Path.front();
300     case PS_InRootDir:
301     case PS_InFilenames:
302     case PS_InTrailingSep:
303       return &RawEntry.front();
304     case PS_AtEnd:
305       return &Path.back() + 1;
306     }
307     __libcpp_unreachable();
308   }
309 
310   // Consume all consecutive separators.
311   PosPtr consumeAllSeparators(PosPtr P, PosPtr End) const noexcept {
312     if (P == nullptr || P == End || !isSeparator(*P))
313       return nullptr;
314     const int Inc = P < End ? 1 : -1;
315     P += Inc;
316     while (P != End && isSeparator(*P))
317       P += Inc;
318     return P;
319   }
320 
321   // Consume exactly N separators, or return nullptr.
322   PosPtr consumeNSeparators(PosPtr P, PosPtr End, int N) const noexcept {
323     PosPtr Ret = consumeAllSeparators(P, End);
324     if (Ret == nullptr)
325       return nullptr;
326     if (P < End) {
327       if (Ret == P + N)
328         return Ret;
329     } else {
330       if (Ret == P - N)
331         return Ret;
332     }
333     return nullptr;
334   }
335 
336   PosPtr consumeName(PosPtr P, PosPtr End) const noexcept {
337     PosPtr Start = P;
338     if (P == nullptr || P == End || isSeparator(*P))
339       return nullptr;
340     const int Inc = P < End ? 1 : -1;
341     P += Inc;
342     while (P != End && !isSeparator(*P))
343       P += Inc;
344     if (P == End && Inc < 0) {
345       // Iterating backwards and consumed all the rest of the input.
346       // Check if the start of the string would have been considered
347       // a root name.
348       PosPtr RootEnd = consumeRootName(End + 1, Start);
349       if (RootEnd)
350         return RootEnd - 1;
351     }
352     return P;
353   }
354 
355   PosPtr consumeDriveLetter(PosPtr P, PosPtr End) const noexcept {
356     if (P == End)
357       return nullptr;
358     if (P < End) {
359       if (P + 1 == End || !isDriveLetter(P[0]) || P[1] != ':')
360         return nullptr;
361       return P + 2;
362     } else {
363       if (P - 1 == End || !isDriveLetter(P[-1]) || P[0] != ':')
364         return nullptr;
365       return P - 2;
366     }
367   }
368 
369   PosPtr consumeNetworkRoot(PosPtr P, PosPtr End) const noexcept {
370     if (P == End)
371       return nullptr;
372     if (P < End)
373       return consumeName(consumeNSeparators(P, End, 2), End);
374     else
375       return consumeNSeparators(consumeName(P, End), End, 2);
376   }
377 
378   PosPtr consumeRootName(PosPtr P, PosPtr End) const noexcept {
379 #if defined(_LIBCPP_WIN32API)
380     if (PosPtr Ret = consumeDriveLetter(P, End))
381       return Ret;
382     if (PosPtr Ret = consumeNetworkRoot(P, End))
383       return Ret;
384 #endif
385     return nullptr;
386   }
387 };
388 
389 string_view_pair separate_filename(string_view_t const& s) {
390   if (s == PATHSTR(".") || s == PATHSTR("..") || s.empty())
391     return string_view_pair{s, PATHSTR("")};
392   auto pos = s.find_last_of('.');
393   if (pos == string_view_t::npos || pos == 0)
394     return string_view_pair{s, string_view_t{}};
395   return string_view_pair{s.substr(0, pos), s.substr(pos)};
396 }
397 
398 string_view_t createView(PosPtr S, PosPtr E) noexcept {
399   return {S, static_cast<size_t>(E - S) + 1};
400 }
401 
402 } // namespace parser
403 } // namespace
404 
405 //                       POSIX HELPERS
406 
407 #if defined(_LIBCPP_WIN32API)
408 namespace detail {
409 
410 errc __win_err_to_errc(int err) {
411   constexpr struct {
412     DWORD win;
413     errc errc;
414   } win_error_mapping[] = {
415       {ERROR_ACCESS_DENIED, errc::permission_denied},
416       {ERROR_ALREADY_EXISTS, errc::file_exists},
417       {ERROR_BAD_NETPATH, errc::no_such_file_or_directory},
418       {ERROR_BAD_PATHNAME, errc::no_such_file_or_directory},
419       {ERROR_BAD_UNIT, errc::no_such_device},
420       {ERROR_BROKEN_PIPE, errc::broken_pipe},
421       {ERROR_BUFFER_OVERFLOW, errc::filename_too_long},
422       {ERROR_BUSY, errc::device_or_resource_busy},
423       {ERROR_BUSY_DRIVE, errc::device_or_resource_busy},
424       {ERROR_CANNOT_MAKE, errc::permission_denied},
425       {ERROR_CANTOPEN, errc::io_error},
426       {ERROR_CANTREAD, errc::io_error},
427       {ERROR_CANTWRITE, errc::io_error},
428       {ERROR_CURRENT_DIRECTORY, errc::permission_denied},
429       {ERROR_DEV_NOT_EXIST, errc::no_such_device},
430       {ERROR_DEVICE_IN_USE, errc::device_or_resource_busy},
431       {ERROR_DIR_NOT_EMPTY, errc::directory_not_empty},
432       {ERROR_DIRECTORY, errc::invalid_argument},
433       {ERROR_DISK_FULL, errc::no_space_on_device},
434       {ERROR_FILE_EXISTS, errc::file_exists},
435       {ERROR_FILE_NOT_FOUND, errc::no_such_file_or_directory},
436       {ERROR_HANDLE_DISK_FULL, errc::no_space_on_device},
437       {ERROR_INVALID_ACCESS, errc::permission_denied},
438       {ERROR_INVALID_DRIVE, errc::no_such_device},
439       {ERROR_INVALID_FUNCTION, errc::function_not_supported},
440       {ERROR_INVALID_HANDLE, errc::invalid_argument},
441       {ERROR_INVALID_NAME, errc::no_such_file_or_directory},
442       {ERROR_INVALID_PARAMETER, errc::invalid_argument},
443       {ERROR_LOCK_VIOLATION, errc::no_lock_available},
444       {ERROR_LOCKED, errc::no_lock_available},
445       {ERROR_NEGATIVE_SEEK, errc::invalid_argument},
446       {ERROR_NOACCESS, errc::permission_denied},
447       {ERROR_NOT_ENOUGH_MEMORY, errc::not_enough_memory},
448       {ERROR_NOT_READY, errc::resource_unavailable_try_again},
449       {ERROR_NOT_SAME_DEVICE, errc::cross_device_link},
450       {ERROR_NOT_SUPPORTED, errc::not_supported},
451       {ERROR_OPEN_FAILED, errc::io_error},
452       {ERROR_OPEN_FILES, errc::device_or_resource_busy},
453       {ERROR_OPERATION_ABORTED, errc::operation_canceled},
454       {ERROR_OUTOFMEMORY, errc::not_enough_memory},
455       {ERROR_PATH_NOT_FOUND, errc::no_such_file_or_directory},
456       {ERROR_READ_FAULT, errc::io_error},
457       {ERROR_REPARSE_TAG_INVALID, errc::invalid_argument},
458       {ERROR_RETRY, errc::resource_unavailable_try_again},
459       {ERROR_SEEK, errc::io_error},
460       {ERROR_SHARING_VIOLATION, errc::permission_denied},
461       {ERROR_TOO_MANY_OPEN_FILES, errc::too_many_files_open},
462       {ERROR_WRITE_FAULT, errc::io_error},
463       {ERROR_WRITE_PROTECT, errc::permission_denied},
464   };
465 
466   for (const auto &pair : win_error_mapping)
467     if (pair.win == static_cast<DWORD>(err))
468       return pair.errc;
469   return errc::invalid_argument;
470 }
471 
472 } // namespace detail
473 #endif
474 
475 namespace detail {
476 namespace {
477 
478 using value_type = path::value_type;
479 using string_type = path::string_type;
480 
481 struct FileDescriptor {
482   const path& name;
483   int fd = -1;
484   StatT m_stat;
485   file_status m_status;
486 
487   template <class... Args>
488   static FileDescriptor create(const path* p, error_code& ec, Args... args) {
489     ec.clear();
490     int fd;
491     if ((fd = detail::open(p->c_str(), args...)) == -1) {
492       ec = capture_errno();
493       return FileDescriptor{p};
494     }
495     return FileDescriptor(p, fd);
496   }
497 
498   template <class... Args>
499   static FileDescriptor create_with_status(const path* p, error_code& ec,
500                                            Args... args) {
501     FileDescriptor fd = create(p, ec, args...);
502     if (!ec)
503       fd.refresh_status(ec);
504 
505     return fd;
506   }
507 
508   file_status get_status() const { return m_status; }
509   StatT const& get_stat() const { return m_stat; }
510 
511   bool status_known() const { return _VSTD_FS::status_known(m_status); }
512 
513   file_status refresh_status(error_code& ec);
514 
515   void close() noexcept {
516     if (fd != -1)
517       detail::close(fd);
518     fd = -1;
519   }
520 
521   FileDescriptor(FileDescriptor&& other)
522       : name(other.name), fd(other.fd), m_stat(other.m_stat),
523         m_status(other.m_status) {
524     other.fd = -1;
525     other.m_status = file_status{};
526   }
527 
528   ~FileDescriptor() { close(); }
529 
530   FileDescriptor(FileDescriptor const&) = delete;
531   FileDescriptor& operator=(FileDescriptor const&) = delete;
532 
533 private:
534   explicit FileDescriptor(const path* p, int fd = -1) : name(*p), fd(fd) {}
535 };
536 
537 perms posix_get_perms(const StatT& st) noexcept {
538   return static_cast<perms>(st.st_mode) & perms::mask;
539 }
540 
541 file_status create_file_status(error_code& m_ec, path const& p,
542                                const StatT& path_stat, error_code* ec) {
543   if (ec)
544     *ec = m_ec;
545   if (m_ec && (m_ec.value() == ENOENT || m_ec.value() == ENOTDIR)) {
546     return file_status(file_type::not_found);
547   } else if (m_ec) {
548     ErrorHandler<void> err("posix_stat", ec, &p);
549     err.report(m_ec, "failed to determine attributes for the specified path");
550     return file_status(file_type::none);
551   }
552   // else
553 
554   file_status fs_tmp;
555   auto const mode = path_stat.st_mode;
556   if (S_ISLNK(mode))
557     fs_tmp.type(file_type::symlink);
558   else if (S_ISREG(mode))
559     fs_tmp.type(file_type::regular);
560   else if (S_ISDIR(mode))
561     fs_tmp.type(file_type::directory);
562   else if (S_ISBLK(mode))
563     fs_tmp.type(file_type::block);
564   else if (S_ISCHR(mode))
565     fs_tmp.type(file_type::character);
566   else if (S_ISFIFO(mode))
567     fs_tmp.type(file_type::fifo);
568   else if (S_ISSOCK(mode))
569     fs_tmp.type(file_type::socket);
570   else
571     fs_tmp.type(file_type::unknown);
572 
573   fs_tmp.permissions(detail::posix_get_perms(path_stat));
574   return fs_tmp;
575 }
576 
577 file_status posix_stat(path const& p, StatT& path_stat, error_code* ec) {
578   error_code m_ec;
579   if (detail::stat(p.c_str(), &path_stat) == -1)
580     m_ec = detail::capture_errno();
581   return create_file_status(m_ec, p, path_stat, ec);
582 }
583 
584 file_status posix_stat(path const& p, error_code* ec) {
585   StatT path_stat;
586   return posix_stat(p, path_stat, ec);
587 }
588 
589 file_status posix_lstat(path const& p, StatT& path_stat, error_code* ec) {
590   error_code m_ec;
591   if (detail::lstat(p.c_str(), &path_stat) == -1)
592     m_ec = detail::capture_errno();
593   return create_file_status(m_ec, p, path_stat, ec);
594 }
595 
596 file_status posix_lstat(path const& p, error_code* ec) {
597   StatT path_stat;
598   return posix_lstat(p, path_stat, ec);
599 }
600 
601 // http://pubs.opengroup.org/onlinepubs/9699919799/functions/ftruncate.html
602 bool posix_ftruncate(const FileDescriptor& fd, off_t to_size, error_code& ec) {
603   if (detail::ftruncate(fd.fd, to_size) == -1) {
604     ec = capture_errno();
605     return true;
606   }
607   ec.clear();
608   return false;
609 }
610 
611 bool posix_fchmod(const FileDescriptor& fd, const StatT& st, error_code& ec) {
612   if (detail::fchmod(fd.fd, st.st_mode) == -1) {
613     ec = capture_errno();
614     return true;
615   }
616   ec.clear();
617   return false;
618 }
619 
620 bool stat_equivalent(const StatT& st1, const StatT& st2) {
621   return (st1.st_dev == st2.st_dev && st1.st_ino == st2.st_ino);
622 }
623 
624 file_status FileDescriptor::refresh_status(error_code& ec) {
625   // FD must be open and good.
626   m_status = file_status{};
627   m_stat = {};
628   error_code m_ec;
629   if (detail::fstat(fd, &m_stat) == -1)
630     m_ec = capture_errno();
631   m_status = create_file_status(m_ec, name, m_stat, &ec);
632   return m_status;
633 }
634 } // namespace
635 } // end namespace detail
636 
637 using detail::capture_errno;
638 using detail::ErrorHandler;
639 using detail::StatT;
640 using detail::TimeSpec;
641 using parser::createView;
642 using parser::PathParser;
643 using parser::string_view_t;
644 
645 const bool _FilesystemClock::is_steady;
646 
647 _FilesystemClock::time_point _FilesystemClock::now() noexcept {
648   typedef chrono::duration<rep> __secs;
649 #if defined(_LIBCPP_WIN32API)
650   typedef chrono::duration<rep, nano> __nsecs;
651   FILETIME time;
652   GetSystemTimeAsFileTime(&time);
653   TimeSpec tp = detail::filetime_to_timespec(time);
654   return time_point(__secs(tp.tv_sec) +
655                     chrono::duration_cast<duration>(__nsecs(tp.tv_nsec)));
656 #elif defined(CLOCK_REALTIME)
657   typedef chrono::duration<rep, nano> __nsecs;
658   struct timespec tp;
659   if (0 != clock_gettime(CLOCK_REALTIME, &tp))
660     __throw_system_error(errno, "clock_gettime(CLOCK_REALTIME) failed");
661   return time_point(__secs(tp.tv_sec) +
662                     chrono::duration_cast<duration>(__nsecs(tp.tv_nsec)));
663 #else
664   typedef chrono::duration<rep, micro> __microsecs;
665   timeval tv;
666   gettimeofday(&tv, 0);
667   return time_point(__secs(tv.tv_sec) + __microsecs(tv.tv_usec));
668 #endif // CLOCK_REALTIME
669 }
670 
671 filesystem_error::~filesystem_error() {}
672 
673 void filesystem_error::__create_what(int __num_paths) {
674   const char* derived_what = system_error::what();
675   __storage_->__what_ = [&]() -> string {
676     switch (__num_paths) {
677     case 0:
678       return detail::format_string("filesystem error: %s", derived_what);
679     case 1:
680       return detail::format_string("filesystem error: %s [" PATH_CSTR_FMT "]",
681                                    derived_what, path1().c_str());
682     case 2:
683       return detail::format_string("filesystem error: %s [" PATH_CSTR_FMT "] [" PATH_CSTR_FMT "]",
684                                    derived_what, path1().c_str(), path2().c_str());
685     }
686     __libcpp_unreachable();
687   }();
688 }
689 
690 static path __do_absolute(const path& p, path* cwd, error_code* ec) {
691   if (ec)
692     ec->clear();
693   if (p.is_absolute())
694     return p;
695   *cwd = __current_path(ec);
696   if (ec && *ec)
697     return {};
698   return (*cwd) / p;
699 }
700 
701 path __absolute(const path& p, error_code* ec) {
702   path cwd;
703   return __do_absolute(p, &cwd, ec);
704 }
705 
706 path __canonical(path const& orig_p, error_code* ec) {
707   path cwd;
708   ErrorHandler<path> err("canonical", ec, &orig_p, &cwd);
709 
710   path p = __do_absolute(orig_p, &cwd, ec);
711 #if (defined(_POSIX_VERSION) && _POSIX_VERSION >= 200112) || defined(_LIBCPP_WIN32API)
712   std::unique_ptr<path::value_type, decltype(&::free)>
713     hold(detail::realpath(p.c_str(), nullptr), &::free);
714   if (hold.get() == nullptr)
715     return err.report(capture_errno());
716   return {hold.get()};
717 #else
718   #if defined(__MVS__) && !defined(PATH_MAX)
719     path::value_type buff[ _XOPEN_PATH_MAX + 1 ];
720   #else
721     path::value_type buff[PATH_MAX + 1];
722   #endif
723   path::value_type* ret;
724   if ((ret = detail::realpath(p.c_str(), buff)) == nullptr)
725     return err.report(capture_errno());
726   return {ret};
727 #endif
728 }
729 
730 void __copy(const path& from, const path& to, copy_options options,
731             error_code* ec) {
732   ErrorHandler<void> err("copy", ec, &from, &to);
733 
734   const bool sym_status = bool(
735       options & (copy_options::create_symlinks | copy_options::skip_symlinks));
736 
737   const bool sym_status2 = bool(options & copy_options::copy_symlinks);
738 
739   error_code m_ec1;
740   StatT f_st = {};
741   const file_status f = sym_status || sym_status2
742                             ? detail::posix_lstat(from, f_st, &m_ec1)
743                             : detail::posix_stat(from, f_st, &m_ec1);
744   if (m_ec1)
745     return err.report(m_ec1);
746 
747   StatT t_st = {};
748   const file_status t = sym_status ? detail::posix_lstat(to, t_st, &m_ec1)
749                                    : detail::posix_stat(to, t_st, &m_ec1);
750 
751   if (not status_known(t))
752     return err.report(m_ec1);
753 
754   if (!exists(f) || is_other(f) || is_other(t) ||
755       (is_directory(f) && is_regular_file(t)) ||
756       detail::stat_equivalent(f_st, t_st)) {
757     return err.report(errc::function_not_supported);
758   }
759 
760   if (ec)
761     ec->clear();
762 
763   if (is_symlink(f)) {
764     if (bool(copy_options::skip_symlinks & options)) {
765       // do nothing
766     } else if (not exists(t)) {
767       __copy_symlink(from, to, ec);
768     } else {
769       return err.report(errc::file_exists);
770     }
771     return;
772   } else if (is_regular_file(f)) {
773     if (bool(copy_options::directories_only & options)) {
774       // do nothing
775     } else if (bool(copy_options::create_symlinks & options)) {
776       __create_symlink(from, to, ec);
777     } else if (bool(copy_options::create_hard_links & options)) {
778       __create_hard_link(from, to, ec);
779     } else if (is_directory(t)) {
780       __copy_file(from, to / from.filename(), options, ec);
781     } else {
782       __copy_file(from, to, options, ec);
783     }
784     return;
785   } else if (is_directory(f) && bool(copy_options::create_symlinks & options)) {
786     return err.report(errc::is_a_directory);
787   } else if (is_directory(f) && (bool(copy_options::recursive & options) ||
788                                  copy_options::none == options)) {
789 
790     if (!exists(t)) {
791       // create directory to with attributes from 'from'.
792       __create_directory(to, from, ec);
793       if (ec && *ec) {
794         return;
795       }
796     }
797     directory_iterator it =
798         ec ? directory_iterator(from, *ec) : directory_iterator(from);
799     if (ec && *ec) {
800       return;
801     }
802     error_code m_ec2;
803     for (; it != directory_iterator(); it.increment(m_ec2)) {
804       if (m_ec2) {
805         return err.report(m_ec2);
806       }
807       __copy(it->path(), to / it->path().filename(),
808              options | copy_options::__in_recursive_copy, ec);
809       if (ec && *ec) {
810         return;
811       }
812     }
813   }
814 }
815 
816 namespace detail {
817 namespace {
818 
819 #if defined(_LIBCPP_FILESYSTEM_USE_SENDFILE)
820   bool copy_file_impl(FileDescriptor& read_fd, FileDescriptor& write_fd, error_code& ec) {
821     size_t count = read_fd.get_stat().st_size;
822     do {
823       ssize_t res;
824       if ((res = ::sendfile(write_fd.fd, read_fd.fd, nullptr, count)) == -1) {
825         ec = capture_errno();
826         return false;
827       }
828       count -= res;
829     } while (count > 0);
830 
831     ec.clear();
832 
833     return true;
834   }
835 #elif defined(_LIBCPP_FILESYSTEM_USE_COPYFILE)
836   bool copy_file_impl(FileDescriptor& read_fd, FileDescriptor& write_fd, error_code& ec) {
837     struct CopyFileState {
838       copyfile_state_t state;
839       CopyFileState() { state = copyfile_state_alloc(); }
840       ~CopyFileState() { copyfile_state_free(state); }
841 
842     private:
843       CopyFileState(CopyFileState const&) = delete;
844       CopyFileState& operator=(CopyFileState const&) = delete;
845     };
846 
847     CopyFileState cfs;
848     if (fcopyfile(read_fd.fd, write_fd.fd, cfs.state, COPYFILE_DATA) < 0) {
849       ec = capture_errno();
850       return false;
851     }
852 
853     ec.clear();
854     return true;
855   }
856 #elif defined(_LIBCPP_FILESYSTEM_USE_FSTREAM)
857   bool copy_file_impl(FileDescriptor& read_fd, FileDescriptor& write_fd, error_code& ec) {
858     ifstream in;
859     in.__open(read_fd.fd, ios::binary);
860     if (!in.is_open()) {
861       // This assumes that __open didn't reset the error code.
862       ec = capture_errno();
863       return false;
864     }
865     read_fd.fd = -1;
866     ofstream out;
867     out.__open(write_fd.fd, ios::binary);
868     if (!out.is_open()) {
869       ec = capture_errno();
870       return false;
871     }
872     write_fd.fd = -1;
873 
874     if (in.good() && out.good()) {
875       using InIt = istreambuf_iterator<char>;
876       using OutIt = ostreambuf_iterator<char>;
877       InIt bin(in);
878       InIt ein;
879       OutIt bout(out);
880       copy(bin, ein, bout);
881     }
882     if (out.fail() || in.fail()) {
883       ec = make_error_code(errc::io_error);
884       return false;
885     }
886 
887     ec.clear();
888     return true;
889   }
890 #else
891 # error "Unknown implementation for copy_file_impl"
892 #endif // copy_file_impl implementation
893 
894 } // end anonymous namespace
895 } // end namespace detail
896 
897 bool __copy_file(const path& from, const path& to, copy_options options,
898                  error_code* ec) {
899   using detail::FileDescriptor;
900   ErrorHandler<bool> err("copy_file", ec, &to, &from);
901 
902   error_code m_ec;
903   FileDescriptor from_fd = FileDescriptor::create_with_status(
904       &from, m_ec, O_RDONLY | O_NONBLOCK | O_BINARY);
905   if (m_ec)
906     return err.report(m_ec);
907 
908   auto from_st = from_fd.get_status();
909   StatT const& from_stat = from_fd.get_stat();
910   if (!is_regular_file(from_st)) {
911     if (not m_ec)
912       m_ec = make_error_code(errc::not_supported);
913     return err.report(m_ec);
914   }
915 
916   const bool skip_existing = bool(copy_options::skip_existing & options);
917   const bool update_existing = bool(copy_options::update_existing & options);
918   const bool overwrite_existing =
919       bool(copy_options::overwrite_existing & options);
920 
921   StatT to_stat_path;
922   file_status to_st = detail::posix_stat(to, to_stat_path, &m_ec);
923   if (!status_known(to_st))
924     return err.report(m_ec);
925 
926   const bool to_exists = exists(to_st);
927   if (to_exists && !is_regular_file(to_st))
928     return err.report(errc::not_supported);
929 
930   if (to_exists && detail::stat_equivalent(from_stat, to_stat_path))
931     return err.report(errc::file_exists);
932 
933   if (to_exists && skip_existing)
934     return false;
935 
936   bool ShouldCopy = [&]() {
937     if (to_exists && update_existing) {
938       auto from_time = detail::extract_mtime(from_stat);
939       auto to_time = detail::extract_mtime(to_stat_path);
940       if (from_time.tv_sec < to_time.tv_sec)
941         return false;
942       if (from_time.tv_sec == to_time.tv_sec &&
943           from_time.tv_nsec <= to_time.tv_nsec)
944         return false;
945       return true;
946     }
947     if (!to_exists || overwrite_existing)
948       return true;
949     return err.report(errc::file_exists);
950   }();
951   if (!ShouldCopy)
952     return false;
953 
954   // Don't truncate right away. We may not be opening the file we originally
955   // looked at; we'll check this later.
956   int to_open_flags = O_WRONLY | O_BINARY;
957   if (!to_exists)
958     to_open_flags |= O_CREAT;
959   FileDescriptor to_fd = FileDescriptor::create_with_status(
960       &to, m_ec, to_open_flags, from_stat.st_mode);
961   if (m_ec)
962     return err.report(m_ec);
963 
964   if (to_exists) {
965     // Check that the file we initially stat'ed is equivalent to the one
966     // we opened.
967     // FIXME: report this better.
968     if (!detail::stat_equivalent(to_stat_path, to_fd.get_stat()))
969       return err.report(errc::bad_file_descriptor);
970 
971     // Set the permissions and truncate the file we opened.
972     if (detail::posix_fchmod(to_fd, from_stat, m_ec))
973       return err.report(m_ec);
974     if (detail::posix_ftruncate(to_fd, 0, m_ec))
975       return err.report(m_ec);
976   }
977 
978   if (!copy_file_impl(from_fd, to_fd, m_ec)) {
979     // FIXME: Remove the dest file if we failed, and it didn't exist previously.
980     return err.report(m_ec);
981   }
982 
983   return true;
984 }
985 
986 void __copy_symlink(const path& existing_symlink, const path& new_symlink,
987                     error_code* ec) {
988   const path real_path(__read_symlink(existing_symlink, ec));
989   if (ec && *ec) {
990     return;
991   }
992 #if defined(_LIBCPP_WIN32API)
993   error_code local_ec;
994   if (is_directory(real_path, local_ec))
995     __create_directory_symlink(real_path, new_symlink, ec);
996   else
997 #endif
998     __create_symlink(real_path, new_symlink, ec);
999 }
1000 
1001 bool __create_directories(const path& p, error_code* ec) {
1002   ErrorHandler<bool> err("create_directories", ec, &p);
1003 
1004   error_code m_ec;
1005   auto const st = detail::posix_stat(p, &m_ec);
1006   if (!status_known(st))
1007     return err.report(m_ec);
1008   else if (is_directory(st))
1009     return false;
1010   else if (exists(st))
1011     return err.report(errc::file_exists);
1012 
1013   const path parent = p.parent_path();
1014   if (!parent.empty()) {
1015     const file_status parent_st = status(parent, m_ec);
1016     if (not status_known(parent_st))
1017       return err.report(m_ec);
1018     if (not exists(parent_st)) {
1019       if (parent == p)
1020         return err.report(errc::invalid_argument);
1021       __create_directories(parent, ec);
1022       if (ec && *ec) {
1023         return false;
1024       }
1025     } else if (not is_directory(parent_st))
1026       return err.report(errc::not_a_directory);
1027   }
1028   bool ret = __create_directory(p, &m_ec);
1029   if (m_ec)
1030     return err.report(m_ec);
1031   return ret;
1032 }
1033 
1034 bool __create_directory(const path& p, error_code* ec) {
1035   ErrorHandler<bool> err("create_directory", ec, &p);
1036 
1037   if (detail::mkdir(p.c_str(), static_cast<int>(perms::all)) == 0)
1038     return true;
1039 
1040   if (errno != EEXIST)
1041     return err.report(capture_errno());
1042   error_code mec = capture_errno();
1043   error_code ignored_ec;
1044   const file_status st = status(p, ignored_ec);
1045   if (!is_directory(st))
1046     return err.report(mec);
1047   return false;
1048 }
1049 
1050 bool __create_directory(path const& p, path const& attributes, error_code* ec) {
1051   ErrorHandler<bool> err("create_directory", ec, &p, &attributes);
1052 
1053   StatT attr_stat;
1054   error_code mec;
1055   file_status st = detail::posix_stat(attributes, attr_stat, &mec);
1056   if (!status_known(st))
1057     return err.report(mec);
1058   if (!is_directory(st))
1059     return err.report(errc::not_a_directory,
1060                       "the specified attribute path is invalid");
1061 
1062   if (detail::mkdir(p.c_str(), attr_stat.st_mode) == 0)
1063     return true;
1064 
1065   if (errno != EEXIST)
1066     return err.report(capture_errno());
1067 
1068   mec = capture_errno();
1069   error_code ignored_ec;
1070   st = status(p, ignored_ec);
1071   if (!is_directory(st))
1072     return err.report(mec);
1073   return false;
1074 }
1075 
1076 void __create_directory_symlink(path const& from, path const& to,
1077                                 error_code* ec) {
1078   ErrorHandler<void> err("create_directory_symlink", ec, &from, &to);
1079   if (detail::symlink_dir(from.c_str(), to.c_str()) == -1)
1080     return err.report(capture_errno());
1081 }
1082 
1083 void __create_hard_link(const path& from, const path& to, error_code* ec) {
1084   ErrorHandler<void> err("create_hard_link", ec, &from, &to);
1085   if (detail::link(from.c_str(), to.c_str()) == -1)
1086     return err.report(capture_errno());
1087 }
1088 
1089 void __create_symlink(path const& from, path const& to, error_code* ec) {
1090   ErrorHandler<void> err("create_symlink", ec, &from, &to);
1091   if (detail::symlink_file(from.c_str(), to.c_str()) == -1)
1092     return err.report(capture_errno());
1093 }
1094 
1095 path __current_path(error_code* ec) {
1096   ErrorHandler<path> err("current_path", ec);
1097 
1098 #if defined(_LIBCPP_WIN32API) || defined(__GLIBC__) || defined(__APPLE__)
1099   // Common extension outside of POSIX getcwd() spec, without needing to
1100   // preallocate a buffer. Also supported by a number of other POSIX libcs.
1101   int size = 0;
1102   path::value_type* ptr = nullptr;
1103   typedef decltype(&::free) Deleter;
1104   Deleter deleter = &::free;
1105 #else
1106   auto size = ::pathconf(".", _PC_PATH_MAX);
1107   _LIBCPP_ASSERT(size >= 0, "pathconf returned a 0 as max size");
1108 
1109   auto buff = unique_ptr<path::value_type[]>(new path::value_type[size + 1]);
1110   path::value_type* ptr = buff.get();
1111 
1112   // Preallocated buffer, don't free the buffer in the second unique_ptr
1113   // below.
1114   struct Deleter { void operator()(void*) const {} };
1115   Deleter deleter;
1116 #endif
1117 
1118   unique_ptr<path::value_type, Deleter> hold(detail::getcwd(ptr, size),
1119                                              deleter);
1120   if (hold.get() == nullptr)
1121     return err.report(capture_errno(), "call to getcwd failed");
1122 
1123   return {hold.get()};
1124 }
1125 
1126 void __current_path(const path& p, error_code* ec) {
1127   ErrorHandler<void> err("current_path", ec, &p);
1128   if (detail::chdir(p.c_str()) == -1)
1129     err.report(capture_errno());
1130 }
1131 
1132 bool __equivalent(const path& p1, const path& p2, error_code* ec) {
1133   ErrorHandler<bool> err("equivalent", ec, &p1, &p2);
1134 
1135   error_code ec1, ec2;
1136   StatT st1 = {}, st2 = {};
1137   auto s1 = detail::posix_stat(p1.native(), st1, &ec1);
1138   if (!exists(s1))
1139     return err.report(errc::not_supported);
1140   auto s2 = detail::posix_stat(p2.native(), st2, &ec2);
1141   if (!exists(s2))
1142     return err.report(errc::not_supported);
1143 
1144   return detail::stat_equivalent(st1, st2);
1145 }
1146 
1147 uintmax_t __file_size(const path& p, error_code* ec) {
1148   ErrorHandler<uintmax_t> err("file_size", ec, &p);
1149 
1150   error_code m_ec;
1151   StatT st;
1152   file_status fst = detail::posix_stat(p, st, &m_ec);
1153   if (!exists(fst) || !is_regular_file(fst)) {
1154     errc error_kind =
1155         is_directory(fst) ? errc::is_a_directory : errc::not_supported;
1156     if (!m_ec)
1157       m_ec = make_error_code(error_kind);
1158     return err.report(m_ec);
1159   }
1160   // is_regular_file(p) == true
1161   return static_cast<uintmax_t>(st.st_size);
1162 }
1163 
1164 uintmax_t __hard_link_count(const path& p, error_code* ec) {
1165   ErrorHandler<uintmax_t> err("hard_link_count", ec, &p);
1166 
1167   error_code m_ec;
1168   StatT st;
1169   detail::posix_stat(p, st, &m_ec);
1170   if (m_ec)
1171     return err.report(m_ec);
1172   return static_cast<uintmax_t>(st.st_nlink);
1173 }
1174 
1175 bool __fs_is_empty(const path& p, error_code* ec) {
1176   ErrorHandler<bool> err("is_empty", ec, &p);
1177 
1178   error_code m_ec;
1179   StatT pst;
1180   auto st = detail::posix_stat(p, pst, &m_ec);
1181   if (m_ec)
1182     return err.report(m_ec);
1183   else if (!is_directory(st) && !is_regular_file(st))
1184     return err.report(errc::not_supported);
1185   else if (is_directory(st)) {
1186     auto it = ec ? directory_iterator(p, *ec) : directory_iterator(p);
1187     if (ec && *ec)
1188       return false;
1189     return it == directory_iterator{};
1190   } else if (is_regular_file(st))
1191     return static_cast<uintmax_t>(pst.st_size) == 0;
1192 
1193   __libcpp_unreachable();
1194 }
1195 
1196 static file_time_type __extract_last_write_time(const path& p, const StatT& st,
1197                                                 error_code* ec) {
1198   using detail::fs_time;
1199   ErrorHandler<file_time_type> err("last_write_time", ec, &p);
1200 
1201   auto ts = detail::extract_mtime(st);
1202   if (!fs_time::is_representable(ts))
1203     return err.report(errc::value_too_large);
1204 
1205   return fs_time::convert_from_timespec(ts);
1206 }
1207 
1208 file_time_type __last_write_time(const path& p, error_code* ec) {
1209   using namespace chrono;
1210   ErrorHandler<file_time_type> err("last_write_time", ec, &p);
1211 
1212   error_code m_ec;
1213   StatT st;
1214   detail::posix_stat(p, st, &m_ec);
1215   if (m_ec)
1216     return err.report(m_ec);
1217   return __extract_last_write_time(p, st, ec);
1218 }
1219 
1220 void __last_write_time(const path& p, file_time_type new_time, error_code* ec) {
1221   using detail::fs_time;
1222   ErrorHandler<void> err("last_write_time", ec, &p);
1223 
1224 #if defined(_LIBCPP_WIN32API)
1225   TimeSpec ts;
1226   if (!fs_time::convert_to_timespec(ts, new_time))
1227     return err.report(errc::value_too_large);
1228   detail::WinHandle h(p.c_str(), FILE_WRITE_ATTRIBUTES, 0);
1229   if (!h)
1230     return err.report(detail::make_windows_error(GetLastError()));
1231   FILETIME last_write = timespec_to_filetime(ts);
1232   if (!SetFileTime(h, nullptr, nullptr, &last_write))
1233     return err.report(detail::make_windows_error(GetLastError()));
1234 #else
1235   error_code m_ec;
1236   array<TimeSpec, 2> tbuf;
1237 #if !defined(_LIBCPP_USE_UTIMENSAT)
1238   // This implementation has a race condition between determining the
1239   // last access time and attempting to set it to the same value using
1240   // ::utimes
1241   StatT st;
1242   file_status fst = detail::posix_stat(p, st, &m_ec);
1243   if (m_ec)
1244     return err.report(m_ec);
1245   tbuf[0] = detail::extract_atime(st);
1246 #else
1247   tbuf[0].tv_sec = 0;
1248   tbuf[0].tv_nsec = UTIME_OMIT;
1249 #endif
1250   if (!fs_time::convert_to_timespec(tbuf[1], new_time))
1251     return err.report(errc::value_too_large);
1252 
1253   detail::set_file_times(p, tbuf, m_ec);
1254   if (m_ec)
1255     return err.report(m_ec);
1256 #endif
1257 }
1258 
1259 void __permissions(const path& p, perms prms, perm_options opts,
1260                    error_code* ec) {
1261   ErrorHandler<void> err("permissions", ec, &p);
1262 
1263   auto has_opt = [&](perm_options o) { return bool(o & opts); };
1264   const bool resolve_symlinks = !has_opt(perm_options::nofollow);
1265   const bool add_perms = has_opt(perm_options::add);
1266   const bool remove_perms = has_opt(perm_options::remove);
1267   _LIBCPP_ASSERT(
1268       (add_perms + remove_perms + has_opt(perm_options::replace)) == 1,
1269       "One and only one of the perm_options constants replace, add, or remove "
1270       "is present in opts");
1271 
1272   bool set_sym_perms = false;
1273   prms &= perms::mask;
1274   if (!resolve_symlinks || (add_perms || remove_perms)) {
1275     error_code m_ec;
1276     file_status st = resolve_symlinks ? detail::posix_stat(p, &m_ec)
1277                                       : detail::posix_lstat(p, &m_ec);
1278     set_sym_perms = is_symlink(st);
1279     if (m_ec)
1280       return err.report(m_ec);
1281     _LIBCPP_ASSERT(st.permissions() != perms::unknown,
1282                    "Permissions unexpectedly unknown");
1283     if (add_perms)
1284       prms |= st.permissions();
1285     else if (remove_perms)
1286       prms = st.permissions() & ~prms;
1287   }
1288   const auto real_perms = static_cast<detail::ModeT>(prms & perms::mask);
1289 
1290 #if defined(AT_SYMLINK_NOFOLLOW) && defined(AT_FDCWD)
1291   const int flags = set_sym_perms ? AT_SYMLINK_NOFOLLOW : 0;
1292   if (detail::fchmodat(AT_FDCWD, p.c_str(), real_perms, flags) == -1) {
1293     return err.report(capture_errno());
1294   }
1295 #else
1296   if (set_sym_perms)
1297     return err.report(errc::operation_not_supported);
1298   if (::chmod(p.c_str(), real_perms) == -1) {
1299     return err.report(capture_errno());
1300   }
1301 #endif
1302 }
1303 
1304 path __read_symlink(const path& p, error_code* ec) {
1305   ErrorHandler<path> err("read_symlink", ec, &p);
1306 
1307 #if defined(PATH_MAX) || defined(MAX_SYMLINK_SIZE)
1308   struct NullDeleter { void operator()(void*) const {} };
1309 #ifdef MAX_SYMLINK_SIZE
1310   const size_t size = MAX_SYMLINK_SIZE + 1;
1311 #else
1312   const size_t size = PATH_MAX + 1;
1313 #endif
1314   path::value_type stack_buff[size];
1315   auto buff = std::unique_ptr<path::value_type[], NullDeleter>(stack_buff);
1316 #else
1317   StatT sb;
1318   if (detail::lstat(p.c_str(), &sb) == -1) {
1319     return err.report(capture_errno());
1320   }
1321   const size_t size = sb.st_size + 1;
1322   auto buff = unique_ptr<path::value_type[]>(new path::value_type[size]);
1323 #endif
1324   detail::SSizeT ret;
1325   if ((ret = detail::readlink(p.c_str(), buff.get(), size)) == -1)
1326     return err.report(capture_errno());
1327   _LIBCPP_ASSERT(ret > 0, "TODO");
1328   if (static_cast<size_t>(ret) >= size)
1329     return err.report(errc::value_too_large);
1330   buff[ret] = 0;
1331   return {buff.get()};
1332 }
1333 
1334 bool __remove(const path& p, error_code* ec) {
1335   ErrorHandler<bool> err("remove", ec, &p);
1336   if (detail::remove(p.c_str()) == -1) {
1337     if (errno != ENOENT)
1338       err.report(capture_errno());
1339     return false;
1340   }
1341   return true;
1342 }
1343 
1344 // We currently have two implementations of `__remove_all`. The first one is general and
1345 // used on platforms where we don't have access to the `openat()` family of POSIX functions.
1346 // That implementation uses `directory_iterator`, however it is vulnerable to some race
1347 // conditions, see https://reviews.llvm.org/D118134 for details.
1348 //
1349 // The second implementation is used on platforms where `openat()` & friends are available,
1350 // and it threads file descriptors through recursive calls to avoid such race conditions.
1351 #if defined(_LIBCPP_WIN32API)
1352 # define REMOVE_ALL_USE_DIRECTORY_ITERATOR
1353 #endif
1354 
1355 #if defined(REMOVE_ALL_USE_DIRECTORY_ITERATOR)
1356 
1357 namespace {
1358 
1359 uintmax_t remove_all_impl(path const& p, error_code& ec) {
1360   const auto npos = static_cast<uintmax_t>(-1);
1361   const file_status st = __symlink_status(p, &ec);
1362   if (ec)
1363     return npos;
1364   uintmax_t count = 1;
1365   if (is_directory(st)) {
1366     for (directory_iterator it(p, ec); !ec && it != directory_iterator();
1367          it.increment(ec)) {
1368       auto other_count = remove_all_impl(it->path(), ec);
1369       if (ec)
1370         return npos;
1371       count += other_count;
1372     }
1373     if (ec)
1374       return npos;
1375   }
1376   if (!__remove(p, &ec))
1377     return npos;
1378   return count;
1379 }
1380 
1381 } // end namespace
1382 
1383 uintmax_t __remove_all(const path& p, error_code* ec) {
1384   ErrorHandler<uintmax_t> err("remove_all", ec, &p);
1385 
1386   error_code mec;
1387   auto count = remove_all_impl(p, mec);
1388   if (mec) {
1389     if (mec == errc::no_such_file_or_directory)
1390       return 0;
1391     return err.report(mec);
1392   }
1393   return count;
1394 }
1395 
1396 #else // !REMOVE_ALL_USE_DIRECTORY_ITERATOR
1397 
1398 namespace {
1399 
1400 template <class Cleanup>
1401 struct scope_exit {
1402   explicit scope_exit(Cleanup const& cleanup)
1403     : cleanup_(cleanup)
1404   { }
1405 
1406   ~scope_exit() { cleanup_(); }
1407 
1408 private:
1409   Cleanup cleanup_;
1410 };
1411 
1412 uintmax_t remove_all_impl(int parent_directory, const path& p, error_code& ec) {
1413   // First, try to open the path as a directory.
1414   const int options = O_CLOEXEC | O_RDONLY | O_DIRECTORY | O_NOFOLLOW;
1415   int fd = ::openat(parent_directory, p.c_str(), options);
1416   if (fd != -1) {
1417     // If that worked, iterate over the contents of the directory and
1418     // remove everything in it, recursively.
1419     DIR* stream = ::fdopendir(fd);
1420     if (stream == nullptr) {
1421       ::close(fd);
1422       ec = detail::capture_errno();
1423       return 0;
1424     }
1425     // Note: `::closedir` will also close the associated file descriptor, so
1426     // there should be no call to `close(fd)`.
1427     scope_exit close_stream([=] { ::closedir(stream); });
1428 
1429     uintmax_t count = 0;
1430     while (true) {
1431       auto [str, type] = detail::posix_readdir(stream, ec);
1432       static_assert(std::is_same_v<decltype(str), std::string_view>);
1433       if (str == "." || str == "..") {
1434         continue;
1435       } else if (ec || str.empty()) {
1436         break; // we're done iterating through the directory
1437       } else {
1438         count += remove_all_impl(fd, str, ec);
1439       }
1440     }
1441 
1442     // Then, remove the now-empty directory itself.
1443     if (::unlinkat(parent_directory, p.c_str(), AT_REMOVEDIR) == -1) {
1444       ec = detail::capture_errno();
1445       return count;
1446     }
1447 
1448     return count + 1; // the contents of the directory + the directory itself
1449   }
1450 
1451   ec = detail::capture_errno();
1452 
1453   // If we failed to open `p` because it didn't exist, it's not an
1454   // error -- it might have moved or have been deleted already.
1455   if (ec == errc::no_such_file_or_directory) {
1456     ec.clear();
1457     return 0;
1458   }
1459 
1460   // If opening `p` failed because it wasn't a directory, remove it as
1461   // a normal file instead. Note that `openat()` can return either ENOTDIR
1462   // or ELOOP depending on the exact reason of the failure.
1463   if (ec == errc::not_a_directory || ec == errc::too_many_symbolic_link_levels) {
1464     ec.clear();
1465     if (::unlinkat(parent_directory, p.c_str(), /* flags = */0) == -1) {
1466       ec = detail::capture_errno();
1467       return 0;
1468     }
1469     return 1;
1470   }
1471 
1472   // Otherwise, it's a real error -- we don't remove anything.
1473   return 0;
1474 }
1475 
1476 } // end namespace
1477 
1478 uintmax_t __remove_all(const path& p, error_code* ec) {
1479   ErrorHandler<uintmax_t> err("remove_all", ec, &p);
1480   error_code mec;
1481   uintmax_t count = remove_all_impl(AT_FDCWD, p, mec);
1482   if (mec)
1483     return err.report(mec);
1484   return count;
1485 }
1486 
1487 #endif // REMOVE_ALL_USE_DIRECTORY_ITERATOR
1488 
1489 void __rename(const path& from, const path& to, error_code* ec) {
1490   ErrorHandler<void> err("rename", ec, &from, &to);
1491   if (detail::rename(from.c_str(), to.c_str()) == -1)
1492     err.report(capture_errno());
1493 }
1494 
1495 void __resize_file(const path& p, uintmax_t size, error_code* ec) {
1496   ErrorHandler<void> err("resize_file", ec, &p);
1497   if (detail::truncate(p.c_str(), static_cast< ::off_t>(size)) == -1)
1498     return err.report(capture_errno());
1499 }
1500 
1501 space_info __space(const path& p, error_code* ec) {
1502   ErrorHandler<void> err("space", ec, &p);
1503   space_info si;
1504   detail::StatVFS m_svfs = {};
1505   if (detail::statvfs(p.c_str(), &m_svfs) == -1) {
1506     err.report(capture_errno());
1507     si.capacity = si.free = si.available = static_cast<uintmax_t>(-1);
1508     return si;
1509   }
1510   // Multiply with overflow checking.
1511   auto do_mult = [&](uintmax_t& out, uintmax_t other) {
1512     out = other * m_svfs.f_frsize;
1513     if (other == 0 || out / other != m_svfs.f_frsize)
1514       out = static_cast<uintmax_t>(-1);
1515   };
1516   do_mult(si.capacity, m_svfs.f_blocks);
1517   do_mult(si.free, m_svfs.f_bfree);
1518   do_mult(si.available, m_svfs.f_bavail);
1519   return si;
1520 }
1521 
1522 file_status __status(const path& p, error_code* ec) {
1523   return detail::posix_stat(p, ec);
1524 }
1525 
1526 file_status __symlink_status(const path& p, error_code* ec) {
1527   return detail::posix_lstat(p, ec);
1528 }
1529 
1530 path __temp_directory_path(error_code* ec) {
1531   ErrorHandler<path> err("temp_directory_path", ec);
1532 
1533 #if defined(_LIBCPP_WIN32API)
1534   wchar_t buf[MAX_PATH];
1535   DWORD retval = GetTempPathW(MAX_PATH, buf);
1536   if (!retval)
1537     return err.report(detail::make_windows_error(GetLastError()));
1538   if (retval > MAX_PATH)
1539     return err.report(errc::filename_too_long);
1540   // GetTempPathW returns a path with a trailing slash, which we
1541   // shouldn't include for consistency.
1542   if (buf[retval-1] == L'\\')
1543     buf[retval-1] = L'\0';
1544   path p(buf);
1545 #else
1546   const char* env_paths[] = {"TMPDIR", "TMP", "TEMP", "TEMPDIR"};
1547   const char* ret = nullptr;
1548 
1549   for (auto& ep : env_paths)
1550     if ((ret = getenv(ep)))
1551       break;
1552   if (ret == nullptr)
1553     ret = "/tmp";
1554 
1555   path p(ret);
1556 #endif
1557   error_code m_ec;
1558   file_status st = detail::posix_stat(p, &m_ec);
1559   if (!status_known(st))
1560     return err.report(m_ec, "cannot access path " PATH_CSTR_FMT, p.c_str());
1561 
1562   if (!exists(st) || !is_directory(st))
1563     return err.report(errc::not_a_directory,
1564                       "path " PATH_CSTR_FMT " is not a directory", p.c_str());
1565 
1566   return p;
1567 }
1568 
1569 path __weakly_canonical(const path& p, error_code* ec) {
1570   ErrorHandler<path> err("weakly_canonical", ec, &p);
1571 
1572   if (p.empty())
1573     return __canonical("", ec);
1574 
1575   path result;
1576   path tmp;
1577   tmp.__reserve(p.native().size());
1578   auto PP = PathParser::CreateEnd(p.native());
1579   --PP;
1580   vector<string_view_t> DNEParts;
1581 
1582   while (PP.State != PathParser::PS_BeforeBegin) {
1583     tmp.assign(createView(p.native().data(), &PP.RawEntry.back()));
1584     error_code m_ec;
1585     file_status st = __status(tmp, &m_ec);
1586     if (!status_known(st)) {
1587       return err.report(m_ec);
1588     } else if (exists(st)) {
1589       result = __canonical(tmp, ec);
1590       break;
1591     }
1592     DNEParts.push_back(*PP);
1593     --PP;
1594   }
1595   if (PP.State == PathParser::PS_BeforeBegin)
1596     result = __canonical("", ec);
1597   if (ec)
1598     ec->clear();
1599   if (DNEParts.empty())
1600     return result;
1601   for (auto It = DNEParts.rbegin(); It != DNEParts.rend(); ++It)
1602     result /= *It;
1603   return result.lexically_normal();
1604 }
1605 
1606 ///////////////////////////////////////////////////////////////////////////////
1607 //                            path definitions
1608 ///////////////////////////////////////////////////////////////////////////////
1609 
1610 constexpr path::value_type path::preferred_separator;
1611 
1612 path& path::replace_extension(path const& replacement) {
1613   path p = extension();
1614   if (not p.empty()) {
1615     __pn_.erase(__pn_.size() - p.native().size());
1616   }
1617   if (!replacement.empty()) {
1618     if (replacement.native()[0] != '.') {
1619       __pn_ += PATHSTR(".");
1620     }
1621     __pn_.append(replacement.__pn_);
1622   }
1623   return *this;
1624 }
1625 
1626 ///////////////////////////////////////////////////////////////////////////////
1627 // path.decompose
1628 
1629 string_view_t path::__root_name() const {
1630   auto PP = PathParser::CreateBegin(__pn_);
1631   if (PP.State == PathParser::PS_InRootName)
1632     return *PP;
1633   return {};
1634 }
1635 
1636 string_view_t path::__root_directory() const {
1637   auto PP = PathParser::CreateBegin(__pn_);
1638   if (PP.State == PathParser::PS_InRootName)
1639     ++PP;
1640   if (PP.State == PathParser::PS_InRootDir)
1641     return *PP;
1642   return {};
1643 }
1644 
1645 string_view_t path::__root_path_raw() const {
1646   auto PP = PathParser::CreateBegin(__pn_);
1647   if (PP.State == PathParser::PS_InRootName) {
1648     auto NextCh = PP.peek();
1649     if (NextCh && isSeparator(*NextCh)) {
1650       ++PP;
1651       return createView(__pn_.data(), &PP.RawEntry.back());
1652     }
1653     return PP.RawEntry;
1654   }
1655   if (PP.State == PathParser::PS_InRootDir)
1656     return *PP;
1657   return {};
1658 }
1659 
1660 static bool ConsumeRootName(PathParser *PP) {
1661   static_assert(PathParser::PS_BeforeBegin == 1 &&
1662       PathParser::PS_InRootName == 2,
1663       "Values for enums are incorrect");
1664   while (PP->State <= PathParser::PS_InRootName)
1665     ++(*PP);
1666   return PP->State == PathParser::PS_AtEnd;
1667 }
1668 
1669 static bool ConsumeRootDir(PathParser* PP) {
1670   static_assert(PathParser::PS_BeforeBegin == 1 &&
1671                 PathParser::PS_InRootName == 2 &&
1672                 PathParser::PS_InRootDir == 3, "Values for enums are incorrect");
1673   while (PP->State <= PathParser::PS_InRootDir)
1674     ++(*PP);
1675   return PP->State == PathParser::PS_AtEnd;
1676 }
1677 
1678 string_view_t path::__relative_path() const {
1679   auto PP = PathParser::CreateBegin(__pn_);
1680   if (ConsumeRootDir(&PP))
1681     return {};
1682   return createView(PP.RawEntry.data(), &__pn_.back());
1683 }
1684 
1685 string_view_t path::__parent_path() const {
1686   if (empty())
1687     return {};
1688   // Determine if we have a root path but not a relative path. In that case
1689   // return *this.
1690   {
1691     auto PP = PathParser::CreateBegin(__pn_);
1692     if (ConsumeRootDir(&PP))
1693       return __pn_;
1694   }
1695   // Otherwise remove a single element from the end of the path, and return
1696   // a string representing that path
1697   {
1698     auto PP = PathParser::CreateEnd(__pn_);
1699     --PP;
1700     if (PP.RawEntry.data() == __pn_.data())
1701       return {};
1702     --PP;
1703     return createView(__pn_.data(), &PP.RawEntry.back());
1704   }
1705 }
1706 
1707 string_view_t path::__filename() const {
1708   if (empty())
1709     return {};
1710   {
1711     PathParser PP = PathParser::CreateBegin(__pn_);
1712     if (ConsumeRootDir(&PP))
1713       return {};
1714   }
1715   return *(--PathParser::CreateEnd(__pn_));
1716 }
1717 
1718 string_view_t path::__stem() const {
1719   return parser::separate_filename(__filename()).first;
1720 }
1721 
1722 string_view_t path::__extension() const {
1723   return parser::separate_filename(__filename()).second;
1724 }
1725 
1726 ////////////////////////////////////////////////////////////////////////////
1727 // path.gen
1728 
1729 enum PathPartKind : unsigned char {
1730   PK_None,
1731   PK_RootSep,
1732   PK_Filename,
1733   PK_Dot,
1734   PK_DotDot,
1735   PK_TrailingSep
1736 };
1737 
1738 static PathPartKind ClassifyPathPart(string_view_t Part) {
1739   if (Part.empty())
1740     return PK_TrailingSep;
1741   if (Part == PATHSTR("."))
1742     return PK_Dot;
1743   if (Part == PATHSTR(".."))
1744     return PK_DotDot;
1745   if (Part == PATHSTR("/"))
1746     return PK_RootSep;
1747 #if defined(_LIBCPP_WIN32API)
1748   if (Part == PATHSTR("\\"))
1749     return PK_RootSep;
1750 #endif
1751   return PK_Filename;
1752 }
1753 
1754 path path::lexically_normal() const {
1755   if (__pn_.empty())
1756     return *this;
1757 
1758   using PartKindPair = pair<string_view_t, PathPartKind>;
1759   vector<PartKindPair> Parts;
1760   // Guess as to how many elements the path has to avoid reallocating.
1761   Parts.reserve(32);
1762 
1763   // Track the total size of the parts as we collect them. This allows the
1764   // resulting path to reserve the correct amount of memory.
1765   size_t NewPathSize = 0;
1766   auto AddPart = [&](PathPartKind K, string_view_t P) {
1767     NewPathSize += P.size();
1768     Parts.emplace_back(P, K);
1769   };
1770   auto LastPartKind = [&]() {
1771     if (Parts.empty())
1772       return PK_None;
1773     return Parts.back().second;
1774   };
1775 
1776   bool MaybeNeedTrailingSep = false;
1777   // Build a stack containing the remaining elements of the path, popping off
1778   // elements which occur before a '..' entry.
1779   for (auto PP = PathParser::CreateBegin(__pn_); PP; ++PP) {
1780     auto Part = *PP;
1781     PathPartKind Kind = ClassifyPathPart(Part);
1782     switch (Kind) {
1783     case PK_Filename:
1784     case PK_RootSep: {
1785       // Add all non-dot and non-dot-dot elements to the stack of elements.
1786       AddPart(Kind, Part);
1787       MaybeNeedTrailingSep = false;
1788       break;
1789     }
1790     case PK_DotDot: {
1791       // Only push a ".." element if there are no elements preceding the "..",
1792       // or if the preceding element is itself "..".
1793       auto LastKind = LastPartKind();
1794       if (LastKind == PK_Filename) {
1795         NewPathSize -= Parts.back().first.size();
1796         Parts.pop_back();
1797       } else if (LastKind != PK_RootSep)
1798         AddPart(PK_DotDot, PATHSTR(".."));
1799       MaybeNeedTrailingSep = LastKind == PK_Filename;
1800       break;
1801     }
1802     case PK_Dot:
1803     case PK_TrailingSep: {
1804       MaybeNeedTrailingSep = true;
1805       break;
1806     }
1807     case PK_None:
1808       __libcpp_unreachable();
1809     }
1810   }
1811   // [fs.path.generic]p6.8: If the path is empty, add a dot.
1812   if (Parts.empty())
1813     return PATHSTR(".");
1814 
1815   // [fs.path.generic]p6.7: If the last filename is dot-dot, remove any
1816   // trailing directory-separator.
1817   bool NeedTrailingSep = MaybeNeedTrailingSep && LastPartKind() == PK_Filename;
1818 
1819   path Result;
1820   Result.__pn_.reserve(Parts.size() + NewPathSize + NeedTrailingSep);
1821   for (auto& PK : Parts)
1822     Result /= PK.first;
1823 
1824   if (NeedTrailingSep)
1825     Result /= PATHSTR("");
1826 
1827   Result.make_preferred();
1828   return Result;
1829 }
1830 
1831 static int DetermineLexicalElementCount(PathParser PP) {
1832   int Count = 0;
1833   for (; PP; ++PP) {
1834     auto Elem = *PP;
1835     if (Elem == PATHSTR(".."))
1836       --Count;
1837     else if (Elem != PATHSTR(".") && Elem != PATHSTR(""))
1838       ++Count;
1839   }
1840   return Count;
1841 }
1842 
1843 path path::lexically_relative(const path& base) const {
1844   { // perform root-name/root-directory mismatch checks
1845     auto PP = PathParser::CreateBegin(__pn_);
1846     auto PPBase = PathParser::CreateBegin(base.__pn_);
1847     auto CheckIterMismatchAtBase = [&]() {
1848       return PP.State != PPBase.State &&
1849              (PP.inRootPath() || PPBase.inRootPath());
1850     };
1851     if (PP.inRootName() && PPBase.inRootName()) {
1852       if (*PP != *PPBase)
1853         return {};
1854     } else if (CheckIterMismatchAtBase())
1855       return {};
1856 
1857     if (PP.inRootPath())
1858       ++PP;
1859     if (PPBase.inRootPath())
1860       ++PPBase;
1861     if (CheckIterMismatchAtBase())
1862       return {};
1863   }
1864 
1865   // Find the first mismatching element
1866   auto PP = PathParser::CreateBegin(__pn_);
1867   auto PPBase = PathParser::CreateBegin(base.__pn_);
1868   while (PP && PPBase && PP.State == PPBase.State && *PP == *PPBase) {
1869     ++PP;
1870     ++PPBase;
1871   }
1872 
1873   // If there is no mismatch, return ".".
1874   if (!PP && !PPBase)
1875     return ".";
1876 
1877   // Otherwise, determine the number of elements, 'n', which are not dot or
1878   // dot-dot minus the number of dot-dot elements.
1879   int ElemCount = DetermineLexicalElementCount(PPBase);
1880   if (ElemCount < 0)
1881     return {};
1882 
1883   // if n == 0 and (a == end() || a->empty()), returns path("."); otherwise
1884   if (ElemCount == 0 && (PP.atEnd() || *PP == PATHSTR("")))
1885     return PATHSTR(".");
1886 
1887   // return a path constructed with 'n' dot-dot elements, followed by the
1888   // elements of '*this' after the mismatch.
1889   path Result;
1890   // FIXME: Reserve enough room in Result that it won't have to re-allocate.
1891   while (ElemCount--)
1892     Result /= PATHSTR("..");
1893   for (; PP; ++PP)
1894     Result /= *PP;
1895   return Result;
1896 }
1897 
1898 ////////////////////////////////////////////////////////////////////////////
1899 // path.comparisons
1900 static int CompareRootName(PathParser *LHS, PathParser *RHS) {
1901   if (!LHS->inRootName() && !RHS->inRootName())
1902     return 0;
1903 
1904   auto GetRootName = [](PathParser *Parser) -> string_view_t {
1905     return Parser->inRootName() ? **Parser : PATHSTR("");
1906   };
1907   int res = GetRootName(LHS).compare(GetRootName(RHS));
1908   ConsumeRootName(LHS);
1909   ConsumeRootName(RHS);
1910   return res;
1911 }
1912 
1913 static int CompareRootDir(PathParser *LHS, PathParser *RHS) {
1914   if (!LHS->inRootDir() && RHS->inRootDir())
1915     return -1;
1916   else if (LHS->inRootDir() && !RHS->inRootDir())
1917     return 1;
1918   else {
1919     ConsumeRootDir(LHS);
1920     ConsumeRootDir(RHS);
1921     return 0;
1922   }
1923 }
1924 
1925 static int CompareRelative(PathParser *LHSPtr, PathParser *RHSPtr) {
1926   auto &LHS = *LHSPtr;
1927   auto &RHS = *RHSPtr;
1928 
1929   int res;
1930   while (LHS && RHS) {
1931     if ((res = (*LHS).compare(*RHS)) != 0)
1932       return res;
1933     ++LHS;
1934     ++RHS;
1935   }
1936   return 0;
1937 }
1938 
1939 static int CompareEndState(PathParser *LHS, PathParser *RHS) {
1940   if (LHS->atEnd() && !RHS->atEnd())
1941     return -1;
1942   else if (!LHS->atEnd() && RHS->atEnd())
1943     return 1;
1944   return 0;
1945 }
1946 
1947 int path::__compare(string_view_t __s) const {
1948   auto LHS = PathParser::CreateBegin(__pn_);
1949   auto RHS = PathParser::CreateBegin(__s);
1950   int res;
1951 
1952   if ((res = CompareRootName(&LHS, &RHS)) != 0)
1953     return res;
1954 
1955   if ((res = CompareRootDir(&LHS, &RHS)) != 0)
1956     return res;
1957 
1958   if ((res = CompareRelative(&LHS, &RHS)) != 0)
1959     return res;
1960 
1961   return CompareEndState(&LHS, &RHS);
1962 }
1963 
1964 ////////////////////////////////////////////////////////////////////////////
1965 // path.nonmembers
1966 size_t hash_value(const path& __p) noexcept {
1967   auto PP = PathParser::CreateBegin(__p.native());
1968   size_t hash_value = 0;
1969   hash<string_view_t> hasher;
1970   while (PP) {
1971     hash_value = __hash_combine(hash_value, hasher(*PP));
1972     ++PP;
1973   }
1974   return hash_value;
1975 }
1976 
1977 ////////////////////////////////////////////////////////////////////////////
1978 // path.itr
1979 path::iterator path::begin() const {
1980   auto PP = PathParser::CreateBegin(__pn_);
1981   iterator it;
1982   it.__path_ptr_ = this;
1983   it.__state_ = static_cast<path::iterator::_ParserState>(PP.State);
1984   it.__entry_ = PP.RawEntry;
1985   it.__stashed_elem_.__assign_view(*PP);
1986   return it;
1987 }
1988 
1989 path::iterator path::end() const {
1990   iterator it{};
1991   it.__state_ = path::iterator::_AtEnd;
1992   it.__path_ptr_ = this;
1993   return it;
1994 }
1995 
1996 path::iterator& path::iterator::__increment() {
1997   PathParser PP(__path_ptr_->native(), __entry_, __state_);
1998   ++PP;
1999   __state_ = static_cast<_ParserState>(PP.State);
2000   __entry_ = PP.RawEntry;
2001   __stashed_elem_.__assign_view(*PP);
2002   return *this;
2003 }
2004 
2005 path::iterator& path::iterator::__decrement() {
2006   PathParser PP(__path_ptr_->native(), __entry_, __state_);
2007   --PP;
2008   __state_ = static_cast<_ParserState>(PP.State);
2009   __entry_ = PP.RawEntry;
2010   __stashed_elem_.__assign_view(*PP);
2011   return *this;
2012 }
2013 
2014 #if defined(_LIBCPP_WIN32API)
2015 ////////////////////////////////////////////////////////////////////////////
2016 // Windows path conversions
2017 size_t __wide_to_char(const wstring &str, char *out, size_t outlen) {
2018   if (str.empty())
2019     return 0;
2020   ErrorHandler<size_t> err("__wide_to_char", nullptr);
2021   UINT codepage = AreFileApisANSI() ? CP_ACP : CP_OEMCP;
2022   BOOL used_default = FALSE;
2023   int ret = WideCharToMultiByte(codepage, 0, str.data(), str.size(), out,
2024                                 outlen, nullptr, &used_default);
2025   if (ret <= 0 || used_default)
2026     return err.report(errc::illegal_byte_sequence);
2027   return ret;
2028 }
2029 
2030 size_t __char_to_wide(const string &str, wchar_t *out, size_t outlen) {
2031   if (str.empty())
2032     return 0;
2033   ErrorHandler<size_t> err("__char_to_wide", nullptr);
2034   UINT codepage = AreFileApisANSI() ? CP_ACP : CP_OEMCP;
2035   int ret = MultiByteToWideChar(codepage, MB_ERR_INVALID_CHARS, str.data(),
2036                                 str.size(), out, outlen);
2037   if (ret <= 0)
2038     return err.report(errc::illegal_byte_sequence);
2039   return ret;
2040 }
2041 #endif
2042 
2043 
2044 ///////////////////////////////////////////////////////////////////////////////
2045 //                           directory entry definitions
2046 ///////////////////////////////////////////////////////////////////////////////
2047 
2048 error_code directory_entry::__do_refresh() noexcept {
2049   __data_.__reset();
2050   error_code failure_ec;
2051 
2052   StatT full_st;
2053   file_status st = detail::posix_lstat(__p_, full_st, &failure_ec);
2054   if (!status_known(st)) {
2055     __data_.__reset();
2056     return failure_ec;
2057   }
2058 
2059   if (!_VSTD_FS::exists(st) || !_VSTD_FS::is_symlink(st)) {
2060     __data_.__cache_type_ = directory_entry::_RefreshNonSymlink;
2061     __data_.__type_ = st.type();
2062     __data_.__non_sym_perms_ = st.permissions();
2063   } else { // we have a symlink
2064     __data_.__sym_perms_ = st.permissions();
2065     // Get the information about the linked entity.
2066     // Ignore errors from stat, since we don't want errors regarding symlink
2067     // resolution to be reported to the user.
2068     error_code ignored_ec;
2069     st = detail::posix_stat(__p_, full_st, &ignored_ec);
2070 
2071     __data_.__type_ = st.type();
2072     __data_.__non_sym_perms_ = st.permissions();
2073 
2074     // If we failed to resolve the link, then only partially populate the
2075     // cache.
2076     if (!status_known(st)) {
2077       __data_.__cache_type_ = directory_entry::_RefreshSymlinkUnresolved;
2078       return error_code{};
2079     }
2080     // Otherwise, we resolved the link, potentially as not existing.
2081     // That's OK.
2082     __data_.__cache_type_ = directory_entry::_RefreshSymlink;
2083   }
2084 
2085   if (_VSTD_FS::is_regular_file(st))
2086     __data_.__size_ = static_cast<uintmax_t>(full_st.st_size);
2087 
2088   if (_VSTD_FS::exists(st)) {
2089     __data_.__nlink_ = static_cast<uintmax_t>(full_st.st_nlink);
2090 
2091     // Attempt to extract the mtime, and fail if it's not representable using
2092     // file_time_type. For now we ignore the error, as we'll report it when
2093     // the value is actually used.
2094     error_code ignored_ec;
2095     __data_.__write_time_ =
2096         __extract_last_write_time(__p_, full_st, &ignored_ec);
2097   }
2098 
2099   return failure_ec;
2100 }
2101 
2102 _LIBCPP_END_NAMESPACE_FILESYSTEM
2103