1 //===-- Path.cpp - Implement OS Path Concept ------------------------------===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 //  This file implements the operating system Path API.
11 //
12 //===----------------------------------------------------------------------===//
13 
14 #include "llvm/Support/COFF.h"
15 #include "llvm/Support/MachO.h"
16 #include "llvm/Support/Endian.h"
17 #include "llvm/Support/Errc.h"
18 #include "llvm/Support/ErrorHandling.h"
19 #include "llvm/Support/FileSystem.h"
20 #include "llvm/Support/Path.h"
21 #include "llvm/Support/Process.h"
22 #include <cctype>
23 #include <cstring>
24 
25 #if !defined(_MSC_VER) && !defined(__MINGW32__)
26 #include <unistd.h>
27 #else
28 #include <io.h>
29 #endif
30 
31 using namespace llvm;
32 using namespace llvm::support::endian;
33 
34 namespace {
35   using llvm::StringRef;
36   using llvm::sys::path::is_separator;
37 
38 #ifdef LLVM_ON_WIN32
39   const char *separators = "\\/";
40   const char preferred_separator = '\\';
41 #else
42   const char  separators = '/';
43   const char preferred_separator = '/';
44 #endif
45 
46   StringRef find_first_component(StringRef path) {
47     // Look for this first component in the following order.
48     // * empty (in this case we return an empty string)
49     // * either C: or {//,\\}net.
50     // * {/,\}
51     // * {file,directory}name
52 
53     if (path.empty())
54       return path;
55 
56 #ifdef LLVM_ON_WIN32
57     // C:
58     if (path.size() >= 2 && std::isalpha(static_cast<unsigned char>(path[0])) &&
59         path[1] == ':')
60       return path.substr(0, 2);
61 #endif
62 
63     // //net
64     if ((path.size() > 2) &&
65         is_separator(path[0]) &&
66         path[0] == path[1] &&
67         !is_separator(path[2])) {
68       // Find the next directory separator.
69       size_t end = path.find_first_of(separators, 2);
70       return path.substr(0, end);
71     }
72 
73     // {/,\}
74     if (is_separator(path[0]))
75       return path.substr(0, 1);
76 
77     // * {file,directory}name
78     size_t end = path.find_first_of(separators);
79     return path.substr(0, end);
80   }
81 
82   size_t filename_pos(StringRef str) {
83     if (str.size() == 2 &&
84         is_separator(str[0]) &&
85         str[0] == str[1])
86       return 0;
87 
88     if (str.size() > 0 && is_separator(str[str.size() - 1]))
89       return str.size() - 1;
90 
91     size_t pos = str.find_last_of(separators, str.size() - 1);
92 
93 #ifdef LLVM_ON_WIN32
94     if (pos == StringRef::npos)
95       pos = str.find_last_of(':', str.size() - 2);
96 #endif
97 
98     if (pos == StringRef::npos ||
99         (pos == 1 && is_separator(str[0])))
100       return 0;
101 
102     return pos + 1;
103   }
104 
105   size_t root_dir_start(StringRef str) {
106     // case "c:/"
107 #ifdef LLVM_ON_WIN32
108     if (str.size() > 2 &&
109         str[1] == ':' &&
110         is_separator(str[2]))
111       return 2;
112 #endif
113 
114     // case "//"
115     if (str.size() == 2 &&
116         is_separator(str[0]) &&
117         str[0] == str[1])
118       return StringRef::npos;
119 
120     // case "//net"
121     if (str.size() > 3 &&
122         is_separator(str[0]) &&
123         str[0] == str[1] &&
124         !is_separator(str[2])) {
125       return str.find_first_of(separators, 2);
126     }
127 
128     // case "/"
129     if (str.size() > 0 && is_separator(str[0]))
130       return 0;
131 
132     return StringRef::npos;
133   }
134 
135   size_t parent_path_end(StringRef path) {
136     size_t end_pos = filename_pos(path);
137 
138     bool filename_was_sep = path.size() > 0 && is_separator(path[end_pos]);
139 
140     // Skip separators except for root dir.
141     size_t root_dir_pos = root_dir_start(path.substr(0, end_pos));
142 
143     while(end_pos > 0 &&
144           (end_pos - 1) != root_dir_pos &&
145           is_separator(path[end_pos - 1]))
146       --end_pos;
147 
148     if (end_pos == 1 && root_dir_pos == 0 && filename_was_sep)
149       return StringRef::npos;
150 
151     return end_pos;
152   }
153 } // end unnamed namespace
154 
155 enum FSEntity {
156   FS_Dir,
157   FS_File,
158   FS_Name
159 };
160 
161 static std::error_code createUniqueEntity(const Twine &Model, int &ResultFD,
162                                           SmallVectorImpl<char> &ResultPath,
163                                           bool MakeAbsolute, unsigned Mode,
164                                           FSEntity Type) {
165   SmallString<128> ModelStorage;
166   Model.toVector(ModelStorage);
167 
168   if (MakeAbsolute) {
169     // Make model absolute by prepending a temp directory if it's not already.
170     if (!sys::path::is_absolute(Twine(ModelStorage))) {
171       SmallString<128> TDir;
172       sys::path::system_temp_directory(true, TDir);
173       sys::path::append(TDir, Twine(ModelStorage));
174       ModelStorage.swap(TDir);
175     }
176   }
177 
178   // From here on, DO NOT modify model. It may be needed if the randomly chosen
179   // path already exists.
180   ResultPath = ModelStorage;
181   // Null terminate.
182   ResultPath.push_back(0);
183   ResultPath.pop_back();
184 
185 retry_random_path:
186   // Replace '%' with random chars.
187   for (unsigned i = 0, e = ModelStorage.size(); i != e; ++i) {
188     if (ModelStorage[i] == '%')
189       ResultPath[i] = "0123456789abcdef"[sys::Process::GetRandomNumber() & 15];
190   }
191 
192   // Try to open + create the file.
193   switch (Type) {
194   case FS_File: {
195     if (std::error_code EC =
196             sys::fs::openFileForWrite(Twine(ResultPath.begin()), ResultFD,
197                                       sys::fs::F_RW | sys::fs::F_Excl, Mode)) {
198       if (EC == errc::file_exists)
199         goto retry_random_path;
200       return EC;
201     }
202 
203     return std::error_code();
204   }
205 
206   case FS_Name: {
207     std::error_code EC =
208         sys::fs::access(ResultPath.begin(), sys::fs::AccessMode::Exist);
209     if (EC == errc::no_such_file_or_directory)
210       return std::error_code();
211     if (EC)
212       return EC;
213     goto retry_random_path;
214   }
215 
216   case FS_Dir: {
217     if (std::error_code EC =
218             sys::fs::create_directory(ResultPath.begin(), false)) {
219       if (EC == errc::file_exists)
220         goto retry_random_path;
221       return EC;
222     }
223     return std::error_code();
224   }
225   }
226   llvm_unreachable("Invalid Type");
227 }
228 
229 namespace llvm {
230 namespace sys  {
231 namespace path {
232 
233 const_iterator begin(StringRef path) {
234   const_iterator i;
235   i.Path      = path;
236   i.Component = find_first_component(path);
237   i.Position  = 0;
238   return i;
239 }
240 
241 const_iterator end(StringRef path) {
242   const_iterator i;
243   i.Path      = path;
244   i.Position  = path.size();
245   return i;
246 }
247 
248 const_iterator &const_iterator::operator++() {
249   assert(Position < Path.size() && "Tried to increment past end!");
250 
251   // Increment Position to past the current component
252   Position += Component.size();
253 
254   // Check for end.
255   if (Position == Path.size()) {
256     Component = StringRef();
257     return *this;
258   }
259 
260   // Both POSIX and Windows treat paths that begin with exactly two separators
261   // specially.
262   bool was_net = Component.size() > 2 &&
263     is_separator(Component[0]) &&
264     Component[1] == Component[0] &&
265     !is_separator(Component[2]);
266 
267   // Handle separators.
268   if (is_separator(Path[Position])) {
269     // Root dir.
270     if (was_net
271 #ifdef LLVM_ON_WIN32
272         // c:/
273         || Component.endswith(":")
274 #endif
275         ) {
276       Component = Path.substr(Position, 1);
277       return *this;
278     }
279 
280     // Skip extra separators.
281     while (Position != Path.size() &&
282            is_separator(Path[Position])) {
283       ++Position;
284     }
285 
286     // Treat trailing '/' as a '.'.
287     if (Position == Path.size()) {
288       --Position;
289       Component = ".";
290       return *this;
291     }
292   }
293 
294   // Find next component.
295   size_t end_pos = Path.find_first_of(separators, Position);
296   Component = Path.slice(Position, end_pos);
297 
298   return *this;
299 }
300 
301 bool const_iterator::operator==(const const_iterator &RHS) const {
302   return Path.begin() == RHS.Path.begin() && Position == RHS.Position;
303 }
304 
305 ptrdiff_t const_iterator::operator-(const const_iterator &RHS) const {
306   return Position - RHS.Position;
307 }
308 
309 reverse_iterator rbegin(StringRef Path) {
310   reverse_iterator I;
311   I.Path = Path;
312   I.Position = Path.size();
313   return ++I;
314 }
315 
316 reverse_iterator rend(StringRef Path) {
317   reverse_iterator I;
318   I.Path = Path;
319   I.Component = Path.substr(0, 0);
320   I.Position = 0;
321   return I;
322 }
323 
324 reverse_iterator &reverse_iterator::operator++() {
325   // If we're at the end and the previous char was a '/', return '.' unless
326   // we are the root path.
327   size_t root_dir_pos = root_dir_start(Path);
328   if (Position == Path.size() &&
329       Path.size() > root_dir_pos + 1 &&
330       is_separator(Path[Position - 1])) {
331     --Position;
332     Component = ".";
333     return *this;
334   }
335 
336   // Skip separators unless it's the root directory.
337   size_t end_pos = Position;
338 
339   while(end_pos > 0 &&
340         (end_pos - 1) != root_dir_pos &&
341         is_separator(Path[end_pos - 1]))
342     --end_pos;
343 
344   // Find next separator.
345   size_t start_pos = filename_pos(Path.substr(0, end_pos));
346   Component = Path.slice(start_pos, end_pos);
347   Position = start_pos;
348   return *this;
349 }
350 
351 bool reverse_iterator::operator==(const reverse_iterator &RHS) const {
352   return Path.begin() == RHS.Path.begin() && Component == RHS.Component &&
353          Position == RHS.Position;
354 }
355 
356 ptrdiff_t reverse_iterator::operator-(const reverse_iterator &RHS) const {
357   return Position - RHS.Position;
358 }
359 
360 StringRef root_path(StringRef path) {
361   const_iterator b = begin(path),
362                  pos = b,
363                  e = end(path);
364   if (b != e) {
365     bool has_net = b->size() > 2 && is_separator((*b)[0]) && (*b)[1] == (*b)[0];
366     bool has_drive =
367 #ifdef LLVM_ON_WIN32
368       b->endswith(":");
369 #else
370       false;
371 #endif
372 
373     if (has_net || has_drive) {
374       if ((++pos != e) && is_separator((*pos)[0])) {
375         // {C:/,//net/}, so get the first two components.
376         return path.substr(0, b->size() + pos->size());
377       } else {
378         // just {C:,//net}, return the first component.
379         return *b;
380       }
381     }
382 
383     // POSIX style root directory.
384     if (is_separator((*b)[0])) {
385       return *b;
386     }
387   }
388 
389   return StringRef();
390 }
391 
392 StringRef root_name(StringRef path) {
393   const_iterator b = begin(path),
394                  e = end(path);
395   if (b != e) {
396     bool has_net = b->size() > 2 && is_separator((*b)[0]) && (*b)[1] == (*b)[0];
397     bool has_drive =
398 #ifdef LLVM_ON_WIN32
399       b->endswith(":");
400 #else
401       false;
402 #endif
403 
404     if (has_net || has_drive) {
405       // just {C:,//net}, return the first component.
406       return *b;
407     }
408   }
409 
410   // No path or no name.
411   return StringRef();
412 }
413 
414 StringRef root_directory(StringRef path) {
415   const_iterator b = begin(path),
416                  pos = b,
417                  e = end(path);
418   if (b != e) {
419     bool has_net = b->size() > 2 && is_separator((*b)[0]) && (*b)[1] == (*b)[0];
420     bool has_drive =
421 #ifdef LLVM_ON_WIN32
422       b->endswith(":");
423 #else
424       false;
425 #endif
426 
427     if ((has_net || has_drive) &&
428         // {C:,//net}, skip to the next component.
429         (++pos != e) && is_separator((*pos)[0])) {
430       return *pos;
431     }
432 
433     // POSIX style root directory.
434     if (!has_net && is_separator((*b)[0])) {
435       return *b;
436     }
437   }
438 
439   // No path or no root.
440   return StringRef();
441 }
442 
443 StringRef relative_path(StringRef path) {
444   StringRef root = root_path(path);
445   return path.substr(root.size());
446 }
447 
448 void append(SmallVectorImpl<char> &path, const Twine &a,
449                                          const Twine &b,
450                                          const Twine &c,
451                                          const Twine &d) {
452   SmallString<32> a_storage;
453   SmallString<32> b_storage;
454   SmallString<32> c_storage;
455   SmallString<32> d_storage;
456 
457   SmallVector<StringRef, 4> components;
458   if (!a.isTriviallyEmpty()) components.push_back(a.toStringRef(a_storage));
459   if (!b.isTriviallyEmpty()) components.push_back(b.toStringRef(b_storage));
460   if (!c.isTriviallyEmpty()) components.push_back(c.toStringRef(c_storage));
461   if (!d.isTriviallyEmpty()) components.push_back(d.toStringRef(d_storage));
462 
463   for (auto &component : components) {
464     bool path_has_sep = !path.empty() && is_separator(path[path.size() - 1]);
465     bool component_has_sep = !component.empty() && is_separator(component[0]);
466     bool is_root_name = has_root_name(component);
467 
468     if (path_has_sep) {
469       // Strip separators from beginning of component.
470       size_t loc = component.find_first_not_of(separators);
471       StringRef c = component.substr(loc);
472 
473       // Append it.
474       path.append(c.begin(), c.end());
475       continue;
476     }
477 
478     if (!component_has_sep && !(path.empty() || is_root_name)) {
479       // Add a separator.
480       path.push_back(preferred_separator);
481     }
482 
483     path.append(component.begin(), component.end());
484   }
485 }
486 
487 void append(SmallVectorImpl<char> &path,
488             const_iterator begin, const_iterator end) {
489   for (; begin != end; ++begin)
490     path::append(path, *begin);
491 }
492 
493 StringRef parent_path(StringRef path) {
494   size_t end_pos = parent_path_end(path);
495   if (end_pos == StringRef::npos)
496     return StringRef();
497   else
498     return path.substr(0, end_pos);
499 }
500 
501 void remove_filename(SmallVectorImpl<char> &path) {
502   size_t end_pos = parent_path_end(StringRef(path.begin(), path.size()));
503   if (end_pos != StringRef::npos)
504     path.set_size(end_pos);
505 }
506 
507 void replace_extension(SmallVectorImpl<char> &path, const Twine &extension) {
508   StringRef p(path.begin(), path.size());
509   SmallString<32> ext_storage;
510   StringRef ext = extension.toStringRef(ext_storage);
511 
512   // Erase existing extension.
513   size_t pos = p.find_last_of('.');
514   if (pos != StringRef::npos && pos >= filename_pos(p))
515     path.set_size(pos);
516 
517   // Append '.' if needed.
518   if (ext.size() > 0 && ext[0] != '.')
519     path.push_back('.');
520 
521   // Append extension.
522   path.append(ext.begin(), ext.end());
523 }
524 
525 void native(const Twine &path, SmallVectorImpl<char> &result) {
526   assert((!path.isSingleStringRef() ||
527           path.getSingleStringRef().data() != result.data()) &&
528          "path and result are not allowed to overlap!");
529   // Clear result.
530   result.clear();
531   path.toVector(result);
532   native(result);
533 }
534 
535 void native(SmallVectorImpl<char> &Path) {
536 #ifdef LLVM_ON_WIN32
537   std::replace(Path.begin(), Path.end(), '/', '\\');
538 #else
539   for (auto PI = Path.begin(), PE = Path.end(); PI < PE; ++PI) {
540     if (*PI == '\\') {
541       auto PN = PI + 1;
542       if (PN < PE && *PN == '\\')
543         ++PI; // increment once, the for loop will move over the escaped slash
544       else
545         *PI = '/';
546     }
547   }
548 #endif
549 }
550 
551 StringRef filename(StringRef path) {
552   return *rbegin(path);
553 }
554 
555 StringRef stem(StringRef path) {
556   StringRef fname = filename(path);
557   size_t pos = fname.find_last_of('.');
558   if (pos == StringRef::npos)
559     return fname;
560   else
561     if ((fname.size() == 1 && fname == ".") ||
562         (fname.size() == 2 && fname == ".."))
563       return fname;
564     else
565       return fname.substr(0, pos);
566 }
567 
568 StringRef extension(StringRef path) {
569   StringRef fname = filename(path);
570   size_t pos = fname.find_last_of('.');
571   if (pos == StringRef::npos)
572     return StringRef();
573   else
574     if ((fname.size() == 1 && fname == ".") ||
575         (fname.size() == 2 && fname == ".."))
576       return StringRef();
577     else
578       return fname.substr(pos);
579 }
580 
581 bool is_separator(char value) {
582   switch(value) {
583 #ifdef LLVM_ON_WIN32
584     case '\\': // fall through
585 #endif
586     case '/': return true;
587     default: return false;
588   }
589 }
590 
591 static const char preferred_separator_string[] = { preferred_separator, '\0' };
592 
593 StringRef get_separator() {
594   return preferred_separator_string;
595 }
596 
597 bool has_root_name(const Twine &path) {
598   SmallString<128> path_storage;
599   StringRef p = path.toStringRef(path_storage);
600 
601   return !root_name(p).empty();
602 }
603 
604 bool has_root_directory(const Twine &path) {
605   SmallString<128> path_storage;
606   StringRef p = path.toStringRef(path_storage);
607 
608   return !root_directory(p).empty();
609 }
610 
611 bool has_root_path(const Twine &path) {
612   SmallString<128> path_storage;
613   StringRef p = path.toStringRef(path_storage);
614 
615   return !root_path(p).empty();
616 }
617 
618 bool has_relative_path(const Twine &path) {
619   SmallString<128> path_storage;
620   StringRef p = path.toStringRef(path_storage);
621 
622   return !relative_path(p).empty();
623 }
624 
625 bool has_filename(const Twine &path) {
626   SmallString<128> path_storage;
627   StringRef p = path.toStringRef(path_storage);
628 
629   return !filename(p).empty();
630 }
631 
632 bool has_parent_path(const Twine &path) {
633   SmallString<128> path_storage;
634   StringRef p = path.toStringRef(path_storage);
635 
636   return !parent_path(p).empty();
637 }
638 
639 bool has_stem(const Twine &path) {
640   SmallString<128> path_storage;
641   StringRef p = path.toStringRef(path_storage);
642 
643   return !stem(p).empty();
644 }
645 
646 bool has_extension(const Twine &path) {
647   SmallString<128> path_storage;
648   StringRef p = path.toStringRef(path_storage);
649 
650   return !extension(p).empty();
651 }
652 
653 bool is_absolute(const Twine &path) {
654   SmallString<128> path_storage;
655   StringRef p = path.toStringRef(path_storage);
656 
657   bool rootDir = has_root_directory(p),
658 #ifdef LLVM_ON_WIN32
659        rootName = has_root_name(p);
660 #else
661        rootName = true;
662 #endif
663 
664   return rootDir && rootName;
665 }
666 
667 bool is_relative(const Twine &path) { return !is_absolute(path); }
668 
669 StringRef remove_leading_dotslash(StringRef Path) {
670   // Remove leading "./" (or ".//" or "././" etc.)
671   while (Path.size() > 2 && Path[0] == '.' && is_separator(Path[1])) {
672     Path = Path.substr(2);
673     while (Path.size() > 0 && is_separator(Path[0]))
674       Path = Path.substr(1);
675   }
676   return Path;
677 }
678 
679 static SmallString<256> remove_dots(StringRef path, bool remove_dot_dot) {
680   SmallVector<StringRef, 16> components;
681 
682   // Skip the root path, then look for traversal in the components.
683   StringRef rel = path::relative_path(path);
684   for (StringRef C : llvm::make_range(path::begin(rel), path::end(rel))) {
685     if (C == ".")
686       continue;
687     if (remove_dot_dot) {
688       if (C == "..") {
689         if (!components.empty())
690           components.pop_back();
691         continue;
692       }
693     }
694     components.push_back(C);
695   }
696 
697   SmallString<256> buffer = path::root_path(path);
698   for (StringRef C : components)
699     path::append(buffer, C);
700   return buffer;
701 }
702 
703 bool remove_dots(SmallVectorImpl<char> &path, bool remove_dot_dot) {
704   StringRef p(path.data(), path.size());
705 
706   SmallString<256> result = remove_dots(p, remove_dot_dot);
707   if (result == path)
708     return false;
709 
710   path.swap(result);
711   return true;
712 }
713 
714 } // end namespace path
715 
716 namespace fs {
717 
718 std::error_code getUniqueID(const Twine Path, UniqueID &Result) {
719   file_status Status;
720   std::error_code EC = status(Path, Status);
721   if (EC)
722     return EC;
723   Result = Status.getUniqueID();
724   return std::error_code();
725 }
726 
727 std::error_code createUniqueFile(const Twine &Model, int &ResultFd,
728                                  SmallVectorImpl<char> &ResultPath,
729                                  unsigned Mode) {
730   return createUniqueEntity(Model, ResultFd, ResultPath, false, Mode, FS_File);
731 }
732 
733 std::error_code createUniqueFile(const Twine &Model,
734                                  SmallVectorImpl<char> &ResultPath) {
735   int Dummy;
736   return createUniqueEntity(Model, Dummy, ResultPath, false, 0, FS_Name);
737 }
738 
739 static std::error_code
740 createTemporaryFile(const Twine &Model, int &ResultFD,
741                     llvm::SmallVectorImpl<char> &ResultPath, FSEntity Type) {
742   SmallString<128> Storage;
743   StringRef P = Model.toNullTerminatedStringRef(Storage);
744   assert(P.find_first_of(separators) == StringRef::npos &&
745          "Model must be a simple filename.");
746   // Use P.begin() so that createUniqueEntity doesn't need to recreate Storage.
747   return createUniqueEntity(P.begin(), ResultFD, ResultPath,
748                             true, owner_read | owner_write, Type);
749 }
750 
751 static std::error_code
752 createTemporaryFile(const Twine &Prefix, StringRef Suffix, int &ResultFD,
753                     llvm::SmallVectorImpl<char> &ResultPath, FSEntity Type) {
754   const char *Middle = Suffix.empty() ? "-%%%%%%" : "-%%%%%%.";
755   return createTemporaryFile(Prefix + Middle + Suffix, ResultFD, ResultPath,
756                              Type);
757 }
758 
759 std::error_code createTemporaryFile(const Twine &Prefix, StringRef Suffix,
760                                     int &ResultFD,
761                                     SmallVectorImpl<char> &ResultPath) {
762   return createTemporaryFile(Prefix, Suffix, ResultFD, ResultPath, FS_File);
763 }
764 
765 std::error_code createTemporaryFile(const Twine &Prefix, StringRef Suffix,
766                                     SmallVectorImpl<char> &ResultPath) {
767   int Dummy;
768   return createTemporaryFile(Prefix, Suffix, Dummy, ResultPath, FS_Name);
769 }
770 
771 
772 // This is a mkdtemp with a different pattern. We use createUniqueEntity mostly
773 // for consistency. We should try using mkdtemp.
774 std::error_code createUniqueDirectory(const Twine &Prefix,
775                                       SmallVectorImpl<char> &ResultPath) {
776   int Dummy;
777   return createUniqueEntity(Prefix + "-%%%%%%", Dummy, ResultPath,
778                             true, 0, FS_Dir);
779 }
780 
781 static std::error_code make_absolute(const Twine &current_directory,
782                                      SmallVectorImpl<char> &path,
783                                      bool use_current_directory) {
784   StringRef p(path.data(), path.size());
785 
786   bool rootDirectory = path::has_root_directory(p),
787 #ifdef LLVM_ON_WIN32
788        rootName = path::has_root_name(p);
789 #else
790        rootName = true;
791 #endif
792 
793   // Already absolute.
794   if (rootName && rootDirectory)
795     return std::error_code();
796 
797   // All of the following conditions will need the current directory.
798   SmallString<128> current_dir;
799   if (use_current_directory)
800     current_directory.toVector(current_dir);
801   else if (std::error_code ec = current_path(current_dir))
802     return ec;
803 
804   // Relative path. Prepend the current directory.
805   if (!rootName && !rootDirectory) {
806     // Append path to the current directory.
807     path::append(current_dir, p);
808     // Set path to the result.
809     path.swap(current_dir);
810     return std::error_code();
811   }
812 
813   if (!rootName && rootDirectory) {
814     StringRef cdrn = path::root_name(current_dir);
815     SmallString<128> curDirRootName(cdrn.begin(), cdrn.end());
816     path::append(curDirRootName, p);
817     // Set path to the result.
818     path.swap(curDirRootName);
819     return std::error_code();
820   }
821 
822   if (rootName && !rootDirectory) {
823     StringRef pRootName      = path::root_name(p);
824     StringRef bRootDirectory = path::root_directory(current_dir);
825     StringRef bRelativePath  = path::relative_path(current_dir);
826     StringRef pRelativePath  = path::relative_path(p);
827 
828     SmallString<128> res;
829     path::append(res, pRootName, bRootDirectory, bRelativePath, pRelativePath);
830     path.swap(res);
831     return std::error_code();
832   }
833 
834   llvm_unreachable("All rootName and rootDirectory combinations should have "
835                    "occurred above!");
836 }
837 
838 std::error_code make_absolute(const Twine &current_directory,
839                               SmallVectorImpl<char> &path) {
840   return make_absolute(current_directory, path, true);
841 }
842 
843 std::error_code make_absolute(SmallVectorImpl<char> &path) {
844   return make_absolute(Twine(), path, false);
845 }
846 
847 std::error_code create_directories(const Twine &Path, bool IgnoreExisting,
848                                    perms Perms) {
849   SmallString<128> PathStorage;
850   StringRef P = Path.toStringRef(PathStorage);
851 
852   // Be optimistic and try to create the directory
853   std::error_code EC = create_directory(P, IgnoreExisting, Perms);
854   // If we succeeded, or had any error other than the parent not existing, just
855   // return it.
856   if (EC != errc::no_such_file_or_directory)
857     return EC;
858 
859   // We failed because of a no_such_file_or_directory, try to create the
860   // parent.
861   StringRef Parent = path::parent_path(P);
862   if (Parent.empty())
863     return EC;
864 
865   if ((EC = create_directories(Parent, IgnoreExisting, Perms)))
866       return EC;
867 
868   return create_directory(P, IgnoreExisting, Perms);
869 }
870 
871 std::error_code copy_file(const Twine &From, const Twine &To) {
872   int ReadFD, WriteFD;
873   if (std::error_code EC = openFileForRead(From, ReadFD))
874     return EC;
875   if (std::error_code EC = openFileForWrite(To, WriteFD, F_None)) {
876     close(ReadFD);
877     return EC;
878   }
879 
880   const size_t BufSize = 4096;
881   char *Buf = new char[BufSize];
882   int BytesRead = 0, BytesWritten = 0;
883   for (;;) {
884     BytesRead = read(ReadFD, Buf, BufSize);
885     if (BytesRead <= 0)
886       break;
887     while (BytesRead) {
888       BytesWritten = write(WriteFD, Buf, BytesRead);
889       if (BytesWritten < 0)
890         break;
891       BytesRead -= BytesWritten;
892     }
893     if (BytesWritten < 0)
894       break;
895   }
896   close(ReadFD);
897   close(WriteFD);
898   delete[] Buf;
899 
900   if (BytesRead < 0 || BytesWritten < 0)
901     return std::error_code(errno, std::generic_category());
902   return std::error_code();
903 }
904 
905 bool exists(file_status status) {
906   return status_known(status) && status.type() != file_type::file_not_found;
907 }
908 
909 bool status_known(file_status s) {
910   return s.type() != file_type::status_error;
911 }
912 
913 bool is_directory(file_status status) {
914   return status.type() == file_type::directory_file;
915 }
916 
917 std::error_code is_directory(const Twine &path, bool &result) {
918   file_status st;
919   if (std::error_code ec = status(path, st))
920     return ec;
921   result = is_directory(st);
922   return std::error_code();
923 }
924 
925 bool is_regular_file(file_status status) {
926   return status.type() == file_type::regular_file;
927 }
928 
929 std::error_code is_regular_file(const Twine &path, bool &result) {
930   file_status st;
931   if (std::error_code ec = status(path, st))
932     return ec;
933   result = is_regular_file(st);
934   return std::error_code();
935 }
936 
937 bool is_other(file_status status) {
938   return exists(status) &&
939          !is_regular_file(status) &&
940          !is_directory(status);
941 }
942 
943 std::error_code is_other(const Twine &Path, bool &Result) {
944   file_status FileStatus;
945   if (std::error_code EC = status(Path, FileStatus))
946     return EC;
947   Result = is_other(FileStatus);
948   return std::error_code();
949 }
950 
951 void directory_entry::replace_filename(const Twine &filename, file_status st) {
952   SmallString<128> path = path::parent_path(Path);
953   path::append(path, filename);
954   Path = path.str();
955   Status = st;
956 }
957 
958 /// @brief Identify the magic in magic.
959 file_magic identify_magic(StringRef Magic) {
960   if (Magic.size() < 4)
961     return file_magic::unknown;
962   switch ((unsigned char)Magic[0]) {
963     case 0x00: {
964       // COFF bigobj or short import library file
965       if (Magic[1] == (char)0x00 && Magic[2] == (char)0xff &&
966           Magic[3] == (char)0xff) {
967         size_t MinSize = offsetof(COFF::BigObjHeader, UUID) + sizeof(COFF::BigObjMagic);
968         if (Magic.size() < MinSize)
969           return file_magic::coff_import_library;
970 
971         int BigObjVersion = read16le(
972             Magic.data() + offsetof(COFF::BigObjHeader, Version));
973         if (BigObjVersion < COFF::BigObjHeader::MinBigObjectVersion)
974           return file_magic::coff_import_library;
975 
976         const char *Start = Magic.data() + offsetof(COFF::BigObjHeader, UUID);
977         if (memcmp(Start, COFF::BigObjMagic, sizeof(COFF::BigObjMagic)) != 0)
978           return file_magic::coff_import_library;
979         return file_magic::coff_object;
980       }
981       // Windows resource file
982       const char Expected[] = { 0, 0, 0, 0, '\x20', 0, 0, 0, '\xff' };
983       if (Magic.size() >= sizeof(Expected) &&
984           memcmp(Magic.data(), Expected, sizeof(Expected)) == 0)
985         return file_magic::windows_resource;
986       // 0x0000 = COFF unknown machine type
987       if (Magic[1] == 0)
988         return file_magic::coff_object;
989       break;
990     }
991     case 0xDE:  // 0x0B17C0DE = BC wraper
992       if (Magic[1] == (char)0xC0 && Magic[2] == (char)0x17 &&
993           Magic[3] == (char)0x0B)
994         return file_magic::bitcode;
995       break;
996     case 'B':
997       if (Magic[1] == 'C' && Magic[2] == (char)0xC0 && Magic[3] == (char)0xDE)
998         return file_magic::bitcode;
999       break;
1000     case '!':
1001       if (Magic.size() >= 8)
1002         if (memcmp(Magic.data(), "!<arch>\n", 8) == 0 ||
1003             memcmp(Magic.data(), "!<thin>\n", 8) == 0)
1004           return file_magic::archive;
1005       break;
1006 
1007     case '\177':
1008       if (Magic.size() >= 18 && Magic[1] == 'E' && Magic[2] == 'L' &&
1009           Magic[3] == 'F') {
1010         bool Data2MSB = Magic[5] == 2;
1011         unsigned high = Data2MSB ? 16 : 17;
1012         unsigned low  = Data2MSB ? 17 : 16;
1013         if (Magic[high] == 0)
1014           switch (Magic[low]) {
1015             default: return file_magic::elf;
1016             case 1: return file_magic::elf_relocatable;
1017             case 2: return file_magic::elf_executable;
1018             case 3: return file_magic::elf_shared_object;
1019             case 4: return file_magic::elf_core;
1020           }
1021         else
1022           // It's still some type of ELF file.
1023           return file_magic::elf;
1024       }
1025       break;
1026 
1027     case 0xCA:
1028       if (Magic[1] == char(0xFE) && Magic[2] == char(0xBA) &&
1029           Magic[3] == char(0xBE)) {
1030         // This is complicated by an overlap with Java class files.
1031         // See the Mach-O section in /usr/share/file/magic for details.
1032         if (Magic.size() >= 8 && Magic[7] < 43)
1033           return file_magic::macho_universal_binary;
1034       }
1035       break;
1036 
1037       // The two magic numbers for mach-o are:
1038       // 0xfeedface - 32-bit mach-o
1039       // 0xfeedfacf - 64-bit mach-o
1040     case 0xFE:
1041     case 0xCE:
1042     case 0xCF: {
1043       uint16_t type = 0;
1044       if (Magic[0] == char(0xFE) && Magic[1] == char(0xED) &&
1045           Magic[2] == char(0xFA) &&
1046           (Magic[3] == char(0xCE) || Magic[3] == char(0xCF))) {
1047         /* Native endian */
1048         size_t MinSize;
1049         if (Magic[3] == char(0xCE))
1050           MinSize = sizeof(MachO::mach_header);
1051         else
1052           MinSize = sizeof(MachO::mach_header_64);
1053         if (Magic.size() >= MinSize)
1054           type = Magic[12] << 24 | Magic[13] << 12 | Magic[14] << 8 | Magic[15];
1055       } else if ((Magic[0] == char(0xCE) || Magic[0] == char(0xCF)) &&
1056                  Magic[1] == char(0xFA) && Magic[2] == char(0xED) &&
1057                  Magic[3] == char(0xFE)) {
1058         /* Reverse endian */
1059         size_t MinSize;
1060         if (Magic[0] == char(0xCE))
1061           MinSize = sizeof(MachO::mach_header);
1062         else
1063           MinSize = sizeof(MachO::mach_header_64);
1064         if (Magic.size() >= MinSize)
1065           type = Magic[15] << 24 | Magic[14] << 12 |Magic[13] << 8 | Magic[12];
1066       }
1067       switch (type) {
1068         default: break;
1069         case 1: return file_magic::macho_object;
1070         case 2: return file_magic::macho_executable;
1071         case 3: return file_magic::macho_fixed_virtual_memory_shared_lib;
1072         case 4: return file_magic::macho_core;
1073         case 5: return file_magic::macho_preload_executable;
1074         case 6: return file_magic::macho_dynamically_linked_shared_lib;
1075         case 7: return file_magic::macho_dynamic_linker;
1076         case 8: return file_magic::macho_bundle;
1077         case 9: return file_magic::macho_dynamically_linked_shared_lib_stub;
1078         case 10: return file_magic::macho_dsym_companion;
1079         case 11: return file_magic::macho_kext_bundle;
1080       }
1081       break;
1082     }
1083     case 0xF0: // PowerPC Windows
1084     case 0x83: // Alpha 32-bit
1085     case 0x84: // Alpha 64-bit
1086     case 0x66: // MPS R4000 Windows
1087     case 0x50: // mc68K
1088     case 0x4c: // 80386 Windows
1089     case 0xc4: // ARMNT Windows
1090       if (Magic[1] == 0x01)
1091         return file_magic::coff_object;
1092 
1093     case 0x90: // PA-RISC Windows
1094     case 0x68: // mc68K Windows
1095       if (Magic[1] == 0x02)
1096         return file_magic::coff_object;
1097       break;
1098 
1099     case 'M': // Possible MS-DOS stub on Windows PE file
1100       if (Magic[1] == 'Z') {
1101         uint32_t off = read32le(Magic.data() + 0x3c);
1102         // PE/COFF file, either EXE or DLL.
1103         if (off < Magic.size() &&
1104             memcmp(Magic.data()+off, COFF::PEMagic, sizeof(COFF::PEMagic)) == 0)
1105           return file_magic::pecoff_executable;
1106       }
1107       break;
1108 
1109     case 0x64: // x86-64 Windows.
1110       if (Magic[1] == char(0x86))
1111         return file_magic::coff_object;
1112       break;
1113 
1114     default:
1115       break;
1116   }
1117   return file_magic::unknown;
1118 }
1119 
1120 std::error_code identify_magic(const Twine &Path, file_magic &Result) {
1121   int FD;
1122   if (std::error_code EC = openFileForRead(Path, FD))
1123     return EC;
1124 
1125   char Buffer[32];
1126   int Length = read(FD, Buffer, sizeof(Buffer));
1127   if (close(FD) != 0 || Length < 0)
1128     return std::error_code(errno, std::generic_category());
1129 
1130   Result = identify_magic(StringRef(Buffer, Length));
1131   return std::error_code();
1132 }
1133 
1134 std::error_code directory_entry::status(file_status &result) const {
1135   return fs::status(Path, result);
1136 }
1137 
1138 } // end namespace fs
1139 } // end namespace sys
1140 } // end namespace llvm
1141 
1142 // Include the truly platform-specific parts.
1143 #if defined(LLVM_ON_UNIX)
1144 #include "Unix/Path.inc"
1145 #endif
1146 #if defined(LLVM_ON_WIN32)
1147 #include "Windows/Path.inc"
1148 #endif
1149 
1150 namespace llvm {
1151 namespace sys {
1152 namespace path {
1153 
1154 bool user_cache_directory(SmallVectorImpl<char> &Result, const Twine &Path1,
1155                           const Twine &Path2, const Twine &Path3) {
1156   if (getUserCacheDir(Result)) {
1157     append(Result, Path1, Path2, Path3);
1158     return true;
1159   }
1160   return false;
1161 }
1162 
1163 } // end namespace path
1164 } // end namsspace sys
1165 } // end namespace llvm
1166