1//===- llvm/Support/Unix/Path.cpp - Unix Path Implementation -----*- C++ -*-===//
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 Unix specific portion of the Path class.
11//
12//===----------------------------------------------------------------------===//
13
14//===----------------------------------------------------------------------===//
15//=== WARNING: Implementation here must contain only generic UNIX code that
16//===          is guaranteed to work on *all* UNIX variants.
17//===----------------------------------------------------------------------===//
18
19#include "Unix.h"
20#if HAVE_SYS_STAT_H
21#include <sys/stat.h>
22#endif
23#if HAVE_FCNTL_H
24#include <fcntl.h>
25#endif
26#ifdef HAVE_SYS_MMAN_H
27#include <sys/mman.h>
28#endif
29#ifdef HAVE_SYS_STAT_H
30#include <sys/stat.h>
31#endif
32#if HAVE_UTIME_H
33#include <utime.h>
34#endif
35#if HAVE_TIME_H
36#include <time.h>
37#endif
38#if HAVE_DIRENT_H
39# include <dirent.h>
40# define NAMLEN(dirent) strlen((dirent)->d_name)
41#else
42# define dirent direct
43# define NAMLEN(dirent) (dirent)->d_namlen
44# if HAVE_SYS_NDIR_H
45#  include <sys/ndir.h>
46# endif
47# if HAVE_SYS_DIR_H
48#  include <sys/dir.h>
49# endif
50# if HAVE_NDIR_H
51#  include <ndir.h>
52# endif
53#endif
54
55#if HAVE_DLFCN_H
56#include <dlfcn.h>
57#endif
58
59#ifdef __APPLE__
60#include <mach-o/dyld.h>
61#endif
62
63// For GNU Hurd
64#if defined(__GNU__) && !defined(MAXPATHLEN)
65# define MAXPATHLEN 4096
66#endif
67
68// Put in a hack for Cygwin which falsely reports that the mkdtemp function
69// is available when it is not.
70#ifdef __CYGWIN__
71# undef HAVE_MKDTEMP
72#endif
73
74namespace {
75inline bool lastIsSlash(const std::string& path) {
76  return !path.empty() && path[path.length() - 1] == '/';
77}
78
79}
80
81namespace llvm {
82using namespace sys;
83
84const char sys::PathSeparator = ':';
85
86StringRef Path::GetEXESuffix() {
87  return StringRef();
88}
89
90Path::Path(StringRef p)
91  : path(p) {}
92
93Path::Path(const char *StrStart, unsigned StrLen)
94  : path(StrStart, StrLen) {}
95
96Path&
97Path::operator=(StringRef that) {
98  path.assign(that.data(), that.size());
99  return *this;
100}
101
102bool
103Path::isValid() const {
104  // Empty paths are considered invalid here.
105  // This code doesn't check MAXPATHLEN because there's no need. Nothing in
106  // LLVM manipulates Paths with fixed-sizes arrays, and if the OS can't
107  // handle names longer than some limit, it'll report this on demand using
108  // ENAMETOLONG.
109  return !path.empty();
110}
111
112bool
113Path::isAbsolute(const char *NameStart, unsigned NameLen) {
114  assert(NameStart);
115  if (NameLen == 0)
116    return false;
117  return NameStart[0] == '/';
118}
119
120bool
121Path::isAbsolute() const {
122  if (path.empty())
123    return false;
124  return path[0] == '/';
125}
126
127Path
128Path::GetRootDirectory() {
129  Path result;
130  result.set("/");
131  return result;
132}
133
134Path
135Path::GetTemporaryDirectory(std::string *ErrMsg) {
136#if defined(HAVE_MKDTEMP)
137  // The best way is with mkdtemp but that's not available on many systems,
138  // Linux and FreeBSD have it. Others probably won't.
139  char pathname[] = "/tmp/llvm_XXXXXX";
140  if (0 == mkdtemp(pathname)) {
141    MakeErrMsg(ErrMsg,
142               std::string(pathname) + ": can't create temporary directory");
143    return Path();
144  }
145  return Path(pathname);
146#elif defined(HAVE_MKSTEMP)
147  // If no mkdtemp is available, mkstemp can be used to create a temporary file
148  // which is then removed and created as a directory. We prefer this over
149  // mktemp because of mktemp's inherent security and threading risks. We still
150  // have a slight race condition from the time the temporary file is created to
151  // the time it is re-created as a directoy.
152  char pathname[] = "/tmp/llvm_XXXXXX";
153  int fd = 0;
154  if (-1 == (fd = mkstemp(pathname))) {
155    MakeErrMsg(ErrMsg,
156      std::string(pathname) + ": can't create temporary directory");
157    return Path();
158  }
159  ::close(fd);
160  ::unlink(pathname); // start race condition, ignore errors
161  if (-1 == ::mkdir(pathname, S_IRWXU)) { // end race condition
162    MakeErrMsg(ErrMsg,
163      std::string(pathname) + ": can't create temporary directory");
164    return Path();
165  }
166  return Path(pathname);
167#elif defined(HAVE_MKTEMP)
168  // If a system doesn't have mkdtemp(3) or mkstemp(3) but it does have
169  // mktemp(3) then we'll assume that system (e.g. AIX) has a reasonable
170  // implementation of mktemp(3) and doesn't follow BSD 4.3's lead of replacing
171  // the XXXXXX with the pid of the process and a letter. That leads to only
172  // twenty six temporary files that can be generated.
173  char pathname[] = "/tmp/llvm_XXXXXX";
174  char *TmpName = ::mktemp(pathname);
175  if (TmpName == 0) {
176    MakeErrMsg(ErrMsg,
177      std::string(TmpName) + ": can't create unique directory name");
178    return Path();
179  }
180  if (-1 == ::mkdir(TmpName, S_IRWXU)) {
181    MakeErrMsg(ErrMsg,
182        std::string(TmpName) + ": can't create temporary directory");
183    return Path();
184  }
185  return Path(TmpName);
186#else
187  // This is the worst case implementation. tempnam(3) leaks memory unless its
188  // on an SVID2 (or later) system. On BSD 4.3 it leaks. tmpnam(3) has thread
189  // issues. The mktemp(3) function doesn't have enough variability in the
190  // temporary name generated. So, we provide our own implementation that
191  // increments an integer from a random number seeded by the current time. This
192  // should be sufficiently unique that we don't have many collisions between
193  // processes. Generally LLVM processes don't run very long and don't use very
194  // many temporary files so this shouldn't be a big issue for LLVM.
195  static time_t num = ::time(0);
196  char pathname[MAXPATHLEN];
197  do {
198    num++;
199    sprintf(pathname, "/tmp/llvm_%010u", unsigned(num));
200  } while ( 0 == access(pathname, F_OK ) );
201  if (-1 == ::mkdir(pathname, S_IRWXU)) {
202    MakeErrMsg(ErrMsg,
203      std::string(pathname) + ": can't create temporary directory");
204    return Path();
205  }
206  return Path(pathname);
207#endif
208}
209
210void
211Path::GetSystemLibraryPaths(std::vector& Paths) {
212#ifdef LTDL_SHLIBPATH_VAR
213  char* env_var = getenv(LTDL_SHLIBPATH_VAR);
214  if (env_var != 0) {
215    getPathList(env_var,Paths);
216  }
217#endif
218  // FIXME: Should this look at LD_LIBRARY_PATH too?
219  Paths.push_back(sys::Path("/usr/local/lib/"));
220  Paths.push_back(sys::Path("/usr/X11R6/lib/"));
221  Paths.push_back(sys::Path("/usr/lib/"));
222  Paths.push_back(sys::Path("/lib/"));
223}
224
225void
226Path::GetBitcodeLibraryPaths(std::vector& Paths) {
227  char * env_var = getenv("LLVM_LIB_SEARCH_PATH");
228  if (env_var != 0) {
229    getPathList(env_var,Paths);
230  }
231#ifdef LLVM_LIBDIR
232  {
233    Path tmpPath;
234    if (tmpPath.set(LLVM_LIBDIR))
235      if (tmpPath.canRead())
236        Paths.push_back(tmpPath);
237  }
238#endif
239  GetSystemLibraryPaths(Paths);
240}
241
242Path
243Path::GetUserHomeDirectory() {
244  const char* home = getenv("HOME");
245  Path result;
246  if (home && result.set(home))
247    return result;
248  result.set("/");
249  return result;
250}
251
252Path
253Path::GetCurrentDirectory() {
254  char pathname[MAXPATHLEN];
255  if (!getcwd(pathname, MAXPATHLEN)) {
256    assert(false && "Could not query current working directory.");
257    return Path();
258  }
259
260  return Path(pathname);
261}
262
263#if defined(__FreeBSD__) || defined (__NetBSD__) || defined(__Bitrig__) || \
264    defined(__OpenBSD__) || defined(__minix) || defined(__FreeBSD_kernel__) || \
265    defined(__linux__) || defined(__CYGWIN__)
266static int
267test_dir(char buf[PATH_MAX], char ret[PATH_MAX],
268    const char *dir, const char *bin)
269{
270  struct stat sb;
271
272  snprintf(buf, PATH_MAX, "%s/%s", dir, bin);
273  if (realpath(buf, ret) == NULL)
274    return (1);
275  if (stat(buf, &sb) != 0)
276    return (1);
277
278  return (0);
279}
280
281static char *
282getprogpath(char ret[PATH_MAX], const char *bin)
283{
284  char *pv, *s, *t, buf[PATH_MAX];
285
286  /* First approach: absolute path. */
287  if (bin[0] == '/') {
288    if (test_dir(buf, ret, "/", bin) == 0)
289      return (ret);
290    return (NULL);
291  }
292
293  /* Second approach: relative path. */
294  if (strchr(bin, '/') != NULL) {
295    if (getcwd(buf, PATH_MAX) == NULL)
296      return (NULL);
297    if (test_dir(buf, ret, buf, bin) == 0)
298      return (ret);
299    return (NULL);
300  }
301
302  /* Third approach: $PATH */
303  if ((pv = getenv("PATH")) == NULL)
304    return (NULL);
305  s = pv = strdup(pv);
306  if (pv == NULL)
307    return (NULL);
308  while ((t = strsep(&s, ":")) != NULL) {
309    if (test_dir(buf, ret, t, bin) == 0) {
310      free(pv);
311      return (ret);
312    }
313  }
314  free(pv);
315  return (NULL);
316}
317#endif // __FreeBSD__ || __NetBSD__ || __FreeBSD_kernel__
318
319/// GetMainExecutable - Return the path to the main executable, given the
320/// value of argv[0] from program startup.
321Path Path::GetMainExecutable(const char *argv0, void *MainAddr) {
322#if defined(__APPLE__)
323  // On OS X the executable path is saved to the stack by dyld. Reading it
324  // from there is much faster than calling dladdr, especially for large
325  // binaries with symbols.
326  char exe_path[MAXPATHLEN];
327  uint32_t size = sizeof(exe_path);
328  if (_NSGetExecutablePath(exe_path, &size) == 0) {
329    char link_path[MAXPATHLEN];
330    if (realpath(exe_path, link_path))
331      return Path(link_path);
332  }
333#elif defined(__FreeBSD__) || defined (__NetBSD__) || defined(__Bitrig__) || \
334      defined(__OpenBSD__) || defined(__minix) || defined(__FreeBSD_kernel__)
335  char exe_path[PATH_MAX];
336
337  if (getprogpath(exe_path, argv0) != NULL)
338    return Path(exe_path);
339#elif defined(__linux__) || defined(__CYGWIN__)
340  char exe_path[MAXPATHLEN];
341  StringRef aPath("/proc/self/exe");
342  if (sys::fs::exists(aPath)) {
343      // /proc is not always mounted under Linux (chroot for example).
344      ssize_t len = readlink(aPath.str().c_str(), exe_path, sizeof(exe_path));
345      if (len >= 0)
346          return Path(StringRef(exe_path, len));
347  } else {
348      // Fall back to the classical detection.
349      if (getprogpath(exe_path, argv0) != NULL)
350          return Path(exe_path);
351  }
352#elif defined(HAVE_DLFCN_H)
353  // Use dladdr to get executable path if available.
354  Dl_info DLInfo;
355  int err = dladdr(MainAddr, &DLInfo);
356  if (err == 0)
357    return Path();
358
359  // If the filename is a symlink, we need to resolve and return the location of
360  // the actual executable.
361  char link_path[MAXPATHLEN];
362  if (realpath(DLInfo.dli_fname, link_path))
363    return Path(link_path);
364#else
365#error GetMainExecutable is not implemented on this host yet.
366#endif
367  return Path();
368}
369
370
371StringRef Path::getDirname() const {
372  return getDirnameCharSep(path, "/");
373}
374
375StringRef
376Path::getBasename() const {
377  // Find the last slash
378  std::string::size_type slash = path.rfind('/');
379  if (slash == std::string::npos)
380    slash = 0;
381  else
382    slash++;
383
384  std::string::size_type dot = path.rfind('.');
385  if (dot == std::string::npos || dot < slash)
386    return StringRef(path).substr(slash);
387  else
388    return StringRef(path).substr(slash, dot - slash);
389}
390
391StringRef
392Path::getSuffix() const {
393  // Find the last slash
394  std::string::size_type slash = path.rfind('/');
395  if (slash == std::string::npos)
396    slash = 0;
397  else
398    slash++;
399
400  std::string::size_type dot = path.rfind('.');
401  if (dot == std::string::npos || dot < slash)
402    return StringRef();
403  else
404    return StringRef(path).substr(dot + 1);
405}
406
407bool Path::getMagicNumber(std::string &Magic, unsigned len) const {
408  assert(len < 1024 && "Request for magic string too long");
409  char Buf[1025];
410  int fd = ::open(path.c_str(), O_RDONLY);
411  if (fd < 0)
412    return false;
413  ssize_t bytes_read = ::read(fd, Buf, len);
414  ::close(fd);
415  if (ssize_t(len) != bytes_read)
416    return false;
417  Magic.assign(Buf, len);
418  return true;
419}
420
421bool
422Path::exists() const {
423  return 0 == access(path.c_str(), F_OK );
424}
425
426bool
427Path::isDirectory() const {
428  struct stat buf;
429  if (0 != stat(path.c_str(), &buf))
430    return false;
431  return ((buf.st_mode & S_IFMT) == S_IFDIR) ? true : false;
432}
433
434bool
435Path::isSymLink() const {
436  struct stat buf;
437  if (0 != lstat(path.c_str(), &buf))
438    return false;
439  return S_ISLNK(buf.st_mode);
440}
441
442
443bool
444Path::canRead() const {
445  return 0 == access(path.c_str(), R_OK);
446}
447
448bool
449Path::canWrite() const {
450  return 0 == access(path.c_str(), W_OK);
451}
452
453bool
454Path::isRegularFile() const {
455  // Get the status so we can determine if it's a file or directory
456  struct stat buf;
457
458  if (0 != stat(path.c_str(), &buf))
459    return false;
460
461  if (S_ISREG(buf.st_mode))
462    return true;
463
464  return false;
465}
466
467bool
468Path::canExecute() const {
469  if (0 != access(path.c_str(), R_OK | X_OK ))
470    return false;
471  struct stat buf;
472  if (0 != stat(path.c_str(), &buf))
473    return false;
474  if (!S_ISREG(buf.st_mode))
475    return false;
476  return true;
477}
478
479StringRef
480Path::getLast() const {
481  // Find the last slash
482  size_t pos = path.rfind('/');
483
484  // Handle the corner cases
485  if (pos == std::string::npos)
486    return path;
487
488  // If the last character is a slash
489  if (pos == path.length()-1) {
490    // Find the second to last slash
491    size_t pos2 = path.rfind('/', pos-1);
492    if (pos2 == std::string::npos)
493      return StringRef(path).substr(0,pos);
494    else
495      return StringRef(path).substr(pos2+1,pos-pos2-1);
496  }
497  // Return everything after the last slash
498  return StringRef(path).substr(pos+1);
499}
500
501const FileStatus *
502PathWithStatus::getFileStatus(bool update, std::string *ErrStr) const {
503  if (!fsIsValid || update) {
504    struct stat buf;
505    if (0 != stat(path.c_str(), &buf)) {
506      MakeErrMsg(ErrStr, path + ": can't get status of file");
507      return 0;
508    }
509    status.fileSize = buf.st_size;
510    status.modTime.fromEpochTime(buf.st_mtime);
511    status.mode = buf.st_mode;
512    status.user = buf.st_uid;
513    status.group = buf.st_gid;
514    status.uniqueID = uint64_t(buf.st_ino);
515    status.isDir  = S_ISDIR(buf.st_mode);
516    status.isFile = S_ISREG(buf.st_mode);
517    fsIsValid = true;
518  }
519  return &status;
520}
521
522static bool AddPermissionBits(const Path &File, int bits) {
523  // Get the umask value from the operating system.  We want to use it
524  // when changing the file's permissions. Since calling umask() sets
525  // the umask and returns its old value, we must call it a second
526  // time to reset it to the user's preference.
527  int mask = umask(0777); // The arg. to umask is arbitrary.
528  umask(mask);            // Restore the umask.
529
530  // Get the file's current mode.
531  struct stat buf;
532  if (0 != stat(File.c_str(), &buf))
533    return false;
534  // Change the file to have whichever permissions bits from 'bits'
535  // that the umask would not disable.
536  if ((chmod(File.c_str(), (buf.st_mode | (bits & ~mask)))) == -1)
537      return false;
538  return true;
539}
540
541bool Path::makeReadableOnDisk(std::string* ErrMsg) {
542  if (!AddPermissionBits(*this, 0444))
543    return MakeErrMsg(ErrMsg, path + ": can't make file readable");
544  return false;
545}
546
547bool Path::makeWriteableOnDisk(std::string* ErrMsg) {
548  if (!AddPermissionBits(*this, 0222))
549    return MakeErrMsg(ErrMsg, path + ": can't make file writable");
550  return false;
551}
552
553bool Path::makeExecutableOnDisk(std::string* ErrMsg) {
554  if (!AddPermissionBits(*this, 0111))
555    return MakeErrMsg(ErrMsg, path + ": can't make file executable");
556  return false;
557}
558
559bool
560Path::getDirectoryContents(std::set<Path>& result, std::string* ErrMsg) const {
561  DIR* direntries = ::opendir(path.c_str());
562  if (direntries == 0)
563    return MakeErrMsg(ErrMsg, path + ": can't open directory");
564
565  std::string dirPath = path;
566  if (!lastIsSlash(dirPath))
567    dirPath += '/';
568
569  result.clear();
570  struct dirent* de = ::readdir(direntries);
571  for ( ; de != 0; de = ::readdir(direntries)) {
572    if (de->d_name[0] != '.') {
573      Path aPath(dirPath + (const char*)de->d_name);
574      struct stat st;
575      if (0 != lstat(aPath.path.c_str(), &st)) {
576        if (S_ISLNK(st.st_mode))
577          continue; // dangling symlink -- ignore
578        return MakeErrMsg(ErrMsg,
579                          aPath.path +  ": can't determine file object type");
580      }
581      result.insert(aPath);
582    }
583  }
584
585  closedir(direntries);
586  return false;
587}
588
589bool
590Path::set(StringRef a_path) {
591  if (a_path.empty())
592    return false;
593  path = a_path;
594  return true;
595}
596
597bool
598Path::appendComponent(StringRef name) {
599  if (name.empty())
600    return false;
601  if (!lastIsSlash(path))
602    path += '/';
603  path += name;
604  return true;
605}
606
607bool
608Path::eraseComponent() {
609  size_t slashpos = path.rfind('/',path.size());
610  if (slashpos == 0 || slashpos == std::string::npos) {
611    path.erase();
612    return true;
613  }
614  if (slashpos == path.size() - 1)
615    slashpos = path.rfind('/',slashpos-1);
616  if (slashpos == std::string::npos) {
617    path.erase();
618    return true;
619  }
620  path.erase(slashpos);
621  return true;
622}
623
624bool
625Path::eraseSuffix() {
626  size_t dotpos = path.rfind('.',path.size());
627  size_t slashpos = path.rfind('/',path.size());
628  if (dotpos != std::string::npos) {
629    if (slashpos == std::string::npos || dotpos > slashpos+1) {
630      path.erase(dotpos, path.size()-dotpos);
631      return true;
632    }
633  }
634  return false;
635}
636
637static bool createDirectoryHelper(char* beg, char* end, bool create_parents) {
638
639  if (access(beg, R_OK | W_OK) == 0)
640    return false;
641
642  if (create_parents) {
643
644    char* c = end;
645
646    for (; c != beg; --c)
647      if (*c == '/') {
648
649        // Recurse to handling the parent directory.
650        *c = '\0';
651        bool x = createDirectoryHelper(beg, c, create_parents);
652        *c = '/';
653
654        // Return if we encountered an error.
655        if (x)
656          return true;
657
658        break;
659      }
660  }
661
662  return mkdir(beg, S_IRWXU | S_IRWXG) != 0;
663}
664
665bool
666Path::createDirectoryOnDisk( bool create_parents, std::string* ErrMsg ) {
667  // Get a writeable copy of the path name
668  std::string pathname(path);
669
670  // Null-terminate the last component
671  size_t lastchar = path.length() - 1 ;
672
673  if (pathname[lastchar] != '/')
674    ++lastchar;
675
676  pathname[lastchar] = '\0';
677
678  if (createDirectoryHelper(&pathname[0], &pathname[lastchar], create_parents))
679    return MakeErrMsg(ErrMsg, pathname + ": can't create directory");
680
681  return false;
682}
683
684bool
685Path::createFileOnDisk(std::string* ErrMsg) {
686  // Create the file
687  int fd = ::creat(path.c_str(), S_IRUSR | S_IWUSR);
688  if (fd < 0)
689    return MakeErrMsg(ErrMsg, path + ": can't create file");
690  ::close(fd);
691  return false;
692}
693
694bool
695Path::createTemporaryFileOnDisk(bool reuse_current, std::string* ErrMsg) {
696  // Make this into a unique file name
697  if (makeUnique( reuse_current, ErrMsg ))
698    return true;
699
700  // create the file
701  int fd = ::open(path.c_str(), O_WRONLY|O_CREAT|O_TRUNC, 0666);
702  if (fd < 0)
703    return MakeErrMsg(ErrMsg, path + ": can't create temporary file");
704  ::close(fd);
705  return false;
706}
707
708bool
709Path::eraseFromDisk(bool remove_contents, std::string *ErrStr) const {
710  // Get the status so we can determine if it's a file or directory.
711  struct stat buf;
712  if (0 != stat(path.c_str(), &buf)) {
713    MakeErrMsg(ErrStr, path + ": can't get status of file");
714    return true;
715  }
716
717  // Note: this check catches strange situations. In all cases, LLVM should
718  // only be involved in the creation and deletion of regular files.  This
719  // check ensures that what we're trying to erase is a regular file. It
720  // effectively prevents LLVM from erasing things like /dev/null, any block
721  // special file, or other things that aren't "regular" files.
722  if (S_ISREG(buf.st_mode)) {
723    if (unlink(path.c_str()) != 0)
724      return MakeErrMsg(ErrStr, path + ": can't destroy file");
725    return false;
726  }
727
728  if (!S_ISDIR(buf.st_mode)) {
729    if (ErrStr) *ErrStr = "not a file or directory";
730    return true;
731  }
732
733  if (remove_contents) {
734    // Recursively descend the directory to remove its contents.
735    std::string cmd = "/bin/rm -rf " + path;
736    if (system(cmd.c_str()) != 0) {
737      MakeErrMsg(ErrStr, path + ": failed to recursively remove directory.");
738      return true;
739    }
740    return false;
741  }
742
743  // Otherwise, try to just remove the one directory.
744  std::string pathname(path);
745  size_t lastchar = path.length() - 1;
746  if (pathname[lastchar] == '/')
747    pathname[lastchar] = '\0';
748  else
749    pathname[lastchar+1] = '\0';
750
751  if (rmdir(pathname.c_str()) != 0)
752    return MakeErrMsg(ErrStr, pathname + ": can't erase directory");
753  return false;
754}
755
756bool
757Path::renamePathOnDisk(const Path& newName, std::string* ErrMsg) {
758  if (0 != ::rename(path.c_str(), newName.c_str()))
759    return MakeErrMsg(ErrMsg, std::string("can't rename '") + path + "' as '" +
760               newName.str() + "'");
761  return false;
762}
763
764bool
765Path::setStatusInfoOnDisk(const FileStatus &si, std::string *ErrStr) const {
766  struct utimbuf utb;
767  utb.actime = si.modTime.toPosixTime();
768  utb.modtime = utb.actime;
769  if (0 != ::utime(path.c_str(),&utb))
770    return MakeErrMsg(ErrStr, path + ": can't set file modification time");
771  if (0 != ::chmod(path.c_str(),si.mode))
772    return MakeErrMsg(ErrStr, path + ": can't set mode");
773  return false;
774}
775
776bool
777sys::CopyFile(const sys::Path &Dest, const sys::Path &Src, std::string* ErrMsg){
778  int inFile = -1;
779  int outFile = -1;
780  inFile = ::open(Src.c_str(), O_RDONLY);
781  if (inFile == -1)
782    return MakeErrMsg(ErrMsg, Src.str() +
783      ": can't open source file to copy");
784
785  outFile = ::open(Dest.c_str(), O_WRONLY|O_CREAT, 0666);
786  if (outFile == -1) {
787    ::close(inFile);
788    return MakeErrMsg(ErrMsg, Dest.str() +
789      ": can't create destination file for copy");
790  }
791
792  char Buffer[16*1024];
793  while (ssize_t Amt = ::read(inFile, Buffer, 16*1024)) {
794    if (Amt == -1) {
795      if (errno != EINTR && errno != EAGAIN) {
796        ::close(inFile);
797        ::close(outFile);
798        return MakeErrMsg(ErrMsg, Src.str()+": can't read source file");
799      }
800    } else {
801      char *BufPtr = Buffer;
802      while (Amt) {
803        ssize_t AmtWritten = ::write(outFile, BufPtr, Amt);
804        if (AmtWritten == -1) {
805          if (errno != EINTR && errno != EAGAIN) {
806            ::close(inFile);
807            ::close(outFile);
808            return MakeErrMsg(ErrMsg, Dest.str() +
809              ": can't write destination file");
810          }
811        } else {
812          Amt -= AmtWritten;
813          BufPtr += AmtWritten;
814        }
815      }
816    }
817  }
818  ::close(inFile);
819  ::close(outFile);
820  return false;
821}
822
823bool
824Path::makeUnique(bool reuse_current, std::string* ErrMsg) {
825  bool Exists;
826  if (reuse_current && (fs::exists(path, Exists) || !Exists))
827    return false; // File doesn't exist already, just use it!
828
829  // Append an XXXXXX pattern to the end of the file for use with mkstemp,
830  // mktemp or our own implementation.
831  // This uses std::vector instead of SmallVector to avoid a dependence on
832  // libSupport. And performance isn't critical here.
833  std::vector<char> Buf;
834  Buf.resize(path.size()+8);
835  char *FNBuffer = &Buf[0];
836    path.copy(FNBuffer,path.size());
837  bool isdir;
838  if (!fs::is_directory(path, isdir) && isdir)
839    strcpy(FNBuffer+path.size(), "/XXXXXX");
840  else
841    strcpy(FNBuffer+path.size(), "-XXXXXX");
842
843#if defined(HAVE_MKSTEMP)
844  int TempFD;
845  if ((TempFD = mkstemp(FNBuffer)) == -1)
846    return MakeErrMsg(ErrMsg, path + ": can't make unique filename");
847
848  // We don't need to hold the temp file descriptor... we will trust that no one
849  // will overwrite/delete the file before we can open it again.
850  close(TempFD);
851
852  // Save the name
853  path = FNBuffer;
854
855  // By default mkstemp sets the mode to 0600, so update mode bits now.
856  AddPermissionBits (*this, 0666);
857#elif defined(HAVE_MKTEMP)
858  // If we don't have mkstemp, use the old and obsolete mktemp function.
859  if (mktemp(FNBuffer) == 0)
860    return MakeErrMsg(ErrMsg, path + ": can't make unique filename");
861
862  // Save the name
863  path = FNBuffer;
864#else
865  // Okay, looks like we have to do it all by our lonesome.
866  static unsigned FCounter = 0;
867  // Try to initialize with unique value.
868  if (FCounter == 0) FCounter = ((unsigned)getpid() & 0xFFFF) << 8;
869  char* pos = strstr(FNBuffer, "XXXXXX");
870  do {
871    if (++FCounter > 0xFFFFFF) {
872      return MakeErrMsg(ErrMsg,
873        path + ": can't make unique filename: too many files");
874    }
875    sprintf(pos, "%06X", FCounter);
876    path = FNBuffer;
877  } while (exists());
878  // POSSIBLE SECURITY BUG: An attacker can easily guess the name and exploit
879  // LLVM.
880#endif
881  return false;
882}
883
884const char *Path::MapInFilePages(int FD, size_t FileSize, off_t Offset) {
885  int Flags = MAP_PRIVATE;
886#ifdef MAP_FILE
887  Flags |= MAP_FILE;
888#endif
889  void *BasePtr = ::mmap(0, FileSize, PROT_READ, Flags, FD, Offset);
890  if (BasePtr == MAP_FAILED)
891    return 0;
892  return (const char*)BasePtr;
893}
894
895void Path::UnMapFilePages(const char *BasePtr, size_t FileSize) {
896  const void *Addr = static_cast<const void *>(BasePtr);
897  ::munmap(const_cast<void *>(Addr), FileSize);
898}
899
900} // end llvm namespace
901