1 //===- llvm/Support/Win32/Path.cpp - Win32 Path Implementation ---*- C++ -*-===//
3 // The LLVM Compiler Infrastructure
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
8 //===----------------------------------------------------------------------===//
10 // This file provides the Win32 specific implementation of the Path class.
12 //===----------------------------------------------------------------------===//
14 //===----------------------------------------------------------------------===//
15 //=== WARNING: Implementation here must contain only generic Win32 code that
16 //=== is guaranteed to work on *all* Win32 variants.
17 //===----------------------------------------------------------------------===//
23 // We need to undo a macro defined in Windows.h, otherwise we won't compile:
25 #undef GetCurrentDirectory
27 // Windows happily accepts either forward or backward slashes, though any path
28 // returned by a Win32 API will have backward slashes. As LLVM code basically
29 // assumes forward slashes are used, backward slashs are converted where they
30 // can be introduced into a path.
32 // Another invariant is that a path ends with a slash if and only if the path
33 // is a root directory. Any other use of a trailing slash is stripped. Unlike
34 // in Unix, Windows has a rather complicated notion of a root path and this
35 // invariant helps simply the code.
37 static void FlipBackSlashes(std::string& s) {
38 for (size_t i = 0; i < s.size(); i++)
46 const char PathSeparator = ';';
48 StringRef Path::GetEXESuffix() {
52 Path::Path(llvm::StringRef p)
54 FlipBackSlashes(path);
57 Path::Path(const char *StrStart, unsigned StrLen)
58 : path(StrStart, StrLen) {
59 FlipBackSlashes(path);
63 Path::operator=(StringRef that) {
64 path.assign(that.data(), that.size());
65 FlipBackSlashes(path);
69 // push_back 0 on create, and pop_back on delete.
70 struct ScopedNullTerminator {
72 ScopedNullTerminator(std::string &s) : str(s) { str.push_back(0); }
73 ~ScopedNullTerminator() {
74 // str.pop_back(); But wait, C++03 doesn't have this...
75 assert(!str.empty() && str[str.size() - 1] == 0
76 && "Null char not present!");
77 str.resize(str.size() - 1);
82 Path::isValid() const {
86 // If there is a colon, it must be the second character, preceded by a letter
87 // and followed by something.
88 size_t len = path.size();
89 // This code assumes that path is null terminated, so make sure it is.
90 ScopedNullTerminator snt(path);
91 size_t pos = path.rfind(':',len);
93 if (pos != std::string::npos) {
94 if (pos != 1 || !isalpha(path[0]) || len < 3)
99 // Look for a UNC path, and if found adjust our notion of the root slash.
100 if (len > 3 && path[0] == '/' && path[1] == '/') {
101 rootslash = path.find('/', 2);
102 if (rootslash == std::string::npos)
106 // Check for illegal characters.
107 if (path.find_first_of("\\<>\"|\001\002\003\004\005\006\007\010\011\012"
108 "\013\014\015\016\017\020\021\022\023\024\025\026"
109 "\027\030\031\032\033\034\035\036\037")
110 != std::string::npos)
113 // Remove trailing slash, unless it's a root slash.
114 if (len > rootslash+1 && path[len-1] == '/')
117 // Check each component for legality.
118 for (pos = 0; pos < len; ++pos) {
119 // A component may not end in a space.
120 if (path[pos] == ' ') {
121 if (path[pos+1] == '/' || path[pos+1] == '\0')
125 // A component may not end in a period.
126 if (path[pos] == '.') {
127 if (path[pos+1] == '/' || path[pos+1] == '\0') {
128 // Unless it is the pseudo-directory "."...
129 if (pos == 0 || path[pos-1] == '/' || path[pos-1] == ':')
132 if (pos > 0 && path[pos-1] == '.') {
133 if (pos == 1 || path[pos-2] == '/' || path[pos-2] == ':')
144 void Path::makeAbsolute() {
145 TCHAR FullPath[MAX_PATH + 1] = {0};
146 LPTSTR FilePart = NULL;
148 DWORD RetLength = ::GetFullPathNameA(path.c_str(),
149 sizeof(FullPath)/sizeof(FullPath[0]),
150 FullPath, &FilePart);
152 if (0 == RetLength) {
153 // FIXME: Report the error GetLastError()
154 assert(0 && "Unable to make absolute path!");
155 } else if (RetLength > MAX_PATH) {
156 // FIXME: Report too small buffer (needed RetLength bytes).
157 assert(0 && "Unable to make absolute path!");
164 Path::isAbsolute(const char *NameStart, unsigned NameLen) {
166 // FIXME: This does not handle correctly an absolute path starting from
167 // a drive letter or in UNC format.
173 return NameStart[0] == '/';
176 (NameStart[0] == '/' || (NameStart[1] == ':' && NameStart[2] == '/')) ||
177 (NameStart[0] == '\\' || (NameStart[1] == ':' && NameStart[2] == '\\'));
182 Path::isAbsolute() const {
183 // FIXME: This does not handle correctly an absolute path starting from
184 // a drive letter or in UNC format.
185 switch (path.length()) {
190 return path[0] == '/';
192 return path[0] == '/' || (path[1] == ':' && path[2] == '/');
196 static Path *TempDirectory;
199 Path::GetTemporaryDirectory(std::string* ErrMsg) {
201 return *TempDirectory;
203 char pathname[MAX_PATH];
204 if (!GetTempPath(MAX_PATH, pathname)) {
206 *ErrMsg = "Can't determine temporary directory";
211 result.set(pathname);
213 // Append a subdirectory passed on our process id so multiple LLVMs don't
214 // step on each other's toes.
216 // Mingw's Win32 header files are broken.
217 sprintf(pathname, "LLVM_%u", unsigned(GetCurrentProcessId()));
219 sprintf(pathname, "LLVM_%u", GetCurrentProcessId());
221 result.appendComponent(pathname);
223 // If there's a directory left over from a previous LLVM execution that
224 // happened to have the same process id, get rid of it.
225 result.eraseFromDisk(true);
227 // And finally (re-)create the empty directory.
228 result.createDirectoryOnDisk(false);
229 TempDirectory = new Path(result);
230 return *TempDirectory;
233 // FIXME: the following set of functions don't map to Windows very well.
235 Path::GetRootDirectory() {
236 // This is the only notion that that Windows has of a root directory. Nothing
237 // is here except for drives.
238 return Path("file:///");
242 Path::GetSystemLibraryPaths(std::vector<sys::Path>& Paths) {
244 // Generic form of C:\Windows\System32
245 HRESULT res = SHGetFolderPathA(NULL,
246 CSIDL_FLAG_CREATE | CSIDL_SYSTEM,
251 assert(0 && "Failed to get system directory");
254 Paths.push_back(sys::Path(buff));
258 // Generic form of C:\Windows
259 res = SHGetFolderPathA(NULL,
260 CSIDL_FLAG_CREATE | CSIDL_WINDOWS,
265 assert(0 && "Failed to get windows directory");
268 Paths.push_back(sys::Path(buff));
272 Path::GetBitcodeLibraryPaths(std::vector<sys::Path>& Paths) {
273 char * env_var = getenv("LLVM_LIB_SEARCH_PATH");
275 getPathList(env_var,Paths);
280 if (tmpPath.set(LLVM_LIBDIR))
281 if (tmpPath.canRead())
282 Paths.push_back(tmpPath);
285 GetSystemLibraryPaths(Paths);
289 Path::GetLLVMDefaultConfigDir() {
290 Path ret = GetUserHomeDirectory();
291 if (!ret.appendComponent(".llvm"))
292 assert(0 && "Failed to append .llvm");
297 Path::GetUserHomeDirectory() {
299 HRESULT res = SHGetFolderPathA(NULL,
300 CSIDL_FLAG_CREATE | CSIDL_APPDATA,
305 assert(0 && "Failed to get user home directory");
310 Path::GetCurrentDirectory() {
311 char pathname[MAX_PATH];
312 ::GetCurrentDirectoryA(MAX_PATH,pathname);
313 return Path(pathname);
316 /// GetMainExecutable - Return the path to the main executable, given the
317 /// value of argv[0] from program startup.
318 Path Path::GetMainExecutable(const char *argv0, void *MainAddr) {
319 char pathname[MAX_PATH];
320 DWORD ret = ::GetModuleFileNameA(NULL, pathname, MAX_PATH);
321 return ret != MAX_PATH ? Path(pathname) : Path();
325 // FIXME: the above set of functions don't map to Windows very well.
328 StringRef Path::getDirname() const {
329 return getDirnameCharSep(path, "/");
333 Path::getBasename() const {
334 // Find the last slash
335 size_t slash = path.rfind('/');
336 if (slash == std::string::npos)
341 size_t dot = path.rfind('.');
342 if (dot == std::string::npos || dot < slash)
343 return StringRef(path).substr(slash);
345 return StringRef(path).substr(slash, dot - slash);
349 Path::getSuffix() const {
350 // Find the last slash
351 size_t slash = path.rfind('/');
352 if (slash == std::string::npos)
357 size_t dot = path.rfind('.');
358 if (dot == std::string::npos || dot < slash)
359 return StringRef("");
361 return StringRef(path).substr(dot + 1);
365 Path::exists() const {
366 DWORD attr = GetFileAttributes(path.c_str());
367 return attr != INVALID_FILE_ATTRIBUTES;
371 Path::isDirectory() const {
372 DWORD attr = GetFileAttributes(path.c_str());
373 return (attr != INVALID_FILE_ATTRIBUTES) &&
374 (attr & FILE_ATTRIBUTE_DIRECTORY);
378 Path::isSymLink() const {
379 DWORD attributes = GetFileAttributes(path.c_str());
381 if (attributes == INVALID_FILE_ATTRIBUTES)
382 // There's no sane way to report this :(.
383 assert(0 && "GetFileAttributes returned INVALID_FILE_ATTRIBUTES");
385 // This isn't exactly what defines a NTFS symlink, but it is only true for
386 // paths that act like a symlink.
387 return attributes & FILE_ATTRIBUTE_REPARSE_POINT;
391 Path::canRead() const {
392 // FIXME: take security attributes into account.
393 DWORD attr = GetFileAttributes(path.c_str());
394 return attr != INVALID_FILE_ATTRIBUTES;
398 Path::canWrite() const {
399 // FIXME: take security attributes into account.
400 DWORD attr = GetFileAttributes(path.c_str());
401 return (attr != INVALID_FILE_ATTRIBUTES) && !(attr & FILE_ATTRIBUTE_READONLY);
405 Path::canExecute() const {
406 // FIXME: take security attributes into account.
407 DWORD attr = GetFileAttributes(path.c_str());
408 return attr != INVALID_FILE_ATTRIBUTES;
412 Path::isRegularFile() const {
414 if (fs::is_regular_file(path, res))
420 Path::getLast() const {
421 // Find the last slash
422 size_t pos = path.rfind('/');
424 // Handle the corner cases
425 if (pos == std::string::npos)
428 // If the last character is a slash, we have a root directory
429 if (pos == path.length()-1)
432 // Return everything after the last slash
433 return StringRef(path).substr(pos+1);
437 PathWithStatus::getFileStatus(bool update, std::string *ErrStr) const {
438 if (!fsIsValid || update) {
439 WIN32_FILE_ATTRIBUTE_DATA fi;
440 if (!GetFileAttributesEx(path.c_str(), GetFileExInfoStandard, &fi)) {
441 MakeErrMsg(ErrStr, "getStatusInfo():" + std::string(path) +
442 ": Can't get status: ");
446 status.fileSize = fi.nFileSizeHigh;
447 status.fileSize <<= sizeof(fi.nFileSizeHigh)*8;
448 status.fileSize += fi.nFileSizeLow;
450 status.mode = fi.dwFileAttributes & FILE_ATTRIBUTE_READONLY ? 0555 : 0777;
451 status.user = 9999; // Not applicable to Windows, so...
452 status.group = 9999; // Not applicable to Windows, so...
454 // FIXME: this is only unique if the file is accessed by the same file path.
455 // How do we do this for C:\dir\file and ..\dir\file ? Unix has inode
456 // numbers, but the concept doesn't exist in Windows.
458 for (unsigned i = 0; i < path.length(); ++i)
459 status.uniqueID += path[i];
462 ui.LowPart = fi.ftLastWriteTime.dwLowDateTime;
463 ui.HighPart = fi.ftLastWriteTime.dwHighDateTime;
464 status.modTime.fromWin32Time(ui.QuadPart);
466 status.isDir = fi.dwFileAttributes & FILE_ATTRIBUTE_DIRECTORY;
472 bool Path::makeReadableOnDisk(std::string* ErrMsg) {
473 // All files are readable on Windows (ignoring security attributes).
477 bool Path::makeWriteableOnDisk(std::string* ErrMsg) {
478 DWORD attr = GetFileAttributes(path.c_str());
480 // If it doesn't exist, we're done.
481 if (attr == INVALID_FILE_ATTRIBUTES)
484 if (attr & FILE_ATTRIBUTE_READONLY) {
485 if (!SetFileAttributes(path.c_str(), attr & ~FILE_ATTRIBUTE_READONLY)) {
486 MakeErrMsg(ErrMsg, std::string(path) + ": Can't make file writable: ");
493 bool Path::makeExecutableOnDisk(std::string* ErrMsg) {
494 // All files are executable on Windows (ignoring security attributes).
499 Path::getDirectoryContents(std::set<Path>& result, std::string* ErrMsg) const {
500 WIN32_FILE_ATTRIBUTE_DATA fi;
501 if (!GetFileAttributesEx(path.c_str(), GetFileExInfoStandard, &fi)) {
502 MakeErrMsg(ErrMsg, path + ": can't get status of file");
506 if (!(fi.dwFileAttributes & FILE_ATTRIBUTE_DIRECTORY)) {
508 *ErrMsg = path + ": not a directory";
514 std::string searchpath = path;
515 if (path.size() == 0 || searchpath[path.size()-1] == '/')
520 HANDLE h = FindFirstFile(searchpath.c_str(), &fd);
521 if (h == INVALID_HANDLE_VALUE) {
522 if (GetLastError() == ERROR_FILE_NOT_FOUND)
523 return true; // not really an error, now is it?
524 MakeErrMsg(ErrMsg, path + ": Can't read directory: ");
529 if (fd.cFileName[0] == '.')
532 aPath.appendComponent(&fd.cFileName[0]);
533 result.insert(aPath);
534 } while (FindNextFile(h, &fd));
536 DWORD err = GetLastError();
538 if (err != ERROR_NO_MORE_FILES) {
540 MakeErrMsg(ErrMsg, path + ": Can't read directory: ");
547 Path::set(StringRef a_path) {
550 std::string save(path);
552 FlipBackSlashes(path);
561 Path::appendComponent(StringRef name) {
564 std::string save(path);
566 size_t last = path.size() - 1;
567 if (path[last] != '/')
579 Path::eraseComponent() {
580 size_t slashpos = path.rfind('/',path.size());
581 if (slashpos == path.size() - 1 || slashpos == std::string::npos)
583 std::string save(path);
584 path.erase(slashpos);
593 Path::eraseSuffix() {
594 size_t dotpos = path.rfind('.',path.size());
595 size_t slashpos = path.rfind('/',path.size());
596 if (dotpos != std::string::npos) {
597 if (slashpos == std::string::npos || dotpos > slashpos+1) {
598 std::string save(path);
599 path.erase(dotpos, path.size()-dotpos);
610 inline bool PathMsg(std::string* ErrMsg, const char* pathname, const char*msg) {
612 *ErrMsg = std::string(pathname) + ": " + std::string(msg);
617 Path::createDirectoryOnDisk(bool create_parents, std::string* ErrMsg) {
618 // Get a writeable copy of the path name
619 size_t len = path.length();
620 char *pathname = reinterpret_cast<char *>(_alloca(len+2));
621 path.copy(pathname, len);
624 // Make sure it ends with a slash.
625 if (len == 0 || pathname[len - 1] != '/') {
630 // Determine starting point for initial / search.
631 char *next = pathname;
632 if (pathname[0] == '/' && pathname[1] == '/') {
634 next = strchr(pathname+2, '/');
636 return PathMsg(ErrMsg, pathname, "badly formed remote directory");
639 next = strchr(next+1, '/');
641 return PathMsg(ErrMsg, pathname,"badly formed remote directory");
645 return PathMsg(ErrMsg, pathname, "badly formed remote directory");
648 if (pathname[1] == ':')
649 next += 2; // skip drive letter
651 next++; // skip root directory
654 // If we're supposed to create intermediate directories
655 if (create_parents) {
656 // Loop through the directory components until we're done
658 next = strchr(next, '/');
660 if (!CreateDirectory(pathname, NULL) &&
661 GetLastError() != ERROR_ALREADY_EXISTS)
662 return MakeErrMsg(ErrMsg,
663 std::string(pathname) + ": Can't create directory: ");
667 // Drop trailing slash.
669 if (!CreateDirectory(pathname, NULL) &&
670 GetLastError() != ERROR_ALREADY_EXISTS) {
671 return MakeErrMsg(ErrMsg, std::string(pathname) +
672 ": Can't create directory: ");
679 Path::createFileOnDisk(std::string* ErrMsg) {
681 HANDLE h = CreateFile(path.c_str(), GENERIC_WRITE, 0, NULL, CREATE_NEW,
682 FILE_ATTRIBUTE_NORMAL, NULL);
683 if (h == INVALID_HANDLE_VALUE)
684 return MakeErrMsg(ErrMsg, path + ": Can't create file: ");
691 Path::eraseFromDisk(bool remove_contents, std::string *ErrStr) const {
692 WIN32_FILE_ATTRIBUTE_DATA fi;
693 if (!GetFileAttributesEx(path.c_str(), GetFileExInfoStandard, &fi))
696 if (fi.dwFileAttributes & FILE_ATTRIBUTE_DIRECTORY) {
697 // If it doesn't exist, we're done.
699 if (fs::exists(path, Exists) || !Exists)
702 char *pathname = reinterpret_cast<char *>(_alloca(path.length()+3));
703 int lastchar = path.length() - 1 ;
704 path.copy(pathname, lastchar+1);
706 // Make path end with '/*'.
707 if (pathname[lastchar] != '/')
708 pathname[++lastchar] = '/';
709 pathname[lastchar+1] = '*';
710 pathname[lastchar+2] = 0;
712 if (remove_contents) {
714 HANDLE h = FindFirstFile(pathname, &fd);
716 // It's a bad idea to alter the contents of a directory while enumerating
717 // its contents. So build a list of its contents first, then destroy them.
719 if (h != INVALID_HANDLE_VALUE) {
720 std::vector<Path> list;
723 if (strcmp(fd.cFileName, ".") == 0)
725 if (strcmp(fd.cFileName, "..") == 0)
729 aPath.appendComponent(&fd.cFileName[0]);
730 list.push_back(aPath);
731 } while (FindNextFile(h, &fd));
733 DWORD err = GetLastError();
735 if (err != ERROR_NO_MORE_FILES) {
737 return MakeErrMsg(ErrStr, path + ": Can't read directory: ");
740 for (std::vector<Path>::iterator I = list.begin(); I != list.end();
743 aPath.eraseFromDisk(true);
746 if (GetLastError() != ERROR_FILE_NOT_FOUND)
747 return MakeErrMsg(ErrStr, path + ": Can't read directory: ");
751 pathname[lastchar] = 0;
752 if (!RemoveDirectory(pathname))
753 return MakeErrMsg(ErrStr,
754 std::string(pathname) + ": Can't destroy directory: ");
757 // Read-only files cannot be deleted on Windows. Must remove the read-only
759 if (fi.dwFileAttributes & FILE_ATTRIBUTE_READONLY) {
760 if (!SetFileAttributes(path.c_str(),
761 fi.dwFileAttributes & ~FILE_ATTRIBUTE_READONLY))
762 return MakeErrMsg(ErrStr, path + ": Can't destroy file: ");
765 if (!DeleteFile(path.c_str()))
766 return MakeErrMsg(ErrStr, path + ": Can't destroy file: ");
771 bool Path::getMagicNumber(std::string& Magic, unsigned len) const {
772 assert(len < 1024 && "Request for magic string too long");
773 char* buf = reinterpret_cast<char*>(alloca(len));
775 HANDLE h = CreateFile(path.c_str(),
780 FILE_ATTRIBUTE_NORMAL,
782 if (h == INVALID_HANDLE_VALUE)
786 BOOL ret = ReadFile(h, buf, len, &nRead, NULL);
789 if (!ret || nRead != len)
792 Magic = std::string(buf, len);
797 Path::renamePathOnDisk(const Path& newName, std::string* ErrMsg) {
798 if (!MoveFileEx(path.c_str(), newName.c_str(), MOVEFILE_REPLACE_EXISTING))
799 return MakeErrMsg(ErrMsg, "Can't move '" + path + "' to '" + newName.path
805 Path::setStatusInfoOnDisk(const FileStatus &si, std::string *ErrMsg) const {
806 // FIXME: should work on directories also.
811 HANDLE h = CreateFile(path.c_str(),
812 FILE_READ_ATTRIBUTES | FILE_WRITE_ATTRIBUTES,
813 FILE_SHARE_READ | FILE_SHARE_WRITE | FILE_SHARE_DELETE,
816 FILE_ATTRIBUTE_NORMAL,
818 if (h == INVALID_HANDLE_VALUE)
821 BY_HANDLE_FILE_INFORMATION bhfi;
822 if (!GetFileInformationByHandle(h, &bhfi)) {
823 DWORD err = GetLastError();
826 return MakeErrMsg(ErrMsg, path + ": GetFileInformationByHandle: ");
830 ui.QuadPart = si.modTime.toWin32Time();
832 ft.dwLowDateTime = ui.LowPart;
833 ft.dwHighDateTime = ui.HighPart;
834 BOOL ret = SetFileTime(h, NULL, &ft, &ft);
835 DWORD err = GetLastError();
839 return MakeErrMsg(ErrMsg, path + ": SetFileTime: ");
842 // Best we can do with Unix permission bits is to interpret the owner
844 if (si.mode & 0200) {
845 if (bhfi.dwFileAttributes & FILE_ATTRIBUTE_READONLY) {
846 if (!SetFileAttributes(path.c_str(),
847 bhfi.dwFileAttributes & ~FILE_ATTRIBUTE_READONLY))
848 return MakeErrMsg(ErrMsg, path + ": SetFileAttributes: ");
851 if (!(bhfi.dwFileAttributes & FILE_ATTRIBUTE_READONLY)) {
852 if (!SetFileAttributes(path.c_str(),
853 bhfi.dwFileAttributes | FILE_ATTRIBUTE_READONLY))
854 return MakeErrMsg(ErrMsg, path + ": SetFileAttributes: ");
862 CopyFile(const sys::Path &Dest, const sys::Path &Src, std::string* ErrMsg) {
863 // Can't use CopyFile macro defined in Windows.h because it would mess up the
864 // above line. We use the expansion it would have in a non-UNICODE build.
865 if (!::CopyFileA(Src.c_str(), Dest.c_str(), false))
866 return MakeErrMsg(ErrMsg, "Can't copy '" + Src.str() +
867 "' to '" + Dest.str() + "': ");
872 Path::makeUnique(bool reuse_current, std::string* ErrMsg) {
874 if (reuse_current && (fs::exists(path, Exists) || !Exists))
875 return false; // File doesn't exist already, just use it!
877 // Reserve space for -XXXXXX at the end.
878 char *FNBuffer = (char*) alloca(path.size()+8);
879 unsigned offset = path.size();
880 path.copy(FNBuffer, offset);
882 // Find a numeric suffix that isn't used by an existing file. Assume there
883 // won't be more than 1 million files with the same prefix. Probably a safe
885 static int FCounter = -1;
887 // Give arbitrary initial seed.
888 // FIXME: We should use sys::fs::unique_file() in future.
890 DWORD x = GetCurrentProcessId();
891 x = (x << 16) | (x >> 16);
892 if (QueryPerformanceCounter(&cnt64)) // RDTSC
893 x ^= cnt64.HighPart ^ cnt64.LowPart;
894 FCounter = x % 1000000;
897 sprintf(FNBuffer+offset, "-%06u", FCounter);
898 if (++FCounter > 999999)
901 } while (!fs::exists(path, Exists) && Exists);
906 Path::createTemporaryFileOnDisk(bool reuse_current, std::string* ErrMsg) {
907 // Make this into a unique file name
908 makeUnique(reuse_current, ErrMsg);
910 // Now go and create it
911 HANDLE h = CreateFile(path.c_str(), GENERIC_WRITE, 0, NULL, CREATE_NEW,
912 FILE_ATTRIBUTE_NORMAL, NULL);
913 if (h == INVALID_HANDLE_VALUE)
914 return MakeErrMsg(ErrMsg, path + ": can't create file");
920 /// MapInFilePages - Not yet implemented on win32.
921 const char *Path::MapInFilePages(int FD, size_t FileSize, off_t Offset) {
925 /// MapInFilePages - Not yet implemented on win32.
926 void Path::UnMapFilePages(const char *Base, size_t FileSize) {
927 assert(0 && "NOT IMPLEMENTED");