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219 lines
8.1 KiB
C++
219 lines
8.1 KiB
C++
//===--- FileManager.h - File System Probing and Caching --------*- C++ -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file defines the FileManager interface.
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_CLANG_FILEMANAGER_H
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#define LLVM_CLANG_FILEMANAGER_H
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#include "clang/Basic/FileSystemOptions.h"
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#include "llvm/ADT/IntrusiveRefCntPtr.h"
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#include "llvm/ADT/SmallVector.h"
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#include "llvm/ADT/StringMap.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/ADT/OwningPtr.h"
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#include "llvm/Support/Allocator.h"
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#include "llvm/Config/config.h" // for mode_t
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// FIXME: Enhance libsystem to support inode and other fields in stat.
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#include <sys/types.h>
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struct stat;
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namespace llvm {
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class MemoryBuffer;
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namespace sys { class Path; }
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}
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namespace clang {
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class FileManager;
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class FileSystemStatCache;
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/// DirectoryEntry - Cached information about one directory (either on
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/// the disk or in the virtual file system).
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///
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class DirectoryEntry {
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const char *Name; // Name of the directory.
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friend class FileManager;
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public:
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DirectoryEntry() : Name(0) {}
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const char *getName() const { return Name; }
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};
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/// FileEntry - Cached information about one file (either on the disk
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/// or in the virtual file system). If the 'FD' member is valid, then
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/// this FileEntry has an open file descriptor for the file.
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///
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class FileEntry {
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const char *Name; // Name of the file.
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off_t Size; // File size in bytes.
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time_t ModTime; // Modification time of file.
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const DirectoryEntry *Dir; // Directory file lives in.
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unsigned UID; // A unique (small) ID for the file.
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dev_t Device; // ID for the device containing the file.
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ino_t Inode; // Inode number for the file.
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mode_t FileMode; // The file mode as returned by 'stat'.
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/// FD - The file descriptor for the file entry if it is opened and owned
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/// by the FileEntry. If not, this is set to -1.
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mutable int FD;
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friend class FileManager;
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public:
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FileEntry(dev_t device, ino_t inode, mode_t m)
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: Name(0), Device(device), Inode(inode), FileMode(m), FD(-1) {}
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// Add a default constructor for use with llvm::StringMap
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FileEntry() : Name(0), Device(0), Inode(0), FileMode(0), FD(-1) {}
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FileEntry(const FileEntry &FE) {
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memcpy(this, &FE, sizeof(FE));
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assert(FD == -1 && "Cannot copy a file-owning FileEntry");
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}
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void operator=(const FileEntry &FE) {
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memcpy(this, &FE, sizeof(FE));
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assert(FD == -1 && "Cannot assign a file-owning FileEntry");
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}
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~FileEntry();
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const char *getName() const { return Name; }
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off_t getSize() const { return Size; }
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unsigned getUID() const { return UID; }
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ino_t getInode() const { return Inode; }
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dev_t getDevice() const { return Device; }
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time_t getModificationTime() const { return ModTime; }
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mode_t getFileMode() const { return FileMode; }
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/// getDir - Return the directory the file lives in.
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///
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const DirectoryEntry *getDir() const { return Dir; }
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bool operator<(const FileEntry &RHS) const {
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return Device < RHS.Device || (Device == RHS.Device && Inode < RHS.Inode);
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}
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};
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/// FileManager - Implements support for file system lookup, file system
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/// caching, and directory search management. This also handles more advanced
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/// properties, such as uniquing files based on "inode", so that a file with two
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/// names (e.g. symlinked) will be treated as a single file.
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///
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class FileManager : public llvm::RefCountedBase<FileManager> {
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FileSystemOptions FileSystemOpts;
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class UniqueDirContainer;
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class UniqueFileContainer;
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/// UniqueRealDirs/UniqueRealFiles - Cache for existing real directories/files.
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///
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UniqueDirContainer &UniqueRealDirs;
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UniqueFileContainer &UniqueRealFiles;
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/// \brief The virtual directories that we have allocated. For each
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/// virtual file (e.g. foo/bar/baz.cpp), we add all of its parent
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/// directories (foo/ and foo/bar/) here.
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llvm::SmallVector<DirectoryEntry*, 4> VirtualDirectoryEntries;
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/// \brief The virtual files that we have allocated.
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llvm::SmallVector<FileEntry*, 4> VirtualFileEntries;
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/// SeenDirEntries/SeenFileEntries - This is a cache that maps paths
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/// to directory/file entries (either real or virtual) we have
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/// looked up. The actual Entries for real directories/files are
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/// owned by UniqueRealDirs/UniqueRealFiles above, while the Entries
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/// for virtual directories/files are owned by
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/// VirtualDirectoryEntries/VirtualFileEntries above.
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///
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llvm::StringMap<DirectoryEntry*, llvm::BumpPtrAllocator> SeenDirEntries;
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llvm::StringMap<FileEntry*, llvm::BumpPtrAllocator> SeenFileEntries;
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/// NextFileUID - Each FileEntry we create is assigned a unique ID #.
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///
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unsigned NextFileUID;
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// Statistics.
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unsigned NumDirLookups, NumFileLookups;
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unsigned NumDirCacheMisses, NumFileCacheMisses;
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// Caching.
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llvm::OwningPtr<FileSystemStatCache> StatCache;
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bool getStatValue(const char *Path, struct stat &StatBuf,
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int *FileDescriptor);
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/// Add all ancestors of the given path (pointing to either a file
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/// or a directory) as virtual directories.
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void addAncestorsAsVirtualDirs(llvm::StringRef Path);
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public:
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FileManager(const FileSystemOptions &FileSystemOpts);
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~FileManager();
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/// \brief Installs the provided FileSystemStatCache object within
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/// the FileManager.
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///
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/// Ownership of this object is transferred to the FileManager.
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///
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/// \param statCache the new stat cache to install. Ownership of this
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/// object is transferred to the FileManager.
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///
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/// \param AtBeginning whether this new stat cache must be installed at the
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/// beginning of the chain of stat caches. Otherwise, it will be added to
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/// the end of the chain.
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void addStatCache(FileSystemStatCache *statCache, bool AtBeginning = false);
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/// \brief Removes the specified FileSystemStatCache object from the manager.
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void removeStatCache(FileSystemStatCache *statCache);
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/// getDirectory - Lookup, cache, and verify the specified directory
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/// (real or virtual). This returns NULL if the directory doesn't exist.
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///
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const DirectoryEntry *getDirectory(llvm::StringRef DirName);
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/// \brief Lookup, cache, and verify the specified file (real or
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/// virtual). This returns NULL if the file doesn't exist.
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///
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/// \param openFile if true and the file exists, it will be opened.
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const FileEntry *getFile(llvm::StringRef Filename, bool openFile = false);
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/// \brief Retrieve a file entry for a "virtual" file that acts as
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/// if there were a file with the given name on disk. The file
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/// itself is not accessed.
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const FileEntry *getVirtualFile(llvm::StringRef Filename, off_t Size,
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time_t ModificationTime);
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/// \brief Open the specified file as a MemoryBuffer, returning a new
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/// MemoryBuffer if successful, otherwise returning null.
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llvm::MemoryBuffer *getBufferForFile(const FileEntry *Entry,
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std::string *ErrorStr = 0);
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llvm::MemoryBuffer *getBufferForFile(llvm::StringRef Filename,
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std::string *ErrorStr = 0);
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// getNoncachedStatValue - Will get the 'stat' information for the given path.
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// If the path is relative, it will be resolved against the WorkingDir of the
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// FileManager's FileSystemOptions.
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bool getNoncachedStatValue(llvm::StringRef Path, struct stat &StatBuf);
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/// \brief If path is not absolute and FileSystemOptions set the working
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/// directory, the path is modified to be relative to the given
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/// working directory.
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void FixupRelativePath(llvm::SmallVectorImpl<char> &path) const;
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/// \brief Produce an array mapping from the unique IDs assigned to each
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/// file to the corresponding FileEntry pointer.
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void GetUniqueIDMapping(
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llvm::SmallVectorImpl<const FileEntry *> &UIDToFiles) const;
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void PrintStats() const;
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};
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} // end namespace clang
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#endif
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