1 //===- DependencyScanningFilesystem.cpp - clang-scan-deps fs --------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include "clang/Tooling/DependencyScanning/DependencyScanningFilesystem.h" 10 #include "clang/Lex/DependencyDirectivesSourceMinimizer.h" 11 #include "llvm/Support/MemoryBuffer.h" 12 #include "llvm/Support/Threading.h" 13 14 using namespace clang; 15 using namespace tooling; 16 using namespace dependencies; 17 18 CachedFileSystemEntry CachedFileSystemEntry::createFileEntry( 19 StringRef Filename, llvm::vfs::FileSystem &FS, bool Minimize) { 20 // Load the file and its content from the file system. 21 llvm::ErrorOr<std::unique_ptr<llvm::vfs::File>> MaybeFile = 22 FS.openFileForRead(Filename); 23 if (!MaybeFile) 24 return MaybeFile.getError(); 25 llvm::ErrorOr<llvm::vfs::Status> Stat = (*MaybeFile)->status(); 26 if (!Stat) 27 return Stat.getError(); 28 29 llvm::vfs::File &F = **MaybeFile; 30 llvm::ErrorOr<std::unique_ptr<llvm::MemoryBuffer>> MaybeBuffer = 31 F.getBuffer(Stat->getName()); 32 if (!MaybeBuffer) 33 return MaybeBuffer.getError(); 34 35 llvm::SmallString<1024> MinimizedFileContents; 36 // Minimize the file down to directives that might affect the dependencies. 37 const auto &Buffer = *MaybeBuffer; 38 SmallVector<minimize_source_to_dependency_directives::Token, 64> Tokens; 39 if (!Minimize || minimizeSourceToDependencyDirectives( 40 Buffer->getBuffer(), MinimizedFileContents, Tokens)) { 41 // Use the original file unless requested otherwise, or 42 // if the minimization failed. 43 // FIXME: Propage the diagnostic if desired by the client. 44 CachedFileSystemEntry Result; 45 Result.MaybeStat = std::move(*Stat); 46 Result.Contents.reserve(Buffer->getBufferSize() + 1); 47 Result.Contents.append(Buffer->getBufferStart(), Buffer->getBufferEnd()); 48 // Implicitly null terminate the contents for Clang's lexer. 49 Result.Contents.push_back('\0'); 50 Result.Contents.pop_back(); 51 return Result; 52 } 53 54 CachedFileSystemEntry Result; 55 size_t Size = MinimizedFileContents.size(); 56 Result.MaybeStat = llvm::vfs::Status(Stat->getName(), Stat->getUniqueID(), 57 Stat->getLastModificationTime(), 58 Stat->getUser(), Stat->getGroup(), Size, 59 Stat->getType(), Stat->getPermissions()); 60 // The contents produced by the minimizer must be null terminated. 61 assert(MinimizedFileContents.data()[MinimizedFileContents.size()] == '\0' && 62 "not null terminated contents"); 63 // Even though there's an implicit null terminator in the minimized contents, 64 // we want to temporarily make it explicit. This will ensure that the 65 // std::move will preserve it even if it needs to do a copy if the 66 // SmallString still has the small capacity. 67 MinimizedFileContents.push_back('\0'); 68 Result.Contents = std::move(MinimizedFileContents); 69 // Now make the null terminator implicit again, so that Clang's lexer can find 70 // it right where the buffer ends. 71 Result.Contents.pop_back(); 72 73 // Compute the skipped PP ranges that speedup skipping over inactive 74 // preprocessor blocks. 75 llvm::SmallVector<minimize_source_to_dependency_directives::SkippedRange, 32> 76 SkippedRanges; 77 minimize_source_to_dependency_directives::computeSkippedRanges(Tokens, 78 SkippedRanges); 79 PreprocessorSkippedRangeMapping Mapping; 80 for (const auto &Range : SkippedRanges) { 81 if (Range.Length < 16) { 82 // Ignore small ranges as non-profitable. 83 // FIXME: This is a heuristic, its worth investigating the tradeoffs 84 // when it should be applied. 85 continue; 86 } 87 Mapping[Range.Offset] = Range.Length; 88 } 89 Result.PPSkippedRangeMapping = std::move(Mapping); 90 91 return Result; 92 } 93 94 CachedFileSystemEntry 95 CachedFileSystemEntry::createDirectoryEntry(llvm::vfs::Status &&Stat) { 96 assert(Stat.isDirectory() && "not a directory!"); 97 auto Result = CachedFileSystemEntry(); 98 Result.MaybeStat = std::move(Stat); 99 return Result; 100 } 101 102 DependencyScanningFilesystemSharedCache::SingleCache::SingleCache() { 103 // This heuristic was chosen using a empirical testing on a 104 // reasonably high core machine (iMacPro 18 cores / 36 threads). The cache 105 // sharding gives a performance edge by reducing the lock contention. 106 // FIXME: A better heuristic might also consider the OS to account for 107 // the different cost of lock contention on different OSes. 108 NumShards = 109 std::max(2u, llvm::hardware_concurrency().compute_thread_count() / 4); 110 CacheShards = std::make_unique<CacheShard[]>(NumShards); 111 } 112 113 DependencyScanningFilesystemSharedCache::SharedFileSystemEntry & 114 DependencyScanningFilesystemSharedCache::SingleCache::get(StringRef Key) { 115 CacheShard &Shard = CacheShards[llvm::hash_value(Key) % NumShards]; 116 std::unique_lock<std::mutex> LockGuard(Shard.CacheLock); 117 auto It = Shard.Cache.try_emplace(Key); 118 return It.first->getValue(); 119 } 120 121 DependencyScanningFilesystemSharedCache::SharedFileSystemEntry & 122 DependencyScanningFilesystemSharedCache::get(StringRef Key, bool Minimized) { 123 SingleCache &Cache = Minimized ? CacheMinimized : CacheOriginal; 124 return Cache.get(Key); 125 } 126 127 /// Whitelist file extensions that should be minimized, treating no extension as 128 /// a source file that should be minimized. 129 /// 130 /// This is kinda hacky, it would be better if we knew what kind of file Clang 131 /// was expecting instead. 132 static bool shouldMinimize(StringRef Filename) { 133 StringRef Ext = llvm::sys::path::extension(Filename); 134 if (Ext.empty()) 135 return true; // C++ standard library 136 return llvm::StringSwitch<bool>(Ext) 137 .CasesLower(".c", ".cc", ".cpp", ".c++", ".cxx", true) 138 .CasesLower(".h", ".hh", ".hpp", ".h++", ".hxx", true) 139 .CasesLower(".m", ".mm", true) 140 .CasesLower(".i", ".ii", ".mi", ".mmi", true) 141 .CasesLower(".def", ".inc", true) 142 .Default(false); 143 } 144 145 146 static bool shouldCacheStatFailures(StringRef Filename) { 147 StringRef Ext = llvm::sys::path::extension(Filename); 148 if (Ext.empty()) 149 return false; // This may be the module cache directory. 150 return shouldMinimize(Filename); // Only cache stat failures on source files. 151 } 152 153 void DependencyScanningWorkerFilesystem::ignoreFile(StringRef RawFilename) { 154 llvm::SmallString<256> Filename; 155 llvm::sys::path::native(RawFilename, Filename); 156 IgnoredFiles.insert(Filename); 157 } 158 159 bool DependencyScanningWorkerFilesystem::shouldIgnoreFile( 160 StringRef RawFilename) { 161 llvm::SmallString<256> Filename; 162 llvm::sys::path::native(RawFilename, Filename); 163 return IgnoredFiles.contains(Filename); 164 } 165 166 llvm::ErrorOr<const CachedFileSystemEntry *> 167 DependencyScanningWorkerFilesystem::getOrCreateFileSystemEntry( 168 const StringRef Filename) { 169 bool ShouldMinimize = !shouldIgnoreFile(Filename) && shouldMinimize(Filename); 170 171 if (const auto *Entry = Cache.getCachedEntry(Filename, ShouldMinimize)) 172 return Entry; 173 174 // FIXME: Handle PCM/PCH files. 175 // FIXME: Handle module map files. 176 177 DependencyScanningFilesystemSharedCache::SharedFileSystemEntry 178 &SharedCacheEntry = SharedCache.get(Filename, ShouldMinimize); 179 const CachedFileSystemEntry *Result; 180 { 181 std::unique_lock<std::mutex> LockGuard(SharedCacheEntry.ValueLock); 182 CachedFileSystemEntry &CacheEntry = SharedCacheEntry.Value; 183 184 if (!CacheEntry.isValid()) { 185 llvm::vfs::FileSystem &FS = getUnderlyingFS(); 186 auto MaybeStatus = FS.status(Filename); 187 if (!MaybeStatus) { 188 if (!shouldCacheStatFailures(Filename)) 189 // HACK: We need to always restat non source files if the stat fails. 190 // This is because Clang first looks up the module cache and module 191 // files before building them, and then looks for them again. If we 192 // cache the stat failure, it won't see them the second time. 193 return MaybeStatus.getError(); 194 else 195 CacheEntry = CachedFileSystemEntry(MaybeStatus.getError()); 196 } else if (MaybeStatus->isDirectory()) 197 CacheEntry = CachedFileSystemEntry::createDirectoryEntry( 198 std::move(*MaybeStatus)); 199 else 200 CacheEntry = CachedFileSystemEntry::createFileEntry(Filename, FS, 201 ShouldMinimize); 202 } 203 204 Result = &CacheEntry; 205 } 206 207 // Store the result in the local cache. 208 Cache.setCachedEntry(Filename, ShouldMinimize, Result); 209 return Result; 210 } 211 212 llvm::ErrorOr<llvm::vfs::Status> 213 DependencyScanningWorkerFilesystem::status(const Twine &Path) { 214 SmallString<256> OwnedFilename; 215 StringRef Filename = Path.toStringRef(OwnedFilename); 216 const llvm::ErrorOr<const CachedFileSystemEntry *> Result = 217 getOrCreateFileSystemEntry(Filename); 218 if (!Result) 219 return Result.getError(); 220 return (*Result)->getStatus(); 221 } 222 223 namespace { 224 225 /// The VFS that is used by clang consumes the \c CachedFileSystemEntry using 226 /// this subclass. 227 class MinimizedVFSFile final : public llvm::vfs::File { 228 public: 229 MinimizedVFSFile(std::unique_ptr<llvm::MemoryBuffer> Buffer, 230 llvm::vfs::Status Stat) 231 : Buffer(std::move(Buffer)), Stat(std::move(Stat)) {} 232 233 static llvm::ErrorOr<std::unique_ptr<llvm::vfs::File>> 234 create(const CachedFileSystemEntry *Entry, 235 ExcludedPreprocessorDirectiveSkipMapping *PPSkipMappings); 236 237 llvm::ErrorOr<llvm::vfs::Status> status() override { return Stat; } 238 239 llvm::ErrorOr<std::unique_ptr<llvm::MemoryBuffer>> 240 getBuffer(const Twine &Name, int64_t FileSize, bool RequiresNullTerminator, 241 bool IsVolatile) override { 242 return std::move(Buffer); 243 } 244 245 std::error_code close() override { return {}; } 246 247 private: 248 std::unique_ptr<llvm::MemoryBuffer> Buffer; 249 llvm::vfs::Status Stat; 250 }; 251 252 } // end anonymous namespace 253 254 llvm::ErrorOr<std::unique_ptr<llvm::vfs::File>> MinimizedVFSFile::create( 255 const CachedFileSystemEntry *Entry, 256 ExcludedPreprocessorDirectiveSkipMapping *PPSkipMappings) { 257 if (Entry->isDirectory()) 258 return llvm::ErrorOr<std::unique_ptr<llvm::vfs::File>>( 259 std::make_error_code(std::errc::is_a_directory)); 260 llvm::ErrorOr<StringRef> Contents = Entry->getContents(); 261 if (!Contents) 262 return Contents.getError(); 263 auto Result = std::make_unique<MinimizedVFSFile>( 264 llvm::MemoryBuffer::getMemBuffer(*Contents, Entry->getName(), 265 /*RequiresNullTerminator=*/false), 266 *Entry->getStatus()); 267 if (!Entry->getPPSkippedRangeMapping().empty() && PPSkipMappings) 268 (*PPSkipMappings)[Result->Buffer->getBufferStart()] = 269 &Entry->getPPSkippedRangeMapping(); 270 return llvm::ErrorOr<std::unique_ptr<llvm::vfs::File>>( 271 std::unique_ptr<llvm::vfs::File>(std::move(Result))); 272 } 273 274 llvm::ErrorOr<std::unique_ptr<llvm::vfs::File>> 275 DependencyScanningWorkerFilesystem::openFileForRead(const Twine &Path) { 276 SmallString<256> OwnedFilename; 277 StringRef Filename = Path.toStringRef(OwnedFilename); 278 279 const llvm::ErrorOr<const CachedFileSystemEntry *> Result = 280 getOrCreateFileSystemEntry(Filename); 281 if (!Result) 282 return Result.getError(); 283 return MinimizedVFSFile::create(Result.get(), PPSkipMappings); 284 } 285