1 //===-- Reproducer.cpp ----------------------------------------------------===// 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 "lldb/Utility/Reproducer.h" 10 #include "lldb/Utility/LLDBAssert.h" 11 #include "lldb/Utility/ReproducerProvider.h" 12 13 #include "llvm/Support/FileSystem.h" 14 #include "llvm/Support/Threading.h" 15 #include "llvm/Support/raw_ostream.h" 16 17 using namespace lldb_private; 18 using namespace lldb_private::repro; 19 using namespace llvm; 20 using namespace llvm::yaml; 21 22 static llvm::Optional<bool> GetEnv(const char *var) { 23 std::string val = llvm::StringRef(getenv(var)).lower(); 24 if (val == "0" || val == "off") 25 return false; 26 if (val == "1" || val == "on") 27 return true; 28 return {}; 29 } 30 31 Reproducer &Reproducer::Instance() { return *InstanceImpl(); } 32 33 llvm::Error Reproducer::Initialize(ReproducerMode mode, 34 llvm::Optional<FileSpec> root) { 35 lldbassert(!InstanceImpl() && "Already initialized."); 36 InstanceImpl().emplace(); 37 38 // The environment can override the capture mode. 39 if (mode != ReproducerMode::Replay) { 40 if (llvm::Optional<bool> override = GetEnv("LLDB_CAPTURE_REPRODUCER")) { 41 if (*override) 42 mode = ReproducerMode::Capture; 43 else 44 mode = ReproducerMode::Off; 45 } 46 } 47 48 switch (mode) { 49 case ReproducerMode::Capture: { 50 if (!root) { 51 SmallString<128> repro_dir; 52 auto ec = sys::fs::createUniqueDirectory("reproducer", repro_dir); 53 if (ec) 54 return make_error<StringError>( 55 "unable to create unique reproducer directory", ec); 56 root.emplace(repro_dir); 57 } else { 58 auto ec = sys::fs::create_directory(root->GetPath()); 59 if (ec) 60 return make_error<StringError>("unable to create reproducer directory", 61 ec); 62 } 63 return Instance().SetCapture(root); 64 } break; 65 case ReproducerMode::Replay: 66 return Instance().SetReplay(root, /*passive*/ false); 67 case ReproducerMode::PassiveReplay: 68 return Instance().SetReplay(root, /*passive*/ true); 69 case ReproducerMode::Off: 70 break; 71 }; 72 73 return Error::success(); 74 } 75 76 void Reproducer::Initialize() { 77 llvm::cantFail(Initialize(repro::ReproducerMode::Off, llvm::None)); 78 } 79 80 bool Reproducer::Initialized() { return InstanceImpl().operator bool(); } 81 82 void Reproducer::Terminate() { 83 lldbassert(InstanceImpl() && "Already terminated."); 84 InstanceImpl().reset(); 85 } 86 87 Optional<Reproducer> &Reproducer::InstanceImpl() { 88 static Optional<Reproducer> g_reproducer; 89 return g_reproducer; 90 } 91 92 const Generator *Reproducer::GetGenerator() const { 93 std::lock_guard<std::mutex> guard(m_mutex); 94 if (m_generator) 95 return &(*m_generator); 96 return nullptr; 97 } 98 99 const Loader *Reproducer::GetLoader() const { 100 std::lock_guard<std::mutex> guard(m_mutex); 101 if (m_loader) 102 return &(*m_loader); 103 return nullptr; 104 } 105 106 Generator *Reproducer::GetGenerator() { 107 std::lock_guard<std::mutex> guard(m_mutex); 108 if (m_generator) 109 return &(*m_generator); 110 return nullptr; 111 } 112 113 Loader *Reproducer::GetLoader() { 114 std::lock_guard<std::mutex> guard(m_mutex); 115 if (m_loader) 116 return &(*m_loader); 117 return nullptr; 118 } 119 120 llvm::Error Reproducer::SetCapture(llvm::Optional<FileSpec> root) { 121 std::lock_guard<std::mutex> guard(m_mutex); 122 123 if (root && m_loader) 124 return make_error<StringError>( 125 "cannot generate a reproducer when replay one", 126 inconvertibleErrorCode()); 127 128 if (!root) { 129 m_generator.reset(); 130 return Error::success(); 131 } 132 133 m_generator.emplace(*root); 134 return Error::success(); 135 } 136 137 llvm::Error Reproducer::SetReplay(llvm::Optional<FileSpec> root, bool passive) { 138 std::lock_guard<std::mutex> guard(m_mutex); 139 140 if (root && m_generator) 141 return make_error<StringError>( 142 "cannot replay a reproducer when generating one", 143 inconvertibleErrorCode()); 144 145 if (!root) { 146 m_loader.reset(); 147 return Error::success(); 148 } 149 150 m_loader.emplace(*root, passive); 151 if (auto e = m_loader->LoadIndex()) 152 return e; 153 154 return Error::success(); 155 } 156 157 FileSpec Reproducer::GetReproducerPath() const { 158 if (auto g = GetGenerator()) 159 return g->GetRoot(); 160 if (auto l = GetLoader()) 161 return l->GetRoot(); 162 return {}; 163 } 164 165 static FileSpec MakeAbsolute(const FileSpec &file_spec) { 166 SmallString<128> path; 167 file_spec.GetPath(path, false); 168 llvm::sys::fs::make_absolute(path); 169 return FileSpec(path, file_spec.GetPathStyle()); 170 } 171 172 Generator::Generator(FileSpec root) : m_root(MakeAbsolute(std::move(root))) { 173 GetOrCreate<repro::WorkingDirectoryProvider>(); 174 GetOrCreate<repro::HomeDirectoryProvider>(); 175 } 176 177 Generator::~Generator() { 178 if (!m_done) { 179 if (m_auto_generate) 180 Keep(); 181 else 182 Discard(); 183 } 184 } 185 186 ProviderBase *Generator::Register(std::unique_ptr<ProviderBase> provider) { 187 std::lock_guard<std::mutex> lock(m_providers_mutex); 188 std::pair<const void *, std::unique_ptr<ProviderBase>> key_value( 189 provider->DynamicClassID(), std::move(provider)); 190 auto e = m_providers.insert(std::move(key_value)); 191 return e.first->getSecond().get(); 192 } 193 194 void Generator::Keep() { 195 assert(!m_done); 196 m_done = true; 197 198 for (auto &provider : m_providers) 199 provider.second->Keep(); 200 201 AddProvidersToIndex(); 202 } 203 204 void Generator::Discard() { 205 assert(!m_done); 206 m_done = true; 207 208 for (auto &provider : m_providers) 209 provider.second->Discard(); 210 211 llvm::sys::fs::remove_directories(m_root.GetPath()); 212 } 213 214 void Generator::SetAutoGenerate(bool b) { m_auto_generate = b; } 215 216 bool Generator::IsAutoGenerate() const { return m_auto_generate; } 217 218 const FileSpec &Generator::GetRoot() const { return m_root; } 219 220 void Generator::AddProvidersToIndex() { 221 FileSpec index = m_root; 222 index.AppendPathComponent("index.yaml"); 223 224 std::error_code EC; 225 auto strm = std::make_unique<raw_fd_ostream>(index.GetPath(), EC, 226 sys::fs::OpenFlags::OF_None); 227 yaml::Output yout(*strm); 228 229 std::vector<std::string> files; 230 files.reserve(m_providers.size()); 231 for (auto &provider : m_providers) { 232 files.emplace_back(provider.second->GetFile()); 233 } 234 235 yout << files; 236 } 237 238 Loader::Loader(FileSpec root, bool passive) 239 : m_root(MakeAbsolute(std::move(root))), m_loaded(false), 240 m_passive_replay(passive) {} 241 242 llvm::Error Loader::LoadIndex() { 243 if (m_loaded) 244 return llvm::Error::success(); 245 246 FileSpec index = m_root.CopyByAppendingPathComponent("index.yaml"); 247 248 auto error_or_file = MemoryBuffer::getFile(index.GetPath()); 249 if (auto err = error_or_file.getError()) 250 return make_error<StringError>("unable to load reproducer index", err); 251 252 yaml::Input yin((*error_or_file)->getBuffer()); 253 yin >> m_files; 254 if (auto err = yin.error()) 255 return make_error<StringError>("unable to read reproducer index", err); 256 257 // Sort files to speed up search. 258 llvm::sort(m_files); 259 260 // Remember that we've loaded the index. 261 m_loaded = true; 262 263 return llvm::Error::success(); 264 } 265 266 bool Loader::HasFile(StringRef file) { 267 assert(m_loaded); 268 auto it = std::lower_bound(m_files.begin(), m_files.end(), file.str()); 269 return (it != m_files.end()) && (*it == file); 270 } 271 272 void Verifier::Verify( 273 llvm::function_ref<void(llvm::StringRef)> error_callback, 274 llvm::function_ref<void(llvm::StringRef)> warning_callback, 275 llvm::function_ref<void(llvm::StringRef)> note_callack) const { 276 if (!m_loader) { 277 error_callback("invalid loader"); 278 return; 279 } 280 281 FileSpec vfs_mapping = m_loader->GetFile<FileProvider::Info>(); 282 ErrorOr<std::unique_ptr<MemoryBuffer>> buffer = 283 vfs::getRealFileSystem()->getBufferForFile(vfs_mapping.GetPath()); 284 if (!buffer) { 285 error_callback("unable to read files: " + buffer.getError().message()); 286 return; 287 } 288 289 IntrusiveRefCntPtr<vfs::FileSystem> vfs = vfs::getVFSFromYAML( 290 std::move(buffer.get()), nullptr, vfs_mapping.GetPath()); 291 if (!vfs) { 292 error_callback("unable to initialize the virtual file system"); 293 return; 294 } 295 296 auto &redirecting_vfs = static_cast<vfs::RedirectingFileSystem &>(*vfs); 297 redirecting_vfs.setFallthrough(false); 298 299 { 300 llvm::Expected<std::string> working_dir = 301 GetDirectoryFrom<WorkingDirectoryProvider>(m_loader); 302 if (working_dir) { 303 if (!vfs->exists(*working_dir)) 304 warning_callback("working directory '" + *working_dir + "' not in VFS"); 305 vfs->setCurrentWorkingDirectory(*working_dir); 306 } else { 307 warning_callback("no working directory in reproducer: " + 308 toString(working_dir.takeError())); 309 } 310 } 311 312 { 313 llvm::Expected<std::string> home_dir = 314 GetDirectoryFrom<HomeDirectoryProvider>(m_loader); 315 if (home_dir) { 316 if (!vfs->exists(*home_dir)) 317 warning_callback("home directory '" + *home_dir + "' not in VFS"); 318 } else { 319 warning_callback("no home directory in reproducer: " + 320 toString(home_dir.takeError())); 321 } 322 } 323 324 { 325 Expected<std::string> symbol_files = 326 m_loader->LoadBuffer<SymbolFileProvider>(); 327 if (symbol_files) { 328 std::vector<SymbolFileProvider::Entry> entries; 329 llvm::yaml::Input yin(*symbol_files); 330 yin >> entries; 331 for (const auto &entry : entries) { 332 if (!entry.module_path.empty() && !vfs->exists(entry.module_path)) { 333 warning_callback("'" + entry.module_path + "': module path for " + 334 entry.uuid + " not in VFS"); 335 } 336 if (!entry.symbol_path.empty() && !vfs->exists(entry.symbol_path)) { 337 warning_callback("'" + entry.symbol_path + "': symbol path for " + 338 entry.uuid + " not in VFS"); 339 } 340 } 341 } else { 342 llvm::consumeError(symbol_files.takeError()); 343 } 344 } 345 346 // Missing files in the VFS are notes rather than warnings. Because the VFS 347 // is a snapshot, temporary files could have been removed between when they 348 // were recorded and when the reproducer was generated. 349 std::vector<llvm::StringRef> roots = redirecting_vfs.getRoots(); 350 for (llvm::StringRef root : roots) { 351 std::error_code ec; 352 vfs::recursive_directory_iterator iter(*vfs, root, ec); 353 vfs::recursive_directory_iterator end; 354 for (; iter != end && !ec; iter.increment(ec)) { 355 ErrorOr<vfs::Status> status = vfs->status(iter->path()); 356 if (!status) 357 note_callack("'" + iter->path().str() + 358 "': " + status.getError().message()); 359 } 360 } 361 } 362