1 //===--- GlobalModuleIndex.cpp - Global Module Index ------------*- 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 GlobalModuleIndex class. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "ASTReaderInternals.h" 15 #include "clang/Basic/FileManager.h" 16 #include "clang/Lex/HeaderSearch.h" 17 #include "clang/Serialization/ASTBitCodes.h" 18 #include "clang/Serialization/GlobalModuleIndex.h" 19 #include "clang/Serialization/Module.h" 20 #include "llvm/ADT/DenseMap.h" 21 #include "llvm/ADT/MapVector.h" 22 #include "llvm/ADT/SmallString.h" 23 #include "llvm/ADT/StringExtras.h" 24 #include "llvm/Bitcode/BitstreamReader.h" 25 #include "llvm/Bitcode/BitstreamWriter.h" 26 #include "llvm/Support/FileSystem.h" 27 #include "llvm/Support/LockFileManager.h" 28 #include "llvm/Support/MemoryBuffer.h" 29 #include "llvm/Support/OnDiskHashTable.h" 30 #include "llvm/Support/Path.h" 31 #include <cstdio> 32 using namespace clang; 33 using namespace serialization; 34 35 //----------------------------------------------------------------------------// 36 // Shared constants 37 //----------------------------------------------------------------------------// 38 namespace { 39 enum { 40 /// \brief The block containing the index. 41 GLOBAL_INDEX_BLOCK_ID = llvm::bitc::FIRST_APPLICATION_BLOCKID 42 }; 43 44 /// \brief Describes the record types in the index. 45 enum IndexRecordTypes { 46 /// \brief Contains version information and potentially other metadata, 47 /// used to determine if we can read this global index file. 48 INDEX_METADATA, 49 /// \brief Describes a module, including its file name and dependencies. 50 MODULE, 51 /// \brief The index for identifiers. 52 IDENTIFIER_INDEX 53 }; 54 } 55 56 /// \brief The name of the global index file. 57 static const char * const IndexFileName = "modules.idx"; 58 59 /// \brief The global index file version. 60 static const unsigned CurrentVersion = 1; 61 62 //----------------------------------------------------------------------------// 63 // Global module index reader. 64 //----------------------------------------------------------------------------// 65 66 namespace { 67 68 /// \brief Trait used to read the identifier index from the on-disk hash 69 /// table. 70 class IdentifierIndexReaderTrait { 71 public: 72 typedef StringRef external_key_type; 73 typedef StringRef internal_key_type; 74 typedef SmallVector<unsigned, 2> data_type; 75 typedef unsigned hash_value_type; 76 typedef unsigned offset_type; 77 78 static bool EqualKey(const internal_key_type& a, const internal_key_type& b) { 79 return a == b; 80 } 81 82 static hash_value_type ComputeHash(const internal_key_type& a) { 83 return llvm::HashString(a); 84 } 85 86 static std::pair<unsigned, unsigned> 87 ReadKeyDataLength(const unsigned char*& d) { 88 using namespace llvm::support; 89 unsigned KeyLen = endian::readNext<uint16_t, little, unaligned>(d); 90 unsigned DataLen = endian::readNext<uint16_t, little, unaligned>(d); 91 return std::make_pair(KeyLen, DataLen); 92 } 93 94 static const internal_key_type& 95 GetInternalKey(const external_key_type& x) { return x; } 96 97 static const external_key_type& 98 GetExternalKey(const internal_key_type& x) { return x; } 99 100 static internal_key_type ReadKey(const unsigned char* d, unsigned n) { 101 return StringRef((const char *)d, n); 102 } 103 104 static data_type ReadData(const internal_key_type& k, 105 const unsigned char* d, 106 unsigned DataLen) { 107 using namespace llvm::support; 108 109 data_type Result; 110 while (DataLen > 0) { 111 unsigned ID = endian::readNext<uint32_t, little, unaligned>(d); 112 Result.push_back(ID); 113 DataLen -= 4; 114 } 115 116 return Result; 117 } 118 }; 119 120 typedef llvm::OnDiskIterableChainedHashTable<IdentifierIndexReaderTrait> 121 IdentifierIndexTable; 122 123 } 124 125 GlobalModuleIndex::GlobalModuleIndex(llvm::MemoryBuffer *Buffer, 126 llvm::BitstreamCursor Cursor) 127 : Buffer(Buffer), IdentifierIndex(), 128 NumIdentifierLookups(), NumIdentifierLookupHits() 129 { 130 // Read the global index. 131 bool InGlobalIndexBlock = false; 132 bool Done = false; 133 while (!Done) { 134 llvm::BitstreamEntry Entry = Cursor.advance(); 135 136 switch (Entry.Kind) { 137 case llvm::BitstreamEntry::Error: 138 return; 139 140 case llvm::BitstreamEntry::EndBlock: 141 if (InGlobalIndexBlock) { 142 InGlobalIndexBlock = false; 143 Done = true; 144 continue; 145 } 146 return; 147 148 149 case llvm::BitstreamEntry::Record: 150 // Entries in the global index block are handled below. 151 if (InGlobalIndexBlock) 152 break; 153 154 return; 155 156 case llvm::BitstreamEntry::SubBlock: 157 if (!InGlobalIndexBlock && Entry.ID == GLOBAL_INDEX_BLOCK_ID) { 158 if (Cursor.EnterSubBlock(GLOBAL_INDEX_BLOCK_ID)) 159 return; 160 161 InGlobalIndexBlock = true; 162 } else if (Cursor.SkipBlock()) { 163 return; 164 } 165 continue; 166 } 167 168 SmallVector<uint64_t, 64> Record; 169 StringRef Blob; 170 switch ((IndexRecordTypes)Cursor.readRecord(Entry.ID, Record, &Blob)) { 171 case INDEX_METADATA: 172 // Make sure that the version matches. 173 if (Record.size() < 1 || Record[0] != CurrentVersion) 174 return; 175 break; 176 177 case MODULE: { 178 unsigned Idx = 0; 179 unsigned ID = Record[Idx++]; 180 181 // Make room for this module's information. 182 if (ID == Modules.size()) 183 Modules.push_back(ModuleInfo()); 184 else 185 Modules.resize(ID + 1); 186 187 // Size/modification time for this module file at the time the 188 // global index was built. 189 Modules[ID].Size = Record[Idx++]; 190 Modules[ID].ModTime = Record[Idx++]; 191 192 // File name. 193 unsigned NameLen = Record[Idx++]; 194 Modules[ID].FileName.assign(Record.begin() + Idx, 195 Record.begin() + Idx + NameLen); 196 Idx += NameLen; 197 198 // Dependencies 199 unsigned NumDeps = Record[Idx++]; 200 Modules[ID].Dependencies.insert(Modules[ID].Dependencies.end(), 201 Record.begin() + Idx, 202 Record.begin() + Idx + NumDeps); 203 Idx += NumDeps; 204 205 // Make sure we're at the end of the record. 206 assert(Idx == Record.size() && "More module info?"); 207 208 // Record this module as an unresolved module. 209 // FIXME: this doesn't work correctly for module names containing path 210 // separators. 211 StringRef ModuleName = llvm::sys::path::stem(Modules[ID].FileName); 212 // Remove the -<hash of ModuleMapPath> 213 ModuleName = ModuleName.rsplit('-').first; 214 UnresolvedModules[ModuleName] = ID; 215 break; 216 } 217 218 case IDENTIFIER_INDEX: 219 // Wire up the identifier index. 220 if (Record[0]) { 221 IdentifierIndex = IdentifierIndexTable::Create( 222 (const unsigned char *)Blob.data() + Record[0], 223 (const unsigned char *)Blob.data() + sizeof(uint32_t), 224 (const unsigned char *)Blob.data(), IdentifierIndexReaderTrait()); 225 } 226 break; 227 } 228 } 229 } 230 231 GlobalModuleIndex::~GlobalModuleIndex() { 232 delete static_cast<IdentifierIndexTable *>(IdentifierIndex); 233 } 234 235 std::pair<GlobalModuleIndex *, GlobalModuleIndex::ErrorCode> 236 GlobalModuleIndex::readIndex(StringRef Path) { 237 // Load the index file, if it's there. 238 llvm::SmallString<128> IndexPath; 239 IndexPath += Path; 240 llvm::sys::path::append(IndexPath, IndexFileName); 241 242 llvm::ErrorOr<std::unique_ptr<llvm::MemoryBuffer>> BufferOrErr = 243 llvm::MemoryBuffer::getFile(IndexPath.c_str()); 244 if (!BufferOrErr) 245 return std::make_pair(nullptr, EC_NotFound); 246 std::unique_ptr<llvm::MemoryBuffer> Buffer = std::move(BufferOrErr.get()); 247 248 /// \brief The bitstream reader from which we'll read the AST file. 249 llvm::BitstreamReader Reader((const unsigned char *)Buffer->getBufferStart(), 250 (const unsigned char *)Buffer->getBufferEnd()); 251 252 /// \brief The main bitstream cursor for the main block. 253 llvm::BitstreamCursor Cursor(Reader); 254 255 // Sniff for the signature. 256 if (Cursor.Read(8) != 'B' || 257 Cursor.Read(8) != 'C' || 258 Cursor.Read(8) != 'G' || 259 Cursor.Read(8) != 'I') { 260 return std::make_pair(nullptr, EC_IOError); 261 } 262 263 return std::make_pair(new GlobalModuleIndex(Buffer.release(), Cursor), 264 EC_None); 265 } 266 267 void 268 GlobalModuleIndex::getKnownModules(SmallVectorImpl<ModuleFile *> &ModuleFiles) { 269 ModuleFiles.clear(); 270 for (unsigned I = 0, N = Modules.size(); I != N; ++I) { 271 if (ModuleFile *MF = Modules[I].File) 272 ModuleFiles.push_back(MF); 273 } 274 } 275 276 void GlobalModuleIndex::getModuleDependencies( 277 ModuleFile *File, 278 SmallVectorImpl<ModuleFile *> &Dependencies) { 279 // Look for information about this module file. 280 llvm::DenseMap<ModuleFile *, unsigned>::iterator Known 281 = ModulesByFile.find(File); 282 if (Known == ModulesByFile.end()) 283 return; 284 285 // Record dependencies. 286 Dependencies.clear(); 287 ArrayRef<unsigned> StoredDependencies = Modules[Known->second].Dependencies; 288 for (unsigned I = 0, N = StoredDependencies.size(); I != N; ++I) { 289 if (ModuleFile *MF = Modules[I].File) 290 Dependencies.push_back(MF); 291 } 292 } 293 294 bool GlobalModuleIndex::lookupIdentifier(StringRef Name, HitSet &Hits) { 295 Hits.clear(); 296 297 // If there's no identifier index, there is nothing we can do. 298 if (!IdentifierIndex) 299 return false; 300 301 // Look into the identifier index. 302 ++NumIdentifierLookups; 303 IdentifierIndexTable &Table 304 = *static_cast<IdentifierIndexTable *>(IdentifierIndex); 305 IdentifierIndexTable::iterator Known = Table.find(Name); 306 if (Known == Table.end()) { 307 return true; 308 } 309 310 SmallVector<unsigned, 2> ModuleIDs = *Known; 311 for (unsigned I = 0, N = ModuleIDs.size(); I != N; ++I) { 312 if (ModuleFile *MF = Modules[ModuleIDs[I]].File) 313 Hits.insert(MF); 314 } 315 316 ++NumIdentifierLookupHits; 317 return true; 318 } 319 320 bool GlobalModuleIndex::loadedModuleFile(ModuleFile *File) { 321 // Look for the module in the global module index based on the module name. 322 StringRef Name = File->ModuleName; 323 llvm::StringMap<unsigned>::iterator Known = UnresolvedModules.find(Name); 324 if (Known == UnresolvedModules.end()) { 325 return true; 326 } 327 328 // Rectify this module with the global module index. 329 ModuleInfo &Info = Modules[Known->second]; 330 331 // If the size and modification time match what we expected, record this 332 // module file. 333 bool Failed = true; 334 if (File->File->getSize() == Info.Size && 335 File->File->getModificationTime() == Info.ModTime) { 336 Info.File = File; 337 ModulesByFile[File] = Known->second; 338 339 Failed = false; 340 } 341 342 // One way or another, we have resolved this module file. 343 UnresolvedModules.erase(Known); 344 return Failed; 345 } 346 347 void GlobalModuleIndex::printStats() { 348 std::fprintf(stderr, "*** Global Module Index Statistics:\n"); 349 if (NumIdentifierLookups) { 350 fprintf(stderr, " %u / %u identifier lookups succeeded (%f%%)\n", 351 NumIdentifierLookupHits, NumIdentifierLookups, 352 (double)NumIdentifierLookupHits*100.0/NumIdentifierLookups); 353 } 354 std::fprintf(stderr, "\n"); 355 } 356 357 void GlobalModuleIndex::dump() { 358 llvm::errs() << "*** Global Module Index Dump:\n"; 359 llvm::errs() << "Module files:\n"; 360 for (auto &MI : Modules) { 361 llvm::errs() << "** " << MI.FileName << "\n"; 362 if (MI.File) 363 MI.File->dump(); 364 else 365 llvm::errs() << "\n"; 366 } 367 llvm::errs() << "\n"; 368 } 369 370 //----------------------------------------------------------------------------// 371 // Global module index writer. 372 //----------------------------------------------------------------------------// 373 374 namespace { 375 /// \brief Provides information about a specific module file. 376 struct ModuleFileInfo { 377 /// \brief The numberic ID for this module file. 378 unsigned ID; 379 380 /// \brief The set of modules on which this module depends. Each entry is 381 /// a module ID. 382 SmallVector<unsigned, 4> Dependencies; 383 }; 384 385 /// \brief Builder that generates the global module index file. 386 class GlobalModuleIndexBuilder { 387 FileManager &FileMgr; 388 389 /// \brief Mapping from files to module file information. 390 typedef llvm::MapVector<const FileEntry *, ModuleFileInfo> ModuleFilesMap; 391 392 /// \brief Information about each of the known module files. 393 ModuleFilesMap ModuleFiles; 394 395 /// \brief Mapping from identifiers to the list of module file IDs that 396 /// consider this identifier to be interesting. 397 typedef llvm::StringMap<SmallVector<unsigned, 2> > InterestingIdentifierMap; 398 399 /// \brief A mapping from all interesting identifiers to the set of module 400 /// files in which those identifiers are considered interesting. 401 InterestingIdentifierMap InterestingIdentifiers; 402 403 /// \brief Write the block-info block for the global module index file. 404 void emitBlockInfoBlock(llvm::BitstreamWriter &Stream); 405 406 /// \brief Retrieve the module file information for the given file. 407 ModuleFileInfo &getModuleFileInfo(const FileEntry *File) { 408 llvm::MapVector<const FileEntry *, ModuleFileInfo>::iterator Known 409 = ModuleFiles.find(File); 410 if (Known != ModuleFiles.end()) 411 return Known->second; 412 413 unsigned NewID = ModuleFiles.size(); 414 ModuleFileInfo &Info = ModuleFiles[File]; 415 Info.ID = NewID; 416 return Info; 417 } 418 419 public: 420 explicit GlobalModuleIndexBuilder(FileManager &FileMgr) : FileMgr(FileMgr){} 421 422 /// \brief Load the contents of the given module file into the builder. 423 /// 424 /// \returns true if an error occurred, false otherwise. 425 bool loadModuleFile(const FileEntry *File); 426 427 /// \brief Write the index to the given bitstream. 428 void writeIndex(llvm::BitstreamWriter &Stream); 429 }; 430 } 431 432 static void emitBlockID(unsigned ID, const char *Name, 433 llvm::BitstreamWriter &Stream, 434 SmallVectorImpl<uint64_t> &Record) { 435 Record.clear(); 436 Record.push_back(ID); 437 Stream.EmitRecord(llvm::bitc::BLOCKINFO_CODE_SETBID, Record); 438 439 // Emit the block name if present. 440 if (!Name || Name[0] == 0) return; 441 Record.clear(); 442 while (*Name) 443 Record.push_back(*Name++); 444 Stream.EmitRecord(llvm::bitc::BLOCKINFO_CODE_BLOCKNAME, Record); 445 } 446 447 static void emitRecordID(unsigned ID, const char *Name, 448 llvm::BitstreamWriter &Stream, 449 SmallVectorImpl<uint64_t> &Record) { 450 Record.clear(); 451 Record.push_back(ID); 452 while (*Name) 453 Record.push_back(*Name++); 454 Stream.EmitRecord(llvm::bitc::BLOCKINFO_CODE_SETRECORDNAME, Record); 455 } 456 457 void 458 GlobalModuleIndexBuilder::emitBlockInfoBlock(llvm::BitstreamWriter &Stream) { 459 SmallVector<uint64_t, 64> Record; 460 Stream.EnterSubblock(llvm::bitc::BLOCKINFO_BLOCK_ID, 3); 461 462 #define BLOCK(X) emitBlockID(X ## _ID, #X, Stream, Record) 463 #define RECORD(X) emitRecordID(X, #X, Stream, Record) 464 BLOCK(GLOBAL_INDEX_BLOCK); 465 RECORD(INDEX_METADATA); 466 RECORD(MODULE); 467 RECORD(IDENTIFIER_INDEX); 468 #undef RECORD 469 #undef BLOCK 470 471 Stream.ExitBlock(); 472 } 473 474 namespace { 475 class InterestingASTIdentifierLookupTrait 476 : public serialization::reader::ASTIdentifierLookupTraitBase { 477 478 public: 479 /// \brief The identifier and whether it is "interesting". 480 typedef std::pair<StringRef, bool> data_type; 481 482 data_type ReadData(const internal_key_type& k, 483 const unsigned char* d, 484 unsigned DataLen) { 485 // The first bit indicates whether this identifier is interesting. 486 // That's all we care about. 487 using namespace llvm::support; 488 unsigned RawID = endian::readNext<uint32_t, little, unaligned>(d); 489 bool IsInteresting = RawID & 0x01; 490 return std::make_pair(k, IsInteresting); 491 } 492 }; 493 } 494 495 bool GlobalModuleIndexBuilder::loadModuleFile(const FileEntry *File) { 496 // Open the module file. 497 std::unique_ptr<llvm::MemoryBuffer> Buffer; 498 std::string ErrorStr; 499 Buffer.reset(FileMgr.getBufferForFile(File, &ErrorStr, /*isVolatile=*/true)); 500 if (!Buffer) { 501 return true; 502 } 503 504 // Initialize the input stream 505 llvm::BitstreamReader InStreamFile; 506 llvm::BitstreamCursor InStream; 507 InStreamFile.init((const unsigned char *)Buffer->getBufferStart(), 508 (const unsigned char *)Buffer->getBufferEnd()); 509 InStream.init(InStreamFile); 510 511 // Sniff for the signature. 512 if (InStream.Read(8) != 'C' || 513 InStream.Read(8) != 'P' || 514 InStream.Read(8) != 'C' || 515 InStream.Read(8) != 'H') { 516 return true; 517 } 518 519 // Record this module file and assign it a unique ID (if it doesn't have 520 // one already). 521 unsigned ID = getModuleFileInfo(File).ID; 522 523 // Search for the blocks and records we care about. 524 enum { Other, ControlBlock, ASTBlock } State = Other; 525 bool Done = false; 526 while (!Done) { 527 llvm::BitstreamEntry Entry = InStream.advance(); 528 switch (Entry.Kind) { 529 case llvm::BitstreamEntry::Error: 530 Done = true; 531 continue; 532 533 case llvm::BitstreamEntry::Record: 534 // In the 'other' state, just skip the record. We don't care. 535 if (State == Other) { 536 InStream.skipRecord(Entry.ID); 537 continue; 538 } 539 540 // Handle potentially-interesting records below. 541 break; 542 543 case llvm::BitstreamEntry::SubBlock: 544 if (Entry.ID == CONTROL_BLOCK_ID) { 545 if (InStream.EnterSubBlock(CONTROL_BLOCK_ID)) 546 return true; 547 548 // Found the control block. 549 State = ControlBlock; 550 continue; 551 } 552 553 if (Entry.ID == AST_BLOCK_ID) { 554 if (InStream.EnterSubBlock(AST_BLOCK_ID)) 555 return true; 556 557 // Found the AST block. 558 State = ASTBlock; 559 continue; 560 } 561 562 if (InStream.SkipBlock()) 563 return true; 564 565 continue; 566 567 case llvm::BitstreamEntry::EndBlock: 568 State = Other; 569 continue; 570 } 571 572 // Read the given record. 573 SmallVector<uint64_t, 64> Record; 574 StringRef Blob; 575 unsigned Code = InStream.readRecord(Entry.ID, Record, &Blob); 576 577 // Handle module dependencies. 578 if (State == ControlBlock && Code == IMPORTS) { 579 // Load each of the imported PCH files. 580 unsigned Idx = 0, N = Record.size(); 581 while (Idx < N) { 582 // Read information about the AST file. 583 584 // Skip the imported kind 585 ++Idx; 586 587 // Skip the import location 588 ++Idx; 589 590 // Load stored size/modification time. 591 off_t StoredSize = (off_t)Record[Idx++]; 592 time_t StoredModTime = (time_t)Record[Idx++]; 593 594 // Retrieve the imported file name. 595 unsigned Length = Record[Idx++]; 596 SmallString<128> ImportedFile(Record.begin() + Idx, 597 Record.begin() + Idx + Length); 598 Idx += Length; 599 600 // Find the imported module file. 601 const FileEntry *DependsOnFile 602 = FileMgr.getFile(ImportedFile, /*openFile=*/false, 603 /*cacheFailure=*/false); 604 if (!DependsOnFile || 605 (StoredSize != DependsOnFile->getSize()) || 606 (StoredModTime != DependsOnFile->getModificationTime())) 607 return true; 608 609 // Record the dependency. 610 unsigned DependsOnID = getModuleFileInfo(DependsOnFile).ID; 611 getModuleFileInfo(File).Dependencies.push_back(DependsOnID); 612 } 613 614 continue; 615 } 616 617 // Handle the identifier table 618 if (State == ASTBlock && Code == IDENTIFIER_TABLE && Record[0] > 0) { 619 typedef llvm::OnDiskIterableChainedHashTable< 620 InterestingASTIdentifierLookupTrait> InterestingIdentifierTable; 621 std::unique_ptr<InterestingIdentifierTable> Table( 622 InterestingIdentifierTable::Create( 623 (const unsigned char *)Blob.data() + Record[0], 624 (const unsigned char *)Blob.data() + sizeof(uint32_t), 625 (const unsigned char *)Blob.data())); 626 for (InterestingIdentifierTable::data_iterator D = Table->data_begin(), 627 DEnd = Table->data_end(); 628 D != DEnd; ++D) { 629 std::pair<StringRef, bool> Ident = *D; 630 if (Ident.second) 631 InterestingIdentifiers[Ident.first].push_back(ID); 632 else 633 (void)InterestingIdentifiers[Ident.first]; 634 } 635 } 636 637 // We don't care about this record. 638 } 639 640 return false; 641 } 642 643 namespace { 644 645 /// \brief Trait used to generate the identifier index as an on-disk hash 646 /// table. 647 class IdentifierIndexWriterTrait { 648 public: 649 typedef StringRef key_type; 650 typedef StringRef key_type_ref; 651 typedef SmallVector<unsigned, 2> data_type; 652 typedef const SmallVector<unsigned, 2> &data_type_ref; 653 typedef unsigned hash_value_type; 654 typedef unsigned offset_type; 655 656 static hash_value_type ComputeHash(key_type_ref Key) { 657 return llvm::HashString(Key); 658 } 659 660 std::pair<unsigned,unsigned> 661 EmitKeyDataLength(raw_ostream& Out, key_type_ref Key, data_type_ref Data) { 662 using namespace llvm::support; 663 endian::Writer<little> LE(Out); 664 unsigned KeyLen = Key.size(); 665 unsigned DataLen = Data.size() * 4; 666 LE.write<uint16_t>(KeyLen); 667 LE.write<uint16_t>(DataLen); 668 return std::make_pair(KeyLen, DataLen); 669 } 670 671 void EmitKey(raw_ostream& Out, key_type_ref Key, unsigned KeyLen) { 672 Out.write(Key.data(), KeyLen); 673 } 674 675 void EmitData(raw_ostream& Out, key_type_ref Key, data_type_ref Data, 676 unsigned DataLen) { 677 using namespace llvm::support; 678 for (unsigned I = 0, N = Data.size(); I != N; ++I) 679 endian::Writer<little>(Out).write<uint32_t>(Data[I]); 680 } 681 }; 682 683 } 684 685 void GlobalModuleIndexBuilder::writeIndex(llvm::BitstreamWriter &Stream) { 686 using namespace llvm; 687 688 // Emit the file header. 689 Stream.Emit((unsigned)'B', 8); 690 Stream.Emit((unsigned)'C', 8); 691 Stream.Emit((unsigned)'G', 8); 692 Stream.Emit((unsigned)'I', 8); 693 694 // Write the block-info block, which describes the records in this bitcode 695 // file. 696 emitBlockInfoBlock(Stream); 697 698 Stream.EnterSubblock(GLOBAL_INDEX_BLOCK_ID, 3); 699 700 // Write the metadata. 701 SmallVector<uint64_t, 2> Record; 702 Record.push_back(CurrentVersion); 703 Stream.EmitRecord(INDEX_METADATA, Record); 704 705 // Write the set of known module files. 706 for (ModuleFilesMap::iterator M = ModuleFiles.begin(), 707 MEnd = ModuleFiles.end(); 708 M != MEnd; ++M) { 709 Record.clear(); 710 Record.push_back(M->second.ID); 711 Record.push_back(M->first->getSize()); 712 Record.push_back(M->first->getModificationTime()); 713 714 // File name 715 StringRef Name(M->first->getName()); 716 Record.push_back(Name.size()); 717 Record.append(Name.begin(), Name.end()); 718 719 // Dependencies 720 Record.push_back(M->second.Dependencies.size()); 721 Record.append(M->second.Dependencies.begin(), M->second.Dependencies.end()); 722 Stream.EmitRecord(MODULE, Record); 723 } 724 725 // Write the identifier -> module file mapping. 726 { 727 llvm::OnDiskChainedHashTableGenerator<IdentifierIndexWriterTrait> Generator; 728 IdentifierIndexWriterTrait Trait; 729 730 // Populate the hash table. 731 for (InterestingIdentifierMap::iterator I = InterestingIdentifiers.begin(), 732 IEnd = InterestingIdentifiers.end(); 733 I != IEnd; ++I) { 734 Generator.insert(I->first(), I->second, Trait); 735 } 736 737 // Create the on-disk hash table in a buffer. 738 SmallString<4096> IdentifierTable; 739 uint32_t BucketOffset; 740 { 741 using namespace llvm::support; 742 llvm::raw_svector_ostream Out(IdentifierTable); 743 // Make sure that no bucket is at offset 0 744 endian::Writer<little>(Out).write<uint32_t>(0); 745 BucketOffset = Generator.Emit(Out, Trait); 746 } 747 748 // Create a blob abbreviation 749 BitCodeAbbrev *Abbrev = new BitCodeAbbrev(); 750 Abbrev->Add(BitCodeAbbrevOp(IDENTIFIER_INDEX)); 751 Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32)); 752 Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob)); 753 unsigned IDTableAbbrev = Stream.EmitAbbrev(Abbrev); 754 755 // Write the identifier table 756 Record.clear(); 757 Record.push_back(IDENTIFIER_INDEX); 758 Record.push_back(BucketOffset); 759 Stream.EmitRecordWithBlob(IDTableAbbrev, Record, IdentifierTable.str()); 760 } 761 762 Stream.ExitBlock(); 763 } 764 765 GlobalModuleIndex::ErrorCode 766 GlobalModuleIndex::writeIndex(FileManager &FileMgr, StringRef Path) { 767 llvm::SmallString<128> IndexPath; 768 IndexPath += Path; 769 llvm::sys::path::append(IndexPath, IndexFileName); 770 771 // Coordinate building the global index file with other processes that might 772 // try to do the same. 773 llvm::LockFileManager Locked(IndexPath); 774 switch (Locked) { 775 case llvm::LockFileManager::LFS_Error: 776 return EC_IOError; 777 778 case llvm::LockFileManager::LFS_Owned: 779 // We're responsible for building the index ourselves. Do so below. 780 break; 781 782 case llvm::LockFileManager::LFS_Shared: 783 // Someone else is responsible for building the index. We don't care 784 // when they finish, so we're done. 785 return EC_Building; 786 } 787 788 // The module index builder. 789 GlobalModuleIndexBuilder Builder(FileMgr); 790 791 // Load each of the module files. 792 std::error_code EC; 793 for (llvm::sys::fs::directory_iterator D(Path, EC), DEnd; 794 D != DEnd && !EC; 795 D.increment(EC)) { 796 // If this isn't a module file, we don't care. 797 if (llvm::sys::path::extension(D->path()) != ".pcm") { 798 // ... unless it's a .pcm.lock file, which indicates that someone is 799 // in the process of rebuilding a module. They'll rebuild the index 800 // at the end of that translation unit, so we don't have to. 801 if (llvm::sys::path::extension(D->path()) == ".pcm.lock") 802 return EC_Building; 803 804 continue; 805 } 806 807 // If we can't find the module file, skip it. 808 const FileEntry *ModuleFile = FileMgr.getFile(D->path()); 809 if (!ModuleFile) 810 continue; 811 812 // Load this module file. 813 if (Builder.loadModuleFile(ModuleFile)) 814 return EC_IOError; 815 } 816 817 // The output buffer, into which the global index will be written. 818 SmallVector<char, 16> OutputBuffer; 819 { 820 llvm::BitstreamWriter OutputStream(OutputBuffer); 821 Builder.writeIndex(OutputStream); 822 } 823 824 // Write the global index file to a temporary file. 825 llvm::SmallString<128> IndexTmpPath; 826 int TmpFD; 827 if (llvm::sys::fs::createUniqueFile(IndexPath + "-%%%%%%%%", TmpFD, 828 IndexTmpPath)) 829 return EC_IOError; 830 831 // Open the temporary global index file for output. 832 llvm::raw_fd_ostream Out(TmpFD, true); 833 if (Out.has_error()) 834 return EC_IOError; 835 836 // Write the index. 837 Out.write(OutputBuffer.data(), OutputBuffer.size()); 838 Out.close(); 839 if (Out.has_error()) 840 return EC_IOError; 841 842 // Remove the old index file. It isn't relevant any more. 843 llvm::sys::fs::remove(IndexPath.str()); 844 845 // Rename the newly-written index file to the proper name. 846 if (llvm::sys::fs::rename(IndexTmpPath.str(), IndexPath.str())) { 847 // Rename failed; just remove the 848 llvm::sys::fs::remove(IndexTmpPath.str()); 849 return EC_IOError; 850 } 851 852 // We're done. 853 return EC_None; 854 } 855 856 namespace { 857 class GlobalIndexIdentifierIterator : public IdentifierIterator { 858 /// \brief The current position within the identifier lookup table. 859 IdentifierIndexTable::key_iterator Current; 860 861 /// \brief The end position within the identifier lookup table. 862 IdentifierIndexTable::key_iterator End; 863 864 public: 865 explicit GlobalIndexIdentifierIterator(IdentifierIndexTable &Idx) { 866 Current = Idx.key_begin(); 867 End = Idx.key_end(); 868 } 869 870 StringRef Next() override { 871 if (Current == End) 872 return StringRef(); 873 874 StringRef Result = *Current; 875 ++Current; 876 return Result; 877 } 878 }; 879 } 880 881 IdentifierIterator *GlobalModuleIndex::createIdentifierIterator() const { 882 IdentifierIndexTable &Table = 883 *static_cast<IdentifierIndexTable *>(IdentifierIndex); 884 return new GlobalIndexIdentifierIterator(Table); 885 } 886