GlobalModuleIndex.cpp 27 KB

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