blob: b778a72ba2e2660b30d646d770ce7f61c74d98e0 [file] [log] [blame]
Douglas Gregora6b00fc2013-01-23 22:38:11 +00001//===--- 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/Basic/OnDiskHashTable.h"
17#include "clang/Serialization/ASTBitCodes.h"
18#include "clang/Serialization/GlobalModuleIndex.h"
19#include "llvm/ADT/DenseMap.h"
20#include "llvm/ADT/MapVector.h"
21#include "llvm/ADT/SmallString.h"
22#include "llvm/ADT/StringExtras.h"
23#include "llvm/Bitcode/BitstreamReader.h"
24#include "llvm/Bitcode/BitstreamWriter.h"
Douglas Gregor51001352013-01-23 22:45:24 +000025#include "llvm/Support/FileSystem.h"
Douglas Gregora6b00fc2013-01-23 22:38:11 +000026#include "llvm/Support/LockFileManager.h"
27#include "llvm/Support/MemoryBuffer.h"
28#include "llvm/Support/PathV2.h"
NAKAMURA Takumi1d321332013-01-25 01:47:07 +000029#include <cstdio>
Douglas Gregora6b00fc2013-01-23 22:38:11 +000030using namespace clang;
31using namespace serialization;
32
33//----------------------------------------------------------------------------//
34// Shared constants
35//----------------------------------------------------------------------------//
36namespace {
37 enum {
38 /// \brief The block containing the index.
39 GLOBAL_INDEX_BLOCK_ID = llvm::bitc::FIRST_APPLICATION_BLOCKID
40 };
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.
Douglas Gregor1a49d972013-01-25 01:03:03 +000046 INDEX_METADATA,
Douglas Gregora6b00fc2013-01-23 22:38:11 +000047 /// \brief Describes a module, including its file name and dependencies.
48 MODULE,
49 /// \brief The index for identifiers.
50 IDENTIFIER_INDEX
51 };
52}
53
54/// \brief The name of the global index file.
55static const char * const IndexFileName = "modules.idx";
56
57/// \brief The global index file version.
58static const unsigned CurrentVersion = 1;
59
60//----------------------------------------------------------------------------//
Douglas Gregor1a49d972013-01-25 01:03:03 +000061// Global module index reader.
62//----------------------------------------------------------------------------//
63
64namespace {
65
66/// \brief Trait used to read the identifier index from the on-disk hash
67/// table.
68class IdentifierIndexReaderTrait {
69public:
70 typedef StringRef external_key_type;
71 typedef StringRef internal_key_type;
72 typedef SmallVector<unsigned, 2> data_type;
73
74 static bool EqualKey(const internal_key_type& a, const internal_key_type& b) {
75 return a == b;
76 }
77
78 static unsigned ComputeHash(const internal_key_type& a) {
79 return llvm::HashString(a);
80 }
81
82 static std::pair<unsigned, unsigned>
83 ReadKeyDataLength(const unsigned char*& d) {
84 using namespace clang::io;
85 unsigned KeyLen = ReadUnalignedLE16(d);
86 unsigned DataLen = ReadUnalignedLE16(d);
87 return std::make_pair(KeyLen, DataLen);
88 }
89
90 static const internal_key_type&
91 GetInternalKey(const external_key_type& x) { return x; }
92
93 static const external_key_type&
94 GetExternalKey(const internal_key_type& x) { return x; }
95
96 static internal_key_type ReadKey(const unsigned char* d, unsigned n) {
97 return StringRef((const char *)d, n);
98 }
99
100 static data_type ReadData(const internal_key_type& k,
101 const unsigned char* d,
102 unsigned DataLen) {
103 using namespace clang::io;
104
105 data_type Result;
106 while (DataLen > 0) {
107 unsigned ID = ReadUnalignedLE32(d);
108 Result.push_back(ID);
109 DataLen -= 4;
110 }
111
112 return Result;
113 }
114};
115
116typedef OnDiskChainedHashTable<IdentifierIndexReaderTrait> IdentifierIndexTable;
117
118/// \brief Module information as it was loaded from the index file.
119struct LoadedModuleInfo {
120 const FileEntry *File;
121 SmallVector<unsigned, 2> Dependencies;
122 SmallVector<unsigned, 2> ImportedBy;
123};
124
125}
126
127GlobalModuleIndex::GlobalModuleIndex(FileManager &FileMgr,
128 llvm::MemoryBuffer *Buffer,
129 llvm::BitstreamCursor Cursor)
Douglas Gregor188bdcd2013-01-25 23:32:03 +0000130 : Buffer(Buffer), IdentifierIndex(),
131 NumIdentifierLookups(), NumIdentifierLookupHits()
Douglas Gregor1a49d972013-01-25 01:03:03 +0000132{
133 typedef llvm::DenseMap<unsigned, LoadedModuleInfo> LoadedModulesMap;
134 LoadedModulesMap LoadedModules;
135
136 // Read the global index.
137 unsigned LargestID = 0;
138 bool InGlobalIndexBlock = false;
139 bool Done = false;
140 bool AnyOutOfDate = false;
141 while (!Done) {
142 llvm::BitstreamEntry Entry = Cursor.advance();
143
144 switch (Entry.Kind) {
145 case llvm::BitstreamEntry::Error:
146 return;
147
148 case llvm::BitstreamEntry::EndBlock:
149 if (InGlobalIndexBlock) {
150 InGlobalIndexBlock = false;
151 Done = true;
152 continue;
153 }
154 return;
155
156
157 case llvm::BitstreamEntry::Record:
158 // Entries in the global index block are handled below.
159 if (InGlobalIndexBlock)
160 break;
161
162 return;
163
164 case llvm::BitstreamEntry::SubBlock:
165 if (!InGlobalIndexBlock && Entry.ID == GLOBAL_INDEX_BLOCK_ID) {
166 if (Cursor.EnterSubBlock(GLOBAL_INDEX_BLOCK_ID))
167 return;
168
169 InGlobalIndexBlock = true;
170 } else if (Cursor.SkipBlock()) {
171 return;
172 }
173 continue;
174 }
175
176 SmallVector<uint64_t, 64> Record;
177 StringRef Blob;
178 switch ((IndexRecordTypes)Cursor.readRecord(Entry.ID, Record, &Blob)) {
179 case INDEX_METADATA:
180 // Make sure that the version matches.
181 if (Record.size() < 1 || Record[0] != CurrentVersion)
182 return;
183 break;
184
185 case MODULE: {
186 unsigned Idx = 0;
187 unsigned ID = Record[Idx++];
188 if (ID > LargestID)
189 LargestID = ID;
190
191 off_t Size = Record[Idx++];
192 time_t ModTime = Record[Idx++];
193
194 // File name.
195 unsigned NameLen = Record[Idx++];
196 llvm::SmallString<64> FileName(Record.begin() + Idx,
197 Record.begin() + Idx + NameLen);
198 Idx += NameLen;
199
200 // Dependencies
201 unsigned NumDeps = Record[Idx++];
202 llvm::SmallVector<unsigned, 2>
203 Dependencies(Record.begin() + Idx, Record.begin() + Idx + NumDeps);
204
205 // Find the file. If we can't find it, ignore it.
206 const FileEntry *File = FileMgr.getFile(FileName);
207 if (!File) {
208 AnyOutOfDate = true;
209 break;
210 }
211
212 // If the module file is newer than the index, ignore it.
213 if (File->getSize() != Size || File->getModificationTime() != ModTime) {
214 AnyOutOfDate = true;
215 break;
216 }
217
218 // Record this module. The dependencies will be resolved later.
219 LoadedModuleInfo &Info = LoadedModules[ID];
220 Info.File = File;
221 Info.Dependencies.swap(Dependencies);
222 break;
223 }
224
225 case IDENTIFIER_INDEX:
226 // Wire up the identifier index.
227 if (Record[0]) {
228 IdentifierIndex = IdentifierIndexTable::Create(
229 (const unsigned char *)Blob.data() + Record[0],
230 (const unsigned char *)Blob.data(),
231 IdentifierIndexReaderTrait());
232 }
233 break;
234 }
235 }
236
237 // If there are any modules that have gone out-of-date, prune out any modules
238 // that depend on them.
239 if (AnyOutOfDate) {
240 // First, build back links in the module dependency graph.
241 SmallVector<unsigned, 4> Stack;
242 for (LoadedModulesMap::iterator LM = LoadedModules.begin(),
243 LMEnd = LoadedModules.end();
244 LM != LMEnd; ++LM) {
245 unsigned ID = LM->first;
246
247 // If this module is out-of-date, push it onto the stack.
248 if (LM->second.File == 0)
249 Stack.push_back(ID);
250
251 for (unsigned I = 0, N = LM->second.Dependencies.size(); I != N; ++I) {
252 unsigned DepID = LM->second.Dependencies[I];
253 LoadedModulesMap::iterator Known = LoadedModules.find(DepID);
254 if (Known == LoadedModules.end() || !Known->second.File) {
255 // The dependency was out-of-date, so mark us as out of date.
256 // This is just an optimization.
257 if (LM->second.File)
258 Stack.push_back(ID);
259
260 LM->second.File = 0;
261 continue;
262 }
263
264 // Record this reverse dependency.
265 Known->second.ImportedBy.push_back(ID);
266 }
267 }
268
269 // Second, walk the back links from out-of-date modules to those modules
270 // that depend on them, making those modules out-of-date as well.
271 while (!Stack.empty()) {
272 unsigned ID = Stack.back();
273 Stack.pop_back();
274
275 LoadedModuleInfo &Info = LoadedModules[ID];
276 for (unsigned I = 0, N = Info.ImportedBy.size(); I != N; ++I) {
277 unsigned FromID = Info.ImportedBy[I];
278 if (LoadedModules[FromID].File) {
279 LoadedModules[FromID].File = 0;
280 Stack.push_back(FromID);
281 }
282 }
283 }
284 }
285
286 // Allocate the vector containing information about all of the modules.
287 Modules.resize(LargestID + 1);
288 for (LoadedModulesMap::iterator LM = LoadedModules.begin(),
289 LMEnd = LoadedModules.end();
290 LM != LMEnd; ++LM) {
291 if (!LM->second.File)
292 continue;
293
294 Modules[LM->first].File = LM->second.File;
295
296 // Resolve dependencies. Drop any we can't resolve due to out-of-date
297 // module files.
298 for (unsigned I = 0, N = LM->second.Dependencies.size(); I != N; ++I) {
299 unsigned DepID = LM->second.Dependencies[I];
300 LoadedModulesMap::iterator Known = LoadedModules.find(DepID);
301 if (Known == LoadedModules.end() || !Known->second.File)
302 continue;
303
304 Modules[LM->first].Dependencies.push_back(Known->second.File);
305 }
306 }
307}
308
309GlobalModuleIndex::~GlobalModuleIndex() { }
310
311std::pair<GlobalModuleIndex *, GlobalModuleIndex::ErrorCode>
312GlobalModuleIndex::readIndex(FileManager &FileMgr, StringRef Path) {
313 // Load the index file, if it's there.
314 llvm::SmallString<128> IndexPath;
315 IndexPath += Path;
316 llvm::sys::path::append(IndexPath, IndexFileName);
317
318 llvm::OwningPtr<llvm::MemoryBuffer> Buffer(
319 FileMgr.getBufferForFile(IndexPath));
320 if (!Buffer)
321 return std::make_pair((GlobalModuleIndex *)0, EC_NotFound);
322
323 /// \brief The bitstream reader from which we'll read the AST file.
324 llvm::BitstreamReader Reader((const unsigned char *)Buffer->getBufferStart(),
325 (const unsigned char *)Buffer->getBufferEnd());
326
327 /// \brief The main bitstream cursor for the main block.
328 llvm::BitstreamCursor Cursor(Reader);
329
330 // Sniff for the signature.
331 if (Cursor.Read(8) != 'B' ||
332 Cursor.Read(8) != 'C' ||
333 Cursor.Read(8) != 'G' ||
334 Cursor.Read(8) != 'I') {
335 return std::make_pair((GlobalModuleIndex *)0, EC_IOError);
336 }
337
338 return std::make_pair(new GlobalModuleIndex(FileMgr, Buffer.take(), Cursor),
339 EC_None);
340}
341
342void GlobalModuleIndex::getKnownModules(
343 SmallVectorImpl<const FileEntry *> &ModuleFiles) {
344 ModuleFiles.clear();
345 for (unsigned I = 0, N = Modules.size(); I != N; ++I) {
346 if (Modules[I].File)
347 ModuleFiles.push_back(Modules[I].File);
348 }
349}
350
351void GlobalModuleIndex::getModuleDependencies(
352 const clang::FileEntry *ModuleFile,
353 SmallVectorImpl<const clang::FileEntry *> &Dependencies) {
354 // If the file -> index mapping is empty, populate it now.
355 if (ModulesByFile.empty()) {
356 for (unsigned I = 0, N = Modules.size(); I != N; ++I) {
357 if (Modules[I].File)
358 ModulesByFile[Modules[I].File] = I;
359 }
360 }
361
362 // Look for information about this module file.
363 llvm::DenseMap<const FileEntry *, unsigned>::iterator Known
364 = ModulesByFile.find(ModuleFile);
365 if (Known == ModulesByFile.end())
366 return;
367
368 // Record dependencies.
369 Dependencies = Modules[Known->second].Dependencies;
370}
371
Douglas Gregor188bdcd2013-01-25 23:32:03 +0000372bool GlobalModuleIndex::lookupIdentifier(StringRef Name, HitSet &Hits) {
373 Hits.clear();
Douglas Gregor1a49d972013-01-25 01:03:03 +0000374
375 // If there's no identifier index, there is nothing we can do.
376 if (!IdentifierIndex)
377 return false;
378
379 // Look into the identifier index.
380 ++NumIdentifierLookups;
381 IdentifierIndexTable &Table
382 = *static_cast<IdentifierIndexTable *>(IdentifierIndex);
383 IdentifierIndexTable::iterator Known = Table.find(Name);
384 if (Known == Table.end()) {
385 return true;
386 }
387
388 SmallVector<unsigned, 2> ModuleIDs = *Known;
389 for (unsigned I = 0, N = ModuleIDs.size(); I != N; ++I) {
390 unsigned ID = ModuleIDs[I];
391 if (ID >= Modules.size() || !Modules[ID].File)
392 continue;
393
Douglas Gregor188bdcd2013-01-25 23:32:03 +0000394 Hits.insert(Modules[ID].File);
Douglas Gregor1a49d972013-01-25 01:03:03 +0000395 }
396
397 ++NumIdentifierLookupHits;
398 return true;
399}
400
Douglas Gregor1a49d972013-01-25 01:03:03 +0000401void GlobalModuleIndex::printStats() {
402 std::fprintf(stderr, "*** Global Module Index Statistics:\n");
403 if (NumIdentifierLookups) {
404 fprintf(stderr, " %u / %u identifier lookups succeeded (%f%%)\n",
405 NumIdentifierLookupHits, NumIdentifierLookups,
406 (double)NumIdentifierLookupHits*100.0/NumIdentifierLookups);
407 }
Douglas Gregor1a49d972013-01-25 01:03:03 +0000408 std::fprintf(stderr, "\n");
409}
410
411//----------------------------------------------------------------------------//
Douglas Gregora6b00fc2013-01-23 22:38:11 +0000412// Global module index writer.
413//----------------------------------------------------------------------------//
414
415namespace {
416 /// \brief Provides information about a specific module file.
417 struct ModuleFileInfo {
418 /// \brief The numberic ID for this module file.
419 unsigned ID;
420
421 /// \brief The set of modules on which this module depends. Each entry is
422 /// a module ID.
423 SmallVector<unsigned, 4> Dependencies;
424 };
425
426 /// \brief Builder that generates the global module index file.
427 class GlobalModuleIndexBuilder {
428 FileManager &FileMgr;
429
430 /// \brief Mapping from files to module file information.
431 typedef llvm::MapVector<const FileEntry *, ModuleFileInfo> ModuleFilesMap;
432
433 /// \brief Information about each of the known module files.
434 ModuleFilesMap ModuleFiles;
435
436 /// \brief Mapping from identifiers to the list of module file IDs that
437 /// consider this identifier to be interesting.
438 typedef llvm::StringMap<SmallVector<unsigned, 2> > InterestingIdentifierMap;
439
440 /// \brief A mapping from all interesting identifiers to the set of module
441 /// files in which those identifiers are considered interesting.
442 InterestingIdentifierMap InterestingIdentifiers;
443
444 /// \brief Write the block-info block for the global module index file.
445 void emitBlockInfoBlock(llvm::BitstreamWriter &Stream);
446
447 /// \brief Retrieve the module file information for the given file.
448 ModuleFileInfo &getModuleFileInfo(const FileEntry *File) {
449 llvm::MapVector<const FileEntry *, ModuleFileInfo>::iterator Known
450 = ModuleFiles.find(File);
451 if (Known != ModuleFiles.end())
452 return Known->second;
453
454 unsigned NewID = ModuleFiles.size();
455 ModuleFileInfo &Info = ModuleFiles[File];
456 Info.ID = NewID;
457 return Info;
458 }
459
460 public:
461 explicit GlobalModuleIndexBuilder(FileManager &FileMgr) : FileMgr(FileMgr){}
462
463 /// \brief Load the contents of the given module file into the builder.
464 ///
465 /// \returns true if an error occurred, false otherwise.
466 bool loadModuleFile(const FileEntry *File);
467
468 /// \brief Write the index to the given bitstream.
469 void writeIndex(llvm::BitstreamWriter &Stream);
470 };
471}
472
473static void emitBlockID(unsigned ID, const char *Name,
474 llvm::BitstreamWriter &Stream,
475 SmallVectorImpl<uint64_t> &Record) {
476 Record.clear();
477 Record.push_back(ID);
478 Stream.EmitRecord(llvm::bitc::BLOCKINFO_CODE_SETBID, Record);
479
480 // Emit the block name if present.
481 if (Name == 0 || Name[0] == 0) return;
482 Record.clear();
483 while (*Name)
484 Record.push_back(*Name++);
485 Stream.EmitRecord(llvm::bitc::BLOCKINFO_CODE_BLOCKNAME, Record);
486}
487
488static void emitRecordID(unsigned ID, const char *Name,
489 llvm::BitstreamWriter &Stream,
490 SmallVectorImpl<uint64_t> &Record) {
491 Record.clear();
492 Record.push_back(ID);
493 while (*Name)
494 Record.push_back(*Name++);
495 Stream.EmitRecord(llvm::bitc::BLOCKINFO_CODE_SETRECORDNAME, Record);
496}
497
498void
499GlobalModuleIndexBuilder::emitBlockInfoBlock(llvm::BitstreamWriter &Stream) {
500 SmallVector<uint64_t, 64> Record;
501 Stream.EnterSubblock(llvm::bitc::BLOCKINFO_BLOCK_ID, 3);
502
503#define BLOCK(X) emitBlockID(X ## _ID, #X, Stream, Record)
504#define RECORD(X) emitRecordID(X, #X, Stream, Record)
505 BLOCK(GLOBAL_INDEX_BLOCK);
Douglas Gregor1a49d972013-01-25 01:03:03 +0000506 RECORD(INDEX_METADATA);
Douglas Gregora6b00fc2013-01-23 22:38:11 +0000507 RECORD(MODULE);
508 RECORD(IDENTIFIER_INDEX);
509#undef RECORD
510#undef BLOCK
511
512 Stream.ExitBlock();
513}
514
Douglas Gregor1a49d972013-01-25 01:03:03 +0000515namespace {
Douglas Gregora6b00fc2013-01-23 22:38:11 +0000516 class InterestingASTIdentifierLookupTrait
517 : public serialization::reader::ASTIdentifierLookupTraitBase {
518
519 public:
520 /// \brief The identifier and whether it is "interesting".
521 typedef std::pair<StringRef, bool> data_type;
522
523 data_type ReadData(const internal_key_type& k,
524 const unsigned char* d,
525 unsigned DataLen) {
526 // The first bit indicates whether this identifier is interesting.
527 // That's all we care about.
528 using namespace clang::io;
529 unsigned RawID = ReadUnalignedLE32(d);
530 bool IsInteresting = RawID & 0x01;
531 return std::make_pair(k, IsInteresting);
532 }
533 };
534}
535
536bool GlobalModuleIndexBuilder::loadModuleFile(const FileEntry *File) {
537 // Open the module file.
538 OwningPtr<llvm::MemoryBuffer> Buffer;
539 Buffer.reset(FileMgr.getBufferForFile(File));
540 if (!Buffer) {
541 return true;
542 }
543
544 // Initialize the input stream
545 llvm::BitstreamReader InStreamFile;
546 llvm::BitstreamCursor InStream;
547 InStreamFile.init((const unsigned char *)Buffer->getBufferStart(),
548 (const unsigned char *)Buffer->getBufferEnd());
549 InStream.init(InStreamFile);
550
551 // Sniff for the signature.
552 if (InStream.Read(8) != 'C' ||
553 InStream.Read(8) != 'P' ||
554 InStream.Read(8) != 'C' ||
555 InStream.Read(8) != 'H') {
556 return true;
557 }
558
559 // Record this module file and assign it a unique ID (if it doesn't have
560 // one already).
561 unsigned ID = getModuleFileInfo(File).ID;
562
563 // Search for the blocks and records we care about.
Douglas Gregor1a49d972013-01-25 01:03:03 +0000564 enum { Other, ControlBlock, ASTBlock } State = Other;
Douglas Gregora6b00fc2013-01-23 22:38:11 +0000565 bool Done = false;
566 while (!Done) {
Douglas Gregor1a49d972013-01-25 01:03:03 +0000567 llvm::BitstreamEntry Entry = InStream.advance();
Douglas Gregora6b00fc2013-01-23 22:38:11 +0000568 switch (Entry.Kind) {
569 case llvm::BitstreamEntry::Error:
Douglas Gregor1a49d972013-01-25 01:03:03 +0000570 Done = true;
571 continue;
Douglas Gregora6b00fc2013-01-23 22:38:11 +0000572
573 case llvm::BitstreamEntry::Record:
Douglas Gregor1a49d972013-01-25 01:03:03 +0000574 // In the 'other' state, just skip the record. We don't care.
575 if (State == Other) {
Douglas Gregora6b00fc2013-01-23 22:38:11 +0000576 InStream.skipRecord(Entry.ID);
577 continue;
578 }
579
580 // Handle potentially-interesting records below.
581 break;
582
583 case llvm::BitstreamEntry::SubBlock:
Douglas Gregor1a49d972013-01-25 01:03:03 +0000584 if (Entry.ID == CONTROL_BLOCK_ID) {
Douglas Gregora6b00fc2013-01-23 22:38:11 +0000585 if (InStream.EnterSubBlock(CONTROL_BLOCK_ID))
586 return true;
587
588 // Found the control block.
589 State = ControlBlock;
590 continue;
591 }
592
Douglas Gregor1a49d972013-01-25 01:03:03 +0000593 if (Entry.ID == AST_BLOCK_ID) {
Douglas Gregora6b00fc2013-01-23 22:38:11 +0000594 if (InStream.EnterSubBlock(AST_BLOCK_ID))
595 return true;
596
597 // Found the AST block.
598 State = ASTBlock;
599 continue;
Douglas Gregora6b00fc2013-01-23 22:38:11 +0000600 }
601
602 if (InStream.SkipBlock())
603 return true;
604
605 continue;
606
607 case llvm::BitstreamEntry::EndBlock:
Douglas Gregor1a49d972013-01-25 01:03:03 +0000608 State = Other;
Douglas Gregora6b00fc2013-01-23 22:38:11 +0000609 continue;
610 }
611
612 // Read the given record.
613 SmallVector<uint64_t, 64> Record;
614 StringRef Blob;
615 unsigned Code = InStream.readRecord(Entry.ID, Record, &Blob);
616
617 // Handle module dependencies.
618 if (State == ControlBlock && Code == IMPORTS) {
619 // Load each of the imported PCH files.
620 unsigned Idx = 0, N = Record.size();
621 while (Idx < N) {
622 // Read information about the AST file.
623
624 // Skip the imported kind
625 ++Idx;
626
627 // Skip the import location
628 ++Idx;
629
630 // Retrieve the imported file name.
631 unsigned Length = Record[Idx++];
632 SmallString<128> ImportedFile(Record.begin() + Idx,
633 Record.begin() + Idx + Length);
634 Idx += Length;
635
636 // Find the imported module file.
637 const FileEntry *DependsOnFile = FileMgr.getFile(ImportedFile);
638 if (!DependsOnFile)
639 return true;
640
641 // Record the dependency.
642 unsigned DependsOnID = getModuleFileInfo(DependsOnFile).ID;
643 getModuleFileInfo(File).Dependencies.push_back(DependsOnID);
644 }
645
646 continue;
647 }
648
649 // Handle the identifier table
650 if (State == ASTBlock && Code == IDENTIFIER_TABLE && Record[0] > 0) {
651 typedef OnDiskChainedHashTable<InterestingASTIdentifierLookupTrait>
652 InterestingIdentifierTable;
653 llvm::OwningPtr<InterestingIdentifierTable>
654 Table(InterestingIdentifierTable::Create(
655 (const unsigned char *)Blob.data() + Record[0],
656 (const unsigned char *)Blob.data()));
657 for (InterestingIdentifierTable::data_iterator D = Table->data_begin(),
658 DEnd = Table->data_end();
659 D != DEnd; ++D) {
660 std::pair<StringRef, bool> Ident = *D;
661 if (Ident.second)
662 InterestingIdentifiers[Ident.first].push_back(ID);
Douglas Gregor1a49d972013-01-25 01:03:03 +0000663 else
664 (void)InterestingIdentifiers[Ident.first];
Douglas Gregora6b00fc2013-01-23 22:38:11 +0000665 }
666 }
667
668 // FIXME: Handle the selector table.
669
670 // We don't care about this record.
671 }
672
673 return false;
674}
675
676namespace {
677
678/// \brief Trait used to generate the identifier index as an on-disk hash
679/// table.
680class IdentifierIndexWriterTrait {
681public:
682 typedef StringRef key_type;
683 typedef StringRef key_type_ref;
684 typedef SmallVector<unsigned, 2> data_type;
685 typedef const SmallVector<unsigned, 2> &data_type_ref;
686
687 static unsigned ComputeHash(key_type_ref Key) {
688 return llvm::HashString(Key);
689 }
690
691 std::pair<unsigned,unsigned>
692 EmitKeyDataLength(raw_ostream& Out, key_type_ref Key, data_type_ref Data) {
693 unsigned KeyLen = Key.size();
694 unsigned DataLen = Data.size() * 4;
695 clang::io::Emit16(Out, KeyLen);
696 clang::io::Emit16(Out, DataLen);
697 return std::make_pair(KeyLen, DataLen);
698 }
699
700 void EmitKey(raw_ostream& Out, key_type_ref Key, unsigned KeyLen) {
701 Out.write(Key.data(), KeyLen);
702 }
703
704 void EmitData(raw_ostream& Out, key_type_ref Key, data_type_ref Data,
705 unsigned DataLen) {
706 for (unsigned I = 0, N = Data.size(); I != N; ++I)
707 clang::io::Emit32(Out, Data[I]);
708 }
709};
710
711}
712
713void GlobalModuleIndexBuilder::writeIndex(llvm::BitstreamWriter &Stream) {
714 using namespace llvm;
715
716 // Emit the file header.
717 Stream.Emit((unsigned)'B', 8);
718 Stream.Emit((unsigned)'C', 8);
719 Stream.Emit((unsigned)'G', 8);
720 Stream.Emit((unsigned)'I', 8);
721
722 // Write the block-info block, which describes the records in this bitcode
723 // file.
724 emitBlockInfoBlock(Stream);
725
726 Stream.EnterSubblock(GLOBAL_INDEX_BLOCK_ID, 3);
727
728 // Write the metadata.
729 SmallVector<uint64_t, 2> Record;
730 Record.push_back(CurrentVersion);
Douglas Gregor1a49d972013-01-25 01:03:03 +0000731 Stream.EmitRecord(INDEX_METADATA, Record);
Douglas Gregora6b00fc2013-01-23 22:38:11 +0000732
733 // Write the set of known module files.
734 for (ModuleFilesMap::iterator M = ModuleFiles.begin(),
735 MEnd = ModuleFiles.end();
736 M != MEnd; ++M) {
737 Record.clear();
738 Record.push_back(M->second.ID);
739 Record.push_back(M->first->getSize());
740 Record.push_back(M->first->getModificationTime());
741
742 // File name
743 StringRef Name(M->first->getName());
744 Record.push_back(Name.size());
745 Record.append(Name.begin(), Name.end());
746
747 // Dependencies
748 Record.push_back(M->second.Dependencies.size());
749 Record.append(M->second.Dependencies.begin(), M->second.Dependencies.end());
750 Stream.EmitRecord(MODULE, Record);
751 }
752
753 // Write the identifier -> module file mapping.
754 {
755 OnDiskChainedHashTableGenerator<IdentifierIndexWriterTrait> Generator;
756 IdentifierIndexWriterTrait Trait;
757
758 // Populate the hash table.
759 for (InterestingIdentifierMap::iterator I = InterestingIdentifiers.begin(),
760 IEnd = InterestingIdentifiers.end();
761 I != IEnd; ++I) {
762 Generator.insert(I->first(), I->second, Trait);
763 }
764
765 // Create the on-disk hash table in a buffer.
766 SmallString<4096> IdentifierTable;
767 uint32_t BucketOffset;
768 {
769 llvm::raw_svector_ostream Out(IdentifierTable);
770 // Make sure that no bucket is at offset 0
771 clang::io::Emit32(Out, 0);
772 BucketOffset = Generator.Emit(Out, Trait);
773 }
774
775 // Create a blob abbreviation
776 BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
777 Abbrev->Add(BitCodeAbbrevOp(IDENTIFIER_INDEX));
778 Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
779 Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob));
780 unsigned IDTableAbbrev = Stream.EmitAbbrev(Abbrev);
781
782 // Write the identifier table
783 Record.clear();
784 Record.push_back(IDENTIFIER_INDEX);
785 Record.push_back(BucketOffset);
786 Stream.EmitRecordWithBlob(IDTableAbbrev, Record, IdentifierTable.str());
787 }
788
789 // FIXME: Selectors.
790
791 Stream.ExitBlock();
792}
793
794GlobalModuleIndex::ErrorCode
795GlobalModuleIndex::writeIndex(FileManager &FileMgr, StringRef Path) {
796 llvm::SmallString<128> IndexPath;
797 IndexPath += Path;
798 llvm::sys::path::append(IndexPath, IndexFileName);
799
800 // Coordinate building the global index file with other processes that might
801 // try to do the same.
802 llvm::LockFileManager Locked(IndexPath);
803 switch (Locked) {
804 case llvm::LockFileManager::LFS_Error:
805 return EC_IOError;
806
807 case llvm::LockFileManager::LFS_Owned:
808 // We're responsible for building the index ourselves. Do so below.
809 break;
810
811 case llvm::LockFileManager::LFS_Shared:
812 // Someone else is responsible for building the index. We don't care
813 // when they finish, so we're done.
814 return EC_Building;
815 }
816
817 // The module index builder.
818 GlobalModuleIndexBuilder Builder(FileMgr);
819
820 // Load each of the module files.
821 llvm::error_code EC;
822 for (llvm::sys::fs::directory_iterator D(Path, EC), DEnd;
823 D != DEnd && !EC;
824 D.increment(EC)) {
825 // If this isn't a module file, we don't care.
826 if (llvm::sys::path::extension(D->path()) != ".pcm") {
827 // ... unless it's a .pcm.lock file, which indicates that someone is
828 // in the process of rebuilding a module. They'll rebuild the index
829 // at the end of that translation unit, so we don't have to.
830 if (llvm::sys::path::extension(D->path()) == ".pcm.lock")
831 return EC_Building;
832
833 continue;
834 }
835
836 // If we can't find the module file, skip it.
837 const FileEntry *ModuleFile = FileMgr.getFile(D->path());
838 if (!ModuleFile)
839 continue;
840
841 // Load this module file.
842 if (Builder.loadModuleFile(ModuleFile))
843 return EC_IOError;
844 }
845
846 // The output buffer, into which the global index will be written.
847 SmallVector<char, 16> OutputBuffer;
848 {
849 llvm::BitstreamWriter OutputStream(OutputBuffer);
850 Builder.writeIndex(OutputStream);
851 }
852
853 // Write the global index file to a temporary file.
854 llvm::SmallString<128> IndexTmpPath;
855 int TmpFD;
856 if (llvm::sys::fs::unique_file(IndexPath + "-%%%%%%%%", TmpFD, IndexTmpPath))
857 return EC_IOError;
858
859 // Open the temporary global index file for output.
NAKAMURA Takumid2db16f2013-01-24 08:20:11 +0000860 llvm::raw_fd_ostream Out(TmpFD, true);
Douglas Gregora6b00fc2013-01-23 22:38:11 +0000861 if (Out.has_error())
862 return EC_IOError;
863
864 // Write the index.
865 Out.write(OutputBuffer.data(), OutputBuffer.size());
866 Out.close();
867 if (Out.has_error())
868 return EC_IOError;
869
870 // Remove the old index file. It isn't relevant any more.
871 bool OldIndexExisted;
872 llvm::sys::fs::remove(IndexPath.str(), OldIndexExisted);
873
874 // Rename the newly-written index file to the proper name.
875 if (llvm::sys::fs::rename(IndexTmpPath.str(), IndexPath.str())) {
876 // Rename failed; just remove the
877 llvm::sys::fs::remove(IndexTmpPath.str(), OldIndexExisted);
878 return EC_IOError;
879 }
880
881 // We're done.
882 return EC_None;
883}