SourceManager.cpp 82 KB

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  1. //===- SourceManager.cpp - Track and cache source files -------------------===//
  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 SourceManager interface.
  11. //
  12. //===----------------------------------------------------------------------===//
  13. #include "clang/Basic/SourceManager.h"
  14. #include "clang/Basic/Diagnostic.h"
  15. #include "clang/Basic/FileManager.h"
  16. #include "clang/Basic/LLVM.h"
  17. #include "clang/Basic/SourceLocation.h"
  18. #include "clang/Basic/SourceManagerInternals.h"
  19. #include "llvm/ADT/DenseMap.h"
  20. #include "llvm/ADT/Optional.h"
  21. #include "llvm/ADT/None.h"
  22. #include "llvm/ADT/STLExtras.h"
  23. #include "llvm/ADT/SmallVector.h"
  24. #include "llvm/ADT/StringSwitch.h"
  25. #include "llvm/ADT/StringRef.h"
  26. #include "llvm/Support/Allocator.h"
  27. #include "llvm/Support/Capacity.h"
  28. #include "llvm/Support/Compiler.h"
  29. #include "llvm/Support/ErrorHandling.h"
  30. #include "llvm/Support/FileSystem.h"
  31. #include "llvm/Support/MathExtras.h"
  32. #include "llvm/Support/MemoryBuffer.h"
  33. #include "llvm/Support/Path.h"
  34. #include "llvm/Support/raw_ostream.h"
  35. #include <algorithm>
  36. #include <cassert>
  37. #include <cstddef>
  38. #include <cstdint>
  39. #include <memory>
  40. #include <tuple>
  41. #include <utility>
  42. #include <vector>
  43. using namespace clang;
  44. using namespace SrcMgr;
  45. using llvm::MemoryBuffer;
  46. //===----------------------------------------------------------------------===//
  47. // SourceManager Helper Classes
  48. //===----------------------------------------------------------------------===//
  49. ContentCache::~ContentCache() {
  50. if (shouldFreeBuffer())
  51. delete Buffer.getPointer();
  52. }
  53. /// getSizeBytesMapped - Returns the number of bytes actually mapped for this
  54. /// ContentCache. This can be 0 if the MemBuffer was not actually expanded.
  55. unsigned ContentCache::getSizeBytesMapped() const {
  56. return Buffer.getPointer() ? Buffer.getPointer()->getBufferSize() : 0;
  57. }
  58. /// Returns the kind of memory used to back the memory buffer for
  59. /// this content cache. This is used for performance analysis.
  60. llvm::MemoryBuffer::BufferKind ContentCache::getMemoryBufferKind() const {
  61. assert(Buffer.getPointer());
  62. // Should be unreachable, but keep for sanity.
  63. if (!Buffer.getPointer())
  64. return llvm::MemoryBuffer::MemoryBuffer_Malloc;
  65. llvm::MemoryBuffer *buf = Buffer.getPointer();
  66. return buf->getBufferKind();
  67. }
  68. /// getSize - Returns the size of the content encapsulated by this ContentCache.
  69. /// This can be the size of the source file or the size of an arbitrary
  70. /// scratch buffer. If the ContentCache encapsulates a source file, that
  71. /// file is not lazily brought in from disk to satisfy this query.
  72. unsigned ContentCache::getSize() const {
  73. return Buffer.getPointer() ? (unsigned) Buffer.getPointer()->getBufferSize()
  74. : (unsigned) ContentsEntry->getSize();
  75. }
  76. void ContentCache::replaceBuffer(llvm::MemoryBuffer *B, bool DoNotFree) {
  77. if (B && B == Buffer.getPointer()) {
  78. assert(0 && "Replacing with the same buffer");
  79. Buffer.setInt(DoNotFree? DoNotFreeFlag : 0);
  80. return;
  81. }
  82. if (shouldFreeBuffer())
  83. delete Buffer.getPointer();
  84. Buffer.setPointer(B);
  85. Buffer.setInt((B && DoNotFree) ? DoNotFreeFlag : 0);
  86. }
  87. llvm::MemoryBuffer *ContentCache::getBuffer(DiagnosticsEngine &Diag,
  88. const SourceManager &SM,
  89. SourceLocation Loc,
  90. bool *Invalid) const {
  91. // Lazily create the Buffer for ContentCaches that wrap files. If we already
  92. // computed it, just return what we have.
  93. if (Buffer.getPointer() || !ContentsEntry) {
  94. if (Invalid)
  95. *Invalid = isBufferInvalid();
  96. return Buffer.getPointer();
  97. }
  98. bool isVolatile = SM.userFilesAreVolatile() && !IsSystemFile;
  99. auto BufferOrError =
  100. SM.getFileManager().getBufferForFile(ContentsEntry, isVolatile);
  101. // If we were unable to open the file, then we are in an inconsistent
  102. // situation where the content cache referenced a file which no longer
  103. // exists. Most likely, we were using a stat cache with an invalid entry but
  104. // the file could also have been removed during processing. Since we can't
  105. // really deal with this situation, just create an empty buffer.
  106. //
  107. // FIXME: This is definitely not ideal, but our immediate clients can't
  108. // currently handle returning a null entry here. Ideally we should detect
  109. // that we are in an inconsistent situation and error out as quickly as
  110. // possible.
  111. if (!BufferOrError) {
  112. StringRef FillStr("<<<MISSING SOURCE FILE>>>\n");
  113. auto BackupBuffer = llvm::WritableMemoryBuffer::getNewUninitMemBuffer(
  114. ContentsEntry->getSize(), "<invalid>");
  115. char *Ptr = BackupBuffer->getBufferStart();
  116. for (unsigned i = 0, e = ContentsEntry->getSize(); i != e; ++i)
  117. Ptr[i] = FillStr[i % FillStr.size()];
  118. Buffer.setPointer(BackupBuffer.release());
  119. if (Diag.isDiagnosticInFlight())
  120. Diag.SetDelayedDiagnostic(diag::err_cannot_open_file,
  121. ContentsEntry->getName(),
  122. BufferOrError.getError().message());
  123. else
  124. Diag.Report(Loc, diag::err_cannot_open_file)
  125. << ContentsEntry->getName() << BufferOrError.getError().message();
  126. Buffer.setInt(Buffer.getInt() | InvalidFlag);
  127. if (Invalid) *Invalid = true;
  128. return Buffer.getPointer();
  129. }
  130. Buffer.setPointer(BufferOrError->release());
  131. // Check that the file's size is the same as in the file entry (which may
  132. // have come from a stat cache).
  133. if (getRawBuffer()->getBufferSize() != (size_t)ContentsEntry->getSize()) {
  134. if (Diag.isDiagnosticInFlight())
  135. Diag.SetDelayedDiagnostic(diag::err_file_modified,
  136. ContentsEntry->getName());
  137. else
  138. Diag.Report(Loc, diag::err_file_modified)
  139. << ContentsEntry->getName();
  140. Buffer.setInt(Buffer.getInt() | InvalidFlag);
  141. if (Invalid) *Invalid = true;
  142. return Buffer.getPointer();
  143. }
  144. // If the buffer is valid, check to see if it has a UTF Byte Order Mark
  145. // (BOM). We only support UTF-8 with and without a BOM right now. See
  146. // http://en.wikipedia.org/wiki/Byte_order_mark for more information.
  147. StringRef BufStr = Buffer.getPointer()->getBuffer();
  148. const char *InvalidBOM = llvm::StringSwitch<const char *>(BufStr)
  149. .StartsWith("\xFE\xFF", "UTF-16 (BE)")
  150. .StartsWith("\xFF\xFE", "UTF-16 (LE)")
  151. .StartsWith("\x00\x00\xFE\xFF", "UTF-32 (BE)")
  152. .StartsWith("\xFF\xFE\x00\x00", "UTF-32 (LE)")
  153. .StartsWith("\x2B\x2F\x76", "UTF-7")
  154. .StartsWith("\xF7\x64\x4C", "UTF-1")
  155. .StartsWith("\xDD\x73\x66\x73", "UTF-EBCDIC")
  156. .StartsWith("\x0E\xFE\xFF", "SDSU")
  157. .StartsWith("\xFB\xEE\x28", "BOCU-1")
  158. .StartsWith("\x84\x31\x95\x33", "GB-18030")
  159. .Default(nullptr);
  160. if (InvalidBOM) {
  161. Diag.Report(Loc, diag::err_unsupported_bom)
  162. << InvalidBOM << ContentsEntry->getName();
  163. Buffer.setInt(Buffer.getInt() | InvalidFlag);
  164. }
  165. if (Invalid)
  166. *Invalid = isBufferInvalid();
  167. return Buffer.getPointer();
  168. }
  169. unsigned LineTableInfo::getLineTableFilenameID(StringRef Name) {
  170. auto IterBool =
  171. FilenameIDs.insert(std::make_pair(Name, FilenamesByID.size()));
  172. if (IterBool.second)
  173. FilenamesByID.push_back(&*IterBool.first);
  174. return IterBool.first->second;
  175. }
  176. /// Add a line note to the line table that indicates that there is a \#line or
  177. /// GNU line marker at the specified FID/Offset location which changes the
  178. /// presumed location to LineNo/FilenameID. If EntryExit is 0, then this doesn't
  179. /// change the presumed \#include stack. If it is 1, this is a file entry, if
  180. /// it is 2 then this is a file exit. FileKind specifies whether this is a
  181. /// system header or extern C system header.
  182. void LineTableInfo::AddLineNote(FileID FID, unsigned Offset, unsigned LineNo,
  183. int FilenameID, unsigned EntryExit,
  184. SrcMgr::CharacteristicKind FileKind) {
  185. std::vector<LineEntry> &Entries = LineEntries[FID];
  186. // An unspecified FilenameID means use the last filename if available, or the
  187. // main source file otherwise.
  188. if (FilenameID == -1 && !Entries.empty())
  189. FilenameID = Entries.back().FilenameID;
  190. assert((Entries.empty() || Entries.back().FileOffset < Offset) &&
  191. "Adding line entries out of order!");
  192. unsigned IncludeOffset = 0;
  193. if (EntryExit == 0) { // No #include stack change.
  194. IncludeOffset = Entries.empty() ? 0 : Entries.back().IncludeOffset;
  195. } else if (EntryExit == 1) {
  196. IncludeOffset = Offset-1;
  197. } else if (EntryExit == 2) {
  198. assert(!Entries.empty() && Entries.back().IncludeOffset &&
  199. "PPDirectives should have caught case when popping empty include stack");
  200. // Get the include loc of the last entries' include loc as our include loc.
  201. IncludeOffset = 0;
  202. if (const LineEntry *PrevEntry =
  203. FindNearestLineEntry(FID, Entries.back().IncludeOffset))
  204. IncludeOffset = PrevEntry->IncludeOffset;
  205. }
  206. Entries.push_back(LineEntry::get(Offset, LineNo, FilenameID, FileKind,
  207. IncludeOffset));
  208. }
  209. /// FindNearestLineEntry - Find the line entry nearest to FID that is before
  210. /// it. If there is no line entry before Offset in FID, return null.
  211. const LineEntry *LineTableInfo::FindNearestLineEntry(FileID FID,
  212. unsigned Offset) {
  213. const std::vector<LineEntry> &Entries = LineEntries[FID];
  214. assert(!Entries.empty() && "No #line entries for this FID after all!");
  215. // It is very common for the query to be after the last #line, check this
  216. // first.
  217. if (Entries.back().FileOffset <= Offset)
  218. return &Entries.back();
  219. // Do a binary search to find the maximal element that is still before Offset.
  220. std::vector<LineEntry>::const_iterator I =
  221. std::upper_bound(Entries.begin(), Entries.end(), Offset);
  222. if (I == Entries.begin()) return nullptr;
  223. return &*--I;
  224. }
  225. /// \brief Add a new line entry that has already been encoded into
  226. /// the internal representation of the line table.
  227. void LineTableInfo::AddEntry(FileID FID,
  228. const std::vector<LineEntry> &Entries) {
  229. LineEntries[FID] = Entries;
  230. }
  231. /// getLineTableFilenameID - Return the uniqued ID for the specified filename.
  232. unsigned SourceManager::getLineTableFilenameID(StringRef Name) {
  233. return getLineTable().getLineTableFilenameID(Name);
  234. }
  235. /// AddLineNote - Add a line note to the line table for the FileID and offset
  236. /// specified by Loc. If FilenameID is -1, it is considered to be
  237. /// unspecified.
  238. void SourceManager::AddLineNote(SourceLocation Loc, unsigned LineNo,
  239. int FilenameID, bool IsFileEntry,
  240. bool IsFileExit,
  241. SrcMgr::CharacteristicKind FileKind) {
  242. std::pair<FileID, unsigned> LocInfo = getDecomposedExpansionLoc(Loc);
  243. bool Invalid = false;
  244. const SLocEntry &Entry = getSLocEntry(LocInfo.first, &Invalid);
  245. if (!Entry.isFile() || Invalid)
  246. return;
  247. const SrcMgr::FileInfo &FileInfo = Entry.getFile();
  248. // Remember that this file has #line directives now if it doesn't already.
  249. const_cast<SrcMgr::FileInfo&>(FileInfo).setHasLineDirectives();
  250. (void) getLineTable();
  251. unsigned EntryExit = 0;
  252. if (IsFileEntry)
  253. EntryExit = 1;
  254. else if (IsFileExit)
  255. EntryExit = 2;
  256. LineTable->AddLineNote(LocInfo.first, LocInfo.second, LineNo, FilenameID,
  257. EntryExit, FileKind);
  258. }
  259. LineTableInfo &SourceManager::getLineTable() {
  260. if (!LineTable)
  261. LineTable = new LineTableInfo();
  262. return *LineTable;
  263. }
  264. //===----------------------------------------------------------------------===//
  265. // Private 'Create' methods.
  266. //===----------------------------------------------------------------------===//
  267. SourceManager::SourceManager(DiagnosticsEngine &Diag, FileManager &FileMgr,
  268. bool UserFilesAreVolatile)
  269. : Diag(Diag), FileMgr(FileMgr), UserFilesAreVolatile(UserFilesAreVolatile) {
  270. clearIDTables();
  271. Diag.setSourceManager(this);
  272. }
  273. SourceManager::~SourceManager() {
  274. delete LineTable;
  275. // Delete FileEntry objects corresponding to content caches. Since the actual
  276. // content cache objects are bump pointer allocated, we just have to run the
  277. // dtors, but we call the deallocate method for completeness.
  278. for (unsigned i = 0, e = MemBufferInfos.size(); i != e; ++i) {
  279. if (MemBufferInfos[i]) {
  280. MemBufferInfos[i]->~ContentCache();
  281. ContentCacheAlloc.Deallocate(MemBufferInfos[i]);
  282. }
  283. }
  284. for (llvm::DenseMap<const FileEntry*, SrcMgr::ContentCache*>::iterator
  285. I = FileInfos.begin(), E = FileInfos.end(); I != E; ++I) {
  286. if (I->second) {
  287. I->second->~ContentCache();
  288. ContentCacheAlloc.Deallocate(I->second);
  289. }
  290. }
  291. }
  292. void SourceManager::clearIDTables() {
  293. MainFileID = FileID();
  294. LocalSLocEntryTable.clear();
  295. LoadedSLocEntryTable.clear();
  296. SLocEntryLoaded.clear();
  297. LastLineNoFileIDQuery = FileID();
  298. LastLineNoContentCache = nullptr;
  299. LastFileIDLookup = FileID();
  300. if (LineTable)
  301. LineTable->clear();
  302. // Use up FileID #0 as an invalid expansion.
  303. NextLocalOffset = 0;
  304. CurrentLoadedOffset = MaxLoadedOffset;
  305. createExpansionLoc(SourceLocation(), SourceLocation(), SourceLocation(), 1);
  306. }
  307. void SourceManager::initializeForReplay(const SourceManager &Old) {
  308. assert(MainFileID.isInvalid() && "expected uninitialized SourceManager");
  309. auto CloneContentCache = [&](const ContentCache *Cache) -> ContentCache * {
  310. auto *Clone = new (ContentCacheAlloc.Allocate<ContentCache>()) ContentCache;
  311. Clone->OrigEntry = Cache->OrigEntry;
  312. Clone->ContentsEntry = Cache->ContentsEntry;
  313. Clone->BufferOverridden = Cache->BufferOverridden;
  314. Clone->IsSystemFile = Cache->IsSystemFile;
  315. Clone->IsTransient = Cache->IsTransient;
  316. Clone->replaceBuffer(Cache->getRawBuffer(), /*DoNotFree*/true);
  317. return Clone;
  318. };
  319. // Ensure all SLocEntries are loaded from the external source.
  320. for (unsigned I = 0, N = Old.LoadedSLocEntryTable.size(); I != N; ++I)
  321. if (!Old.SLocEntryLoaded[I])
  322. Old.loadSLocEntry(I, nullptr);
  323. // Inherit any content cache data from the old source manager.
  324. for (auto &FileInfo : Old.FileInfos) {
  325. SrcMgr::ContentCache *&Slot = FileInfos[FileInfo.first];
  326. if (Slot)
  327. continue;
  328. Slot = CloneContentCache(FileInfo.second);
  329. }
  330. }
  331. /// getOrCreateContentCache - Create or return a cached ContentCache for the
  332. /// specified file.
  333. const ContentCache *
  334. SourceManager::getOrCreateContentCache(const FileEntry *FileEnt,
  335. bool isSystemFile) {
  336. assert(FileEnt && "Didn't specify a file entry to use?");
  337. // Do we already have information about this file?
  338. ContentCache *&Entry = FileInfos[FileEnt];
  339. if (Entry) return Entry;
  340. // Nope, create a new Cache entry.
  341. Entry = ContentCacheAlloc.Allocate<ContentCache>();
  342. if (OverriddenFilesInfo) {
  343. // If the file contents are overridden with contents from another file,
  344. // pass that file to ContentCache.
  345. llvm::DenseMap<const FileEntry *, const FileEntry *>::iterator
  346. overI = OverriddenFilesInfo->OverriddenFiles.find(FileEnt);
  347. if (overI == OverriddenFilesInfo->OverriddenFiles.end())
  348. new (Entry) ContentCache(FileEnt);
  349. else
  350. new (Entry) ContentCache(OverridenFilesKeepOriginalName ? FileEnt
  351. : overI->second,
  352. overI->second);
  353. } else {
  354. new (Entry) ContentCache(FileEnt);
  355. }
  356. Entry->IsSystemFile = isSystemFile;
  357. Entry->IsTransient = FilesAreTransient;
  358. return Entry;
  359. }
  360. /// Create a new ContentCache for the specified memory buffer.
  361. /// This does no caching.
  362. const ContentCache *
  363. SourceManager::createMemBufferContentCache(llvm::MemoryBuffer *Buffer,
  364. bool DoNotFree) {
  365. // Add a new ContentCache to the MemBufferInfos list and return it.
  366. ContentCache *Entry = ContentCacheAlloc.Allocate<ContentCache>();
  367. new (Entry) ContentCache();
  368. MemBufferInfos.push_back(Entry);
  369. Entry->replaceBuffer(Buffer, DoNotFree);
  370. return Entry;
  371. }
  372. const SrcMgr::SLocEntry &SourceManager::loadSLocEntry(unsigned Index,
  373. bool *Invalid) const {
  374. assert(!SLocEntryLoaded[Index]);
  375. if (ExternalSLocEntries->ReadSLocEntry(-(static_cast<int>(Index) + 2))) {
  376. if (Invalid)
  377. *Invalid = true;
  378. // If the file of the SLocEntry changed we could still have loaded it.
  379. if (!SLocEntryLoaded[Index]) {
  380. // Try to recover; create a SLocEntry so the rest of clang can handle it.
  381. LoadedSLocEntryTable[Index] = SLocEntry::get(0,
  382. FileInfo::get(SourceLocation(),
  383. getFakeContentCacheForRecovery(),
  384. SrcMgr::C_User));
  385. }
  386. }
  387. return LoadedSLocEntryTable[Index];
  388. }
  389. std::pair<int, unsigned>
  390. SourceManager::AllocateLoadedSLocEntries(unsigned NumSLocEntries,
  391. unsigned TotalSize) {
  392. assert(ExternalSLocEntries && "Don't have an external sloc source");
  393. // Make sure we're not about to run out of source locations.
  394. if (CurrentLoadedOffset - TotalSize < NextLocalOffset)
  395. return std::make_pair(0, 0);
  396. LoadedSLocEntryTable.resize(LoadedSLocEntryTable.size() + NumSLocEntries);
  397. SLocEntryLoaded.resize(LoadedSLocEntryTable.size());
  398. CurrentLoadedOffset -= TotalSize;
  399. int ID = LoadedSLocEntryTable.size();
  400. return std::make_pair(-ID - 1, CurrentLoadedOffset);
  401. }
  402. /// \brief As part of recovering from missing or changed content, produce a
  403. /// fake, non-empty buffer.
  404. llvm::MemoryBuffer *SourceManager::getFakeBufferForRecovery() const {
  405. if (!FakeBufferForRecovery)
  406. FakeBufferForRecovery =
  407. llvm::MemoryBuffer::getMemBuffer("<<<INVALID BUFFER>>");
  408. return FakeBufferForRecovery.get();
  409. }
  410. /// \brief As part of recovering from missing or changed content, produce a
  411. /// fake content cache.
  412. const SrcMgr::ContentCache *
  413. SourceManager::getFakeContentCacheForRecovery() const {
  414. if (!FakeContentCacheForRecovery) {
  415. FakeContentCacheForRecovery = llvm::make_unique<SrcMgr::ContentCache>();
  416. FakeContentCacheForRecovery->replaceBuffer(getFakeBufferForRecovery(),
  417. /*DoNotFree=*/true);
  418. }
  419. return FakeContentCacheForRecovery.get();
  420. }
  421. /// \brief Returns the previous in-order FileID or an invalid FileID if there
  422. /// is no previous one.
  423. FileID SourceManager::getPreviousFileID(FileID FID) const {
  424. if (FID.isInvalid())
  425. return FileID();
  426. int ID = FID.ID;
  427. if (ID == -1)
  428. return FileID();
  429. if (ID > 0) {
  430. if (ID-1 == 0)
  431. return FileID();
  432. } else if (unsigned(-(ID-1) - 2) >= LoadedSLocEntryTable.size()) {
  433. return FileID();
  434. }
  435. return FileID::get(ID-1);
  436. }
  437. /// \brief Returns the next in-order FileID or an invalid FileID if there is
  438. /// no next one.
  439. FileID SourceManager::getNextFileID(FileID FID) const {
  440. if (FID.isInvalid())
  441. return FileID();
  442. int ID = FID.ID;
  443. if (ID > 0) {
  444. if (unsigned(ID+1) >= local_sloc_entry_size())
  445. return FileID();
  446. } else if (ID+1 >= -1) {
  447. return FileID();
  448. }
  449. return FileID::get(ID+1);
  450. }
  451. //===----------------------------------------------------------------------===//
  452. // Methods to create new FileID's and macro expansions.
  453. //===----------------------------------------------------------------------===//
  454. /// createFileID - Create a new FileID for the specified ContentCache and
  455. /// include position. This works regardless of whether the ContentCache
  456. /// corresponds to a file or some other input source.
  457. FileID SourceManager::createFileID(const ContentCache *File,
  458. SourceLocation IncludePos,
  459. SrcMgr::CharacteristicKind FileCharacter,
  460. int LoadedID, unsigned LoadedOffset) {
  461. if (LoadedID < 0) {
  462. assert(LoadedID != -1 && "Loading sentinel FileID");
  463. unsigned Index = unsigned(-LoadedID) - 2;
  464. assert(Index < LoadedSLocEntryTable.size() && "FileID out of range");
  465. assert(!SLocEntryLoaded[Index] && "FileID already loaded");
  466. LoadedSLocEntryTable[Index] = SLocEntry::get(LoadedOffset,
  467. FileInfo::get(IncludePos, File, FileCharacter));
  468. SLocEntryLoaded[Index] = true;
  469. return FileID::get(LoadedID);
  470. }
  471. LocalSLocEntryTable.push_back(SLocEntry::get(NextLocalOffset,
  472. FileInfo::get(IncludePos, File,
  473. FileCharacter)));
  474. unsigned FileSize = File->getSize();
  475. assert(NextLocalOffset + FileSize + 1 > NextLocalOffset &&
  476. NextLocalOffset + FileSize + 1 <= CurrentLoadedOffset &&
  477. "Ran out of source locations!");
  478. // We do a +1 here because we want a SourceLocation that means "the end of the
  479. // file", e.g. for the "no newline at the end of the file" diagnostic.
  480. NextLocalOffset += FileSize + 1;
  481. // Set LastFileIDLookup to the newly created file. The next getFileID call is
  482. // almost guaranteed to be from that file.
  483. FileID FID = FileID::get(LocalSLocEntryTable.size()-1);
  484. return LastFileIDLookup = FID;
  485. }
  486. SourceLocation
  487. SourceManager::createMacroArgExpansionLoc(SourceLocation SpellingLoc,
  488. SourceLocation ExpansionLoc,
  489. unsigned TokLength) {
  490. ExpansionInfo Info = ExpansionInfo::createForMacroArg(SpellingLoc,
  491. ExpansionLoc);
  492. return createExpansionLocImpl(Info, TokLength);
  493. }
  494. SourceLocation
  495. SourceManager::createExpansionLoc(SourceLocation SpellingLoc,
  496. SourceLocation ExpansionLocStart,
  497. SourceLocation ExpansionLocEnd,
  498. unsigned TokLength,
  499. int LoadedID,
  500. unsigned LoadedOffset) {
  501. ExpansionInfo Info = ExpansionInfo::create(SpellingLoc, ExpansionLocStart,
  502. ExpansionLocEnd);
  503. return createExpansionLocImpl(Info, TokLength, LoadedID, LoadedOffset);
  504. }
  505. SourceLocation
  506. SourceManager::createExpansionLocImpl(const ExpansionInfo &Info,
  507. unsigned TokLength,
  508. int LoadedID,
  509. unsigned LoadedOffset) {
  510. if (LoadedID < 0) {
  511. assert(LoadedID != -1 && "Loading sentinel FileID");
  512. unsigned Index = unsigned(-LoadedID) - 2;
  513. assert(Index < LoadedSLocEntryTable.size() && "FileID out of range");
  514. assert(!SLocEntryLoaded[Index] && "FileID already loaded");
  515. LoadedSLocEntryTable[Index] = SLocEntry::get(LoadedOffset, Info);
  516. SLocEntryLoaded[Index] = true;
  517. return SourceLocation::getMacroLoc(LoadedOffset);
  518. }
  519. LocalSLocEntryTable.push_back(SLocEntry::get(NextLocalOffset, Info));
  520. assert(NextLocalOffset + TokLength + 1 > NextLocalOffset &&
  521. NextLocalOffset + TokLength + 1 <= CurrentLoadedOffset &&
  522. "Ran out of source locations!");
  523. // See createFileID for that +1.
  524. NextLocalOffset += TokLength + 1;
  525. return SourceLocation::getMacroLoc(NextLocalOffset - (TokLength + 1));
  526. }
  527. llvm::MemoryBuffer *SourceManager::getMemoryBufferForFile(const FileEntry *File,
  528. bool *Invalid) {
  529. const SrcMgr::ContentCache *IR = getOrCreateContentCache(File);
  530. assert(IR && "getOrCreateContentCache() cannot return NULL");
  531. return IR->getBuffer(Diag, *this, SourceLocation(), Invalid);
  532. }
  533. void SourceManager::overrideFileContents(const FileEntry *SourceFile,
  534. llvm::MemoryBuffer *Buffer,
  535. bool DoNotFree) {
  536. const SrcMgr::ContentCache *IR = getOrCreateContentCache(SourceFile);
  537. assert(IR && "getOrCreateContentCache() cannot return NULL");
  538. const_cast<SrcMgr::ContentCache *>(IR)->replaceBuffer(Buffer, DoNotFree);
  539. const_cast<SrcMgr::ContentCache *>(IR)->BufferOverridden = true;
  540. getOverriddenFilesInfo().OverriddenFilesWithBuffer.insert(SourceFile);
  541. }
  542. void SourceManager::overrideFileContents(const FileEntry *SourceFile,
  543. const FileEntry *NewFile) {
  544. assert(SourceFile->getSize() == NewFile->getSize() &&
  545. "Different sizes, use the FileManager to create a virtual file with "
  546. "the correct size");
  547. assert(FileInfos.count(SourceFile) == 0 &&
  548. "This function should be called at the initialization stage, before "
  549. "any parsing occurs.");
  550. getOverriddenFilesInfo().OverriddenFiles[SourceFile] = NewFile;
  551. }
  552. void SourceManager::disableFileContentsOverride(const FileEntry *File) {
  553. if (!isFileOverridden(File))
  554. return;
  555. const SrcMgr::ContentCache *IR = getOrCreateContentCache(File);
  556. const_cast<SrcMgr::ContentCache *>(IR)->replaceBuffer(nullptr);
  557. const_cast<SrcMgr::ContentCache *>(IR)->ContentsEntry = IR->OrigEntry;
  558. assert(OverriddenFilesInfo);
  559. OverriddenFilesInfo->OverriddenFiles.erase(File);
  560. OverriddenFilesInfo->OverriddenFilesWithBuffer.erase(File);
  561. }
  562. void SourceManager::setFileIsTransient(const FileEntry *File) {
  563. const SrcMgr::ContentCache *CC = getOrCreateContentCache(File);
  564. const_cast<SrcMgr::ContentCache *>(CC)->IsTransient = true;
  565. }
  566. StringRef SourceManager::getBufferData(FileID FID, bool *Invalid) const {
  567. bool MyInvalid = false;
  568. const SLocEntry &SLoc = getSLocEntry(FID, &MyInvalid);
  569. if (!SLoc.isFile() || MyInvalid) {
  570. if (Invalid)
  571. *Invalid = true;
  572. return "<<<<<INVALID SOURCE LOCATION>>>>>";
  573. }
  574. llvm::MemoryBuffer *Buf = SLoc.getFile().getContentCache()->getBuffer(
  575. Diag, *this, SourceLocation(), &MyInvalid);
  576. if (Invalid)
  577. *Invalid = MyInvalid;
  578. if (MyInvalid)
  579. return "<<<<<INVALID SOURCE LOCATION>>>>>";
  580. return Buf->getBuffer();
  581. }
  582. //===----------------------------------------------------------------------===//
  583. // SourceLocation manipulation methods.
  584. //===----------------------------------------------------------------------===//
  585. /// \brief Return the FileID for a SourceLocation.
  586. ///
  587. /// This is the cache-miss path of getFileID. Not as hot as that function, but
  588. /// still very important. It is responsible for finding the entry in the
  589. /// SLocEntry tables that contains the specified location.
  590. FileID SourceManager::getFileIDSlow(unsigned SLocOffset) const {
  591. if (!SLocOffset)
  592. return FileID::get(0);
  593. // Now it is time to search for the correct file. See where the SLocOffset
  594. // sits in the global view and consult local or loaded buffers for it.
  595. if (SLocOffset < NextLocalOffset)
  596. return getFileIDLocal(SLocOffset);
  597. return getFileIDLoaded(SLocOffset);
  598. }
  599. /// \brief Return the FileID for a SourceLocation with a low offset.
  600. ///
  601. /// This function knows that the SourceLocation is in a local buffer, not a
  602. /// loaded one.
  603. FileID SourceManager::getFileIDLocal(unsigned SLocOffset) const {
  604. assert(SLocOffset < NextLocalOffset && "Bad function choice");
  605. // After the first and second level caches, I see two common sorts of
  606. // behavior: 1) a lot of searched FileID's are "near" the cached file
  607. // location or are "near" the cached expansion location. 2) others are just
  608. // completely random and may be a very long way away.
  609. //
  610. // To handle this, we do a linear search for up to 8 steps to catch #1 quickly
  611. // then we fall back to a less cache efficient, but more scalable, binary
  612. // search to find the location.
  613. // See if this is near the file point - worst case we start scanning from the
  614. // most newly created FileID.
  615. const SrcMgr::SLocEntry *I;
  616. if (LastFileIDLookup.ID < 0 ||
  617. LocalSLocEntryTable[LastFileIDLookup.ID].getOffset() < SLocOffset) {
  618. // Neither loc prunes our search.
  619. I = LocalSLocEntryTable.end();
  620. } else {
  621. // Perhaps it is near the file point.
  622. I = LocalSLocEntryTable.begin()+LastFileIDLookup.ID;
  623. }
  624. // Find the FileID that contains this. "I" is an iterator that points to a
  625. // FileID whose offset is known to be larger than SLocOffset.
  626. unsigned NumProbes = 0;
  627. while (true) {
  628. --I;
  629. if (I->getOffset() <= SLocOffset) {
  630. FileID Res = FileID::get(int(I - LocalSLocEntryTable.begin()));
  631. // If this isn't an expansion, remember it. We have good locality across
  632. // FileID lookups.
  633. if (!I->isExpansion())
  634. LastFileIDLookup = Res;
  635. NumLinearScans += NumProbes+1;
  636. return Res;
  637. }
  638. if (++NumProbes == 8)
  639. break;
  640. }
  641. // Convert "I" back into an index. We know that it is an entry whose index is
  642. // larger than the offset we are looking for.
  643. unsigned GreaterIndex = I - LocalSLocEntryTable.begin();
  644. // LessIndex - This is the lower bound of the range that we're searching.
  645. // We know that the offset corresponding to the FileID is is less than
  646. // SLocOffset.
  647. unsigned LessIndex = 0;
  648. NumProbes = 0;
  649. while (true) {
  650. bool Invalid = false;
  651. unsigned MiddleIndex = (GreaterIndex-LessIndex)/2+LessIndex;
  652. unsigned MidOffset = getLocalSLocEntry(MiddleIndex, &Invalid).getOffset();
  653. if (Invalid)
  654. return FileID::get(0);
  655. ++NumProbes;
  656. // If the offset of the midpoint is too large, chop the high side of the
  657. // range to the midpoint.
  658. if (MidOffset > SLocOffset) {
  659. GreaterIndex = MiddleIndex;
  660. continue;
  661. }
  662. // If the middle index contains the value, succeed and return.
  663. // FIXME: This could be made faster by using a function that's aware of
  664. // being in the local area.
  665. if (isOffsetInFileID(FileID::get(MiddleIndex), SLocOffset)) {
  666. FileID Res = FileID::get(MiddleIndex);
  667. // If this isn't a macro expansion, remember it. We have good locality
  668. // across FileID lookups.
  669. if (!LocalSLocEntryTable[MiddleIndex].isExpansion())
  670. LastFileIDLookup = Res;
  671. NumBinaryProbes += NumProbes;
  672. return Res;
  673. }
  674. // Otherwise, move the low-side up to the middle index.
  675. LessIndex = MiddleIndex;
  676. }
  677. }
  678. /// \brief Return the FileID for a SourceLocation with a high offset.
  679. ///
  680. /// This function knows that the SourceLocation is in a loaded buffer, not a
  681. /// local one.
  682. FileID SourceManager::getFileIDLoaded(unsigned SLocOffset) const {
  683. // Sanity checking, otherwise a bug may lead to hanging in release build.
  684. if (SLocOffset < CurrentLoadedOffset) {
  685. assert(0 && "Invalid SLocOffset or bad function choice");
  686. return FileID();
  687. }
  688. // Essentially the same as the local case, but the loaded array is sorted
  689. // in the other direction.
  690. // First do a linear scan from the last lookup position, if possible.
  691. unsigned I;
  692. int LastID = LastFileIDLookup.ID;
  693. if (LastID >= 0 || getLoadedSLocEntryByID(LastID).getOffset() < SLocOffset)
  694. I = 0;
  695. else
  696. I = (-LastID - 2) + 1;
  697. unsigned NumProbes;
  698. for (NumProbes = 0; NumProbes < 8; ++NumProbes, ++I) {
  699. // Make sure the entry is loaded!
  700. const SrcMgr::SLocEntry &E = getLoadedSLocEntry(I);
  701. if (E.getOffset() <= SLocOffset) {
  702. FileID Res = FileID::get(-int(I) - 2);
  703. if (!E.isExpansion())
  704. LastFileIDLookup = Res;
  705. NumLinearScans += NumProbes + 1;
  706. return Res;
  707. }
  708. }
  709. // Linear scan failed. Do the binary search. Note the reverse sorting of the
  710. // table: GreaterIndex is the one where the offset is greater, which is
  711. // actually a lower index!
  712. unsigned GreaterIndex = I;
  713. unsigned LessIndex = LoadedSLocEntryTable.size();
  714. NumProbes = 0;
  715. while (true) {
  716. ++NumProbes;
  717. unsigned MiddleIndex = (LessIndex - GreaterIndex) / 2 + GreaterIndex;
  718. const SrcMgr::SLocEntry &E = getLoadedSLocEntry(MiddleIndex);
  719. if (E.getOffset() == 0)
  720. return FileID(); // invalid entry.
  721. ++NumProbes;
  722. if (E.getOffset() > SLocOffset) {
  723. // Sanity checking, otherwise a bug may lead to hanging in release build.
  724. if (GreaterIndex == MiddleIndex) {
  725. assert(0 && "binary search missed the entry");
  726. return FileID();
  727. }
  728. GreaterIndex = MiddleIndex;
  729. continue;
  730. }
  731. if (isOffsetInFileID(FileID::get(-int(MiddleIndex) - 2), SLocOffset)) {
  732. FileID Res = FileID::get(-int(MiddleIndex) - 2);
  733. if (!E.isExpansion())
  734. LastFileIDLookup = Res;
  735. NumBinaryProbes += NumProbes;
  736. return Res;
  737. }
  738. // Sanity checking, otherwise a bug may lead to hanging in release build.
  739. if (LessIndex == MiddleIndex) {
  740. assert(0 && "binary search missed the entry");
  741. return FileID();
  742. }
  743. LessIndex = MiddleIndex;
  744. }
  745. }
  746. SourceLocation SourceManager::
  747. getExpansionLocSlowCase(SourceLocation Loc) const {
  748. do {
  749. // Note: If Loc indicates an offset into a token that came from a macro
  750. // expansion (e.g. the 5th character of the token) we do not want to add
  751. // this offset when going to the expansion location. The expansion
  752. // location is the macro invocation, which the offset has nothing to do
  753. // with. This is unlike when we get the spelling loc, because the offset
  754. // directly correspond to the token whose spelling we're inspecting.
  755. Loc = getSLocEntry(getFileID(Loc)).getExpansion().getExpansionLocStart();
  756. } while (!Loc.isFileID());
  757. return Loc;
  758. }
  759. SourceLocation SourceManager::getSpellingLocSlowCase(SourceLocation Loc) const {
  760. do {
  761. std::pair<FileID, unsigned> LocInfo = getDecomposedLoc(Loc);
  762. Loc = getSLocEntry(LocInfo.first).getExpansion().getSpellingLoc();
  763. Loc = Loc.getLocWithOffset(LocInfo.second);
  764. } while (!Loc.isFileID());
  765. return Loc;
  766. }
  767. SourceLocation SourceManager::getFileLocSlowCase(SourceLocation Loc) const {
  768. do {
  769. if (isMacroArgExpansion(Loc))
  770. Loc = getImmediateSpellingLoc(Loc);
  771. else
  772. Loc = getImmediateExpansionRange(Loc).first;
  773. } while (!Loc.isFileID());
  774. return Loc;
  775. }
  776. std::pair<FileID, unsigned>
  777. SourceManager::getDecomposedExpansionLocSlowCase(
  778. const SrcMgr::SLocEntry *E) const {
  779. // If this is an expansion record, walk through all the expansion points.
  780. FileID FID;
  781. SourceLocation Loc;
  782. unsigned Offset;
  783. do {
  784. Loc = E->getExpansion().getExpansionLocStart();
  785. FID = getFileID(Loc);
  786. E = &getSLocEntry(FID);
  787. Offset = Loc.getOffset()-E->getOffset();
  788. } while (!Loc.isFileID());
  789. return std::make_pair(FID, Offset);
  790. }
  791. std::pair<FileID, unsigned>
  792. SourceManager::getDecomposedSpellingLocSlowCase(const SrcMgr::SLocEntry *E,
  793. unsigned Offset) const {
  794. // If this is an expansion record, walk through all the expansion points.
  795. FileID FID;
  796. SourceLocation Loc;
  797. do {
  798. Loc = E->getExpansion().getSpellingLoc();
  799. Loc = Loc.getLocWithOffset(Offset);
  800. FID = getFileID(Loc);
  801. E = &getSLocEntry(FID);
  802. Offset = Loc.getOffset()-E->getOffset();
  803. } while (!Loc.isFileID());
  804. return std::make_pair(FID, Offset);
  805. }
  806. /// getImmediateSpellingLoc - Given a SourceLocation object, return the
  807. /// spelling location referenced by the ID. This is the first level down
  808. /// towards the place where the characters that make up the lexed token can be
  809. /// found. This should not generally be used by clients.
  810. SourceLocation SourceManager::getImmediateSpellingLoc(SourceLocation Loc) const{
  811. if (Loc.isFileID()) return Loc;
  812. std::pair<FileID, unsigned> LocInfo = getDecomposedLoc(Loc);
  813. Loc = getSLocEntry(LocInfo.first).getExpansion().getSpellingLoc();
  814. return Loc.getLocWithOffset(LocInfo.second);
  815. }
  816. /// getImmediateExpansionRange - Loc is required to be an expansion location.
  817. /// Return the start/end of the expansion information.
  818. std::pair<SourceLocation,SourceLocation>
  819. SourceManager::getImmediateExpansionRange(SourceLocation Loc) const {
  820. assert(Loc.isMacroID() && "Not a macro expansion loc!");
  821. const ExpansionInfo &Expansion = getSLocEntry(getFileID(Loc)).getExpansion();
  822. return Expansion.getExpansionLocRange();
  823. }
  824. SourceLocation SourceManager::getTopMacroCallerLoc(SourceLocation Loc) const {
  825. while (isMacroArgExpansion(Loc))
  826. Loc = getImmediateSpellingLoc(Loc);
  827. return Loc;
  828. }
  829. /// getExpansionRange - Given a SourceLocation object, return the range of
  830. /// tokens covered by the expansion in the ultimate file.
  831. std::pair<SourceLocation,SourceLocation>
  832. SourceManager::getExpansionRange(SourceLocation Loc) const {
  833. if (Loc.isFileID()) return std::make_pair(Loc, Loc);
  834. std::pair<SourceLocation,SourceLocation> Res =
  835. getImmediateExpansionRange(Loc);
  836. // Fully resolve the start and end locations to their ultimate expansion
  837. // points.
  838. while (!Res.first.isFileID())
  839. Res.first = getImmediateExpansionRange(Res.first).first;
  840. while (!Res.second.isFileID())
  841. Res.second = getImmediateExpansionRange(Res.second).second;
  842. return Res;
  843. }
  844. bool SourceManager::isMacroArgExpansion(SourceLocation Loc,
  845. SourceLocation *StartLoc) const {
  846. if (!Loc.isMacroID()) return false;
  847. FileID FID = getFileID(Loc);
  848. const SrcMgr::ExpansionInfo &Expansion = getSLocEntry(FID).getExpansion();
  849. if (!Expansion.isMacroArgExpansion()) return false;
  850. if (StartLoc)
  851. *StartLoc = Expansion.getExpansionLocStart();
  852. return true;
  853. }
  854. bool SourceManager::isMacroBodyExpansion(SourceLocation Loc) const {
  855. if (!Loc.isMacroID()) return false;
  856. FileID FID = getFileID(Loc);
  857. const SrcMgr::ExpansionInfo &Expansion = getSLocEntry(FID).getExpansion();
  858. return Expansion.isMacroBodyExpansion();
  859. }
  860. bool SourceManager::isAtStartOfImmediateMacroExpansion(SourceLocation Loc,
  861. SourceLocation *MacroBegin) const {
  862. assert(Loc.isValid() && Loc.isMacroID() && "Expected a valid macro loc");
  863. std::pair<FileID, unsigned> DecompLoc = getDecomposedLoc(Loc);
  864. if (DecompLoc.second > 0)
  865. return false; // Does not point at the start of expansion range.
  866. bool Invalid = false;
  867. const SrcMgr::ExpansionInfo &ExpInfo =
  868. getSLocEntry(DecompLoc.first, &Invalid).getExpansion();
  869. if (Invalid)
  870. return false;
  871. SourceLocation ExpLoc = ExpInfo.getExpansionLocStart();
  872. if (ExpInfo.isMacroArgExpansion()) {
  873. // For macro argument expansions, check if the previous FileID is part of
  874. // the same argument expansion, in which case this Loc is not at the
  875. // beginning of the expansion.
  876. FileID PrevFID = getPreviousFileID(DecompLoc.first);
  877. if (!PrevFID.isInvalid()) {
  878. const SrcMgr::SLocEntry &PrevEntry = getSLocEntry(PrevFID, &Invalid);
  879. if (Invalid)
  880. return false;
  881. if (PrevEntry.isExpansion() &&
  882. PrevEntry.getExpansion().getExpansionLocStart() == ExpLoc)
  883. return false;
  884. }
  885. }
  886. if (MacroBegin)
  887. *MacroBegin = ExpLoc;
  888. return true;
  889. }
  890. bool SourceManager::isAtEndOfImmediateMacroExpansion(SourceLocation Loc,
  891. SourceLocation *MacroEnd) const {
  892. assert(Loc.isValid() && Loc.isMacroID() && "Expected a valid macro loc");
  893. FileID FID = getFileID(Loc);
  894. SourceLocation NextLoc = Loc.getLocWithOffset(1);
  895. if (isInFileID(NextLoc, FID))
  896. return false; // Does not point at the end of expansion range.
  897. bool Invalid = false;
  898. const SrcMgr::ExpansionInfo &ExpInfo =
  899. getSLocEntry(FID, &Invalid).getExpansion();
  900. if (Invalid)
  901. return false;
  902. if (ExpInfo.isMacroArgExpansion()) {
  903. // For macro argument expansions, check if the next FileID is part of the
  904. // same argument expansion, in which case this Loc is not at the end of the
  905. // expansion.
  906. FileID NextFID = getNextFileID(FID);
  907. if (!NextFID.isInvalid()) {
  908. const SrcMgr::SLocEntry &NextEntry = getSLocEntry(NextFID, &Invalid);
  909. if (Invalid)
  910. return false;
  911. if (NextEntry.isExpansion() &&
  912. NextEntry.getExpansion().getExpansionLocStart() ==
  913. ExpInfo.getExpansionLocStart())
  914. return false;
  915. }
  916. }
  917. if (MacroEnd)
  918. *MacroEnd = ExpInfo.getExpansionLocEnd();
  919. return true;
  920. }
  921. //===----------------------------------------------------------------------===//
  922. // Queries about the code at a SourceLocation.
  923. //===----------------------------------------------------------------------===//
  924. /// getCharacterData - Return a pointer to the start of the specified location
  925. /// in the appropriate MemoryBuffer.
  926. const char *SourceManager::getCharacterData(SourceLocation SL,
  927. bool *Invalid) const {
  928. // Note that this is a hot function in the getSpelling() path, which is
  929. // heavily used by -E mode.
  930. std::pair<FileID, unsigned> LocInfo = getDecomposedSpellingLoc(SL);
  931. // Note that calling 'getBuffer()' may lazily page in a source file.
  932. bool CharDataInvalid = false;
  933. const SLocEntry &Entry = getSLocEntry(LocInfo.first, &CharDataInvalid);
  934. if (CharDataInvalid || !Entry.isFile()) {
  935. if (Invalid)
  936. *Invalid = true;
  937. return "<<<<INVALID BUFFER>>>>";
  938. }
  939. llvm::MemoryBuffer *Buffer = Entry.getFile().getContentCache()->getBuffer(
  940. Diag, *this, SourceLocation(), &CharDataInvalid);
  941. if (Invalid)
  942. *Invalid = CharDataInvalid;
  943. return Buffer->getBufferStart() + (CharDataInvalid? 0 : LocInfo.second);
  944. }
  945. /// getColumnNumber - Return the column # for the specified file position.
  946. /// this is significantly cheaper to compute than the line number.
  947. unsigned SourceManager::getColumnNumber(FileID FID, unsigned FilePos,
  948. bool *Invalid) const {
  949. bool MyInvalid = false;
  950. llvm::MemoryBuffer *MemBuf = getBuffer(FID, &MyInvalid);
  951. if (Invalid)
  952. *Invalid = MyInvalid;
  953. if (MyInvalid)
  954. return 1;
  955. // It is okay to request a position just past the end of the buffer.
  956. if (FilePos > MemBuf->getBufferSize()) {
  957. if (Invalid)
  958. *Invalid = true;
  959. return 1;
  960. }
  961. const char *Buf = MemBuf->getBufferStart();
  962. // See if we just calculated the line number for this FilePos and can use
  963. // that to lookup the start of the line instead of searching for it.
  964. if (LastLineNoFileIDQuery == FID &&
  965. LastLineNoContentCache->SourceLineCache != nullptr &&
  966. LastLineNoResult < LastLineNoContentCache->NumLines) {
  967. unsigned *SourceLineCache = LastLineNoContentCache->SourceLineCache;
  968. unsigned LineStart = SourceLineCache[LastLineNoResult - 1];
  969. unsigned LineEnd = SourceLineCache[LastLineNoResult];
  970. if (FilePos >= LineStart && FilePos < LineEnd) {
  971. // LineEnd is the LineStart of the next line.
  972. // A line ends with separator LF or CR+LF on Windows.
  973. // FilePos might point to the last separator,
  974. // but we need a column number at most 1 + the last column.
  975. if (FilePos + 1 == LineEnd && FilePos > LineStart) {
  976. if (Buf[FilePos - 1] == '\r' || Buf[FilePos - 1] == '\n')
  977. --FilePos;
  978. }
  979. return FilePos - LineStart + 1;
  980. }
  981. }
  982. unsigned LineStart = FilePos;
  983. while (LineStart && Buf[LineStart-1] != '\n' && Buf[LineStart-1] != '\r')
  984. --LineStart;
  985. return FilePos-LineStart+1;
  986. }
  987. // isInvalid - Return the result of calling loc.isInvalid(), and
  988. // if Invalid is not null, set its value to same.
  989. template<typename LocType>
  990. static bool isInvalid(LocType Loc, bool *Invalid) {
  991. bool MyInvalid = Loc.isInvalid();
  992. if (Invalid)
  993. *Invalid = MyInvalid;
  994. return MyInvalid;
  995. }
  996. unsigned SourceManager::getSpellingColumnNumber(SourceLocation Loc,
  997. bool *Invalid) const {
  998. if (isInvalid(Loc, Invalid)) return 0;
  999. std::pair<FileID, unsigned> LocInfo = getDecomposedSpellingLoc(Loc);
  1000. return getColumnNumber(LocInfo.first, LocInfo.second, Invalid);
  1001. }
  1002. unsigned SourceManager::getExpansionColumnNumber(SourceLocation Loc,
  1003. bool *Invalid) const {
  1004. if (isInvalid(Loc, Invalid)) return 0;
  1005. std::pair<FileID, unsigned> LocInfo = getDecomposedExpansionLoc(Loc);
  1006. return getColumnNumber(LocInfo.first, LocInfo.second, Invalid);
  1007. }
  1008. unsigned SourceManager::getPresumedColumnNumber(SourceLocation Loc,
  1009. bool *Invalid) const {
  1010. PresumedLoc PLoc = getPresumedLoc(Loc);
  1011. if (isInvalid(PLoc, Invalid)) return 0;
  1012. return PLoc.getColumn();
  1013. }
  1014. #ifdef __SSE2__
  1015. #include <emmintrin.h>
  1016. #endif
  1017. static LLVM_ATTRIBUTE_NOINLINE void
  1018. ComputeLineNumbers(DiagnosticsEngine &Diag, ContentCache *FI,
  1019. llvm::BumpPtrAllocator &Alloc,
  1020. const SourceManager &SM, bool &Invalid);
  1021. static void ComputeLineNumbers(DiagnosticsEngine &Diag, ContentCache *FI,
  1022. llvm::BumpPtrAllocator &Alloc,
  1023. const SourceManager &SM, bool &Invalid) {
  1024. // Note that calling 'getBuffer()' may lazily page in the file.
  1025. MemoryBuffer *Buffer = FI->getBuffer(Diag, SM, SourceLocation(), &Invalid);
  1026. if (Invalid)
  1027. return;
  1028. // Find the file offsets of all of the *physical* source lines. This does
  1029. // not look at trigraphs, escaped newlines, or anything else tricky.
  1030. SmallVector<unsigned, 256> LineOffsets;
  1031. // Line #1 starts at char 0.
  1032. LineOffsets.push_back(0);
  1033. const unsigned char *Buf = (const unsigned char *)Buffer->getBufferStart();
  1034. const unsigned char *End = (const unsigned char *)Buffer->getBufferEnd();
  1035. unsigned Offs = 0;
  1036. while (true) {
  1037. // Skip over the contents of the line.
  1038. const unsigned char *NextBuf = (const unsigned char *)Buf;
  1039. #ifdef __SSE2__
  1040. // Try to skip to the next newline using SSE instructions. This is very
  1041. // performance sensitive for programs with lots of diagnostics and in -E
  1042. // mode.
  1043. __m128i CRs = _mm_set1_epi8('\r');
  1044. __m128i LFs = _mm_set1_epi8('\n');
  1045. // First fix up the alignment to 16 bytes.
  1046. while (((uintptr_t)NextBuf & 0xF) != 0) {
  1047. if (*NextBuf == '\n' || *NextBuf == '\r' || *NextBuf == '\0')
  1048. goto FoundSpecialChar;
  1049. ++NextBuf;
  1050. }
  1051. // Scan 16 byte chunks for '\r' and '\n'. Ignore '\0'.
  1052. while (NextBuf+16 <= End) {
  1053. const __m128i Chunk = *(const __m128i*)NextBuf;
  1054. __m128i Cmp = _mm_or_si128(_mm_cmpeq_epi8(Chunk, CRs),
  1055. _mm_cmpeq_epi8(Chunk, LFs));
  1056. unsigned Mask = _mm_movemask_epi8(Cmp);
  1057. // If we found a newline, adjust the pointer and jump to the handling code.
  1058. if (Mask != 0) {
  1059. NextBuf += llvm::countTrailingZeros(Mask);
  1060. goto FoundSpecialChar;
  1061. }
  1062. NextBuf += 16;
  1063. }
  1064. #endif
  1065. while (*NextBuf != '\n' && *NextBuf != '\r' && *NextBuf != '\0')
  1066. ++NextBuf;
  1067. #ifdef __SSE2__
  1068. FoundSpecialChar:
  1069. #endif
  1070. Offs += NextBuf-Buf;
  1071. Buf = NextBuf;
  1072. if (Buf[0] == '\n' || Buf[0] == '\r') {
  1073. // If this is \n\r or \r\n, skip both characters.
  1074. if ((Buf[1] == '\n' || Buf[1] == '\r') && Buf[0] != Buf[1]) {
  1075. ++Offs;
  1076. ++Buf;
  1077. }
  1078. ++Offs;
  1079. ++Buf;
  1080. LineOffsets.push_back(Offs);
  1081. } else {
  1082. // Otherwise, this is a null. If end of file, exit.
  1083. if (Buf == End) break;
  1084. // Otherwise, skip the null.
  1085. ++Offs;
  1086. ++Buf;
  1087. }
  1088. }
  1089. // Copy the offsets into the FileInfo structure.
  1090. FI->NumLines = LineOffsets.size();
  1091. FI->SourceLineCache = Alloc.Allocate<unsigned>(LineOffsets.size());
  1092. std::copy(LineOffsets.begin(), LineOffsets.end(), FI->SourceLineCache);
  1093. }
  1094. /// getLineNumber - Given a SourceLocation, return the spelling line number
  1095. /// for the position indicated. This requires building and caching a table of
  1096. /// line offsets for the MemoryBuffer, so this is not cheap: use only when
  1097. /// about to emit a diagnostic.
  1098. unsigned SourceManager::getLineNumber(FileID FID, unsigned FilePos,
  1099. bool *Invalid) const {
  1100. if (FID.isInvalid()) {
  1101. if (Invalid)
  1102. *Invalid = true;
  1103. return 1;
  1104. }
  1105. ContentCache *Content;
  1106. if (LastLineNoFileIDQuery == FID)
  1107. Content = LastLineNoContentCache;
  1108. else {
  1109. bool MyInvalid = false;
  1110. const SLocEntry &Entry = getSLocEntry(FID, &MyInvalid);
  1111. if (MyInvalid || !Entry.isFile()) {
  1112. if (Invalid)
  1113. *Invalid = true;
  1114. return 1;
  1115. }
  1116. Content = const_cast<ContentCache*>(Entry.getFile().getContentCache());
  1117. }
  1118. // If this is the first use of line information for this buffer, compute the
  1119. /// SourceLineCache for it on demand.
  1120. if (!Content->SourceLineCache) {
  1121. bool MyInvalid = false;
  1122. ComputeLineNumbers(Diag, Content, ContentCacheAlloc, *this, MyInvalid);
  1123. if (Invalid)
  1124. *Invalid = MyInvalid;
  1125. if (MyInvalid)
  1126. return 1;
  1127. } else if (Invalid)
  1128. *Invalid = false;
  1129. // Okay, we know we have a line number table. Do a binary search to find the
  1130. // line number that this character position lands on.
  1131. unsigned *SourceLineCache = Content->SourceLineCache;
  1132. unsigned *SourceLineCacheStart = SourceLineCache;
  1133. unsigned *SourceLineCacheEnd = SourceLineCache + Content->NumLines;
  1134. unsigned QueriedFilePos = FilePos+1;
  1135. // FIXME: I would like to be convinced that this code is worth being as
  1136. // complicated as it is, binary search isn't that slow.
  1137. //
  1138. // If it is worth being optimized, then in my opinion it could be more
  1139. // performant, simpler, and more obviously correct by just "galloping" outward
  1140. // from the queried file position. In fact, this could be incorporated into a
  1141. // generic algorithm such as lower_bound_with_hint.
  1142. //
  1143. // If someone gives me a test case where this matters, and I will do it! - DWD
  1144. // If the previous query was to the same file, we know both the file pos from
  1145. // that query and the line number returned. This allows us to narrow the
  1146. // search space from the entire file to something near the match.
  1147. if (LastLineNoFileIDQuery == FID) {
  1148. if (QueriedFilePos >= LastLineNoFilePos) {
  1149. // FIXME: Potential overflow?
  1150. SourceLineCache = SourceLineCache+LastLineNoResult-1;
  1151. // The query is likely to be nearby the previous one. Here we check to
  1152. // see if it is within 5, 10 or 20 lines. It can be far away in cases
  1153. // where big comment blocks and vertical whitespace eat up lines but
  1154. // contribute no tokens.
  1155. if (SourceLineCache+5 < SourceLineCacheEnd) {
  1156. if (SourceLineCache[5] > QueriedFilePos)
  1157. SourceLineCacheEnd = SourceLineCache+5;
  1158. else if (SourceLineCache+10 < SourceLineCacheEnd) {
  1159. if (SourceLineCache[10] > QueriedFilePos)
  1160. SourceLineCacheEnd = SourceLineCache+10;
  1161. else if (SourceLineCache+20 < SourceLineCacheEnd) {
  1162. if (SourceLineCache[20] > QueriedFilePos)
  1163. SourceLineCacheEnd = SourceLineCache+20;
  1164. }
  1165. }
  1166. }
  1167. } else {
  1168. if (LastLineNoResult < Content->NumLines)
  1169. SourceLineCacheEnd = SourceLineCache+LastLineNoResult+1;
  1170. }
  1171. }
  1172. unsigned *Pos
  1173. = std::lower_bound(SourceLineCache, SourceLineCacheEnd, QueriedFilePos);
  1174. unsigned LineNo = Pos-SourceLineCacheStart;
  1175. LastLineNoFileIDQuery = FID;
  1176. LastLineNoContentCache = Content;
  1177. LastLineNoFilePos = QueriedFilePos;
  1178. LastLineNoResult = LineNo;
  1179. return LineNo;
  1180. }
  1181. unsigned SourceManager::getSpellingLineNumber(SourceLocation Loc,
  1182. bool *Invalid) const {
  1183. if (isInvalid(Loc, Invalid)) return 0;
  1184. std::pair<FileID, unsigned> LocInfo = getDecomposedSpellingLoc(Loc);
  1185. return getLineNumber(LocInfo.first, LocInfo.second);
  1186. }
  1187. unsigned SourceManager::getExpansionLineNumber(SourceLocation Loc,
  1188. bool *Invalid) const {
  1189. if (isInvalid(Loc, Invalid)) return 0;
  1190. std::pair<FileID, unsigned> LocInfo = getDecomposedExpansionLoc(Loc);
  1191. return getLineNumber(LocInfo.first, LocInfo.second);
  1192. }
  1193. unsigned SourceManager::getPresumedLineNumber(SourceLocation Loc,
  1194. bool *Invalid) const {
  1195. PresumedLoc PLoc = getPresumedLoc(Loc);
  1196. if (isInvalid(PLoc, Invalid)) return 0;
  1197. return PLoc.getLine();
  1198. }
  1199. /// getFileCharacteristic - return the file characteristic of the specified
  1200. /// source location, indicating whether this is a normal file, a system
  1201. /// header, or an "implicit extern C" system header.
  1202. ///
  1203. /// This state can be modified with flags on GNU linemarker directives like:
  1204. /// # 4 "foo.h" 3
  1205. /// which changes all source locations in the current file after that to be
  1206. /// considered to be from a system header.
  1207. SrcMgr::CharacteristicKind
  1208. SourceManager::getFileCharacteristic(SourceLocation Loc) const {
  1209. assert(Loc.isValid() && "Can't get file characteristic of invalid loc!");
  1210. std::pair<FileID, unsigned> LocInfo = getDecomposedExpansionLoc(Loc);
  1211. bool Invalid = false;
  1212. const SLocEntry &SEntry = getSLocEntry(LocInfo.first, &Invalid);
  1213. if (Invalid || !SEntry.isFile())
  1214. return C_User;
  1215. const SrcMgr::FileInfo &FI = SEntry.getFile();
  1216. // If there are no #line directives in this file, just return the whole-file
  1217. // state.
  1218. if (!FI.hasLineDirectives())
  1219. return FI.getFileCharacteristic();
  1220. assert(LineTable && "Can't have linetable entries without a LineTable!");
  1221. // See if there is a #line directive before the location.
  1222. const LineEntry *Entry =
  1223. LineTable->FindNearestLineEntry(LocInfo.first, LocInfo.second);
  1224. // If this is before the first line marker, use the file characteristic.
  1225. if (!Entry)
  1226. return FI.getFileCharacteristic();
  1227. return Entry->FileKind;
  1228. }
  1229. /// Return the filename or buffer identifier of the buffer the location is in.
  1230. /// Note that this name does not respect \#line directives. Use getPresumedLoc
  1231. /// for normal clients.
  1232. StringRef SourceManager::getBufferName(SourceLocation Loc,
  1233. bool *Invalid) const {
  1234. if (isInvalid(Loc, Invalid)) return "<invalid loc>";
  1235. return getBuffer(getFileID(Loc), Invalid)->getBufferIdentifier();
  1236. }
  1237. /// getPresumedLoc - This method returns the "presumed" location of a
  1238. /// SourceLocation specifies. A "presumed location" can be modified by \#line
  1239. /// or GNU line marker directives. This provides a view on the data that a
  1240. /// user should see in diagnostics, for example.
  1241. ///
  1242. /// Note that a presumed location is always given as the expansion point of an
  1243. /// expansion location, not at the spelling location.
  1244. PresumedLoc SourceManager::getPresumedLoc(SourceLocation Loc,
  1245. bool UseLineDirectives) const {
  1246. if (Loc.isInvalid()) return PresumedLoc();
  1247. // Presumed locations are always for expansion points.
  1248. std::pair<FileID, unsigned> LocInfo = getDecomposedExpansionLoc(Loc);
  1249. bool Invalid = false;
  1250. const SLocEntry &Entry = getSLocEntry(LocInfo.first, &Invalid);
  1251. if (Invalid || !Entry.isFile())
  1252. return PresumedLoc();
  1253. const SrcMgr::FileInfo &FI = Entry.getFile();
  1254. const SrcMgr::ContentCache *C = FI.getContentCache();
  1255. // To get the source name, first consult the FileEntry (if one exists)
  1256. // before the MemBuffer as this will avoid unnecessarily paging in the
  1257. // MemBuffer.
  1258. StringRef Filename;
  1259. if (C->OrigEntry)
  1260. Filename = C->OrigEntry->getName();
  1261. else
  1262. Filename = C->getBuffer(Diag, *this)->getBufferIdentifier();
  1263. unsigned LineNo = getLineNumber(LocInfo.first, LocInfo.second, &Invalid);
  1264. if (Invalid)
  1265. return PresumedLoc();
  1266. unsigned ColNo = getColumnNumber(LocInfo.first, LocInfo.second, &Invalid);
  1267. if (Invalid)
  1268. return PresumedLoc();
  1269. SourceLocation IncludeLoc = FI.getIncludeLoc();
  1270. // If we have #line directives in this file, update and overwrite the physical
  1271. // location info if appropriate.
  1272. if (UseLineDirectives && FI.hasLineDirectives()) {
  1273. assert(LineTable && "Can't have linetable entries without a LineTable!");
  1274. // See if there is a #line directive before this. If so, get it.
  1275. if (const LineEntry *Entry =
  1276. LineTable->FindNearestLineEntry(LocInfo.first, LocInfo.second)) {
  1277. // If the LineEntry indicates a filename, use it.
  1278. if (Entry->FilenameID != -1)
  1279. Filename = LineTable->getFilename(Entry->FilenameID);
  1280. // Use the line number specified by the LineEntry. This line number may
  1281. // be multiple lines down from the line entry. Add the difference in
  1282. // physical line numbers from the query point and the line marker to the
  1283. // total.
  1284. unsigned MarkerLineNo = getLineNumber(LocInfo.first, Entry->FileOffset);
  1285. LineNo = Entry->LineNo + (LineNo-MarkerLineNo-1);
  1286. // Note that column numbers are not molested by line markers.
  1287. // Handle virtual #include manipulation.
  1288. if (Entry->IncludeOffset) {
  1289. IncludeLoc = getLocForStartOfFile(LocInfo.first);
  1290. IncludeLoc = IncludeLoc.getLocWithOffset(Entry->IncludeOffset);
  1291. }
  1292. }
  1293. }
  1294. return PresumedLoc(Filename.data(), LineNo, ColNo, IncludeLoc);
  1295. }
  1296. /// \brief Returns whether the PresumedLoc for a given SourceLocation is
  1297. /// in the main file.
  1298. ///
  1299. /// This computes the "presumed" location for a SourceLocation, then checks
  1300. /// whether it came from a file other than the main file. This is different
  1301. /// from isWrittenInMainFile() because it takes line marker directives into
  1302. /// account.
  1303. bool SourceManager::isInMainFile(SourceLocation Loc) const {
  1304. if (Loc.isInvalid()) return false;
  1305. // Presumed locations are always for expansion points.
  1306. std::pair<FileID, unsigned> LocInfo = getDecomposedExpansionLoc(Loc);
  1307. bool Invalid = false;
  1308. const SLocEntry &Entry = getSLocEntry(LocInfo.first, &Invalid);
  1309. if (Invalid || !Entry.isFile())
  1310. return false;
  1311. const SrcMgr::FileInfo &FI = Entry.getFile();
  1312. // Check if there is a line directive for this location.
  1313. if (FI.hasLineDirectives())
  1314. if (const LineEntry *Entry =
  1315. LineTable->FindNearestLineEntry(LocInfo.first, LocInfo.second))
  1316. if (Entry->IncludeOffset)
  1317. return false;
  1318. return FI.getIncludeLoc().isInvalid();
  1319. }
  1320. /// \brief The size of the SLocEntry that \p FID represents.
  1321. unsigned SourceManager::getFileIDSize(FileID FID) const {
  1322. bool Invalid = false;
  1323. const SrcMgr::SLocEntry &Entry = getSLocEntry(FID, &Invalid);
  1324. if (Invalid)
  1325. return 0;
  1326. int ID = FID.ID;
  1327. unsigned NextOffset;
  1328. if ((ID > 0 && unsigned(ID+1) == local_sloc_entry_size()))
  1329. NextOffset = getNextLocalOffset();
  1330. else if (ID+1 == -1)
  1331. NextOffset = MaxLoadedOffset;
  1332. else
  1333. NextOffset = getSLocEntry(FileID::get(ID+1)).getOffset();
  1334. return NextOffset - Entry.getOffset() - 1;
  1335. }
  1336. //===----------------------------------------------------------------------===//
  1337. // Other miscellaneous methods.
  1338. //===----------------------------------------------------------------------===//
  1339. /// \brief Retrieve the inode for the given file entry, if possible.
  1340. ///
  1341. /// This routine involves a system call, and therefore should only be used
  1342. /// in non-performance-critical code.
  1343. static Optional<llvm::sys::fs::UniqueID>
  1344. getActualFileUID(const FileEntry *File) {
  1345. if (!File)
  1346. return None;
  1347. llvm::sys::fs::UniqueID ID;
  1348. if (llvm::sys::fs::getUniqueID(File->getName(), ID))
  1349. return None;
  1350. return ID;
  1351. }
  1352. /// \brief Get the source location for the given file:line:col triplet.
  1353. ///
  1354. /// If the source file is included multiple times, the source location will
  1355. /// be based upon an arbitrary inclusion.
  1356. SourceLocation SourceManager::translateFileLineCol(const FileEntry *SourceFile,
  1357. unsigned Line,
  1358. unsigned Col) const {
  1359. assert(SourceFile && "Null source file!");
  1360. assert(Line && Col && "Line and column should start from 1!");
  1361. FileID FirstFID = translateFile(SourceFile);
  1362. return translateLineCol(FirstFID, Line, Col);
  1363. }
  1364. /// \brief Get the FileID for the given file.
  1365. ///
  1366. /// If the source file is included multiple times, the FileID will be the
  1367. /// first inclusion.
  1368. FileID SourceManager::translateFile(const FileEntry *SourceFile) const {
  1369. assert(SourceFile && "Null source file!");
  1370. // Find the first file ID that corresponds to the given file.
  1371. FileID FirstFID;
  1372. // First, check the main file ID, since it is common to look for a
  1373. // location in the main file.
  1374. Optional<llvm::sys::fs::UniqueID> SourceFileUID;
  1375. Optional<StringRef> SourceFileName;
  1376. if (MainFileID.isValid()) {
  1377. bool Invalid = false;
  1378. const SLocEntry &MainSLoc = getSLocEntry(MainFileID, &Invalid);
  1379. if (Invalid)
  1380. return FileID();
  1381. if (MainSLoc.isFile()) {
  1382. const ContentCache *MainContentCache
  1383. = MainSLoc.getFile().getContentCache();
  1384. if (!MainContentCache) {
  1385. // Can't do anything
  1386. } else if (MainContentCache->OrigEntry == SourceFile) {
  1387. FirstFID = MainFileID;
  1388. } else {
  1389. // Fall back: check whether we have the same base name and inode
  1390. // as the main file.
  1391. const FileEntry *MainFile = MainContentCache->OrigEntry;
  1392. SourceFileName = llvm::sys::path::filename(SourceFile->getName());
  1393. if (*SourceFileName == llvm::sys::path::filename(MainFile->getName())) {
  1394. SourceFileUID = getActualFileUID(SourceFile);
  1395. if (SourceFileUID) {
  1396. if (Optional<llvm::sys::fs::UniqueID> MainFileUID =
  1397. getActualFileUID(MainFile)) {
  1398. if (*SourceFileUID == *MainFileUID) {
  1399. FirstFID = MainFileID;
  1400. SourceFile = MainFile;
  1401. }
  1402. }
  1403. }
  1404. }
  1405. }
  1406. }
  1407. }
  1408. if (FirstFID.isInvalid()) {
  1409. // The location we're looking for isn't in the main file; look
  1410. // through all of the local source locations.
  1411. for (unsigned I = 0, N = local_sloc_entry_size(); I != N; ++I) {
  1412. bool Invalid = false;
  1413. const SLocEntry &SLoc = getLocalSLocEntry(I, &Invalid);
  1414. if (Invalid)
  1415. return FileID();
  1416. if (SLoc.isFile() &&
  1417. SLoc.getFile().getContentCache() &&
  1418. SLoc.getFile().getContentCache()->OrigEntry == SourceFile) {
  1419. FirstFID = FileID::get(I);
  1420. break;
  1421. }
  1422. }
  1423. // If that still didn't help, try the modules.
  1424. if (FirstFID.isInvalid()) {
  1425. for (unsigned I = 0, N = loaded_sloc_entry_size(); I != N; ++I) {
  1426. const SLocEntry &SLoc = getLoadedSLocEntry(I);
  1427. if (SLoc.isFile() &&
  1428. SLoc.getFile().getContentCache() &&
  1429. SLoc.getFile().getContentCache()->OrigEntry == SourceFile) {
  1430. FirstFID = FileID::get(-int(I) - 2);
  1431. break;
  1432. }
  1433. }
  1434. }
  1435. }
  1436. // If we haven't found what we want yet, try again, but this time stat()
  1437. // each of the files in case the files have changed since we originally
  1438. // parsed the file.
  1439. if (FirstFID.isInvalid() &&
  1440. (SourceFileName ||
  1441. (SourceFileName = llvm::sys::path::filename(SourceFile->getName()))) &&
  1442. (SourceFileUID || (SourceFileUID = getActualFileUID(SourceFile)))) {
  1443. bool Invalid = false;
  1444. for (unsigned I = 0, N = local_sloc_entry_size(); I != N; ++I) {
  1445. FileID IFileID;
  1446. IFileID.ID = I;
  1447. const SLocEntry &SLoc = getSLocEntry(IFileID, &Invalid);
  1448. if (Invalid)
  1449. return FileID();
  1450. if (SLoc.isFile()) {
  1451. const ContentCache *FileContentCache
  1452. = SLoc.getFile().getContentCache();
  1453. const FileEntry *Entry = FileContentCache ? FileContentCache->OrigEntry
  1454. : nullptr;
  1455. if (Entry &&
  1456. *SourceFileName == llvm::sys::path::filename(Entry->getName())) {
  1457. if (Optional<llvm::sys::fs::UniqueID> EntryUID =
  1458. getActualFileUID(Entry)) {
  1459. if (*SourceFileUID == *EntryUID) {
  1460. FirstFID = FileID::get(I);
  1461. SourceFile = Entry;
  1462. break;
  1463. }
  1464. }
  1465. }
  1466. }
  1467. }
  1468. }
  1469. (void) SourceFile;
  1470. return FirstFID;
  1471. }
  1472. /// \brief Get the source location in \arg FID for the given line:col.
  1473. /// Returns null location if \arg FID is not a file SLocEntry.
  1474. SourceLocation SourceManager::translateLineCol(FileID FID,
  1475. unsigned Line,
  1476. unsigned Col) const {
  1477. // Lines are used as a one-based index into a zero-based array. This assert
  1478. // checks for possible buffer underruns.
  1479. assert(Line && Col && "Line and column should start from 1!");
  1480. if (FID.isInvalid())
  1481. return SourceLocation();
  1482. bool Invalid = false;
  1483. const SLocEntry &Entry = getSLocEntry(FID, &Invalid);
  1484. if (Invalid)
  1485. return SourceLocation();
  1486. if (!Entry.isFile())
  1487. return SourceLocation();
  1488. SourceLocation FileLoc = SourceLocation::getFileLoc(Entry.getOffset());
  1489. if (Line == 1 && Col == 1)
  1490. return FileLoc;
  1491. ContentCache *Content
  1492. = const_cast<ContentCache *>(Entry.getFile().getContentCache());
  1493. if (!Content)
  1494. return SourceLocation();
  1495. // If this is the first use of line information for this buffer, compute the
  1496. // SourceLineCache for it on demand.
  1497. if (!Content->SourceLineCache) {
  1498. bool MyInvalid = false;
  1499. ComputeLineNumbers(Diag, Content, ContentCacheAlloc, *this, MyInvalid);
  1500. if (MyInvalid)
  1501. return SourceLocation();
  1502. }
  1503. if (Line > Content->NumLines) {
  1504. unsigned Size = Content->getBuffer(Diag, *this)->getBufferSize();
  1505. if (Size > 0)
  1506. --Size;
  1507. return FileLoc.getLocWithOffset(Size);
  1508. }
  1509. llvm::MemoryBuffer *Buffer = Content->getBuffer(Diag, *this);
  1510. unsigned FilePos = Content->SourceLineCache[Line - 1];
  1511. const char *Buf = Buffer->getBufferStart() + FilePos;
  1512. unsigned BufLength = Buffer->getBufferSize() - FilePos;
  1513. if (BufLength == 0)
  1514. return FileLoc.getLocWithOffset(FilePos);
  1515. unsigned i = 0;
  1516. // Check that the given column is valid.
  1517. while (i < BufLength-1 && i < Col-1 && Buf[i] != '\n' && Buf[i] != '\r')
  1518. ++i;
  1519. return FileLoc.getLocWithOffset(FilePos + i);
  1520. }
  1521. /// \brief Compute a map of macro argument chunks to their expanded source
  1522. /// location. Chunks that are not part of a macro argument will map to an
  1523. /// invalid source location. e.g. if a file contains one macro argument at
  1524. /// offset 100 with length 10, this is how the map will be formed:
  1525. /// 0 -> SourceLocation()
  1526. /// 100 -> Expanded macro arg location
  1527. /// 110 -> SourceLocation()
  1528. void SourceManager::computeMacroArgsCache(MacroArgsMap &MacroArgsCache,
  1529. FileID FID) const {
  1530. assert(FID.isValid());
  1531. // Initially no macro argument chunk is present.
  1532. MacroArgsCache.insert(std::make_pair(0, SourceLocation()));
  1533. int ID = FID.ID;
  1534. while (true) {
  1535. ++ID;
  1536. // Stop if there are no more FileIDs to check.
  1537. if (ID > 0) {
  1538. if (unsigned(ID) >= local_sloc_entry_size())
  1539. return;
  1540. } else if (ID == -1) {
  1541. return;
  1542. }
  1543. bool Invalid = false;
  1544. const SrcMgr::SLocEntry &Entry = getSLocEntryByID(ID, &Invalid);
  1545. if (Invalid)
  1546. return;
  1547. if (Entry.isFile()) {
  1548. SourceLocation IncludeLoc = Entry.getFile().getIncludeLoc();
  1549. if (IncludeLoc.isInvalid())
  1550. continue;
  1551. if (!isInFileID(IncludeLoc, FID))
  1552. return; // No more files/macros that may be "contained" in this file.
  1553. // Skip the files/macros of the #include'd file, we only care about macros
  1554. // that lexed macro arguments from our file.
  1555. if (Entry.getFile().NumCreatedFIDs)
  1556. ID += Entry.getFile().NumCreatedFIDs - 1/*because of next ++ID*/;
  1557. continue;
  1558. }
  1559. const ExpansionInfo &ExpInfo = Entry.getExpansion();
  1560. if (ExpInfo.getExpansionLocStart().isFileID()) {
  1561. if (!isInFileID(ExpInfo.getExpansionLocStart(), FID))
  1562. return; // No more files/macros that may be "contained" in this file.
  1563. }
  1564. if (!ExpInfo.isMacroArgExpansion())
  1565. continue;
  1566. associateFileChunkWithMacroArgExp(MacroArgsCache, FID,
  1567. ExpInfo.getSpellingLoc(),
  1568. SourceLocation::getMacroLoc(Entry.getOffset()),
  1569. getFileIDSize(FileID::get(ID)));
  1570. }
  1571. }
  1572. void SourceManager::associateFileChunkWithMacroArgExp(
  1573. MacroArgsMap &MacroArgsCache,
  1574. FileID FID,
  1575. SourceLocation SpellLoc,
  1576. SourceLocation ExpansionLoc,
  1577. unsigned ExpansionLength) const {
  1578. if (!SpellLoc.isFileID()) {
  1579. unsigned SpellBeginOffs = SpellLoc.getOffset();
  1580. unsigned SpellEndOffs = SpellBeginOffs + ExpansionLength;
  1581. // The spelling range for this macro argument expansion can span multiple
  1582. // consecutive FileID entries. Go through each entry contained in the
  1583. // spelling range and if one is itself a macro argument expansion, recurse
  1584. // and associate the file chunk that it represents.
  1585. FileID SpellFID; // Current FileID in the spelling range.
  1586. unsigned SpellRelativeOffs;
  1587. std::tie(SpellFID, SpellRelativeOffs) = getDecomposedLoc(SpellLoc);
  1588. while (true) {
  1589. const SLocEntry &Entry = getSLocEntry(SpellFID);
  1590. unsigned SpellFIDBeginOffs = Entry.getOffset();
  1591. unsigned SpellFIDSize = getFileIDSize(SpellFID);
  1592. unsigned SpellFIDEndOffs = SpellFIDBeginOffs + SpellFIDSize;
  1593. const ExpansionInfo &Info = Entry.getExpansion();
  1594. if (Info.isMacroArgExpansion()) {
  1595. unsigned CurrSpellLength;
  1596. if (SpellFIDEndOffs < SpellEndOffs)
  1597. CurrSpellLength = SpellFIDSize - SpellRelativeOffs;
  1598. else
  1599. CurrSpellLength = ExpansionLength;
  1600. associateFileChunkWithMacroArgExp(MacroArgsCache, FID,
  1601. Info.getSpellingLoc().getLocWithOffset(SpellRelativeOffs),
  1602. ExpansionLoc, CurrSpellLength);
  1603. }
  1604. if (SpellFIDEndOffs >= SpellEndOffs)
  1605. return; // we covered all FileID entries in the spelling range.
  1606. // Move to the next FileID entry in the spelling range.
  1607. unsigned advance = SpellFIDSize - SpellRelativeOffs + 1;
  1608. ExpansionLoc = ExpansionLoc.getLocWithOffset(advance);
  1609. ExpansionLength -= advance;
  1610. ++SpellFID.ID;
  1611. SpellRelativeOffs = 0;
  1612. }
  1613. }
  1614. assert(SpellLoc.isFileID());
  1615. unsigned BeginOffs;
  1616. if (!isInFileID(SpellLoc, FID, &BeginOffs))
  1617. return;
  1618. unsigned EndOffs = BeginOffs + ExpansionLength;
  1619. // Add a new chunk for this macro argument. A previous macro argument chunk
  1620. // may have been lexed again, so e.g. if the map is
  1621. // 0 -> SourceLocation()
  1622. // 100 -> Expanded loc #1
  1623. // 110 -> SourceLocation()
  1624. // and we found a new macro FileID that lexed from offet 105 with length 3,
  1625. // the new map will be:
  1626. // 0 -> SourceLocation()
  1627. // 100 -> Expanded loc #1
  1628. // 105 -> Expanded loc #2
  1629. // 108 -> Expanded loc #1
  1630. // 110 -> SourceLocation()
  1631. //
  1632. // Since re-lexed macro chunks will always be the same size or less of
  1633. // previous chunks, we only need to find where the ending of the new macro
  1634. // chunk is mapped to and update the map with new begin/end mappings.
  1635. MacroArgsMap::iterator I = MacroArgsCache.upper_bound(EndOffs);
  1636. --I;
  1637. SourceLocation EndOffsMappedLoc = I->second;
  1638. MacroArgsCache[BeginOffs] = ExpansionLoc;
  1639. MacroArgsCache[EndOffs] = EndOffsMappedLoc;
  1640. }
  1641. /// \brief If \arg Loc points inside a function macro argument, the returned
  1642. /// location will be the macro location in which the argument was expanded.
  1643. /// If a macro argument is used multiple times, the expanded location will
  1644. /// be at the first expansion of the argument.
  1645. /// e.g.
  1646. /// MY_MACRO(foo);
  1647. /// ^
  1648. /// Passing a file location pointing at 'foo', will yield a macro location
  1649. /// where 'foo' was expanded into.
  1650. SourceLocation
  1651. SourceManager::getMacroArgExpandedLocation(SourceLocation Loc) const {
  1652. if (Loc.isInvalid() || !Loc.isFileID())
  1653. return Loc;
  1654. FileID FID;
  1655. unsigned Offset;
  1656. std::tie(FID, Offset) = getDecomposedLoc(Loc);
  1657. if (FID.isInvalid())
  1658. return Loc;
  1659. std::unique_ptr<MacroArgsMap> &MacroArgsCache = MacroArgsCacheMap[FID];
  1660. if (!MacroArgsCache) {
  1661. MacroArgsCache = llvm::make_unique<MacroArgsMap>();
  1662. computeMacroArgsCache(*MacroArgsCache, FID);
  1663. }
  1664. assert(!MacroArgsCache->empty());
  1665. MacroArgsMap::iterator I = MacroArgsCache->upper_bound(Offset);
  1666. --I;
  1667. unsigned MacroArgBeginOffs = I->first;
  1668. SourceLocation MacroArgExpandedLoc = I->second;
  1669. if (MacroArgExpandedLoc.isValid())
  1670. return MacroArgExpandedLoc.getLocWithOffset(Offset - MacroArgBeginOffs);
  1671. return Loc;
  1672. }
  1673. std::pair<FileID, unsigned>
  1674. SourceManager::getDecomposedIncludedLoc(FileID FID) const {
  1675. if (FID.isInvalid())
  1676. return std::make_pair(FileID(), 0);
  1677. // Uses IncludedLocMap to retrieve/cache the decomposed loc.
  1678. using DecompTy = std::pair<FileID, unsigned>;
  1679. using MapTy = llvm::DenseMap<FileID, DecompTy>;
  1680. std::pair<MapTy::iterator, bool>
  1681. InsertOp = IncludedLocMap.insert(std::make_pair(FID, DecompTy()));
  1682. DecompTy &DecompLoc = InsertOp.first->second;
  1683. if (!InsertOp.second)
  1684. return DecompLoc; // already in map.
  1685. SourceLocation UpperLoc;
  1686. bool Invalid = false;
  1687. const SrcMgr::SLocEntry &Entry = getSLocEntry(FID, &Invalid);
  1688. if (!Invalid) {
  1689. if (Entry.isExpansion())
  1690. UpperLoc = Entry.getExpansion().getExpansionLocStart();
  1691. else
  1692. UpperLoc = Entry.getFile().getIncludeLoc();
  1693. }
  1694. if (UpperLoc.isValid())
  1695. DecompLoc = getDecomposedLoc(UpperLoc);
  1696. return DecompLoc;
  1697. }
  1698. /// Given a decomposed source location, move it up the include/expansion stack
  1699. /// to the parent source location. If this is possible, return the decomposed
  1700. /// version of the parent in Loc and return false. If Loc is the top-level
  1701. /// entry, return true and don't modify it.
  1702. static bool MoveUpIncludeHierarchy(std::pair<FileID, unsigned> &Loc,
  1703. const SourceManager &SM) {
  1704. std::pair<FileID, unsigned> UpperLoc = SM.getDecomposedIncludedLoc(Loc.first);
  1705. if (UpperLoc.first.isInvalid())
  1706. return true; // We reached the top.
  1707. Loc = UpperLoc;
  1708. return false;
  1709. }
  1710. /// Return the cache entry for comparing the given file IDs
  1711. /// for isBeforeInTranslationUnit.
  1712. InBeforeInTUCacheEntry &SourceManager::getInBeforeInTUCache(FileID LFID,
  1713. FileID RFID) const {
  1714. // This is a magic number for limiting the cache size. It was experimentally
  1715. // derived from a small Objective-C project (where the cache filled
  1716. // out to ~250 items). We can make it larger if necessary.
  1717. enum { MagicCacheSize = 300 };
  1718. IsBeforeInTUCacheKey Key(LFID, RFID);
  1719. // If the cache size isn't too large, do a lookup and if necessary default
  1720. // construct an entry. We can then return it to the caller for direct
  1721. // use. When they update the value, the cache will get automatically
  1722. // updated as well.
  1723. if (IBTUCache.size() < MagicCacheSize)
  1724. return IBTUCache[Key];
  1725. // Otherwise, do a lookup that will not construct a new value.
  1726. InBeforeInTUCache::iterator I = IBTUCache.find(Key);
  1727. if (I != IBTUCache.end())
  1728. return I->second;
  1729. // Fall back to the overflow value.
  1730. return IBTUCacheOverflow;
  1731. }
  1732. /// \brief Determines the order of 2 source locations in the translation unit.
  1733. ///
  1734. /// \returns true if LHS source location comes before RHS, false otherwise.
  1735. bool SourceManager::isBeforeInTranslationUnit(SourceLocation LHS,
  1736. SourceLocation RHS) const {
  1737. assert(LHS.isValid() && RHS.isValid() && "Passed invalid source location!");
  1738. if (LHS == RHS)
  1739. return false;
  1740. std::pair<FileID, unsigned> LOffs = getDecomposedLoc(LHS);
  1741. std::pair<FileID, unsigned> ROffs = getDecomposedLoc(RHS);
  1742. // getDecomposedLoc may have failed to return a valid FileID because, e.g. it
  1743. // is a serialized one referring to a file that was removed after we loaded
  1744. // the PCH.
  1745. if (LOffs.first.isInvalid() || ROffs.first.isInvalid())
  1746. return LOffs.first.isInvalid() && !ROffs.first.isInvalid();
  1747. std::pair<bool, bool> InSameTU = isInTheSameTranslationUnit(LOffs, ROffs);
  1748. if (InSameTU.first)
  1749. return InSameTU.second;
  1750. // If we arrived here, the location is either in a built-ins buffer or
  1751. // associated with global inline asm. PR5662 and PR22576 are examples.
  1752. StringRef LB = getBuffer(LOffs.first)->getBufferIdentifier();
  1753. StringRef RB = getBuffer(ROffs.first)->getBufferIdentifier();
  1754. bool LIsBuiltins = LB == "<built-in>";
  1755. bool RIsBuiltins = RB == "<built-in>";
  1756. // Sort built-in before non-built-in.
  1757. if (LIsBuiltins || RIsBuiltins) {
  1758. if (LIsBuiltins != RIsBuiltins)
  1759. return LIsBuiltins;
  1760. // Both are in built-in buffers, but from different files. We just claim that
  1761. // lower IDs come first.
  1762. return LOffs.first < ROffs.first;
  1763. }
  1764. bool LIsAsm = LB == "<inline asm>";
  1765. bool RIsAsm = RB == "<inline asm>";
  1766. // Sort assembler after built-ins, but before the rest.
  1767. if (LIsAsm || RIsAsm) {
  1768. if (LIsAsm != RIsAsm)
  1769. return RIsAsm;
  1770. assert(LOffs.first == ROffs.first);
  1771. return false;
  1772. }
  1773. bool LIsScratch = LB == "<scratch space>";
  1774. bool RIsScratch = RB == "<scratch space>";
  1775. // Sort scratch after inline asm, but before the rest.
  1776. if (LIsScratch || RIsScratch) {
  1777. if (LIsScratch != RIsScratch)
  1778. return LIsScratch;
  1779. return LOffs.second < ROffs.second;
  1780. }
  1781. llvm_unreachable("Unsortable locations found");
  1782. }
  1783. std::pair<bool, bool> SourceManager::isInTheSameTranslationUnit(
  1784. std::pair<FileID, unsigned> &LOffs,
  1785. std::pair<FileID, unsigned> &ROffs) const {
  1786. // If the source locations are in the same file, just compare offsets.
  1787. if (LOffs.first == ROffs.first)
  1788. return std::make_pair(true, LOffs.second < ROffs.second);
  1789. // If we are comparing a source location with multiple locations in the same
  1790. // file, we get a big win by caching the result.
  1791. InBeforeInTUCacheEntry &IsBeforeInTUCache =
  1792. getInBeforeInTUCache(LOffs.first, ROffs.first);
  1793. // If we are comparing a source location with multiple locations in the same
  1794. // file, we get a big win by caching the result.
  1795. if (IsBeforeInTUCache.isCacheValid(LOffs.first, ROffs.first))
  1796. return std::make_pair(
  1797. true, IsBeforeInTUCache.getCachedResult(LOffs.second, ROffs.second));
  1798. // Okay, we missed in the cache, start updating the cache for this query.
  1799. IsBeforeInTUCache.setQueryFIDs(LOffs.first, ROffs.first,
  1800. /*isLFIDBeforeRFID=*/LOffs.first.ID < ROffs.first.ID);
  1801. // We need to find the common ancestor. The only way of doing this is to
  1802. // build the complete include chain for one and then walking up the chain
  1803. // of the other looking for a match.
  1804. // We use a map from FileID to Offset to store the chain. Easier than writing
  1805. // a custom set hash info that only depends on the first part of a pair.
  1806. using LocSet = llvm::SmallDenseMap<FileID, unsigned, 16>;
  1807. LocSet LChain;
  1808. do {
  1809. LChain.insert(LOffs);
  1810. // We catch the case where LOffs is in a file included by ROffs and
  1811. // quit early. The other way round unfortunately remains suboptimal.
  1812. } while (LOffs.first != ROffs.first && !MoveUpIncludeHierarchy(LOffs, *this));
  1813. LocSet::iterator I;
  1814. while((I = LChain.find(ROffs.first)) == LChain.end()) {
  1815. if (MoveUpIncludeHierarchy(ROffs, *this))
  1816. break; // Met at topmost file.
  1817. }
  1818. if (I != LChain.end())
  1819. LOffs = *I;
  1820. // If we exited because we found a nearest common ancestor, compare the
  1821. // locations within the common file and cache them.
  1822. if (LOffs.first == ROffs.first) {
  1823. IsBeforeInTUCache.setCommonLoc(LOffs.first, LOffs.second, ROffs.second);
  1824. return std::make_pair(
  1825. true, IsBeforeInTUCache.getCachedResult(LOffs.second, ROffs.second));
  1826. }
  1827. // Clear the lookup cache, it depends on a common location.
  1828. IsBeforeInTUCache.clear();
  1829. return std::make_pair(false, false);
  1830. }
  1831. void SourceManager::PrintStats() const {
  1832. llvm::errs() << "\n*** Source Manager Stats:\n";
  1833. llvm::errs() << FileInfos.size() << " files mapped, " << MemBufferInfos.size()
  1834. << " mem buffers mapped.\n";
  1835. llvm::errs() << LocalSLocEntryTable.size() << " local SLocEntry's allocated ("
  1836. << llvm::capacity_in_bytes(LocalSLocEntryTable)
  1837. << " bytes of capacity), "
  1838. << NextLocalOffset << "B of Sloc address space used.\n";
  1839. llvm::errs() << LoadedSLocEntryTable.size()
  1840. << " loaded SLocEntries allocated, "
  1841. << MaxLoadedOffset - CurrentLoadedOffset
  1842. << "B of Sloc address space used.\n";
  1843. unsigned NumLineNumsComputed = 0;
  1844. unsigned NumFileBytesMapped = 0;
  1845. for (fileinfo_iterator I = fileinfo_begin(), E = fileinfo_end(); I != E; ++I){
  1846. NumLineNumsComputed += I->second->SourceLineCache != nullptr;
  1847. NumFileBytesMapped += I->second->getSizeBytesMapped();
  1848. }
  1849. unsigned NumMacroArgsComputed = MacroArgsCacheMap.size();
  1850. llvm::errs() << NumFileBytesMapped << " bytes of files mapped, "
  1851. << NumLineNumsComputed << " files with line #'s computed, "
  1852. << NumMacroArgsComputed << " files with macro args computed.\n";
  1853. llvm::errs() << "FileID scans: " << NumLinearScans << " linear, "
  1854. << NumBinaryProbes << " binary.\n";
  1855. }
  1856. LLVM_DUMP_METHOD void SourceManager::dump() const {
  1857. llvm::raw_ostream &out = llvm::errs();
  1858. auto DumpSLocEntry = [&](int ID, const SrcMgr::SLocEntry &Entry,
  1859. llvm::Optional<unsigned> NextStart) {
  1860. out << "SLocEntry <FileID " << ID << "> " << (Entry.isFile() ? "file" : "expansion")
  1861. << " <SourceLocation " << Entry.getOffset() << ":";
  1862. if (NextStart)
  1863. out << *NextStart << ">\n";
  1864. else
  1865. out << "???\?>\n";
  1866. if (Entry.isFile()) {
  1867. auto &FI = Entry.getFile();
  1868. if (FI.NumCreatedFIDs)
  1869. out << " covers <FileID " << ID << ":" << int(ID + FI.NumCreatedFIDs)
  1870. << ">\n";
  1871. if (FI.getIncludeLoc().isValid())
  1872. out << " included from " << FI.getIncludeLoc().getOffset() << "\n";
  1873. if (auto *CC = FI.getContentCache()) {
  1874. out << " for " << (CC->OrigEntry ? CC->OrigEntry->getName() : "<none>")
  1875. << "\n";
  1876. if (CC->BufferOverridden)
  1877. out << " contents overridden\n";
  1878. if (CC->ContentsEntry != CC->OrigEntry) {
  1879. out << " contents from "
  1880. << (CC->ContentsEntry ? CC->ContentsEntry->getName() : "<none>")
  1881. << "\n";
  1882. }
  1883. }
  1884. } else {
  1885. auto &EI = Entry.getExpansion();
  1886. out << " spelling from " << EI.getSpellingLoc().getOffset() << "\n";
  1887. out << " macro " << (EI.isMacroArgExpansion() ? "arg" : "body")
  1888. << " range <" << EI.getExpansionLocStart().getOffset() << ":"
  1889. << EI.getExpansionLocEnd().getOffset() << ">\n";
  1890. }
  1891. };
  1892. // Dump local SLocEntries.
  1893. for (unsigned ID = 0, NumIDs = LocalSLocEntryTable.size(); ID != NumIDs; ++ID) {
  1894. DumpSLocEntry(ID, LocalSLocEntryTable[ID],
  1895. ID == NumIDs - 1 ? NextLocalOffset
  1896. : LocalSLocEntryTable[ID + 1].getOffset());
  1897. }
  1898. // Dump loaded SLocEntries.
  1899. llvm::Optional<unsigned> NextStart;
  1900. for (unsigned Index = 0; Index != LoadedSLocEntryTable.size(); ++Index) {
  1901. int ID = -(int)Index - 2;
  1902. if (SLocEntryLoaded[Index]) {
  1903. DumpSLocEntry(ID, LoadedSLocEntryTable[Index], NextStart);
  1904. NextStart = LoadedSLocEntryTable[Index].getOffset();
  1905. } else {
  1906. NextStart = None;
  1907. }
  1908. }
  1909. }
  1910. ExternalSLocEntrySource::~ExternalSLocEntrySource() = default;
  1911. /// Return the amount of memory used by memory buffers, breaking down
  1912. /// by heap-backed versus mmap'ed memory.
  1913. SourceManager::MemoryBufferSizes SourceManager::getMemoryBufferSizes() const {
  1914. size_t malloc_bytes = 0;
  1915. size_t mmap_bytes = 0;
  1916. for (unsigned i = 0, e = MemBufferInfos.size(); i != e; ++i)
  1917. if (size_t sized_mapped = MemBufferInfos[i]->getSizeBytesMapped())
  1918. switch (MemBufferInfos[i]->getMemoryBufferKind()) {
  1919. case llvm::MemoryBuffer::MemoryBuffer_MMap:
  1920. mmap_bytes += sized_mapped;
  1921. break;
  1922. case llvm::MemoryBuffer::MemoryBuffer_Malloc:
  1923. malloc_bytes += sized_mapped;
  1924. break;
  1925. }
  1926. return MemoryBufferSizes(malloc_bytes, mmap_bytes);
  1927. }
  1928. size_t SourceManager::getDataStructureSizes() const {
  1929. size_t size = llvm::capacity_in_bytes(MemBufferInfos)
  1930. + llvm::capacity_in_bytes(LocalSLocEntryTable)
  1931. + llvm::capacity_in_bytes(LoadedSLocEntryTable)
  1932. + llvm::capacity_in_bytes(SLocEntryLoaded)
  1933. + llvm::capacity_in_bytes(FileInfos);
  1934. if (OverriddenFilesInfo)
  1935. size += llvm::capacity_in_bytes(OverriddenFilesInfo->OverriddenFiles);
  1936. return size;
  1937. }