SourceManager.cpp revision 642116259e8df6286063a17361c20e95b5017a0a
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
14#include "clang/Basic/SourceManager.h"
15#include "clang/Basic/SourceManagerInternals.h"
16#include "clang/Basic/Diagnostic.h"
17#include "clang/Basic/FileManager.h"
18#include "llvm/ADT/StringSwitch.h"
19#include "llvm/ADT/Optional.h"
20#include "llvm/Support/Compiler.h"
21#include "llvm/Support/MemoryBuffer.h"
22#include "llvm/Support/raw_ostream.h"
23#include "llvm/Support/Path.h"
24#include <algorithm>
25#include <string>
26#include <cstring>
27#include <sys/stat.h>
28
29using namespace clang;
30using namespace SrcMgr;
31using llvm::MemoryBuffer;
32
33//===----------------------------------------------------------------------===//
34// SourceManager Helper Classes
35//===----------------------------------------------------------------------===//
36
37ContentCache::~ContentCache() {
38  if (shouldFreeBuffer())
39    delete Buffer.getPointer();
40}
41
42/// getSizeBytesMapped - Returns the number of bytes actually mapped for
43///  this ContentCache.  This can be 0 if the MemBuffer was not actually
44///  instantiated.
45unsigned ContentCache::getSizeBytesMapped() const {
46  return Buffer.getPointer() ? Buffer.getPointer()->getBufferSize() : 0;
47}
48
49/// Returns the kind of memory used to back the memory buffer for
50/// this content cache.  This is used for performance analysis.
51llvm::MemoryBuffer::BufferKind ContentCache::getMemoryBufferKind() const {
52  assert(Buffer.getPointer());
53
54  // Should be unreachable, but keep for sanity.
55  if (!Buffer.getPointer())
56    return llvm::MemoryBuffer::MemoryBuffer_Malloc;
57
58  const llvm::MemoryBuffer *buf = Buffer.getPointer();
59  return buf->getBufferKind();
60}
61
62/// getSize - Returns the size of the content encapsulated by this ContentCache.
63///  This can be the size of the source file or the size of an arbitrary
64///  scratch buffer.  If the ContentCache encapsulates a source file, that
65///  file is not lazily brought in from disk to satisfy this query.
66unsigned ContentCache::getSize() const {
67  return Buffer.getPointer() ? (unsigned) Buffer.getPointer()->getBufferSize()
68                             : (unsigned) ContentsEntry->getSize();
69}
70
71void ContentCache::replaceBuffer(const llvm::MemoryBuffer *B,
72                                 bool DoNotFree) {
73  assert(B != Buffer.getPointer());
74
75  if (shouldFreeBuffer())
76    delete Buffer.getPointer();
77  Buffer.setPointer(B);
78  Buffer.setInt(DoNotFree? DoNotFreeFlag : 0);
79}
80
81const llvm::MemoryBuffer *ContentCache::getBuffer(Diagnostic &Diag,
82                                                  const SourceManager &SM,
83                                                  SourceLocation Loc,
84                                                  bool *Invalid) const {
85  // Lazily create the Buffer for ContentCaches that wrap files.  If we already
86  // computed it, just return what we have.
87  if (Buffer.getPointer() || ContentsEntry == 0) {
88    if (Invalid)
89      *Invalid = isBufferInvalid();
90
91    return Buffer.getPointer();
92  }
93
94  std::string ErrorStr;
95  Buffer.setPointer(SM.getFileManager().getBufferForFile(ContentsEntry, &ErrorStr));
96
97  // If we were unable to open the file, then we are in an inconsistent
98  // situation where the content cache referenced a file which no longer
99  // exists. Most likely, we were using a stat cache with an invalid entry but
100  // the file could also have been removed during processing. Since we can't
101  // really deal with this situation, just create an empty buffer.
102  //
103  // FIXME: This is definitely not ideal, but our immediate clients can't
104  // currently handle returning a null entry here. Ideally we should detect
105  // that we are in an inconsistent situation and error out as quickly as
106  // possible.
107  if (!Buffer.getPointer()) {
108    const StringRef FillStr("<<<MISSING SOURCE FILE>>>\n");
109    Buffer.setPointer(MemoryBuffer::getNewMemBuffer(ContentsEntry->getSize(),
110                                                    "<invalid>"));
111    char *Ptr = const_cast<char*>(Buffer.getPointer()->getBufferStart());
112    for (unsigned i = 0, e = ContentsEntry->getSize(); i != e; ++i)
113      Ptr[i] = FillStr[i % FillStr.size()];
114
115    if (Diag.isDiagnosticInFlight())
116      Diag.SetDelayedDiagnostic(diag::err_cannot_open_file,
117                                ContentsEntry->getName(), ErrorStr);
118    else
119      Diag.Report(Loc, diag::err_cannot_open_file)
120        << ContentsEntry->getName() << ErrorStr;
121
122    Buffer.setInt(Buffer.getInt() | InvalidFlag);
123
124    if (Invalid) *Invalid = true;
125    return Buffer.getPointer();
126  }
127
128  // Check that the file's size is the same as in the file entry (which may
129  // have come from a stat cache).
130  if (getRawBuffer()->getBufferSize() != (size_t)ContentsEntry->getSize()) {
131    if (Diag.isDiagnosticInFlight())
132      Diag.SetDelayedDiagnostic(diag::err_file_modified,
133                                ContentsEntry->getName());
134    else
135      Diag.Report(Loc, diag::err_file_modified)
136        << ContentsEntry->getName();
137
138    Buffer.setInt(Buffer.getInt() | InvalidFlag);
139    if (Invalid) *Invalid = true;
140    return Buffer.getPointer();
141  }
142
143  // If the buffer is valid, check to see if it has a UTF Byte Order Mark
144  // (BOM).  We only support UTF-8 with and without a BOM right now.  See
145  // http://en.wikipedia.org/wiki/Byte_order_mark for more information.
146  StringRef BufStr = Buffer.getPointer()->getBuffer();
147  const char *InvalidBOM = llvm::StringSwitch<const char *>(BufStr)
148    .StartsWith("\xFE\xFF", "UTF-16 (BE)")
149    .StartsWith("\xFF\xFE", "UTF-16 (LE)")
150    .StartsWith("\x00\x00\xFE\xFF", "UTF-32 (BE)")
151    .StartsWith("\xFF\xFE\x00\x00", "UTF-32 (LE)")
152    .StartsWith("\x2B\x2F\x76", "UTF-7")
153    .StartsWith("\xF7\x64\x4C", "UTF-1")
154    .StartsWith("\xDD\x73\x66\x73", "UTF-EBCDIC")
155    .StartsWith("\x0E\xFE\xFF", "SDSU")
156    .StartsWith("\xFB\xEE\x28", "BOCU-1")
157    .StartsWith("\x84\x31\x95\x33", "GB-18030")
158    .Default(0);
159
160  if (InvalidBOM) {
161    Diag.Report(Loc, diag::err_unsupported_bom)
162      << InvalidBOM << ContentsEntry->getName();
163    Buffer.setInt(Buffer.getInt() | InvalidFlag);
164  }
165
166  if (Invalid)
167    *Invalid = isBufferInvalid();
168
169  return Buffer.getPointer();
170}
171
172unsigned LineTableInfo::getLineTableFilenameID(StringRef Name) {
173  // Look up the filename in the string table, returning the pre-existing value
174  // if it exists.
175  llvm::StringMapEntry<unsigned> &Entry =
176    FilenameIDs.GetOrCreateValue(Name, ~0U);
177  if (Entry.getValue() != ~0U)
178    return Entry.getValue();
179
180  // Otherwise, assign this the next available ID.
181  Entry.setValue(FilenamesByID.size());
182  FilenamesByID.push_back(&Entry);
183  return FilenamesByID.size()-1;
184}
185
186/// AddLineNote - Add a line note to the line table that indicates that there
187/// is a #line at the specified FID/Offset location which changes the presumed
188/// location to LineNo/FilenameID.
189void LineTableInfo::AddLineNote(int FID, unsigned Offset,
190                                unsigned LineNo, int FilenameID) {
191  std::vector<LineEntry> &Entries = LineEntries[FID];
192
193  assert((Entries.empty() || Entries.back().FileOffset < Offset) &&
194         "Adding line entries out of order!");
195
196  SrcMgr::CharacteristicKind Kind = SrcMgr::C_User;
197  unsigned IncludeOffset = 0;
198
199  if (!Entries.empty()) {
200    // If this is a '#line 4' after '#line 42 "foo.h"', make sure to remember
201    // that we are still in "foo.h".
202    if (FilenameID == -1)
203      FilenameID = Entries.back().FilenameID;
204
205    // If we are after a line marker that switched us to system header mode, or
206    // that set #include information, preserve it.
207    Kind = Entries.back().FileKind;
208    IncludeOffset = Entries.back().IncludeOffset;
209  }
210
211  Entries.push_back(LineEntry::get(Offset, LineNo, FilenameID, Kind,
212                                   IncludeOffset));
213}
214
215/// AddLineNote This is the same as the previous version of AddLineNote, but is
216/// used for GNU line markers.  If EntryExit is 0, then this doesn't change the
217/// presumed #include stack.  If it is 1, this is a file entry, if it is 2 then
218/// this is a file exit.  FileKind specifies whether this is a system header or
219/// extern C system header.
220void LineTableInfo::AddLineNote(int FID, unsigned Offset,
221                                unsigned LineNo, int FilenameID,
222                                unsigned EntryExit,
223                                SrcMgr::CharacteristicKind FileKind) {
224  assert(FilenameID != -1 && "Unspecified filename should use other accessor");
225
226  std::vector<LineEntry> &Entries = LineEntries[FID];
227
228  assert((Entries.empty() || Entries.back().FileOffset < Offset) &&
229         "Adding line entries out of order!");
230
231  unsigned IncludeOffset = 0;
232  if (EntryExit == 0) {  // No #include stack change.
233    IncludeOffset = Entries.empty() ? 0 : Entries.back().IncludeOffset;
234  } else if (EntryExit == 1) {
235    IncludeOffset = Offset-1;
236  } else if (EntryExit == 2) {
237    assert(!Entries.empty() && Entries.back().IncludeOffset &&
238       "PPDirectives should have caught case when popping empty include stack");
239
240    // Get the include loc of the last entries' include loc as our include loc.
241    IncludeOffset = 0;
242    if (const LineEntry *PrevEntry =
243          FindNearestLineEntry(FID, Entries.back().IncludeOffset))
244      IncludeOffset = PrevEntry->IncludeOffset;
245  }
246
247  Entries.push_back(LineEntry::get(Offset, LineNo, FilenameID, FileKind,
248                                   IncludeOffset));
249}
250
251
252/// FindNearestLineEntry - Find the line entry nearest to FID that is before
253/// it.  If there is no line entry before Offset in FID, return null.
254const LineEntry *LineTableInfo::FindNearestLineEntry(int FID,
255                                                     unsigned Offset) {
256  const std::vector<LineEntry> &Entries = LineEntries[FID];
257  assert(!Entries.empty() && "No #line entries for this FID after all!");
258
259  // It is very common for the query to be after the last #line, check this
260  // first.
261  if (Entries.back().FileOffset <= Offset)
262    return &Entries.back();
263
264  // Do a binary search to find the maximal element that is still before Offset.
265  std::vector<LineEntry>::const_iterator I =
266    std::upper_bound(Entries.begin(), Entries.end(), Offset);
267  if (I == Entries.begin()) return 0;
268  return &*--I;
269}
270
271/// \brief Add a new line entry that has already been encoded into
272/// the internal representation of the line table.
273void LineTableInfo::AddEntry(int FID,
274                             const std::vector<LineEntry> &Entries) {
275  LineEntries[FID] = Entries;
276}
277
278/// getLineTableFilenameID - Return the uniqued ID for the specified filename.
279///
280unsigned SourceManager::getLineTableFilenameID(StringRef Name) {
281  if (LineTable == 0)
282    LineTable = new LineTableInfo();
283  return LineTable->getLineTableFilenameID(Name);
284}
285
286
287/// AddLineNote - Add a line note to the line table for the FileID and offset
288/// specified by Loc.  If FilenameID is -1, it is considered to be
289/// unspecified.
290void SourceManager::AddLineNote(SourceLocation Loc, unsigned LineNo,
291                                int FilenameID) {
292  std::pair<FileID, unsigned> LocInfo = getDecomposedExpansionLoc(Loc);
293
294  bool Invalid = false;
295  const SLocEntry &Entry = getSLocEntry(LocInfo.first, &Invalid);
296  if (!Entry.isFile() || Invalid)
297    return;
298
299  const SrcMgr::FileInfo &FileInfo = Entry.getFile();
300
301  // Remember that this file has #line directives now if it doesn't already.
302  const_cast<SrcMgr::FileInfo&>(FileInfo).setHasLineDirectives();
303
304  if (LineTable == 0)
305    LineTable = new LineTableInfo();
306  LineTable->AddLineNote(LocInfo.first.ID, LocInfo.second, LineNo, FilenameID);
307}
308
309/// AddLineNote - Add a GNU line marker to the line table.
310void SourceManager::AddLineNote(SourceLocation Loc, unsigned LineNo,
311                                int FilenameID, bool IsFileEntry,
312                                bool IsFileExit, bool IsSystemHeader,
313                                bool IsExternCHeader) {
314  // If there is no filename and no flags, this is treated just like a #line,
315  // which does not change the flags of the previous line marker.
316  if (FilenameID == -1) {
317    assert(!IsFileEntry && !IsFileExit && !IsSystemHeader && !IsExternCHeader &&
318           "Can't set flags without setting the filename!");
319    return AddLineNote(Loc, LineNo, FilenameID);
320  }
321
322  std::pair<FileID, unsigned> LocInfo = getDecomposedExpansionLoc(Loc);
323
324  bool Invalid = false;
325  const SLocEntry &Entry = getSLocEntry(LocInfo.first, &Invalid);
326  if (!Entry.isFile() || Invalid)
327    return;
328
329  const SrcMgr::FileInfo &FileInfo = Entry.getFile();
330
331  // Remember that this file has #line directives now if it doesn't already.
332  const_cast<SrcMgr::FileInfo&>(FileInfo).setHasLineDirectives();
333
334  if (LineTable == 0)
335    LineTable = new LineTableInfo();
336
337  SrcMgr::CharacteristicKind FileKind;
338  if (IsExternCHeader)
339    FileKind = SrcMgr::C_ExternCSystem;
340  else if (IsSystemHeader)
341    FileKind = SrcMgr::C_System;
342  else
343    FileKind = SrcMgr::C_User;
344
345  unsigned EntryExit = 0;
346  if (IsFileEntry)
347    EntryExit = 1;
348  else if (IsFileExit)
349    EntryExit = 2;
350
351  LineTable->AddLineNote(LocInfo.first.ID, LocInfo.second, LineNo, FilenameID,
352                         EntryExit, FileKind);
353}
354
355LineTableInfo &SourceManager::getLineTable() {
356  if (LineTable == 0)
357    LineTable = new LineTableInfo();
358  return *LineTable;
359}
360
361//===----------------------------------------------------------------------===//
362// Private 'Create' methods.
363//===----------------------------------------------------------------------===//
364
365SourceManager::SourceManager(Diagnostic &Diag, FileManager &FileMgr)
366  : Diag(Diag), FileMgr(FileMgr), OverridenFilesKeepOriginalName(true),
367    ExternalSLocEntries(0), LineTable(0), NumLinearScans(0),
368    NumBinaryProbes(0), FakeBufferForRecovery(0) {
369  clearIDTables();
370  Diag.setSourceManager(this);
371}
372
373SourceManager::~SourceManager() {
374  delete LineTable;
375
376  // Delete FileEntry objects corresponding to content caches.  Since the actual
377  // content cache objects are bump pointer allocated, we just have to run the
378  // dtors, but we call the deallocate method for completeness.
379  for (unsigned i = 0, e = MemBufferInfos.size(); i != e; ++i) {
380    MemBufferInfos[i]->~ContentCache();
381    ContentCacheAlloc.Deallocate(MemBufferInfos[i]);
382  }
383  for (llvm::DenseMap<const FileEntry*, SrcMgr::ContentCache*>::iterator
384       I = FileInfos.begin(), E = FileInfos.end(); I != E; ++I) {
385    I->second->~ContentCache();
386    ContentCacheAlloc.Deallocate(I->second);
387  }
388
389  delete FakeBufferForRecovery;
390}
391
392void SourceManager::clearIDTables() {
393  MainFileID = FileID();
394  LocalSLocEntryTable.clear();
395  LoadedSLocEntryTable.clear();
396  SLocEntryLoaded.clear();
397  LastLineNoFileIDQuery = FileID();
398  LastLineNoContentCache = 0;
399  LastFileIDLookup = FileID();
400
401  if (LineTable)
402    LineTable->clear();
403
404  // Use up FileID #0 as an invalid instantiation.
405  NextLocalOffset = 0;
406  // The highest possible offset is 2^31-1, so CurrentLoadedOffset starts at
407  // 2^31.
408  CurrentLoadedOffset = 1U << 31U;
409  createInstantiationLoc(SourceLocation(),SourceLocation(),SourceLocation(), 1);
410}
411
412/// getOrCreateContentCache - Create or return a cached ContentCache for the
413/// specified file.
414const ContentCache *
415SourceManager::getOrCreateContentCache(const FileEntry *FileEnt) {
416  assert(FileEnt && "Didn't specify a file entry to use?");
417
418  // Do we already have information about this file?
419  ContentCache *&Entry = FileInfos[FileEnt];
420  if (Entry) return Entry;
421
422  // Nope, create a new Cache entry.  Make sure it is at least 8-byte aligned
423  // so that FileInfo can use the low 3 bits of the pointer for its own
424  // nefarious purposes.
425  unsigned EntryAlign = llvm::AlignOf<ContentCache>::Alignment;
426  EntryAlign = std::max(8U, EntryAlign);
427  Entry = ContentCacheAlloc.Allocate<ContentCache>(1, EntryAlign);
428
429  // If the file contents are overridden with contents from another file,
430  // pass that file to ContentCache.
431  llvm::DenseMap<const FileEntry *, const FileEntry *>::iterator
432      overI = OverriddenFiles.find(FileEnt);
433  if (overI == OverriddenFiles.end())
434    new (Entry) ContentCache(FileEnt);
435  else
436    new (Entry) ContentCache(OverridenFilesKeepOriginalName ? FileEnt
437                                                            : overI->second,
438                             overI->second);
439
440  return Entry;
441}
442
443
444/// createMemBufferContentCache - Create a new ContentCache for the specified
445///  memory buffer.  This does no caching.
446const ContentCache*
447SourceManager::createMemBufferContentCache(const MemoryBuffer *Buffer) {
448  // Add a new ContentCache to the MemBufferInfos list and return it.  Make sure
449  // it is at least 8-byte aligned so that FileInfo can use the low 3 bits of
450  // the pointer for its own nefarious purposes.
451  unsigned EntryAlign = llvm::AlignOf<ContentCache>::Alignment;
452  EntryAlign = std::max(8U, EntryAlign);
453  ContentCache *Entry = ContentCacheAlloc.Allocate<ContentCache>(1, EntryAlign);
454  new (Entry) ContentCache();
455  MemBufferInfos.push_back(Entry);
456  Entry->setBuffer(Buffer);
457  return Entry;
458}
459
460std::pair<int, unsigned>
461SourceManager::AllocateLoadedSLocEntries(unsigned NumSLocEntries,
462                                         unsigned TotalSize) {
463  assert(ExternalSLocEntries && "Don't have an external sloc source");
464  LoadedSLocEntryTable.resize(LoadedSLocEntryTable.size() + NumSLocEntries);
465  SLocEntryLoaded.resize(LoadedSLocEntryTable.size());
466  CurrentLoadedOffset -= TotalSize;
467  assert(CurrentLoadedOffset >= NextLocalOffset && "Out of source locations");
468  int ID = LoadedSLocEntryTable.size();
469  return std::make_pair(-ID - 1, CurrentLoadedOffset);
470}
471
472/// \brief As part of recovering from missing or changed content, produce a
473/// fake, non-empty buffer.
474const llvm::MemoryBuffer *SourceManager::getFakeBufferForRecovery() const {
475  if (!FakeBufferForRecovery)
476    FakeBufferForRecovery
477      = llvm::MemoryBuffer::getMemBuffer("<<<INVALID BUFFER>>");
478
479  return FakeBufferForRecovery;
480}
481
482//===----------------------------------------------------------------------===//
483// Methods to create new FileID's and instantiations.
484//===----------------------------------------------------------------------===//
485
486/// createFileID - Create a new FileID for the specified ContentCache and
487/// include position.  This works regardless of whether the ContentCache
488/// corresponds to a file or some other input source.
489FileID SourceManager::createFileID(const ContentCache *File,
490                                   SourceLocation IncludePos,
491                                   SrcMgr::CharacteristicKind FileCharacter,
492                                   int LoadedID, unsigned LoadedOffset) {
493  if (LoadedID < 0) {
494    assert(LoadedID != -1 && "Loading sentinel FileID");
495    unsigned Index = unsigned(-LoadedID) - 2;
496    assert(Index < LoadedSLocEntryTable.size() && "FileID out of range");
497    assert(!SLocEntryLoaded[Index] && "FileID already loaded");
498    LoadedSLocEntryTable[Index] = SLocEntry::get(LoadedOffset,
499        FileInfo::get(IncludePos, File, FileCharacter));
500    SLocEntryLoaded[Index] = true;
501    return FileID::get(LoadedID);
502  }
503  LocalSLocEntryTable.push_back(SLocEntry::get(NextLocalOffset,
504                                               FileInfo::get(IncludePos, File,
505                                                             FileCharacter)));
506  unsigned FileSize = File->getSize();
507  assert(NextLocalOffset + FileSize + 1 > NextLocalOffset &&
508         NextLocalOffset + FileSize + 1 <= CurrentLoadedOffset &&
509         "Ran out of source locations!");
510  // We do a +1 here because we want a SourceLocation that means "the end of the
511  // file", e.g. for the "no newline at the end of the file" diagnostic.
512  NextLocalOffset += FileSize + 1;
513
514  // Set LastFileIDLookup to the newly created file.  The next getFileID call is
515  // almost guaranteed to be from that file.
516  FileID FID = FileID::get(LocalSLocEntryTable.size()-1);
517  return LastFileIDLookup = FID;
518}
519
520SourceLocation
521SourceManager::createMacroArgInstantiationLoc(SourceLocation SpellingLoc,
522                                              SourceLocation ILoc,
523                                              unsigned TokLength) {
524  InstantiationInfo II =
525    InstantiationInfo::createForMacroArg(SpellingLoc, ILoc);
526  return createInstantiationLocImpl(II, TokLength);
527}
528
529SourceLocation SourceManager::createInstantiationLoc(SourceLocation SpellingLoc,
530                                                     SourceLocation ILocStart,
531                                                     SourceLocation ILocEnd,
532                                                     unsigned TokLength,
533                                                     int LoadedID,
534                                                     unsigned LoadedOffset) {
535  InstantiationInfo II =
536    InstantiationInfo::create(SpellingLoc, ILocStart, ILocEnd);
537  return createInstantiationLocImpl(II, TokLength, LoadedID, LoadedOffset);
538}
539
540SourceLocation
541SourceManager::createInstantiationLocImpl(const InstantiationInfo &II,
542                                          unsigned TokLength,
543                                          int LoadedID,
544                                          unsigned LoadedOffset) {
545  if (LoadedID < 0) {
546    assert(LoadedID != -1 && "Loading sentinel FileID");
547    unsigned Index = unsigned(-LoadedID) - 2;
548    assert(Index < LoadedSLocEntryTable.size() && "FileID out of range");
549    assert(!SLocEntryLoaded[Index] && "FileID already loaded");
550    LoadedSLocEntryTable[Index] = SLocEntry::get(LoadedOffset, II);
551    SLocEntryLoaded[Index] = true;
552    return SourceLocation::getMacroLoc(LoadedOffset);
553  }
554  LocalSLocEntryTable.push_back(SLocEntry::get(NextLocalOffset, II));
555  assert(NextLocalOffset + TokLength + 1 > NextLocalOffset &&
556         NextLocalOffset + TokLength + 1 <= CurrentLoadedOffset &&
557         "Ran out of source locations!");
558  // See createFileID for that +1.
559  NextLocalOffset += TokLength + 1;
560  return SourceLocation::getMacroLoc(NextLocalOffset - (TokLength + 1));
561}
562
563const llvm::MemoryBuffer *
564SourceManager::getMemoryBufferForFile(const FileEntry *File,
565                                      bool *Invalid) {
566  const SrcMgr::ContentCache *IR = getOrCreateContentCache(File);
567  assert(IR && "getOrCreateContentCache() cannot return NULL");
568  return IR->getBuffer(Diag, *this, SourceLocation(), Invalid);
569}
570
571void SourceManager::overrideFileContents(const FileEntry *SourceFile,
572                                         const llvm::MemoryBuffer *Buffer,
573                                         bool DoNotFree) {
574  const SrcMgr::ContentCache *IR = getOrCreateContentCache(SourceFile);
575  assert(IR && "getOrCreateContentCache() cannot return NULL");
576
577  const_cast<SrcMgr::ContentCache *>(IR)->replaceBuffer(Buffer, DoNotFree);
578}
579
580void SourceManager::overrideFileContents(const FileEntry *SourceFile,
581                                         const FileEntry *NewFile) {
582  assert(SourceFile->getSize() == NewFile->getSize() &&
583         "Different sizes, use the FileManager to create a virtual file with "
584         "the correct size");
585  assert(FileInfos.count(SourceFile) == 0 &&
586         "This function should be called at the initialization stage, before "
587         "any parsing occurs.");
588  OverriddenFiles[SourceFile] = NewFile;
589}
590
591StringRef SourceManager::getBufferData(FileID FID, bool *Invalid) const {
592  bool MyInvalid = false;
593  const SLocEntry &SLoc = getSLocEntry(FID, &MyInvalid);
594  if (!SLoc.isFile() || MyInvalid) {
595    if (Invalid)
596      *Invalid = true;
597    return "<<<<<INVALID SOURCE LOCATION>>>>>";
598  }
599
600  const llvm::MemoryBuffer *Buf
601    = SLoc.getFile().getContentCache()->getBuffer(Diag, *this, SourceLocation(),
602                                                  &MyInvalid);
603  if (Invalid)
604    *Invalid = MyInvalid;
605
606  if (MyInvalid)
607    return "<<<<<INVALID SOURCE LOCATION>>>>>";
608
609  return Buf->getBuffer();
610}
611
612//===----------------------------------------------------------------------===//
613// SourceLocation manipulation methods.
614//===----------------------------------------------------------------------===//
615
616/// \brief Return the FileID for a SourceLocation.
617///
618/// This is the cache-miss path of getFileID. Not as hot as that function, but
619/// still very important. It is responsible for finding the entry in the
620/// SLocEntry tables that contains the specified location.
621FileID SourceManager::getFileIDSlow(unsigned SLocOffset) const {
622  if (!SLocOffset)
623    return FileID::get(0);
624
625  // Now it is time to search for the correct file. See where the SLocOffset
626  // sits in the global view and consult local or loaded buffers for it.
627  if (SLocOffset < NextLocalOffset)
628    return getFileIDLocal(SLocOffset);
629  return getFileIDLoaded(SLocOffset);
630}
631
632/// \brief Return the FileID for a SourceLocation with a low offset.
633///
634/// This function knows that the SourceLocation is in a local buffer, not a
635/// loaded one.
636FileID SourceManager::getFileIDLocal(unsigned SLocOffset) const {
637  assert(SLocOffset < NextLocalOffset && "Bad function choice");
638
639  // After the first and second level caches, I see two common sorts of
640  // behavior: 1) a lot of searched FileID's are "near" the cached file location
641  // or are "near" the cached instantiation location.  2) others are just
642  // completely random and may be a very long way away.
643  //
644  // To handle this, we do a linear search for up to 8 steps to catch #1 quickly
645  // then we fall back to a less cache efficient, but more scalable, binary
646  // search to find the location.
647
648  // See if this is near the file point - worst case we start scanning from the
649  // most newly created FileID.
650  std::vector<SrcMgr::SLocEntry>::const_iterator I;
651
652  if (LastFileIDLookup.ID < 0 ||
653      LocalSLocEntryTable[LastFileIDLookup.ID].getOffset() < SLocOffset) {
654    // Neither loc prunes our search.
655    I = LocalSLocEntryTable.end();
656  } else {
657    // Perhaps it is near the file point.
658    I = LocalSLocEntryTable.begin()+LastFileIDLookup.ID;
659  }
660
661  // Find the FileID that contains this.  "I" is an iterator that points to a
662  // FileID whose offset is known to be larger than SLocOffset.
663  unsigned NumProbes = 0;
664  while (1) {
665    --I;
666    if (I->getOffset() <= SLocOffset) {
667      FileID Res = FileID::get(int(I - LocalSLocEntryTable.begin()));
668
669      // If this isn't an instantiation, remember it.  We have good locality
670      // across FileID lookups.
671      if (!I->isInstantiation())
672        LastFileIDLookup = Res;
673      NumLinearScans += NumProbes+1;
674      return Res;
675    }
676    if (++NumProbes == 8)
677      break;
678  }
679
680  // Convert "I" back into an index.  We know that it is an entry whose index is
681  // larger than the offset we are looking for.
682  unsigned GreaterIndex = I - LocalSLocEntryTable.begin();
683  // LessIndex - This is the lower bound of the range that we're searching.
684  // We know that the offset corresponding to the FileID is is less than
685  // SLocOffset.
686  unsigned LessIndex = 0;
687  NumProbes = 0;
688  while (1) {
689    bool Invalid = false;
690    unsigned MiddleIndex = (GreaterIndex-LessIndex)/2+LessIndex;
691    unsigned MidOffset = getLocalSLocEntry(MiddleIndex, &Invalid).getOffset();
692    if (Invalid)
693      return FileID::get(0);
694
695    ++NumProbes;
696
697    // If the offset of the midpoint is too large, chop the high side of the
698    // range to the midpoint.
699    if (MidOffset > SLocOffset) {
700      GreaterIndex = MiddleIndex;
701      continue;
702    }
703
704    // If the middle index contains the value, succeed and return.
705    // FIXME: This could be made faster by using a function that's aware of
706    // being in the local area.
707    if (isOffsetInFileID(FileID::get(MiddleIndex), SLocOffset)) {
708      FileID Res = FileID::get(MiddleIndex);
709
710      // If this isn't an instantiation, remember it.  We have good locality
711      // across FileID lookups.
712      if (!LocalSLocEntryTable[MiddleIndex].isInstantiation())
713        LastFileIDLookup = Res;
714      NumBinaryProbes += NumProbes;
715      return Res;
716    }
717
718    // Otherwise, move the low-side up to the middle index.
719    LessIndex = MiddleIndex;
720  }
721}
722
723/// \brief Return the FileID for a SourceLocation with a high offset.
724///
725/// This function knows that the SourceLocation is in a loaded buffer, not a
726/// local one.
727FileID SourceManager::getFileIDLoaded(unsigned SLocOffset) const {
728  assert(SLocOffset >= CurrentLoadedOffset && "Bad function choice");
729
730  // Essentially the same as the local case, but the loaded array is sorted
731  // in the other direction.
732
733  // First do a linear scan from the last lookup position, if possible.
734  unsigned I;
735  int LastID = LastFileIDLookup.ID;
736  if (LastID >= 0 || getLoadedSLocEntryByID(LastID).getOffset() < SLocOffset)
737    I = 0;
738  else
739    I = (-LastID - 2) + 1;
740
741  unsigned NumProbes;
742  for (NumProbes = 0; NumProbes < 8; ++NumProbes, ++I) {
743    // Make sure the entry is loaded!
744    const SrcMgr::SLocEntry &E = getLoadedSLocEntry(I);
745    if (E.getOffset() <= SLocOffset) {
746      FileID Res = FileID::get(-int(I) - 2);
747
748      if (!E.isInstantiation())
749        LastFileIDLookup = Res;
750      NumLinearScans += NumProbes + 1;
751      return Res;
752    }
753  }
754
755  // Linear scan failed. Do the binary search. Note the reverse sorting of the
756  // table: GreaterIndex is the one where the offset is greater, which is
757  // actually a lower index!
758  unsigned GreaterIndex = I;
759  unsigned LessIndex = LoadedSLocEntryTable.size();
760  NumProbes = 0;
761  while (1) {
762    ++NumProbes;
763    unsigned MiddleIndex = (LessIndex - GreaterIndex) / 2 + GreaterIndex;
764    const SrcMgr::SLocEntry &E = getLoadedSLocEntry(MiddleIndex);
765
766    ++NumProbes;
767
768    if (E.getOffset() > SLocOffset) {
769      GreaterIndex = MiddleIndex;
770      continue;
771    }
772
773    if (isOffsetInFileID(FileID::get(-int(MiddleIndex) - 2), SLocOffset)) {
774      FileID Res = FileID::get(-int(MiddleIndex) - 2);
775      if (!E.isInstantiation())
776        LastFileIDLookup = Res;
777      NumBinaryProbes += NumProbes;
778      return Res;
779    }
780
781    LessIndex = MiddleIndex;
782  }
783}
784
785SourceLocation SourceManager::
786getExpansionLocSlowCase(SourceLocation Loc) const {
787  do {
788    // Note: If Loc indicates an offset into a token that came from a macro
789    // expansion (e.g. the 5th character of the token) we do not want to add
790    // this offset when going to the instantiation location.  The expansion
791    // location is the macro invocation, which the offset has nothing to do
792    // with.  This is unlike when we get the spelling loc, because the offset
793    // directly correspond to the token whose spelling we're inspecting.
794    Loc = getSLocEntry(getFileID(Loc)).getInstantiation()
795                   .getInstantiationLocStart();
796  } while (!Loc.isFileID());
797
798  return Loc;
799}
800
801SourceLocation SourceManager::getSpellingLocSlowCase(SourceLocation Loc) const {
802  do {
803    std::pair<FileID, unsigned> LocInfo = getDecomposedLoc(Loc);
804    Loc = getSLocEntry(LocInfo.first).getInstantiation().getSpellingLoc();
805    Loc = Loc.getFileLocWithOffset(LocInfo.second);
806  } while (!Loc.isFileID());
807  return Loc;
808}
809
810
811std::pair<FileID, unsigned>
812SourceManager::getDecomposedExpansionLocSlowCase(
813                                             const SrcMgr::SLocEntry *E) const {
814  // If this is an instantiation record, walk through all the instantiation
815  // points.
816  FileID FID;
817  SourceLocation Loc;
818  unsigned Offset;
819  do {
820    Loc = E->getInstantiation().getInstantiationLocStart();
821
822    FID = getFileID(Loc);
823    E = &getSLocEntry(FID);
824    Offset = Loc.getOffset()-E->getOffset();
825  } while (!Loc.isFileID());
826
827  return std::make_pair(FID, Offset);
828}
829
830std::pair<FileID, unsigned>
831SourceManager::getDecomposedSpellingLocSlowCase(const SrcMgr::SLocEntry *E,
832                                                unsigned Offset) const {
833  // If this is an instantiation record, walk through all the instantiation
834  // points.
835  FileID FID;
836  SourceLocation Loc;
837  do {
838    Loc = E->getInstantiation().getSpellingLoc();
839
840    FID = getFileID(Loc);
841    E = &getSLocEntry(FID);
842    Offset += Loc.getOffset()-E->getOffset();
843  } while (!Loc.isFileID());
844
845  return std::make_pair(FID, Offset);
846}
847
848/// getImmediateSpellingLoc - Given a SourceLocation object, return the
849/// spelling location referenced by the ID.  This is the first level down
850/// towards the place where the characters that make up the lexed token can be
851/// found.  This should not generally be used by clients.
852SourceLocation SourceManager::getImmediateSpellingLoc(SourceLocation Loc) const{
853  if (Loc.isFileID()) return Loc;
854  std::pair<FileID, unsigned> LocInfo = getDecomposedLoc(Loc);
855  Loc = getSLocEntry(LocInfo.first).getInstantiation().getSpellingLoc();
856  return Loc.getFileLocWithOffset(LocInfo.second);
857}
858
859
860/// getImmediateExpansionRange - Loc is required to be an instantiation
861/// location.  Return the start/end of the instantiation information.
862std::pair<SourceLocation,SourceLocation>
863SourceManager::getImmediateExpansionRange(SourceLocation Loc) const {
864  assert(Loc.isMacroID() && "Not an instantiation loc!");
865  const InstantiationInfo &II = getSLocEntry(getFileID(Loc)).getInstantiation();
866  return II.getInstantiationLocRange();
867}
868
869/// getExpansionRange - Given a SourceLocation object, return the range of
870/// tokens covered by the expansion in the ultimate file.
871std::pair<SourceLocation,SourceLocation>
872SourceManager::getExpansionRange(SourceLocation Loc) const {
873  if (Loc.isFileID()) return std::make_pair(Loc, Loc);
874
875  std::pair<SourceLocation,SourceLocation> Res =
876    getImmediateExpansionRange(Loc);
877
878  // Fully resolve the start and end locations to their ultimate instantiation
879  // points.
880  while (!Res.first.isFileID())
881    Res.first = getImmediateExpansionRange(Res.first).first;
882  while (!Res.second.isFileID())
883    Res.second = getImmediateExpansionRange(Res.second).second;
884  return Res;
885}
886
887bool SourceManager::isMacroArgInstantiation(SourceLocation Loc) const {
888  if (!Loc.isMacroID()) return false;
889
890  FileID FID = getFileID(Loc);
891  const SrcMgr::SLocEntry *E = &getSLocEntry(FID);
892  const SrcMgr::InstantiationInfo &II = E->getInstantiation();
893  return II.isMacroArgInstantiation();
894}
895
896
897//===----------------------------------------------------------------------===//
898// Queries about the code at a SourceLocation.
899//===----------------------------------------------------------------------===//
900
901/// getCharacterData - Return a pointer to the start of the specified location
902/// in the appropriate MemoryBuffer.
903const char *SourceManager::getCharacterData(SourceLocation SL,
904                                            bool *Invalid) const {
905  // Note that this is a hot function in the getSpelling() path, which is
906  // heavily used by -E mode.
907  std::pair<FileID, unsigned> LocInfo = getDecomposedSpellingLoc(SL);
908
909  // Note that calling 'getBuffer()' may lazily page in a source file.
910  bool CharDataInvalid = false;
911  const SLocEntry &Entry = getSLocEntry(LocInfo.first, &CharDataInvalid);
912  if (CharDataInvalid || !Entry.isFile()) {
913    if (Invalid)
914      *Invalid = true;
915
916    return "<<<<INVALID BUFFER>>>>";
917  }
918  const llvm::MemoryBuffer *Buffer
919    = Entry.getFile().getContentCache()
920                  ->getBuffer(Diag, *this, SourceLocation(), &CharDataInvalid);
921  if (Invalid)
922    *Invalid = CharDataInvalid;
923  return Buffer->getBufferStart() + (CharDataInvalid? 0 : LocInfo.second);
924}
925
926
927/// getColumnNumber - Return the column # for the specified file position.
928/// this is significantly cheaper to compute than the line number.
929unsigned SourceManager::getColumnNumber(FileID FID, unsigned FilePos,
930                                        bool *Invalid) const {
931  bool MyInvalid = false;
932  const char *Buf = getBuffer(FID, &MyInvalid)->getBufferStart();
933  if (Invalid)
934    *Invalid = MyInvalid;
935
936  if (MyInvalid)
937    return 1;
938
939  unsigned LineStart = FilePos;
940  while (LineStart && Buf[LineStart-1] != '\n' && Buf[LineStart-1] != '\r')
941    --LineStart;
942  return FilePos-LineStart+1;
943}
944
945// isInvalid - Return the result of calling loc.isInvalid(), and
946// if Invalid is not null, set its value to same.
947static bool isInvalid(SourceLocation Loc, bool *Invalid) {
948  bool MyInvalid = Loc.isInvalid();
949  if (Invalid)
950    *Invalid = MyInvalid;
951  return MyInvalid;
952}
953
954unsigned SourceManager::getSpellingColumnNumber(SourceLocation Loc,
955                                                bool *Invalid) const {
956  if (isInvalid(Loc, Invalid)) return 0;
957  std::pair<FileID, unsigned> LocInfo = getDecomposedSpellingLoc(Loc);
958  return getColumnNumber(LocInfo.first, LocInfo.second, Invalid);
959}
960
961unsigned SourceManager::getExpansionColumnNumber(SourceLocation Loc,
962                                                 bool *Invalid) const {
963  if (isInvalid(Loc, Invalid)) return 0;
964  std::pair<FileID, unsigned> LocInfo = getDecomposedExpansionLoc(Loc);
965  return getColumnNumber(LocInfo.first, LocInfo.second, Invalid);
966}
967
968unsigned SourceManager::getPresumedColumnNumber(SourceLocation Loc,
969                                                bool *Invalid) const {
970  if (isInvalid(Loc, Invalid)) return 0;
971  return getPresumedLoc(Loc).getColumn();
972}
973
974static LLVM_ATTRIBUTE_NOINLINE void
975ComputeLineNumbers(Diagnostic &Diag, ContentCache *FI,
976                   llvm::BumpPtrAllocator &Alloc,
977                   const SourceManager &SM, bool &Invalid);
978static void ComputeLineNumbers(Diagnostic &Diag, ContentCache *FI,
979                               llvm::BumpPtrAllocator &Alloc,
980                               const SourceManager &SM, bool &Invalid) {
981  // Note that calling 'getBuffer()' may lazily page in the file.
982  const MemoryBuffer *Buffer = FI->getBuffer(Diag, SM, SourceLocation(),
983                                             &Invalid);
984  if (Invalid)
985    return;
986
987  // Find the file offsets of all of the *physical* source lines.  This does
988  // not look at trigraphs, escaped newlines, or anything else tricky.
989  SmallVector<unsigned, 256> LineOffsets;
990
991  // Line #1 starts at char 0.
992  LineOffsets.push_back(0);
993
994  const unsigned char *Buf = (const unsigned char *)Buffer->getBufferStart();
995  const unsigned char *End = (const unsigned char *)Buffer->getBufferEnd();
996  unsigned Offs = 0;
997  while (1) {
998    // Skip over the contents of the line.
999    // TODO: Vectorize this?  This is very performance sensitive for programs
1000    // with lots of diagnostics and in -E mode.
1001    const unsigned char *NextBuf = (const unsigned char *)Buf;
1002    while (*NextBuf != '\n' && *NextBuf != '\r' && *NextBuf != '\0')
1003      ++NextBuf;
1004    Offs += NextBuf-Buf;
1005    Buf = NextBuf;
1006
1007    if (Buf[0] == '\n' || Buf[0] == '\r') {
1008      // If this is \n\r or \r\n, skip both characters.
1009      if ((Buf[1] == '\n' || Buf[1] == '\r') && Buf[0] != Buf[1])
1010        ++Offs, ++Buf;
1011      ++Offs, ++Buf;
1012      LineOffsets.push_back(Offs);
1013    } else {
1014      // Otherwise, this is a null.  If end of file, exit.
1015      if (Buf == End) break;
1016      // Otherwise, skip the null.
1017      ++Offs, ++Buf;
1018    }
1019  }
1020
1021  // Copy the offsets into the FileInfo structure.
1022  FI->NumLines = LineOffsets.size();
1023  FI->SourceLineCache = Alloc.Allocate<unsigned>(LineOffsets.size());
1024  std::copy(LineOffsets.begin(), LineOffsets.end(), FI->SourceLineCache);
1025}
1026
1027/// getLineNumber - Given a SourceLocation, return the spelling line number
1028/// for the position indicated.  This requires building and caching a table of
1029/// line offsets for the MemoryBuffer, so this is not cheap: use only when
1030/// about to emit a diagnostic.
1031unsigned SourceManager::getLineNumber(FileID FID, unsigned FilePos,
1032                                      bool *Invalid) const {
1033  if (FID.isInvalid()) {
1034    if (Invalid)
1035      *Invalid = true;
1036    return 1;
1037  }
1038
1039  ContentCache *Content;
1040  if (LastLineNoFileIDQuery == FID)
1041    Content = LastLineNoContentCache;
1042  else {
1043    bool MyInvalid = false;
1044    const SLocEntry &Entry = getSLocEntry(FID, &MyInvalid);
1045    if (MyInvalid || !Entry.isFile()) {
1046      if (Invalid)
1047        *Invalid = true;
1048      return 1;
1049    }
1050
1051    Content = const_cast<ContentCache*>(Entry.getFile().getContentCache());
1052  }
1053
1054  // If this is the first use of line information for this buffer, compute the
1055  /// SourceLineCache for it on demand.
1056  if (Content->SourceLineCache == 0) {
1057    bool MyInvalid = false;
1058    ComputeLineNumbers(Diag, Content, ContentCacheAlloc, *this, MyInvalid);
1059    if (Invalid)
1060      *Invalid = MyInvalid;
1061    if (MyInvalid)
1062      return 1;
1063  } else if (Invalid)
1064    *Invalid = false;
1065
1066  // Okay, we know we have a line number table.  Do a binary search to find the
1067  // line number that this character position lands on.
1068  unsigned *SourceLineCache = Content->SourceLineCache;
1069  unsigned *SourceLineCacheStart = SourceLineCache;
1070  unsigned *SourceLineCacheEnd = SourceLineCache + Content->NumLines;
1071
1072  unsigned QueriedFilePos = FilePos+1;
1073
1074  // FIXME: I would like to be convinced that this code is worth being as
1075  // complicated as it is, binary search isn't that slow.
1076  //
1077  // If it is worth being optimized, then in my opinion it could be more
1078  // performant, simpler, and more obviously correct by just "galloping" outward
1079  // from the queried file position. In fact, this could be incorporated into a
1080  // generic algorithm such as lower_bound_with_hint.
1081  //
1082  // If someone gives me a test case where this matters, and I will do it! - DWD
1083
1084  // If the previous query was to the same file, we know both the file pos from
1085  // that query and the line number returned.  This allows us to narrow the
1086  // search space from the entire file to something near the match.
1087  if (LastLineNoFileIDQuery == FID) {
1088    if (QueriedFilePos >= LastLineNoFilePos) {
1089      // FIXME: Potential overflow?
1090      SourceLineCache = SourceLineCache+LastLineNoResult-1;
1091
1092      // The query is likely to be nearby the previous one.  Here we check to
1093      // see if it is within 5, 10 or 20 lines.  It can be far away in cases
1094      // where big comment blocks and vertical whitespace eat up lines but
1095      // contribute no tokens.
1096      if (SourceLineCache+5 < SourceLineCacheEnd) {
1097        if (SourceLineCache[5] > QueriedFilePos)
1098          SourceLineCacheEnd = SourceLineCache+5;
1099        else if (SourceLineCache+10 < SourceLineCacheEnd) {
1100          if (SourceLineCache[10] > QueriedFilePos)
1101            SourceLineCacheEnd = SourceLineCache+10;
1102          else if (SourceLineCache+20 < SourceLineCacheEnd) {
1103            if (SourceLineCache[20] > QueriedFilePos)
1104              SourceLineCacheEnd = SourceLineCache+20;
1105          }
1106        }
1107      }
1108    } else {
1109      if (LastLineNoResult < Content->NumLines)
1110        SourceLineCacheEnd = SourceLineCache+LastLineNoResult+1;
1111    }
1112  }
1113
1114  // If the spread is large, do a "radix" test as our initial guess, based on
1115  // the assumption that lines average to approximately the same length.
1116  // NOTE: This is currently disabled, as it does not appear to be profitable in
1117  // initial measurements.
1118  if (0 && SourceLineCacheEnd-SourceLineCache > 20) {
1119    unsigned FileLen = Content->SourceLineCache[Content->NumLines-1];
1120
1121    // Take a stab at guessing where it is.
1122    unsigned ApproxPos = Content->NumLines*QueriedFilePos / FileLen;
1123
1124    // Check for -10 and +10 lines.
1125    unsigned LowerBound = std::max(int(ApproxPos-10), 0);
1126    unsigned UpperBound = std::min(ApproxPos+10, FileLen);
1127
1128    // If the computed lower bound is less than the query location, move it in.
1129    if (SourceLineCache < SourceLineCacheStart+LowerBound &&
1130        SourceLineCacheStart[LowerBound] < QueriedFilePos)
1131      SourceLineCache = SourceLineCacheStart+LowerBound;
1132
1133    // If the computed upper bound is greater than the query location, move it.
1134    if (SourceLineCacheEnd > SourceLineCacheStart+UpperBound &&
1135        SourceLineCacheStart[UpperBound] >= QueriedFilePos)
1136      SourceLineCacheEnd = SourceLineCacheStart+UpperBound;
1137  }
1138
1139  unsigned *Pos
1140    = std::lower_bound(SourceLineCache, SourceLineCacheEnd, QueriedFilePos);
1141  unsigned LineNo = Pos-SourceLineCacheStart;
1142
1143  LastLineNoFileIDQuery = FID;
1144  LastLineNoContentCache = Content;
1145  LastLineNoFilePos = QueriedFilePos;
1146  LastLineNoResult = LineNo;
1147  return LineNo;
1148}
1149
1150unsigned SourceManager::getSpellingLineNumber(SourceLocation Loc,
1151                                              bool *Invalid) const {
1152  if (isInvalid(Loc, Invalid)) return 0;
1153  std::pair<FileID, unsigned> LocInfo = getDecomposedSpellingLoc(Loc);
1154  return getLineNumber(LocInfo.first, LocInfo.second);
1155}
1156unsigned SourceManager::getExpansionLineNumber(SourceLocation Loc,
1157                                               bool *Invalid) const {
1158  if (isInvalid(Loc, Invalid)) return 0;
1159  std::pair<FileID, unsigned> LocInfo = getDecomposedExpansionLoc(Loc);
1160  return getLineNumber(LocInfo.first, LocInfo.second);
1161}
1162unsigned SourceManager::getPresumedLineNumber(SourceLocation Loc,
1163                                              bool *Invalid) const {
1164  if (isInvalid(Loc, Invalid)) return 0;
1165  return getPresumedLoc(Loc).getLine();
1166}
1167
1168/// getFileCharacteristic - return the file characteristic of the specified
1169/// source location, indicating whether this is a normal file, a system
1170/// header, or an "implicit extern C" system header.
1171///
1172/// This state can be modified with flags on GNU linemarker directives like:
1173///   # 4 "foo.h" 3
1174/// which changes all source locations in the current file after that to be
1175/// considered to be from a system header.
1176SrcMgr::CharacteristicKind
1177SourceManager::getFileCharacteristic(SourceLocation Loc) const {
1178  assert(!Loc.isInvalid() && "Can't get file characteristic of invalid loc!");
1179  std::pair<FileID, unsigned> LocInfo = getDecomposedExpansionLoc(Loc);
1180  bool Invalid = false;
1181  const SLocEntry &SEntry = getSLocEntry(LocInfo.first, &Invalid);
1182  if (Invalid || !SEntry.isFile())
1183    return C_User;
1184
1185  const SrcMgr::FileInfo &FI = SEntry.getFile();
1186
1187  // If there are no #line directives in this file, just return the whole-file
1188  // state.
1189  if (!FI.hasLineDirectives())
1190    return FI.getFileCharacteristic();
1191
1192  assert(LineTable && "Can't have linetable entries without a LineTable!");
1193  // See if there is a #line directive before the location.
1194  const LineEntry *Entry =
1195    LineTable->FindNearestLineEntry(LocInfo.first.ID, LocInfo.second);
1196
1197  // If this is before the first line marker, use the file characteristic.
1198  if (!Entry)
1199    return FI.getFileCharacteristic();
1200
1201  return Entry->FileKind;
1202}
1203
1204/// Return the filename or buffer identifier of the buffer the location is in.
1205/// Note that this name does not respect #line directives.  Use getPresumedLoc
1206/// for normal clients.
1207const char *SourceManager::getBufferName(SourceLocation Loc,
1208                                         bool *Invalid) const {
1209  if (isInvalid(Loc, Invalid)) return "<invalid loc>";
1210
1211  return getBuffer(getFileID(Loc), Invalid)->getBufferIdentifier();
1212}
1213
1214
1215/// getPresumedLoc - This method returns the "presumed" location of a
1216/// SourceLocation specifies.  A "presumed location" can be modified by #line
1217/// or GNU line marker directives.  This provides a view on the data that a
1218/// user should see in diagnostics, for example.
1219///
1220/// Note that a presumed location is always given as the instantiation point
1221/// of an instantiation location, not at the spelling location.
1222PresumedLoc SourceManager::getPresumedLoc(SourceLocation Loc) const {
1223  if (Loc.isInvalid()) return PresumedLoc();
1224
1225  // Presumed locations are always for instantiation points.
1226  std::pair<FileID, unsigned> LocInfo = getDecomposedExpansionLoc(Loc);
1227
1228  bool Invalid = false;
1229  const SLocEntry &Entry = getSLocEntry(LocInfo.first, &Invalid);
1230  if (Invalid || !Entry.isFile())
1231    return PresumedLoc();
1232
1233  const SrcMgr::FileInfo &FI = Entry.getFile();
1234  const SrcMgr::ContentCache *C = FI.getContentCache();
1235
1236  // To get the source name, first consult the FileEntry (if one exists)
1237  // before the MemBuffer as this will avoid unnecessarily paging in the
1238  // MemBuffer.
1239  const char *Filename;
1240  if (C->OrigEntry)
1241    Filename = C->OrigEntry->getName();
1242  else
1243    Filename = C->getBuffer(Diag, *this)->getBufferIdentifier();
1244
1245  unsigned LineNo = getLineNumber(LocInfo.first, LocInfo.second, &Invalid);
1246  if (Invalid)
1247    return PresumedLoc();
1248  unsigned ColNo  = getColumnNumber(LocInfo.first, LocInfo.second, &Invalid);
1249  if (Invalid)
1250    return PresumedLoc();
1251
1252  SourceLocation IncludeLoc = FI.getIncludeLoc();
1253
1254  // If we have #line directives in this file, update and overwrite the physical
1255  // location info if appropriate.
1256  if (FI.hasLineDirectives()) {
1257    assert(LineTable && "Can't have linetable entries without a LineTable!");
1258    // See if there is a #line directive before this.  If so, get it.
1259    if (const LineEntry *Entry =
1260          LineTable->FindNearestLineEntry(LocInfo.first.ID, LocInfo.second)) {
1261      // If the LineEntry indicates a filename, use it.
1262      if (Entry->FilenameID != -1)
1263        Filename = LineTable->getFilename(Entry->FilenameID);
1264
1265      // Use the line number specified by the LineEntry.  This line number may
1266      // be multiple lines down from the line entry.  Add the difference in
1267      // physical line numbers from the query point and the line marker to the
1268      // total.
1269      unsigned MarkerLineNo = getLineNumber(LocInfo.first, Entry->FileOffset);
1270      LineNo = Entry->LineNo + (LineNo-MarkerLineNo-1);
1271
1272      // Note that column numbers are not molested by line markers.
1273
1274      // Handle virtual #include manipulation.
1275      if (Entry->IncludeOffset) {
1276        IncludeLoc = getLocForStartOfFile(LocInfo.first);
1277        IncludeLoc = IncludeLoc.getFileLocWithOffset(Entry->IncludeOffset);
1278      }
1279    }
1280  }
1281
1282  return PresumedLoc(Filename, LineNo, ColNo, IncludeLoc);
1283}
1284
1285//===----------------------------------------------------------------------===//
1286// Other miscellaneous methods.
1287//===----------------------------------------------------------------------===//
1288
1289/// \brief Retrieve the inode for the given file entry, if possible.
1290///
1291/// This routine involves a system call, and therefore should only be used
1292/// in non-performance-critical code.
1293static llvm::Optional<ino_t> getActualFileInode(const FileEntry *File) {
1294  if (!File)
1295    return llvm::Optional<ino_t>();
1296
1297  struct stat StatBuf;
1298  if (::stat(File->getName(), &StatBuf))
1299    return llvm::Optional<ino_t>();
1300
1301  return StatBuf.st_ino;
1302}
1303
1304/// \brief Get the source location for the given file:line:col triplet.
1305///
1306/// If the source file is included multiple times, the source location will
1307/// be based upon an arbitrary inclusion.
1308SourceLocation SourceManager::getLocation(const FileEntry *SourceFile,
1309                                          unsigned Line, unsigned Col) {
1310  assert(SourceFile && "Null source file!");
1311  assert(Line && Col && "Line and column should start from 1!");
1312
1313  // Find the first file ID that corresponds to the given file.
1314  FileID FirstFID;
1315
1316  // First, check the main file ID, since it is common to look for a
1317  // location in the main file.
1318  llvm::Optional<ino_t> SourceFileInode;
1319  llvm::Optional<StringRef> SourceFileName;
1320  if (!MainFileID.isInvalid()) {
1321    bool Invalid = false;
1322    const SLocEntry &MainSLoc = getSLocEntry(MainFileID, &Invalid);
1323    if (Invalid)
1324      return SourceLocation();
1325
1326    if (MainSLoc.isFile()) {
1327      const ContentCache *MainContentCache
1328        = MainSLoc.getFile().getContentCache();
1329      if (!MainContentCache) {
1330        // Can't do anything
1331      } else if (MainContentCache->OrigEntry == SourceFile) {
1332        FirstFID = MainFileID;
1333      } else {
1334        // Fall back: check whether we have the same base name and inode
1335        // as the main file.
1336        const FileEntry *MainFile = MainContentCache->OrigEntry;
1337        SourceFileName = llvm::sys::path::filename(SourceFile->getName());
1338        if (*SourceFileName == llvm::sys::path::filename(MainFile->getName())) {
1339          SourceFileInode = getActualFileInode(SourceFile);
1340          if (SourceFileInode) {
1341            if (llvm::Optional<ino_t> MainFileInode
1342                                               = getActualFileInode(MainFile)) {
1343              if (*SourceFileInode == *MainFileInode) {
1344                FirstFID = MainFileID;
1345                SourceFile = MainFile;
1346              }
1347            }
1348          }
1349        }
1350      }
1351    }
1352  }
1353
1354  if (FirstFID.isInvalid()) {
1355    // The location we're looking for isn't in the main file; look
1356    // through all of the local source locations.
1357    for (unsigned I = 0, N = local_sloc_entry_size(); I != N; ++I) {
1358      bool Invalid = false;
1359      const SLocEntry &SLoc = getLocalSLocEntry(I, &Invalid);
1360      if (Invalid)
1361        return SourceLocation();
1362
1363      if (SLoc.isFile() &&
1364          SLoc.getFile().getContentCache() &&
1365          SLoc.getFile().getContentCache()->OrigEntry == SourceFile) {
1366        FirstFID = FileID::get(I);
1367        break;
1368      }
1369    }
1370    // If that still didn't help, try the modules.
1371    if (FirstFID.isInvalid()) {
1372      for (unsigned I = 0, N = loaded_sloc_entry_size(); I != N; ++I) {
1373        const SLocEntry &SLoc = getLoadedSLocEntry(I);
1374        if (SLoc.isFile() &&
1375            SLoc.getFile().getContentCache() &&
1376            SLoc.getFile().getContentCache()->OrigEntry == SourceFile) {
1377          FirstFID = FileID::get(-int(I) - 2);
1378          break;
1379        }
1380      }
1381    }
1382  }
1383
1384  // If we haven't found what we want yet, try again, but this time stat()
1385  // each of the files in case the files have changed since we originally
1386  // parsed the file.
1387  if (FirstFID.isInvalid() &&
1388      (SourceFileName ||
1389       (SourceFileName = llvm::sys::path::filename(SourceFile->getName()))) &&
1390      (SourceFileInode ||
1391       (SourceFileInode = getActualFileInode(SourceFile)))) {
1392    bool Invalid = false;
1393    for (unsigned I = 0, N = local_sloc_entry_size(); I != N; ++I) {
1394      FileID IFileID;
1395      IFileID.ID = I;
1396      const SLocEntry &SLoc = getSLocEntry(IFileID, &Invalid);
1397      if (Invalid)
1398        return SourceLocation();
1399
1400      if (SLoc.isFile()) {
1401        const ContentCache *FileContentCache
1402          = SLoc.getFile().getContentCache();
1403      const FileEntry *Entry =FileContentCache? FileContentCache->OrigEntry : 0;
1404        if (Entry &&
1405            *SourceFileName == llvm::sys::path::filename(Entry->getName())) {
1406          if (llvm::Optional<ino_t> EntryInode = getActualFileInode(Entry)) {
1407            if (*SourceFileInode == *EntryInode) {
1408              FirstFID = FileID::get(I);
1409              SourceFile = Entry;
1410              break;
1411            }
1412          }
1413        }
1414      }
1415    }
1416  }
1417
1418  if (FirstFID.isInvalid())
1419    return SourceLocation();
1420
1421  if (Line == 1 && Col == 1)
1422    return getLocForStartOfFile(FirstFID);
1423
1424  ContentCache *Content
1425    = const_cast<ContentCache *>(getOrCreateContentCache(SourceFile));
1426  if (!Content)
1427    return SourceLocation();
1428
1429  // If this is the first use of line information for this buffer, compute the
1430  // SourceLineCache for it on demand.
1431  if (Content->SourceLineCache == 0) {
1432    bool MyInvalid = false;
1433    ComputeLineNumbers(Diag, Content, ContentCacheAlloc, *this, MyInvalid);
1434    if (MyInvalid)
1435      return SourceLocation();
1436  }
1437
1438  if (Line > Content->NumLines) {
1439    unsigned Size = Content->getBuffer(Diag, *this)->getBufferSize();
1440    if (Size > 0)
1441      --Size;
1442    return getLocForStartOfFile(FirstFID).getFileLocWithOffset(Size);
1443  }
1444
1445  unsigned FilePos = Content->SourceLineCache[Line - 1];
1446  const char *Buf = Content->getBuffer(Diag, *this)->getBufferStart() + FilePos;
1447  unsigned BufLength = Content->getBuffer(Diag, *this)->getBufferEnd() - Buf;
1448  unsigned i = 0;
1449
1450  // Check that the given column is valid.
1451  while (i < BufLength-1 && i < Col-1 && Buf[i] != '\n' && Buf[i] != '\r')
1452    ++i;
1453  if (i < Col-1)
1454    return getLocForStartOfFile(FirstFID).getFileLocWithOffset(FilePos + i);
1455
1456  return getLocForStartOfFile(FirstFID).getFileLocWithOffset(FilePos + Col - 1);
1457}
1458
1459/// Given a decomposed source location, move it up the include/instantiation
1460/// stack to the parent source location.  If this is possible, return the
1461/// decomposed version of the parent in Loc and return false.  If Loc is the
1462/// top-level entry, return true and don't modify it.
1463static bool MoveUpIncludeHierarchy(std::pair<FileID, unsigned> &Loc,
1464                                   const SourceManager &SM) {
1465  SourceLocation UpperLoc;
1466  const SrcMgr::SLocEntry &Entry = SM.getSLocEntry(Loc.first);
1467  if (Entry.isInstantiation())
1468    UpperLoc = Entry.getInstantiation().getInstantiationLocStart();
1469  else
1470    UpperLoc = Entry.getFile().getIncludeLoc();
1471
1472  if (UpperLoc.isInvalid())
1473    return true; // We reached the top.
1474
1475  Loc = SM.getDecomposedLoc(UpperLoc);
1476  return false;
1477}
1478
1479
1480/// \brief Determines the order of 2 source locations in the translation unit.
1481///
1482/// \returns true if LHS source location comes before RHS, false otherwise.
1483bool SourceManager::isBeforeInTranslationUnit(SourceLocation LHS,
1484                                              SourceLocation RHS) const {
1485  assert(LHS.isValid() && RHS.isValid() && "Passed invalid source location!");
1486  if (LHS == RHS)
1487    return false;
1488
1489  // If both locations are macro instantiations, the order of their offsets
1490  // reflect the order that the tokens, pointed to by these locations, were
1491  // instantiated (during parsing each token that is instantiated by a macro,
1492  // expands the SLocEntries).
1493
1494  std::pair<FileID, unsigned> LOffs = getDecomposedLoc(LHS);
1495  std::pair<FileID, unsigned> ROffs = getDecomposedLoc(RHS);
1496
1497  // If the source locations are in the same file, just compare offsets.
1498  if (LOffs.first == ROffs.first)
1499    return LOffs.second < ROffs.second;
1500
1501  // If we are comparing a source location with multiple locations in the same
1502  // file, we get a big win by caching the result.
1503  if (IsBeforeInTUCache.isCacheValid(LOffs.first, ROffs.first))
1504    return IsBeforeInTUCache.getCachedResult(LOffs.second, ROffs.second);
1505
1506  // Okay, we missed in the cache, start updating the cache for this query.
1507  IsBeforeInTUCache.setQueryFIDs(LOffs.first, ROffs.first);
1508
1509  // We need to find the common ancestor. The only way of doing this is to
1510  // build the complete include chain for one and then walking up the chain
1511  // of the other looking for a match.
1512  // We use a map from FileID to Offset to store the chain. Easier than writing
1513  // a custom set hash info that only depends on the first part of a pair.
1514  typedef llvm::DenseMap<FileID, unsigned> LocSet;
1515  LocSet LChain;
1516  do {
1517    LChain.insert(LOffs);
1518    // We catch the case where LOffs is in a file included by ROffs and
1519    // quit early. The other way round unfortunately remains suboptimal.
1520  } while (LOffs.first != ROffs.first && !MoveUpIncludeHierarchy(LOffs, *this));
1521  LocSet::iterator I;
1522  while((I = LChain.find(ROffs.first)) == LChain.end()) {
1523    if (MoveUpIncludeHierarchy(ROffs, *this))
1524      break; // Met at topmost file.
1525  }
1526  if (I != LChain.end())
1527    LOffs = *I;
1528
1529  // If we exited because we found a nearest common ancestor, compare the
1530  // locations within the common file and cache them.
1531  if (LOffs.first == ROffs.first) {
1532    IsBeforeInTUCache.setCommonLoc(LOffs.first, LOffs.second, ROffs.second);
1533    return IsBeforeInTUCache.getCachedResult(LOffs.second, ROffs.second);
1534  }
1535
1536  // This can happen if a location is in a built-ins buffer.
1537  // But see PR5662.
1538  // Clear the lookup cache, it depends on a common location.
1539  IsBeforeInTUCache.setQueryFIDs(FileID(), FileID());
1540  bool LIsBuiltins = strcmp("<built-in>",
1541                            getBuffer(LOffs.first)->getBufferIdentifier()) == 0;
1542  bool RIsBuiltins = strcmp("<built-in>",
1543                            getBuffer(ROffs.first)->getBufferIdentifier()) == 0;
1544  // built-in is before non-built-in
1545  if (LIsBuiltins != RIsBuiltins)
1546    return LIsBuiltins;
1547  assert(LIsBuiltins && RIsBuiltins &&
1548         "Non-built-in locations must be rooted in the main file");
1549  // Both are in built-in buffers, but from different files. We just claim that
1550  // lower IDs come first.
1551  return LOffs.first < ROffs.first;
1552}
1553
1554/// PrintStats - Print statistics to stderr.
1555///
1556void SourceManager::PrintStats() const {
1557  llvm::errs() << "\n*** Source Manager Stats:\n";
1558  llvm::errs() << FileInfos.size() << " files mapped, " << MemBufferInfos.size()
1559               << " mem buffers mapped.\n";
1560  llvm::errs() << LocalSLocEntryTable.size() << " local SLocEntry's allocated ("
1561               << LocalSLocEntryTable.capacity()*sizeof(SrcMgr::SLocEntry)
1562               << " bytes of capacity), "
1563               << NextLocalOffset << "B of Sloc address space used.\n";
1564  llvm::errs() << LoadedSLocEntryTable.size()
1565               << " loaded SLocEntries allocated, "
1566               << (1U << 31U) - CurrentLoadedOffset
1567               << "B of Sloc address space used.\n";
1568
1569  unsigned NumLineNumsComputed = 0;
1570  unsigned NumFileBytesMapped = 0;
1571  for (fileinfo_iterator I = fileinfo_begin(), E = fileinfo_end(); I != E; ++I){
1572    NumLineNumsComputed += I->second->SourceLineCache != 0;
1573    NumFileBytesMapped  += I->second->getSizeBytesMapped();
1574  }
1575
1576  llvm::errs() << NumFileBytesMapped << " bytes of files mapped, "
1577               << NumLineNumsComputed << " files with line #'s computed.\n";
1578  llvm::errs() << "FileID scans: " << NumLinearScans << " linear, "
1579               << NumBinaryProbes << " binary.\n";
1580}
1581
1582ExternalSLocEntrySource::~ExternalSLocEntrySource() { }
1583
1584/// Return the amount of memory used by memory buffers, breaking down
1585/// by heap-backed versus mmap'ed memory.
1586SourceManager::MemoryBufferSizes SourceManager::getMemoryBufferSizes() const {
1587  size_t malloc_bytes = 0;
1588  size_t mmap_bytes = 0;
1589
1590  for (unsigned i = 0, e = MemBufferInfos.size(); i != e; ++i)
1591    if (size_t sized_mapped = MemBufferInfos[i]->getSizeBytesMapped())
1592      switch (MemBufferInfos[i]->getMemoryBufferKind()) {
1593        case llvm::MemoryBuffer::MemoryBuffer_MMap:
1594          mmap_bytes += sized_mapped;
1595          break;
1596        case llvm::MemoryBuffer::MemoryBuffer_Malloc:
1597          malloc_bytes += sized_mapped;
1598          break;
1599      }
1600
1601  return MemoryBufferSizes(malloc_bytes, mmap_bytes);
1602}
1603
1604