xref: /llvm-project/clang/lib/Basic/SourceManager.cpp (revision 95d9c5e7789d0fe214849fdaac6f3079266592aa)
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/FileManager.h"
16 #include "llvm/Support/Compiler.h"
17 #include "llvm/Support/MemoryBuffer.h"
18 #include "llvm/System/Path.h"
19 #include "llvm/Bitcode/Serialize.h"
20 #include "llvm/Bitcode/Deserialize.h"
21 #include "llvm/Support/Streams.h"
22 #include <algorithm>
23 using namespace clang;
24 using namespace SrcMgr;
25 using llvm::MemoryBuffer;
26 
27 //===----------------------------------------------------------------------===//
28 // SourceManager Helper Classes
29 //===----------------------------------------------------------------------===//
30 
31 ContentCache::~ContentCache() {
32   delete Buffer;
33 }
34 
35 /// getSizeBytesMapped - Returns the number of bytes actually mapped for
36 ///  this ContentCache.  This can be 0 if the MemBuffer was not actually
37 ///  instantiated.
38 unsigned ContentCache::getSizeBytesMapped() const {
39   return Buffer ? Buffer->getBufferSize() : 0;
40 }
41 
42 /// getSize - Returns the size of the content encapsulated by this ContentCache.
43 ///  This can be the size of the source file or the size of an arbitrary
44 ///  scratch buffer.  If the ContentCache encapsulates a source file, that
45 ///  file is not lazily brought in from disk to satisfy this query.
46 unsigned ContentCache::getSize() const {
47   return Entry ? Entry->getSize() : Buffer->getBufferSize();
48 }
49 
50 const llvm::MemoryBuffer *ContentCache::getBuffer() const {
51   // Lazily create the Buffer for ContentCaches that wrap files.
52   if (!Buffer && Entry) {
53     // FIXME: Should we support a way to not have to do this check over
54     //   and over if we cannot open the file?
55     Buffer = MemoryBuffer::getFile(Entry->getName(), 0, Entry->getSize());
56   }
57   return Buffer;
58 }
59 
60 //===----------------------------------------------------------------------===//
61 // Line Table Implementation
62 //===----------------------------------------------------------------------===//
63 
64 namespace clang {
65 struct LineEntry {
66   /// FileOffset - The offset in this file that the line entry occurs at.
67   unsigned FileOffset;
68 
69   /// LineNo - The presumed line number of this line entry: #line 4.
70   unsigned LineNo;
71 
72   /// FilenameID - The ID of the filename identified by this line entry:
73   /// #line 4 "foo.c".  This is -1 if not specified.
74   int FilenameID;
75 
76   /// Flags - Set the 0 if no flags, 1 if a system header,
77   SrcMgr::CharacteristicKind FileKind;
78 
79   static LineEntry get(unsigned Offs, unsigned Line, int Filename,
80                        SrcMgr::CharacteristicKind FileKind) {
81     LineEntry E;
82     E.FileOffset = Offs;
83     E.LineNo = Line;
84     E.FilenameID = Filename;
85     E.FileKind = FileKind;
86     return E;
87   }
88 };
89 
90 inline bool operator<(const LineEntry &E, unsigned Offset) {
91   return E.FileOffset < Offset;
92 }
93 
94 inline bool operator<(unsigned Offset, const LineEntry &E) {
95   return Offset < E.FileOffset;
96 }
97 
98 /// LineTableInfo - This class is used to hold and unique data used to
99 /// represent #line information.
100 class LineTableInfo {
101   /// FilenameIDs - This map is used to assign unique IDs to filenames in
102   /// #line directives.  This allows us to unique the filenames that
103   /// frequently reoccur and reference them with indices.  FilenameIDs holds
104   /// the mapping from string -> ID, and FilenamesByID holds the mapping of ID
105   /// to string.
106   llvm::StringMap<unsigned, llvm::BumpPtrAllocator> FilenameIDs;
107   std::vector<llvm::StringMapEntry<unsigned>*> FilenamesByID;
108 
109   /// LineEntries - This is a map from FileIDs to a list of line entries (sorted
110   /// by the offset they occur in the file.
111   std::map<unsigned, std::vector<LineEntry> > LineEntries;
112 public:
113   LineTableInfo() {
114   }
115 
116   void clear() {
117     FilenameIDs.clear();
118     FilenamesByID.clear();
119   }
120 
121   ~LineTableInfo() {}
122 
123   unsigned getLineTableFilenameID(const char *Ptr, unsigned Len);
124   const char *getFilename(unsigned ID) const {
125     assert(ID < FilenamesByID.size() && "Invalid FilenameID");
126     return FilenamesByID[ID]->getKeyData();
127   }
128 
129   void AddLineNote(unsigned FID, unsigned Offset,
130                    unsigned LineNo, int FilenameID);
131   void AddLineNote(unsigned FID, unsigned Offset,
132                    unsigned LineNo, int FilenameID,
133                    unsigned EntryExit, SrcMgr::CharacteristicKind FileKind);
134 
135 
136   /// FindNearestLineEntry - Find the line entry nearest to FID that is before
137   /// it.  If there is no line entry before Offset in FID, return null.
138   const LineEntry *FindNearestLineEntry(unsigned FID, unsigned Offset);
139 };
140 } // namespace clang
141 
142 unsigned LineTableInfo::getLineTableFilenameID(const char *Ptr, unsigned Len) {
143   // Look up the filename in the string table, returning the pre-existing value
144   // if it exists.
145   llvm::StringMapEntry<unsigned> &Entry =
146     FilenameIDs.GetOrCreateValue(Ptr, Ptr+Len, ~0U);
147   if (Entry.getValue() != ~0U)
148     return Entry.getValue();
149 
150   // Otherwise, assign this the next available ID.
151   Entry.setValue(FilenamesByID.size());
152   FilenamesByID.push_back(&Entry);
153   return FilenamesByID.size()-1;
154 }
155 
156 /// AddLineNote - Add a line note to the line table that indicates that there
157 /// is a #line at the specified FID/Offset location which changes the presumed
158 /// location to LineNo/FilenameID.
159 void LineTableInfo::AddLineNote(unsigned FID, unsigned Offset,
160                                 unsigned LineNo, int FilenameID) {
161   std::vector<LineEntry> &Entries = LineEntries[FID];
162 
163   assert((Entries.empty() || Entries.back().FileOffset < Offset) &&
164          "Adding line entries out of order!");
165 
166   SrcMgr::CharacteristicKind Kind = SrcMgr::C_User;
167 
168   if (!Entries.empty()) {
169     // If this is a '#line 4' after '#line 42 "foo.h"', make sure to remember
170     // that we are still in "foo.h".
171     if (FilenameID == -1)
172       FilenameID = Entries.back().FilenameID;
173 
174     // If we are after a line marker that switched us to system header mode,
175     // preserve it.
176     Kind = Entries.back().FileKind;
177   }
178 
179   Entries.push_back(LineEntry::get(Offset, LineNo, FilenameID, Kind));
180 }
181 
182 /// AddLineNote This is the same as the previous version of AddLineNote, but is
183 /// used for GNU line markers.  If EntryExit is 0, then this doesn't change the
184 /// presumed #include stack.  If it is 1, this is a file entry, if it is 2 then
185 /// this is a file exit.  FileKind specifies whether this is a system header or
186 /// extern C system header.
187 void LineTableInfo::AddLineNote(unsigned FID, unsigned Offset,
188                                 unsigned LineNo, int FilenameID,
189                                 unsigned EntryExit,
190                                 SrcMgr::CharacteristicKind FileKind) {
191   assert(FilenameID != -1 && "Unspecified filename should use other accessor");
192 
193   std::vector<LineEntry> &Entries = LineEntries[FID];
194 
195   assert((Entries.empty() || Entries.back().FileOffset < Offset) &&
196          "Adding line entries out of order!");
197 
198 
199   // TODO: Handle EntryExit.
200 
201   Entries.push_back(LineEntry::get(Offset, LineNo, FilenameID, FileKind));
202 }
203 
204 
205 /// FindNearestLineEntry - Find the line entry nearest to FID that is before
206 /// it.  If there is no line entry before Offset in FID, return null.
207 const LineEntry *LineTableInfo::FindNearestLineEntry(unsigned FID,
208                                                      unsigned Offset) {
209   const std::vector<LineEntry> &Entries = LineEntries[FID];
210   assert(!Entries.empty() && "No #line entries for this FID after all!");
211 
212   // It is very common for the query to be after the last #line, check this
213   // first.
214   if (Entries.back().FileOffset <= Offset)
215     return &Entries.back();
216 
217   // Do a binary search to find the maximal element that is still before Offset.
218   std::vector<LineEntry>::const_iterator I =
219     std::upper_bound(Entries.begin(), Entries.end(), Offset);
220   if (I == Entries.begin()) return 0;
221   return &*--I;
222 }
223 
224 
225 /// getLineTableFilenameID - Return the uniqued ID for the specified filename.
226 ///
227 unsigned SourceManager::getLineTableFilenameID(const char *Ptr, unsigned Len) {
228   if (LineTable == 0)
229     LineTable = new LineTableInfo();
230   return LineTable->getLineTableFilenameID(Ptr, Len);
231 }
232 
233 
234 /// AddLineNote - Add a line note to the line table for the FileID and offset
235 /// specified by Loc.  If FilenameID is -1, it is considered to be
236 /// unspecified.
237 void SourceManager::AddLineNote(SourceLocation Loc, unsigned LineNo,
238                                 int FilenameID) {
239   std::pair<FileID, unsigned> LocInfo = getDecomposedInstantiationLoc(Loc);
240 
241   const SrcMgr::FileInfo &FileInfo = getSLocEntry(LocInfo.first).getFile();
242 
243   // Remember that this file has #line directives now if it doesn't already.
244   const_cast<SrcMgr::FileInfo&>(FileInfo).setHasLineDirectives();
245 
246   if (LineTable == 0)
247     LineTable = new LineTableInfo();
248   LineTable->AddLineNote(LocInfo.first.ID, LocInfo.second, LineNo, FilenameID);
249 }
250 
251 /// AddLineNote - Add a GNU line marker to the line table.
252 void SourceManager::AddLineNote(SourceLocation Loc, unsigned LineNo,
253                                 int FilenameID, bool IsFileEntry,
254                                 bool IsFileExit, bool IsSystemHeader,
255                                 bool IsExternCHeader) {
256   // If there is no filename and no flags, this is treated just like a #line,
257   // which does not change the flags of the previous line marker.
258   if (FilenameID == -1) {
259     assert(!IsFileEntry && !IsFileExit && !IsSystemHeader && !IsExternCHeader &&
260            "Can't set flags without setting the filename!");
261     return AddLineNote(Loc, LineNo, FilenameID);
262   }
263 
264   std::pair<FileID, unsigned> LocInfo = getDecomposedInstantiationLoc(Loc);
265   const SrcMgr::FileInfo &FileInfo = getSLocEntry(LocInfo.first).getFile();
266 
267   // Remember that this file has #line directives now if it doesn't already.
268   const_cast<SrcMgr::FileInfo&>(FileInfo).setHasLineDirectives();
269 
270   if (LineTable == 0)
271     LineTable = new LineTableInfo();
272 
273   SrcMgr::CharacteristicKind FileKind;
274   if (IsExternCHeader)
275     FileKind = SrcMgr::C_ExternCSystem;
276   else if (IsSystemHeader)
277     FileKind = SrcMgr::C_System;
278   else
279     FileKind = SrcMgr::C_User;
280 
281   unsigned EntryExit = 0;
282   if (IsFileEntry)
283     EntryExit = 1;
284   else if (IsFileExit)
285     EntryExit = 2;
286 
287   LineTable->AddLineNote(LocInfo.first.ID, LocInfo.second, LineNo, FilenameID,
288                          EntryExit, FileKind);
289 }
290 
291 
292 //===----------------------------------------------------------------------===//
293 // Private 'Create' methods.
294 //===----------------------------------------------------------------------===//
295 
296 SourceManager::~SourceManager() {
297   delete LineTable;
298 
299   // Delete FileEntry objects corresponding to content caches.  Since the actual
300   // content cache objects are bump pointer allocated, we just have to run the
301   // dtors, but we call the deallocate method for completeness.
302   for (unsigned i = 0, e = MemBufferInfos.size(); i != e; ++i) {
303     MemBufferInfos[i]->~ContentCache();
304     ContentCacheAlloc.Deallocate(MemBufferInfos[i]);
305   }
306   for (llvm::DenseMap<const FileEntry*, SrcMgr::ContentCache*>::iterator
307        I = FileInfos.begin(), E = FileInfos.end(); I != E; ++I) {
308     I->second->~ContentCache();
309     ContentCacheAlloc.Deallocate(I->second);
310   }
311 }
312 
313 void SourceManager::clearIDTables() {
314   MainFileID = FileID();
315   SLocEntryTable.clear();
316   LastLineNoFileIDQuery = FileID();
317   LastLineNoContentCache = 0;
318   LastFileIDLookup = FileID();
319 
320   if (LineTable)
321     LineTable->clear();
322 
323   // Use up FileID #0 as an invalid instantiation.
324   NextOffset = 0;
325   createInstantiationLoc(SourceLocation(), SourceLocation(), 1);
326 }
327 
328 /// getOrCreateContentCache - Create or return a cached ContentCache for the
329 /// specified file.
330 const ContentCache *
331 SourceManager::getOrCreateContentCache(const FileEntry *FileEnt) {
332   assert(FileEnt && "Didn't specify a file entry to use?");
333 
334   // Do we already have information about this file?
335   ContentCache *&Entry = FileInfos[FileEnt];
336   if (Entry) return Entry;
337 
338   // Nope, create a new Cache entry.  Make sure it is at least 8-byte aligned
339   // so that FileInfo can use the low 3 bits of the pointer for its own
340   // nefarious purposes.
341   unsigned EntryAlign = llvm::AlignOf<ContentCache>::Alignment;
342   EntryAlign = std::max(8U, EntryAlign);
343   Entry = ContentCacheAlloc.Allocate<ContentCache>(1, EntryAlign);
344   new (Entry) ContentCache(FileEnt);
345   return Entry;
346 }
347 
348 
349 /// createMemBufferContentCache - Create a new ContentCache for the specified
350 ///  memory buffer.  This does no caching.
351 const ContentCache*
352 SourceManager::createMemBufferContentCache(const MemoryBuffer *Buffer) {
353   // Add a new ContentCache to the MemBufferInfos list and return it.  Make sure
354   // it is at least 8-byte aligned so that FileInfo can use the low 3 bits of
355   // the pointer for its own nefarious purposes.
356   unsigned EntryAlign = llvm::AlignOf<ContentCache>::Alignment;
357   EntryAlign = std::max(8U, EntryAlign);
358   ContentCache *Entry = ContentCacheAlloc.Allocate<ContentCache>(1, EntryAlign);
359   new (Entry) ContentCache();
360   MemBufferInfos.push_back(Entry);
361   Entry->setBuffer(Buffer);
362   return Entry;
363 }
364 
365 //===----------------------------------------------------------------------===//
366 // Methods to create new FileID's and instantiations.
367 //===----------------------------------------------------------------------===//
368 
369 /// createFileID - Create a new fileID for the specified ContentCache and
370 /// include position.  This works regardless of whether the ContentCache
371 /// corresponds to a file or some other input source.
372 FileID SourceManager::createFileID(const ContentCache *File,
373                                    SourceLocation IncludePos,
374                                    SrcMgr::CharacteristicKind FileCharacter) {
375   SLocEntryTable.push_back(SLocEntry::get(NextOffset,
376                                           FileInfo::get(IncludePos, File,
377                                                         FileCharacter)));
378   unsigned FileSize = File->getSize();
379   assert(NextOffset+FileSize+1 > NextOffset && "Ran out of source locations!");
380   NextOffset += FileSize+1;
381 
382   // Set LastFileIDLookup to the newly created file.  The next getFileID call is
383   // almost guaranteed to be from that file.
384   return LastFileIDLookup = FileID::get(SLocEntryTable.size()-1);
385 }
386 
387 /// createInstantiationLoc - Return a new SourceLocation that encodes the fact
388 /// that a token from SpellingLoc should actually be referenced from
389 /// InstantiationLoc.
390 SourceLocation SourceManager::createInstantiationLoc(SourceLocation SpellingLoc,
391                                                      SourceLocation InstantLoc,
392                                                      unsigned TokLength) {
393   SLocEntryTable.push_back(SLocEntry::get(NextOffset,
394                                           InstantiationInfo::get(InstantLoc,
395                                                                  SpellingLoc)));
396   assert(NextOffset+TokLength+1 > NextOffset && "Ran out of source locations!");
397   NextOffset += TokLength+1;
398   return SourceLocation::getMacroLoc(NextOffset-(TokLength+1));
399 }
400 
401 /// getBufferData - Return a pointer to the start and end of the source buffer
402 /// data for the specified FileID.
403 std::pair<const char*, const char*>
404 SourceManager::getBufferData(FileID FID) const {
405   const llvm::MemoryBuffer *Buf = getBuffer(FID);
406   return std::make_pair(Buf->getBufferStart(), Buf->getBufferEnd());
407 }
408 
409 
410 //===----------------------------------------------------------------------===//
411 // SourceLocation manipulation methods.
412 //===----------------------------------------------------------------------===//
413 
414 /// getFileIDSlow - Return the FileID for a SourceLocation.  This is a very hot
415 /// method that is used for all SourceManager queries that start with a
416 /// SourceLocation object.  It is responsible for finding the entry in
417 /// SLocEntryTable which contains the specified location.
418 ///
419 FileID SourceManager::getFileIDSlow(unsigned SLocOffset) const {
420   assert(SLocOffset && "Invalid FileID");
421 
422   // After the first and second level caches, I see two common sorts of
423   // behavior: 1) a lot of searched FileID's are "near" the cached file location
424   // or are "near" the cached instantiation location.  2) others are just
425   // completely random and may be a very long way away.
426   //
427   // To handle this, we do a linear search for up to 8 steps to catch #1 quickly
428   // then we fall back to a less cache efficient, but more scalable, binary
429   // search to find the location.
430 
431   // See if this is near the file point - worst case we start scanning from the
432   // most newly created FileID.
433   std::vector<SrcMgr::SLocEntry>::const_iterator I;
434 
435   if (SLocEntryTable[LastFileIDLookup.ID].getOffset() < SLocOffset) {
436     // Neither loc prunes our search.
437     I = SLocEntryTable.end();
438   } else {
439     // Perhaps it is near the file point.
440     I = SLocEntryTable.begin()+LastFileIDLookup.ID;
441   }
442 
443   // Find the FileID that contains this.  "I" is an iterator that points to a
444   // FileID whose offset is known to be larger than SLocOffset.
445   unsigned NumProbes = 0;
446   while (1) {
447     --I;
448     if (I->getOffset() <= SLocOffset) {
449 #if 0
450       printf("lin %d -> %d [%s] %d %d\n", SLocOffset,
451              I-SLocEntryTable.begin(),
452              I->isInstantiation() ? "inst" : "file",
453              LastFileIDLookup.ID,  int(SLocEntryTable.end()-I));
454 #endif
455       FileID Res = FileID::get(I-SLocEntryTable.begin());
456 
457       // If this isn't an instantiation, remember it.  We have good locality
458       // across FileID lookups.
459       if (!I->isInstantiation())
460         LastFileIDLookup = Res;
461       NumLinearScans += NumProbes+1;
462       return Res;
463     }
464     if (++NumProbes == 8)
465       break;
466   }
467 
468   // Convert "I" back into an index.  We know that it is an entry whose index is
469   // larger than the offset we are looking for.
470   unsigned GreaterIndex = I-SLocEntryTable.begin();
471   // LessIndex - This is the lower bound of the range that we're searching.
472   // We know that the offset corresponding to the FileID is is less than
473   // SLocOffset.
474   unsigned LessIndex = 0;
475   NumProbes = 0;
476   while (1) {
477     unsigned MiddleIndex = (GreaterIndex-LessIndex)/2+LessIndex;
478     unsigned MidOffset = SLocEntryTable[MiddleIndex].getOffset();
479 
480     ++NumProbes;
481 
482     // If the offset of the midpoint is too large, chop the high side of the
483     // range to the midpoint.
484     if (MidOffset > SLocOffset) {
485       GreaterIndex = MiddleIndex;
486       continue;
487     }
488 
489     // If the middle index contains the value, succeed and return.
490     if (isOffsetInFileID(FileID::get(MiddleIndex), SLocOffset)) {
491 #if 0
492       printf("bin %d -> %d [%s] %d %d\n", SLocOffset,
493              I-SLocEntryTable.begin(),
494              I->isInstantiation() ? "inst" : "file",
495              LastFileIDLookup.ID, int(SLocEntryTable.end()-I));
496 #endif
497       FileID Res = FileID::get(MiddleIndex);
498 
499       // If this isn't an instantiation, remember it.  We have good locality
500       // across FileID lookups.
501       if (!I->isInstantiation())
502         LastFileIDLookup = Res;
503       NumBinaryProbes += NumProbes;
504       return Res;
505     }
506 
507     // Otherwise, move the low-side up to the middle index.
508     LessIndex = MiddleIndex;
509   }
510 }
511 
512 SourceLocation SourceManager::
513 getInstantiationLocSlowCase(SourceLocation Loc) const {
514   do {
515     std::pair<FileID, unsigned> LocInfo = getDecomposedLoc(Loc);
516     Loc =getSLocEntry(LocInfo.first).getInstantiation().getInstantiationLoc();
517     Loc = Loc.getFileLocWithOffset(LocInfo.second);
518   } while (!Loc.isFileID());
519 
520   return Loc;
521 }
522 
523 SourceLocation SourceManager::getSpellingLocSlowCase(SourceLocation Loc) const {
524   do {
525     std::pair<FileID, unsigned> LocInfo = getDecomposedLoc(Loc);
526     Loc = getSLocEntry(LocInfo.first).getInstantiation().getSpellingLoc();
527     Loc = Loc.getFileLocWithOffset(LocInfo.second);
528   } while (!Loc.isFileID());
529   return Loc;
530 }
531 
532 
533 std::pair<FileID, unsigned>
534 SourceManager::getDecomposedInstantiationLocSlowCase(const SrcMgr::SLocEntry *E,
535                                                      unsigned Offset) const {
536   // If this is an instantiation record, walk through all the instantiation
537   // points.
538   FileID FID;
539   SourceLocation Loc;
540   do {
541     Loc = E->getInstantiation().getInstantiationLoc();
542 
543     FID = getFileID(Loc);
544     E = &getSLocEntry(FID);
545     Offset += Loc.getOffset()-E->getOffset();
546   } while (!Loc.isFileID());
547 
548   return std::make_pair(FID, Offset);
549 }
550 
551 std::pair<FileID, unsigned>
552 SourceManager::getDecomposedSpellingLocSlowCase(const SrcMgr::SLocEntry *E,
553                                                 unsigned Offset) const {
554   // If this is an instantiation record, walk through all the instantiation
555   // points.
556   FileID FID;
557   SourceLocation Loc;
558   do {
559     Loc = E->getInstantiation().getSpellingLoc();
560 
561     FID = getFileID(Loc);
562     E = &getSLocEntry(FID);
563     Offset += Loc.getOffset()-E->getOffset();
564   } while (!Loc.isFileID());
565 
566   return std::make_pair(FID, Offset);
567 }
568 
569 
570 //===----------------------------------------------------------------------===//
571 // Queries about the code at a SourceLocation.
572 //===----------------------------------------------------------------------===//
573 
574 /// getCharacterData - Return a pointer to the start of the specified location
575 /// in the appropriate MemoryBuffer.
576 const char *SourceManager::getCharacterData(SourceLocation SL) const {
577   // Note that this is a hot function in the getSpelling() path, which is
578   // heavily used by -E mode.
579   std::pair<FileID, unsigned> LocInfo = getDecomposedSpellingLoc(SL);
580 
581   // Note that calling 'getBuffer()' may lazily page in a source file.
582   return getSLocEntry(LocInfo.first).getFile().getContentCache()
583               ->getBuffer()->getBufferStart() + LocInfo.second;
584 }
585 
586 
587 /// getColumnNumber - Return the column # for the specified file position.
588 /// this is significantly cheaper to compute than the line number.
589 unsigned SourceManager::getColumnNumber(FileID FID, unsigned FilePos) const {
590   const char *Buf = getBuffer(FID)->getBufferStart();
591 
592   unsigned LineStart = FilePos;
593   while (LineStart && Buf[LineStart-1] != '\n' && Buf[LineStart-1] != '\r')
594     --LineStart;
595   return FilePos-LineStart+1;
596 }
597 
598 unsigned SourceManager::getSpellingColumnNumber(SourceLocation Loc) const {
599   if (Loc.isInvalid()) return 0;
600   std::pair<FileID, unsigned> LocInfo = getDecomposedSpellingLoc(Loc);
601   return getColumnNumber(LocInfo.first, LocInfo.second);
602 }
603 
604 unsigned SourceManager::getInstantiationColumnNumber(SourceLocation Loc) const {
605   if (Loc.isInvalid()) return 0;
606   std::pair<FileID, unsigned> LocInfo = getDecomposedInstantiationLoc(Loc);
607   return getColumnNumber(LocInfo.first, LocInfo.second);
608 }
609 
610 
611 
612 static void ComputeLineNumbers(ContentCache* FI,
613                                llvm::BumpPtrAllocator &Alloc) DISABLE_INLINE;
614 static void ComputeLineNumbers(ContentCache* FI, llvm::BumpPtrAllocator &Alloc){
615   // Note that calling 'getBuffer()' may lazily page in the file.
616   const MemoryBuffer *Buffer = FI->getBuffer();
617 
618   // Find the file offsets of all of the *physical* source lines.  This does
619   // not look at trigraphs, escaped newlines, or anything else tricky.
620   std::vector<unsigned> LineOffsets;
621 
622   // Line #1 starts at char 0.
623   LineOffsets.push_back(0);
624 
625   const unsigned char *Buf = (const unsigned char *)Buffer->getBufferStart();
626   const unsigned char *End = (const unsigned char *)Buffer->getBufferEnd();
627   unsigned Offs = 0;
628   while (1) {
629     // Skip over the contents of the line.
630     // TODO: Vectorize this?  This is very performance sensitive for programs
631     // with lots of diagnostics and in -E mode.
632     const unsigned char *NextBuf = (const unsigned char *)Buf;
633     while (*NextBuf != '\n' && *NextBuf != '\r' && *NextBuf != '\0')
634       ++NextBuf;
635     Offs += NextBuf-Buf;
636     Buf = NextBuf;
637 
638     if (Buf[0] == '\n' || Buf[0] == '\r') {
639       // If this is \n\r or \r\n, skip both characters.
640       if ((Buf[1] == '\n' || Buf[1] == '\r') && Buf[0] != Buf[1])
641         ++Offs, ++Buf;
642       ++Offs, ++Buf;
643       LineOffsets.push_back(Offs);
644     } else {
645       // Otherwise, this is a null.  If end of file, exit.
646       if (Buf == End) break;
647       // Otherwise, skip the null.
648       ++Offs, ++Buf;
649     }
650   }
651 
652   // Copy the offsets into the FileInfo structure.
653   FI->NumLines = LineOffsets.size();
654   FI->SourceLineCache = Alloc.Allocate<unsigned>(LineOffsets.size());
655   std::copy(LineOffsets.begin(), LineOffsets.end(), FI->SourceLineCache);
656 }
657 
658 /// getLineNumber - Given a SourceLocation, return the spelling line number
659 /// for the position indicated.  This requires building and caching a table of
660 /// line offsets for the MemoryBuffer, so this is not cheap: use only when
661 /// about to emit a diagnostic.
662 unsigned SourceManager::getLineNumber(FileID FID, unsigned FilePos) const {
663   ContentCache *Content;
664   if (LastLineNoFileIDQuery == FID)
665     Content = LastLineNoContentCache;
666   else
667     Content = const_cast<ContentCache*>(getSLocEntry(FID)
668                                         .getFile().getContentCache());
669 
670   // If this is the first use of line information for this buffer, compute the
671   /// SourceLineCache for it on demand.
672   if (Content->SourceLineCache == 0)
673     ComputeLineNumbers(Content, ContentCacheAlloc);
674 
675   // Okay, we know we have a line number table.  Do a binary search to find the
676   // line number that this character position lands on.
677   unsigned *SourceLineCache = Content->SourceLineCache;
678   unsigned *SourceLineCacheStart = SourceLineCache;
679   unsigned *SourceLineCacheEnd = SourceLineCache + Content->NumLines;
680 
681   unsigned QueriedFilePos = FilePos+1;
682 
683   // If the previous query was to the same file, we know both the file pos from
684   // that query and the line number returned.  This allows us to narrow the
685   // search space from the entire file to something near the match.
686   if (LastLineNoFileIDQuery == FID) {
687     if (QueriedFilePos >= LastLineNoFilePos) {
688       SourceLineCache = SourceLineCache+LastLineNoResult-1;
689 
690       // The query is likely to be nearby the previous one.  Here we check to
691       // see if it is within 5, 10 or 20 lines.  It can be far away in cases
692       // where big comment blocks and vertical whitespace eat up lines but
693       // contribute no tokens.
694       if (SourceLineCache+5 < SourceLineCacheEnd) {
695         if (SourceLineCache[5] > QueriedFilePos)
696           SourceLineCacheEnd = SourceLineCache+5;
697         else if (SourceLineCache+10 < SourceLineCacheEnd) {
698           if (SourceLineCache[10] > QueriedFilePos)
699             SourceLineCacheEnd = SourceLineCache+10;
700           else if (SourceLineCache+20 < SourceLineCacheEnd) {
701             if (SourceLineCache[20] > QueriedFilePos)
702               SourceLineCacheEnd = SourceLineCache+20;
703           }
704         }
705       }
706     } else {
707       SourceLineCacheEnd = SourceLineCache+LastLineNoResult+1;
708     }
709   }
710 
711   // If the spread is large, do a "radix" test as our initial guess, based on
712   // the assumption that lines average to approximately the same length.
713   // NOTE: This is currently disabled, as it does not appear to be profitable in
714   // initial measurements.
715   if (0 && SourceLineCacheEnd-SourceLineCache > 20) {
716     unsigned FileLen = Content->SourceLineCache[Content->NumLines-1];
717 
718     // Take a stab at guessing where it is.
719     unsigned ApproxPos = Content->NumLines*QueriedFilePos / FileLen;
720 
721     // Check for -10 and +10 lines.
722     unsigned LowerBound = std::max(int(ApproxPos-10), 0);
723     unsigned UpperBound = std::min(ApproxPos+10, FileLen);
724 
725     // If the computed lower bound is less than the query location, move it in.
726     if (SourceLineCache < SourceLineCacheStart+LowerBound &&
727         SourceLineCacheStart[LowerBound] < QueriedFilePos)
728       SourceLineCache = SourceLineCacheStart+LowerBound;
729 
730     // If the computed upper bound is greater than the query location, move it.
731     if (SourceLineCacheEnd > SourceLineCacheStart+UpperBound &&
732         SourceLineCacheStart[UpperBound] >= QueriedFilePos)
733       SourceLineCacheEnd = SourceLineCacheStart+UpperBound;
734   }
735 
736   unsigned *Pos
737     = std::lower_bound(SourceLineCache, SourceLineCacheEnd, QueriedFilePos);
738   unsigned LineNo = Pos-SourceLineCacheStart;
739 
740   LastLineNoFileIDQuery = FID;
741   LastLineNoContentCache = Content;
742   LastLineNoFilePos = QueriedFilePos;
743   LastLineNoResult = LineNo;
744   return LineNo;
745 }
746 
747 unsigned SourceManager::getInstantiationLineNumber(SourceLocation Loc) const {
748   if (Loc.isInvalid()) return 0;
749   std::pair<FileID, unsigned> LocInfo = getDecomposedInstantiationLoc(Loc);
750   return getLineNumber(LocInfo.first, LocInfo.second);
751 }
752 unsigned SourceManager::getSpellingLineNumber(SourceLocation Loc) const {
753   if (Loc.isInvalid()) return 0;
754   std::pair<FileID, unsigned> LocInfo = getDecomposedSpellingLoc(Loc);
755   return getLineNumber(LocInfo.first, LocInfo.second);
756 }
757 
758 /// getFileCharacteristic - return the file characteristic of the specified
759 /// source location, indicating whether this is a normal file, a system
760 /// header, or an "implicit extern C" system header.
761 ///
762 /// This state can be modified with flags on GNU linemarker directives like:
763 ///   # 4 "foo.h" 3
764 /// which changes all source locations in the current file after that to be
765 /// considered to be from a system header.
766 SrcMgr::CharacteristicKind
767 SourceManager::getFileCharacteristic(SourceLocation Loc) const {
768   assert(!Loc.isInvalid() && "Can't get file characteristic of invalid loc!");
769   std::pair<FileID, unsigned> LocInfo = getDecomposedInstantiationLoc(Loc);
770   const SrcMgr::FileInfo &FI = getSLocEntry(LocInfo.first).getFile();
771 
772   // If there are no #line directives in this file, just return the whole-file
773   // state.
774   if (!FI.hasLineDirectives())
775     return FI.getFileCharacteristic();
776 
777   assert(LineTable && "Can't have linetable entries without a LineTable!");
778   // See if there is a #line directive before the location.
779   const LineEntry *Entry =
780     LineTable->FindNearestLineEntry(LocInfo.first.ID, LocInfo.second);
781 
782   // If this is before the first line marker, use the file characteristic.
783   if (!Entry)
784     return FI.getFileCharacteristic();
785 
786   return Entry->FileKind;
787 }
788 
789 
790 /// getPresumedLoc - This method returns the "presumed" location of a
791 /// SourceLocation specifies.  A "presumed location" can be modified by #line
792 /// or GNU line marker directives.  This provides a view on the data that a
793 /// user should see in diagnostics, for example.
794 ///
795 /// Note that a presumed location is always given as the instantiation point
796 /// of an instantiation location, not at the spelling location.
797 PresumedLoc SourceManager::getPresumedLoc(SourceLocation Loc) const {
798   if (Loc.isInvalid()) return PresumedLoc();
799 
800   // Presumed locations are always for instantiation points.
801   std::pair<FileID, unsigned> LocInfo = getDecomposedInstantiationLoc(Loc);
802 
803   const SrcMgr::FileInfo &FI = getSLocEntry(LocInfo.first).getFile();
804   const SrcMgr::ContentCache *C = FI.getContentCache();
805 
806   // To get the source name, first consult the FileEntry (if one exists)
807   // before the MemBuffer as this will avoid unnecessarily paging in the
808   // MemBuffer.
809   const char *Filename =
810     C->Entry ? C->Entry->getName() : C->getBuffer()->getBufferIdentifier();
811   unsigned LineNo = getLineNumber(LocInfo.first, LocInfo.second);
812   unsigned ColNo  = getColumnNumber(LocInfo.first, LocInfo.second);
813   SourceLocation IncludeLoc = FI.getIncludeLoc();
814 
815   // If we have #line directives in this file, update and overwrite the physical
816   // location info if appropriate.
817   if (FI.hasLineDirectives()) {
818     assert(LineTable && "Can't have linetable entries without a LineTable!");
819     // See if there is a #line directive before this.  If so, get it.
820     if (const LineEntry *Entry =
821           LineTable->FindNearestLineEntry(LocInfo.first.ID, LocInfo.second)) {
822       // If the LineEntry indicates a filename, use it.
823       if (Entry->FilenameID != -1)
824         Filename = LineTable->getFilename(Entry->FilenameID);
825 
826       // Use the line number specified by the LineEntry.  This line number may
827       // be multiple lines down from the line entry.  Add the difference in
828       // physical line numbers from the query point and the line marker to the
829       // total.
830       unsigned MarkerLineNo = getLineNumber(LocInfo.first, Entry->FileOffset);
831       LineNo = Entry->LineNo + (LineNo-MarkerLineNo-1);
832 
833       // Note that column numbers are not molested by line markers.
834     }
835   }
836 
837   return PresumedLoc(Filename, LineNo, ColNo, IncludeLoc);
838 }
839 
840 //===----------------------------------------------------------------------===//
841 // Other miscellaneous methods.
842 //===----------------------------------------------------------------------===//
843 
844 
845 /// PrintStats - Print statistics to stderr.
846 ///
847 void SourceManager::PrintStats() const {
848   llvm::cerr << "\n*** Source Manager Stats:\n";
849   llvm::cerr << FileInfos.size() << " files mapped, " << MemBufferInfos.size()
850              << " mem buffers mapped.\n";
851   llvm::cerr << SLocEntryTable.size() << " SLocEntry's allocated, "
852              << NextOffset << "B of Sloc address space used.\n";
853 
854   unsigned NumLineNumsComputed = 0;
855   unsigned NumFileBytesMapped = 0;
856   for (fileinfo_iterator I = fileinfo_begin(), E = fileinfo_end(); I != E; ++I){
857     NumLineNumsComputed += I->second->SourceLineCache != 0;
858     NumFileBytesMapped  += I->second->getSizeBytesMapped();
859   }
860 
861   llvm::cerr << NumFileBytesMapped << " bytes of files mapped, "
862              << NumLineNumsComputed << " files with line #'s computed.\n";
863   llvm::cerr << "FileID scans: " << NumLinearScans << " linear, "
864              << NumBinaryProbes << " binary.\n";
865 }
866 
867 //===----------------------------------------------------------------------===//
868 // Serialization.
869 //===----------------------------------------------------------------------===//
870 
871 void ContentCache::Emit(llvm::Serializer& S) const {
872   S.FlushRecord();
873   S.EmitPtr(this);
874 
875   if (Entry) {
876     llvm::sys::Path Fname(Buffer->getBufferIdentifier());
877 
878     if (Fname.isAbsolute())
879       S.EmitCStr(Fname.c_str());
880     else {
881       // Create an absolute path.
882       // FIXME: This will potentially contain ".." and "." in the path.
883       llvm::sys::Path path = llvm::sys::Path::GetCurrentDirectory();
884       path.appendComponent(Fname.c_str());
885       S.EmitCStr(path.c_str());
886     }
887   }
888   else {
889     const char* p = Buffer->getBufferStart();
890     const char* e = Buffer->getBufferEnd();
891 
892     S.EmitInt(e-p);
893 
894     for ( ; p != e; ++p)
895       S.EmitInt(*p);
896   }
897 
898   S.FlushRecord();
899 }
900 
901 void ContentCache::ReadToSourceManager(llvm::Deserializer& D,
902                                        SourceManager& SMgr,
903                                        FileManager* FMgr,
904                                        std::vector<char>& Buf) {
905   if (FMgr) {
906     llvm::SerializedPtrID PtrID = D.ReadPtrID();
907     D.ReadCStr(Buf,false);
908 
909     // Create/fetch the FileEntry.
910     const char* start = &Buf[0];
911     const FileEntry* E = FMgr->getFile(start,start+Buf.size());
912 
913     // FIXME: Ideally we want a lazy materialization of the ContentCache
914     //  anyway, because we don't want to read in source files unless this
915     //  is absolutely needed.
916     if (!E)
917       D.RegisterPtr(PtrID,NULL);
918     else
919       // Get the ContextCache object and register it with the deserializer.
920       D.RegisterPtr(PtrID, SMgr.getOrCreateContentCache(E));
921     return;
922   }
923 
924   // Register the ContextCache object with the deserializer.
925   /* FIXME:
926   ContentCache *Entry
927   SMgr.MemBufferInfos.push_back(ContentCache());
928    = const_cast<ContentCache&>(SMgr.MemBufferInfos.back());
929   D.RegisterPtr(&Entry);
930 
931   // Create the buffer.
932   unsigned Size = D.ReadInt();
933   Entry.Buffer = MemoryBuffer::getNewUninitMemBuffer(Size);
934 
935   // Read the contents of the buffer.
936   char* p = const_cast<char*>(Entry.Buffer->getBufferStart());
937   for (unsigned i = 0; i < Size ; ++i)
938     p[i] = D.ReadInt();
939    */
940 }
941 
942 void SourceManager::Emit(llvm::Serializer& S) const {
943   S.EnterBlock();
944   S.EmitPtr(this);
945   S.EmitInt(MainFileID.getOpaqueValue());
946 
947   // Emit: FileInfos.  Just emit the file name.
948   S.EnterBlock();
949 
950   // FIXME: Emit FileInfos.
951   //std::for_each(FileInfos.begin(), FileInfos.end(),
952   //              S.MakeEmitter<ContentCache>());
953 
954   S.ExitBlock();
955 
956   // Emit: MemBufferInfos
957   S.EnterBlock();
958 
959   /* FIXME: EMIT.
960   std::for_each(MemBufferInfos.begin(), MemBufferInfos.end(),
961                 S.MakeEmitter<ContentCache>());
962    */
963 
964   S.ExitBlock();
965 
966   // FIXME: Emit SLocEntryTable.
967 
968   S.ExitBlock();
969 }
970 
971 SourceManager*
972 SourceManager::CreateAndRegister(llvm::Deserializer &D, FileManager &FMgr) {
973   SourceManager *M = new SourceManager();
974   D.RegisterPtr(M);
975 
976   // Read: the FileID of the main source file of the translation unit.
977   M->MainFileID = FileID::get(D.ReadInt());
978 
979   std::vector<char> Buf;
980 
981   /*{ // FIXME Read: FileInfos.
982     llvm::Deserializer::Location BLoc = D.getCurrentBlockLocation();
983     while (!D.FinishedBlock(BLoc))
984     ContentCache::ReadToSourceManager(D,*M,&FMgr,Buf);
985   }*/
986 
987   { // Read: MemBufferInfos.
988     llvm::Deserializer::Location BLoc = D.getCurrentBlockLocation();
989     while (!D.FinishedBlock(BLoc))
990     ContentCache::ReadToSourceManager(D,*M,NULL,Buf);
991   }
992 
993   // FIXME: Read SLocEntryTable.
994 
995   return M;
996 }
997