1//===--- Pragma.cpp - Pragma registration and handling --------------------===//
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 PragmaHandler/PragmaTable interfaces and implements
11// pragma related methods of the Preprocessor class.
12//
13//===----------------------------------------------------------------------===//
14
15#include "clang/Lex/Pragma.h"
16#include "clang/Basic/FileManager.h"
17#include "clang/Basic/SourceManager.h"
18#include "clang/Lex/HeaderSearch.h"
19#include "clang/Lex/LexDiagnostic.h"
20#include "clang/Lex/LiteralSupport.h"
21#include "clang/Lex/MacroInfo.h"
22#include "clang/Lex/Preprocessor.h"
23#include "llvm/Support/CrashRecoveryContext.h"
24#include "llvm/Support/ErrorHandling.h"
25#include <algorithm>
26using namespace clang;
27
28// Out-of-line destructor to provide a home for the class.
29PragmaHandler::~PragmaHandler() {
30}
31
32//===----------------------------------------------------------------------===//
33// EmptyPragmaHandler Implementation.
34//===----------------------------------------------------------------------===//
35
36EmptyPragmaHandler::EmptyPragmaHandler() {}
37
38void EmptyPragmaHandler::HandlePragma(Preprocessor &PP,
39                                      PragmaIntroducerKind Introducer,
40                                      Token &FirstToken) {}
41
42//===----------------------------------------------------------------------===//
43// PragmaNamespace Implementation.
44//===----------------------------------------------------------------------===//
45
46PragmaNamespace::~PragmaNamespace() {
47  for (llvm::StringMap<PragmaHandler*>::iterator
48         I = Handlers.begin(), E = Handlers.end(); I != E; ++I)
49    delete I->second;
50}
51
52/// FindHandler - Check to see if there is already a handler for the
53/// specified name.  If not, return the handler for the null identifier if it
54/// exists, otherwise return null.  If IgnoreNull is true (the default) then
55/// the null handler isn't returned on failure to match.
56PragmaHandler *PragmaNamespace::FindHandler(StringRef Name,
57                                            bool IgnoreNull) const {
58  if (PragmaHandler *Handler = Handlers.lookup(Name))
59    return Handler;
60  return IgnoreNull ? 0 : Handlers.lookup(StringRef());
61}
62
63void PragmaNamespace::AddPragma(PragmaHandler *Handler) {
64  assert(!Handlers.lookup(Handler->getName()) &&
65         "A handler with this name is already registered in this namespace");
66  llvm::StringMapEntry<PragmaHandler *> &Entry =
67    Handlers.GetOrCreateValue(Handler->getName());
68  Entry.setValue(Handler);
69}
70
71void PragmaNamespace::RemovePragmaHandler(PragmaHandler *Handler) {
72  assert(Handlers.lookup(Handler->getName()) &&
73         "Handler not registered in this namespace");
74  Handlers.erase(Handler->getName());
75}
76
77void PragmaNamespace::HandlePragma(Preprocessor &PP,
78                                   PragmaIntroducerKind Introducer,
79                                   Token &Tok) {
80  // Read the 'namespace' that the directive is in, e.g. STDC.  Do not macro
81  // expand it, the user can have a STDC #define, that should not affect this.
82  PP.LexUnexpandedToken(Tok);
83
84  // Get the handler for this token.  If there is no handler, ignore the pragma.
85  PragmaHandler *Handler
86    = FindHandler(Tok.getIdentifierInfo() ? Tok.getIdentifierInfo()->getName()
87                                          : StringRef(),
88                  /*IgnoreNull=*/false);
89  if (Handler == 0) {
90    PP.Diag(Tok, diag::warn_pragma_ignored);
91    return;
92  }
93
94  // Otherwise, pass it down.
95  Handler->HandlePragma(PP, Introducer, Tok);
96}
97
98//===----------------------------------------------------------------------===//
99// Preprocessor Pragma Directive Handling.
100//===----------------------------------------------------------------------===//
101
102/// HandlePragmaDirective - The "\#pragma" directive has been parsed.  Lex the
103/// rest of the pragma, passing it to the registered pragma handlers.
104void Preprocessor::HandlePragmaDirective(SourceLocation IntroducerLoc,
105                                         PragmaIntroducerKind Introducer) {
106  if (Callbacks)
107    Callbacks->PragmaDirective(IntroducerLoc, Introducer);
108
109  if (!PragmasEnabled)
110    return;
111
112  ++NumPragma;
113
114  // Invoke the first level of pragma handlers which reads the namespace id.
115  Token Tok;
116  PragmaHandlers->HandlePragma(*this, Introducer, Tok);
117
118  // If the pragma handler didn't read the rest of the line, consume it now.
119  if ((CurTokenLexer && CurTokenLexer->isParsingPreprocessorDirective())
120   || (CurPPLexer && CurPPLexer->ParsingPreprocessorDirective))
121    DiscardUntilEndOfDirective();
122}
123
124namespace {
125/// \brief Helper class for \see Preprocessor::Handle_Pragma.
126class LexingFor_PragmaRAII {
127  Preprocessor &PP;
128  bool InMacroArgPreExpansion;
129  bool Failed;
130  Token &OutTok;
131  Token PragmaTok;
132
133public:
134  LexingFor_PragmaRAII(Preprocessor &PP, bool InMacroArgPreExpansion,
135                       Token &Tok)
136    : PP(PP), InMacroArgPreExpansion(InMacroArgPreExpansion),
137      Failed(false), OutTok(Tok) {
138    if (InMacroArgPreExpansion) {
139      PragmaTok = OutTok;
140      PP.EnableBacktrackAtThisPos();
141    }
142  }
143
144  ~LexingFor_PragmaRAII() {
145    if (InMacroArgPreExpansion) {
146      if (Failed) {
147        PP.CommitBacktrackedTokens();
148      } else {
149        PP.Backtrack();
150        OutTok = PragmaTok;
151      }
152    }
153  }
154
155  void failed() {
156    Failed = true;
157  }
158};
159}
160
161/// Handle_Pragma - Read a _Pragma directive, slice it up, process it, then
162/// return the first token after the directive.  The _Pragma token has just
163/// been read into 'Tok'.
164void Preprocessor::Handle_Pragma(Token &Tok) {
165
166  // This works differently if we are pre-expanding a macro argument.
167  // In that case we don't actually "activate" the pragma now, we only lex it
168  // until we are sure it is lexically correct and then we backtrack so that
169  // we activate the pragma whenever we encounter the tokens again in the token
170  // stream. This ensures that we will activate it in the correct location
171  // or that we will ignore it if it never enters the token stream, e.g:
172  //
173  //     #define EMPTY(x)
174  //     #define INACTIVE(x) EMPTY(x)
175  //     INACTIVE(_Pragma("clang diagnostic ignored \"-Wconversion\""))
176
177  LexingFor_PragmaRAII _PragmaLexing(*this, InMacroArgPreExpansion, Tok);
178
179  // Remember the pragma token location.
180  SourceLocation PragmaLoc = Tok.getLocation();
181
182  // Read the '('.
183  Lex(Tok);
184  if (Tok.isNot(tok::l_paren)) {
185    Diag(PragmaLoc, diag::err__Pragma_malformed);
186    return _PragmaLexing.failed();
187  }
188
189  // Read the '"..."'.
190  Lex(Tok);
191  if (!tok::isStringLiteral(Tok.getKind())) {
192    Diag(PragmaLoc, diag::err__Pragma_malformed);
193    // Skip this token, and the ')', if present.
194    if (Tok.isNot(tok::r_paren))
195      Lex(Tok);
196    if (Tok.is(tok::r_paren))
197      Lex(Tok);
198    return _PragmaLexing.failed();
199  }
200
201  if (Tok.hasUDSuffix()) {
202    Diag(Tok, diag::err_invalid_string_udl);
203    // Skip this token, and the ')', if present.
204    Lex(Tok);
205    if (Tok.is(tok::r_paren))
206      Lex(Tok);
207    return _PragmaLexing.failed();
208  }
209
210  // Remember the string.
211  Token StrTok = Tok;
212
213  // Read the ')'.
214  Lex(Tok);
215  if (Tok.isNot(tok::r_paren)) {
216    Diag(PragmaLoc, diag::err__Pragma_malformed);
217    return _PragmaLexing.failed();
218  }
219
220  if (InMacroArgPreExpansion)
221    return;
222
223  SourceLocation RParenLoc = Tok.getLocation();
224  std::string StrVal = getSpelling(StrTok);
225
226  // The _Pragma is lexically sound.  Destringize according to C11 6.10.9.1:
227  // "The string literal is destringized by deleting any encoding prefix,
228  // deleting the leading and trailing double-quotes, replacing each escape
229  // sequence \" by a double-quote, and replacing each escape sequence \\ by a
230  // single backslash."
231  if (StrVal[0] == 'L' || StrVal[0] == 'U' ||
232      (StrVal[0] == 'u' && StrVal[1] != '8'))
233    StrVal.erase(StrVal.begin());
234  else if (StrVal[0] == 'u')
235    StrVal.erase(StrVal.begin(), StrVal.begin() + 2);
236
237  if (StrVal[0] == 'R') {
238    // FIXME: C++11 does not specify how to handle raw-string-literals here.
239    // We strip off the 'R', the quotes, the d-char-sequences, and the parens.
240    assert(StrVal[1] == '"' && StrVal[StrVal.size() - 1] == '"' &&
241           "Invalid raw string token!");
242
243    // Measure the length of the d-char-sequence.
244    unsigned NumDChars = 0;
245    while (StrVal[2 + NumDChars] != '(') {
246      assert(NumDChars < (StrVal.size() - 5) / 2 &&
247             "Invalid raw string token!");
248      ++NumDChars;
249    }
250    assert(StrVal[StrVal.size() - 2 - NumDChars] == ')');
251
252    // Remove 'R " d-char-sequence' and 'd-char-sequence "'. We'll replace the
253    // parens below.
254    StrVal.erase(0, 2 + NumDChars);
255    StrVal.erase(StrVal.size() - 1 - NumDChars);
256  } else {
257    assert(StrVal[0] == '"' && StrVal[StrVal.size()-1] == '"' &&
258           "Invalid string token!");
259
260    // Remove escaped quotes and escapes.
261    unsigned ResultPos = 1;
262    for (unsigned i = 1, e = StrVal.size() - 2; i != e; ++i) {
263      if (StrVal[i] != '\\' ||
264          (StrVal[i + 1] != '\\' && StrVal[i + 1] != '"')) {
265        // \\ -> '\' and \" -> '"'.
266        StrVal[ResultPos++] = StrVal[i];
267      }
268    }
269    StrVal.erase(StrVal.begin() + ResultPos, StrVal.end() - 2);
270  }
271
272  // Remove the front quote, replacing it with a space, so that the pragma
273  // contents appear to have a space before them.
274  StrVal[0] = ' ';
275
276  // Replace the terminating quote with a \n.
277  StrVal[StrVal.size()-1] = '\n';
278
279  // Plop the string (including the newline and trailing null) into a buffer
280  // where we can lex it.
281  Token TmpTok;
282  TmpTok.startToken();
283  CreateString(StrVal, TmpTok);
284  SourceLocation TokLoc = TmpTok.getLocation();
285
286  // Make and enter a lexer object so that we lex and expand the tokens just
287  // like any others.
288  Lexer *TL = Lexer::Create_PragmaLexer(TokLoc, PragmaLoc, RParenLoc,
289                                        StrVal.size(), *this);
290
291  EnterSourceFileWithLexer(TL, 0);
292
293  // With everything set up, lex this as a #pragma directive.
294  HandlePragmaDirective(PragmaLoc, PIK__Pragma);
295
296  // Finally, return whatever came after the pragma directive.
297  return Lex(Tok);
298}
299
300/// HandleMicrosoft__pragma - Like Handle_Pragma except the pragma text
301/// is not enclosed within a string literal.
302void Preprocessor::HandleMicrosoft__pragma(Token &Tok) {
303  // Remember the pragma token location.
304  SourceLocation PragmaLoc = Tok.getLocation();
305
306  // Read the '('.
307  Lex(Tok);
308  if (Tok.isNot(tok::l_paren)) {
309    Diag(PragmaLoc, diag::err__Pragma_malformed);
310    return;
311  }
312
313  // Get the tokens enclosed within the __pragma(), as well as the final ')'.
314  SmallVector<Token, 32> PragmaToks;
315  int NumParens = 0;
316  Lex(Tok);
317  while (Tok.isNot(tok::eof)) {
318    PragmaToks.push_back(Tok);
319    if (Tok.is(tok::l_paren))
320      NumParens++;
321    else if (Tok.is(tok::r_paren) && NumParens-- == 0)
322      break;
323    Lex(Tok);
324  }
325
326  if (Tok.is(tok::eof)) {
327    Diag(PragmaLoc, diag::err_unterminated___pragma);
328    return;
329  }
330
331  PragmaToks.front().setFlag(Token::LeadingSpace);
332
333  // Replace the ')' with an EOD to mark the end of the pragma.
334  PragmaToks.back().setKind(tok::eod);
335
336  Token *TokArray = new Token[PragmaToks.size()];
337  std::copy(PragmaToks.begin(), PragmaToks.end(), TokArray);
338
339  // Push the tokens onto the stack.
340  EnterTokenStream(TokArray, PragmaToks.size(), true, true);
341
342  // With everything set up, lex this as a #pragma directive.
343  HandlePragmaDirective(PragmaLoc, PIK___pragma);
344
345  // Finally, return whatever came after the pragma directive.
346  return Lex(Tok);
347}
348
349/// HandlePragmaOnce - Handle \#pragma once.  OnceTok is the 'once'.
350///
351void Preprocessor::HandlePragmaOnce(Token &OnceTok) {
352  if (isInPrimaryFile()) {
353    Diag(OnceTok, diag::pp_pragma_once_in_main_file);
354    return;
355  }
356
357  // Get the current file lexer we're looking at.  Ignore _Pragma 'files' etc.
358  // Mark the file as a once-only file now.
359  HeaderInfo.MarkFileIncludeOnce(getCurrentFileLexer()->getFileEntry());
360}
361
362void Preprocessor::HandlePragmaMark() {
363  assert(CurPPLexer && "No current lexer?");
364  if (CurLexer)
365    CurLexer->ReadToEndOfLine();
366  else
367    CurPTHLexer->DiscardToEndOfLine();
368}
369
370
371/// HandlePragmaPoison - Handle \#pragma GCC poison.  PoisonTok is the 'poison'.
372///
373void Preprocessor::HandlePragmaPoison(Token &PoisonTok) {
374  Token Tok;
375
376  while (1) {
377    // Read the next token to poison.  While doing this, pretend that we are
378    // skipping while reading the identifier to poison.
379    // This avoids errors on code like:
380    //   #pragma GCC poison X
381    //   #pragma GCC poison X
382    if (CurPPLexer) CurPPLexer->LexingRawMode = true;
383    LexUnexpandedToken(Tok);
384    if (CurPPLexer) CurPPLexer->LexingRawMode = false;
385
386    // If we reached the end of line, we're done.
387    if (Tok.is(tok::eod)) return;
388
389    // Can only poison identifiers.
390    if (Tok.isNot(tok::raw_identifier)) {
391      Diag(Tok, diag::err_pp_invalid_poison);
392      return;
393    }
394
395    // Look up the identifier info for the token.  We disabled identifier lookup
396    // by saying we're skipping contents, so we need to do this manually.
397    IdentifierInfo *II = LookUpIdentifierInfo(Tok);
398
399    // Already poisoned.
400    if (II->isPoisoned()) continue;
401
402    // If this is a macro identifier, emit a warning.
403    if (II->hasMacroDefinition())
404      Diag(Tok, diag::pp_poisoning_existing_macro);
405
406    // Finally, poison it!
407    II->setIsPoisoned();
408    if (II->isFromAST())
409      II->setChangedSinceDeserialization();
410  }
411}
412
413/// HandlePragmaSystemHeader - Implement \#pragma GCC system_header.  We know
414/// that the whole directive has been parsed.
415void Preprocessor::HandlePragmaSystemHeader(Token &SysHeaderTok) {
416  if (isInPrimaryFile()) {
417    Diag(SysHeaderTok, diag::pp_pragma_sysheader_in_main_file);
418    return;
419  }
420
421  // Get the current file lexer we're looking at.  Ignore _Pragma 'files' etc.
422  PreprocessorLexer *TheLexer = getCurrentFileLexer();
423
424  // Mark the file as a system header.
425  HeaderInfo.MarkFileSystemHeader(TheLexer->getFileEntry());
426
427
428  PresumedLoc PLoc = SourceMgr.getPresumedLoc(SysHeaderTok.getLocation());
429  if (PLoc.isInvalid())
430    return;
431
432  unsigned FilenameID = SourceMgr.getLineTableFilenameID(PLoc.getFilename());
433
434  // Notify the client, if desired, that we are in a new source file.
435  if (Callbacks)
436    Callbacks->FileChanged(SysHeaderTok.getLocation(),
437                           PPCallbacks::SystemHeaderPragma, SrcMgr::C_System);
438
439  // Emit a line marker.  This will change any source locations from this point
440  // forward to realize they are in a system header.
441  // Create a line note with this information.
442  SourceMgr.AddLineNote(SysHeaderTok.getLocation(), PLoc.getLine()+1,
443                        FilenameID, /*IsEntry=*/false, /*IsExit=*/false,
444                        /*IsSystem=*/true, /*IsExternC=*/false);
445}
446
447/// HandlePragmaDependency - Handle \#pragma GCC dependency "foo" blah.
448///
449void Preprocessor::HandlePragmaDependency(Token &DependencyTok) {
450  Token FilenameTok;
451  CurPPLexer->LexIncludeFilename(FilenameTok);
452
453  // If the token kind is EOD, the error has already been diagnosed.
454  if (FilenameTok.is(tok::eod))
455    return;
456
457  // Reserve a buffer to get the spelling.
458  SmallString<128> FilenameBuffer;
459  bool Invalid = false;
460  StringRef Filename = getSpelling(FilenameTok, FilenameBuffer, &Invalid);
461  if (Invalid)
462    return;
463
464  bool isAngled =
465    GetIncludeFilenameSpelling(FilenameTok.getLocation(), Filename);
466  // If GetIncludeFilenameSpelling set the start ptr to null, there was an
467  // error.
468  if (Filename.empty())
469    return;
470
471  // Search include directories for this file.
472  const DirectoryLookup *CurDir;
473  const FileEntry *File = LookupFile(FilenameTok.getLocation(), Filename,
474                                     isAngled, 0, CurDir, NULL, NULL, NULL);
475  if (File == 0) {
476    if (!SuppressIncludeNotFoundError)
477      Diag(FilenameTok, diag::err_pp_file_not_found) << Filename;
478    return;
479  }
480
481  const FileEntry *CurFile = getCurrentFileLexer()->getFileEntry();
482
483  // If this file is older than the file it depends on, emit a diagnostic.
484  if (CurFile && CurFile->getModificationTime() < File->getModificationTime()) {
485    // Lex tokens at the end of the message and include them in the message.
486    std::string Message;
487    Lex(DependencyTok);
488    while (DependencyTok.isNot(tok::eod)) {
489      Message += getSpelling(DependencyTok) + " ";
490      Lex(DependencyTok);
491    }
492
493    // Remove the trailing ' ' if present.
494    if (!Message.empty())
495      Message.erase(Message.end()-1);
496    Diag(FilenameTok, diag::pp_out_of_date_dependency) << Message;
497  }
498}
499
500/// ParsePragmaPushOrPopMacro - Handle parsing of pragma push_macro/pop_macro.
501/// Return the IdentifierInfo* associated with the macro to push or pop.
502IdentifierInfo *Preprocessor::ParsePragmaPushOrPopMacro(Token &Tok) {
503  // Remember the pragma token location.
504  Token PragmaTok = Tok;
505
506  // Read the '('.
507  Lex(Tok);
508  if (Tok.isNot(tok::l_paren)) {
509    Diag(PragmaTok.getLocation(), diag::err_pragma_push_pop_macro_malformed)
510      << getSpelling(PragmaTok);
511    return 0;
512  }
513
514  // Read the macro name string.
515  Lex(Tok);
516  if (Tok.isNot(tok::string_literal)) {
517    Diag(PragmaTok.getLocation(), diag::err_pragma_push_pop_macro_malformed)
518      << getSpelling(PragmaTok);
519    return 0;
520  }
521
522  if (Tok.hasUDSuffix()) {
523    Diag(Tok, diag::err_invalid_string_udl);
524    return 0;
525  }
526
527  // Remember the macro string.
528  std::string StrVal = getSpelling(Tok);
529
530  // Read the ')'.
531  Lex(Tok);
532  if (Tok.isNot(tok::r_paren)) {
533    Diag(PragmaTok.getLocation(), diag::err_pragma_push_pop_macro_malformed)
534      << getSpelling(PragmaTok);
535    return 0;
536  }
537
538  assert(StrVal[0] == '"' && StrVal[StrVal.size()-1] == '"' &&
539         "Invalid string token!");
540
541  // Create a Token from the string.
542  Token MacroTok;
543  MacroTok.startToken();
544  MacroTok.setKind(tok::raw_identifier);
545  CreateString(StringRef(&StrVal[1], StrVal.size() - 2), MacroTok);
546
547  // Get the IdentifierInfo of MacroToPushTok.
548  return LookUpIdentifierInfo(MacroTok);
549}
550
551/// \brief Handle \#pragma push_macro.
552///
553/// The syntax is:
554/// \code
555///   #pragma push_macro("macro")
556/// \endcode
557void Preprocessor::HandlePragmaPushMacro(Token &PushMacroTok) {
558  // Parse the pragma directive and get the macro IdentifierInfo*.
559  IdentifierInfo *IdentInfo = ParsePragmaPushOrPopMacro(PushMacroTok);
560  if (!IdentInfo) return;
561
562  // Get the MacroInfo associated with IdentInfo.
563  MacroInfo *MI = getMacroInfo(IdentInfo);
564
565  if (MI) {
566    // Allow the original MacroInfo to be redefined later.
567    MI->setIsAllowRedefinitionsWithoutWarning(true);
568  }
569
570  // Push the cloned MacroInfo so we can retrieve it later.
571  PragmaPushMacroInfo[IdentInfo].push_back(MI);
572}
573
574/// \brief Handle \#pragma pop_macro.
575///
576/// The syntax is:
577/// \code
578///   #pragma pop_macro("macro")
579/// \endcode
580void Preprocessor::HandlePragmaPopMacro(Token &PopMacroTok) {
581  SourceLocation MessageLoc = PopMacroTok.getLocation();
582
583  // Parse the pragma directive and get the macro IdentifierInfo*.
584  IdentifierInfo *IdentInfo = ParsePragmaPushOrPopMacro(PopMacroTok);
585  if (!IdentInfo) return;
586
587  // Find the vector<MacroInfo*> associated with the macro.
588  llvm::DenseMap<IdentifierInfo*, std::vector<MacroInfo*> >::iterator iter =
589    PragmaPushMacroInfo.find(IdentInfo);
590  if (iter != PragmaPushMacroInfo.end()) {
591    // Forget the MacroInfo currently associated with IdentInfo.
592    if (MacroDirective *CurrentMD = getMacroDirective(IdentInfo)) {
593      MacroInfo *MI = CurrentMD->getMacroInfo();
594      if (MI->isWarnIfUnused())
595        WarnUnusedMacroLocs.erase(MI->getDefinitionLoc());
596      appendMacroDirective(IdentInfo, AllocateUndefMacroDirective(MessageLoc));
597    }
598
599    // Get the MacroInfo we want to reinstall.
600    MacroInfo *MacroToReInstall = iter->second.back();
601
602    if (MacroToReInstall) {
603      // Reinstall the previously pushed macro.
604      appendDefMacroDirective(IdentInfo, MacroToReInstall, MessageLoc,
605                              /*isImported=*/false);
606    }
607
608    // Pop PragmaPushMacroInfo stack.
609    iter->second.pop_back();
610    if (iter->second.size() == 0)
611      PragmaPushMacroInfo.erase(iter);
612  } else {
613    Diag(MessageLoc, diag::warn_pragma_pop_macro_no_push)
614      << IdentInfo->getName();
615  }
616}
617
618void Preprocessor::HandlePragmaIncludeAlias(Token &Tok) {
619  // We will either get a quoted filename or a bracketed filename, and we
620  // have to track which we got.  The first filename is the source name,
621  // and the second name is the mapped filename.  If the first is quoted,
622  // the second must be as well (cannot mix and match quotes and brackets).
623
624  // Get the open paren
625  Lex(Tok);
626  if (Tok.isNot(tok::l_paren)) {
627    Diag(Tok, diag::warn_pragma_include_alias_expected) << "(";
628    return;
629  }
630
631  // We expect either a quoted string literal, or a bracketed name
632  Token SourceFilenameTok;
633  CurPPLexer->LexIncludeFilename(SourceFilenameTok);
634  if (SourceFilenameTok.is(tok::eod)) {
635    // The diagnostic has already been handled
636    return;
637  }
638
639  StringRef SourceFileName;
640  SmallString<128> FileNameBuffer;
641  if (SourceFilenameTok.is(tok::string_literal) ||
642      SourceFilenameTok.is(tok::angle_string_literal)) {
643    SourceFileName = getSpelling(SourceFilenameTok, FileNameBuffer);
644  } else if (SourceFilenameTok.is(tok::less)) {
645    // This could be a path instead of just a name
646    FileNameBuffer.push_back('<');
647    SourceLocation End;
648    if (ConcatenateIncludeName(FileNameBuffer, End))
649      return; // Diagnostic already emitted
650    SourceFileName = FileNameBuffer.str();
651  } else {
652    Diag(Tok, diag::warn_pragma_include_alias_expected_filename);
653    return;
654  }
655  FileNameBuffer.clear();
656
657  // Now we expect a comma, followed by another include name
658  Lex(Tok);
659  if (Tok.isNot(tok::comma)) {
660    Diag(Tok, diag::warn_pragma_include_alias_expected) << ",";
661    return;
662  }
663
664  Token ReplaceFilenameTok;
665  CurPPLexer->LexIncludeFilename(ReplaceFilenameTok);
666  if (ReplaceFilenameTok.is(tok::eod)) {
667    // The diagnostic has already been handled
668    return;
669  }
670
671  StringRef ReplaceFileName;
672  if (ReplaceFilenameTok.is(tok::string_literal) ||
673      ReplaceFilenameTok.is(tok::angle_string_literal)) {
674    ReplaceFileName = getSpelling(ReplaceFilenameTok, FileNameBuffer);
675  } else if (ReplaceFilenameTok.is(tok::less)) {
676    // This could be a path instead of just a name
677    FileNameBuffer.push_back('<');
678    SourceLocation End;
679    if (ConcatenateIncludeName(FileNameBuffer, End))
680      return; // Diagnostic already emitted
681    ReplaceFileName = FileNameBuffer.str();
682  } else {
683    Diag(Tok, diag::warn_pragma_include_alias_expected_filename);
684    return;
685  }
686
687  // Finally, we expect the closing paren
688  Lex(Tok);
689  if (Tok.isNot(tok::r_paren)) {
690    Diag(Tok, diag::warn_pragma_include_alias_expected) << ")";
691    return;
692  }
693
694  // Now that we have the source and target filenames, we need to make sure
695  // they're both of the same type (angled vs non-angled)
696  StringRef OriginalSource = SourceFileName;
697
698  bool SourceIsAngled =
699    GetIncludeFilenameSpelling(SourceFilenameTok.getLocation(),
700                                SourceFileName);
701  bool ReplaceIsAngled =
702    GetIncludeFilenameSpelling(ReplaceFilenameTok.getLocation(),
703                                ReplaceFileName);
704  if (!SourceFileName.empty() && !ReplaceFileName.empty() &&
705      (SourceIsAngled != ReplaceIsAngled)) {
706    unsigned int DiagID;
707    if (SourceIsAngled)
708      DiagID = diag::warn_pragma_include_alias_mismatch_angle;
709    else
710      DiagID = diag::warn_pragma_include_alias_mismatch_quote;
711
712    Diag(SourceFilenameTok.getLocation(), DiagID)
713      << SourceFileName
714      << ReplaceFileName;
715
716    return;
717  }
718
719  // Now we can let the include handler know about this mapping
720  getHeaderSearchInfo().AddIncludeAlias(OriginalSource, ReplaceFileName);
721}
722
723/// AddPragmaHandler - Add the specified pragma handler to the preprocessor.
724/// If 'Namespace' is non-null, then it is a token required to exist on the
725/// pragma line before the pragma string starts, e.g. "STDC" or "GCC".
726void Preprocessor::AddPragmaHandler(StringRef Namespace,
727                                    PragmaHandler *Handler) {
728  PragmaNamespace *InsertNS = PragmaHandlers;
729
730  // If this is specified to be in a namespace, step down into it.
731  if (!Namespace.empty()) {
732    // If there is already a pragma handler with the name of this namespace,
733    // we either have an error (directive with the same name as a namespace) or
734    // we already have the namespace to insert into.
735    if (PragmaHandler *Existing = PragmaHandlers->FindHandler(Namespace)) {
736      InsertNS = Existing->getIfNamespace();
737      assert(InsertNS != 0 && "Cannot have a pragma namespace and pragma"
738             " handler with the same name!");
739    } else {
740      // Otherwise, this namespace doesn't exist yet, create and insert the
741      // handler for it.
742      InsertNS = new PragmaNamespace(Namespace);
743      PragmaHandlers->AddPragma(InsertNS);
744    }
745  }
746
747  // Check to make sure we don't already have a pragma for this identifier.
748  assert(!InsertNS->FindHandler(Handler->getName()) &&
749         "Pragma handler already exists for this identifier!");
750  InsertNS->AddPragma(Handler);
751}
752
753/// RemovePragmaHandler - Remove the specific pragma handler from the
754/// preprocessor. If \arg Namespace is non-null, then it should be the
755/// namespace that \arg Handler was added to. It is an error to remove
756/// a handler that has not been registered.
757void Preprocessor::RemovePragmaHandler(StringRef Namespace,
758                                       PragmaHandler *Handler) {
759  PragmaNamespace *NS = PragmaHandlers;
760
761  // If this is specified to be in a namespace, step down into it.
762  if (!Namespace.empty()) {
763    PragmaHandler *Existing = PragmaHandlers->FindHandler(Namespace);
764    assert(Existing && "Namespace containing handler does not exist!");
765
766    NS = Existing->getIfNamespace();
767    assert(NS && "Invalid namespace, registered as a regular pragma handler!");
768  }
769
770  NS->RemovePragmaHandler(Handler);
771
772  // If this is a non-default namespace and it is now empty, remove
773  // it.
774  if (NS != PragmaHandlers && NS->IsEmpty()) {
775    PragmaHandlers->RemovePragmaHandler(NS);
776    delete NS;
777  }
778}
779
780bool Preprocessor::LexOnOffSwitch(tok::OnOffSwitch &Result) {
781  Token Tok;
782  LexUnexpandedToken(Tok);
783
784  if (Tok.isNot(tok::identifier)) {
785    Diag(Tok, diag::ext_on_off_switch_syntax);
786    return true;
787  }
788  IdentifierInfo *II = Tok.getIdentifierInfo();
789  if (II->isStr("ON"))
790    Result = tok::OOS_ON;
791  else if (II->isStr("OFF"))
792    Result = tok::OOS_OFF;
793  else if (II->isStr("DEFAULT"))
794    Result = tok::OOS_DEFAULT;
795  else {
796    Diag(Tok, diag::ext_on_off_switch_syntax);
797    return true;
798  }
799
800  // Verify that this is followed by EOD.
801  LexUnexpandedToken(Tok);
802  if (Tok.isNot(tok::eod))
803    Diag(Tok, diag::ext_pragma_syntax_eod);
804  return false;
805}
806
807namespace {
808/// PragmaOnceHandler - "\#pragma once" marks the file as atomically included.
809struct PragmaOnceHandler : public PragmaHandler {
810  PragmaOnceHandler() : PragmaHandler("once") {}
811  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
812                            Token &OnceTok) {
813    PP.CheckEndOfDirective("pragma once");
814    PP.HandlePragmaOnce(OnceTok);
815  }
816};
817
818/// PragmaMarkHandler - "\#pragma mark ..." is ignored by the compiler, and the
819/// rest of the line is not lexed.
820struct PragmaMarkHandler : public PragmaHandler {
821  PragmaMarkHandler() : PragmaHandler("mark") {}
822  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
823                            Token &MarkTok) {
824    PP.HandlePragmaMark();
825  }
826};
827
828/// PragmaPoisonHandler - "\#pragma poison x" marks x as not usable.
829struct PragmaPoisonHandler : public PragmaHandler {
830  PragmaPoisonHandler() : PragmaHandler("poison") {}
831  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
832                            Token &PoisonTok) {
833    PP.HandlePragmaPoison(PoisonTok);
834  }
835};
836
837/// PragmaSystemHeaderHandler - "\#pragma system_header" marks the current file
838/// as a system header, which silences warnings in it.
839struct PragmaSystemHeaderHandler : public PragmaHandler {
840  PragmaSystemHeaderHandler() : PragmaHandler("system_header") {}
841  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
842                            Token &SHToken) {
843    PP.HandlePragmaSystemHeader(SHToken);
844    PP.CheckEndOfDirective("pragma");
845  }
846};
847struct PragmaDependencyHandler : public PragmaHandler {
848  PragmaDependencyHandler() : PragmaHandler("dependency") {}
849  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
850                            Token &DepToken) {
851    PP.HandlePragmaDependency(DepToken);
852  }
853};
854
855struct PragmaDebugHandler : public PragmaHandler {
856  PragmaDebugHandler() : PragmaHandler("__debug") {}
857  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
858                            Token &DepToken) {
859    Token Tok;
860    PP.LexUnexpandedToken(Tok);
861    if (Tok.isNot(tok::identifier)) {
862      PP.Diag(Tok, diag::warn_pragma_diagnostic_invalid);
863      return;
864    }
865    IdentifierInfo *II = Tok.getIdentifierInfo();
866
867    if (II->isStr("assert")) {
868      llvm_unreachable("This is an assertion!");
869    } else if (II->isStr("crash")) {
870      LLVM_BUILTIN_TRAP;
871    } else if (II->isStr("parser_crash")) {
872      Token Crasher;
873      Crasher.setKind(tok::annot_pragma_parser_crash);
874      PP.EnterToken(Crasher);
875    } else if (II->isStr("llvm_fatal_error")) {
876      llvm::report_fatal_error("#pragma clang __debug llvm_fatal_error");
877    } else if (II->isStr("llvm_unreachable")) {
878      llvm_unreachable("#pragma clang __debug llvm_unreachable");
879    } else if (II->isStr("overflow_stack")) {
880      DebugOverflowStack();
881    } else if (II->isStr("handle_crash")) {
882      llvm::CrashRecoveryContext *CRC =llvm::CrashRecoveryContext::GetCurrent();
883      if (CRC)
884        CRC->HandleCrash();
885    } else if (II->isStr("captured")) {
886      HandleCaptured(PP);
887    } else {
888      PP.Diag(Tok, diag::warn_pragma_debug_unexpected_command)
889        << II->getName();
890    }
891
892    PPCallbacks *Callbacks = PP.getPPCallbacks();
893    if (Callbacks)
894      Callbacks->PragmaDebug(Tok.getLocation(), II->getName());
895  }
896
897  void HandleCaptured(Preprocessor &PP) {
898    // Skip if emitting preprocessed output.
899    if (PP.isPreprocessedOutput())
900      return;
901
902    Token Tok;
903    PP.LexUnexpandedToken(Tok);
904
905    if (Tok.isNot(tok::eod)) {
906      PP.Diag(Tok, diag::ext_pp_extra_tokens_at_eol)
907        << "pragma clang __debug captured";
908      return;
909    }
910
911    SourceLocation NameLoc = Tok.getLocation();
912    Token *Toks = PP.getPreprocessorAllocator().Allocate<Token>(1);
913    Toks->startToken();
914    Toks->setKind(tok::annot_pragma_captured);
915    Toks->setLocation(NameLoc);
916
917    PP.EnterTokenStream(Toks, 1, /*DisableMacroExpansion=*/true,
918                        /*OwnsTokens=*/false);
919  }
920
921// Disable MSVC warning about runtime stack overflow.
922#ifdef _MSC_VER
923    #pragma warning(disable : 4717)
924#endif
925  void DebugOverflowStack() {
926    DebugOverflowStack();
927  }
928#ifdef _MSC_VER
929    #pragma warning(default : 4717)
930#endif
931
932};
933
934/// PragmaDiagnosticHandler - e.g. '\#pragma GCC diagnostic ignored "-Wformat"'
935struct PragmaDiagnosticHandler : public PragmaHandler {
936private:
937  const char *Namespace;
938public:
939  explicit PragmaDiagnosticHandler(const char *NS) :
940    PragmaHandler("diagnostic"), Namespace(NS) {}
941  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
942                            Token &DiagToken) {
943    SourceLocation DiagLoc = DiagToken.getLocation();
944    Token Tok;
945    PP.LexUnexpandedToken(Tok);
946    if (Tok.isNot(tok::identifier)) {
947      PP.Diag(Tok, diag::warn_pragma_diagnostic_invalid);
948      return;
949    }
950    IdentifierInfo *II = Tok.getIdentifierInfo();
951    PPCallbacks *Callbacks = PP.getPPCallbacks();
952
953    diag::Mapping Map;
954    if (II->isStr("warning"))
955      Map = diag::MAP_WARNING;
956    else if (II->isStr("error"))
957      Map = diag::MAP_ERROR;
958    else if (II->isStr("ignored"))
959      Map = diag::MAP_IGNORE;
960    else if (II->isStr("fatal"))
961      Map = diag::MAP_FATAL;
962    else if (II->isStr("pop")) {
963      if (!PP.getDiagnostics().popMappings(DiagLoc))
964        PP.Diag(Tok, diag::warn_pragma_diagnostic_cannot_pop);
965      else if (Callbacks)
966        Callbacks->PragmaDiagnosticPop(DiagLoc, Namespace);
967      return;
968    } else if (II->isStr("push")) {
969      PP.getDiagnostics().pushMappings(DiagLoc);
970      if (Callbacks)
971        Callbacks->PragmaDiagnosticPush(DiagLoc, Namespace);
972      return;
973    } else {
974      PP.Diag(Tok, diag::warn_pragma_diagnostic_invalid);
975      return;
976    }
977
978    PP.LexUnexpandedToken(Tok);
979    SourceLocation StringLoc = Tok.getLocation();
980
981    std::string WarningName;
982    if (!PP.FinishLexStringLiteral(Tok, WarningName, "pragma diagnostic",
983                                   /*MacroExpansion=*/false))
984      return;
985
986    if (Tok.isNot(tok::eod)) {
987      PP.Diag(Tok.getLocation(), diag::warn_pragma_diagnostic_invalid_token);
988      return;
989    }
990
991    if (WarningName.size() < 3 || WarningName[0] != '-' ||
992        WarningName[1] != 'W') {
993      PP.Diag(StringLoc, diag::warn_pragma_diagnostic_invalid_option);
994      return;
995    }
996
997    if (PP.getDiagnostics().setDiagnosticGroupMapping(WarningName.substr(2),
998                                                      Map, DiagLoc))
999      PP.Diag(StringLoc, diag::warn_pragma_diagnostic_unknown_warning)
1000        << WarningName;
1001    else if (Callbacks)
1002      Callbacks->PragmaDiagnostic(DiagLoc, Namespace, Map, WarningName);
1003  }
1004};
1005
1006/// PragmaIncludeAliasHandler - "\#pragma include_alias("...")".
1007struct PragmaIncludeAliasHandler : public PragmaHandler {
1008  PragmaIncludeAliasHandler() : PragmaHandler("include_alias") {}
1009  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
1010                            Token &IncludeAliasTok) {
1011      PP.HandlePragmaIncludeAlias(IncludeAliasTok);
1012  }
1013};
1014
1015/// PragmaMessageHandler - Handle the microsoft and gcc \#pragma message
1016/// extension.  The syntax is:
1017/// \code
1018///   #pragma message(string)
1019/// \endcode
1020/// OR, in GCC mode:
1021/// \code
1022///   #pragma message string
1023/// \endcode
1024/// string is a string, which is fully macro expanded, and permits string
1025/// concatenation, embedded escape characters, etc... See MSDN for more details.
1026/// Also handles \#pragma GCC warning and \#pragma GCC error which take the same
1027/// form as \#pragma message.
1028struct PragmaMessageHandler : public PragmaHandler {
1029private:
1030  const PPCallbacks::PragmaMessageKind Kind;
1031  const StringRef Namespace;
1032
1033  static const char* PragmaKind(PPCallbacks::PragmaMessageKind Kind,
1034                                bool PragmaNameOnly = false) {
1035    switch (Kind) {
1036      case PPCallbacks::PMK_Message:
1037        return PragmaNameOnly ? "message" : "pragma message";
1038      case PPCallbacks::PMK_Warning:
1039        return PragmaNameOnly ? "warning" : "pragma warning";
1040      case PPCallbacks::PMK_Error:
1041        return PragmaNameOnly ? "error" : "pragma error";
1042    }
1043    llvm_unreachable("Unknown PragmaMessageKind!");
1044  }
1045
1046public:
1047  PragmaMessageHandler(PPCallbacks::PragmaMessageKind Kind,
1048                       StringRef Namespace = StringRef())
1049    : PragmaHandler(PragmaKind(Kind, true)), Kind(Kind), Namespace(Namespace) {}
1050
1051  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
1052                            Token &Tok) {
1053    SourceLocation MessageLoc = Tok.getLocation();
1054    PP.Lex(Tok);
1055    bool ExpectClosingParen = false;
1056    switch (Tok.getKind()) {
1057    case tok::l_paren:
1058      // We have a MSVC style pragma message.
1059      ExpectClosingParen = true;
1060      // Read the string.
1061      PP.Lex(Tok);
1062      break;
1063    case tok::string_literal:
1064      // We have a GCC style pragma message, and we just read the string.
1065      break;
1066    default:
1067      PP.Diag(MessageLoc, diag::err_pragma_message_malformed) << Kind;
1068      return;
1069    }
1070
1071    std::string MessageString;
1072    if (!PP.FinishLexStringLiteral(Tok, MessageString, PragmaKind(Kind),
1073                                   /*MacroExpansion=*/true))
1074      return;
1075
1076    if (ExpectClosingParen) {
1077      if (Tok.isNot(tok::r_paren)) {
1078        PP.Diag(Tok.getLocation(), diag::err_pragma_message_malformed) << Kind;
1079        return;
1080      }
1081      PP.Lex(Tok);  // eat the r_paren.
1082    }
1083
1084    if (Tok.isNot(tok::eod)) {
1085      PP.Diag(Tok.getLocation(), diag::err_pragma_message_malformed) << Kind;
1086      return;
1087    }
1088
1089    // Output the message.
1090    PP.Diag(MessageLoc, (Kind == PPCallbacks::PMK_Error)
1091                          ? diag::err_pragma_message
1092                          : diag::warn_pragma_message) << MessageString;
1093
1094    // If the pragma is lexically sound, notify any interested PPCallbacks.
1095    if (PPCallbacks *Callbacks = PP.getPPCallbacks())
1096      Callbacks->PragmaMessage(MessageLoc, Namespace, Kind, MessageString);
1097  }
1098};
1099
1100/// PragmaPushMacroHandler - "\#pragma push_macro" saves the value of the
1101/// macro on the top of the stack.
1102struct PragmaPushMacroHandler : public PragmaHandler {
1103  PragmaPushMacroHandler() : PragmaHandler("push_macro") {}
1104  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
1105                            Token &PushMacroTok) {
1106    PP.HandlePragmaPushMacro(PushMacroTok);
1107  }
1108};
1109
1110
1111/// PragmaPopMacroHandler - "\#pragma pop_macro" sets the value of the
1112/// macro to the value on the top of the stack.
1113struct PragmaPopMacroHandler : public PragmaHandler {
1114  PragmaPopMacroHandler() : PragmaHandler("pop_macro") {}
1115  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
1116                            Token &PopMacroTok) {
1117    PP.HandlePragmaPopMacro(PopMacroTok);
1118  }
1119};
1120
1121// Pragma STDC implementations.
1122
1123/// PragmaSTDC_FENV_ACCESSHandler - "\#pragma STDC FENV_ACCESS ...".
1124struct PragmaSTDC_FENV_ACCESSHandler : public PragmaHandler {
1125  PragmaSTDC_FENV_ACCESSHandler() : PragmaHandler("FENV_ACCESS") {}
1126  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
1127                            Token &Tok) {
1128    tok::OnOffSwitch OOS;
1129    if (PP.LexOnOffSwitch(OOS))
1130     return;
1131    if (OOS == tok::OOS_ON)
1132      PP.Diag(Tok, diag::warn_stdc_fenv_access_not_supported);
1133  }
1134};
1135
1136/// PragmaSTDC_CX_LIMITED_RANGEHandler - "\#pragma STDC CX_LIMITED_RANGE ...".
1137struct PragmaSTDC_CX_LIMITED_RANGEHandler : public PragmaHandler {
1138  PragmaSTDC_CX_LIMITED_RANGEHandler()
1139    : PragmaHandler("CX_LIMITED_RANGE") {}
1140  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
1141                            Token &Tok) {
1142    tok::OnOffSwitch OOS;
1143    PP.LexOnOffSwitch(OOS);
1144  }
1145};
1146
1147/// PragmaSTDC_UnknownHandler - "\#pragma STDC ...".
1148struct PragmaSTDC_UnknownHandler : public PragmaHandler {
1149  PragmaSTDC_UnknownHandler() {}
1150  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
1151                            Token &UnknownTok) {
1152    // C99 6.10.6p2, unknown forms are not allowed.
1153    PP.Diag(UnknownTok, diag::ext_stdc_pragma_ignored);
1154  }
1155};
1156
1157/// PragmaARCCFCodeAuditedHandler -
1158///   \#pragma clang arc_cf_code_audited begin/end
1159struct PragmaARCCFCodeAuditedHandler : public PragmaHandler {
1160  PragmaARCCFCodeAuditedHandler() : PragmaHandler("arc_cf_code_audited") {}
1161  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
1162                            Token &NameTok) {
1163    SourceLocation Loc = NameTok.getLocation();
1164    bool IsBegin;
1165
1166    Token Tok;
1167
1168    // Lex the 'begin' or 'end'.
1169    PP.LexUnexpandedToken(Tok);
1170    const IdentifierInfo *BeginEnd = Tok.getIdentifierInfo();
1171    if (BeginEnd && BeginEnd->isStr("begin")) {
1172      IsBegin = true;
1173    } else if (BeginEnd && BeginEnd->isStr("end")) {
1174      IsBegin = false;
1175    } else {
1176      PP.Diag(Tok.getLocation(), diag::err_pp_arc_cf_code_audited_syntax);
1177      return;
1178    }
1179
1180    // Verify that this is followed by EOD.
1181    PP.LexUnexpandedToken(Tok);
1182    if (Tok.isNot(tok::eod))
1183      PP.Diag(Tok, diag::ext_pp_extra_tokens_at_eol) << "pragma";
1184
1185    // The start location of the active audit.
1186    SourceLocation BeginLoc = PP.getPragmaARCCFCodeAuditedLoc();
1187
1188    // The start location we want after processing this.
1189    SourceLocation NewLoc;
1190
1191    if (IsBegin) {
1192      // Complain about attempts to re-enter an audit.
1193      if (BeginLoc.isValid()) {
1194        PP.Diag(Loc, diag::err_pp_double_begin_of_arc_cf_code_audited);
1195        PP.Diag(BeginLoc, diag::note_pragma_entered_here);
1196      }
1197      NewLoc = Loc;
1198    } else {
1199      // Complain about attempts to leave an audit that doesn't exist.
1200      if (!BeginLoc.isValid()) {
1201        PP.Diag(Loc, diag::err_pp_unmatched_end_of_arc_cf_code_audited);
1202        return;
1203      }
1204      NewLoc = SourceLocation();
1205    }
1206
1207    PP.setPragmaARCCFCodeAuditedLoc(NewLoc);
1208  }
1209};
1210
1211/// \brief Handle "\#pragma region [...]"
1212///
1213/// The syntax is
1214/// \code
1215///   #pragma region [optional name]
1216///   #pragma endregion [optional comment]
1217/// \endcode
1218///
1219/// \note This is
1220/// <a href="http://msdn.microsoft.com/en-us/library/b6xkz944(v=vs.80).aspx">editor-only</a>
1221/// pragma, just skipped by compiler.
1222struct PragmaRegionHandler : public PragmaHandler {
1223  PragmaRegionHandler(const char *pragma) : PragmaHandler(pragma) { }
1224
1225  virtual void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer,
1226                            Token &NameTok) {
1227    // #pragma region: endregion matches can be verified
1228    // __pragma(region): no sense, but ignored by msvc
1229    // _Pragma is not valid for MSVC, but there isn't any point
1230    // to handle a _Pragma differently.
1231  }
1232};
1233
1234}  // end anonymous namespace
1235
1236
1237/// RegisterBuiltinPragmas - Install the standard preprocessor pragmas:
1238/// \#pragma GCC poison/system_header/dependency and \#pragma once.
1239void Preprocessor::RegisterBuiltinPragmas() {
1240  AddPragmaHandler(new PragmaOnceHandler());
1241  AddPragmaHandler(new PragmaMarkHandler());
1242  AddPragmaHandler(new PragmaPushMacroHandler());
1243  AddPragmaHandler(new PragmaPopMacroHandler());
1244  AddPragmaHandler(new PragmaMessageHandler(PPCallbacks::PMK_Message));
1245
1246  // #pragma GCC ...
1247  AddPragmaHandler("GCC", new PragmaPoisonHandler());
1248  AddPragmaHandler("GCC", new PragmaSystemHeaderHandler());
1249  AddPragmaHandler("GCC", new PragmaDependencyHandler());
1250  AddPragmaHandler("GCC", new PragmaDiagnosticHandler("GCC"));
1251  AddPragmaHandler("GCC", new PragmaMessageHandler(PPCallbacks::PMK_Warning,
1252                                                   "GCC"));
1253  AddPragmaHandler("GCC", new PragmaMessageHandler(PPCallbacks::PMK_Error,
1254                                                   "GCC"));
1255  // #pragma clang ...
1256  AddPragmaHandler("clang", new PragmaPoisonHandler());
1257  AddPragmaHandler("clang", new PragmaSystemHeaderHandler());
1258  AddPragmaHandler("clang", new PragmaDebugHandler());
1259  AddPragmaHandler("clang", new PragmaDependencyHandler());
1260  AddPragmaHandler("clang", new PragmaDiagnosticHandler("clang"));
1261  AddPragmaHandler("clang", new PragmaARCCFCodeAuditedHandler());
1262
1263  AddPragmaHandler("STDC", new PragmaSTDC_FENV_ACCESSHandler());
1264  AddPragmaHandler("STDC", new PragmaSTDC_CX_LIMITED_RANGEHandler());
1265  AddPragmaHandler("STDC", new PragmaSTDC_UnknownHandler());
1266
1267  // MS extensions.
1268  if (LangOpts.MicrosoftExt) {
1269    AddPragmaHandler(new PragmaIncludeAliasHandler());
1270    AddPragmaHandler(new PragmaRegionHandler("region"));
1271    AddPragmaHandler(new PragmaRegionHandler("endregion"));
1272  }
1273}
1274