1 //===--- PPDirectives.cpp - Directive Handling for Preprocessor -----------===//
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 # directive processing for the Preprocessor.
11 //
12 //===----------------------------------------------------------------------===//
13 
14 #include "clang/Lex/Preprocessor.h"
15 #include "clang/Lex/LiteralSupport.h"
16 #include "clang/Lex/HeaderSearch.h"
17 #include "clang/Lex/MacroInfo.h"
18 #include "clang/Lex/LexDiagnostic.h"
19 #include "clang/Lex/CodeCompletionHandler.h"
20 #include "clang/Lex/ModuleLoader.h"
21 #include "clang/Lex/Pragma.h"
22 #include "clang/Basic/FileManager.h"
23 #include "clang/Basic/SourceManager.h"
24 #include "llvm/ADT/APInt.h"
25 using namespace clang;
26 
27 //===----------------------------------------------------------------------===//
28 // Utility Methods for Preprocessor Directive Handling.
29 //===----------------------------------------------------------------------===//
30 
31 MacroInfo *Preprocessor::AllocateMacroInfo() {
32   MacroInfoChain *MIChain;
33 
34   if (MICache) {
35     MIChain = MICache;
36     MICache = MICache->Next;
37   }
38   else {
39     MIChain = BP.Allocate<MacroInfoChain>();
40   }
41 
42   MIChain->Next = MIChainHead;
43   MIChain->Prev = 0;
44   if (MIChainHead)
45     MIChainHead->Prev = MIChain;
46   MIChainHead = MIChain;
47 
48   return &(MIChain->MI);
49 }
50 
51 MacroInfo *Preprocessor::AllocateMacroInfo(SourceLocation L) {
52   MacroInfo *MI = AllocateMacroInfo();
53   new (MI) MacroInfo(L);
54   return MI;
55 }
56 
57 MacroInfo *Preprocessor::CloneMacroInfo(const MacroInfo &MacroToClone) {
58   MacroInfo *MI = AllocateMacroInfo();
59   new (MI) MacroInfo(MacroToClone, BP);
60   return MI;
61 }
62 
63 /// ReleaseMacroInfo - Release the specified MacroInfo.  This memory will
64 ///  be reused for allocating new MacroInfo objects.
65 void Preprocessor::ReleaseMacroInfo(MacroInfo *MI) {
66   MacroInfoChain *MIChain = (MacroInfoChain*) MI;
67   if (MacroInfoChain *Prev = MIChain->Prev) {
68     MacroInfoChain *Next = MIChain->Next;
69     Prev->Next = Next;
70     if (Next)
71       Next->Prev = Prev;
72   }
73   else {
74     assert(MIChainHead == MIChain);
75     MIChainHead = MIChain->Next;
76     MIChainHead->Prev = 0;
77   }
78   MIChain->Next = MICache;
79   MICache = MIChain;
80 
81   MI->Destroy();
82 }
83 
84 /// DiscardUntilEndOfDirective - Read and discard all tokens remaining on the
85 /// current line until the tok::eod token is found.
86 void Preprocessor::DiscardUntilEndOfDirective() {
87   Token Tmp;
88   do {
89     LexUnexpandedToken(Tmp);
90     assert(Tmp.isNot(tok::eof) && "EOF seen while discarding directive tokens");
91   } while (Tmp.isNot(tok::eod));
92 }
93 
94 /// ReadMacroName - Lex and validate a macro name, which occurs after a
95 /// #define or #undef.  This sets the token kind to eod and discards the rest
96 /// of the macro line if the macro name is invalid.  isDefineUndef is 1 if
97 /// this is due to a a #define, 2 if #undef directive, 0 if it is something
98 /// else (e.g. #ifdef).
99 void Preprocessor::ReadMacroName(Token &MacroNameTok, char isDefineUndef) {
100   // Read the token, don't allow macro expansion on it.
101   LexUnexpandedToken(MacroNameTok);
102 
103   if (MacroNameTok.is(tok::code_completion)) {
104     if (CodeComplete)
105       CodeComplete->CodeCompleteMacroName(isDefineUndef == 1);
106     setCodeCompletionReached();
107     LexUnexpandedToken(MacroNameTok);
108   }
109 
110   // Missing macro name?
111   if (MacroNameTok.is(tok::eod)) {
112     Diag(MacroNameTok, diag::err_pp_missing_macro_name);
113     return;
114   }
115 
116   IdentifierInfo *II = MacroNameTok.getIdentifierInfo();
117   if (II == 0) {
118     bool Invalid = false;
119     std::string Spelling = getSpelling(MacroNameTok, &Invalid);
120     if (Invalid)
121       return;
122 
123     const IdentifierInfo &Info = Identifiers.get(Spelling);
124     if (Info.isCPlusPlusOperatorKeyword())
125       // C++ 2.5p2: Alternative tokens behave the same as its primary token
126       // except for their spellings.
127       Diag(MacroNameTok, diag::err_pp_operator_used_as_macro_name) << Spelling;
128     else
129       Diag(MacroNameTok, diag::err_pp_macro_not_identifier);
130     // Fall through on error.
131   } else if (isDefineUndef && II->getPPKeywordID() == tok::pp_defined) {
132     // Error if defining "defined": C99 6.10.8.4.
133     Diag(MacroNameTok, diag::err_defined_macro_name);
134   } else if (isDefineUndef && II->hasMacroDefinition() &&
135              getMacroInfo(II)->isBuiltinMacro()) {
136     // Error if defining "__LINE__" and other builtins: C99 6.10.8.4.
137     if (isDefineUndef == 1)
138       Diag(MacroNameTok, diag::pp_redef_builtin_macro);
139     else
140       Diag(MacroNameTok, diag::pp_undef_builtin_macro);
141   } else {
142     // Okay, we got a good identifier node.  Return it.
143     return;
144   }
145 
146   // Invalid macro name, read and discard the rest of the line.  Then set the
147   // token kind to tok::eod.
148   MacroNameTok.setKind(tok::eod);
149   return DiscardUntilEndOfDirective();
150 }
151 
152 /// CheckEndOfDirective - Ensure that the next token is a tok::eod token.  If
153 /// not, emit a diagnostic and consume up until the eod.  If EnableMacros is
154 /// true, then we consider macros that expand to zero tokens as being ok.
155 void Preprocessor::CheckEndOfDirective(const char *DirType, bool EnableMacros) {
156   Token Tmp;
157   // Lex unexpanded tokens for most directives: macros might expand to zero
158   // tokens, causing us to miss diagnosing invalid lines.  Some directives (like
159   // #line) allow empty macros.
160   if (EnableMacros)
161     Lex(Tmp);
162   else
163     LexUnexpandedToken(Tmp);
164 
165   // There should be no tokens after the directive, but we allow them as an
166   // extension.
167   while (Tmp.is(tok::comment))  // Skip comments in -C mode.
168     LexUnexpandedToken(Tmp);
169 
170   if (Tmp.isNot(tok::eod)) {
171     // Add a fixit in GNU/C99/C++ mode.  Don't offer a fixit for strict-C89,
172     // or if this is a macro-style preprocessing directive, because it is more
173     // trouble than it is worth to insert /**/ and check that there is no /**/
174     // in the range also.
175     FixItHint Hint;
176     if ((Features.GNUMode || Features.C99 || Features.CPlusPlus) &&
177         !CurTokenLexer)
178       Hint = FixItHint::CreateInsertion(Tmp.getLocation(),"//");
179     Diag(Tmp, diag::ext_pp_extra_tokens_at_eol) << DirType << Hint;
180     DiscardUntilEndOfDirective();
181   }
182 }
183 
184 
185 
186 /// SkipExcludedConditionalBlock - We just read a #if or related directive and
187 /// decided that the subsequent tokens are in the #if'd out portion of the
188 /// file.  Lex the rest of the file, until we see an #endif.  If
189 /// FoundNonSkipPortion is true, then we have already emitted code for part of
190 /// this #if directive, so #else/#elif blocks should never be entered. If ElseOk
191 /// is true, then #else directives are ok, if not, then we have already seen one
192 /// so a #else directive is a duplicate.  When this returns, the caller can lex
193 /// the first valid token.
194 void Preprocessor::SkipExcludedConditionalBlock(SourceLocation IfTokenLoc,
195                                                 bool FoundNonSkipPortion,
196                                                 bool FoundElse,
197                                                 SourceLocation ElseLoc) {
198   ++NumSkipped;
199   assert(CurTokenLexer == 0 && CurPPLexer && "Lexing a macro, not a file?");
200 
201   CurPPLexer->pushConditionalLevel(IfTokenLoc, /*isSkipping*/false,
202                                  FoundNonSkipPortion, FoundElse);
203 
204   if (CurPTHLexer) {
205     PTHSkipExcludedConditionalBlock();
206     return;
207   }
208 
209   // Enter raw mode to disable identifier lookup (and thus macro expansion),
210   // disabling warnings, etc.
211   CurPPLexer->LexingRawMode = true;
212   Token Tok;
213   while (1) {
214     CurLexer->Lex(Tok);
215 
216     if (Tok.is(tok::code_completion)) {
217       if (CodeComplete)
218         CodeComplete->CodeCompleteInConditionalExclusion();
219       setCodeCompletionReached();
220       continue;
221     }
222 
223     // If this is the end of the buffer, we have an error.
224     if (Tok.is(tok::eof)) {
225       // Emit errors for each unterminated conditional on the stack, including
226       // the current one.
227       while (!CurPPLexer->ConditionalStack.empty()) {
228         if (CurLexer->getFileLoc() != CodeCompletionFileLoc)
229           Diag(CurPPLexer->ConditionalStack.back().IfLoc,
230                diag::err_pp_unterminated_conditional);
231         CurPPLexer->ConditionalStack.pop_back();
232       }
233 
234       // Just return and let the caller lex after this #include.
235       break;
236     }
237 
238     // If this token is not a preprocessor directive, just skip it.
239     if (Tok.isNot(tok::hash) || !Tok.isAtStartOfLine())
240       continue;
241 
242     // We just parsed a # character at the start of a line, so we're in
243     // directive mode.  Tell the lexer this so any newlines we see will be
244     // converted into an EOD token (this terminates the macro).
245     CurPPLexer->ParsingPreprocessorDirective = true;
246     if (CurLexer) CurLexer->SetCommentRetentionState(false);
247 
248 
249     // Read the next token, the directive flavor.
250     LexUnexpandedToken(Tok);
251 
252     // If this isn't an identifier directive (e.g. is "# 1\n" or "#\n", or
253     // something bogus), skip it.
254     if (Tok.isNot(tok::raw_identifier)) {
255       CurPPLexer->ParsingPreprocessorDirective = false;
256       // Restore comment saving mode.
257       if (CurLexer) CurLexer->SetCommentRetentionState(KeepComments);
258       continue;
259     }
260 
261     // If the first letter isn't i or e, it isn't intesting to us.  We know that
262     // this is safe in the face of spelling differences, because there is no way
263     // to spell an i/e in a strange way that is another letter.  Skipping this
264     // allows us to avoid looking up the identifier info for #define/#undef and
265     // other common directives.
266     const char *RawCharData = Tok.getRawIdentifierData();
267 
268     char FirstChar = RawCharData[0];
269     if (FirstChar >= 'a' && FirstChar <= 'z' &&
270         FirstChar != 'i' && FirstChar != 'e') {
271       CurPPLexer->ParsingPreprocessorDirective = false;
272       // Restore comment saving mode.
273       if (CurLexer) CurLexer->SetCommentRetentionState(KeepComments);
274       continue;
275     }
276 
277     // Get the identifier name without trigraphs or embedded newlines.  Note
278     // that we can't use Tok.getIdentifierInfo() because its lookup is disabled
279     // when skipping.
280     char DirectiveBuf[20];
281     StringRef Directive;
282     if (!Tok.needsCleaning() && Tok.getLength() < 20) {
283       Directive = StringRef(RawCharData, Tok.getLength());
284     } else {
285       std::string DirectiveStr = getSpelling(Tok);
286       unsigned IdLen = DirectiveStr.size();
287       if (IdLen >= 20) {
288         CurPPLexer->ParsingPreprocessorDirective = false;
289         // Restore comment saving mode.
290         if (CurLexer) CurLexer->SetCommentRetentionState(KeepComments);
291         continue;
292       }
293       memcpy(DirectiveBuf, &DirectiveStr[0], IdLen);
294       Directive = StringRef(DirectiveBuf, IdLen);
295     }
296 
297     if (Directive.startswith("if")) {
298       StringRef Sub = Directive.substr(2);
299       if (Sub.empty() ||   // "if"
300           Sub == "def" ||   // "ifdef"
301           Sub == "ndef") {  // "ifndef"
302         // We know the entire #if/#ifdef/#ifndef block will be skipped, don't
303         // bother parsing the condition.
304         DiscardUntilEndOfDirective();
305         CurPPLexer->pushConditionalLevel(Tok.getLocation(), /*wasskipping*/true,
306                                        /*foundnonskip*/false,
307                                        /*foundelse*/false);
308 
309         if (Callbacks)
310           Callbacks->Endif();
311       }
312     } else if (Directive[0] == 'e') {
313       StringRef Sub = Directive.substr(1);
314       if (Sub == "ndif") {  // "endif"
315         CheckEndOfDirective("endif");
316         PPConditionalInfo CondInfo;
317         CondInfo.WasSkipping = true; // Silence bogus warning.
318         bool InCond = CurPPLexer->popConditionalLevel(CondInfo);
319         (void)InCond;  // Silence warning in no-asserts mode.
320         assert(!InCond && "Can't be skipping if not in a conditional!");
321 
322         // If we popped the outermost skipping block, we're done skipping!
323         if (!CondInfo.WasSkipping)
324           break;
325       } else if (Sub == "lse") { // "else".
326         // #else directive in a skipping conditional.  If not in some other
327         // skipping conditional, and if #else hasn't already been seen, enter it
328         // as a non-skipping conditional.
329         PPConditionalInfo &CondInfo = CurPPLexer->peekConditionalLevel();
330 
331         // If this is a #else with a #else before it, report the error.
332         if (CondInfo.FoundElse) Diag(Tok, diag::pp_err_else_after_else);
333 
334         // Note that we've seen a #else in this conditional.
335         CondInfo.FoundElse = true;
336 
337         if (Callbacks)
338           Callbacks->Else();
339 
340         // If the conditional is at the top level, and the #if block wasn't
341         // entered, enter the #else block now.
342         if (!CondInfo.WasSkipping && !CondInfo.FoundNonSkip) {
343           CondInfo.FoundNonSkip = true;
344           CheckEndOfDirective("else");
345           break;
346         } else {
347           DiscardUntilEndOfDirective();  // C99 6.10p4.
348         }
349       } else if (Sub == "lif") {  // "elif".
350         PPConditionalInfo &CondInfo = CurPPLexer->peekConditionalLevel();
351 
352         bool ShouldEnter;
353         const SourceLocation ConditionalBegin = CurPPLexer->getSourceLocation();
354         // If this is in a skipping block or if we're already handled this #if
355         // block, don't bother parsing the condition.
356         if (CondInfo.WasSkipping || CondInfo.FoundNonSkip) {
357           DiscardUntilEndOfDirective();
358           ShouldEnter = false;
359         } else {
360           // Restore the value of LexingRawMode so that identifiers are
361           // looked up, etc, inside the #elif expression.
362           assert(CurPPLexer->LexingRawMode && "We have to be skipping here!");
363           CurPPLexer->LexingRawMode = false;
364           IdentifierInfo *IfNDefMacro = 0;
365           ShouldEnter = EvaluateDirectiveExpression(IfNDefMacro);
366           CurPPLexer->LexingRawMode = true;
367         }
368         const SourceLocation ConditionalEnd = CurPPLexer->getSourceLocation();
369 
370         // If this is a #elif with a #else before it, report the error.
371         if (CondInfo.FoundElse) Diag(Tok, diag::pp_err_elif_after_else);
372 
373         if (Callbacks)
374           Callbacks->Elif(SourceRange(ConditionalBegin, ConditionalEnd));
375 
376         // If this condition is true, enter it!
377         if (ShouldEnter) {
378           CondInfo.FoundNonSkip = true;
379           break;
380         }
381       }
382     }
383 
384     CurPPLexer->ParsingPreprocessorDirective = false;
385     // Restore comment saving mode.
386     if (CurLexer) CurLexer->SetCommentRetentionState(KeepComments);
387   }
388 
389   // Finally, if we are out of the conditional (saw an #endif or ran off the end
390   // of the file, just stop skipping and return to lexing whatever came after
391   // the #if block.
392   CurPPLexer->LexingRawMode = false;
393 
394   if (Callbacks) {
395     SourceLocation BeginLoc = ElseLoc.isValid() ? ElseLoc : IfTokenLoc;
396     Callbacks->SourceRangeSkipped(SourceRange(BeginLoc, Tok.getLocation()));
397   }
398 }
399 
400 void Preprocessor::PTHSkipExcludedConditionalBlock() {
401 
402   while (1) {
403     assert(CurPTHLexer);
404     assert(CurPTHLexer->LexingRawMode == false);
405 
406     // Skip to the next '#else', '#elif', or #endif.
407     if (CurPTHLexer->SkipBlock()) {
408       // We have reached an #endif.  Both the '#' and 'endif' tokens
409       // have been consumed by the PTHLexer.  Just pop off the condition level.
410       PPConditionalInfo CondInfo;
411       bool InCond = CurPTHLexer->popConditionalLevel(CondInfo);
412       (void)InCond;  // Silence warning in no-asserts mode.
413       assert(!InCond && "Can't be skipping if not in a conditional!");
414       break;
415     }
416 
417     // We have reached a '#else' or '#elif'.  Lex the next token to get
418     // the directive flavor.
419     Token Tok;
420     LexUnexpandedToken(Tok);
421 
422     // We can actually look up the IdentifierInfo here since we aren't in
423     // raw mode.
424     tok::PPKeywordKind K = Tok.getIdentifierInfo()->getPPKeywordID();
425 
426     if (K == tok::pp_else) {
427       // #else: Enter the else condition.  We aren't in a nested condition
428       //  since we skip those. We're always in the one matching the last
429       //  blocked we skipped.
430       PPConditionalInfo &CondInfo = CurPTHLexer->peekConditionalLevel();
431       // Note that we've seen a #else in this conditional.
432       CondInfo.FoundElse = true;
433 
434       // If the #if block wasn't entered then enter the #else block now.
435       if (!CondInfo.FoundNonSkip) {
436         CondInfo.FoundNonSkip = true;
437 
438         // Scan until the eod token.
439         CurPTHLexer->ParsingPreprocessorDirective = true;
440         DiscardUntilEndOfDirective();
441         CurPTHLexer->ParsingPreprocessorDirective = false;
442 
443         break;
444       }
445 
446       // Otherwise skip this block.
447       continue;
448     }
449 
450     assert(K == tok::pp_elif);
451     PPConditionalInfo &CondInfo = CurPTHLexer->peekConditionalLevel();
452 
453     // If this is a #elif with a #else before it, report the error.
454     if (CondInfo.FoundElse)
455       Diag(Tok, diag::pp_err_elif_after_else);
456 
457     // If this is in a skipping block or if we're already handled this #if
458     // block, don't bother parsing the condition.  We just skip this block.
459     if (CondInfo.FoundNonSkip)
460       continue;
461 
462     // Evaluate the condition of the #elif.
463     IdentifierInfo *IfNDefMacro = 0;
464     CurPTHLexer->ParsingPreprocessorDirective = true;
465     bool ShouldEnter = EvaluateDirectiveExpression(IfNDefMacro);
466     CurPTHLexer->ParsingPreprocessorDirective = false;
467 
468     // If this condition is true, enter it!
469     if (ShouldEnter) {
470       CondInfo.FoundNonSkip = true;
471       break;
472     }
473 
474     // Otherwise, skip this block and go to the next one.
475     continue;
476   }
477 }
478 
479 /// LookupFile - Given a "foo" or <foo> reference, look up the indicated file,
480 /// return null on failure.  isAngled indicates whether the file reference is
481 /// for system #include's or not (i.e. using <> instead of "").
482 const FileEntry *Preprocessor::LookupFile(
483     StringRef Filename,
484     bool isAngled,
485     const DirectoryLookup *FromDir,
486     const DirectoryLookup *&CurDir,
487     SmallVectorImpl<char> *SearchPath,
488     SmallVectorImpl<char> *RelativePath,
489     StringRef *SuggestedModule) {
490   // If the header lookup mechanism may be relative to the current file, pass in
491   // info about where the current file is.
492   const FileEntry *CurFileEnt = 0;
493   if (!FromDir) {
494     FileID FID = getCurrentFileLexer()->getFileID();
495     CurFileEnt = SourceMgr.getFileEntryForID(FID);
496 
497     // If there is no file entry associated with this file, it must be the
498     // predefines buffer.  Any other file is not lexed with a normal lexer, so
499     // it won't be scanned for preprocessor directives.   If we have the
500     // predefines buffer, resolve #include references (which come from the
501     // -include command line argument) as if they came from the main file, this
502     // affects file lookup etc.
503     if (CurFileEnt == 0) {
504       FID = SourceMgr.getMainFileID();
505       CurFileEnt = SourceMgr.getFileEntryForID(FID);
506     }
507   }
508 
509   // Do a standard file entry lookup.
510   CurDir = CurDirLookup;
511   const FileEntry *FE = HeaderInfo.LookupFile(
512       Filename, isAngled, FromDir, CurDir, CurFileEnt,
513       SearchPath, RelativePath, SuggestedModule);
514   if (FE) return FE;
515 
516   // Otherwise, see if this is a subframework header.  If so, this is relative
517   // to one of the headers on the #include stack.  Walk the list of the current
518   // headers on the #include stack and pass them to HeaderInfo.
519   // FIXME: SuggestedModule!
520   if (IsFileLexer()) {
521     if ((CurFileEnt = SourceMgr.getFileEntryForID(CurPPLexer->getFileID())))
522       if ((FE = HeaderInfo.LookupSubframeworkHeader(Filename, CurFileEnt,
523                                                     SearchPath, RelativePath)))
524         return FE;
525   }
526 
527   for (unsigned i = 0, e = IncludeMacroStack.size(); i != e; ++i) {
528     IncludeStackInfo &ISEntry = IncludeMacroStack[e-i-1];
529     if (IsFileLexer(ISEntry)) {
530       if ((CurFileEnt =
531            SourceMgr.getFileEntryForID(ISEntry.ThePPLexer->getFileID())))
532         if ((FE = HeaderInfo.LookupSubframeworkHeader(
533                 Filename, CurFileEnt, SearchPath, RelativePath)))
534           return FE;
535     }
536   }
537 
538   // Otherwise, we really couldn't find the file.
539   return 0;
540 }
541 
542 
543 //===----------------------------------------------------------------------===//
544 // Preprocessor Directive Handling.
545 //===----------------------------------------------------------------------===//
546 
547 /// HandleDirective - This callback is invoked when the lexer sees a # token
548 /// at the start of a line.  This consumes the directive, modifies the
549 /// lexer/preprocessor state, and advances the lexer(s) so that the next token
550 /// read is the correct one.
551 void Preprocessor::HandleDirective(Token &Result) {
552   // FIXME: Traditional: # with whitespace before it not recognized by K&R?
553 
554   // We just parsed a # character at the start of a line, so we're in directive
555   // mode.  Tell the lexer this so any newlines we see will be converted into an
556   // EOD token (which terminates the directive).
557   CurPPLexer->ParsingPreprocessorDirective = true;
558 
559   ++NumDirectives;
560 
561   // We are about to read a token.  For the multiple-include optimization FA to
562   // work, we have to remember if we had read any tokens *before* this
563   // pp-directive.
564   bool ReadAnyTokensBeforeDirective =CurPPLexer->MIOpt.getHasReadAnyTokensVal();
565 
566   // Save the '#' token in case we need to return it later.
567   Token SavedHash = Result;
568 
569   // Read the next token, the directive flavor.  This isn't expanded due to
570   // C99 6.10.3p8.
571   LexUnexpandedToken(Result);
572 
573   // C99 6.10.3p11: Is this preprocessor directive in macro invocation?  e.g.:
574   //   #define A(x) #x
575   //   A(abc
576   //     #warning blah
577   //   def)
578   // If so, the user is relying on non-portable behavior, emit a diagnostic.
579   if (InMacroArgs)
580     Diag(Result, diag::ext_embedded_directive);
581 
582 TryAgain:
583   switch (Result.getKind()) {
584   case tok::eod:
585     return;   // null directive.
586   case tok::comment:
587     // Handle stuff like "# /*foo*/ define X" in -E -C mode.
588     LexUnexpandedToken(Result);
589     goto TryAgain;
590   case tok::code_completion:
591     if (CodeComplete)
592       CodeComplete->CodeCompleteDirective(
593                                     CurPPLexer->getConditionalStackDepth() > 0);
594     setCodeCompletionReached();
595     return;
596   case tok::numeric_constant:  // # 7  GNU line marker directive.
597     if (getLangOptions().AsmPreprocessor)
598       break;  // # 4 is not a preprocessor directive in .S files.
599     return HandleDigitDirective(Result);
600   default:
601     IdentifierInfo *II = Result.getIdentifierInfo();
602     if (II == 0) break;  // Not an identifier.
603 
604     // Ask what the preprocessor keyword ID is.
605     switch (II->getPPKeywordID()) {
606     default: break;
607     // C99 6.10.1 - Conditional Inclusion.
608     case tok::pp_if:
609       return HandleIfDirective(Result, ReadAnyTokensBeforeDirective);
610     case tok::pp_ifdef:
611       return HandleIfdefDirective(Result, false, true/*not valid for miopt*/);
612     case tok::pp_ifndef:
613       return HandleIfdefDirective(Result, true, ReadAnyTokensBeforeDirective);
614     case tok::pp_elif:
615       return HandleElifDirective(Result);
616     case tok::pp_else:
617       return HandleElseDirective(Result);
618     case tok::pp_endif:
619       return HandleEndifDirective(Result);
620 
621     // C99 6.10.2 - Source File Inclusion.
622     case tok::pp_include:
623       // Handle #include.
624       return HandleIncludeDirective(SavedHash.getLocation(), Result);
625     case tok::pp___include_macros:
626       // Handle -imacros.
627       return HandleIncludeMacrosDirective(SavedHash.getLocation(), Result);
628 
629     // C99 6.10.3 - Macro Replacement.
630     case tok::pp_define:
631       return HandleDefineDirective(Result);
632     case tok::pp_undef:
633       return HandleUndefDirective(Result);
634 
635     // C99 6.10.4 - Line Control.
636     case tok::pp_line:
637       return HandleLineDirective(Result);
638 
639     // C99 6.10.5 - Error Directive.
640     case tok::pp_error:
641       return HandleUserDiagnosticDirective(Result, false);
642 
643     // C99 6.10.6 - Pragma Directive.
644     case tok::pp_pragma:
645       return HandlePragmaDirective(PIK_HashPragma);
646 
647     // GNU Extensions.
648     case tok::pp_import:
649       return HandleImportDirective(SavedHash.getLocation(), Result);
650     case tok::pp_include_next:
651       return HandleIncludeNextDirective(SavedHash.getLocation(), Result);
652 
653     case tok::pp_warning:
654       Diag(Result, diag::ext_pp_warning_directive);
655       return HandleUserDiagnosticDirective(Result, true);
656     case tok::pp_ident:
657       return HandleIdentSCCSDirective(Result);
658     case tok::pp_sccs:
659       return HandleIdentSCCSDirective(Result);
660     case tok::pp_assert:
661       //isExtension = true;  // FIXME: implement #assert
662       break;
663     case tok::pp_unassert:
664       //isExtension = true;  // FIXME: implement #unassert
665       break;
666 
667     case tok::pp___export_macro__:
668       return HandleMacroExportDirective(Result);
669     }
670     break;
671   }
672 
673   // If this is a .S file, treat unknown # directives as non-preprocessor
674   // directives.  This is important because # may be a comment or introduce
675   // various pseudo-ops.  Just return the # token and push back the following
676   // token to be lexed next time.
677   if (getLangOptions().AsmPreprocessor) {
678     Token *Toks = new Token[2];
679     // Return the # and the token after it.
680     Toks[0] = SavedHash;
681     Toks[1] = Result;
682 
683     // If the second token is a hashhash token, then we need to translate it to
684     // unknown so the token lexer doesn't try to perform token pasting.
685     if (Result.is(tok::hashhash))
686       Toks[1].setKind(tok::unknown);
687 
688     // Enter this token stream so that we re-lex the tokens.  Make sure to
689     // enable macro expansion, in case the token after the # is an identifier
690     // that is expanded.
691     EnterTokenStream(Toks, 2, false, true);
692     return;
693   }
694 
695   // If we reached here, the preprocessing token is not valid!
696   Diag(Result, diag::err_pp_invalid_directive);
697 
698   // Read the rest of the PP line.
699   DiscardUntilEndOfDirective();
700 
701   // Okay, we're done parsing the directive.
702 }
703 
704 /// GetLineValue - Convert a numeric token into an unsigned value, emitting
705 /// Diagnostic DiagID if it is invalid, and returning the value in Val.
706 static bool GetLineValue(Token &DigitTok, unsigned &Val,
707                          unsigned DiagID, Preprocessor &PP) {
708   if (DigitTok.isNot(tok::numeric_constant)) {
709     PP.Diag(DigitTok, DiagID);
710 
711     if (DigitTok.isNot(tok::eod))
712       PP.DiscardUntilEndOfDirective();
713     return true;
714   }
715 
716   llvm::SmallString<64> IntegerBuffer;
717   IntegerBuffer.resize(DigitTok.getLength());
718   const char *DigitTokBegin = &IntegerBuffer[0];
719   bool Invalid = false;
720   unsigned ActualLength = PP.getSpelling(DigitTok, DigitTokBegin, &Invalid);
721   if (Invalid)
722     return true;
723 
724   // Verify that we have a simple digit-sequence, and compute the value.  This
725   // is always a simple digit string computed in decimal, so we do this manually
726   // here.
727   Val = 0;
728   for (unsigned i = 0; i != ActualLength; ++i) {
729     if (!isdigit(DigitTokBegin[i])) {
730       PP.Diag(PP.AdvanceToTokenCharacter(DigitTok.getLocation(), i),
731               diag::err_pp_line_digit_sequence);
732       PP.DiscardUntilEndOfDirective();
733       return true;
734     }
735 
736     unsigned NextVal = Val*10+(DigitTokBegin[i]-'0');
737     if (NextVal < Val) { // overflow.
738       PP.Diag(DigitTok, DiagID);
739       PP.DiscardUntilEndOfDirective();
740       return true;
741     }
742     Val = NextVal;
743   }
744 
745   // Reject 0, this is needed both by #line numbers and flags.
746   if (Val == 0) {
747     PP.Diag(DigitTok, DiagID);
748     PP.DiscardUntilEndOfDirective();
749     return true;
750   }
751 
752   if (DigitTokBegin[0] == '0')
753     PP.Diag(DigitTok.getLocation(), diag::warn_pp_line_decimal);
754 
755   return false;
756 }
757 
758 /// HandleLineDirective - Handle #line directive: C99 6.10.4.  The two
759 /// acceptable forms are:
760 ///   # line digit-sequence
761 ///   # line digit-sequence "s-char-sequence"
762 void Preprocessor::HandleLineDirective(Token &Tok) {
763   // Read the line # and string argument.  Per C99 6.10.4p5, these tokens are
764   // expanded.
765   Token DigitTok;
766   Lex(DigitTok);
767 
768   // Validate the number and convert it to an unsigned.
769   unsigned LineNo;
770   if (GetLineValue(DigitTok, LineNo, diag::err_pp_line_requires_integer,*this))
771     return;
772 
773   // Enforce C99 6.10.4p3: "The digit sequence shall not specify ... a
774   // number greater than 2147483647".  C90 requires that the line # be <= 32767.
775   unsigned LineLimit = Features.C99 ? 2147483648U : 32768U;
776   if (LineNo >= LineLimit)
777     Diag(DigitTok, diag::ext_pp_line_too_big) << LineLimit;
778 
779   int FilenameID = -1;
780   Token StrTok;
781   Lex(StrTok);
782 
783   // If the StrTok is "eod", then it wasn't present.  Otherwise, it must be a
784   // string followed by eod.
785   if (StrTok.is(tok::eod))
786     ; // ok
787   else if (StrTok.isNot(tok::string_literal)) {
788     Diag(StrTok, diag::err_pp_line_invalid_filename);
789     DiscardUntilEndOfDirective();
790     return;
791   } else {
792     // Parse and validate the string, converting it into a unique ID.
793     StringLiteralParser Literal(&StrTok, 1, *this);
794     assert(Literal.isAscii() && "Didn't allow wide strings in");
795     if (Literal.hadError)
796       return DiscardUntilEndOfDirective();
797     if (Literal.Pascal) {
798       Diag(StrTok, diag::err_pp_linemarker_invalid_filename);
799       return DiscardUntilEndOfDirective();
800     }
801     FilenameID = SourceMgr.getLineTableFilenameID(Literal.GetString());
802 
803     // Verify that there is nothing after the string, other than EOD.  Because
804     // of C99 6.10.4p5, macros that expand to empty tokens are ok.
805     CheckEndOfDirective("line", true);
806   }
807 
808   SourceMgr.AddLineNote(DigitTok.getLocation(), LineNo, FilenameID);
809 
810   if (Callbacks)
811     Callbacks->FileChanged(CurPPLexer->getSourceLocation(),
812                            PPCallbacks::RenameFile,
813                            SrcMgr::C_User);
814 }
815 
816 /// ReadLineMarkerFlags - Parse and validate any flags at the end of a GNU line
817 /// marker directive.
818 static bool ReadLineMarkerFlags(bool &IsFileEntry, bool &IsFileExit,
819                                 bool &IsSystemHeader, bool &IsExternCHeader,
820                                 Preprocessor &PP) {
821   unsigned FlagVal;
822   Token FlagTok;
823   PP.Lex(FlagTok);
824   if (FlagTok.is(tok::eod)) return false;
825   if (GetLineValue(FlagTok, FlagVal, diag::err_pp_linemarker_invalid_flag, PP))
826     return true;
827 
828   if (FlagVal == 1) {
829     IsFileEntry = true;
830 
831     PP.Lex(FlagTok);
832     if (FlagTok.is(tok::eod)) return false;
833     if (GetLineValue(FlagTok, FlagVal, diag::err_pp_linemarker_invalid_flag,PP))
834       return true;
835   } else if (FlagVal == 2) {
836     IsFileExit = true;
837 
838     SourceManager &SM = PP.getSourceManager();
839     // If we are leaving the current presumed file, check to make sure the
840     // presumed include stack isn't empty!
841     FileID CurFileID =
842       SM.getDecomposedExpansionLoc(FlagTok.getLocation()).first;
843     PresumedLoc PLoc = SM.getPresumedLoc(FlagTok.getLocation());
844     if (PLoc.isInvalid())
845       return true;
846 
847     // If there is no include loc (main file) or if the include loc is in a
848     // different physical file, then we aren't in a "1" line marker flag region.
849     SourceLocation IncLoc = PLoc.getIncludeLoc();
850     if (IncLoc.isInvalid() ||
851         SM.getDecomposedExpansionLoc(IncLoc).first != CurFileID) {
852       PP.Diag(FlagTok, diag::err_pp_linemarker_invalid_pop);
853       PP.DiscardUntilEndOfDirective();
854       return true;
855     }
856 
857     PP.Lex(FlagTok);
858     if (FlagTok.is(tok::eod)) return false;
859     if (GetLineValue(FlagTok, FlagVal, diag::err_pp_linemarker_invalid_flag,PP))
860       return true;
861   }
862 
863   // We must have 3 if there are still flags.
864   if (FlagVal != 3) {
865     PP.Diag(FlagTok, diag::err_pp_linemarker_invalid_flag);
866     PP.DiscardUntilEndOfDirective();
867     return true;
868   }
869 
870   IsSystemHeader = true;
871 
872   PP.Lex(FlagTok);
873   if (FlagTok.is(tok::eod)) return false;
874   if (GetLineValue(FlagTok, FlagVal, diag::err_pp_linemarker_invalid_flag, PP))
875     return true;
876 
877   // We must have 4 if there is yet another flag.
878   if (FlagVal != 4) {
879     PP.Diag(FlagTok, diag::err_pp_linemarker_invalid_flag);
880     PP.DiscardUntilEndOfDirective();
881     return true;
882   }
883 
884   IsExternCHeader = true;
885 
886   PP.Lex(FlagTok);
887   if (FlagTok.is(tok::eod)) return false;
888 
889   // There are no more valid flags here.
890   PP.Diag(FlagTok, diag::err_pp_linemarker_invalid_flag);
891   PP.DiscardUntilEndOfDirective();
892   return true;
893 }
894 
895 /// HandleDigitDirective - Handle a GNU line marker directive, whose syntax is
896 /// one of the following forms:
897 ///
898 ///     # 42
899 ///     # 42 "file" ('1' | '2')?
900 ///     # 42 "file" ('1' | '2')? '3' '4'?
901 ///
902 void Preprocessor::HandleDigitDirective(Token &DigitTok) {
903   // Validate the number and convert it to an unsigned.  GNU does not have a
904   // line # limit other than it fit in 32-bits.
905   unsigned LineNo;
906   if (GetLineValue(DigitTok, LineNo, diag::err_pp_linemarker_requires_integer,
907                    *this))
908     return;
909 
910   Token StrTok;
911   Lex(StrTok);
912 
913   bool IsFileEntry = false, IsFileExit = false;
914   bool IsSystemHeader = false, IsExternCHeader = false;
915   int FilenameID = -1;
916 
917   // If the StrTok is "eod", then it wasn't present.  Otherwise, it must be a
918   // string followed by eod.
919   if (StrTok.is(tok::eod))
920     ; // ok
921   else if (StrTok.isNot(tok::string_literal)) {
922     Diag(StrTok, diag::err_pp_linemarker_invalid_filename);
923     return DiscardUntilEndOfDirective();
924   } else {
925     // Parse and validate the string, converting it into a unique ID.
926     StringLiteralParser Literal(&StrTok, 1, *this);
927     assert(Literal.isAscii() && "Didn't allow wide strings in");
928     if (Literal.hadError)
929       return DiscardUntilEndOfDirective();
930     if (Literal.Pascal) {
931       Diag(StrTok, diag::err_pp_linemarker_invalid_filename);
932       return DiscardUntilEndOfDirective();
933     }
934     FilenameID = SourceMgr.getLineTableFilenameID(Literal.GetString());
935 
936     // If a filename was present, read any flags that are present.
937     if (ReadLineMarkerFlags(IsFileEntry, IsFileExit,
938                             IsSystemHeader, IsExternCHeader, *this))
939       return;
940   }
941 
942   // Create a line note with this information.
943   SourceMgr.AddLineNote(DigitTok.getLocation(), LineNo, FilenameID,
944                         IsFileEntry, IsFileExit,
945                         IsSystemHeader, IsExternCHeader);
946 
947   // If the preprocessor has callbacks installed, notify them of the #line
948   // change.  This is used so that the line marker comes out in -E mode for
949   // example.
950   if (Callbacks) {
951     PPCallbacks::FileChangeReason Reason = PPCallbacks::RenameFile;
952     if (IsFileEntry)
953       Reason = PPCallbacks::EnterFile;
954     else if (IsFileExit)
955       Reason = PPCallbacks::ExitFile;
956     SrcMgr::CharacteristicKind FileKind = SrcMgr::C_User;
957     if (IsExternCHeader)
958       FileKind = SrcMgr::C_ExternCSystem;
959     else if (IsSystemHeader)
960       FileKind = SrcMgr::C_System;
961 
962     Callbacks->FileChanged(CurPPLexer->getSourceLocation(), Reason, FileKind);
963   }
964 }
965 
966 
967 /// HandleUserDiagnosticDirective - Handle a #warning or #error directive.
968 ///
969 void Preprocessor::HandleUserDiagnosticDirective(Token &Tok,
970                                                  bool isWarning) {
971   // PTH doesn't emit #warning or #error directives.
972   if (CurPTHLexer)
973     return CurPTHLexer->DiscardToEndOfLine();
974 
975   // Read the rest of the line raw.  We do this because we don't want macros
976   // to be expanded and we don't require that the tokens be valid preprocessing
977   // tokens.  For example, this is allowed: "#warning `   'foo".  GCC does
978   // collapse multiple consequtive white space between tokens, but this isn't
979   // specified by the standard.
980   std::string Message = CurLexer->ReadToEndOfLine();
981   if (isWarning)
982     Diag(Tok, diag::pp_hash_warning) << Message;
983   else
984     Diag(Tok, diag::err_pp_hash_error) << Message;
985 }
986 
987 /// HandleIdentSCCSDirective - Handle a #ident/#sccs directive.
988 ///
989 void Preprocessor::HandleIdentSCCSDirective(Token &Tok) {
990   // Yes, this directive is an extension.
991   Diag(Tok, diag::ext_pp_ident_directive);
992 
993   // Read the string argument.
994   Token StrTok;
995   Lex(StrTok);
996 
997   // If the token kind isn't a string, it's a malformed directive.
998   if (StrTok.isNot(tok::string_literal) &&
999       StrTok.isNot(tok::wide_string_literal)) {
1000     Diag(StrTok, diag::err_pp_malformed_ident);
1001     if (StrTok.isNot(tok::eod))
1002       DiscardUntilEndOfDirective();
1003     return;
1004   }
1005 
1006   // Verify that there is nothing after the string, other than EOD.
1007   CheckEndOfDirective("ident");
1008 
1009   if (Callbacks) {
1010     bool Invalid = false;
1011     std::string Str = getSpelling(StrTok, &Invalid);
1012     if (!Invalid)
1013       Callbacks->Ident(Tok.getLocation(), Str);
1014   }
1015 }
1016 
1017 /// \brief Handle a #__export_macro__ directive.
1018 void Preprocessor::HandleMacroExportDirective(Token &Tok) {
1019   Token MacroNameTok;
1020   ReadMacroName(MacroNameTok, 2);
1021 
1022   // Error reading macro name?  If so, diagnostic already issued.
1023   if (MacroNameTok.is(tok::eod))
1024     return;
1025 
1026   // Check to see if this is the last token on the #__export_macro__ line.
1027   CheckEndOfDirective("__export_macro__");
1028 
1029   // Okay, we finally have a valid identifier to undef.
1030   MacroInfo *MI = getMacroInfo(MacroNameTok.getIdentifierInfo());
1031 
1032   // If the macro is not defined, this is an error.
1033   if (MI == 0) {
1034     Diag(MacroNameTok, diag::err_pp_export_non_macro)
1035       << MacroNameTok.getIdentifierInfo();
1036     return;
1037   }
1038 
1039   // Note that this macro has now been exported.
1040   MI->setExportLocation(MacroNameTok.getLocation());
1041 
1042   // If this macro definition came from a PCH file, mark it
1043   // as having changed since serialization.
1044   if (MI->isFromAST())
1045     MI->setChangedAfterLoad();
1046 }
1047 
1048 //===----------------------------------------------------------------------===//
1049 // Preprocessor Include Directive Handling.
1050 //===----------------------------------------------------------------------===//
1051 
1052 /// GetIncludeFilenameSpelling - Turn the specified lexer token into a fully
1053 /// checked and spelled filename, e.g. as an operand of #include. This returns
1054 /// true if the input filename was in <>'s or false if it were in ""'s.  The
1055 /// caller is expected to provide a buffer that is large enough to hold the
1056 /// spelling of the filename, but is also expected to handle the case when
1057 /// this method decides to use a different buffer.
1058 bool Preprocessor::GetIncludeFilenameSpelling(SourceLocation Loc,
1059                                               StringRef &Buffer) {
1060   // Get the text form of the filename.
1061   assert(!Buffer.empty() && "Can't have tokens with empty spellings!");
1062 
1063   // Make sure the filename is <x> or "x".
1064   bool isAngled;
1065   if (Buffer[0] == '<') {
1066     if (Buffer.back() != '>') {
1067       Diag(Loc, diag::err_pp_expects_filename);
1068       Buffer = StringRef();
1069       return true;
1070     }
1071     isAngled = true;
1072   } else if (Buffer[0] == '"') {
1073     if (Buffer.back() != '"') {
1074       Diag(Loc, diag::err_pp_expects_filename);
1075       Buffer = StringRef();
1076       return true;
1077     }
1078     isAngled = false;
1079   } else {
1080     Diag(Loc, diag::err_pp_expects_filename);
1081     Buffer = StringRef();
1082     return true;
1083   }
1084 
1085   // Diagnose #include "" as invalid.
1086   if (Buffer.size() <= 2) {
1087     Diag(Loc, diag::err_pp_empty_filename);
1088     Buffer = StringRef();
1089     return true;
1090   }
1091 
1092   // Skip the brackets.
1093   Buffer = Buffer.substr(1, Buffer.size()-2);
1094   return isAngled;
1095 }
1096 
1097 /// ConcatenateIncludeName - Handle cases where the #include name is expanded
1098 /// from a macro as multiple tokens, which need to be glued together.  This
1099 /// occurs for code like:
1100 ///    #define FOO <a/b.h>
1101 ///    #include FOO
1102 /// because in this case, "<a/b.h>" is returned as 7 tokens, not one.
1103 ///
1104 /// This code concatenates and consumes tokens up to the '>' token.  It returns
1105 /// false if the > was found, otherwise it returns true if it finds and consumes
1106 /// the EOD marker.
1107 bool Preprocessor::ConcatenateIncludeName(
1108                                         llvm::SmallString<128> &FilenameBuffer,
1109                                           SourceLocation &End) {
1110   Token CurTok;
1111 
1112   Lex(CurTok);
1113   while (CurTok.isNot(tok::eod)) {
1114     End = CurTok.getLocation();
1115 
1116     // FIXME: Provide code completion for #includes.
1117     if (CurTok.is(tok::code_completion)) {
1118       setCodeCompletionReached();
1119       Lex(CurTok);
1120       continue;
1121     }
1122 
1123     // Append the spelling of this token to the buffer. If there was a space
1124     // before it, add it now.
1125     if (CurTok.hasLeadingSpace())
1126       FilenameBuffer.push_back(' ');
1127 
1128     // Get the spelling of the token, directly into FilenameBuffer if possible.
1129     unsigned PreAppendSize = FilenameBuffer.size();
1130     FilenameBuffer.resize(PreAppendSize+CurTok.getLength());
1131 
1132     const char *BufPtr = &FilenameBuffer[PreAppendSize];
1133     unsigned ActualLen = getSpelling(CurTok, BufPtr);
1134 
1135     // If the token was spelled somewhere else, copy it into FilenameBuffer.
1136     if (BufPtr != &FilenameBuffer[PreAppendSize])
1137       memcpy(&FilenameBuffer[PreAppendSize], BufPtr, ActualLen);
1138 
1139     // Resize FilenameBuffer to the correct size.
1140     if (CurTok.getLength() != ActualLen)
1141       FilenameBuffer.resize(PreAppendSize+ActualLen);
1142 
1143     // If we found the '>' marker, return success.
1144     if (CurTok.is(tok::greater))
1145       return false;
1146 
1147     Lex(CurTok);
1148   }
1149 
1150   // If we hit the eod marker, emit an error and return true so that the caller
1151   // knows the EOD has been read.
1152   Diag(CurTok.getLocation(), diag::err_pp_expects_filename);
1153   return true;
1154 }
1155 
1156 /// HandleIncludeDirective - The "#include" tokens have just been read, read the
1157 /// file to be included from the lexer, then include it!  This is a common
1158 /// routine with functionality shared between #include, #include_next and
1159 /// #import.  LookupFrom is set when this is a #include_next directive, it
1160 /// specifies the file to start searching from.
1161 void Preprocessor::HandleIncludeDirective(SourceLocation HashLoc,
1162                                           Token &IncludeTok,
1163                                           const DirectoryLookup *LookupFrom,
1164                                           bool isImport) {
1165 
1166   Token FilenameTok;
1167   CurPPLexer->LexIncludeFilename(FilenameTok);
1168 
1169   // Reserve a buffer to get the spelling.
1170   llvm::SmallString<128> FilenameBuffer;
1171   StringRef Filename;
1172   SourceLocation End;
1173 
1174   switch (FilenameTok.getKind()) {
1175   case tok::eod:
1176     // If the token kind is EOD, the error has already been diagnosed.
1177     return;
1178 
1179   case tok::angle_string_literal:
1180   case tok::string_literal:
1181     Filename = getSpelling(FilenameTok, FilenameBuffer);
1182     End = FilenameTok.getLocation();
1183     break;
1184 
1185   case tok::less:
1186     // This could be a <foo/bar.h> file coming from a macro expansion.  In this
1187     // case, glue the tokens together into FilenameBuffer and interpret those.
1188     FilenameBuffer.push_back('<');
1189     if (ConcatenateIncludeName(FilenameBuffer, End))
1190       return;   // Found <eod> but no ">"?  Diagnostic already emitted.
1191     Filename = FilenameBuffer.str();
1192     break;
1193   default:
1194     Diag(FilenameTok.getLocation(), diag::err_pp_expects_filename);
1195     DiscardUntilEndOfDirective();
1196     return;
1197   }
1198 
1199   bool isAngled =
1200     GetIncludeFilenameSpelling(FilenameTok.getLocation(), Filename);
1201   // If GetIncludeFilenameSpelling set the start ptr to null, there was an
1202   // error.
1203   if (Filename.empty()) {
1204     DiscardUntilEndOfDirective();
1205     return;
1206   }
1207 
1208   // Verify that there is nothing after the filename, other than EOD.  Note that
1209   // we allow macros that expand to nothing after the filename, because this
1210   // falls into the category of "#include pp-tokens new-line" specified in
1211   // C99 6.10.2p4.
1212   CheckEndOfDirective(IncludeTok.getIdentifierInfo()->getNameStart(), true);
1213 
1214   // Check that we don't have infinite #include recursion.
1215   if (IncludeMacroStack.size() == MaxAllowedIncludeStackDepth-1) {
1216     Diag(FilenameTok, diag::err_pp_include_too_deep);
1217     return;
1218   }
1219 
1220   // Complain about attempts to #include files in an audit pragma.
1221   if (PragmaARCCFCodeAuditedLoc.isValid()) {
1222     Diag(HashLoc, diag::err_pp_include_in_arc_cf_code_audited);
1223     Diag(PragmaARCCFCodeAuditedLoc, diag::note_pragma_entered_here);
1224 
1225     // Immediately leave the pragma.
1226     PragmaARCCFCodeAuditedLoc = SourceLocation();
1227   }
1228 
1229   // Search include directories.
1230   const DirectoryLookup *CurDir;
1231   llvm::SmallString<1024> SearchPath;
1232   llvm::SmallString<1024> RelativePath;
1233   // We get the raw path only if we have 'Callbacks' to which we later pass
1234   // the path.
1235   StringRef SuggestedModule;
1236   const FileEntry *File = LookupFile(
1237       Filename, isAngled, LookupFrom, CurDir,
1238       Callbacks ? &SearchPath : NULL, Callbacks ? &RelativePath : NULL,
1239       AutoModuleImport? &SuggestedModule : 0);
1240 
1241   // If we are supposed to import a module rather than including the header,
1242   // do so now.
1243   if (!SuggestedModule.empty()) {
1244     TheModuleLoader.loadModule(IncludeTok.getLocation(),
1245                                Identifiers.get(SuggestedModule),
1246                                FilenameTok.getLocation());
1247     return;
1248   }
1249 
1250   // Notify the callback object that we've seen an inclusion directive.
1251   if (Callbacks)
1252     Callbacks->InclusionDirective(HashLoc, IncludeTok, Filename, isAngled, File,
1253                                   End, SearchPath, RelativePath);
1254 
1255   if (File == 0) {
1256     if (!SuppressIncludeNotFoundError)
1257       Diag(FilenameTok, diag::err_pp_file_not_found) << Filename;
1258     return;
1259   }
1260 
1261   // The #included file will be considered to be a system header if either it is
1262   // in a system include directory, or if the #includer is a system include
1263   // header.
1264   SrcMgr::CharacteristicKind FileCharacter =
1265     std::max(HeaderInfo.getFileDirFlavor(File),
1266              SourceMgr.getFileCharacteristic(FilenameTok.getLocation()));
1267 
1268   // Ask HeaderInfo if we should enter this #include file.  If not, #including
1269   // this file will have no effect.
1270   if (!HeaderInfo.ShouldEnterIncludeFile(File, isImport)) {
1271     if (Callbacks)
1272       Callbacks->FileSkipped(*File, FilenameTok, FileCharacter);
1273     return;
1274   }
1275 
1276   // Look up the file, create a File ID for it.
1277   FileID FID = SourceMgr.createFileID(File, FilenameTok.getLocation(),
1278                                       FileCharacter);
1279   assert(!FID.isInvalid() && "Expected valid file ID");
1280 
1281   // Finally, if all is good, enter the new file!
1282   EnterSourceFile(FID, CurDir, FilenameTok.getLocation());
1283 }
1284 
1285 /// HandleIncludeNextDirective - Implements #include_next.
1286 ///
1287 void Preprocessor::HandleIncludeNextDirective(SourceLocation HashLoc,
1288                                               Token &IncludeNextTok) {
1289   Diag(IncludeNextTok, diag::ext_pp_include_next_directive);
1290 
1291   // #include_next is like #include, except that we start searching after
1292   // the current found directory.  If we can't do this, issue a
1293   // diagnostic.
1294   const DirectoryLookup *Lookup = CurDirLookup;
1295   if (isInPrimaryFile()) {
1296     Lookup = 0;
1297     Diag(IncludeNextTok, diag::pp_include_next_in_primary);
1298   } else if (Lookup == 0) {
1299     Diag(IncludeNextTok, diag::pp_include_next_absolute_path);
1300   } else {
1301     // Start looking up in the next directory.
1302     ++Lookup;
1303   }
1304 
1305   return HandleIncludeDirective(HashLoc, IncludeNextTok, Lookup);
1306 }
1307 
1308 /// HandleImportDirective - Implements #import.
1309 ///
1310 void Preprocessor::HandleImportDirective(SourceLocation HashLoc,
1311                                          Token &ImportTok) {
1312   if (!Features.ObjC1)  // #import is standard for ObjC.
1313     Diag(ImportTok, diag::ext_pp_import_directive);
1314 
1315   return HandleIncludeDirective(HashLoc, ImportTok, 0, true);
1316 }
1317 
1318 /// HandleIncludeMacrosDirective - The -imacros command line option turns into a
1319 /// pseudo directive in the predefines buffer.  This handles it by sucking all
1320 /// tokens through the preprocessor and discarding them (only keeping the side
1321 /// effects on the preprocessor).
1322 void Preprocessor::HandleIncludeMacrosDirective(SourceLocation HashLoc,
1323                                                 Token &IncludeMacrosTok) {
1324   // This directive should only occur in the predefines buffer.  If not, emit an
1325   // error and reject it.
1326   SourceLocation Loc = IncludeMacrosTok.getLocation();
1327   if (strcmp(SourceMgr.getBufferName(Loc), "<built-in>") != 0) {
1328     Diag(IncludeMacrosTok.getLocation(),
1329          diag::pp_include_macros_out_of_predefines);
1330     DiscardUntilEndOfDirective();
1331     return;
1332   }
1333 
1334   // Treat this as a normal #include for checking purposes.  If this is
1335   // successful, it will push a new lexer onto the include stack.
1336   HandleIncludeDirective(HashLoc, IncludeMacrosTok, 0, false);
1337 
1338   Token TmpTok;
1339   do {
1340     Lex(TmpTok);
1341     assert(TmpTok.isNot(tok::eof) && "Didn't find end of -imacros!");
1342   } while (TmpTok.isNot(tok::hashhash));
1343 }
1344 
1345 //===----------------------------------------------------------------------===//
1346 // Preprocessor Macro Directive Handling.
1347 //===----------------------------------------------------------------------===//
1348 
1349 /// ReadMacroDefinitionArgList - The ( starting an argument list of a macro
1350 /// definition has just been read.  Lex the rest of the arguments and the
1351 /// closing ), updating MI with what we learn.  Return true if an error occurs
1352 /// parsing the arg list.
1353 bool Preprocessor::ReadMacroDefinitionArgList(MacroInfo *MI) {
1354   SmallVector<IdentifierInfo*, 32> Arguments;
1355 
1356   Token Tok;
1357   while (1) {
1358     LexUnexpandedToken(Tok);
1359     switch (Tok.getKind()) {
1360     case tok::r_paren:
1361       // Found the end of the argument list.
1362       if (Arguments.empty())  // #define FOO()
1363         return false;
1364       // Otherwise we have #define FOO(A,)
1365       Diag(Tok, diag::err_pp_expected_ident_in_arg_list);
1366       return true;
1367     case tok::ellipsis:  // #define X(... -> C99 varargs
1368       if (!Features.C99 && !Features.CPlusPlus0x)
1369         Diag(Tok, diag::ext_variadic_macro);
1370 
1371       // Lex the token after the identifier.
1372       LexUnexpandedToken(Tok);
1373       if (Tok.isNot(tok::r_paren)) {
1374         Diag(Tok, diag::err_pp_missing_rparen_in_macro_def);
1375         return true;
1376       }
1377       // Add the __VA_ARGS__ identifier as an argument.
1378       Arguments.push_back(Ident__VA_ARGS__);
1379       MI->setIsC99Varargs();
1380       MI->setArgumentList(&Arguments[0], Arguments.size(), BP);
1381       return false;
1382     case tok::eod:  // #define X(
1383       Diag(Tok, diag::err_pp_missing_rparen_in_macro_def);
1384       return true;
1385     default:
1386       // Handle keywords and identifiers here to accept things like
1387       // #define Foo(for) for.
1388       IdentifierInfo *II = Tok.getIdentifierInfo();
1389       if (II == 0) {
1390         // #define X(1
1391         Diag(Tok, diag::err_pp_invalid_tok_in_arg_list);
1392         return true;
1393       }
1394 
1395       // If this is already used as an argument, it is used multiple times (e.g.
1396       // #define X(A,A.
1397       if (std::find(Arguments.begin(), Arguments.end(), II) !=
1398           Arguments.end()) {  // C99 6.10.3p6
1399         Diag(Tok, diag::err_pp_duplicate_name_in_arg_list) << II;
1400         return true;
1401       }
1402 
1403       // Add the argument to the macro info.
1404       Arguments.push_back(II);
1405 
1406       // Lex the token after the identifier.
1407       LexUnexpandedToken(Tok);
1408 
1409       switch (Tok.getKind()) {
1410       default:          // #define X(A B
1411         Diag(Tok, diag::err_pp_expected_comma_in_arg_list);
1412         return true;
1413       case tok::r_paren: // #define X(A)
1414         MI->setArgumentList(&Arguments[0], Arguments.size(), BP);
1415         return false;
1416       case tok::comma:  // #define X(A,
1417         break;
1418       case tok::ellipsis:  // #define X(A... -> GCC extension
1419         // Diagnose extension.
1420         Diag(Tok, diag::ext_named_variadic_macro);
1421 
1422         // Lex the token after the identifier.
1423         LexUnexpandedToken(Tok);
1424         if (Tok.isNot(tok::r_paren)) {
1425           Diag(Tok, diag::err_pp_missing_rparen_in_macro_def);
1426           return true;
1427         }
1428 
1429         MI->setIsGNUVarargs();
1430         MI->setArgumentList(&Arguments[0], Arguments.size(), BP);
1431         return false;
1432       }
1433     }
1434   }
1435 }
1436 
1437 /// HandleDefineDirective - Implements #define.  This consumes the entire macro
1438 /// line then lets the caller lex the next real token.
1439 void Preprocessor::HandleDefineDirective(Token &DefineTok) {
1440   ++NumDefined;
1441 
1442   Token MacroNameTok;
1443   ReadMacroName(MacroNameTok, 1);
1444 
1445   // Error reading macro name?  If so, diagnostic already issued.
1446   if (MacroNameTok.is(tok::eod))
1447     return;
1448 
1449   Token LastTok = MacroNameTok;
1450 
1451   // If we are supposed to keep comments in #defines, reenable comment saving
1452   // mode.
1453   if (CurLexer) CurLexer->SetCommentRetentionState(KeepMacroComments);
1454 
1455   // Create the new macro.
1456   MacroInfo *MI = AllocateMacroInfo(MacroNameTok.getLocation());
1457 
1458   Token Tok;
1459   LexUnexpandedToken(Tok);
1460 
1461   // If this is a function-like macro definition, parse the argument list,
1462   // marking each of the identifiers as being used as macro arguments.  Also,
1463   // check other constraints on the first token of the macro body.
1464   if (Tok.is(tok::eod)) {
1465     // If there is no body to this macro, we have no special handling here.
1466   } else if (Tok.hasLeadingSpace()) {
1467     // This is a normal token with leading space.  Clear the leading space
1468     // marker on the first token to get proper expansion.
1469     Tok.clearFlag(Token::LeadingSpace);
1470   } else if (Tok.is(tok::l_paren)) {
1471     // This is a function-like macro definition.  Read the argument list.
1472     MI->setIsFunctionLike();
1473     if (ReadMacroDefinitionArgList(MI)) {
1474       // Forget about MI.
1475       ReleaseMacroInfo(MI);
1476       // Throw away the rest of the line.
1477       if (CurPPLexer->ParsingPreprocessorDirective)
1478         DiscardUntilEndOfDirective();
1479       return;
1480     }
1481 
1482     // If this is a definition of a variadic C99 function-like macro, not using
1483     // the GNU named varargs extension, enabled __VA_ARGS__.
1484 
1485     // "Poison" __VA_ARGS__, which can only appear in the expansion of a macro.
1486     // This gets unpoisoned where it is allowed.
1487     assert(Ident__VA_ARGS__->isPoisoned() && "__VA_ARGS__ should be poisoned!");
1488     if (MI->isC99Varargs())
1489       Ident__VA_ARGS__->setIsPoisoned(false);
1490 
1491     // Read the first token after the arg list for down below.
1492     LexUnexpandedToken(Tok);
1493   } else if (Features.C99) {
1494     // C99 requires whitespace between the macro definition and the body.  Emit
1495     // a diagnostic for something like "#define X+".
1496     Diag(Tok, diag::ext_c99_whitespace_required_after_macro_name);
1497   } else {
1498     // C90 6.8 TC1 says: "In the definition of an object-like macro, if the
1499     // first character of a replacement list is not a character required by
1500     // subclause 5.2.1, then there shall be white-space separation between the
1501     // identifier and the replacement list.".  5.2.1 lists this set:
1502     //   "A-Za-z0-9!"#%&'()*+,_./:;<=>?[\]^_{|}~" as well as whitespace, which
1503     // is irrelevant here.
1504     bool isInvalid = false;
1505     if (Tok.is(tok::at)) // @ is not in the list above.
1506       isInvalid = true;
1507     else if (Tok.is(tok::unknown)) {
1508       // If we have an unknown token, it is something strange like "`".  Since
1509       // all of valid characters would have lexed into a single character
1510       // token of some sort, we know this is not a valid case.
1511       isInvalid = true;
1512     }
1513     if (isInvalid)
1514       Diag(Tok, diag::ext_missing_whitespace_after_macro_name);
1515     else
1516       Diag(Tok, diag::warn_missing_whitespace_after_macro_name);
1517   }
1518 
1519   if (!Tok.is(tok::eod))
1520     LastTok = Tok;
1521 
1522   // Read the rest of the macro body.
1523   if (MI->isObjectLike()) {
1524     // Object-like macros are very simple, just read their body.
1525     while (Tok.isNot(tok::eod)) {
1526       LastTok = Tok;
1527       MI->AddTokenToBody(Tok);
1528       // Get the next token of the macro.
1529       LexUnexpandedToken(Tok);
1530     }
1531 
1532   } else {
1533     // Otherwise, read the body of a function-like macro.  While we are at it,
1534     // check C99 6.10.3.2p1: ensure that # operators are followed by macro
1535     // parameters in function-like macro expansions.
1536     while (Tok.isNot(tok::eod)) {
1537       LastTok = Tok;
1538 
1539       if (Tok.isNot(tok::hash)) {
1540         MI->AddTokenToBody(Tok);
1541 
1542         // Get the next token of the macro.
1543         LexUnexpandedToken(Tok);
1544         continue;
1545       }
1546 
1547       // Get the next token of the macro.
1548       LexUnexpandedToken(Tok);
1549 
1550       // Check for a valid macro arg identifier.
1551       if (Tok.getIdentifierInfo() == 0 ||
1552           MI->getArgumentNum(Tok.getIdentifierInfo()) == -1) {
1553 
1554         // If this is assembler-with-cpp mode, we accept random gibberish after
1555         // the '#' because '#' is often a comment character.  However, change
1556         // the kind of the token to tok::unknown so that the preprocessor isn't
1557         // confused.
1558         if (getLangOptions().AsmPreprocessor && Tok.isNot(tok::eod)) {
1559           LastTok.setKind(tok::unknown);
1560         } else {
1561           Diag(Tok, diag::err_pp_stringize_not_parameter);
1562           ReleaseMacroInfo(MI);
1563 
1564           // Disable __VA_ARGS__ again.
1565           Ident__VA_ARGS__->setIsPoisoned(true);
1566           return;
1567         }
1568       }
1569 
1570       // Things look ok, add the '#' and param name tokens to the macro.
1571       MI->AddTokenToBody(LastTok);
1572       MI->AddTokenToBody(Tok);
1573       LastTok = Tok;
1574 
1575       // Get the next token of the macro.
1576       LexUnexpandedToken(Tok);
1577     }
1578   }
1579 
1580 
1581   // Disable __VA_ARGS__ again.
1582   Ident__VA_ARGS__->setIsPoisoned(true);
1583 
1584   // Check that there is no paste (##) operator at the beginning or end of the
1585   // replacement list.
1586   unsigned NumTokens = MI->getNumTokens();
1587   if (NumTokens != 0) {
1588     if (MI->getReplacementToken(0).is(tok::hashhash)) {
1589       Diag(MI->getReplacementToken(0), diag::err_paste_at_start);
1590       ReleaseMacroInfo(MI);
1591       return;
1592     }
1593     if (MI->getReplacementToken(NumTokens-1).is(tok::hashhash)) {
1594       Diag(MI->getReplacementToken(NumTokens-1), diag::err_paste_at_end);
1595       ReleaseMacroInfo(MI);
1596       return;
1597     }
1598   }
1599 
1600   MI->setDefinitionEndLoc(LastTok.getLocation());
1601 
1602   // Finally, if this identifier already had a macro defined for it, verify that
1603   // the macro bodies are identical and free the old definition.
1604   if (MacroInfo *OtherMI = getMacroInfo(MacroNameTok.getIdentifierInfo())) {
1605     // It is very common for system headers to have tons of macro redefinitions
1606     // and for warnings to be disabled in system headers.  If this is the case,
1607     // then don't bother calling MacroInfo::isIdenticalTo.
1608     if (!getDiagnostics().getSuppressSystemWarnings() ||
1609         !SourceMgr.isInSystemHeader(DefineTok.getLocation())) {
1610       if (!OtherMI->isUsed() && OtherMI->isWarnIfUnused())
1611         Diag(OtherMI->getDefinitionLoc(), diag::pp_macro_not_used);
1612 
1613       // Macros must be identical.  This means all tokens and whitespace
1614       // separation must be the same.  C99 6.10.3.2.
1615       if (!OtherMI->isAllowRedefinitionsWithoutWarning() &&
1616           !MI->isIdenticalTo(*OtherMI, *this)) {
1617         Diag(MI->getDefinitionLoc(), diag::ext_pp_macro_redef)
1618           << MacroNameTok.getIdentifierInfo();
1619         Diag(OtherMI->getDefinitionLoc(), diag::note_previous_definition);
1620       }
1621     }
1622     if (OtherMI->isWarnIfUnused())
1623       WarnUnusedMacroLocs.erase(OtherMI->getDefinitionLoc());
1624     ReleaseMacroInfo(OtherMI);
1625   }
1626 
1627   setMacroInfo(MacroNameTok.getIdentifierInfo(), MI);
1628 
1629   assert(!MI->isUsed());
1630   // If we need warning for not using the macro, add its location in the
1631   // warn-because-unused-macro set. If it gets used it will be removed from set.
1632   if (isInPrimaryFile() && // don't warn for include'd macros.
1633       Diags->getDiagnosticLevel(diag::pp_macro_not_used,
1634           MI->getDefinitionLoc()) != DiagnosticsEngine::Ignored) {
1635     MI->setIsWarnIfUnused(true);
1636     WarnUnusedMacroLocs.insert(MI->getDefinitionLoc());
1637   }
1638 
1639   // If the callbacks want to know, tell them about the macro definition.
1640   if (Callbacks)
1641     Callbacks->MacroDefined(MacroNameTok, MI);
1642 }
1643 
1644 /// HandleUndefDirective - Implements #undef.
1645 ///
1646 void Preprocessor::HandleUndefDirective(Token &UndefTok) {
1647   ++NumUndefined;
1648 
1649   Token MacroNameTok;
1650   ReadMacroName(MacroNameTok, 2);
1651 
1652   // Error reading macro name?  If so, diagnostic already issued.
1653   if (MacroNameTok.is(tok::eod))
1654     return;
1655 
1656   // Check to see if this is the last token on the #undef line.
1657   CheckEndOfDirective("undef");
1658 
1659   // Okay, we finally have a valid identifier to undef.
1660   MacroInfo *MI = getMacroInfo(MacroNameTok.getIdentifierInfo());
1661 
1662   // If the macro is not defined, this is a noop undef, just return.
1663   if (MI == 0) return;
1664 
1665   if (!MI->isUsed() && MI->isWarnIfUnused())
1666     Diag(MI->getDefinitionLoc(), diag::pp_macro_not_used);
1667 
1668   // If the callbacks want to know, tell them about the macro #undef.
1669   if (Callbacks)
1670     Callbacks->MacroUndefined(MacroNameTok, MI);
1671 
1672   if (MI->isWarnIfUnused())
1673     WarnUnusedMacroLocs.erase(MI->getDefinitionLoc());
1674 
1675   // Free macro definition.
1676   ReleaseMacroInfo(MI);
1677   setMacroInfo(MacroNameTok.getIdentifierInfo(), 0);
1678 }
1679 
1680 
1681 //===----------------------------------------------------------------------===//
1682 // Preprocessor Conditional Directive Handling.
1683 //===----------------------------------------------------------------------===//
1684 
1685 /// HandleIfdefDirective - Implements the #ifdef/#ifndef directive.  isIfndef is
1686 /// true when this is a #ifndef directive.  ReadAnyTokensBeforeDirective is true
1687 /// if any tokens have been returned or pp-directives activated before this
1688 /// #ifndef has been lexed.
1689 ///
1690 void Preprocessor::HandleIfdefDirective(Token &Result, bool isIfndef,
1691                                         bool ReadAnyTokensBeforeDirective) {
1692   ++NumIf;
1693   Token DirectiveTok = Result;
1694 
1695   Token MacroNameTok;
1696   ReadMacroName(MacroNameTok);
1697 
1698   // Error reading macro name?  If so, diagnostic already issued.
1699   if (MacroNameTok.is(tok::eod)) {
1700     // Skip code until we get to #endif.  This helps with recovery by not
1701     // emitting an error when the #endif is reached.
1702     SkipExcludedConditionalBlock(DirectiveTok.getLocation(),
1703                                  /*Foundnonskip*/false, /*FoundElse*/false);
1704     return;
1705   }
1706 
1707   // Check to see if this is the last token on the #if[n]def line.
1708   CheckEndOfDirective(isIfndef ? "ifndef" : "ifdef");
1709 
1710   IdentifierInfo *MII = MacroNameTok.getIdentifierInfo();
1711   MacroInfo *MI = getMacroInfo(MII);
1712 
1713   if (CurPPLexer->getConditionalStackDepth() == 0) {
1714     // If the start of a top-level #ifdef and if the macro is not defined,
1715     // inform MIOpt that this might be the start of a proper include guard.
1716     // Otherwise it is some other form of unknown conditional which we can't
1717     // handle.
1718     if (!ReadAnyTokensBeforeDirective && MI == 0) {
1719       assert(isIfndef && "#ifdef shouldn't reach here");
1720       CurPPLexer->MIOpt.EnterTopLevelIFNDEF(MII);
1721     } else
1722       CurPPLexer->MIOpt.EnterTopLevelConditional();
1723   }
1724 
1725   // If there is a macro, process it.
1726   if (MI)  // Mark it used.
1727     markMacroAsUsed(MI);
1728 
1729   // Should we include the stuff contained by this directive?
1730   if (!MI == isIfndef) {
1731     // Yes, remember that we are inside a conditional, then lex the next token.
1732     CurPPLexer->pushConditionalLevel(DirectiveTok.getLocation(),
1733                                      /*wasskip*/false, /*foundnonskip*/true,
1734                                      /*foundelse*/false);
1735   } else {
1736     // No, skip the contents of this block.
1737     SkipExcludedConditionalBlock(DirectiveTok.getLocation(),
1738                                  /*Foundnonskip*/false,
1739                                  /*FoundElse*/false);
1740   }
1741 
1742   if (Callbacks) {
1743     if (isIfndef)
1744       Callbacks->Ifndef(MacroNameTok);
1745     else
1746       Callbacks->Ifdef(MacroNameTok);
1747   }
1748 }
1749 
1750 /// HandleIfDirective - Implements the #if directive.
1751 ///
1752 void Preprocessor::HandleIfDirective(Token &IfToken,
1753                                      bool ReadAnyTokensBeforeDirective) {
1754   ++NumIf;
1755 
1756   // Parse and evaluate the conditional expression.
1757   IdentifierInfo *IfNDefMacro = 0;
1758   const SourceLocation ConditionalBegin = CurPPLexer->getSourceLocation();
1759   const bool ConditionalTrue = EvaluateDirectiveExpression(IfNDefMacro);
1760   const SourceLocation ConditionalEnd = CurPPLexer->getSourceLocation();
1761 
1762   // If this condition is equivalent to #ifndef X, and if this is the first
1763   // directive seen, handle it for the multiple-include optimization.
1764   if (CurPPLexer->getConditionalStackDepth() == 0) {
1765     if (!ReadAnyTokensBeforeDirective && IfNDefMacro && ConditionalTrue)
1766       CurPPLexer->MIOpt.EnterTopLevelIFNDEF(IfNDefMacro);
1767     else
1768       CurPPLexer->MIOpt.EnterTopLevelConditional();
1769   }
1770 
1771   // Should we include the stuff contained by this directive?
1772   if (ConditionalTrue) {
1773     // Yes, remember that we are inside a conditional, then lex the next token.
1774     CurPPLexer->pushConditionalLevel(IfToken.getLocation(), /*wasskip*/false,
1775                                    /*foundnonskip*/true, /*foundelse*/false);
1776   } else {
1777     // No, skip the contents of this block.
1778     SkipExcludedConditionalBlock(IfToken.getLocation(), /*Foundnonskip*/false,
1779                                  /*FoundElse*/false);
1780   }
1781 
1782   if (Callbacks)
1783     Callbacks->If(SourceRange(ConditionalBegin, ConditionalEnd));
1784 }
1785 
1786 /// HandleEndifDirective - Implements the #endif directive.
1787 ///
1788 void Preprocessor::HandleEndifDirective(Token &EndifToken) {
1789   ++NumEndif;
1790 
1791   // Check that this is the whole directive.
1792   CheckEndOfDirective("endif");
1793 
1794   PPConditionalInfo CondInfo;
1795   if (CurPPLexer->popConditionalLevel(CondInfo)) {
1796     // No conditionals on the stack: this is an #endif without an #if.
1797     Diag(EndifToken, diag::err_pp_endif_without_if);
1798     return;
1799   }
1800 
1801   // If this the end of a top-level #endif, inform MIOpt.
1802   if (CurPPLexer->getConditionalStackDepth() == 0)
1803     CurPPLexer->MIOpt.ExitTopLevelConditional();
1804 
1805   assert(!CondInfo.WasSkipping && !CurPPLexer->LexingRawMode &&
1806          "This code should only be reachable in the non-skipping case!");
1807 
1808   if (Callbacks)
1809     Callbacks->Endif();
1810 }
1811 
1812 /// HandleElseDirective - Implements the #else directive.
1813 ///
1814 void Preprocessor::HandleElseDirective(Token &Result) {
1815   ++NumElse;
1816 
1817   // #else directive in a non-skipping conditional... start skipping.
1818   CheckEndOfDirective("else");
1819 
1820   PPConditionalInfo CI;
1821   if (CurPPLexer->popConditionalLevel(CI)) {
1822     Diag(Result, diag::pp_err_else_without_if);
1823     return;
1824   }
1825 
1826   // If this is a top-level #else, inform the MIOpt.
1827   if (CurPPLexer->getConditionalStackDepth() == 0)
1828     CurPPLexer->MIOpt.EnterTopLevelConditional();
1829 
1830   // If this is a #else with a #else before it, report the error.
1831   if (CI.FoundElse) Diag(Result, diag::pp_err_else_after_else);
1832 
1833   // Finally, skip the rest of the contents of this block.
1834   SkipExcludedConditionalBlock(CI.IfLoc, /*Foundnonskip*/true,
1835                                /*FoundElse*/true, Result.getLocation());
1836 
1837   if (Callbacks)
1838     Callbacks->Else();
1839 }
1840 
1841 /// HandleElifDirective - Implements the #elif directive.
1842 ///
1843 void Preprocessor::HandleElifDirective(Token &ElifToken) {
1844   ++NumElse;
1845 
1846   // #elif directive in a non-skipping conditional... start skipping.
1847   // We don't care what the condition is, because we will always skip it (since
1848   // the block immediately before it was included).
1849   const SourceLocation ConditionalBegin = CurPPLexer->getSourceLocation();
1850   DiscardUntilEndOfDirective();
1851   const SourceLocation ConditionalEnd = CurPPLexer->getSourceLocation();
1852 
1853   PPConditionalInfo CI;
1854   if (CurPPLexer->popConditionalLevel(CI)) {
1855     Diag(ElifToken, diag::pp_err_elif_without_if);
1856     return;
1857   }
1858 
1859   // If this is a top-level #elif, inform the MIOpt.
1860   if (CurPPLexer->getConditionalStackDepth() == 0)
1861     CurPPLexer->MIOpt.EnterTopLevelConditional();
1862 
1863   // If this is a #elif with a #else before it, report the error.
1864   if (CI.FoundElse) Diag(ElifToken, diag::pp_err_elif_after_else);
1865 
1866   // Finally, skip the rest of the contents of this block.
1867   SkipExcludedConditionalBlock(CI.IfLoc, /*Foundnonskip*/true,
1868                                /*FoundElse*/CI.FoundElse,
1869                                ElifToken.getLocation());
1870 
1871   if (Callbacks)
1872     Callbacks->Elif(SourceRange(ConditionalBegin, ConditionalEnd));
1873 }
1874