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