1 //===--- TokenLexer.cpp - Lex from a token stream -------------------------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // This file implements the TokenLexer interface. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "clang/Lex/TokenLexer.h" 15 #include "clang/Basic/SourceManager.h" 16 #include "clang/Lex/LexDiagnostic.h" 17 #include "clang/Lex/MacroArgs.h" 18 #include "clang/Lex/MacroInfo.h" 19 #include "clang/Lex/Preprocessor.h" 20 #include "llvm/ADT/SmallString.h" 21 22 using namespace clang; 23 24 /// Create a TokenLexer for the specified macro with the specified actual 25 /// arguments. Note that this ctor takes ownership of the ActualArgs pointer. 26 void TokenLexer::Init(Token &Tok, SourceLocation ELEnd, MacroInfo *MI, 27 MacroArgs *Actuals) { 28 // If the client is reusing a TokenLexer, make sure to free any memory 29 // associated with it. 30 destroy(); 31 32 Macro = MI; 33 ActualArgs = Actuals; 34 CurTokenIdx = 0; 35 36 ExpandLocStart = Tok.getLocation(); 37 ExpandLocEnd = ELEnd; 38 AtStartOfLine = Tok.isAtStartOfLine(); 39 HasLeadingSpace = Tok.hasLeadingSpace(); 40 NextTokGetsSpace = false; 41 Tokens = &*Macro->tokens_begin(); 42 OwnsTokens = false; 43 DisableMacroExpansion = false; 44 NumTokens = Macro->tokens_end()-Macro->tokens_begin(); 45 MacroExpansionStart = SourceLocation(); 46 47 SourceManager &SM = PP.getSourceManager(); 48 MacroStartSLocOffset = SM.getNextLocalOffset(); 49 50 if (NumTokens > 0) { 51 assert(Tokens[0].getLocation().isValid()); 52 assert((Tokens[0].getLocation().isFileID() || Tokens[0].is(tok::comment)) && 53 "Macro defined in macro?"); 54 assert(ExpandLocStart.isValid()); 55 56 // Reserve a source location entry chunk for the length of the macro 57 // definition. Tokens that get lexed directly from the definition will 58 // have their locations pointing inside this chunk. This is to avoid 59 // creating separate source location entries for each token. 60 MacroDefStart = SM.getExpansionLoc(Tokens[0].getLocation()); 61 MacroDefLength = Macro->getDefinitionLength(SM); 62 MacroExpansionStart = SM.createExpansionLoc(MacroDefStart, 63 ExpandLocStart, 64 ExpandLocEnd, 65 MacroDefLength); 66 } 67 68 // If this is a function-like macro, expand the arguments and change 69 // Tokens to point to the expanded tokens. 70 if (Macro->isFunctionLike() && Macro->getNumParams()) 71 ExpandFunctionArguments(); 72 73 // Mark the macro as currently disabled, so that it is not recursively 74 // expanded. The macro must be disabled only after argument pre-expansion of 75 // function-like macro arguments occurs. 76 Macro->DisableMacro(); 77 } 78 79 /// Create a TokenLexer for the specified token stream. This does not 80 /// take ownership of the specified token vector. 81 void TokenLexer::Init(const Token *TokArray, unsigned NumToks, 82 bool disableMacroExpansion, bool ownsTokens) { 83 // If the client is reusing a TokenLexer, make sure to free any memory 84 // associated with it. 85 destroy(); 86 87 Macro = nullptr; 88 ActualArgs = nullptr; 89 Tokens = TokArray; 90 OwnsTokens = ownsTokens; 91 DisableMacroExpansion = disableMacroExpansion; 92 NumTokens = NumToks; 93 CurTokenIdx = 0; 94 ExpandLocStart = ExpandLocEnd = SourceLocation(); 95 AtStartOfLine = false; 96 HasLeadingSpace = false; 97 NextTokGetsSpace = false; 98 MacroExpansionStart = SourceLocation(); 99 100 // Set HasLeadingSpace/AtStartOfLine so that the first token will be 101 // returned unmodified. 102 if (NumToks != 0) { 103 AtStartOfLine = TokArray[0].isAtStartOfLine(); 104 HasLeadingSpace = TokArray[0].hasLeadingSpace(); 105 } 106 } 107 108 void TokenLexer::destroy() { 109 // If this was a function-like macro that actually uses its arguments, delete 110 // the expanded tokens. 111 if (OwnsTokens) { 112 delete [] Tokens; 113 Tokens = nullptr; 114 OwnsTokens = false; 115 } 116 117 // TokenLexer owns its formal arguments. 118 if (ActualArgs) ActualArgs->destroy(PP); 119 } 120 121 bool TokenLexer::MaybeRemoveCommaBeforeVaArgs( 122 SmallVectorImpl<Token> &ResultToks, bool HasPasteOperator, MacroInfo *Macro, 123 unsigned MacroArgNo, Preprocessor &PP) { 124 // Is the macro argument __VA_ARGS__? 125 if (!Macro->isVariadic() || MacroArgNo != Macro->getNumParams()-1) 126 return false; 127 128 // In Microsoft-compatibility mode, a comma is removed in the expansion 129 // of " ... , __VA_ARGS__ " if __VA_ARGS__ is empty. This extension is 130 // not supported by gcc. 131 if (!HasPasteOperator && !PP.getLangOpts().MSVCCompat) 132 return false; 133 134 // GCC removes the comma in the expansion of " ... , ## __VA_ARGS__ " if 135 // __VA_ARGS__ is empty, but not in strict C99 mode where there are no 136 // named arguments, where it remains. In all other modes, including C99 137 // with GNU extensions, it is removed regardless of named arguments. 138 // Microsoft also appears to support this extension, unofficially. 139 if (PP.getLangOpts().C99 && !PP.getLangOpts().GNUMode 140 && Macro->getNumParams() < 2) 141 return false; 142 143 // Is a comma available to be removed? 144 if (ResultToks.empty() || !ResultToks.back().is(tok::comma)) 145 return false; 146 147 // Issue an extension diagnostic for the paste operator. 148 if (HasPasteOperator) 149 PP.Diag(ResultToks.back().getLocation(), diag::ext_paste_comma); 150 151 // Remove the comma. 152 ResultToks.pop_back(); 153 154 if (!ResultToks.empty()) { 155 // If the comma was right after another paste (e.g. "X##,##__VA_ARGS__"), 156 // then removal of the comma should produce a placemarker token (in C99 157 // terms) which we model by popping off the previous ##, giving us a plain 158 // "X" when __VA_ARGS__ is empty. 159 if (ResultToks.back().is(tok::hashhash)) 160 ResultToks.pop_back(); 161 162 // Remember that this comma was elided. 163 ResultToks.back().setFlag(Token::CommaAfterElided); 164 } 165 166 // Never add a space, even if the comma, ##, or arg had a space. 167 NextTokGetsSpace = false; 168 return true; 169 } 170 171 /// Expand the arguments of a function-like macro so that we can quickly 172 /// return preexpanded tokens from Tokens. 173 void TokenLexer::ExpandFunctionArguments() { 174 SmallVector<Token, 128> ResultToks; 175 176 // Loop through 'Tokens', expanding them into ResultToks. Keep 177 // track of whether we change anything. If not, no need to keep them. If so, 178 // we install the newly expanded sequence as the new 'Tokens' list. 179 bool MadeChange = false; 180 181 for (unsigned I = 0, E = NumTokens; I != E; ++I) { 182 // If we found the stringify operator, get the argument stringified. The 183 // preprocessor already verified that the following token is a macro name 184 // when the #define was parsed. 185 const Token &CurTok = Tokens[I]; 186 // We don't want a space for the next token after a paste 187 // operator. In valid code, the token will get smooshed onto the 188 // preceding one anyway. In assembler-with-cpp mode, invalid 189 // pastes are allowed through: in this case, we do not want the 190 // extra whitespace to be added. For example, we want ". ## foo" 191 // -> ".foo" not ". foo". 192 if (I != 0 && !Tokens[I-1].is(tok::hashhash) && CurTok.hasLeadingSpace()) 193 NextTokGetsSpace = true; 194 195 if (CurTok.isOneOf(tok::hash, tok::hashat)) { 196 int ArgNo = Macro->getParameterNum(Tokens[I+1].getIdentifierInfo()); 197 assert(ArgNo != -1 && "Token following # is not an argument?"); 198 199 SourceLocation ExpansionLocStart = 200 getExpansionLocForMacroDefLoc(CurTok.getLocation()); 201 SourceLocation ExpansionLocEnd = 202 getExpansionLocForMacroDefLoc(Tokens[I+1].getLocation()); 203 204 Token Res; 205 if (CurTok.is(tok::hash)) // Stringify 206 Res = ActualArgs->getStringifiedArgument(ArgNo, PP, 207 ExpansionLocStart, 208 ExpansionLocEnd); 209 else { 210 // 'charify': don't bother caching these. 211 Res = MacroArgs::StringifyArgument(ActualArgs->getUnexpArgument(ArgNo), 212 PP, true, 213 ExpansionLocStart, 214 ExpansionLocEnd); 215 } 216 Res.setFlag(Token::StringifiedInMacro); 217 218 // The stringified/charified string leading space flag gets set to match 219 // the #/#@ operator. 220 if (NextTokGetsSpace) 221 Res.setFlag(Token::LeadingSpace); 222 223 ResultToks.push_back(Res); 224 MadeChange = true; 225 ++I; // Skip arg name. 226 NextTokGetsSpace = false; 227 continue; 228 } 229 230 // Find out if there is a paste (##) operator before or after the token. 231 bool NonEmptyPasteBefore = 232 !ResultToks.empty() && ResultToks.back().is(tok::hashhash); 233 bool PasteBefore = I != 0 && Tokens[I-1].is(tok::hashhash); 234 bool PasteAfter = I+1 != E && Tokens[I+1].is(tok::hashhash); 235 assert(!NonEmptyPasteBefore || PasteBefore); 236 237 // Otherwise, if this is not an argument token, just add the token to the 238 // output buffer. 239 IdentifierInfo *II = CurTok.getIdentifierInfo(); 240 int ArgNo = II ? Macro->getParameterNum(II) : -1; 241 if (ArgNo == -1) { 242 // This isn't an argument, just add it. 243 ResultToks.push_back(CurTok); 244 245 if (NextTokGetsSpace) { 246 ResultToks.back().setFlag(Token::LeadingSpace); 247 NextTokGetsSpace = false; 248 } else if (PasteBefore && !NonEmptyPasteBefore) 249 ResultToks.back().clearFlag(Token::LeadingSpace); 250 251 continue; 252 } 253 254 // An argument is expanded somehow, the result is different than the 255 // input. 256 MadeChange = true; 257 258 // Otherwise, this is a use of the argument. 259 260 // In Microsoft mode, remove the comma before __VA_ARGS__ to ensure there 261 // are no trailing commas if __VA_ARGS__ is empty. 262 if (!PasteBefore && ActualArgs->isVarargsElidedUse() && 263 MaybeRemoveCommaBeforeVaArgs(ResultToks, 264 /*HasPasteOperator=*/false, 265 Macro, ArgNo, PP)) 266 continue; 267 268 // If it is not the LHS/RHS of a ## operator, we must pre-expand the 269 // argument and substitute the expanded tokens into the result. This is 270 // C99 6.10.3.1p1. 271 if (!PasteBefore && !PasteAfter) { 272 const Token *ResultArgToks; 273 274 // Only preexpand the argument if it could possibly need it. This 275 // avoids some work in common cases. 276 const Token *ArgTok = ActualArgs->getUnexpArgument(ArgNo); 277 if (ActualArgs->ArgNeedsPreexpansion(ArgTok, PP)) 278 ResultArgToks = &ActualArgs->getPreExpArgument(ArgNo, PP)[0]; 279 else 280 ResultArgToks = ArgTok; // Use non-preexpanded tokens. 281 282 // If the arg token expanded into anything, append it. 283 if (ResultArgToks->isNot(tok::eof)) { 284 size_t FirstResult = ResultToks.size(); 285 unsigned NumToks = MacroArgs::getArgLength(ResultArgToks); 286 ResultToks.append(ResultArgToks, ResultArgToks+NumToks); 287 288 // In Microsoft-compatibility mode, we follow MSVC's preprocessing 289 // behavior by not considering single commas from nested macro 290 // expansions as argument separators. Set a flag on the token so we can 291 // test for this later when the macro expansion is processed. 292 if (PP.getLangOpts().MSVCCompat && NumToks == 1 && 293 ResultToks.back().is(tok::comma)) 294 ResultToks.back().setFlag(Token::IgnoredComma); 295 296 // If the '##' came from expanding an argument, turn it into 'unknown' 297 // to avoid pasting. 298 for (Token &Tok : llvm::make_range(ResultToks.begin() + FirstResult, 299 ResultToks.end())) { 300 if (Tok.is(tok::hashhash)) 301 Tok.setKind(tok::unknown); 302 } 303 304 if(ExpandLocStart.isValid()) { 305 updateLocForMacroArgTokens(CurTok.getLocation(), 306 ResultToks.begin()+FirstResult, 307 ResultToks.end()); 308 } 309 310 // If any tokens were substituted from the argument, the whitespace 311 // before the first token should match the whitespace of the arg 312 // identifier. 313 ResultToks[FirstResult].setFlagValue(Token::LeadingSpace, 314 NextTokGetsSpace); 315 ResultToks[FirstResult].setFlagValue(Token::StartOfLine, false); 316 NextTokGetsSpace = false; 317 } 318 continue; 319 } 320 321 // Okay, we have a token that is either the LHS or RHS of a paste (##) 322 // argument. It gets substituted as its non-pre-expanded tokens. 323 const Token *ArgToks = ActualArgs->getUnexpArgument(ArgNo); 324 unsigned NumToks = MacroArgs::getArgLength(ArgToks); 325 if (NumToks) { // Not an empty argument? 326 bool VaArgsPseudoPaste = false; 327 // If this is the GNU ", ## __VA_ARGS__" extension, and we just learned 328 // that __VA_ARGS__ expands to multiple tokens, avoid a pasting error when 329 // the expander trys to paste ',' with the first token of the __VA_ARGS__ 330 // expansion. 331 if (NonEmptyPasteBefore && ResultToks.size() >= 2 && 332 ResultToks[ResultToks.size()-2].is(tok::comma) && 333 (unsigned)ArgNo == Macro->getNumParams()-1 && 334 Macro->isVariadic()) { 335 VaArgsPseudoPaste = true; 336 // Remove the paste operator, report use of the extension. 337 PP.Diag(ResultToks.pop_back_val().getLocation(), diag::ext_paste_comma); 338 } 339 340 ResultToks.append(ArgToks, ArgToks+NumToks); 341 342 // If the '##' came from expanding an argument, turn it into 'unknown' 343 // to avoid pasting. 344 for (Token &Tok : llvm::make_range(ResultToks.end() - NumToks, 345 ResultToks.end())) { 346 if (Tok.is(tok::hashhash)) 347 Tok.setKind(tok::unknown); 348 } 349 350 if (ExpandLocStart.isValid()) { 351 updateLocForMacroArgTokens(CurTok.getLocation(), 352 ResultToks.end()-NumToks, ResultToks.end()); 353 } 354 355 // Transfer the leading whitespace information from the token 356 // (the macro argument) onto the first token of the 357 // expansion. Note that we don't do this for the GNU 358 // pseudo-paste extension ", ## __VA_ARGS__". 359 if (!VaArgsPseudoPaste) { 360 ResultToks[ResultToks.size() - NumToks].setFlagValue(Token::StartOfLine, 361 false); 362 ResultToks[ResultToks.size() - NumToks].setFlagValue( 363 Token::LeadingSpace, NextTokGetsSpace); 364 } 365 366 NextTokGetsSpace = false; 367 continue; 368 } 369 370 // If an empty argument is on the LHS or RHS of a paste, the standard (C99 371 // 6.10.3.3p2,3) calls for a bunch of placemarker stuff to occur. We 372 // implement this by eating ## operators when a LHS or RHS expands to 373 // empty. 374 if (PasteAfter) { 375 // Discard the argument token and skip (don't copy to the expansion 376 // buffer) the paste operator after it. 377 ++I; 378 continue; 379 } 380 381 // If this is on the RHS of a paste operator, we've already copied the 382 // paste operator to the ResultToks list, unless the LHS was empty too. 383 // Remove it. 384 assert(PasteBefore); 385 if (NonEmptyPasteBefore) { 386 assert(ResultToks.back().is(tok::hashhash)); 387 ResultToks.pop_back(); 388 } 389 390 // If this is the __VA_ARGS__ token, and if the argument wasn't provided, 391 // and if the macro had at least one real argument, and if the token before 392 // the ## was a comma, remove the comma. This is a GCC extension which is 393 // disabled when using -std=c99. 394 if (ActualArgs->isVarargsElidedUse()) 395 MaybeRemoveCommaBeforeVaArgs(ResultToks, 396 /*HasPasteOperator=*/true, 397 Macro, ArgNo, PP); 398 } 399 400 // If anything changed, install this as the new Tokens list. 401 if (MadeChange) { 402 assert(!OwnsTokens && "This would leak if we already own the token list"); 403 // This is deleted in the dtor. 404 NumTokens = ResultToks.size(); 405 // The tokens will be added to Preprocessor's cache and will be removed 406 // when this TokenLexer finishes lexing them. 407 Tokens = PP.cacheMacroExpandedTokens(this, ResultToks); 408 409 // The preprocessor cache of macro expanded tokens owns these tokens,not us. 410 OwnsTokens = false; 411 } 412 } 413 414 /// \brief Checks if two tokens form wide string literal. 415 static bool isWideStringLiteralFromMacro(const Token &FirstTok, 416 const Token &SecondTok) { 417 return FirstTok.is(tok::identifier) && 418 FirstTok.getIdentifierInfo()->isStr("L") && SecondTok.isLiteral() && 419 SecondTok.stringifiedInMacro(); 420 } 421 422 /// Lex - Lex and return a token from this macro stream. 423 /// 424 bool TokenLexer::Lex(Token &Tok) { 425 // Lexing off the end of the macro, pop this macro off the expansion stack. 426 if (isAtEnd()) { 427 // If this is a macro (not a token stream), mark the macro enabled now 428 // that it is no longer being expanded. 429 if (Macro) Macro->EnableMacro(); 430 431 Tok.startToken(); 432 Tok.setFlagValue(Token::StartOfLine , AtStartOfLine); 433 Tok.setFlagValue(Token::LeadingSpace, HasLeadingSpace || NextTokGetsSpace); 434 if (CurTokenIdx == 0) 435 Tok.setFlag(Token::LeadingEmptyMacro); 436 return PP.HandleEndOfTokenLexer(Tok); 437 } 438 439 SourceManager &SM = PP.getSourceManager(); 440 441 // If this is the first token of the expanded result, we inherit spacing 442 // properties later. 443 bool isFirstToken = CurTokenIdx == 0; 444 445 // Get the next token to return. 446 Tok = Tokens[CurTokenIdx++]; 447 448 bool TokenIsFromPaste = false; 449 450 // If this token is followed by a token paste (##) operator, paste the tokens! 451 // Note that ## is a normal token when not expanding a macro. 452 if (!isAtEnd() && Macro && 453 (Tokens[CurTokenIdx].is(tok::hashhash) || 454 // Special processing of L#x macros in -fms-compatibility mode. 455 // Microsoft compiler is able to form a wide string literal from 456 // 'L#macro_arg' construct in a function-like macro. 457 (PP.getLangOpts().MSVCCompat && 458 isWideStringLiteralFromMacro(Tok, Tokens[CurTokenIdx])))) { 459 // When handling the microsoft /##/ extension, the final token is 460 // returned by pasteTokens, not the pasted token. 461 if (pasteTokens(Tok)) 462 return true; 463 464 TokenIsFromPaste = true; 465 } 466 467 // The token's current location indicate where the token was lexed from. We 468 // need this information to compute the spelling of the token, but any 469 // diagnostics for the expanded token should appear as if they came from 470 // ExpansionLoc. Pull this information together into a new SourceLocation 471 // that captures all of this. 472 if (ExpandLocStart.isValid() && // Don't do this for token streams. 473 // Check that the token's location was not already set properly. 474 SM.isBeforeInSLocAddrSpace(Tok.getLocation(), MacroStartSLocOffset)) { 475 SourceLocation instLoc; 476 if (Tok.is(tok::comment)) { 477 instLoc = SM.createExpansionLoc(Tok.getLocation(), 478 ExpandLocStart, 479 ExpandLocEnd, 480 Tok.getLength()); 481 } else { 482 instLoc = getExpansionLocForMacroDefLoc(Tok.getLocation()); 483 } 484 485 Tok.setLocation(instLoc); 486 } 487 488 // If this is the first token, set the lexical properties of the token to 489 // match the lexical properties of the macro identifier. 490 if (isFirstToken) { 491 Tok.setFlagValue(Token::StartOfLine , AtStartOfLine); 492 Tok.setFlagValue(Token::LeadingSpace, HasLeadingSpace); 493 } else { 494 // If this is not the first token, we may still need to pass through 495 // leading whitespace if we've expanded a macro. 496 if (AtStartOfLine) Tok.setFlag(Token::StartOfLine); 497 if (HasLeadingSpace) Tok.setFlag(Token::LeadingSpace); 498 } 499 AtStartOfLine = false; 500 HasLeadingSpace = false; 501 502 // Handle recursive expansion! 503 if (!Tok.isAnnotation() && Tok.getIdentifierInfo() != nullptr) { 504 // Change the kind of this identifier to the appropriate token kind, e.g. 505 // turning "for" into a keyword. 506 IdentifierInfo *II = Tok.getIdentifierInfo(); 507 Tok.setKind(II->getTokenID()); 508 509 // If this identifier was poisoned and from a paste, emit an error. This 510 // won't be handled by Preprocessor::HandleIdentifier because this is coming 511 // from a macro expansion. 512 if (II->isPoisoned() && TokenIsFromPaste) { 513 PP.HandlePoisonedIdentifier(Tok); 514 } 515 516 if (!DisableMacroExpansion && II->isHandleIdentifierCase()) 517 return PP.HandleIdentifier(Tok); 518 } 519 520 // Otherwise, return a normal token. 521 return true; 522 } 523 524 bool TokenLexer::pasteTokens(Token &Tok) { 525 return pasteTokens(Tok, llvm::makeArrayRef(Tokens, NumTokens), CurTokenIdx); 526 } 527 /// LHSTok is the LHS of a ## operator, and CurTokenIdx is the ## 528 /// operator. Read the ## and RHS, and paste the LHS/RHS together. If there 529 /// are more ## after it, chomp them iteratively. Return the result as LHSTok. 530 /// If this returns true, the caller should immediately return the token. 531 bool TokenLexer::pasteTokens(Token &LHSTok, ArrayRef<Token> TokenStream, 532 unsigned int &CurIdx) { 533 assert(CurIdx > 0 && "## can not be the first token within tokens"); 534 assert((TokenStream[CurIdx].is(tok::hashhash) || 535 (PP.getLangOpts().MSVCCompat && 536 isWideStringLiteralFromMacro(LHSTok, TokenStream[CurIdx]))) && 537 "Token at this Index must be ## or part of the MSVC 'L " 538 "#macro-arg' pasting pair"); 539 540 // MSVC: If previous token was pasted, this must be a recovery from an invalid 541 // paste operation. Ignore spaces before this token to mimic MSVC output. 542 // Required for generating valid UUID strings in some MS headers. 543 if (PP.getLangOpts().MicrosoftExt && (CurIdx >= 2) && 544 TokenStream[CurIdx - 2].is(tok::hashhash)) 545 LHSTok.clearFlag(Token::LeadingSpace); 546 547 SmallString<128> Buffer; 548 const char *ResultTokStrPtr = nullptr; 549 SourceLocation StartLoc = LHSTok.getLocation(); 550 SourceLocation PasteOpLoc; 551 552 auto IsAtEnd = [&TokenStream, &CurIdx] { 553 return TokenStream.size() == CurIdx; 554 }; 555 556 do { 557 // Consume the ## operator if any. 558 PasteOpLoc = TokenStream[CurIdx].getLocation(); 559 if (TokenStream[CurIdx].is(tok::hashhash)) 560 ++CurIdx; 561 assert(!IsAtEnd() && "No token on the RHS of a paste operator!"); 562 563 // Get the RHS token. 564 const Token &RHS = TokenStream[CurIdx]; 565 566 // Allocate space for the result token. This is guaranteed to be enough for 567 // the two tokens. 568 Buffer.resize(LHSTok.getLength() + RHS.getLength()); 569 570 // Get the spelling of the LHS token in Buffer. 571 const char *BufPtr = &Buffer[0]; 572 bool Invalid = false; 573 unsigned LHSLen = PP.getSpelling(LHSTok, BufPtr, &Invalid); 574 if (BufPtr != &Buffer[0]) // Really, we want the chars in Buffer! 575 memcpy(&Buffer[0], BufPtr, LHSLen); 576 if (Invalid) 577 return true; 578 579 BufPtr = Buffer.data() + LHSLen; 580 unsigned RHSLen = PP.getSpelling(RHS, BufPtr, &Invalid); 581 if (Invalid) 582 return true; 583 if (RHSLen && BufPtr != &Buffer[LHSLen]) 584 // Really, we want the chars in Buffer! 585 memcpy(&Buffer[LHSLen], BufPtr, RHSLen); 586 587 // Trim excess space. 588 Buffer.resize(LHSLen+RHSLen); 589 590 // Plop the pasted result (including the trailing newline and null) into a 591 // scratch buffer where we can lex it. 592 Token ResultTokTmp; 593 ResultTokTmp.startToken(); 594 595 // Claim that the tmp token is a string_literal so that we can get the 596 // character pointer back from CreateString in getLiteralData(). 597 ResultTokTmp.setKind(tok::string_literal); 598 PP.CreateString(Buffer, ResultTokTmp); 599 SourceLocation ResultTokLoc = ResultTokTmp.getLocation(); 600 ResultTokStrPtr = ResultTokTmp.getLiteralData(); 601 602 // Lex the resultant pasted token into Result. 603 Token Result; 604 605 if (LHSTok.isAnyIdentifier() && RHS.isAnyIdentifier()) { 606 // Common paste case: identifier+identifier = identifier. Avoid creating 607 // a lexer and other overhead. 608 PP.IncrementPasteCounter(true); 609 Result.startToken(); 610 Result.setKind(tok::raw_identifier); 611 Result.setRawIdentifierData(ResultTokStrPtr); 612 Result.setLocation(ResultTokLoc); 613 Result.setLength(LHSLen+RHSLen); 614 } else { 615 PP.IncrementPasteCounter(false); 616 617 assert(ResultTokLoc.isFileID() && 618 "Should be a raw location into scratch buffer"); 619 SourceManager &SourceMgr = PP.getSourceManager(); 620 FileID LocFileID = SourceMgr.getFileID(ResultTokLoc); 621 622 bool Invalid = false; 623 const char *ScratchBufStart 624 = SourceMgr.getBufferData(LocFileID, &Invalid).data(); 625 if (Invalid) 626 return false; 627 628 // Make a lexer to lex this string from. Lex just this one token. 629 // Make a lexer object so that we lex and expand the paste result. 630 Lexer TL(SourceMgr.getLocForStartOfFile(LocFileID), 631 PP.getLangOpts(), ScratchBufStart, 632 ResultTokStrPtr, ResultTokStrPtr+LHSLen+RHSLen); 633 634 // Lex a token in raw mode. This way it won't look up identifiers 635 // automatically, lexing off the end will return an eof token, and 636 // warnings are disabled. This returns true if the result token is the 637 // entire buffer. 638 bool isInvalid = !TL.LexFromRawLexer(Result); 639 640 // If we got an EOF token, we didn't form even ONE token. For example, we 641 // did "/ ## /" to get "//". 642 isInvalid |= Result.is(tok::eof); 643 644 // If pasting the two tokens didn't form a full new token, this is an 645 // error. This occurs with "x ## +" and other stuff. Return with LHSTok 646 // unmodified and with RHS as the next token to lex. 647 if (isInvalid) { 648 // Explicitly convert the token location to have proper expansion 649 // information so that the user knows where it came from. 650 SourceManager &SM = PP.getSourceManager(); 651 SourceLocation Loc = 652 SM.createExpansionLoc(PasteOpLoc, ExpandLocStart, ExpandLocEnd, 2); 653 654 // Test for the Microsoft extension of /##/ turning into // here on the 655 // error path. 656 if (PP.getLangOpts().MicrosoftExt && LHSTok.is(tok::slash) && 657 RHS.is(tok::slash)) { 658 HandleMicrosoftCommentPaste(LHSTok, Loc); 659 return true; 660 } 661 662 // Do not emit the error when preprocessing assembler code. 663 if (!PP.getLangOpts().AsmPreprocessor) { 664 // If we're in microsoft extensions mode, downgrade this from a hard 665 // error to an extension that defaults to an error. This allows 666 // disabling it. 667 PP.Diag(Loc, PP.getLangOpts().MicrosoftExt ? diag::ext_pp_bad_paste_ms 668 : diag::err_pp_bad_paste) 669 << Buffer; 670 } 671 672 // An error has occurred so exit loop. 673 break; 674 } 675 676 // Turn ## into 'unknown' to avoid # ## # from looking like a paste 677 // operator. 678 if (Result.is(tok::hashhash)) 679 Result.setKind(tok::unknown); 680 } 681 682 // Transfer properties of the LHS over the Result. 683 Result.setFlagValue(Token::StartOfLine , LHSTok.isAtStartOfLine()); 684 Result.setFlagValue(Token::LeadingSpace, LHSTok.hasLeadingSpace()); 685 686 // Finally, replace LHS with the result, consume the RHS, and iterate. 687 ++CurIdx; 688 LHSTok = Result; 689 } while (!IsAtEnd() && TokenStream[CurIdx].is(tok::hashhash)); 690 691 SourceLocation EndLoc = TokenStream[CurIdx - 1].getLocation(); 692 693 // The token's current location indicate where the token was lexed from. We 694 // need this information to compute the spelling of the token, but any 695 // diagnostics for the expanded token should appear as if the token was 696 // expanded from the full ## expression. Pull this information together into 697 // a new SourceLocation that captures all of this. 698 SourceManager &SM = PP.getSourceManager(); 699 if (StartLoc.isFileID()) 700 StartLoc = getExpansionLocForMacroDefLoc(StartLoc); 701 if (EndLoc.isFileID()) 702 EndLoc = getExpansionLocForMacroDefLoc(EndLoc); 703 FileID MacroFID = SM.getFileID(MacroExpansionStart); 704 while (SM.getFileID(StartLoc) != MacroFID) 705 StartLoc = SM.getImmediateExpansionRange(StartLoc).first; 706 while (SM.getFileID(EndLoc) != MacroFID) 707 EndLoc = SM.getImmediateExpansionRange(EndLoc).second; 708 709 LHSTok.setLocation(SM.createExpansionLoc(LHSTok.getLocation(), StartLoc, EndLoc, 710 LHSTok.getLength())); 711 712 // Now that we got the result token, it will be subject to expansion. Since 713 // token pasting re-lexes the result token in raw mode, identifier information 714 // isn't looked up. As such, if the result is an identifier, look up id info. 715 if (LHSTok.is(tok::raw_identifier)) { 716 // Look up the identifier info for the token. We disabled identifier lookup 717 // by saying we're skipping contents, so we need to do this manually. 718 PP.LookUpIdentifierInfo(LHSTok); 719 } 720 return false; 721 } 722 723 /// isNextTokenLParen - If the next token lexed will pop this macro off the 724 /// expansion stack, return 2. If the next unexpanded token is a '(', return 725 /// 1, otherwise return 0. 726 unsigned TokenLexer::isNextTokenLParen() const { 727 // Out of tokens? 728 if (isAtEnd()) 729 return 2; 730 return Tokens[CurTokenIdx].is(tok::l_paren); 731 } 732 733 /// isParsingPreprocessorDirective - Return true if we are in the middle of a 734 /// preprocessor directive. 735 bool TokenLexer::isParsingPreprocessorDirective() const { 736 return Tokens[NumTokens-1].is(tok::eod) && !isAtEnd(); 737 } 738 739 /// HandleMicrosoftCommentPaste - In microsoft compatibility mode, /##/ pastes 740 /// together to form a comment that comments out everything in the current 741 /// macro, other active macros, and anything left on the current physical 742 /// source line of the expanded buffer. Handle this by returning the 743 /// first token on the next line. 744 void TokenLexer::HandleMicrosoftCommentPaste(Token &Tok, SourceLocation OpLoc) { 745 PP.Diag(OpLoc, diag::ext_comment_paste_microsoft); 746 747 // We 'comment out' the rest of this macro by just ignoring the rest of the 748 // tokens that have not been lexed yet, if any. 749 750 // Since this must be a macro, mark the macro enabled now that it is no longer 751 // being expanded. 752 assert(Macro && "Token streams can't paste comments"); 753 Macro->EnableMacro(); 754 755 PP.HandleMicrosoftCommentPaste(Tok); 756 } 757 758 /// \brief If \arg loc is a file ID and points inside the current macro 759 /// definition, returns the appropriate source location pointing at the 760 /// macro expansion source location entry, otherwise it returns an invalid 761 /// SourceLocation. 762 SourceLocation 763 TokenLexer::getExpansionLocForMacroDefLoc(SourceLocation loc) const { 764 assert(ExpandLocStart.isValid() && MacroExpansionStart.isValid() && 765 "Not appropriate for token streams"); 766 assert(loc.isValid() && loc.isFileID()); 767 768 SourceManager &SM = PP.getSourceManager(); 769 assert(SM.isInSLocAddrSpace(loc, MacroDefStart, MacroDefLength) && 770 "Expected loc to come from the macro definition"); 771 772 unsigned relativeOffset = 0; 773 SM.isInSLocAddrSpace(loc, MacroDefStart, MacroDefLength, &relativeOffset); 774 return MacroExpansionStart.getLocWithOffset(relativeOffset); 775 } 776 777 /// \brief Finds the tokens that are consecutive (from the same FileID) 778 /// creates a single SLocEntry, and assigns SourceLocations to each token that 779 /// point to that SLocEntry. e.g for 780 /// assert(foo == bar); 781 /// There will be a single SLocEntry for the "foo == bar" chunk and locations 782 /// for the 'foo', '==', 'bar' tokens will point inside that chunk. 783 /// 784 /// \arg begin_tokens will be updated to a position past all the found 785 /// consecutive tokens. 786 static void updateConsecutiveMacroArgTokens(SourceManager &SM, 787 SourceLocation InstLoc, 788 Token *&begin_tokens, 789 Token * end_tokens) { 790 assert(begin_tokens < end_tokens); 791 792 SourceLocation FirstLoc = begin_tokens->getLocation(); 793 SourceLocation CurLoc = FirstLoc; 794 795 // Compare the source location offset of tokens and group together tokens that 796 // are close, even if their locations point to different FileIDs. e.g. 797 // 798 // |bar | foo | cake | (3 tokens from 3 consecutive FileIDs) 799 // ^ ^ 800 // |bar foo cake| (one SLocEntry chunk for all tokens) 801 // 802 // we can perform this "merge" since the token's spelling location depends 803 // on the relative offset. 804 805 Token *NextTok = begin_tokens + 1; 806 for (; NextTok < end_tokens; ++NextTok) { 807 SourceLocation NextLoc = NextTok->getLocation(); 808 if (CurLoc.isFileID() != NextLoc.isFileID()) 809 break; // Token from different kind of FileID. 810 811 int RelOffs; 812 if (!SM.isInSameSLocAddrSpace(CurLoc, NextLoc, &RelOffs)) 813 break; // Token from different local/loaded location. 814 // Check that token is not before the previous token or more than 50 815 // "characters" away. 816 if (RelOffs < 0 || RelOffs > 50) 817 break; 818 819 if (CurLoc.isMacroID() && !SM.isWrittenInSameFile(CurLoc, NextLoc)) 820 break; // Token from a different macro. 821 822 CurLoc = NextLoc; 823 } 824 825 // For the consecutive tokens, find the length of the SLocEntry to contain 826 // all of them. 827 Token &LastConsecutiveTok = *(NextTok-1); 828 int LastRelOffs = 0; 829 SM.isInSameSLocAddrSpace(FirstLoc, LastConsecutiveTok.getLocation(), 830 &LastRelOffs); 831 unsigned FullLength = LastRelOffs + LastConsecutiveTok.getLength(); 832 833 // Create a macro expansion SLocEntry that will "contain" all of the tokens. 834 SourceLocation Expansion = 835 SM.createMacroArgExpansionLoc(FirstLoc, InstLoc,FullLength); 836 837 // Change the location of the tokens from the spelling location to the new 838 // expanded location. 839 for (; begin_tokens < NextTok; ++begin_tokens) { 840 Token &Tok = *begin_tokens; 841 int RelOffs = 0; 842 SM.isInSameSLocAddrSpace(FirstLoc, Tok.getLocation(), &RelOffs); 843 Tok.setLocation(Expansion.getLocWithOffset(RelOffs)); 844 } 845 } 846 847 /// \brief Creates SLocEntries and updates the locations of macro argument 848 /// tokens to their new expanded locations. 849 /// 850 /// \param ArgIdDefLoc the location of the macro argument id inside the macro 851 /// definition. 852 /// \param Tokens the macro argument tokens to update. 853 void TokenLexer::updateLocForMacroArgTokens(SourceLocation ArgIdSpellLoc, 854 Token *begin_tokens, 855 Token *end_tokens) { 856 SourceManager &SM = PP.getSourceManager(); 857 858 SourceLocation InstLoc = 859 getExpansionLocForMacroDefLoc(ArgIdSpellLoc); 860 861 while (begin_tokens < end_tokens) { 862 // If there's only one token just create a SLocEntry for it. 863 if (end_tokens - begin_tokens == 1) { 864 Token &Tok = *begin_tokens; 865 Tok.setLocation(SM.createMacroArgExpansionLoc(Tok.getLocation(), 866 InstLoc, 867 Tok.getLength())); 868 return; 869 } 870 871 updateConsecutiveMacroArgTokens(SM, InstLoc, begin_tokens, end_tokens); 872 } 873 } 874 875 void TokenLexer::PropagateLineStartLeadingSpaceInfo(Token &Result) { 876 AtStartOfLine = Result.isAtStartOfLine(); 877 HasLeadingSpace = Result.hasLeadingSpace(); 878 } 879