1 //===--- PrintPreprocessedOutput.cpp - Implement the -E mode --------------===// 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 code simply runs the preprocessor on the input file and prints out the 11 // result. This is the traditional behavior of the -E option. 12 // 13 //===----------------------------------------------------------------------===// 14 15 #include "clang/Frontend/Utils.h" 16 #include "clang/Basic/CharInfo.h" 17 #include "clang/Basic/Diagnostic.h" 18 #include "clang/Basic/SourceManager.h" 19 #include "clang/Frontend/PreprocessorOutputOptions.h" 20 #include "clang/Lex/MacroInfo.h" 21 #include "clang/Lex/PPCallbacks.h" 22 #include "clang/Lex/Pragma.h" 23 #include "clang/Lex/Preprocessor.h" 24 #include "clang/Lex/TokenConcatenation.h" 25 #include "llvm/ADT/STLExtras.h" 26 #include "llvm/ADT/SmallString.h" 27 #include "llvm/ADT/StringRef.h" 28 #include "llvm/Support/ErrorHandling.h" 29 #include "llvm/Support/raw_ostream.h" 30 #include <cstdio> 31 using namespace clang; 32 33 /// PrintMacroDefinition - Print a macro definition in a form that will be 34 /// properly accepted back as a definition. 35 static void PrintMacroDefinition(const IdentifierInfo &II, const MacroInfo &MI, 36 Preprocessor &PP, raw_ostream &OS) { 37 OS << "#define " << II.getName(); 38 39 if (MI.isFunctionLike()) { 40 OS << '('; 41 if (!MI.arg_empty()) { 42 MacroInfo::arg_iterator AI = MI.arg_begin(), E = MI.arg_end(); 43 for (; AI+1 != E; ++AI) { 44 OS << (*AI)->getName(); 45 OS << ','; 46 } 47 48 // Last argument. 49 if ((*AI)->getName() == "__VA_ARGS__") 50 OS << "..."; 51 else 52 OS << (*AI)->getName(); 53 } 54 55 if (MI.isGNUVarargs()) 56 OS << "..."; // #define foo(x...) 57 58 OS << ')'; 59 } 60 61 // GCC always emits a space, even if the macro body is empty. However, do not 62 // want to emit two spaces if the first token has a leading space. 63 if (MI.tokens_empty() || !MI.tokens_begin()->hasLeadingSpace()) 64 OS << ' '; 65 66 SmallString<128> SpellingBuffer; 67 for (const auto &T : MI.tokens()) { 68 if (T.hasLeadingSpace()) 69 OS << ' '; 70 71 OS << PP.getSpelling(T, SpellingBuffer); 72 } 73 } 74 75 //===----------------------------------------------------------------------===// 76 // Preprocessed token printer 77 //===----------------------------------------------------------------------===// 78 79 namespace { 80 class PrintPPOutputPPCallbacks : public PPCallbacks { 81 Preprocessor &PP; 82 SourceManager &SM; 83 TokenConcatenation ConcatInfo; 84 public: 85 raw_ostream &OS; 86 private: 87 unsigned CurLine; 88 89 bool EmittedTokensOnThisLine; 90 bool EmittedDirectiveOnThisLine; 91 SrcMgr::CharacteristicKind FileType; 92 SmallString<512> CurFilename; 93 bool Initialized; 94 bool DisableLineMarkers; 95 bool DumpDefines; 96 bool DumpIncludeDirectives; 97 bool UseLineDirectives; 98 bool IsFirstFileEntered; 99 public: 100 PrintPPOutputPPCallbacks(Preprocessor &pp, raw_ostream &os, bool lineMarkers, 101 bool defines, bool DumpIncludeDirectives, 102 bool UseLineDirectives) 103 : PP(pp), SM(PP.getSourceManager()), ConcatInfo(PP), OS(os), 104 DisableLineMarkers(lineMarkers), DumpDefines(defines), 105 DumpIncludeDirectives(DumpIncludeDirectives), 106 UseLineDirectives(UseLineDirectives) { 107 CurLine = 0; 108 CurFilename += "<uninit>"; 109 EmittedTokensOnThisLine = false; 110 EmittedDirectiveOnThisLine = false; 111 FileType = SrcMgr::C_User; 112 Initialized = false; 113 IsFirstFileEntered = false; 114 } 115 116 void setEmittedTokensOnThisLine() { EmittedTokensOnThisLine = true; } 117 bool hasEmittedTokensOnThisLine() const { return EmittedTokensOnThisLine; } 118 119 void setEmittedDirectiveOnThisLine() { EmittedDirectiveOnThisLine = true; } 120 bool hasEmittedDirectiveOnThisLine() const { 121 return EmittedDirectiveOnThisLine; 122 } 123 124 bool startNewLineIfNeeded(bool ShouldUpdateCurrentLine = true); 125 126 void FileChanged(SourceLocation Loc, FileChangeReason Reason, 127 SrcMgr::CharacteristicKind FileType, 128 FileID PrevFID) override; 129 void InclusionDirective(SourceLocation HashLoc, const Token &IncludeTok, 130 StringRef FileName, bool IsAngled, 131 CharSourceRange FilenameRange, const FileEntry *File, 132 StringRef SearchPath, StringRef RelativePath, 133 const Module *Imported) override; 134 void Ident(SourceLocation Loc, StringRef str) override; 135 void PragmaMessage(SourceLocation Loc, StringRef Namespace, 136 PragmaMessageKind Kind, StringRef Str) override; 137 void PragmaDebug(SourceLocation Loc, StringRef DebugType) override; 138 void PragmaDiagnosticPush(SourceLocation Loc, StringRef Namespace) override; 139 void PragmaDiagnosticPop(SourceLocation Loc, StringRef Namespace) override; 140 void PragmaDiagnostic(SourceLocation Loc, StringRef Namespace, 141 diag::Severity Map, StringRef Str) override; 142 void PragmaWarning(SourceLocation Loc, StringRef WarningSpec, 143 ArrayRef<int> Ids) override; 144 void PragmaWarningPush(SourceLocation Loc, int Level) override; 145 void PragmaWarningPop(SourceLocation Loc) override; 146 147 bool HandleFirstTokOnLine(Token &Tok); 148 149 /// Move to the line of the provided source location. This will 150 /// return true if the output stream required adjustment or if 151 /// the requested location is on the first line. 152 bool MoveToLine(SourceLocation Loc) { 153 PresumedLoc PLoc = SM.getPresumedLoc(Loc); 154 if (PLoc.isInvalid()) 155 return false; 156 return MoveToLine(PLoc.getLine()) || (PLoc.getLine() == 1); 157 } 158 bool MoveToLine(unsigned LineNo); 159 160 bool AvoidConcat(const Token &PrevPrevTok, const Token &PrevTok, 161 const Token &Tok) { 162 return ConcatInfo.AvoidConcat(PrevPrevTok, PrevTok, Tok); 163 } 164 void WriteLineInfo(unsigned LineNo, const char *Extra=nullptr, 165 unsigned ExtraLen=0); 166 bool LineMarkersAreDisabled() const { return DisableLineMarkers; } 167 void HandleNewlinesInToken(const char *TokStr, unsigned Len); 168 169 /// MacroDefined - This hook is called whenever a macro definition is seen. 170 void MacroDefined(const Token &MacroNameTok, 171 const MacroDirective *MD) override; 172 173 /// MacroUndefined - This hook is called whenever a macro #undef is seen. 174 void MacroUndefined(const Token &MacroNameTok, 175 const MacroDefinition &MD, 176 const MacroDirective *Undef) override; 177 }; 178 } // end anonymous namespace 179 180 void PrintPPOutputPPCallbacks::WriteLineInfo(unsigned LineNo, 181 const char *Extra, 182 unsigned ExtraLen) { 183 startNewLineIfNeeded(/*ShouldUpdateCurrentLine=*/false); 184 185 // Emit #line directives or GNU line markers depending on what mode we're in. 186 if (UseLineDirectives) { 187 OS << "#line" << ' ' << LineNo << ' ' << '"'; 188 OS.write_escaped(CurFilename); 189 OS << '"'; 190 } else { 191 OS << '#' << ' ' << LineNo << ' ' << '"'; 192 OS.write_escaped(CurFilename); 193 OS << '"'; 194 195 if (ExtraLen) 196 OS.write(Extra, ExtraLen); 197 198 if (FileType == SrcMgr::C_System) 199 OS.write(" 3", 2); 200 else if (FileType == SrcMgr::C_ExternCSystem) 201 OS.write(" 3 4", 4); 202 } 203 OS << '\n'; 204 } 205 206 /// MoveToLine - Move the output to the source line specified by the location 207 /// object. We can do this by emitting some number of \n's, or be emitting a 208 /// #line directive. This returns false if already at the specified line, true 209 /// if some newlines were emitted. 210 bool PrintPPOutputPPCallbacks::MoveToLine(unsigned LineNo) { 211 // If this line is "close enough" to the original line, just print newlines, 212 // otherwise print a #line directive. 213 if (LineNo-CurLine <= 8) { 214 if (LineNo-CurLine == 1) 215 OS << '\n'; 216 else if (LineNo == CurLine) 217 return false; // Spelling line moved, but expansion line didn't. 218 else { 219 const char *NewLines = "\n\n\n\n\n\n\n\n"; 220 OS.write(NewLines, LineNo-CurLine); 221 } 222 } else if (!DisableLineMarkers) { 223 // Emit a #line or line marker. 224 WriteLineInfo(LineNo, nullptr, 0); 225 } else { 226 // Okay, we're in -P mode, which turns off line markers. However, we still 227 // need to emit a newline between tokens on different lines. 228 startNewLineIfNeeded(/*ShouldUpdateCurrentLine=*/false); 229 } 230 231 CurLine = LineNo; 232 return true; 233 } 234 235 bool 236 PrintPPOutputPPCallbacks::startNewLineIfNeeded(bool ShouldUpdateCurrentLine) { 237 if (EmittedTokensOnThisLine || EmittedDirectiveOnThisLine) { 238 OS << '\n'; 239 EmittedTokensOnThisLine = false; 240 EmittedDirectiveOnThisLine = false; 241 if (ShouldUpdateCurrentLine) 242 ++CurLine; 243 return true; 244 } 245 246 return false; 247 } 248 249 /// FileChanged - Whenever the preprocessor enters or exits a #include file 250 /// it invokes this handler. Update our conception of the current source 251 /// position. 252 void PrintPPOutputPPCallbacks::FileChanged(SourceLocation Loc, 253 FileChangeReason Reason, 254 SrcMgr::CharacteristicKind NewFileType, 255 FileID PrevFID) { 256 // Unless we are exiting a #include, make sure to skip ahead to the line the 257 // #include directive was at. 258 SourceManager &SourceMgr = SM; 259 260 PresumedLoc UserLoc = SourceMgr.getPresumedLoc(Loc); 261 if (UserLoc.isInvalid()) 262 return; 263 264 unsigned NewLine = UserLoc.getLine(); 265 266 if (Reason == PPCallbacks::EnterFile) { 267 SourceLocation IncludeLoc = UserLoc.getIncludeLoc(); 268 if (IncludeLoc.isValid()) 269 MoveToLine(IncludeLoc); 270 } else if (Reason == PPCallbacks::SystemHeaderPragma) { 271 // GCC emits the # directive for this directive on the line AFTER the 272 // directive and emits a bunch of spaces that aren't needed. This is because 273 // otherwise we will emit a line marker for THIS line, which requires an 274 // extra blank line after the directive to avoid making all following lines 275 // off by one. We can do better by simply incrementing NewLine here. 276 NewLine += 1; 277 } 278 279 CurLine = NewLine; 280 281 CurFilename.clear(); 282 CurFilename += UserLoc.getFilename(); 283 FileType = NewFileType; 284 285 if (DisableLineMarkers) { 286 startNewLineIfNeeded(/*ShouldUpdateCurrentLine=*/false); 287 return; 288 } 289 290 if (!Initialized) { 291 WriteLineInfo(CurLine); 292 Initialized = true; 293 } 294 295 // Do not emit an enter marker for the main file (which we expect is the first 296 // entered file). This matches gcc, and improves compatibility with some tools 297 // which track the # line markers as a way to determine when the preprocessed 298 // output is in the context of the main file. 299 if (Reason == PPCallbacks::EnterFile && !IsFirstFileEntered) { 300 IsFirstFileEntered = true; 301 return; 302 } 303 304 switch (Reason) { 305 case PPCallbacks::EnterFile: 306 WriteLineInfo(CurLine, " 1", 2); 307 break; 308 case PPCallbacks::ExitFile: 309 WriteLineInfo(CurLine, " 2", 2); 310 break; 311 case PPCallbacks::SystemHeaderPragma: 312 case PPCallbacks::RenameFile: 313 WriteLineInfo(CurLine); 314 break; 315 } 316 } 317 318 void PrintPPOutputPPCallbacks::InclusionDirective(SourceLocation HashLoc, 319 const Token &IncludeTok, 320 StringRef FileName, 321 bool IsAngled, 322 CharSourceRange FilenameRange, 323 const FileEntry *File, 324 StringRef SearchPath, 325 StringRef RelativePath, 326 const Module *Imported) { 327 if (Imported) { 328 // When preprocessing, turn implicit imports into @imports. 329 // FIXME: This is a stop-gap until a more comprehensive "preprocessing with 330 // modules" solution is introduced. 331 startNewLineIfNeeded(); 332 MoveToLine(HashLoc); 333 if (PP.getLangOpts().ObjC2) { 334 OS << "@import " << Imported->getFullModuleName() << ";" 335 << " /* clang -E: implicit import for \"" << File->getName() 336 << "\" */"; 337 } else { 338 const std::string TokenText = PP.getSpelling(IncludeTok); 339 assert(!TokenText.empty()); 340 OS << "#" << TokenText << " " 341 << (IsAngled ? '<' : '"') 342 << FileName 343 << (IsAngled ? '>' : '"') 344 << " /* clang -E: implicit import for module " 345 << Imported->getFullModuleName() << " */"; 346 } 347 // Since we want a newline after the @import, but not a #<line>, start a new 348 // line immediately. 349 EmittedTokensOnThisLine = true; 350 startNewLineIfNeeded(); 351 } else { 352 // Not a module import; it's a more vanilla inclusion of some file using one 353 // of: #include, #import, #include_next, #include_macros. 354 if (DumpIncludeDirectives) { 355 startNewLineIfNeeded(); 356 MoveToLine(HashLoc); 357 const std::string TokenText = PP.getSpelling(IncludeTok); 358 assert(!TokenText.empty()); 359 OS << "#" << TokenText << " " 360 << (IsAngled ? '<' : '"') << FileName << (IsAngled ? '>' : '"') 361 << " /* clang -E -dI */"; 362 setEmittedDirectiveOnThisLine(); 363 startNewLineIfNeeded(); 364 } 365 } 366 } 367 368 /// Ident - Handle #ident directives when read by the preprocessor. 369 /// 370 void PrintPPOutputPPCallbacks::Ident(SourceLocation Loc, StringRef S) { 371 MoveToLine(Loc); 372 373 OS.write("#ident ", strlen("#ident ")); 374 OS.write(S.begin(), S.size()); 375 EmittedTokensOnThisLine = true; 376 } 377 378 /// MacroDefined - This hook is called whenever a macro definition is seen. 379 void PrintPPOutputPPCallbacks::MacroDefined(const Token &MacroNameTok, 380 const MacroDirective *MD) { 381 const MacroInfo *MI = MD->getMacroInfo(); 382 // Only print out macro definitions in -dD mode. 383 if (!DumpDefines || 384 // Ignore __FILE__ etc. 385 MI->isBuiltinMacro()) return; 386 387 MoveToLine(MI->getDefinitionLoc()); 388 PrintMacroDefinition(*MacroNameTok.getIdentifierInfo(), *MI, PP, OS); 389 setEmittedDirectiveOnThisLine(); 390 } 391 392 void PrintPPOutputPPCallbacks::MacroUndefined(const Token &MacroNameTok, 393 const MacroDefinition &MD, 394 const MacroDirective *Undef) { 395 // Only print out macro definitions in -dD mode. 396 if (!DumpDefines) return; 397 398 MoveToLine(MacroNameTok.getLocation()); 399 OS << "#undef " << MacroNameTok.getIdentifierInfo()->getName(); 400 setEmittedDirectiveOnThisLine(); 401 } 402 403 static void outputPrintable(raw_ostream &OS, StringRef Str) { 404 for (unsigned char Char : Str) { 405 if (isPrintable(Char) && Char != '\\' && Char != '"') 406 OS << (char)Char; 407 else // Output anything hard as an octal escape. 408 OS << '\\' 409 << (char)('0' + ((Char >> 6) & 7)) 410 << (char)('0' + ((Char >> 3) & 7)) 411 << (char)('0' + ((Char >> 0) & 7)); 412 } 413 } 414 415 void PrintPPOutputPPCallbacks::PragmaMessage(SourceLocation Loc, 416 StringRef Namespace, 417 PragmaMessageKind Kind, 418 StringRef Str) { 419 startNewLineIfNeeded(); 420 MoveToLine(Loc); 421 OS << "#pragma "; 422 if (!Namespace.empty()) 423 OS << Namespace << ' '; 424 switch (Kind) { 425 case PMK_Message: 426 OS << "message(\""; 427 break; 428 case PMK_Warning: 429 OS << "warning \""; 430 break; 431 case PMK_Error: 432 OS << "error \""; 433 break; 434 } 435 436 outputPrintable(OS, Str); 437 OS << '"'; 438 if (Kind == PMK_Message) 439 OS << ')'; 440 setEmittedDirectiveOnThisLine(); 441 } 442 443 void PrintPPOutputPPCallbacks::PragmaDebug(SourceLocation Loc, 444 StringRef DebugType) { 445 startNewLineIfNeeded(); 446 MoveToLine(Loc); 447 448 OS << "#pragma clang __debug "; 449 OS << DebugType; 450 451 setEmittedDirectiveOnThisLine(); 452 } 453 454 void PrintPPOutputPPCallbacks:: 455 PragmaDiagnosticPush(SourceLocation Loc, StringRef Namespace) { 456 startNewLineIfNeeded(); 457 MoveToLine(Loc); 458 OS << "#pragma " << Namespace << " diagnostic push"; 459 setEmittedDirectiveOnThisLine(); 460 } 461 462 void PrintPPOutputPPCallbacks:: 463 PragmaDiagnosticPop(SourceLocation Loc, StringRef Namespace) { 464 startNewLineIfNeeded(); 465 MoveToLine(Loc); 466 OS << "#pragma " << Namespace << " diagnostic pop"; 467 setEmittedDirectiveOnThisLine(); 468 } 469 470 void PrintPPOutputPPCallbacks::PragmaDiagnostic(SourceLocation Loc, 471 StringRef Namespace, 472 diag::Severity Map, 473 StringRef Str) { 474 startNewLineIfNeeded(); 475 MoveToLine(Loc); 476 OS << "#pragma " << Namespace << " diagnostic "; 477 switch (Map) { 478 case diag::Severity::Remark: 479 OS << "remark"; 480 break; 481 case diag::Severity::Warning: 482 OS << "warning"; 483 break; 484 case diag::Severity::Error: 485 OS << "error"; 486 break; 487 case diag::Severity::Ignored: 488 OS << "ignored"; 489 break; 490 case diag::Severity::Fatal: 491 OS << "fatal"; 492 break; 493 } 494 OS << " \"" << Str << '"'; 495 setEmittedDirectiveOnThisLine(); 496 } 497 498 void PrintPPOutputPPCallbacks::PragmaWarning(SourceLocation Loc, 499 StringRef WarningSpec, 500 ArrayRef<int> Ids) { 501 startNewLineIfNeeded(); 502 MoveToLine(Loc); 503 OS << "#pragma warning(" << WarningSpec << ':'; 504 for (ArrayRef<int>::iterator I = Ids.begin(), E = Ids.end(); I != E; ++I) 505 OS << ' ' << *I; 506 OS << ')'; 507 setEmittedDirectiveOnThisLine(); 508 } 509 510 void PrintPPOutputPPCallbacks::PragmaWarningPush(SourceLocation Loc, 511 int Level) { 512 startNewLineIfNeeded(); 513 MoveToLine(Loc); 514 OS << "#pragma warning(push"; 515 if (Level >= 0) 516 OS << ", " << Level; 517 OS << ')'; 518 setEmittedDirectiveOnThisLine(); 519 } 520 521 void PrintPPOutputPPCallbacks::PragmaWarningPop(SourceLocation Loc) { 522 startNewLineIfNeeded(); 523 MoveToLine(Loc); 524 OS << "#pragma warning(pop)"; 525 setEmittedDirectiveOnThisLine(); 526 } 527 528 /// HandleFirstTokOnLine - When emitting a preprocessed file in -E mode, this 529 /// is called for the first token on each new line. If this really is the start 530 /// of a new logical line, handle it and return true, otherwise return false. 531 /// This may not be the start of a logical line because the "start of line" 532 /// marker is set for spelling lines, not expansion ones. 533 bool PrintPPOutputPPCallbacks::HandleFirstTokOnLine(Token &Tok) { 534 // Figure out what line we went to and insert the appropriate number of 535 // newline characters. 536 if (!MoveToLine(Tok.getLocation())) 537 return false; 538 539 // Print out space characters so that the first token on a line is 540 // indented for easy reading. 541 unsigned ColNo = SM.getExpansionColumnNumber(Tok.getLocation()); 542 543 // The first token on a line can have a column number of 1, yet still expect 544 // leading white space, if a macro expansion in column 1 starts with an empty 545 // macro argument, or an empty nested macro expansion. In this case, move the 546 // token to column 2. 547 if (ColNo == 1 && Tok.hasLeadingSpace()) 548 ColNo = 2; 549 550 // This hack prevents stuff like: 551 // #define HASH # 552 // HASH define foo bar 553 // From having the # character end up at column 1, which makes it so it 554 // is not handled as a #define next time through the preprocessor if in 555 // -fpreprocessed mode. 556 if (ColNo <= 1 && Tok.is(tok::hash)) 557 OS << ' '; 558 559 // Otherwise, indent the appropriate number of spaces. 560 for (; ColNo > 1; --ColNo) 561 OS << ' '; 562 563 return true; 564 } 565 566 void PrintPPOutputPPCallbacks::HandleNewlinesInToken(const char *TokStr, 567 unsigned Len) { 568 unsigned NumNewlines = 0; 569 for (; Len; --Len, ++TokStr) { 570 if (*TokStr != '\n' && 571 *TokStr != '\r') 572 continue; 573 574 ++NumNewlines; 575 576 // If we have \n\r or \r\n, skip both and count as one line. 577 if (Len != 1 && 578 (TokStr[1] == '\n' || TokStr[1] == '\r') && 579 TokStr[0] != TokStr[1]) { 580 ++TokStr; 581 --Len; 582 } 583 } 584 585 if (NumNewlines == 0) return; 586 587 CurLine += NumNewlines; 588 } 589 590 591 namespace { 592 struct UnknownPragmaHandler : public PragmaHandler { 593 const char *Prefix; 594 PrintPPOutputPPCallbacks *Callbacks; 595 596 // Set to true if tokens should be expanded 597 bool ShouldExpandTokens; 598 599 UnknownPragmaHandler(const char *prefix, PrintPPOutputPPCallbacks *callbacks, 600 bool RequireTokenExpansion) 601 : Prefix(prefix), Callbacks(callbacks), 602 ShouldExpandTokens(RequireTokenExpansion) {} 603 void HandlePragma(Preprocessor &PP, PragmaIntroducerKind Introducer, 604 Token &PragmaTok) override { 605 // Figure out what line we went to and insert the appropriate number of 606 // newline characters. 607 Callbacks->startNewLineIfNeeded(); 608 Callbacks->MoveToLine(PragmaTok.getLocation()); 609 Callbacks->OS.write(Prefix, strlen(Prefix)); 610 611 if (ShouldExpandTokens) { 612 // The first token does not have expanded macros. Expand them, if 613 // required. 614 auto Toks = llvm::make_unique<Token[]>(1); 615 Toks[0] = PragmaTok; 616 PP.EnterTokenStream(std::move(Toks), /*NumToks=*/1, 617 /*DisableMacroExpansion=*/false); 618 PP.Lex(PragmaTok); 619 } 620 Token PrevToken; 621 Token PrevPrevToken; 622 PrevToken.startToken(); 623 PrevPrevToken.startToken(); 624 625 // Read and print all of the pragma tokens. 626 while (PragmaTok.isNot(tok::eod)) { 627 if (PragmaTok.hasLeadingSpace() || 628 Callbacks->AvoidConcat(PrevPrevToken, PrevToken, PragmaTok)) 629 Callbacks->OS << ' '; 630 std::string TokSpell = PP.getSpelling(PragmaTok); 631 Callbacks->OS.write(&TokSpell[0], TokSpell.size()); 632 633 PrevPrevToken = PrevToken; 634 PrevToken = PragmaTok; 635 636 if (ShouldExpandTokens) 637 PP.Lex(PragmaTok); 638 else 639 PP.LexUnexpandedToken(PragmaTok); 640 } 641 Callbacks->setEmittedDirectiveOnThisLine(); 642 } 643 }; 644 } // end anonymous namespace 645 646 647 static void PrintPreprocessedTokens(Preprocessor &PP, Token &Tok, 648 PrintPPOutputPPCallbacks *Callbacks, 649 raw_ostream &OS) { 650 bool DropComments = PP.getLangOpts().TraditionalCPP && 651 !PP.getCommentRetentionState(); 652 653 char Buffer[256]; 654 Token PrevPrevTok, PrevTok; 655 PrevPrevTok.startToken(); 656 PrevTok.startToken(); 657 while (1) { 658 if (Callbacks->hasEmittedDirectiveOnThisLine()) { 659 Callbacks->startNewLineIfNeeded(); 660 Callbacks->MoveToLine(Tok.getLocation()); 661 } 662 663 // If this token is at the start of a line, emit newlines if needed. 664 if (Tok.isAtStartOfLine() && Callbacks->HandleFirstTokOnLine(Tok)) { 665 // done. 666 } else if (Tok.hasLeadingSpace() || 667 // If we haven't emitted a token on this line yet, PrevTok isn't 668 // useful to look at and no concatenation could happen anyway. 669 (Callbacks->hasEmittedTokensOnThisLine() && 670 // Don't print "-" next to "-", it would form "--". 671 Callbacks->AvoidConcat(PrevPrevTok, PrevTok, Tok))) { 672 OS << ' '; 673 } 674 675 if (DropComments && Tok.is(tok::comment)) { 676 // Skip comments. Normally the preprocessor does not generate 677 // tok::comment nodes at all when not keeping comments, but under 678 // -traditional-cpp the lexer keeps /all/ whitespace, including comments. 679 SourceLocation StartLoc = Tok.getLocation(); 680 Callbacks->MoveToLine(StartLoc.getLocWithOffset(Tok.getLength())); 681 } else if (Tok.is(tok::annot_module_include) || 682 Tok.is(tok::annot_module_begin) || 683 Tok.is(tok::annot_module_end)) { 684 // PrintPPOutputPPCallbacks::InclusionDirective handles producing 685 // appropriate output here. Ignore this token entirely. 686 PP.Lex(Tok); 687 continue; 688 } else if (IdentifierInfo *II = Tok.getIdentifierInfo()) { 689 OS << II->getName(); 690 } else if (Tok.isLiteral() && !Tok.needsCleaning() && 691 Tok.getLiteralData()) { 692 OS.write(Tok.getLiteralData(), Tok.getLength()); 693 } else if (Tok.getLength() < 256) { 694 const char *TokPtr = Buffer; 695 unsigned Len = PP.getSpelling(Tok, TokPtr); 696 OS.write(TokPtr, Len); 697 698 // Tokens that can contain embedded newlines need to adjust our current 699 // line number. 700 if (Tok.getKind() == tok::comment || Tok.getKind() == tok::unknown) 701 Callbacks->HandleNewlinesInToken(TokPtr, Len); 702 } else { 703 std::string S = PP.getSpelling(Tok); 704 OS.write(&S[0], S.size()); 705 706 // Tokens that can contain embedded newlines need to adjust our current 707 // line number. 708 if (Tok.getKind() == tok::comment || Tok.getKind() == tok::unknown) 709 Callbacks->HandleNewlinesInToken(&S[0], S.size()); 710 } 711 Callbacks->setEmittedTokensOnThisLine(); 712 713 if (Tok.is(tok::eof)) break; 714 715 PrevPrevTok = PrevTok; 716 PrevTok = Tok; 717 PP.Lex(Tok); 718 } 719 } 720 721 typedef std::pair<const IdentifierInfo *, MacroInfo *> id_macro_pair; 722 static int MacroIDCompare(const id_macro_pair *LHS, const id_macro_pair *RHS) { 723 return LHS->first->getName().compare(RHS->first->getName()); 724 } 725 726 static void DoPrintMacros(Preprocessor &PP, raw_ostream *OS) { 727 // Ignore unknown pragmas. 728 PP.IgnorePragmas(); 729 730 // -dM mode just scans and ignores all tokens in the files, then dumps out 731 // the macro table at the end. 732 PP.EnterMainSourceFile(); 733 734 Token Tok; 735 do PP.Lex(Tok); 736 while (Tok.isNot(tok::eof)); 737 738 SmallVector<id_macro_pair, 128> MacrosByID; 739 for (Preprocessor::macro_iterator I = PP.macro_begin(), E = PP.macro_end(); 740 I != E; ++I) { 741 auto *MD = I->second.getLatest(); 742 if (MD && MD->isDefined()) 743 MacrosByID.push_back(id_macro_pair(I->first, MD->getMacroInfo())); 744 } 745 llvm::array_pod_sort(MacrosByID.begin(), MacrosByID.end(), MacroIDCompare); 746 747 for (unsigned i = 0, e = MacrosByID.size(); i != e; ++i) { 748 MacroInfo &MI = *MacrosByID[i].second; 749 // Ignore computed macros like __LINE__ and friends. 750 if (MI.isBuiltinMacro()) continue; 751 752 PrintMacroDefinition(*MacrosByID[i].first, MI, PP, *OS); 753 *OS << '\n'; 754 } 755 } 756 757 /// DoPrintPreprocessedInput - This implements -E mode. 758 /// 759 void clang::DoPrintPreprocessedInput(Preprocessor &PP, raw_ostream *OS, 760 const PreprocessorOutputOptions &Opts) { 761 // Show macros with no output is handled specially. 762 if (!Opts.ShowCPP) { 763 assert(Opts.ShowMacros && "Not yet implemented!"); 764 DoPrintMacros(PP, OS); 765 return; 766 } 767 768 // Inform the preprocessor whether we want it to retain comments or not, due 769 // to -C or -CC. 770 PP.SetCommentRetentionState(Opts.ShowComments, Opts.ShowMacroComments); 771 772 PrintPPOutputPPCallbacks *Callbacks = new PrintPPOutputPPCallbacks( 773 PP, *OS, !Opts.ShowLineMarkers, Opts.ShowMacros, 774 Opts.ShowIncludeDirectives, Opts.UseLineDirectives); 775 776 // Expand macros in pragmas with -fms-extensions. The assumption is that 777 // the majority of pragmas in such a file will be Microsoft pragmas. 778 PP.AddPragmaHandler(new UnknownPragmaHandler( 779 "#pragma", Callbacks, 780 /*RequireTokenExpansion=*/PP.getLangOpts().MicrosoftExt)); 781 PP.AddPragmaHandler( 782 "GCC", new UnknownPragmaHandler( 783 "#pragma GCC", Callbacks, 784 /*RequireTokenExpansion=*/PP.getLangOpts().MicrosoftExt)); 785 PP.AddPragmaHandler( 786 "clang", new UnknownPragmaHandler( 787 "#pragma clang", Callbacks, 788 /*RequireTokenExpansion=*/PP.getLangOpts().MicrosoftExt)); 789 790 // The tokens after pragma omp need to be expanded. 791 // 792 // OpenMP [2.1, Directive format] 793 // Preprocessing tokens following the #pragma omp are subject to macro 794 // replacement. 795 PP.AddPragmaHandler("omp", 796 new UnknownPragmaHandler("#pragma omp", Callbacks, 797 /*RequireTokenExpansion=*/true)); 798 799 PP.addPPCallbacks(std::unique_ptr<PPCallbacks>(Callbacks)); 800 801 // After we have configured the preprocessor, enter the main file. 802 PP.EnterMainSourceFile(); 803 804 // Consume all of the tokens that come from the predefines buffer. Those 805 // should not be emitted into the output and are guaranteed to be at the 806 // start. 807 const SourceManager &SourceMgr = PP.getSourceManager(); 808 Token Tok; 809 do { 810 PP.Lex(Tok); 811 if (Tok.is(tok::eof) || !Tok.getLocation().isFileID()) 812 break; 813 814 PresumedLoc PLoc = SourceMgr.getPresumedLoc(Tok.getLocation()); 815 if (PLoc.isInvalid()) 816 break; 817 818 if (strcmp(PLoc.getFilename(), "<built-in>")) 819 break; 820 } while (true); 821 822 // Read all the preprocessed tokens, printing them out to the stream. 823 PrintPreprocessedTokens(PP, Tok, Callbacks, *OS); 824 *OS << '\n'; 825 } 826