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			568 lines
		
	
	
		
			22 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			568 lines
		
	
	
		
			22 KiB
		
	
	
	
		
			C++
		
	
	
	
| //===--- TokenLexer.cpp - Lex from a token stream -------------------------===//
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| //
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| //                     The LLVM Compiler Infrastructure
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| //
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| // This file is distributed under the University of Illinois Open Source
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| // License. See LICENSE.TXT for details.
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| //
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| //===----------------------------------------------------------------------===//
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| //
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| // This file implements the TokenLexer interface.
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| //
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| //===----------------------------------------------------------------------===//
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| 
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| #include "clang/Lex/TokenLexer.h"
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| #include "MacroArgs.h"
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| #include "clang/Lex/MacroInfo.h"
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| #include "clang/Lex/Preprocessor.h"
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| #include "clang/Basic/SourceManager.h"
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| #include "clang/Lex/LexDiagnostic.h"
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| #include "llvm/ADT/SmallVector.h"
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| using namespace clang;
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| 
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| 
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| /// Create a TokenLexer for the specified macro with the specified actual
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| /// arguments.  Note that this ctor takes ownership of the ActualArgs pointer.
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| void TokenLexer::Init(Token &Tok, SourceLocation ILEnd, MacroArgs *Actuals) {
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|   // If the client is reusing a TokenLexer, make sure to free any memory
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|   // associated with it.
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|   destroy();
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| 
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|   Macro = PP.getMacroInfo(Tok.getIdentifierInfo());
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|   ActualArgs = Actuals;
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|   CurToken = 0;
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| 
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|   InstantiateLocStart = Tok.getLocation();
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|   InstantiateLocEnd = ILEnd;
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|   AtStartOfLine = Tok.isAtStartOfLine();
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|   HasLeadingSpace = Tok.hasLeadingSpace();
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|   Tokens = &*Macro->tokens_begin();
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|   OwnsTokens = false;
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|   DisableMacroExpansion = false;
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|   NumTokens = Macro->tokens_end()-Macro->tokens_begin();
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| 
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|   // If this is a function-like macro, expand the arguments and change
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|   // Tokens to point to the expanded tokens.
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|   if (Macro->isFunctionLike() && Macro->getNumArgs())
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|     ExpandFunctionArguments();
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| 
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|   // Mark the macro as currently disabled, so that it is not recursively
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|   // expanded.  The macro must be disabled only after argument pre-expansion of
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|   // function-like macro arguments occurs.
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|   Macro->DisableMacro();
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| }
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| 
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| 
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| 
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| /// Create a TokenLexer for the specified token stream.  This does not
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| /// take ownership of the specified token vector.
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| void TokenLexer::Init(const Token *TokArray, unsigned NumToks,
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|                       bool disableMacroExpansion, bool ownsTokens) {
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|   // If the client is reusing a TokenLexer, make sure to free any memory
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|   // associated with it.
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|   destroy();
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| 
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|   Macro = 0;
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|   ActualArgs = 0;
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|   Tokens = TokArray;
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|   OwnsTokens = ownsTokens;
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|   DisableMacroExpansion = disableMacroExpansion;
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|   NumTokens = NumToks;
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|   CurToken = 0;
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|   InstantiateLocStart = InstantiateLocEnd = SourceLocation();
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|   AtStartOfLine = false;
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|   HasLeadingSpace = false;
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| 
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|   // Set HasLeadingSpace/AtStartOfLine so that the first token will be
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|   // returned unmodified.
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|   if (NumToks != 0) {
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|     AtStartOfLine   = TokArray[0].isAtStartOfLine();
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|     HasLeadingSpace = TokArray[0].hasLeadingSpace();
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|   }
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| }
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| 
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| 
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| void TokenLexer::destroy() {
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|   // If this was a function-like macro that actually uses its arguments, delete
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|   // the expanded tokens.
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|   if (OwnsTokens) {
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|     delete [] Tokens;
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|     Tokens = 0;
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|     OwnsTokens = false;
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|   }
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| 
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|   // TokenLexer owns its formal arguments.
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|   if (ActualArgs) ActualArgs->destroy(PP);
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| }
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| 
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| /// Expand the arguments of a function-like macro so that we can quickly
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| /// return preexpanded tokens from Tokens.
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| void TokenLexer::ExpandFunctionArguments() {
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|   llvm::SmallVector<Token, 128> ResultToks;
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| 
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|   // Loop through 'Tokens', expanding them into ResultToks.  Keep
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|   // track of whether we change anything.  If not, no need to keep them.  If so,
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|   // we install the newly expanded sequence as the new 'Tokens' list.
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|   bool MadeChange = false;
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| 
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|   // NextTokGetsSpace - When this is true, the next token appended to the
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|   // output list will get a leading space, regardless of whether it had one to
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|   // begin with or not.  This is used for placemarker support.
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|   bool NextTokGetsSpace = false;
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| 
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|   for (unsigned i = 0, e = NumTokens; i != e; ++i) {
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|     // If we found the stringify operator, get the argument stringified.  The
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|     // preprocessor already verified that the following token is a macro name
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|     // when the #define was parsed.
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|     const Token &CurTok = Tokens[i];
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|     if (CurTok.is(tok::hash) || CurTok.is(tok::hashat)) {
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|       int ArgNo = Macro->getArgumentNum(Tokens[i+1].getIdentifierInfo());
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|       assert(ArgNo != -1 && "Token following # is not an argument?");
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| 
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|       Token Res;
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|       if (CurTok.is(tok::hash))  // Stringify
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|         Res = ActualArgs->getStringifiedArgument(ArgNo, PP);
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|       else {
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|         // 'charify': don't bother caching these.
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|         Res = MacroArgs::StringifyArgument(ActualArgs->getUnexpArgument(ArgNo),
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|                                            PP, true);
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|       }
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| 
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|       // The stringified/charified string leading space flag gets set to match
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|       // the #/#@ operator.
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|       if (CurTok.hasLeadingSpace() || NextTokGetsSpace)
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|         Res.setFlag(Token::LeadingSpace);
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| 
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|       ResultToks.push_back(Res);
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|       MadeChange = true;
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|       ++i;  // Skip arg name.
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|       NextTokGetsSpace = false;
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|       continue;
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|     }
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| 
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|     // Otherwise, if this is not an argument token, just add the token to the
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|     // output buffer.
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|     IdentifierInfo *II = CurTok.getIdentifierInfo();
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|     int ArgNo = II ? Macro->getArgumentNum(II) : -1;
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|     if (ArgNo == -1) {
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|       // This isn't an argument, just add it.
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|       ResultToks.push_back(CurTok);
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| 
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|       if (NextTokGetsSpace) {
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|         ResultToks.back().setFlag(Token::LeadingSpace);
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|         NextTokGetsSpace = false;
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|       }
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|       continue;
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|     }
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| 
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|     // An argument is expanded somehow, the result is different than the
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|     // input.
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|     MadeChange = true;
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| 
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|     // Otherwise, this is a use of the argument.  Find out if there is a paste
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|     // (##) operator before or after the argument.
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|     bool PasteBefore =
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|       !ResultToks.empty() && ResultToks.back().is(tok::hashhash);
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|     bool PasteAfter = i+1 != e && Tokens[i+1].is(tok::hashhash);
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| 
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|     // If it is not the LHS/RHS of a ## operator, we must pre-expand the
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|     // argument and substitute the expanded tokens into the result.  This is
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|     // C99 6.10.3.1p1.
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|     if (!PasteBefore && !PasteAfter) {
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|       const Token *ResultArgToks;
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| 
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|       // Only preexpand the argument if it could possibly need it.  This
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|       // avoids some work in common cases.
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|       const Token *ArgTok = ActualArgs->getUnexpArgument(ArgNo);
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|       if (ActualArgs->ArgNeedsPreexpansion(ArgTok, PP))
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|         ResultArgToks = &ActualArgs->getPreExpArgument(ArgNo, Macro, PP)[0];
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|       else
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|         ResultArgToks = ArgTok;  // Use non-preexpanded tokens.
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| 
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|       // If the arg token expanded into anything, append it.
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|       if (ResultArgToks->isNot(tok::eof)) {
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|         unsigned FirstResult = ResultToks.size();
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|         unsigned NumToks = MacroArgs::getArgLength(ResultArgToks);
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|         ResultToks.append(ResultArgToks, ResultArgToks+NumToks);
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| 
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|         // If any tokens were substituted from the argument, the whitespace
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|         // before the first token should match the whitespace of the arg
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|         // identifier.
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|         ResultToks[FirstResult].setFlagValue(Token::LeadingSpace,
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|                                              CurTok.hasLeadingSpace() ||
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|                                              NextTokGetsSpace);
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|         NextTokGetsSpace = false;
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|       } else {
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|         // If this is an empty argument, and if there was whitespace before the
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|         // formal token, make sure the next token gets whitespace before it.
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|         NextTokGetsSpace = CurTok.hasLeadingSpace();
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|       }
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|       continue;
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|     }
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| 
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|     // Okay, we have a token that is either the LHS or RHS of a paste (##)
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|     // argument.  It gets substituted as its non-pre-expanded tokens.
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|     const Token *ArgToks = ActualArgs->getUnexpArgument(ArgNo);
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|     unsigned NumToks = MacroArgs::getArgLength(ArgToks);
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|     if (NumToks) {  // Not an empty argument?
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|       // If this is the GNU ", ## __VA_ARG__" extension, and we just learned
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|       // that __VA_ARG__ expands to multiple tokens, avoid a pasting error when
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|       // the expander trys to paste ',' with the first token of the __VA_ARG__
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|       // expansion.
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|       if (PasteBefore && ResultToks.size() >= 2 &&
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|           ResultToks[ResultToks.size()-2].is(tok::comma) &&
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|           (unsigned)ArgNo == Macro->getNumArgs()-1 &&
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|           Macro->isVariadic()) {
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|         // Remove the paste operator, report use of the extension.
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|         PP.Diag(ResultToks.back().getLocation(), diag::ext_paste_comma);
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|         ResultToks.pop_back();
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|       }
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| 
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|       ResultToks.append(ArgToks, ArgToks+NumToks);
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| 
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|       // If this token (the macro argument) was supposed to get leading
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|       // whitespace, transfer this information onto the first token of the
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|       // expansion.
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|       //
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|       // Do not do this if the paste operator occurs before the macro argument,
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|       // as in "A ## MACROARG".  In valid code, the first token will get
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|       // smooshed onto the preceding one anyway (forming AMACROARG).  In
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|       // assembler-with-cpp mode, invalid pastes are allowed through: in this
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|       // case, we do not want the extra whitespace to be added.  For example,
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|       // we want ". ## foo" -> ".foo" not ". foo".
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|       if ((CurTok.hasLeadingSpace() || NextTokGetsSpace) &&
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|           !PasteBefore)
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|         ResultToks[ResultToks.size()-NumToks].setFlag(Token::LeadingSpace);
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| 
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|       NextTokGetsSpace = false;
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|       continue;
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|     }
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| 
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|     // If an empty argument is on the LHS or RHS of a paste, the standard (C99
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|     // 6.10.3.3p2,3) calls for a bunch of placemarker stuff to occur.  We
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|     // implement this by eating ## operators when a LHS or RHS expands to
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|     // empty.
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|     NextTokGetsSpace |= CurTok.hasLeadingSpace();
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|     if (PasteAfter) {
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|       // Discard the argument token and skip (don't copy to the expansion
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|       // buffer) the paste operator after it.
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|       NextTokGetsSpace |= Tokens[i+1].hasLeadingSpace();
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|       ++i;
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|       continue;
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|     }
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| 
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|     // If this is on the RHS of a paste operator, we've already copied the
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|     // paste operator to the ResultToks list.  Remove it.
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|     assert(PasteBefore && ResultToks.back().is(tok::hashhash));
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|     NextTokGetsSpace |= ResultToks.back().hasLeadingSpace();
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|     ResultToks.pop_back();
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| 
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|     // If this is the __VA_ARGS__ token, and if the argument wasn't provided,
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|     // and if the macro had at least one real argument, and if the token before
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|     // the ## was a comma, remove the comma.
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|     if ((unsigned)ArgNo == Macro->getNumArgs()-1 && // is __VA_ARGS__
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|         ActualArgs->isVarargsElidedUse() &&       // Argument elided.
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|         !ResultToks.empty() && ResultToks.back().is(tok::comma)) {
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|       // Never add a space, even if the comma, ##, or arg had a space.
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|       NextTokGetsSpace = false;
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|       // Remove the paste operator, report use of the extension.
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|       PP.Diag(ResultToks.back().getLocation(), diag::ext_paste_comma);
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|       ResultToks.pop_back();
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|       
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|       // If the comma was right after another paste (e.g. "X##,##__VA_ARGS__"),
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|       // then removal of the comma should produce a placemarker token (in C99
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|       // terms) which we model by popping off the previous ##, giving us a plain
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|       // "X" when __VA_ARGS__ is empty.
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|       if (!ResultToks.empty() && ResultToks.back().is(tok::hashhash))
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|         ResultToks.pop_back();
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|     }
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|     continue;
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|   }
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| 
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|   // If anything changed, install this as the new Tokens list.
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|   if (MadeChange) {
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|     assert(!OwnsTokens && "This would leak if we already own the token list");
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|     // This is deleted in the dtor.
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|     NumTokens = ResultToks.size();
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|     llvm::BumpPtrAllocator &Alloc = PP.getPreprocessorAllocator();
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|     Token *Res =
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|       static_cast<Token *>(Alloc.Allocate(sizeof(Token)*ResultToks.size(),
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|                                           llvm::alignOf<Token>()));
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|     if (NumTokens)
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|       memcpy(Res, &ResultToks[0], NumTokens*sizeof(Token));
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|     Tokens = Res;
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| 
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|     // The preprocessor bump pointer owns these tokens, not us.
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|     OwnsTokens = false;
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|   }
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| }
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| 
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| /// Lex - Lex and return a token from this macro stream.
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| ///
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| void TokenLexer::Lex(Token &Tok) {
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|   // Lexing off the end of the macro, pop this macro off the expansion stack.
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|   if (isAtEnd()) {
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|     // If this is a macro (not a token stream), mark the macro enabled now
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|     // that it is no longer being expanded.
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|     if (Macro) Macro->EnableMacro();
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| 
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|     // Pop this context off the preprocessors lexer stack and get the next
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|     // token.  This will delete "this" so remember the PP instance var.
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|     Preprocessor &PPCache = PP;
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|     if (PP.HandleEndOfTokenLexer(Tok))
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|       return;
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| 
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|     // HandleEndOfTokenLexer may not return a token.  If it doesn't, lex
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|     // whatever is next.
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|     return PPCache.Lex(Tok);
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|   }
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| 
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|   // If this is the first token of the expanded result, we inherit spacing
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|   // properties later.
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|   bool isFirstToken = CurToken == 0;
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| 
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|   // Get the next token to return.
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|   Tok = Tokens[CurToken++];
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| 
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|   bool TokenIsFromPaste = false;
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| 
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|   // If this token is followed by a token paste (##) operator, paste the tokens!
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|   if (!isAtEnd() && Tokens[CurToken].is(tok::hashhash)) {
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|     // When handling the microsoft /##/ extension, the final token is
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|     // returned by PasteTokens, not the pasted token.
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|     if (PasteTokens(Tok))
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|       return;
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| 
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|     TokenIsFromPaste = true;
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|   }
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| 
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|   // The token's current location indicate where the token was lexed from.  We
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|   // need this information to compute the spelling of the token, but any
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|   // diagnostics for the expanded token should appear as if they came from
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|   // InstantiationLoc.  Pull this information together into a new SourceLocation
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|   // that captures all of this.
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|   if (InstantiateLocStart.isValid()) {   // Don't do this for token streams.
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|     SourceManager &SM = PP.getSourceManager();
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|     Tok.setLocation(SM.createInstantiationLoc(Tok.getLocation(),
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|                                               InstantiateLocStart,
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|                                               InstantiateLocEnd,
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|                                               Tok.getLength()));
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|   }
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| 
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|   // If this is the first token, set the lexical properties of the token to
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|   // match the lexical properties of the macro identifier.
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|   if (isFirstToken) {
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|     Tok.setFlagValue(Token::StartOfLine , AtStartOfLine);
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|     Tok.setFlagValue(Token::LeadingSpace, HasLeadingSpace);
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|   }
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| 
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|   // Handle recursive expansion!
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|   if (!Tok.isAnnotation() && Tok.getIdentifierInfo() != 0) {
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|     // Change the kind of this identifier to the appropriate token kind, e.g.
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|     // turning "for" into a keyword.
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|     IdentifierInfo *II = Tok.getIdentifierInfo();
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|     Tok.setKind(II->getTokenID());
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| 
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|     // If this identifier was poisoned and from a paste, emit an error.  This
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|     // won't be handled by Preprocessor::HandleIdentifier because this is coming
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|     // from a macro expansion.
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|     if (II->isPoisoned() && TokenIsFromPaste) {
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|       // We warn about __VA_ARGS__ with poisoning.
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|       if (II->isStr("__VA_ARGS__"))
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|         PP.Diag(Tok, diag::ext_pp_bad_vaargs_use);
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|       else
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|         PP.Diag(Tok, diag::err_pp_used_poisoned_id);
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|     }
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| 
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|     if (!DisableMacroExpansion && II->isHandleIdentifierCase())
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|       PP.HandleIdentifier(Tok);
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|   }
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| 
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|   // Otherwise, return a normal token.
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| }
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| 
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| /// PasteTokens - Tok is the LHS of a ## operator, and CurToken is the ##
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| /// operator.  Read the ## and RHS, and paste the LHS/RHS together.  If there
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| /// are more ## after it, chomp them iteratively.  Return the result as Tok.
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| /// If this returns true, the caller should immediately return the token.
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| bool TokenLexer::PasteTokens(Token &Tok) {
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|   llvm::SmallString<128> Buffer;
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|   const char *ResultTokStrPtr = 0;
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|   do {
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|     // Consume the ## operator.
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|     SourceLocation PasteOpLoc = Tokens[CurToken].getLocation();
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|     ++CurToken;
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|     assert(!isAtEnd() && "No token on the RHS of a paste operator!");
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| 
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|     // Get the RHS token.
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|     const Token &RHS = Tokens[CurToken];
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| 
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|     // Allocate space for the result token.  This is guaranteed to be enough for
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|     // the two tokens.
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|     Buffer.resize(Tok.getLength() + RHS.getLength());
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| 
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|     // Get the spelling of the LHS token in Buffer.
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|     const char *BufPtr = &Buffer[0];
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|     bool Invalid = false;
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|     unsigned LHSLen = PP.getSpelling(Tok, BufPtr, &Invalid);
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|     if (BufPtr != &Buffer[0])   // Really, we want the chars in Buffer!
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|       memcpy(&Buffer[0], BufPtr, LHSLen);
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|     if (Invalid)
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|       return true;
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|     
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|     BufPtr = &Buffer[LHSLen];
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|     unsigned RHSLen = PP.getSpelling(RHS, BufPtr, &Invalid);
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|     if (Invalid)
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|       return true;
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|     if (BufPtr != &Buffer[LHSLen])   // Really, we want the chars in Buffer!
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|       memcpy(&Buffer[LHSLen], BufPtr, RHSLen);
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| 
 | |
|     // Trim excess space.
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|     Buffer.resize(LHSLen+RHSLen);
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| 
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|     // Plop the pasted result (including the trailing newline and null) into a
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|     // scratch buffer where we can lex it.
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|     Token ResultTokTmp;
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|     ResultTokTmp.startToken();
 | |
| 
 | |
|     // Claim that the tmp token is a string_literal so that we can get the
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|     // character pointer back from CreateString in getLiteralData().
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|     ResultTokTmp.setKind(tok::string_literal);
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|     PP.CreateString(&Buffer[0], Buffer.size(), ResultTokTmp);
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|     SourceLocation ResultTokLoc = ResultTokTmp.getLocation();
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|     ResultTokStrPtr = ResultTokTmp.getLiteralData();
 | |
| 
 | |
|     // Lex the resultant pasted token into Result.
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|     Token Result;
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| 
 | |
|     if (Tok.isAnyIdentifier() && RHS.isAnyIdentifier()) {
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|       // Common paste case: identifier+identifier = identifier.  Avoid creating
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|       // a lexer and other overhead.
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|       PP.IncrementPasteCounter(true);
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|       Result.startToken();
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|       Result.setKind(tok::raw_identifier);
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|       Result.setRawIdentifierData(ResultTokStrPtr);
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|       Result.setLocation(ResultTokLoc);
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|       Result.setLength(LHSLen+RHSLen);
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|     } else {
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|       PP.IncrementPasteCounter(false);
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| 
 | |
|       assert(ResultTokLoc.isFileID() &&
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|              "Should be a raw location into scratch buffer");
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|       SourceManager &SourceMgr = PP.getSourceManager();
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|       FileID LocFileID = SourceMgr.getFileID(ResultTokLoc);
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| 
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|       bool Invalid = false;
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|       const char *ScratchBufStart
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|         = SourceMgr.getBufferData(LocFileID, &Invalid).data();
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|       if (Invalid)
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|         return false;
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| 
 | |
|       // Make a lexer to lex this string from.  Lex just this one token.
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|       // Make a lexer object so that we lex and expand the paste result.
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|       Lexer TL(SourceMgr.getLocForStartOfFile(LocFileID),
 | |
|                PP.getLangOptions(), ScratchBufStart,
 | |
|                ResultTokStrPtr, ResultTokStrPtr+LHSLen+RHSLen);
 | |
| 
 | |
|       // Lex a token in raw mode.  This way it won't look up identifiers
 | |
|       // automatically, lexing off the end will return an eof token, and
 | |
|       // warnings are disabled.  This returns true if the result token is the
 | |
|       // entire buffer.
 | |
|       bool isInvalid = !TL.LexFromRawLexer(Result);
 | |
| 
 | |
|       // If we got an EOF token, we didn't form even ONE token.  For example, we
 | |
|       // did "/ ## /" to get "//".
 | |
|       isInvalid |= Result.is(tok::eof);
 | |
| 
 | |
|       // If pasting the two tokens didn't form a full new token, this is an
 | |
|       // error.  This occurs with "x ## +"  and other stuff.  Return with Tok
 | |
|       // unmodified and with RHS as the next token to lex.
 | |
|       if (isInvalid) {
 | |
|         // Test for the Microsoft extension of /##/ turning into // here on the
 | |
|         // error path.
 | |
|         if (PP.getLangOptions().Microsoft && Tok.is(tok::slash) &&
 | |
|             RHS.is(tok::slash)) {
 | |
|           HandleMicrosoftCommentPaste(Tok);
 | |
|           return true;
 | |
|         }
 | |
| 
 | |
|         // Do not emit the error when preprocessing assembler code.
 | |
|         if (!PP.getLangOptions().AsmPreprocessor) {
 | |
|           // Explicitly convert the token location to have proper instantiation
 | |
|           // information so that the user knows where it came from.
 | |
|           SourceManager &SM = PP.getSourceManager();
 | |
|           SourceLocation Loc =
 | |
|             SM.createInstantiationLoc(PasteOpLoc, InstantiateLocStart,
 | |
|                                       InstantiateLocEnd, 2);
 | |
|           // If we're in microsoft extensions mode, downgrade this from a hard
 | |
|           // error to a warning that defaults to an error.  This allows
 | |
|           // disabling it.
 | |
|           PP.Diag(Loc,
 | |
|                   PP.getLangOptions().Microsoft ? diag::err_pp_bad_paste_ms 
 | |
|                                                 : diag::err_pp_bad_paste)
 | |
|             << Buffer.str();
 | |
|         }
 | |
| 
 | |
|         // Do not consume the RHS.
 | |
|         --CurToken;
 | |
|       }
 | |
| 
 | |
|       // Turn ## into 'unknown' to avoid # ## # from looking like a paste
 | |
|       // operator.
 | |
|       if (Result.is(tok::hashhash))
 | |
|         Result.setKind(tok::unknown);
 | |
|     }
 | |
| 
 | |
|     // Transfer properties of the LHS over the the Result.
 | |
|     Result.setFlagValue(Token::StartOfLine , Tok.isAtStartOfLine());
 | |
|     Result.setFlagValue(Token::LeadingSpace, Tok.hasLeadingSpace());
 | |
| 
 | |
|     // Finally, replace LHS with the result, consume the RHS, and iterate.
 | |
|     ++CurToken;
 | |
|     Tok = Result;
 | |
|   } while (!isAtEnd() && Tokens[CurToken].is(tok::hashhash));
 | |
| 
 | |
|   // Now that we got the result token, it will be subject to expansion.  Since
 | |
|   // token pasting re-lexes the result token in raw mode, identifier information
 | |
|   // isn't looked up.  As such, if the result is an identifier, look up id info.
 | |
|   if (Tok.is(tok::raw_identifier)) {
 | |
|     // Look up the identifier info for the token.  We disabled identifier lookup
 | |
|     // by saying we're skipping contents, so we need to do this manually.
 | |
|     PP.LookUpIdentifierInfo(Tok);
 | |
|   }
 | |
|   return false;
 | |
| }
 | |
| 
 | |
| /// isNextTokenLParen - If the next token lexed will pop this macro off the
 | |
| /// expansion stack, return 2.  If the next unexpanded token is a '(', return
 | |
| /// 1, otherwise return 0.
 | |
| unsigned TokenLexer::isNextTokenLParen() const {
 | |
|   // Out of tokens?
 | |
|   if (isAtEnd())
 | |
|     return 2;
 | |
|   return Tokens[CurToken].is(tok::l_paren);
 | |
| }
 | |
| 
 | |
| /// isParsingPreprocessorDirective - Return true if we are in the middle of a
 | |
| /// preprocessor directive.
 | |
| bool TokenLexer::isParsingPreprocessorDirective() const {
 | |
|   return Tokens[NumTokens-1].is(tok::eod) && !isAtEnd();
 | |
| }
 | |
| 
 | |
| /// HandleMicrosoftCommentPaste - In microsoft compatibility mode, /##/ pastes
 | |
| /// together to form a comment that comments out everything in the current
 | |
| /// macro, other active macros, and anything left on the current physical
 | |
| /// source line of the instantiated buffer.  Handle this by returning the
 | |
| /// first token on the next line.
 | |
| void TokenLexer::HandleMicrosoftCommentPaste(Token &Tok) {
 | |
|   // We 'comment out' the rest of this macro by just ignoring the rest of the
 | |
|   // tokens that have not been lexed yet, if any.
 | |
| 
 | |
|   // Since this must be a macro, mark the macro enabled now that it is no longer
 | |
|   // being expanded.
 | |
|   assert(Macro && "Token streams can't paste comments");
 | |
|   Macro->EnableMacro();
 | |
| 
 | |
|   PP.HandleMicrosoftCommentPaste(Tok);
 | |
| }
 |