243 lines
8.1 KiB
C++
243 lines
8.1 KiB
C++
//===--- LiteralSupport.h ---------------------------------------*- C++ -*-===//
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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 defines the NumericLiteralParser, CharLiteralParser, and
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// StringLiteralParser interfaces.
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//
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//===----------------------------------------------------------------------===//
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#ifndef CLANG_LITERALSUPPORT_H
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#define CLANG_LITERALSUPPORT_H
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#include "clang/Basic/CharInfo.h"
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#include "clang/Basic/LLVM.h"
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#include "clang/Basic/TokenKinds.h"
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#include "llvm/ADT/APFloat.h"
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#include "llvm/ADT/SmallString.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/Support/DataTypes.h"
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namespace clang {
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class DiagnosticsEngine;
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class Preprocessor;
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class Token;
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class SourceLocation;
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class TargetInfo;
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class SourceManager;
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class LangOptions;
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/// NumericLiteralParser - This performs strict semantic analysis of the content
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/// of a ppnumber, classifying it as either integer, floating, or erroneous,
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/// determines the radix of the value and can convert it to a useful value.
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class NumericLiteralParser {
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Preprocessor &PP; // needed for diagnostics
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const char *const ThisTokBegin;
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const char *const ThisTokEnd;
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const char *DigitsBegin, *SuffixBegin; // markers
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const char *s; // cursor
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unsigned radix;
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bool saw_exponent, saw_period, saw_ud_suffix;
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public:
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NumericLiteralParser(StringRef TokSpelling,
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SourceLocation TokLoc,
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Preprocessor &PP);
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bool hadError;
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bool isUnsigned;
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bool isLong; // This is *not* set for long long.
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bool isLongLong;
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bool isFloat; // 1.0f
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bool isImaginary; // 1.0i
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bool isMicrosoftInteger; // Microsoft suffix extension i8, i16, i32, or i64.
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bool isIntegerLiteral() const {
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return !saw_period && !saw_exponent;
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}
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bool isFloatingLiteral() const {
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return saw_period || saw_exponent;
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}
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bool hasUDSuffix() const {
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return saw_ud_suffix;
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}
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StringRef getUDSuffix() const {
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assert(saw_ud_suffix);
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return StringRef(SuffixBegin, ThisTokEnd - SuffixBegin);
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}
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unsigned getUDSuffixOffset() const {
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assert(saw_ud_suffix);
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return SuffixBegin - ThisTokBegin;
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}
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unsigned getRadix() const { return radix; }
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/// GetIntegerValue - Convert this numeric literal value to an APInt that
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/// matches Val's input width. If there is an overflow (i.e., if the unsigned
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/// value read is larger than the APInt's bits will hold), set Val to the low
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/// bits of the result and return true. Otherwise, return false.
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bool GetIntegerValue(llvm::APInt &Val);
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/// GetFloatValue - Convert this numeric literal to a floating value, using
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/// the specified APFloat fltSemantics (specifying float, double, etc).
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/// The optional bool isExact (passed-by-reference) has its value
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/// set to true if the returned APFloat can represent the number in the
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/// literal exactly, and false otherwise.
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llvm::APFloat::opStatus GetFloatValue(llvm::APFloat &Result);
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private:
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void ParseNumberStartingWithZero(SourceLocation TokLoc);
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/// SkipHexDigits - Read and skip over any hex digits, up to End.
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/// Return a pointer to the first non-hex digit or End.
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const char *SkipHexDigits(const char *ptr) {
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while (ptr != ThisTokEnd && isHexDigit(*ptr))
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ptr++;
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return ptr;
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}
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/// SkipOctalDigits - Read and skip over any octal digits, up to End.
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/// Return a pointer to the first non-hex digit or End.
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const char *SkipOctalDigits(const char *ptr) {
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while (ptr != ThisTokEnd && ((*ptr >= '0') && (*ptr <= '7')))
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ptr++;
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return ptr;
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}
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/// SkipDigits - Read and skip over any digits, up to End.
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/// Return a pointer to the first non-hex digit or End.
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const char *SkipDigits(const char *ptr) {
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while (ptr != ThisTokEnd && isDigit(*ptr))
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ptr++;
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return ptr;
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}
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/// SkipBinaryDigits - Read and skip over any binary digits, up to End.
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/// Return a pointer to the first non-binary digit or End.
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const char *SkipBinaryDigits(const char *ptr) {
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while (ptr != ThisTokEnd && (*ptr == '0' || *ptr == '1'))
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ptr++;
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return ptr;
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}
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};
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/// CharLiteralParser - Perform interpretation and semantic analysis of a
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/// character literal.
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class CharLiteralParser {
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uint64_t Value;
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tok::TokenKind Kind;
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bool IsMultiChar;
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bool HadError;
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SmallString<32> UDSuffixBuf;
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unsigned UDSuffixOffset;
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public:
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CharLiteralParser(const char *begin, const char *end,
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SourceLocation Loc, Preprocessor &PP,
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tok::TokenKind kind);
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bool hadError() const { return HadError; }
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bool isAscii() const { return Kind == tok::char_constant; }
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bool isWide() const { return Kind == tok::wide_char_constant; }
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bool isUTF16() const { return Kind == tok::utf16_char_constant; }
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bool isUTF32() const { return Kind == tok::utf32_char_constant; }
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bool isMultiChar() const { return IsMultiChar; }
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uint64_t getValue() const { return Value; }
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StringRef getUDSuffix() const { return UDSuffixBuf; }
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unsigned getUDSuffixOffset() const {
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assert(!UDSuffixBuf.empty() && "no ud-suffix");
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return UDSuffixOffset;
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}
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};
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/// StringLiteralParser - This decodes string escape characters and performs
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/// wide string analysis and Translation Phase #6 (concatenation of string
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/// literals) (C99 5.1.1.2p1).
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class StringLiteralParser {
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const SourceManager &SM;
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const LangOptions &Features;
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const TargetInfo &Target;
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DiagnosticsEngine *Diags;
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unsigned MaxTokenLength;
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unsigned SizeBound;
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unsigned CharByteWidth;
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tok::TokenKind Kind;
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SmallString<512> ResultBuf;
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char *ResultPtr; // cursor
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SmallString<32> UDSuffixBuf;
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unsigned UDSuffixToken;
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unsigned UDSuffixOffset;
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public:
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StringLiteralParser(const Token *StringToks, unsigned NumStringToks,
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Preprocessor &PP, bool Complain = true);
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StringLiteralParser(const Token *StringToks, unsigned NumStringToks,
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const SourceManager &sm, const LangOptions &features,
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const TargetInfo &target, DiagnosticsEngine *diags = 0)
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: SM(sm), Features(features), Target(target), Diags(diags),
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MaxTokenLength(0), SizeBound(0), CharByteWidth(0), Kind(tok::unknown),
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ResultPtr(ResultBuf.data()), hadError(false), Pascal(false) {
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init(StringToks, NumStringToks);
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}
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bool hadError;
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bool Pascal;
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StringRef GetString() const {
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return StringRef(ResultBuf.data(), GetStringLength());
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}
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unsigned GetStringLength() const { return ResultPtr-ResultBuf.data(); }
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unsigned GetNumStringChars() const {
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return GetStringLength() / CharByteWidth;
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}
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/// getOffsetOfStringByte - This function returns the offset of the
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/// specified byte of the string data represented by Token. This handles
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/// advancing over escape sequences in the string.
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///
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/// If the Diagnostics pointer is non-null, then this will do semantic
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/// checking of the string literal and emit errors and warnings.
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unsigned getOffsetOfStringByte(const Token &TheTok, unsigned ByteNo) const;
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bool isAscii() const { return Kind == tok::string_literal; }
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bool isWide() const { return Kind == tok::wide_string_literal; }
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bool isUTF8() const { return Kind == tok::utf8_string_literal; }
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bool isUTF16() const { return Kind == tok::utf16_string_literal; }
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bool isUTF32() const { return Kind == tok::utf32_string_literal; }
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bool isPascal() const { return Pascal; }
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StringRef getUDSuffix() const { return UDSuffixBuf; }
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/// Get the index of a token containing a ud-suffix.
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unsigned getUDSuffixToken() const {
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assert(!UDSuffixBuf.empty() && "no ud-suffix");
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return UDSuffixToken;
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}
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/// Get the spelling offset of the first byte of the ud-suffix.
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unsigned getUDSuffixOffset() const {
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assert(!UDSuffixBuf.empty() && "no ud-suffix");
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return UDSuffixOffset;
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}
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private:
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void init(const Token *StringToks, unsigned NumStringToks);
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bool CopyStringFragment(const Token &Tok, const char *TokBegin,
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StringRef Fragment);
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void DiagnoseLexingError(SourceLocation Loc);
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};
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} // end namespace clang
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#endif
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