"/"  L C F(tk::Slash);
"/=" L C F(tk::SlashEqual);
":"    L C F(tk::Colon);
","    L C F(tk::Comma);
"?"    L C F(tk::Question);
";"    L C F(tk::SemiColon);
"("    L C F(tk::OpenParen);
")"    L C F(tk::CloseParen);
"{"    L C F(yyextra->nobrace_ ? tk::OpenBrace__ : yylval->newline_ ? tk::OpenBrace_ : tk::OpenBrace);
"}"    L C F(tk::CloseBrace);
"["    L C F(tk::OpenBracket);
"]"    L C F(tk::CloseBracket);
@begin Java
"@class"          L C F(tk::AtClass);
@end
@begin ObjectiveC
"@end"            L C F(tk::AtEnd);
"@implementation" L C F(tk::AtImplementation);
"@import"         L C F(tk::AtImport);
"@selector"       L C F(tk::AtSelector);
@end
"false"        L C I(false, False(), tk::False);
"null"         L C I(null, Null(), tk::Null);
"true"         L C I(true, True(), tk::True);
"break"        L R I(word, Word("break"), tk::Break);
"case"         L C I(word, Word("case"), tk::Case);
"catch"        L C I(word, Word("catch"), tk::Catch);
"continue"     L R I(word, Word("continue"), tk::Continue);
"default"      L C I(word, Word("default"), tk::Default);
"delete"       L C I(word, Word("delete"), tk::Delete);
"do"           L C I(word, Word("do"), tk::Do);
"else"         L C I(word, Word("else"), tk::Else);
"finally"      L C I(word, Word("finally"), tk::Finally);
"for"          L C I(word, Word("for"), tk::For);
"function"     L C I(word, Word("function"), tk::Function);
"if"           L C I(word, Word("if"), tk::If);
"in"           L C I(word, Word("in"), yyextra->in_.top() ? tk::In_ : tk::In);
"instanceof"   L C I(word, Word("instanceof"), tk::InstanceOf);
"new"          L C I(word, Word("new"), tk::New);
"return"       L R I(word, Word("return"), tk::Return);
"switch"       L C I(word, Word("switch"), tk::Switch);
"this"         L C I(this, This(), tk::This);
"throw"        L R I(word, Word("throw"), tk::Throw);
"try"          L C I(word, Word("try"), tk::Try);
"typeof"       L C I(word, Word("typeof"), tk::TypeOf);
"var"          L C I(word, Word("var"), tk::Var);
"void"         L C I(word, Word("void"), tk::Void);
"while"        L C I(word, Word("while"), tk::While);
"with"         L C I(word, Word("with"), tk::With);
"debugger"     L C I(word, Word("debugger"), tk::Debugger);
"const"        L C I(word, Word("const"), tk::Const);
"class"        L C I(word, Word("class"), tk::Class);
"enum"         L C I(word, Word("enum"), tk::Enum);
"export"       L C I(word, Word("export"), tk::Export);
"extends"      L C I(word, Word("extends"), tk::Extends);
"import"       L C I(word, Word("import"), tk::Import);
"super"        L C I(word, Word("super"), tk::Super);
"implements"   L C I(identifier, Identifier("implements"), tk::Implements);
"interface"    L C I(identifier, Identifier("interface"), tk::Interface);
"package"      L C I(identifier, Identifier("package"), tk::Package);
"private"      L C I(identifier, Identifier("private"), tk::Private);
"protected"    L C I(identifier, Identifier("protected"), tk::Protected);
"public"       L C I(identifier, Identifier("public"), tk::Public);
"static"       L C I(identifier, Identifier("static"), tk::Static);
"abstract"     L C I(identifier, Identifier("abstract"), tk::Abstract);
"boolean"      L C I(identifier, Identifier("boolean"), tk::Boolean);
"byte"         L C I(identifier, Identifier("byte"), tk::Byte);
"char"         L C I(identifier, Identifier("char"), tk::Char);
"double"       L C I(identifier, Identifier("double"), tk::Double);
"final"        L C I(identifier, Identifier("final"), tk::Final);
"float"        L C I(identifier, Identifier("float"), tk::Float);
"goto"         L C I(identifier, Identifier("goto"), tk::Goto);
"int"          L C I(identifier, Identifier("int"), tk::Int);
"long"         L C I(identifier, Identifier("long"), tk::Long);
"native"       L C I(identifier, Identifier("native"), tk::Native);
"short"        L C I(identifier, Identifier("short"), tk::Short);
"synchronized" L C I(identifier, Identifier("synchronized"), tk::Synchronized);
"throws"       L C I(identifier, Identifier("throws"), tk::Throws);
"transient"    L C I(identifier, Identifier("transient"), tk::Transient);
"volatile"     L C I(identifier, Identifier("volatile"), tk::Volatile);
"let"          L C I(identifier, Identifier("let"), tk::Let);
"yield"        L C I(identifier, Identifier("yield"), tk::Yield);
"each"         L C I(identifier, Identifier("each"), tk::Each);
"of"           L C I(identifier, Identifier("of"), tk::Of);
@begin E4X
"namespace"    L C I(identifier, Identifier("namespace"), tk::Namespace);
"xml"          L C I(identifier, Identifier("xml"), tk::XML);
@end
{IdentifierStart}{IdentifierPart}* L C I(identifier, Identifier(Y), tk::Identifier_);
(\.[0-9]+|(0|[1-9][0-9]*)(\.[0-9]*)?){Exponent}? L C I(number, Number(strtod(yytext, NULL)), tk::NumericLiteral);
0[xX][0-9a-fA-F]+ L C I(number, Number(strtoull(yytext + 2, NULL, 16)), tk::NumericLiteral);
0[0-7]+ L C I(number, Number(strtoull(yytext + 1, NULL, 8)), tk::NumericLiteral);
0[bB][0-1]+ L C I(number, Number(strtoull(yytext + 2, NULL, 2)), tk::NumericLiteral);
\"([^"\\\n]|{Escape})*\"|'([^'\\\n]|{Escape})*' L C {
    char *value(A char[yyleng]);
    char *local(value);
    for (yy_size_t i(1), e(yyleng - 1); i != e; ++i) {
        char next(yytext[i]);
        if (yytext[i] == '\\')
            switch (next = yytext[++i]) {
                case '\n': continue;
                case '\\': next = '\\'; break;
                case '\'': next = '\''; break;
                case '"': next = '"'; break;
                case 'b': next = '\b'; break;
                case 'f': next = '\f'; break;
                case 'n': next = '\n'; break;
                case 'r': next = '\r'; break;
                case 't': next = '\t'; break;
                case 'v': next = '\v'; break;
                case '0': next = '\0'; break;
                case 'x':
                    next = H(yytext[i + 1]) << 4 | H(yytext[i + 2]);
                    i += 2;
                break;
            }
        *local++ = next;
    }
    *local = '\0';
    I(string, String(value, local - value), tk::StringLiteral);
}
\r?\n|\r|\xe2\x80[\xa8\xa9] yylloc->end.lines(); yylloc->step(); N
[ \t] L
<> if (yyextra->auto_) { yyextra->auto_ = false; F(tk::AutoComplete); } L yyterminate();
. L {
    CYDriver::Error error;
    error.location_ = *yylloc;
    error.message_ = "syntax error, unknown token";
    yyextra->errors_.push_back(error);
    yyterminate();
}
%%
void CYDriver::ScannerInit() {
    cylex_init(&scanner_);
    cyset_extra(this, scanner_);
}
void CYDriver::ScannerDestroy() {
    cylex_destroy(scanner_);
}
CYDriver::Condition CYDriver::GetCondition() {
    switch (yy_top_state(scanner_)) {
        case RegExp:
            return RegExpCondition;
@begin E4X
        case XMLContent:
            return XMLContentCondition;
        case XMLTag:
            return XMLTagCondition;
@end
        default:
            _assert(false);
    }
}
void CYDriver::SetCondition(Condition condition) {
    struct yyguts_t *yyg(reinterpret_cast(scanner_));
    switch (condition) {
        case RegExpCondition:
            BEGIN(RegExp);
            break;
@begin E4X
        case XMLContentCondition:
            BEGIN(XMLContent);
            break;
        case XMLTagCondition:
            BEGIN(XMLTag);
            break;
@end
        default:
            _assert(false);
    }
}
void CYDriver::PushCondition(Condition condition) {
    switch (condition) {
        case RegExpCondition:
            yy_push_state(RegExp, scanner_);
            break;
@begin E4X
        case XMLContentCondition:
            yy_push_state(XMLContent, scanner_);
            break;
        case XMLTagCondition:
            yy_push_state(XMLTag, scanner_);
            break;
@end
        default:
            _assert(false);
    }
}
void CYDriver::PopCondition() {
    yy_pop_state(scanner_);
}