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Added thirdparty: boost library
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// Copyright (c) 2001-2011 Hartmut Kaiser
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//
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// Distributed under the Boost Software License, Version 1.0. (See accompanying
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// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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#if !defined(BOOST_SPIRIT_LEX_TOKEN_DEF_MAR_13_2007_0145PM)
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#define BOOST_SPIRIT_LEX_TOKEN_DEF_MAR_13_2007_0145PM
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#if defined(_MSC_VER)
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#pragma once
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#endif
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#include <boost/spirit/home/support/unused.hpp>
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#include <boost/spirit/home/support/argument.hpp>
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#include <boost/spirit/home/support/info.hpp>
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#include <boost/spirit/home/support/handles_container.hpp>
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#include <boost/spirit/home/qi/parser.hpp>
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#include <boost/spirit/home/qi/skip_over.hpp>
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#include <boost/spirit/home/qi/detail/construct.hpp>
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#include <boost/spirit/home/qi/detail/assign_to.hpp>
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#include <boost/spirit/home/lex/reference.hpp>
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#include <boost/spirit/home/lex/lexer_type.hpp>
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#include <boost/spirit/home/lex/lexer/terminals.hpp>
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#include <boost/fusion/include/vector.hpp>
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#include <boost/mpl/if.hpp>
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#include <boost/proto/extends.hpp>
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#include <boost/proto/traits.hpp>
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#include <boost/type_traits/is_same.hpp>
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#include <boost/variant.hpp>
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#include <iterator> // for std::iterator_traits
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#include <string>
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#include <cstdlib>
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#if defined(BOOST_MSVC)
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# pragma warning(push)
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# pragma warning(disable: 4355) // 'this' : used in base member initializer list warning
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#endif
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namespace boost { namespace spirit { namespace lex
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{
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///////////////////////////////////////////////////////////////////////////
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// This component represents a token definition
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///////////////////////////////////////////////////////////////////////////
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template<typename Attribute = unused_type
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, typename Char = char
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, typename Idtype = std::size_t>
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struct token_def
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: proto::extends<
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typename proto::terminal<
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lex::reference<token_def<Attribute, Char, Idtype> const, Idtype>
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>::type
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, token_def<Attribute, Char, Idtype> >
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, qi::parser<token_def<Attribute, Char, Idtype> >
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, lex::lexer_type<token_def<Attribute, Char, Idtype> >
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{
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private:
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// initialize proto base class
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typedef lex::reference<token_def const, Idtype> reference_;
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typedef typename proto::terminal<reference_>::type terminal_type;
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typedef proto::extends<terminal_type, token_def> proto_base_type;
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static std::size_t const all_states_id = static_cast<std::size_t>(-2);
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public:
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// Qi interface: meta-function calculating parser return type
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template <typename Context, typename Iterator>
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struct attribute
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{
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// The return value of the token_def is either the specified
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// attribute type, or the pair of iterators from the match of the
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// corresponding token (if no attribute type has been specified),
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// or unused_type (if omit has been specified).
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typedef typename Iterator::base_iterator_type iterator_type;
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typedef typename mpl::if_<
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traits::not_is_unused<Attribute>
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, typename mpl::if_<
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is_same<Attribute, lex::omit>, unused_type, Attribute
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>::type
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, iterator_range<iterator_type>
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>::type type;
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};
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public:
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// Qi interface: parse functionality
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template <typename Iterator, typename Context
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, typename Skipper, typename Attribute_>
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bool parse(Iterator& first, Iterator const& last
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, Context& /*context*/, Skipper const& skipper
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, Attribute_& attr) const
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{
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qi::skip_over(first, last, skipper); // always do a pre-skip
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if (first != last) {
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typedef typename
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std::iterator_traits<Iterator>::value_type
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token_type;
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// If the following assertion fires you probably forgot to
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// associate this token definition with a lexer instance.
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BOOST_ASSERT(std::size_t(~0) != token_state_);
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token_type const& t = *first;
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if (token_id_ == t.id() &&
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(all_states_id == token_state_ || token_state_ == t.state()))
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{
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spirit::traits::assign_to(t, attr);
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++first;
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return true;
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}
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}
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return false;
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}
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template <typename Context>
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info what(Context& /*context*/) const
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{
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if (0 == def_.which())
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return info("token_def", boost::get<string_type>(def_));
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return info("token_def", boost::get<char_type>(def_));
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}
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///////////////////////////////////////////////////////////////////////
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// Lex interface: collect token definitions and put it into the
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// provided lexer def
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template <typename LexerDef, typename String>
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void collect(LexerDef& lexdef, String const& state
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, String const& targetstate) const
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{
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std::size_t state_id = lexdef.add_state(state.c_str());
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// If the following assertion fires you are probably trying to use
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// a single token_def instance in more than one lexer state. This
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// is not possible. Please create a separate token_def instance
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// from the same regular expression for each lexer state it needs
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// to be associated with.
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BOOST_ASSERT(
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(std::size_t(~0) == token_state_ || state_id == token_state_) &&
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"Can't use single token_def with more than one lexer state");
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char_type const* target = targetstate.empty() ? 0 : targetstate.c_str();
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if (target)
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lexdef.add_state(target);
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token_state_ = state_id;
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if (0 == token_id_)
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token_id_ = lexdef.get_next_id();
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if (0 == def_.which()) {
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unique_id_ = lexdef.add_token(state.c_str()
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, boost::get<string_type>(def_), token_id_, target);
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}
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else {
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unique_id_ = lexdef.add_token(state.c_str()
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, boost::get<char_type>(def_), token_id_, target);
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}
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}
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template <typename LexerDef>
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void add_actions(LexerDef&) const {}
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public:
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typedef Char char_type;
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typedef Idtype id_type;
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typedef std::basic_string<char_type> string_type;
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// Lex interface: constructing token definitions
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token_def()
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: proto_base_type(terminal_type::make(reference_(*this)))
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, def_('\0'), token_id_()
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, unique_id_(std::size_t(~0)), token_state_(std::size_t(~0)) {}
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token_def(token_def const& rhs)
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: proto_base_type(terminal_type::make(reference_(*this)))
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, def_(rhs.def_), token_id_(rhs.token_id_)
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, unique_id_(rhs.unique_id_), token_state_(rhs.token_state_) {}
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explicit token_def(char_type def_, Idtype id_ = Idtype())
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: proto_base_type(terminal_type::make(reference_(*this)))
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, def_(def_)
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, token_id_(Idtype() == id_ ? Idtype(def_) : id_)
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, unique_id_(std::size_t(~0)), token_state_(std::size_t(~0)) {}
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explicit token_def(string_type const& def_, Idtype id_ = Idtype())
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: proto_base_type(terminal_type::make(reference_(*this)))
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, def_(def_), token_id_(id_)
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, unique_id_(std::size_t(~0)), token_state_(std::size_t(~0)) {}
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template <typename String>
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token_def& operator= (String const& definition)
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{
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def_ = definition;
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token_id_ = Idtype();
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unique_id_ = std::size_t(~0);
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token_state_ = std::size_t(~0);
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return *this;
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}
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token_def& operator= (token_def const& rhs)
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{
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def_ = rhs.def_;
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token_id_ = rhs.token_id_;
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unique_id_ = rhs.unique_id_;
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token_state_ = rhs.token_state_;
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return *this;
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}
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// general accessors
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Idtype const& id() const { return token_id_; }
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void id(Idtype const& id) { token_id_ = id; }
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std::size_t unique_id() const { return unique_id_; }
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string_type definition() const
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{
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return (0 == def_.which()) ?
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boost::get<string_type>(def_) :
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string_type(1, boost::get<char_type>(def_));
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}
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std::size_t state() const { return token_state_; }
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private:
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variant<string_type, char_type> def_;
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mutable Idtype token_id_;
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mutable std::size_t unique_id_;
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mutable std::size_t token_state_;
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};
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}}}
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namespace boost { namespace spirit { namespace traits
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{
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///////////////////////////////////////////////////////////////////////////
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template<typename Attribute, typename Char, typename Idtype
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, typename Attr, typename Context, typename Iterator>
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struct handles_container<
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lex::token_def<Attribute, Char, Idtype>, Attr, Context, Iterator>
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: traits::is_container<
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typename attribute_of<
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lex::token_def<Attribute, Char, Idtype>, Context, Iterator
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>::type>
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{};
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}}}
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#if defined(BOOST_MSVC)
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# pragma warning(pop)
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#endif
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#endif
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