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379 lines
13 KiB
379 lines
13 KiB
3 years ago
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///////////////////////////////////////////////////////////////////////////////
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// as_quantifier.hpp
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//
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// Copyright 2008 Eric Niebler. Distributed under the Boost
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// Software License, Version 1.0. (See accompanying file
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// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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#ifndef BOOST_XPRESSIVE_DETAIL_STATIC_TRANSFORMS_AS_QUANTIFIER_HPP_EAN_04_01_2007
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#define BOOST_XPRESSIVE_DETAIL_STATIC_TRANSFORMS_AS_QUANTIFIER_HPP_EAN_04_01_2007
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// MS compatible compilers support #pragma once
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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/mpl/assert.hpp>
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#include <boost/type_traits/is_same.hpp>
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#include <boost/xpressive/detail/detail_fwd.hpp>
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#include <boost/xpressive/detail/static/static.hpp>
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#include <boost/proto/core.hpp>
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namespace boost { namespace xpressive { namespace detail
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{
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///////////////////////////////////////////////////////////////////////////////
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// generic_quant_tag
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template<uint_t Min, uint_t Max>
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struct generic_quant_tag
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{
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typedef mpl::integral_c<uint_t, Min> min_type;
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typedef mpl::integral_c<uint_t, Max> max_type;
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};
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}}}
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namespace boost { namespace xpressive { namespace grammar_detail
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{
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using detail::uint_t;
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///////////////////////////////////////////////////////////////////////////////
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// min_type / max_type
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template<typename Tag>
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struct min_type : Tag::min_type {};
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template<>
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struct min_type<proto::tag::unary_plus> : mpl::integral_c<uint_t, 1> {};
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template<>
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struct min_type<proto::tag::dereference> : mpl::integral_c<uint_t, 0> {};
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template<>
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struct min_type<proto::tag::logical_not> : mpl::integral_c<uint_t, 0> {};
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template<typename Tag>
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struct max_type : Tag::max_type {};
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template<>
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struct max_type<proto::tag::unary_plus> : mpl::integral_c<uint_t, UINT_MAX-1> {};
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template<>
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struct max_type<proto::tag::dereference> : mpl::integral_c<uint_t, UINT_MAX-1> {};
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template<>
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struct max_type<proto::tag::logical_not> : mpl::integral_c<uint_t, 1> {};
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///////////////////////////////////////////////////////////////////////////////
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// as_simple_quantifier
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template<typename Grammar, typename Greedy, typename Callable = proto::callable>
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struct as_simple_quantifier : proto::transform<as_simple_quantifier<Grammar, Greedy, Callable> >
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{
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template<typename Expr, typename State, typename Data>
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struct impl : proto::transform_impl<Expr, State, Data>
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{
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typedef
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typename proto::result_of::child<Expr>::type
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arg_type;
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typedef
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typename Grammar::template impl<arg_type, detail::true_xpression, Data>::result_type
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xpr_type;
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typedef
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detail::simple_repeat_matcher<xpr_type, Greedy>
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matcher_type;
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typedef
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typename proto::terminal<matcher_type>::type
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result_type;
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result_type operator ()(
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typename impl::expr_param expr
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, typename impl::state_param
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, typename impl::data_param data
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) const
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{
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xpr_type xpr = typename Grammar::template impl<arg_type, detail::true_xpression, Data>()(
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proto::child(expr)
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, detail::true_xpression()
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, data
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);
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typedef typename impl::expr expr_type;
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matcher_type matcher(
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xpr
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, (uint_t)min_type<typename expr_type::proto_tag>::value
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, (uint_t)max_type<typename expr_type::proto_tag>::value
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, xpr.get_width().value()
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);
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return result_type::make(matcher);
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}
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};
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};
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///////////////////////////////////////////////////////////////////////////////
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// add_hidden_mark
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struct add_hidden_mark : proto::transform<add_hidden_mark>
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{
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template<typename Expr, typename State, typename Data>
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struct impl : proto::transform_impl<Expr, State, Data>
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{
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typedef typename impl::expr expr_type;
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typedef
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typename shift_right<
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terminal<detail::mark_begin_matcher>::type
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, typename shift_right<
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Expr
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, terminal<detail::mark_end_matcher>::type
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>::type
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>::type
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result_type;
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result_type operator ()(
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typename impl::expr_param expr
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, typename impl::state_param
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, typename impl::data_param data
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) const
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{
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// we're inserting a hidden mark ... so grab the next hidden mark number.
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int mark_nbr = data.get_hidden_mark();
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detail::mark_begin_matcher begin(mark_nbr);
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detail::mark_end_matcher end(mark_nbr);
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result_type that = {{begin}, {expr, {end}}};
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return that;
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}
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};
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};
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///////////////////////////////////////////////////////////////////////////////
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// InsertMark
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struct InsertMark
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: or_<
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when<proto::assign<detail::basic_mark_tag, _>, _>
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, otherwise<add_hidden_mark>
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>
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{};
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///////////////////////////////////////////////////////////////////////////////
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// as_default_quantifier_impl
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template<typename Greedy, uint_t Min, uint_t Max>
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struct as_default_quantifier_impl : proto::transform<as_default_quantifier_impl<Greedy, Min, Max> >
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{
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template<typename Expr, typename State, typename Data>
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struct impl : proto::transform_impl<Expr, State, Data>
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{
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typedef
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typename proto::result_of::child<Expr>::type
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xpr_type;
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typedef
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typename InsertMark::impl<xpr_type, State, Data>::result_type
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marked_sub_type;
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typedef
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typename shift_right<
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terminal<detail::repeat_begin_matcher>::type
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, typename shift_right<
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marked_sub_type
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, typename terminal<detail::repeat_end_matcher<Greedy> >::type
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>::type
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>::type
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result_type;
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result_type operator ()(
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typename impl::expr_param expr
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, typename impl::state_param state
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, typename impl::data_param data
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) const
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{
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// Ensure this sub-expression is book-ended with mark matchers
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marked_sub_type marked_sub =
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InsertMark::impl<xpr_type, State, Data>()(proto::child(expr), state, data);
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// Get the mark_number from the begin_mark_matcher
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int mark_number = proto::value(proto::left(marked_sub)).mark_number_;
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BOOST_ASSERT(0 != mark_number);
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typedef typename impl::expr expr_type;
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uint_t min_ = (uint_t)min_type<typename expr_type::proto_tag>();
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uint_t max_ = (uint_t)max_type<typename expr_type::proto_tag>();
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detail::repeat_begin_matcher begin(mark_number);
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detail::repeat_end_matcher<Greedy> end(mark_number, min_, max_);
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result_type that = {{begin}, {marked_sub, {end}}};
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return that;
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}
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};
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};
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///////////////////////////////////////////////////////////////////////////////
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// optional_tag
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template<typename Greedy>
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struct optional_tag
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{};
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///////////////////////////////////////////////////////////////////////////////
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// as_default_optional
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template<typename Grammar, typename Greedy, typename Callable = proto::callable>
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struct as_default_optional : proto::transform<as_default_optional<Grammar, Greedy, Callable> >
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{
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template<typename Expr, typename State, typename Data>
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struct impl : proto::transform_impl<Expr, State, Data>
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{
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typedef
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detail::alternate_end_xpression
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end_xpr;
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typedef
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detail::optional_matcher<
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typename Grammar::template impl<Expr, end_xpr, Data>::result_type
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, Greedy
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>
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result_type;
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result_type operator ()(
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typename impl::expr_param expr
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, typename impl::state_param
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, typename impl::data_param data
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) const
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{
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return result_type(
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typename Grammar::template impl<Expr, end_xpr, Data>()(expr, end_xpr(), data)
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);
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}
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};
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};
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///////////////////////////////////////////////////////////////////////////////
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// as_mark_optional
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template<typename Grammar, typename Greedy, typename Callable = proto::callable>
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struct as_mark_optional : proto::transform<as_mark_optional<Grammar, Greedy, Callable> >
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{
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template<typename Expr, typename State, typename Data>
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struct impl : proto::transform_impl<Expr, State, Data>
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{
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typedef
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detail::alternate_end_xpression
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end_xpr;
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typedef
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detail::optional_mark_matcher<
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typename Grammar::template impl<Expr, end_xpr, Data>::result_type
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, Greedy
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>
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result_type;
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result_type operator ()(
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typename impl::expr_param expr
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, typename impl::state_param
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, typename impl::data_param data
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) const
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{
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int mark_number = proto::value(proto::left(expr)).mark_number_;
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return result_type(
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typename Grammar::template impl<Expr, end_xpr, Data>()(expr, end_xpr(), data)
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, mark_number
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);
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}
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};
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};
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///////////////////////////////////////////////////////////////////////////////
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// IsMarkerOrRepeater
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struct IsMarkerOrRepeater
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: or_<
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shift_right<terminal<detail::repeat_begin_matcher>, _>
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, assign<terminal<detail::mark_placeholder>, _>
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>
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{};
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///////////////////////////////////////////////////////////////////////////////
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// as_optional
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template<typename Grammar, typename Greedy>
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struct as_optional
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: or_<
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when<IsMarkerOrRepeater, as_mark_optional<Grammar, Greedy> >
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, otherwise<as_default_optional<Grammar, Greedy> >
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>
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{};
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///////////////////////////////////////////////////////////////////////////////
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// make_optional_
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template<typename Greedy, typename Callable = proto::callable>
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struct make_optional_ : proto::transform<make_optional_<Greedy, Callable> >
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{
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template<typename Expr, typename State, typename Data>
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struct impl : proto::transform_impl<Expr, State, Data>
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{
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typedef typename impl::expr expr_type;
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typedef
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typename unary_expr<
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optional_tag<Greedy>
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, Expr
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>::type
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result_type;
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result_type operator ()(
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typename impl::expr_param expr
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, typename impl::state_param
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, typename impl::data_param
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) const
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{
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result_type that = {expr};
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return that;
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}
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};
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};
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///////////////////////////////////////////////////////////////////////////////
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// as_default_quantifier_impl
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template<typename Greedy, uint_t Max>
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struct as_default_quantifier_impl<Greedy, 0, Max>
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: call<make_optional_<Greedy>(as_default_quantifier_impl<Greedy, 1, Max>)>
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{};
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///////////////////////////////////////////////////////////////////////////////
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// as_default_quantifier_impl
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template<typename Greedy>
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struct as_default_quantifier_impl<Greedy, 0, 1>
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: call<make_optional_<Greedy>(_child)>
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{};
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///////////////////////////////////////////////////////////////////////////////
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// as_default_quantifier
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template<typename Greedy, typename Callable = proto::callable>
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struct as_default_quantifier : proto::transform<as_default_quantifier<Greedy, Callable> >
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{
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template<typename Expr, typename State, typename Data>
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struct impl : proto::transform_impl<Expr, State, Data>
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{
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typedef typename impl::expr expr_type;
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typedef
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as_default_quantifier_impl<
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Greedy
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, min_type<typename expr_type::proto_tag>::value
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, max_type<typename expr_type::proto_tag>::value
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>
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other;
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typedef
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typename other::template impl<Expr, State, Data>::result_type
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result_type;
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result_type operator ()(
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typename impl::expr_param expr
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, typename impl::state_param state
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, typename impl::data_param data
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) const
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{
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return typename other::template impl<Expr, State, Data>()(expr, state, data);
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}
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};
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};
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}}}
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#endif
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