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271 lines
8.8 KiB
271 lines
8.8 KiB
3 years ago
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///////////////////////////////////////////////////////////////////////////////
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// width_of.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_WIDTH_OF_HPP_EAN_10_04_2005
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#define BOOST_XPRESSIVE_DETAIL_STATIC_WIDTH_OF_HPP_EAN_10_04_2005
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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/ref.hpp>
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#include <boost/mpl/if.hpp>
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#include <boost/mpl/or.hpp>
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#include <boost/mpl/plus.hpp>
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#include <boost/mpl/times.hpp>
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#include <boost/mpl/assert.hpp>
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#include <boost/mpl/size_t.hpp>
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#include <boost/mpl/equal_to.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/type_traits.hpp>
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#include <boost/proto/traits.hpp>
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namespace boost { namespace xpressive { namespace detail
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{
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template<typename Expr, typename Char, typename Tag = typename Expr::proto_tag>
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struct width_of;
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///////////////////////////////////////////////////////////////////////////////
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// add_widths
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//
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template<std::size_t N, std::size_t M>
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struct add_widths
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: mpl::size_t<N + M>
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{};
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template<std::size_t M>
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struct add_widths<unknown_width::value, M>
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: unknown_width
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{};
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template<std::size_t N>
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struct add_widths<N, unknown_width::value>
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: unknown_width
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{};
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template<>
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struct add_widths<unknown_width::value, unknown_width::value>
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: unknown_width
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{};
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///////////////////////////////////////////////////////////////////////////////
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// or_widths
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//
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template<std::size_t N, std::size_t M>
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struct or_widths
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: unknown_width
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{};
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template<std::size_t N>
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struct or_widths<N, N>
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: mpl::size_t<N>
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{};
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///////////////////////////////////////////////////////////////////////////////
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// width_of_terminal
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//
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template<typename Expr, typename Char, bool IsXpr = is_xpr<Expr>::value>
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struct width_of_terminal
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: mpl::size_t<Expr::width> // xpressive literals
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{};
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template<typename Expr, typename Char>
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struct width_of_terminal<Expr, Char, false>
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: unknown_width // unknown literals (eg, basic_string, basic_regex, etc.)
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{};
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template<typename Char>
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struct width_of_terminal<Char, Char, false>
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: mpl::size_t<1> // char literals
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{};
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template<typename Char>
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struct width_of_terminal<char, Char, false>
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: mpl::size_t<1> // char literals
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{};
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template<>
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struct width_of_terminal<char, char, false>
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: mpl::size_t<1> // char literals
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{};
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template<typename Elem, std::size_t N, typename Char>
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struct width_of_terminal<Elem (&) [N], Char, false>
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: mpl::size_t<N-is_char<Elem>::value> // string literals
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{};
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template<typename Elem, std::size_t N, typename Char>
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struct width_of_terminal<Elem const (&) [N], Char, false>
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: mpl::size_t<N-is_char<Elem>::value> // string literals
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{};
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///////////////////////////////////////////////////////////////////////////////
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// width_of
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//
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template<typename Expr, typename Char, typename Tag>
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struct width_of
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{};
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, proto::tag::terminal>
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: width_of_terminal<typename proto::result_of::value<Expr>::type, Char>
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{};
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, proto::tag::shift_right>
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: add_widths<
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width_of<typename remove_reference<typename Expr::proto_child0>::type::proto_base_expr, Char>::value
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, width_of<typename remove_reference<typename Expr::proto_child1>::type::proto_base_expr, Char>::value
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>
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{};
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, proto::tag::bitwise_or>
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: or_widths<
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width_of<typename remove_reference<typename Expr::proto_child0>::type::proto_base_expr, Char>::value
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, width_of<typename remove_reference<typename Expr::proto_child1>::type::proto_base_expr, Char>::value
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>
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{};
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template<typename Expr, typename Char, typename Left>
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struct width_of_assign
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{};
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template<typename Expr, typename Char>
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struct width_of_assign<Expr, Char, mark_placeholder>
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: width_of<typename remove_reference<typename Expr::proto_child1>::type::proto_base_expr, Char>
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{};
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template<typename Expr, typename Char>
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struct width_of_assign<Expr, Char, set_initializer>
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: mpl::size_t<1>
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{};
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template<typename Expr, typename Char, typename Nbr>
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struct width_of_assign<Expr, Char, attribute_placeholder<Nbr> >
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: unknown_width
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{};
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// either (s1 = ...) or (a1 = ...) or (set = ...)
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, proto::tag::assign>
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: width_of_assign<
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Expr
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, Char
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, typename proto::result_of::value<
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typename remove_reference<typename Expr::proto_child0>::type::proto_base_expr
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>::type
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>
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{};
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, modifier_tag>
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: width_of<typename remove_reference<typename Expr::proto_child1>::type::proto_base_expr, Char>
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{};
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, lookahead_tag>
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: mpl::size_t<0>
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{};
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, lookbehind_tag>
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: mpl::size_t<0>
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{};
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// keep() is used to turn off backtracking, so they should only be used
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// for things that are variable-width (eg. quantified)
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, keeper_tag>
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: unknown_width
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{
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// TODO: keep() now has a second meaning: execute actions immediately.
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// In that sense, it is perfectly reasonable to put a fixed-width
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// sub-expression in a keep. Can fixed-width keep() sub-expressions
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// use the simple_repeat_matcher?
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};
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, proto::tag::unary_plus>
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: unknown_width
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{};
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, proto::tag::dereference>
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: unknown_width
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{};
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, proto::tag::logical_not>
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: unknown_width
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{};
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template<typename Expr, typename Char, uint_t Min, uint_t Max>
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struct width_of<Expr, Char, generic_quant_tag<Min, Max> >
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: unknown_width
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{};
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template<typename Expr, typename Char, uint_t Count>
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struct width_of<Expr, Char, generic_quant_tag<Count, Count> >
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: mpl::if_c<
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mpl::equal_to<unknown_width, width_of<typename remove_reference<typename Expr::proto_child0>::type::proto_base_expr, Char> >::value
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, unknown_width
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, mpl::times<
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width_of<typename remove_reference<typename Expr::proto_child0>::type::proto_base_expr, Char>
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, mpl::size_t<Count>
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>
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>::type
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{};
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, proto::tag::negate>
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: width_of<typename remove_reference<typename Expr::proto_child0>::type::proto_base_expr, Char>
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{};
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// when complementing a set or an assertion, the width is that of the set (1) or the assertion (0)
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, proto::tag::complement>
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: width_of<typename remove_reference<typename Expr::proto_child0>::type::proto_base_expr, Char>
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{};
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// The comma is used in list-initialized sets, and the width of sets are 1
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, proto::tag::comma>
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: mpl::size_t<1>
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{};
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// The subscript operator[] is used for sets, as in set['a' | range('b','h')],
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// or for actions as in (any >> expr)[ action ]
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template<typename Expr, typename Char, typename Left>
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struct width_of_subscript
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: width_of<Left, Char>
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{};
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template<typename Expr, typename Char>
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struct width_of_subscript<Expr, Char, set_initializer_type>
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: mpl::size_t<1>
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{
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// If Left is "set" then make sure that Right has a width_of 1
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BOOST_MPL_ASSERT_RELATION(
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1
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, ==
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, (width_of<typename remove_reference<typename Expr::proto_child1>::type::proto_base_expr, Char>::value));
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};
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template<typename Expr, typename Char>
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struct width_of<Expr, Char, proto::tag::subscript>
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: width_of_subscript<Expr, Char, typename remove_reference<typename Expr::proto_child0>::type::proto_base_expr>
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{};
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}}} // namespace boost::xpressive::detail
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#undef UNREF
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#endif
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