libcarla/include/system/boost/metaparse/v1/foldl_reject_incomplete.hpp
2024-10-18 13:19:59 +08:00

78 lines
2.3 KiB
C++

#ifndef BOOST_METAPARSE_V1_FOLDL_REJECT_INCOMPLETE_HPP
#define BOOST_METAPARSE_V1_FOLDL_REJECT_INCOMPLETE_HPP
// Copyright Abel Sinkovics (abel@sinkovics.hu) 2015.
// Distributed under the Boost Software License, Version 1.0.
// (See accompanying file LICENSE_1_0.txt or copy at
// http://www.boost.org/LICENSE_1_0.txt)
#include <boost/metaparse/v1/fail_at_first_char_expected.hpp>
#include <boost/metaparse/v1/is_error.hpp>
#include <boost/metaparse/v1/get_position.hpp>
#include <boost/metaparse/v1/get_result.hpp>
#include <boost/metaparse/v1/get_remaining.hpp>
#include <boost/mpl/eval_if.hpp>
#include <boost/mpl/equal_to.hpp>
namespace boost
{
namespace metaparse
{
namespace v1
{
template <class P, class State, class ForwardOp>
struct foldl_reject_incomplete
{
private:
template <class Res>
struct apply_unchecked :
// I need to use apply_wrap, and not apply, because apply would
// build a metafunction class from foldl<P, State, ForwardOp>
// when ForwardOp is a lambda expression.
foldl_reject_incomplete<
P,
typename ForwardOp::template apply<
typename State::type,
typename get_result<Res>::type
>,
ForwardOp
>::template apply<
typename get_remaining<Res>::type,
typename get_position<Res>::type
>
{};
template <class S, class Pos>
struct accept_state : accept<typename State::type, S, Pos> {};
template <class S, class Pos>
struct end_of_folding :
boost::mpl::eval_if<
typename boost::mpl::equal_to<
typename Pos::type,
typename get_position<typename P::template apply<S, Pos> >::type
>::type,
accept_state<S, Pos>,
typename P::template apply<S, Pos>
>
{};
public:
typedef foldl_reject_incomplete type;
template <class S, class Pos>
struct apply :
boost::mpl::eval_if<
typename is_error<typename P::template apply<S, Pos> >::type,
end_of_folding<S, Pos>,
apply_unchecked<typename P::template apply<S, Pos> >
>
{};
};
}
}
}
#endif