axmol/thirdparty/range-v3/include/range/v3/view/zip.hpp

190 lines
6.7 KiB
C++

/// \file
// Range v3 library
//
// Copyright Eric Niebler 2013-present
//
// Use, modification and distribution is subject to 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)
//
// Project home: https://github.com/ericniebler/range-v3
//
#ifndef RANGES_V3_VIEW_ZIP_HPP
#define RANGES_V3_VIEW_ZIP_HPP
#include <tuple>
#include <utility>
#include <meta/meta.hpp>
#include <range/v3/range_fwd.hpp>
#include <range/v3/iterator/concepts.hpp>
#include <range/v3/iterator/traits.hpp>
#include <range/v3/utility/common_tuple.hpp>
#include <range/v3/view/all.hpp>
#include <range/v3/view/empty.hpp>
#include <range/v3/view/zip_with.hpp>
#include <range/v3/detail/prologue.hpp>
namespace ranges
{
/// \cond
namespace detail
{
struct indirect_zip_fn_
{
// tuple value
template(typename... Its)(
requires (sizeof...(Its) != 2) AND and_v<indirectly_readable<Its>...>)
std::tuple<iter_value_t<Its>...> operator()(copy_tag, Its...) const
{
RANGES_EXPECT(false);
}
// tuple reference
template(typename... Its)(
requires (sizeof...(Its) != 2) AND and_v<indirectly_readable<Its>...>)
common_tuple<iter_reference_t<Its>...>
operator()(Its const &... its) const //
noexcept(meta::and_c<noexcept(iter_reference_t<Its>(*its))...>::value)
{
return common_tuple<iter_reference_t<Its>...>{*its...};
}
// tuple rvalue reference
template(typename... Its)(
requires (sizeof...(Its) != 2) AND and_v<indirectly_readable<Its>...>)
common_tuple<iter_rvalue_reference_t<Its>...> //
operator()(move_tag, Its const &... its) const //
noexcept(meta::and_c<noexcept(
iter_rvalue_reference_t<Its>(iter_move(its)))...>::value)
{
return common_tuple<iter_rvalue_reference_t<Its>...>{iter_move(its)...};
}
// pair value
template(typename It1, typename It2)(
requires indirectly_readable<It1> AND indirectly_readable<It2>)
std::pair<iter_value_t<It1>, iter_value_t<It2>> //
operator()(copy_tag, It1, It2) const
{
RANGES_EXPECT(false);
}
// pair reference
template(typename It1, typename It2)(
requires indirectly_readable<It1> AND indirectly_readable<It2>)
common_pair<iter_reference_t<It1>, iter_reference_t<It2>>
operator()(It1 const & it1, It2 const & it2) const //
noexcept( //
noexcept(iter_reference_t<It1>(*it1)) && //
noexcept(iter_reference_t<It2>(*it2)))
{
return {*it1, *it2};
}
// pair rvalue reference
template(typename It1, typename It2)(
requires indirectly_readable<It1> AND indirectly_readable<It2>)
common_pair<iter_rvalue_reference_t<It1>, iter_rvalue_reference_t<It2>>
operator()(move_tag, It1 const & it1, It2 const & it2) const
noexcept(noexcept(iter_rvalue_reference_t<It1>(iter_move(it1))) &&
noexcept(iter_rvalue_reference_t<It2>(iter_move(it2))))
{
return {iter_move(it1), iter_move(it2)};
}
};
} // namespace detail
/// \endcond
/// \addtogroup group-views
/// @{
template<typename... Rngs>
struct zip_view : iter_zip_with_view<detail::indirect_zip_fn_, Rngs...>
{
CPP_assert(sizeof...(Rngs) != 0);
zip_view() = default;
explicit zip_view(Rngs... rngs)
: iter_zip_with_view<detail::indirect_zip_fn_, Rngs...>{
detail::indirect_zip_fn_{},
std::move(rngs)...}
{}
};
template<typename... Rng>
RANGES_INLINE_VAR constexpr bool enable_borrowed_range<zip_view<Rng...>> =
and_v<enable_borrowed_range<Rng>...>;
#if RANGES_CXX_DEDUCTION_GUIDES >= RANGES_CXX_DEDUCTION_GUIDES_17
template<typename... Rng>
zip_view(Rng &&...) //
-> zip_view<views::all_t<Rng>...>;
#endif
namespace views
{
struct zip_fn
{
constexpr empty_view<std::tuple<>> operator()() const noexcept
{
return {};
}
template(typename... Rngs)(
requires and_v<viewable_range<Rngs>...> AND
and_v<input_range<Rngs>...> AND
(sizeof...(Rngs) != 0)) //
zip_view<all_t<Rngs>...> operator()(Rngs &&... rngs) const
{
return zip_view<all_t<Rngs>...>{all(static_cast<Rngs &&>(rngs))...};
}
#if defined(_MSC_VER)
template(typename Rng0)(
requires input_range<Rng0> AND viewable_range<Rng0>)
constexpr zip_view<all_t<Rng0>> operator()(Rng0 && rng0) const
{
return zip_view<all_t<Rng0>>{all(static_cast<Rng0 &&>(rng0))};
}
template(typename Rng0, typename Rng1)(
requires input_range<Rng0> AND viewable_range<Rng0> AND
input_range<Rng1> AND viewable_range<Rng1>)
constexpr zip_view<all_t<Rng0>, all_t<Rng1>> //
operator()(Rng0 && rng0, Rng1 && rng1) const
{
return zip_view<all_t<Rng0>, all_t<Rng1>>{ //
all(static_cast<Rng0 &&>(rng0)), //
all(static_cast<Rng1 &&>(rng1))};
}
template(typename Rng0, typename Rng1, typename Rng2)(
requires input_range<Rng0> AND viewable_range<Rng0> AND
input_range<Rng1> AND viewable_range<Rng1> AND
input_range<Rng2> AND viewable_range<Rng2>)
constexpr zip_view<all_t<Rng0>, all_t<Rng1>, all_t<Rng2>> //
operator()(Rng0 && rng0, Rng1 && rng1, Rng2 && rng2) const
{
return zip_view<all_t<Rng0>, all_t<Rng1>, all_t<Rng2>>{ //
all(static_cast<Rng0 &&>(rng0)), //
all(static_cast<Rng1 &&>(rng1)), //
all(static_cast<Rng2 &&>(rng2))};
}
#endif
};
/// \relates zip_fn
/// \ingroup group-views
RANGES_INLINE_VARIABLE(zip_fn, zip)
} // namespace views
/// @}
} // namespace ranges
#include <range/v3/detail/satisfy_boost_range.hpp>
RANGES_SATISFY_BOOST_RANGE(::ranges::zip_view)
#include <range/v3/detail/epilogue.hpp>
#endif