| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275 | #ifndef BOOST_MP11_UTILITY_HPP_INCLUDED#define BOOST_MP11_UTILITY_HPP_INCLUDED// Copyright 2015-2020 Peter Dimov.//// 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/mp11/integral.hpp>#include <boost/mp11/detail/mp_list.hpp>#include <boost/mp11/detail/mp_fold.hpp>#include <boost/mp11/detail/config.hpp>namespace boost{namespace mp11{// mp_identitytemplate<class T> struct mp_identity{    using type = T;};// mp_identity_ttemplate<class T> using mp_identity_t = typename mp_identity<T>::type;// mp_inherittemplate<class... T> struct mp_inherit: T... {};// mp_if, mp_if_cnamespace detail{template<bool C, class T, class... E> struct mp_if_c_impl{};template<class T, class... E> struct mp_if_c_impl<true, T, E...>{    using type = T;};template<class T, class E> struct mp_if_c_impl<false, T, E>{    using type = E;};} // namespace detailtemplate<bool C, class T, class... E> using mp_if_c = typename detail::mp_if_c_impl<C, T, E...>::type;template<class C, class T, class... E> using mp_if = typename detail::mp_if_c_impl<static_cast<bool>(C::value), T, E...>::type;// mp_valid#if BOOST_MP11_WORKAROUND( BOOST_MP11_INTEL, != 0 ) // tested at 1800// contributed by Roland Schulz in https://github.com/boostorg/mp11/issues/17namespace detail{template<class...> using void_t = void;template<class, template<class...> class F, class... T>struct mp_valid_impl: mp_false {};template<template<class...> class F, class... T>struct mp_valid_impl<void_t<F<T...>>, F, T...>: mp_true {};} // namespace detailtemplate<template<class...> class F, class... T> using mp_valid = typename detail::mp_valid_impl<void, F, T...>;#else// implementation by Bruno Dutra (by the name is_evaluable)namespace detail{template<template<class...> class F, class... T> struct mp_valid_impl{    template<template<class...> class G, class = G<T...>> static mp_true check(int);    template<template<class...> class> static mp_false check(...);    using type = decltype(check<F>(0));};} // namespace detailtemplate<template<class...> class F, class... T> using mp_valid = typename detail::mp_valid_impl<F, T...>::type;#endiftemplate<class Q, class... T> using mp_valid_q = mp_valid<Q::template fn, T...>;// mp_defernamespace detail{template<template<class...> class F, class... T> struct mp_defer_impl{    using type = F<T...>;};struct mp_no_type{};#if BOOST_MP11_WORKAROUND( BOOST_MP11_CUDA, >= 9000000 && BOOST_MP11_CUDA < 10000000 )template<template<class...> class F, class... T> struct mp_defer_cuda_workaround{    using type = mp_if<mp_valid<F, T...>, detail::mp_defer_impl<F, T...>, detail::mp_no_type>;};#endif} // namespace detail#if BOOST_MP11_WORKAROUND( BOOST_MP11_CUDA, >= 9000000 && BOOST_MP11_CUDA < 10000000 )template<template<class...> class F, class... T> using mp_defer = typename detail::mp_defer_cuda_workaround< F, T...>::type;#elsetemplate<template<class...> class F, class... T> using mp_defer = mp_if<mp_valid<F, T...>, detail::mp_defer_impl<F, T...>, detail::mp_no_type>;#endif// mp_eval_if, mp_eval_if_cnamespace detail{template<bool C, class T, template<class...> class F, class... U> struct mp_eval_if_c_impl;template<class T, template<class...> class F, class... U> struct mp_eval_if_c_impl<true, T, F, U...>{    using type = T;};template<class T, template<class...> class F, class... U> struct mp_eval_if_c_impl<false, T, F, U...>: mp_defer<F, U...>{};} // namespace detailtemplate<bool C, class T, template<class...> class F, class... U> using mp_eval_if_c = typename detail::mp_eval_if_c_impl<C, T, F, U...>::type;template<class C, class T, template<class...> class F, class... U> using mp_eval_if = typename detail::mp_eval_if_c_impl<static_cast<bool>(C::value), T, F, U...>::type;template<class C, class T, class Q, class... U> using mp_eval_if_q = typename detail::mp_eval_if_c_impl<static_cast<bool>(C::value), T, Q::template fn, U...>::type;// mp_eval_if_nottemplate<class C, class T, template<class...> class F, class... U> using mp_eval_if_not = mp_eval_if<mp_not<C>, T, F, U...>;template<class C, class T, class Q, class... U> using mp_eval_if_not_q = mp_eval_if<mp_not<C>, T, Q::template fn, U...>;// mp_eval_ortemplate<class T, template<class...> class F, class... U> using mp_eval_or = mp_eval_if_not<mp_valid<F, U...>, T, F, U...>;template<class T, class Q, class... U> using mp_eval_or_q = mp_eval_or<T, Q::template fn, U...>;// mp_cond// so elegant; so doesn't work// template<class C, class T, class... E> using mp_cond = mp_eval_if<C, T, mp_cond, E...>;namespace detail{template<class C, class T, class... E> struct mp_cond_impl;} // namespace detailtemplate<class C, class T, class... E> using mp_cond = typename detail::mp_cond_impl<C, T, E...>::type;namespace detail{template<class C, class T, class... E> using mp_cond_ = mp_eval_if<C, T, mp_cond, E...>;template<class C, class T, class... E> struct mp_cond_impl: mp_defer<mp_cond_, C, T, E...>{};} // namespace detail// mp_quotetemplate<template<class...> class F> struct mp_quote{    // the indirection through mp_defer works around the language inability    // to expand T... into a fixed parameter list of an alias template    template<class... T> using fn = typename mp_defer<F, T...>::type;};// mp_quote_traittemplate<template<class...> class F> struct mp_quote_trait{    template<class... T> using fn = typename F<T...>::type;};// mp_invoke_q#if BOOST_MP11_WORKAROUND( BOOST_MP11_MSVC, < 1900 )namespace detail{template<class Q, class... T> struct mp_invoke_q_impl: mp_defer<Q::template fn, T...> {};} // namespace detailtemplate<class Q, class... T> using mp_invoke_q = typename detail::mp_invoke_q_impl<Q, T...>::type;#elif BOOST_MP11_WORKAROUND( BOOST_MP11_GCC, < 50000 )template<class Q, class... T> using mp_invoke_q = typename mp_defer<Q::template fn, T...>::type;#elsetemplate<class Q, class... T> using mp_invoke_q = typename Q::template fn<T...>;#endif// old name for mp_invoke_q retained for compatibility, but deprecated#if !defined(__clang__)template<class Q, class... T> using mp_invoke BOOST_MP11_DEPRECATED("please use mp_invoke_q") = mp_invoke_q<Q, T...>;#else// Clang doesn't warn on deprecated alias templatestemplate<class Q, class... T> struct BOOST_MP11_DEPRECATED("please use mp_invoke_q") mp_invoke_{    using type = mp_invoke_q<Q, T...>;};template<class Q, class... T> using mp_invoke = typename mp_invoke_<Q, T...>::type;#endif// mp_not_fn<P>template<template<class...> class P> struct mp_not_fn{    template<class... T> using fn = mp_not< mp_invoke_q<mp_quote<P>, T...> >;};template<class Q> using mp_not_fn_q = mp_not_fn<Q::template fn>;// mp_composenamespace detail{template<class T, class Q> using mp_reverse_invoke_q = mp_invoke_q<Q, T>;} // namespace detail#if !BOOST_MP11_WORKAROUND( BOOST_MP11_MSVC, < 1900 )template<template<class...> class... F> struct mp_compose{    template<class T> using fn = mp_fold<mp_list<mp_quote<F>...>, T, detail::mp_reverse_invoke_q>;};#endiftemplate<class... Q> struct mp_compose_q{    template<class T> using fn = mp_fold<mp_list<Q...>, T, detail::mp_reverse_invoke_q>;};} // namespace mp11} // namespace boost#endif // #ifndef BOOST_MP11_UTILITY_HPP_INCLUDED
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