/*============================================================================= Copyright (c) 2014 Paul Fultz II compose.h 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) ==============================================================================*/ #ifndef BOOST_HOF_GUARD_FUNCTION_COMPOSE_H #define BOOST_HOF_GUARD_FUNCTION_COMPOSE_H /// compose /// ======= /// /// Description /// ----------- /// /// The `compose` function adaptor provides function composition. It produces /// a function object that composes a set of functions, ie the output of one /// function becomes the input of the second function. So, `compose(f, g)(0)` /// is equivalent to `f(g(0))`. /// /// /// Synopsis /// -------- /// /// template /// constexpr compose_adaptor compose(Fs... fs); /// /// Semantics /// --------- /// /// assert(compose(f, g)(xs...) == f(g(xs...))); /// /// Requirements /// ------------ /// /// Fs must be: /// /// * [ConstInvocable](ConstInvocable) /// * MoveConstructible /// /// Example /// ------- /// /// #include /// #include /// using namespace boost::hof; /// /// struct increment /// { /// template /// T operator()(T x) const /// { /// return x + 1; /// } /// }; /// /// struct decrement /// { /// template /// T operator()(T x) const /// { /// return x - 1; /// } /// }; /// /// int main() { /// int r = compose(increment(), decrement(), increment())(3); /// assert(r == 4); /// } /// /// References /// ---------- /// /// * [Function composition](https://en.wikipedia.org/wiki/Function_composition) /// /// #include #include #include #include #include #include #include #include #include #include namespace boost { namespace hof { namespace detail { template struct compose_kernel : detail::compressed_pair, compose_function_result_type { typedef detail::compressed_pair base_type; BOOST_HOF_INHERIT_CONSTRUCTOR(compose_kernel, base_type) BOOST_HOF_RETURNS_CLASS(compose_kernel); template constexpr BOOST_HOF_SFINAE_RESULT(const F1&, result_of...>) operator()(Ts&&... xs) const BOOST_HOF_SFINAE_RETURNS ( BOOST_HOF_MANGLE_CAST(const F1&)(BOOST_HOF_CONST_THIS->first(xs...))( BOOST_HOF_MANGLE_CAST(const F2&)(BOOST_HOF_CONST_THIS->second(xs...))(BOOST_HOF_FORWARD(Ts)(xs)...) ) ); }; } template struct compose_adaptor : detail::compose_kernel, BOOST_HOF_JOIN(compose_adaptor, detail::callable_base...)> { typedef compose_adaptor fit_rewritable_tag; typedef BOOST_HOF_JOIN(compose_adaptor, detail::callable_base...) tail; typedef detail::compose_kernel, tail> base_type; BOOST_HOF_INHERIT_DEFAULT(compose_adaptor, base_type) template, X), BOOST_HOF_ENABLE_IF_CONSTRUCTIBLE(tail, Xs...) > constexpr compose_adaptor(X&& f1, Xs&& ... fs) BOOST_HOF_NOEXCEPT(BOOST_HOF_IS_NOTHROW_CONSTRUCTIBLE(base_type, X&&, tail) && BOOST_HOF_IS_NOTHROW_CONSTRUCTIBLE(tail, Xs&&...)) : base_type(BOOST_HOF_FORWARD(X)(f1), tail(BOOST_HOF_FORWARD(Xs)(fs)...)) {} template, X) > constexpr compose_adaptor(X&& f1) BOOST_HOF_NOEXCEPT_CONSTRUCTIBLE(base_type, X&&) : base_type(BOOST_HOF_FORWARD(X)(f1)) {} }; template struct compose_adaptor : detail::callable_base { typedef compose_adaptor fit_rewritable_tag; BOOST_HOF_INHERIT_DEFAULT(compose_adaptor, detail::callable_base) template)> constexpr compose_adaptor(X&& f1) BOOST_HOF_NOEXCEPT_CONSTRUCTIBLE(detail::callable_base, X&&) : detail::callable_base(BOOST_HOF_FORWARD(X)(f1)) {} }; template struct compose_adaptor : detail::compose_kernel, detail::callable_base> { typedef compose_adaptor fit_rewritable_tag; typedef detail::compose_kernel, detail::callable_base> base_type; BOOST_HOF_INHERIT_CONSTRUCTOR(compose_adaptor, base_type) }; BOOST_HOF_DECLARE_STATIC_VAR(compose, detail::make); }} // namespace boost::hof #endif