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Added thirdparty: boost library
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/*=============================================================================
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Copyright (c) 2015 Paul Fultz II
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decorate.h
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Distributed under the Boost Software License, Version 1.0. (See accompanying
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file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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==============================================================================*/
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#ifndef BOOST_HOF_GUARD_DECORATE_H
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#define BOOST_HOF_GUARD_DECORATE_H
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/// decorate
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/// ========
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///
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/// Description
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/// -----------
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///
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/// The `decorate` function adaptor helps create simple function decorators.
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///
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/// A function adaptor takes a function and returns a new functions whereas a
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/// decorator takes some parameters and returns a function adaptor. The
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/// `decorate` function adaptor will return a decorator that returns a
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/// function adaptor. Eventually, it will invoke the function with the user-
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/// provided parameter and function.
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///
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/// Synopsis
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/// --------
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///
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/// template<class F>
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/// constexpr decorate_adaptor<F> decorate(F f);
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///
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/// Semantics
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/// ---------
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///
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/// assert(decorate(f)(x)(g)(xs...) == f(x, g, xs...));
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///
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/// Requirements
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/// ------------
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///
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/// F must be:
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///
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/// * [ConstInvocable](ConstInvocable)
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/// * MoveConstructible
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///
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/// Example
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/// -------
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///
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/// #include <boost/hof.hpp>
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/// #include <cassert>
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/// #include <iostream>
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/// #include <string>
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/// using namespace boost::hof;
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///
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/// struct logger_f
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/// {
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/// template<class F, class... Ts>
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/// auto operator()(const std::string& message, F&& f, Ts&&... xs) const
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/// -> decltype(f(std::forward<Ts>(xs)...))
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/// {
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/// // Message to print out when the function is called
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/// std::cout << message << std::endl;
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/// // Call the function
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/// return f(std::forward<Ts>(xs)...);
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/// }
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/// };
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/// // The logger decorator
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/// BOOST_HOF_STATIC_FUNCTION(logger) = boost::hof::decorate(logger_f());
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///
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/// struct sum_f
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/// {
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/// template<class T, class U>
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/// T operator()(T x, U y) const
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/// {
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/// return x+y;
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/// }
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/// };
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///
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/// BOOST_HOF_STATIC_FUNCTION(sum) = sum_f();
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/// int main() {
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/// // Use the logger decorator to print "Calling sum" when the function is called
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/// assert(3 == logger("Calling sum")(sum)(1, 2));
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/// }
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///
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#include <boost/hof/reveal.hpp>
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#include <boost/hof/detail/delegate.hpp>
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#include <boost/hof/detail/move.hpp>
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#include <boost/hof/detail/make.hpp>
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#include <boost/hof/detail/callable_base.hpp>
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#include <boost/hof/detail/static_const_var.hpp>
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#include <boost/hof/detail/compressed_pair.hpp>
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namespace boost { namespace hof { namespace detail {
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template<class D, class T, class F>
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struct decorator_invoke
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// : compressed_pair<compressed_pair<F, T>, D>
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: compressed_pair<compressed_pair<D, T>, F>
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{
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// typedef compressed_pair<F, T> base;
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typedef compressed_pair<compressed_pair<D, T>, F> base;
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BOOST_HOF_INHERIT_CONSTRUCTOR(decorator_invoke, base)
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template<class... Ts>
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constexpr const compressed_pair<D, T>& get_pair(Ts&&... xs) const noexcept
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{
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return this->first(xs...);
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}
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template<class... Ts>
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constexpr const F& base_function(Ts&&... xs) const noexcept
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{
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return this->second(xs...);
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}
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template<class... Ts>
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constexpr const D& get_decorator(Ts&&... xs) const noexcept
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{
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return this->get_pair(xs...).first(xs...);
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}
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template<class... Ts>
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constexpr const T& get_data(Ts&&... xs) const noexcept
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{
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return this->get_pair(xs...).second(xs...);
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}
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BOOST_HOF_RETURNS_CLASS(decorator_invoke);
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struct decorator_invoke_failure
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{
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template<class Failure>
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struct apply
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{
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template<class... Ts>
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struct of
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: Failure::template of<const T&, const F&, Ts...>
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{};
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};
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};
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struct failure
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: failure_map<decorator_invoke_failure, D>
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{};
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template<class... Ts>
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constexpr BOOST_HOF_SFINAE_RESULT(const D&, id_<const T&>, id_<const F&>, id_<Ts>...)
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operator()(Ts&&... xs) const BOOST_HOF_SFINAE_RETURNS
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(
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BOOST_HOF_MANGLE_CAST(const D&)(BOOST_HOF_CONST_THIS->get_decorator(xs...))(
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BOOST_HOF_MANGLE_CAST(const T&)(BOOST_HOF_CONST_THIS->get_data(xs...)),
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BOOST_HOF_MANGLE_CAST(const F&)(BOOST_HOF_CONST_THIS->base_function(xs...)),
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BOOST_HOF_FORWARD(Ts)(xs)...
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)
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);
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};
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template<class D, class T>
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struct decoration
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: compressed_pair<D, T>
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{
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typedef compressed_pair<D, T> base;
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BOOST_HOF_INHERIT_CONSTRUCTOR(decoration, base)
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template<class... Ts>
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constexpr const D& get_decorator(Ts&&... xs) const noexcept
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{
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return this->first(xs...);
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}
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template<class... Ts>
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constexpr const T& get_data(Ts&&... xs) const noexcept
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{
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return this->second(xs...);
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}
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template<class F>
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constexpr decorator_invoke<D, T, detail::callable_base<F>> operator()(F f) const
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BOOST_HOF_NOEXCEPT(BOOST_HOF_IS_NOTHROW_CONSTRUCTIBLE(decorator_invoke<D, T, detail::callable_base<F>>, compressed_pair<D, T>, detail::callable_base<F>&&))
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{
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return decorator_invoke<D, T, detail::callable_base<F>>(
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*this, static_cast<detail::callable_base<F>&&>(f)
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);
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}
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};
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}
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template<class F>
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struct decorate_adaptor : detail::callable_base<F>
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{
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typedef decorate_adaptor fit_rewritable1_tag;
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typedef detail::callable_base<F> base;
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BOOST_HOF_INHERIT_CONSTRUCTOR(decorate_adaptor, detail::callable_base<F>)
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template<class... Ts>
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constexpr const base& base_function(Ts&&... xs) const noexcept
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{
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return boost::hof::always_ref(*this)(xs...);
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}
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// TODO: Add predicate for constraints
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template<class T>
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constexpr detail::decoration<base, T> operator()(T x) const
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BOOST_HOF_NOEXCEPT(BOOST_HOF_IS_NOTHROW_CONSTRUCTIBLE(base, const base&) && BOOST_HOF_IS_NOTHROW_CONSTRUCTIBLE(T, T&&))
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{
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return detail::decoration<base, T>(this->base_function(x), static_cast<T&&>(x));
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}
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};
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BOOST_HOF_DECLARE_STATIC_VAR(decorate, detail::make<decorate_adaptor>);
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}} // namespace boost::hof
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#endif
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