mirror of
https://github.com/bolero-MURAKAMI/Sprout
synced 2024-11-12 21:09:01 +00:00
542 lines
19 KiB
C++
542 lines
19 KiB
C++
#ifndef SPROUT_FUNCTIONAL_BIND_BIND_HPP
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#define SPROUT_FUNCTIONAL_BIND_BIND_HPP
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#include <cstddef>
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#include <utility>
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#include <tuple>
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#include <type_traits>
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#include <sprout/config.hpp>
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#include <sprout/index_tuple/metafunction.hpp>
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#include <sprout/utility/forward.hpp>
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#include <sprout/utility/lvalue_forward.hpp>
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#include <sprout/tuple/tuple/tuple.hpp>
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#include <sprout/tuple/tuple/get.hpp>
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#include <sprout/tuple/tuple/make_tuple.hpp>
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#include <sprout/functional/ref.hpp>
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#include <sprout/functional/mem_fn.hpp>
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#include <sprout/functional/type_traits/weak_result_type.hpp>
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#include <sprout/functional/bind/placeholder.hpp>
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namespace sprout {
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// 20.8.9 bind
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//
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// is_bind_expression
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//
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template<typename T>
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struct is_bind_expression
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: public std::false_type
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{};
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template<typename T>
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struct is_bind_expression<T const>
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: public sprout::is_bind_expression<T>
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{};
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template<typename T>
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struct is_bind_expression<T volatile>
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: public sprout::is_bind_expression<T>
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{};
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template<typename T>
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struct is_bind_expression<T const volatile>
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: public sprout::is_bind_expression<T>
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{};
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namespace detail {
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struct no_tuple_element;
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template<std::size_t I, typename Tuple, bool IsSafe>
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struct safe_tuple_element_impl
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: tuple_element<I, Tuple>
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{};
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template<std::size_t I, typename Tuple>
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struct safe_tuple_element_impl<I, Tuple, false> {
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public:
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typedef sprout::detail::no_tuple_element type;
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};
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template<std::size_t I, typename Tuple>
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struct safe_tuple_element
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: public sprout::detail::safe_tuple_element_impl<I, Tuple, (I < sprout::tuples::tuple_size<Tuple>::value)>
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{};
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template<
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typename Arg,
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bool IsBindExp = sprout::is_bind_expression<Arg>::value,
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bool IsPlaceholder = (sprout::is_placeholder<Arg>::value > 0)
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>
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class mu;
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template<typename T>
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class mu<sprout::reference_wrapper<T>, false, false> {
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public:
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typedef T& result_type;
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public:
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template<typename CVRef, typename Tuple>
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SPROUT_CONSTEXPR result_type operator()(CVRef& arg, Tuple&) const volatile {
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//return arg.get(); // ???
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return const_cast<typename std::remove_volatile<typename std::remove_reference<CVRef>::type>::type&>(arg).get();
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}
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};
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template<typename Arg>
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class mu<Arg, true, false> {
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private:
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template<typename CVArg, typename... Args, sprout::index_t... Indexes>
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SPROUT_CONSTEXPR auto call(
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CVArg& arg,
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sprout::tuples::tuple<Args...>& tuple,
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sprout::index_tuple<Indexes...>
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) const volatile
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-> decltype(arg(std::declval<Args>()...))
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{
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return arg(sprout::forward<Args>(sprout::tuples::get<Indexes>(tuple))...);
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}
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public:
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template<typename CVArg, typename... Args>
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SPROUT_CONSTEXPR auto operator()(CVArg& arg, sprout::tuples::tuple<Args...>& tuple) const volatile
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-> decltype(arg(std::declval<Args>()...))
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{
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return call(arg, tuple, sprout::index_pack<Args...>::make());
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}
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};
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template<typename Arg>
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class mu<Arg, false, true> {
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public:
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template<typename Signature>
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class result;
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template<typename CVMu, typename CVArg, typename Tuple>
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class result<CVMu (CVArg, Tuple)> {
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private:
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typedef typename sprout::detail::safe_tuple_element<
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(sprout::is_placeholder<Arg>::value - 1),
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Tuple
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>::type base_type;
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public:
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typedef typename std::add_rvalue_reference<base_type>::type type;
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};
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public:
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template<typename Tuple>
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typename result<mu (Arg, Tuple)>::type
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SPROUT_CONSTEXPR operator()(Arg const volatile&, Tuple& tuple) const volatile {
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return sprout::forward<typename result<mu (Arg, Tuple)>::type>(
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sprout::tuples::get<(sprout::is_placeholder<Arg>::value - 1)>(tuple)
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);
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}
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};
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template<typename Arg>
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class mu<Arg, false, false> {
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public:
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template<typename Signature>
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struct result;
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template<typename CVMu, typename CVArg, typename Tuple>
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struct result<CVMu (CVArg, Tuple)> {
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public:
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typedef typename std::add_lvalue_reference<CVArg>::type type;
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};
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public:
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template<typename CVArg, typename Tuple>
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SPROUT_CONSTEXPR CVArg&& operator()(CVArg&& arg, Tuple&) const volatile {
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return sprout::forward<CVArg>(arg);
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}
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};
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template<typename T>
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struct maybe_wrap_member_pointer {
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public:
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typedef T type;
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public:
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static SPROUT_CONSTEXPR T const& do_wrap(T const& x) {
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return x;
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}
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static SPROUT_CONSTEXPR T&& do_wrap(T&& x) {
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return static_cast<T&&>(x);
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}
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};
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template<typename T, typename Class>
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struct maybe_wrap_member_pointer<T Class::*> {
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public:
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typedef sprout::mem_fn_adaptor<T Class::*> type;
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public:
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static SPROUT_CONSTEXPR type do_wrap(T Class::* pm) {
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return type(pm);
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}
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};
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template<>
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struct maybe_wrap_member_pointer<void> {
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public:
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typedef void type;
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};
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template<std::size_t I, typename... Types>
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inline auto volget(sprout::tuples::tuple<Types...> volatile& tuple)
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-> typename sprout::tuples::tuple_element<I, sprout::tuples::tuple<Types...> >::type volatile&
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{
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return sprout::tuples::get<I>(const_cast<sprout::tuples::tuple<Types...>&>(tuple));
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}
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template<std::size_t I, typename... Types>
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inline SPROUT_CONSTEXPR auto volget(sprout::tuples::tuple<Types...> const volatile& tuple)
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-> typename sprout::tuples::tuple_element<I, sprout::tuples::tuple<Types...> >::type const volatile&
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{
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return sprout::tuples::get<I>(const_cast<sprout::tuples::tuple<Types...> const&>(tuple));
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}
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} // namespace detail
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//
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// binder
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//
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template<typename Signature>
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class binder;
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template<typename Functor, typename... BoundArgs>
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class binder<Functor(BoundArgs...)>
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: public sprout::weak_result_type<Functor>
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{
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private:
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typedef binder self_type;
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typedef typename sprout::index_pack<BoundArgs...>::type bound_indexes;
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private:
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Functor f_;
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sprout::tuples::tuple<BoundArgs...> bound_args_;
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private:
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template<typename Result, typename... Args, sprout::index_t... Indexes>
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Result call(sprout::tuples::tuple<Args...>&& args, sprout::index_tuple<Indexes...>) {
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return f_(sprout::detail::mu<BoundArgs>()(sprout::tuples::get<Indexes>(bound_args_), args)...);
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}
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template<typename Result, typename... Args, sprout::index_t... Indexes>
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SPROUT_CONSTEXPR Result call_c(sprout::tuples::tuple<Args...>&& args, sprout::index_tuple<Indexes...>) const {
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return f_(sprout::detail::mu<BoundArgs>()(sprout::tuples::get<Indexes>(bound_args_), args)...);
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}
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template<typename Result, typename... Args, sprout::index_t... Indexes>
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Result call_v(sprout::tuples::tuple<Args...>&& args, sprout::index_tuple<Indexes...>) volatile {
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return f_(sprout::detail::mu<BoundArgs>()(sprout::detail::volget<Indexes>(bound_args_), args)...);
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}
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template<typename Result, typename... Args, sprout::index_t... Indexes>
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SPROUT_CONSTEXPR Result call_cv(sprout::tuples::tuple<Args...>&& args, sprout::index_tuple<Indexes...>) const volatile {
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return f_(sprout::detail::mu<BoundArgs>()(sprout::detail::volget<Indexes>(bound_args_), args)...);
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}
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public:
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template<typename... Args>
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explicit SPROUT_CONSTEXPR binder(Functor const& f, Args&&... args)
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: f_(f)
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, bound_args_(sprout::forward<Args>(args)...)
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{}
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binder(binder const&) = default;
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template<
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typename... Args,
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typename Result = decltype(
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std::declval<Functor>()(
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sprout::detail::mu<BoundArgs>()(
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std::declval<BoundArgs&>(),
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std::declval<sprout::tuples::tuple<Args...>&>()
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)...
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)
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)
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>
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Result operator()(Args&&... args) {
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return call<Result>(
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sprout::tuples::forward_as_tuple(sprout::forward<Args>(args)...),
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bound_indexes()
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);
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}
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template<
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typename... Args,
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typename Result = decltype(
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std::declval<typename std::enable_if<(sizeof...(Args) >= 0), typename std::add_const<Functor>::type>::type>()(
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sprout::detail::mu<BoundArgs>()(
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std::declval<BoundArgs const&>(),
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std::declval<sprout::tuples::tuple<Args...>&>()
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)...
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)
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)
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>
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SPROUT_CONSTEXPR Result operator()(Args&&... args) const {
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return call_c<Result>(
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sprout::tuples::forward_as_tuple(sprout::forward<Args>(args)...),
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bound_indexes()
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);
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}
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template<
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typename... Args,
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typename Result = decltype(
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std::declval<typename std::enable_if<(sizeof...(Args) >= 0), typename std::add_volatile<Functor>::type>::type>()(
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sprout::detail::mu<BoundArgs>()(
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std::declval<BoundArgs volatile&>(),
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std::declval<sprout::tuples::tuple<Args...>&>()
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)...
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)
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)
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>
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Result operator()(Args&&... args) volatile {
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return call_v<Result>(
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sprout::tuples::forward_as_tuple(sprout::forward<Args>(args)...),
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bound_indexes()
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);
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}
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template<
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typename... Args,
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typename Result = decltype(
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std::declval<typename std::enable_if<(sizeof...(Args) >= 0), typename std::add_cv<Functor>::type>::type>()(
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sprout::detail::mu<BoundArgs>()(
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std::declval<BoundArgs const volatile&>(),
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std::declval<sprout::tuples::tuple<Args...>&>()
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)...
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)
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)
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>
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SPROUT_CONSTEXPR Result operator()(Args&&... args) const volatile {
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return call_cv<Result>(
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sprout::tuples::forward_as_tuple(sprout::forward<Args>(args)...),
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bound_indexes()
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);
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}
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};
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//
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// res_binder
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//
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template<typename Result, typename Signature>
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class res_binder;
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template<typename Result, typename Functor, typename... BoundArgs>
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class res_binder<Result, Functor(BoundArgs...)> {
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private:
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typedef res_binder self_type;
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typedef typename sprout::index_pack<BoundArgs...>::type bound_indexes;
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private:
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template<typename Res>
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struct enable_if_void
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: public std::enable_if<std::is_void<Res>::value, int>
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{};
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template<typename Res>
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struct disable_if_void
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: public std::enable_if<!std::is_void<Res>::value, int>
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{};
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private:
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Functor f_;
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sprout::tuples::tuple<BoundArgs...> bound_args_;
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private:
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template<typename Res, typename... Args, sprout::index_t... Indexes>
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Result call(
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sprout::tuples::tuple<Args...>&& args,
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sprout::index_tuple<Indexes...>,
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typename disable_if_void<Res>::type = 0
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)
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{
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return f_(sprout::detail::mu<BoundArgs>()(sprout::tuples::get<Indexes>(bound_args_), args)...);
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}
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template<typename Res, typename... Args, sprout::index_t... Indexes>
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Result call(
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sprout::tuples::tuple<Args...>&& args,
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sprout::index_tuple<Indexes...>,
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typename enable_if_void<Res>::type = 0
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)
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{
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f_(sprout::detail::mu<BoundArgs>()(sprout::tuples::get<Indexes>(bound_args_), args)...);
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}
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template<typename Res, typename... Args, sprout::index_t... Indexes>
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SPROUT_CONSTEXPR Result call(
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sprout::tuples::tuple<Args...>&& args,
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sprout::index_tuple<Indexes...>,
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typename disable_if_void<Res>::type = 0
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) const
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{
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return f_(sprout::detail::mu<BoundArgs>()(sprout::tuples::get<Indexes>(bound_args_), args)...);
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}
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template<typename Res, typename... Args, sprout::index_t... Indexes>
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Result call(
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sprout::tuples::tuple<Args...>&& args,
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sprout::index_tuple<Indexes...>,
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typename enable_if_void<Res>::type = 0
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) const
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{
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f_(sprout::detail::mu<BoundArgs>()(sprout::tuples::get<Indexes>(bound_args_), args)...);
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}
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template<typename Res, typename... Args, sprout::index_t... Indexes>
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Result call(
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sprout::tuples::tuple<Args...>&& args,
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sprout::index_tuple<Indexes...>,
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typename disable_if_void<Res>::type = 0
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) volatile
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{
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return f_(sprout::detail::mu<BoundArgs>()(sprout::detail::volget<Indexes>(bound_args_), args)...);
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}
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template<typename Res, typename... Args, sprout::index_t... Indexes>
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Result call(
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sprout::tuples::tuple<Args...>&& args,
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sprout::index_tuple<Indexes...>,
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typename enable_if_void<Res>::type = 0
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) volatile
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{
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f_(sprout::detail::mu<BoundArgs>()(sprout::detail::volget<Indexes>(bound_args_), args)...);
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}
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template<typename Res, typename... Args, sprout::index_t... Indexes>
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SPROUT_CONSTEXPR Result call(
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sprout::tuples::tuple<Args...>&& args,
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sprout::index_tuple<Indexes...>,
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typename disable_if_void<Res>::type = 0
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) const volatile
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{
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return f_(sprout::detail::mu<BoundArgs>()(sprout::detail::volget<Indexes>(bound_args_), args)...);
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}
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template<typename Res, typename... Args, sprout::index_t... Indexes>
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Result call(
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sprout::tuples::tuple<Args...>&& args,
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sprout::index_tuple<Indexes...>,
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typename enable_if_void<Res>::type = 0
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) const volatile
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{
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f_(sprout::detail::mu<BoundArgs>()(sprout::detail::volget<Indexes>(bound_args_), args)...);
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}
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public:
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typedef Result result_type;
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template<typename... Args>
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explicit res_binder(Functor const& f, Args&&... args)
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: f_(f)
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, bound_args_(sprout::forward<Args>(args)...)
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{}
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res_binder(res_binder const&) = default;
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template<typename... Args>
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result_type operator()(Args&&... args) {
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return call<Result>(
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sprout::tuples::forward_as_tuple(sprout::forward<Args>(args)...),
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bound_indexes()
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);
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}
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template<typename... Args>
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SPROUT_CONSTEXPR result_type operator()(Args&&... args) const {
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return call<Result>(
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sprout::tuples::forward_as_tuple(sprout::forward<Args>(args)...),
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bound_indexes()
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);
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}
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template<typename... Args>
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result_type operator()(Args&&... args) volatile {
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return call<Result>(
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sprout::tuples::forward_as_tuple(sprout::forward<Args>(args)...),
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bound_indexes()
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);
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}
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template<typename... Args>
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SPROUT_CONSTEXPR result_type operator()(Args&&... args) const volatile {
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return call<Result>(
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sprout::tuples::forward_as_tuple(sprout::forward<Args>(args)...),
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bound_indexes()
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);
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}
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};
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//
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// is_bind_expression
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//
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template<typename Signature>
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struct is_bind_expression<sprout::binder<Signature> >
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: public std::true_type
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{};
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template<typename Result, typename Signature>
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struct is_bind_expression<sprout::res_binder<Result, Signature> >
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: public std::true_type
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{};
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namespace detail {
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template<sprout::index_t Index, typename BoundArg, typename = void>
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struct complete_placeholder {
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public:
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typedef BoundArg type;
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};
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template<sprout::index_t Index, typename BoundArg>
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struct complete_placeholder<
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Index, BoundArg,
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typename std::enable_if<(sprout::is_placeholder<BoundArg>::value == -1)>::type
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> {
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public:
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typedef sprout::placeholder<Index + 1> type;
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};
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template<typename Func, typename IndexTuple, typename... BoundArgs>
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struct binder_complete_placeholders_impl;
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template<typename Func, typename... BoundArgs, sprout::index_t... Indexes>
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struct binder_complete_placeholders_impl<Func, sprout::index_tuple<Indexes...>, BoundArgs...> {
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public:
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typedef sprout::binder<Func (typename sprout::detail::complete_placeholder<Indexes, BoundArgs>::type...)> type;
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};
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template<typename Func, typename... BoundArgs>
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struct binder_complete_placeholders
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: public sprout::detail::binder_complete_placeholders_impl<Func, typename sprout::index_pack<BoundArgs...>::type, BoundArgs...>
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{};
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template<typename Result, typename Func, typename IndexTuple, typename... BoundArgs>
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struct res_binder_complete_placeholders_impl;
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template<typename Result, typename Func, typename... BoundArgs, sprout::index_t... Indexes>
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struct res_binder_complete_placeholders_impl<Result, Func, sprout::index_tuple<Indexes...>, BoundArgs...> {
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public:
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typedef sprout::res_binder<Result, Func (typename sprout::detail::complete_placeholder<Indexes, BoundArgs>::type...)> type;
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};
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template<typename Result, typename Func, typename... BoundArgs>
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struct res_binder_complete_placeholders
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: public sprout::detail::res_binder_complete_placeholders_impl<Result, Func, typename sprout::index_pack<BoundArgs...>::type, BoundArgs...>
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{};
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template<typename Func, typename... BoundArgs>
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struct bind_helper {
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public:
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typedef sprout::detail::maybe_wrap_member_pointer<typename std::decay<Func>::type> maybe_type;
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typedef typename maybe_type::type func_type;
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typedef typename sprout::detail::binder_complete_placeholders<func_type, typename std::decay<BoundArgs>::type...>::type type;
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// typedef sprout::binder<func_type (typename std::decay<BoundArgs>::type...)> type;
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};
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template<typename Result, typename Func, typename... BoundArgs>
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struct res_bind_helper {
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public:
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typedef sprout::detail::maybe_wrap_member_pointer<typename std::decay<Func>::type> maybe_type;
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typedef typename maybe_type::type functor_type;
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typedef typename sprout::detail::res_binder_complete_placeholders<Result, functor_type, typename std::decay<BoundArgs>::type...>::type type;
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// typedef sprout::res_binder<Result, functor_type (typename std::decay<BoundArgs>::type...)> type;
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};
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} // namespace detail
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//
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// bind_result
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// res_bind_result
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//
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template<typename F, typename... BoundArgs>
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struct bind_result {
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public:
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typedef typename sprout::detail::bind_helper<F, BoundArgs...>::type type;
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};
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template<typename R, typename F, typename... BoundArgs>
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struct res_bind_result {
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public:
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typedef typename sprout::detail::res_bind_helper<R, F, BoundArgs...>::type type;
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};
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//
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// bind
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//
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template<typename F, typename... BoundArgs>
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inline SPROUT_CONSTEXPR typename sprout::bind_result<F, BoundArgs...>::type
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bind(F&& f, BoundArgs&&... args) {
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typedef sprout::detail::bind_helper<F, BoundArgs...> helper_type;
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typedef typename helper_type::maybe_type maybe_type;
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typedef typename helper_type::type result_type;
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return result_type(maybe_type::do_wrap(sprout::forward<F>(f)), sprout::forward<BoundArgs>(args)...);
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}
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template<typename R, typename F, typename... BoundArgs>
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inline SPROUT_CONSTEXPR typename sprout::res_bind_result<R, F, BoundArgs...>::type
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bind(F&& f, BoundArgs&&... args) {
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typedef sprout::detail::res_bind_helper<R, F, BoundArgs...> helper_type;
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typedef typename helper_type::maybe_type maybe_type;
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typedef typename helper_type::type result_type;
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return result_type(maybe_type::do_wrap(sprout::forward<F>(f)), sprout::forward<BoundArgs>(args)...);
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}
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//
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// cbind
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//
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template<typename F, typename... BoundArgs>
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inline SPROUT_CONSTEXPR typename sprout::detail::bind_helper<F, BoundArgs...>::type const
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cbind(F&& f, BoundArgs&&... args) {
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return sprout::bind(sprout::forward<F>(f), sprout::forward<BoundArgs>(args)...);
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}
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template<typename R, typename F, typename... BoundArgs>
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inline SPROUT_CONSTEXPR typename sprout::detail::res_bind_helper<R, F, BoundArgs...>::type const
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cbind(F&& f, BoundArgs&&... args) {
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return sprout::bind<R>(sprout::forward<F>(f), sprout::forward<BoundArgs>(args)...);
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}
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} // namespace sprout
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#endif // #ifndef SPROUT_FUNCTIONAL_BIND_BIND_HPP
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