/*============================================================================= Copyright (c) 2006-2007 Tobias Schwinger Use modification and distribution are 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). ==============================================================================*/ #if !defined(BOOST_FUSION_FUNCTIONAL_ADAPTER_UNFUSED_TYPED_HPP_INCLUDED) #if !defined(BOOST_PP_IS_ITERATING) #include #include #include #include #include #include #include #include #include #include #include #include #include #include #if defined (BOOST_MSVC) # pragma warning(push) # pragma warning (disable: 4512) // assignment operator could not be generated. #endif namespace boost { namespace fusion { template class unfused_typed; //----- ---- --- -- - - - - namespace detail { template struct unfused_typed_impl; } template class unfused_typed : public detail::unfused_typed_impl < unfused_typed, Function, Sequence, result_of::size::value > { Function fnc_transformed; template friend struct detail::unfused_typed_impl; typedef typename detail::call_param::type func_const_fwd_t; public: BOOST_CONSTEXPR BOOST_FUSION_GPU_ENABLED inline explicit unfused_typed(func_const_fwd_t f = Function()) : fnc_transformed(f) { } }; #define BOOST_PP_FILENAME_1 #define BOOST_PP_ITERATION_LIMITS (0,BOOST_FUSION_UNFUSED_TYPED_MAX_ARITY) #include BOOST_PP_ITERATE() }} #if defined (BOOST_MSVC) # pragma warning(pop) #endif namespace boost { #if !defined(BOOST_RESULT_OF_USE_DECLTYPE) || defined(BOOST_NO_CXX11_DECLTYPE) template struct result_of< boost::fusion::unfused_typed const () > : boost::fusion::unfused_typed::template result< boost::fusion::unfused_typed const () > { }; template struct result_of< boost::fusion::unfused_typed() > : boost::fusion::unfused_typed::template result< boost::fusion::unfused_typed () > { }; #endif template struct tr1_result_of< boost::fusion::unfused_typed const () > : boost::fusion::unfused_typed::template result< boost::fusion::unfused_typed const () > { }; template struct tr1_result_of< boost::fusion::unfused_typed() > : boost::fusion::unfused_typed::template result< boost::fusion::unfused_typed () > { }; } #define BOOST_FUSION_FUNCTIONAL_ADAPTER_UNFUSED_TYPED_HPP_INCLUDED #else // defined(BOOST_PP_IS_ITERATING) /////////////////////////////////////////////////////////////////////////////// // // Preprocessor vertical repetition code // /////////////////////////////////////////////////////////////////////////////// #define N BOOST_PP_ITERATION() namespace detail { template struct unfused_typed_impl { typedef typename detail::qf_c::type function_c; typedef typename detail::qf::type function; typedef typename result_of::as_vector::type arg_vector_t; public: #define M(z,i,s) \ typename call_param::type>::type a##i BOOST_CXX14_CONSTEXPR BOOST_FUSION_GPU_ENABLED inline typename boost::result_of< function_c(arg_vector_t &) >::type operator()(BOOST_PP_ENUM(N,M,arg_vector_t)) const { #if N > 0 arg_vector_t arg(BOOST_PP_ENUM_PARAMS(N,a)); #else arg_vector_t arg; #endif return static_cast(this)->fnc_transformed(arg); } BOOST_CXX14_CONSTEXPR BOOST_FUSION_GPU_ENABLED inline typename boost::result_of< function(arg_vector_t &) >::type operator()(BOOST_PP_ENUM(N,M,arg_vector_t)) { #if N > 0 arg_vector_t arg(BOOST_PP_ENUM_PARAMS(N,a)); #else arg_vector_t arg; #endif return static_cast(this)->fnc_transformed(arg); } #undef M template struct result { typedef void type; }; template struct result< Self const (BOOST_PP_ENUM_PARAMS(N,T)) > : boost::result_of< function_c(arg_vector_t &) > { }; template struct result< Self (BOOST_PP_ENUM_PARAMS(N,T)) > : boost::result_of< function(arg_vector_t &) > { }; }; } // namespace detail #undef N #endif // defined(BOOST_PP_IS_ITERATING) #endif