/*============================================================================= Copyright (c) 2001-2011 Joel de Guzman Copyright (c) 2007 Dan Marsden 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) ==============================================================================*/ #if !defined(BOOST_FUSION_COUNT_IF_09162005_0141) #define BOOST_FUSION_COUNT_IF_09162005_0141 #include #include #include #include #include #include #include #include #include #include namespace boost { namespace fusion { struct random_access_traversal_tag; namespace detail { template BOOST_CONSTEXPR BOOST_FUSION_GPU_ENABLED inline int linear_count_if(First const&, Last const&, F const&, mpl::true_) { return 0; } template BOOST_CXX14_CONSTEXPR BOOST_FUSION_GPU_ENABLED inline int linear_count_if(First const& first, Last const& last, F& f, mpl::false_) { int n = detail::linear_count_if( fusion::next(first) , last , f , result_of::equal_to::type, Last>()); if (f(*first)) ++n; return n; } template BOOST_CONSTEXPR BOOST_FUSION_GPU_ENABLED inline int count_if(Sequence const& seq, F f, Tag) { return detail::linear_count_if( fusion::begin(seq) , fusion::end(seq) , f , result_of::equal_to< typename result_of::begin::type , typename result_of::end::type>()); } template struct unrolled_count_if { template BOOST_CXX14_CONSTEXPR BOOST_FUSION_GPU_ENABLED static int call(I0 const& i0, F f) { int ct = unrolled_count_if:: call(fusion::advance_c<4>(i0), f); if(f(*i0)) ++ct; typedef typename result_of::next::type I1; I1 i1(fusion::next(i0)); if(f(*i1)) ++ct; typedef typename result_of::next::type I2; I2 i2(fusion::next(i1)); if(f(*i2)) ++ct; typedef typename result_of::next::type I3; I3 i3(fusion::next(i2)); if(f(*i3)) ++ct; return ct; } }; template<> struct unrolled_count_if<3> { template BOOST_CXX14_CONSTEXPR BOOST_FUSION_GPU_ENABLED static int call(I0 const& i0, F f) { int ct = 0; if(f(*i0)) ++ct; typedef typename result_of::next::type I1; I1 i1(fusion::next(i0)); if(f(*i1)) ++ct; typedef typename result_of::next::type I2; I2 i2(fusion::next(i1)); if(f(*i2)) ++ct; return ct; } }; template<> struct unrolled_count_if<2> { template BOOST_CXX14_CONSTEXPR BOOST_FUSION_GPU_ENABLED static int call(I0 const& i0, F f) { int ct = 0; if(f(*i0)) ++ct; typedef typename result_of::next::type I1; I1 i1(fusion::next(i0)); if(f(*i1)) ++ct; return ct; } }; template<> struct unrolled_count_if<1> { template BOOST_CXX14_CONSTEXPR BOOST_FUSION_GPU_ENABLED static int call(I0 const& i0, F f) { int ct = 0; if(f(*i0)) ++ct; return ct; } }; template<> struct unrolled_count_if<0> { template BOOST_CONSTEXPR BOOST_FUSION_GPU_ENABLED static int call(I0 const&, F) { return 0; } }; template BOOST_CONSTEXPR BOOST_FUSION_GPU_ENABLED inline int count_if(Sequence const& seq, F f, random_access_traversal_tag) { typedef typename result_of::begin::type begin; typedef typename result_of::end::type end; return detail::unrolled_count_if::type::value>:: call(fusion::begin(seq), f); } }}} #endif