/*============================================================================= Copyright (c) 2001-2007 Joel de Guzman 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) ==============================================================================*/ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include namespace ns { struct point { int x; int y; int z; }; } #if BOOST_PP_VARIADICS // this creates a fusion view: boost::fusion::adapted::point BOOST_FUSION_ADAPT_STRUCT_NAMED( ns::point, point, x, y, z ) // this creates a fusion view: ns1::s1 struct s { int m; }; BOOST_FUSION_ADAPT_STRUCT_NAMED_NS(s, (ns1), s1, m) #else // BOOST_PP_VARIADICS // this creates a fusion view: boost::fusion::adapted::point BOOST_FUSION_ADAPT_STRUCT_NAMED( ns::point, point, (int, x) (BOOST_FUSION_ADAPT_AUTO, y) (auto, z) ) // this creates a fusion view: ns1::s1 struct s { int m; }; BOOST_FUSION_ADAPT_STRUCT_NAMED_NS(s, (ns1), s1, (auto, m)) #endif struct empty_struct {}; BOOST_FUSION_ADAPT_STRUCT_NAMED(empty_struct, renamed_empty_struct, ) BOOST_FUSION_ADAPT_STRUCT_NAMED_NS(empty_struct, (ns1), renamed_empty_struct1, ) int main() { using namespace boost::fusion; using namespace boost; std::cout << tuple_open('['); std::cout << tuple_close(']'); std::cout << tuple_delimiter(", "); { BOOST_MPL_ASSERT((traits::is_view)); BOOST_STATIC_ASSERT(traits::is_view::value); ns::point basep = {123, 456, 789}; adapted::point p(basep); std::cout << at_c<0>(p) << std::endl; std::cout << at_c<1>(p) << std::endl; std::cout << at_c<2>(p) << std::endl; std::cout << p << std::endl; BOOST_TEST(p == make_vector(123, 456, 789)); at_c<0>(p) = 6; at_c<1>(p) = 9; at_c<2>(p) = 12; BOOST_TEST(p == make_vector(6, 9, 12)); BOOST_STATIC_ASSERT(boost::fusion::result_of::size::value == 3); BOOST_STATIC_ASSERT(!boost::fusion::result_of::empty::value); BOOST_TEST(front(p) == 6); BOOST_TEST(back(p) == 12); } { fusion::vector v1(4, 2.f, 2); ns::point p = {5, 3, 3}; adapted::point v2(p); fusion::vector v3(5, 4., 4); BOOST_TEST(v1 < v2); BOOST_TEST(v1 <= v2); BOOST_TEST(v2 > v1); BOOST_TEST(v2 >= v1); BOOST_TEST(v2 < v3); BOOST_TEST(v2 <= v3); BOOST_TEST(v3 > v2); BOOST_TEST(v3 >= v2); } { // conversion from adapted::point to vector ns::point basep = {5, 3, 3}; adapted::point p(basep); fusion::vector v(p); v = p; } { // conversion from adapted::point to list ns::point basep = {5, 3, 3}; adapted::point p(basep); fusion::list l(p); l = p; } { // begin/end using namespace boost::fusion; using boost::is_same; typedef boost::fusion::result_of::begin::type b; typedef boost::fusion::result_of::end::type e; // this fails BOOST_MPL_ASSERT((is_same::type, e>)); } { BOOST_MPL_ASSERT((mpl::is_sequence)); BOOST_MPL_ASSERT((boost::is_same< boost::fusion::result_of::value_at_c::type , mpl::front::type>)); } return boost::report_errors(); }