#ifndef BOOST_COMPUTE_UTILITY_INVOKE_HPP
#define BOOST_COMPUTE_UTILITY_INVOKE_HPP
#include <boost/preprocessor/enum.hpp>
#include <boost/preprocessor/repetition.hpp>
#include <boost/compute/config.hpp>
#include <boost/compute/command_queue.hpp>
#include <boost/compute/detail/meta_kernel.hpp>
#include <boost/compute/container/detail/scalar.hpp>
#include <boost/compute/type_traits/result_of.hpp>
namespace boost {
namespace compute {
#define BOOST_COMPUTE_DETAIL_INVOKE_ARG(z, n, unused) \
BOOST_PP_COMMA_IF(n) k.var<BOOST_PP_CAT(T, n)>("arg" BOOST_PP_STRINGIZE(n))
#define BOOST_COMPUTE_DETAIL_INVOKE_ADD_ARG(z, n, unused) \
k.add_set_arg("arg" BOOST_PP_STRINGIZE(n), BOOST_PP_CAT(arg, n));
#define BOOST_COMPUTE_DETAIL_DEFINE_INVOKE(z, n, unused) \
template<class Function, BOOST_PP_ENUM_PARAMS(n, class T)> \
inline typename result_of<Function(BOOST_PP_ENUM_PARAMS(n, T))>::type \
invoke(const Function& function, command_queue& queue, BOOST_PP_ENUM_BINARY_PARAMS(n, const T, &arg)) \
{ \
typedef typename result_of<Function(BOOST_PP_ENUM_PARAMS(n, T))>::type result_type; \
detail::meta_kernel k("invoke"); \
detail::scalar<result_type> result(queue.get_context()); \
const size_t result_arg = k.add_arg<result_type *>(memory_object::global_memory, "result"); \
BOOST_PP_REPEAT(n, BOOST_COMPUTE_DETAIL_INVOKE_ADD_ARG, ~) \
k << "*result = " << function( \
BOOST_PP_REPEAT(n, BOOST_COMPUTE_DETAIL_INVOKE_ARG, ~) \
) << ";"; \
k.set_arg(result_arg, result.get_buffer()); \
k.exec(queue); \
return result.read(queue); \
}
BOOST_PP_REPEAT_FROM_TO(1, BOOST_COMPUTE_MAX_ARITY, BOOST_COMPUTE_DETAIL_DEFINE_INVOKE, ~)
#undef BOOST_COMPUTE_DETAIL_INVOKE_ARG
#undef BOOST_COMPUTE_DETAIL_INVOKE_ADD_ARG
#undef BOOST_COMPUTE_DETAIL_DEFINE_INVOKE
#ifdef BOOST_COMPUTE_DOXYGEN_INVOKED
template<class Function, class... Args>
inline typename result_of<Function(Args...)>::type
invoke(const Function& function, command_queue& queue, const Args&... args);
#endif
} }
#endif