/* [auto_generated] boost/numeric/odeint/external/mpi/mpi_vector_state.hpp [begin_description] Copying a container from/to an mpi_state splits/joins it. [end_description] Copyright 2013 Karsten Ahnert Copyright 2013 Mario Mulansky Copyright 2013 Pascal Germroth 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) */ #ifndef BOOST_NUMERIC_ODEINT_EXTERNAL_MPI_MPI_VECTOR_STATE_HPP_INCLUDED #define BOOST_NUMERIC_ODEINT_EXTERNAL_MPI_MPI_VECTOR_STATE_HPP_INCLUDED #include #include #include #include #include #include #include namespace boost { namespace numeric { namespace odeint { /** \brief Split data from some container on node 0 to the slaves. * Source must be a model of Random Access Range. */ template< class Source , class InnerState > struct split_impl< Source, mpi_state< InnerState >, typename boost::enable_if< boost::has_range_const_iterator >::type > { typedef typename boost::range_iterator::type iterator; static void split( const Source &from, mpi_state< InnerState > &to ) { std::vector< InnerState > pieces; if(to.world.rank() == 0) { const size_t num = static_cast(to.world.size()); pieces.resize(num); for(size_t i = 0 ; i < num ; i++) { iterator_range part = detail::make_split_range(from, i, num); boost::numeric::odeint::resize(pieces[i], part); boost::numeric::odeint::copy(part, pieces[i]); } } // send to nodes boost::mpi::scatter(to.world, pieces, to(), 0); } }; /** \brief Merge data from an mpi_state to some container on node 0. * Target must be a model Single Pass Range. */ template< class Target, class InnerState > struct unsplit_impl< mpi_state< InnerState >, Target, typename boost::enable_if< boost::has_range_iterator >::type > { typedef typename boost::range_iterator::type iterator; static void unsplit( const mpi_state< InnerState > &from , Target &to ) { std::vector< InnerState > pieces; // send data to root boost::mpi::gather(from.world, from(), pieces, 0); if(from.world.rank() == 0) { // check target size size_t total_size = 0; for(size_t i = 0 ; i < pieces.size() ; i++) total_size += boost::size(pieces[i]); BOOST_ASSERT( total_size <= boost::size(to) ); // copy parts iterator out = boost::begin(to); for(size_t i = 0 ; i < pieces.size() ; i++) out = boost::copy(pieces[i], out); } } }; } } } #endif