147 lines
3.7 KiB
C++
147 lines
3.7 KiB
C++
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/*+
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ARES/HADES/BORG Package -- ./libLSS/tools/domains.hpp
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Copyright (C) 2020 Guilhem Lavaux <guilhem.lavaux@iap.fr>
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Copyright (C) 2009-2020 Jens Jasche <jens.jasche@fysik.su.se>
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Additional contributions from:
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Guilhem Lavaux <guilhem.lavaux@iap.fr> (2023)
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+*/
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#ifndef __LIBLSS_TOOLS_MPI_DOMAIN_HPP
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# define __LIBLSS_TOOLS_MPI_DOMAIN_HPP
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# include <boost/multi_array.hpp>
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# include <cstdint>
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# include <list>
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# include "libLSS/mpi/generic_mpi.hpp"
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# include <boost/optional.hpp>
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# include "libLSS/samplers/core/types_samplers.hpp"
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namespace LibLSS {
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/**
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* @brief Specifies the boundary of domains
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*
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* @tparam N number of dimensions
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*/
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template <size_t N>
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struct DomainSpec {
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/**
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* @brief Type defining an hypercube boundary.
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*
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* The hypercube is defined by two corners defined in an N-d space.
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* Thus we need 2 * Nd elements in that array.
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*/
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typedef std::array<ssize_t, 2 * N> DomainLimit_t;
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/**
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* @brief Boundaries
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*
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* A domain is defined by a set of hypercube boundaries.
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* The assumption is that the hypercubes are disjoint.
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*/
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std::vector<DomainLimit_t> domains;
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boost::optional<DomainSpec<N>> intersect(DomainSpec<N> const &other) const;
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};
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/**
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* @brief Hold the complete description of the domain on all nodes.
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*
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* Any sane description should cover completely the hypercube domain.
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*
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* @tparam N number of dimensions of the hypercube
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*/
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template <size_t N>
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struct CompleteDomainSpec {
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std::vector<DomainSpec<N>> domainOnRank;
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};
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/**
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* @brief Specific task to exchange data on domains
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*
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* @tparam N
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*/
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template <size_t N>
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struct DomainTask {
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typename DomainSpec<N>::DomainLimit_t slice;
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int rankIO;
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bool recv;
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};
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/**
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* @brief Todo list of tasks to complete to redistribute domain data on nodes
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*
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* @tparam N
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*/
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template <size_t N>
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struct DomainTodo {
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std::list<DomainTask<N>> tasks;
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};
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/**
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* @brief Array of data for the domain
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*
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* @tparam T
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* @tparam N
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*/
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template <typename T, size_t N>
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using Domain = LibLSS::multi_array_ref<T, N>;
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/**
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* @brief Gather the complete domain specification.
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*
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* This function gather the description from each tasks about their domain
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* specification and store the result in `complete`.
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* @tparam N
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* @param comm
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* @param complete
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* @param inputSpec
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*/
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template <size_t N>
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void computeCompleteDomainSpec(
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MPI_Communication *comm, CompleteDomainSpec<N> &complete,
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DomainSpec<N> const &inputSpec);
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/**
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* @brief Compute the list of tasks to do to transform from one spec to another
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*
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* The algorithm must complete the list of tasks to go from `inputSpec` to `outputSpec`
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* on each node. Provided the domain does not change the list of tasks must be
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* invariant w.r.t held data.
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*
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* @tparam N
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* @param comm
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* @param inputSpec
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* @param outputSpec
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* @param todo
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*/
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template <size_t N>
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void mpiDomainComputeTodo(
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MPI_Communication *comm, CompleteDomainSpec<N> const &inputSpec,
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CompleteDomainSpec<N> const &outputSpec, DomainTodo<N> &todo);
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/**
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* @brief Execute a domain redecomposition
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*
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* @tparam T
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* @tparam N
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* @param comm
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* @param inputSpec
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* @param inputDomain
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* @param outputSpec
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* @param outputDomain
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*/
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template <typename T, size_t N>
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void mpiDomainRun(
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MPI_Communication *comm, Domain<T, N> const &input_domains,
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Domain<T, N> &output_domains, DomainTodo<N> const &todo);
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} // namespace LibLSS
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#endif
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// ARES TAG: num_authors = 1
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// ARES TAG: name(0) = Guilhem Lavaux
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// ARES TAG: year(0) = 2020
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// ARES TAG: email(0) = guilhem.lavaux@iap.fr
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