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#ifndef MATRIXCOMMUNICATOR_HH
#define MATRIXCOMMUNICATOR_HH
#include <vector>
#include <dune/istl/matrixindexset.hh>
#include <dune/gfe/parallel/globalindex.hh>
#include <dune/gfe/parallel/mpifunctions.hh>

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template<typename GUIndex, typename MatrixType, typename ColGUIndex=GUIndex>
class MatrixCommunicator {
struct TransferMatrixTuple {
typedef typename MatrixType::block_type EntryType;
size_t row, col;
EntryType entry;
TransferMatrixTuple() {}
TransferMatrixTuple(const size_t& r, const size_t& c, const EntryType& e) : row(r), col(c), entry(e) {}
};
void transferMatrix(const MatrixType& localMatrix) {
// Create vector for transfer data
std::vector<TransferMatrixTuple> localMatrixEntries;
// Convert local matrix to serializable array
typedef typename MatrixType::row_type::ConstIterator ColumnIterator;
for (typename MatrixType::ConstIterator rIt = localMatrix.begin(); rIt != localMatrix.end(); ++rIt)
for (ColumnIterator cIt = rIt->begin(); cIt != rIt->end(); ++cIt) {
const int i = rIt.index();
const int j = cIt.index();
localMatrixEntries.push_back(TransferMatrixTuple(guIndex1_.globalIndex(i), guIndex2_.globalIndex(j), *cIt));
}
// Get number of matrix entries on each process
std::vector<int> localMatrixEntriesSizes(MPIFunctions::shareSizes(guIndex1_.getGridView(), localMatrixEntries.size()));
// Get matrix entries from every process
globalMatrixEntries = MPIFunctions::gatherv(guIndex1_.getGridView(), localMatrixEntries, localMatrixEntriesSizes, root_rank);
public:
MatrixCommunicator(const GUIndex& rowIndex, const int& root)
: guIndex1_(rowIndex),
guIndex2_(rowIndex),
root_rank(root)
{}

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MatrixCommunicator(const GUIndex& rowIndex, const ColGUIndex& colIndex, const int& root)
: guIndex1_(rowIndex),
guIndex2_(colIndex),
root_rank(root)
{}
MatrixType reduceAdd(const MatrixType& local)
{
transferMatrix(local);
MatrixType globalMatrix;
// Create occupation pattern in matrix
Dune::MatrixIndexSet occupationPattern;
occupationPattern.resize(guIndex1_.nGlobalEntity(), guIndex2_.nGlobalEntity());
for (size_t k = 0; k < globalMatrixEntries.size(); ++k)
occupationPattern.add(globalMatrixEntries[k].row, globalMatrixEntries[k].col);
occupationPattern.exportIdx(globalMatrix);
// Initialize matrix to zero
globalMatrix = 0;
// Move entries to matrix
for(size_t k = 0; k < globalMatrixEntries.size(); ++k)
globalMatrix[globalMatrixEntries[k].row][globalMatrixEntries[k].col] += globalMatrixEntries[k].entry;
return globalMatrix;
}
MatrixType reduceCopy(const MatrixType& local)
{
transferMatrix(local);
MatrixType globalMatrix;
// Create occupation pattern in matrix
Dune::MatrixIndexSet occupationPattern;
occupationPattern.resize(guIndex1_.nGlobalEntity(), guIndex2_.nGlobalEntity());
for (size_t k = 0; k < globalMatrixEntries.size(); ++k)
occupationPattern.add(globalMatrixEntries[k].row, globalMatrixEntries[k].col);
occupationPattern.exportIdx(globalMatrix);
// Move entries to matrix
for(size_t k = 0; k < globalMatrixEntries.size(); ++k)
globalMatrix[globalMatrixEntries[k].row][globalMatrixEntries[k].col] = globalMatrixEntries[k].entry;
return globalMatrix;
}
private:
const GUIndex& guIndex1_;

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const ColGUIndex& guIndex2_;
int root_rank;
std::vector<TransferMatrixTuple> globalMatrixEntries;
};
#endif