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| | #ifndef METIS_SUPPORT_H |
| | #define METIS_SUPPORT_H |
| |
|
| | namespace Eigen { |
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| | |
| | template <typename StorageIndex> |
| | class MetisOrdering |
| | { |
| | public: |
| | typedef PermutationMatrix<Dynamic,Dynamic,StorageIndex> PermutationType; |
| | typedef Matrix<StorageIndex,Dynamic,1> IndexVector; |
| | |
| | template <typename MatrixType> |
| | void get_symmetrized_graph(const MatrixType& A) |
| | { |
| | Index m = A.cols(); |
| | eigen_assert((A.rows() == A.cols()) && "ONLY FOR SQUARED MATRICES"); |
| | |
| | MatrixType At = A.transpose(); |
| | |
| | Index TotNz = 0; |
| | IndexVector visited(m); |
| | visited.setConstant(-1); |
| | for (StorageIndex j = 0; j < m; j++) |
| | { |
| | |
| | visited(j) = j; |
| | |
| | for (typename MatrixType::InnerIterator it(A, j); it; ++it) |
| | { |
| | Index idx = it.index(); |
| | if (visited(idx) != j ) |
| | { |
| | visited(idx) = j; |
| | ++TotNz; |
| | } |
| | } |
| | |
| | for (typename MatrixType::InnerIterator it(At, j); it; ++it) |
| | { |
| | Index idx = it.index(); |
| | if(visited(idx) != j) |
| | { |
| | visited(idx) = j; |
| | ++TotNz; |
| | } |
| | } |
| | } |
| | |
| | m_indexPtr.resize(m+1); |
| | m_innerIndices.resize(TotNz); |
| |
|
| | |
| | visited.setConstant(-1); |
| | StorageIndex CurNz = 0; |
| | for (StorageIndex j = 0; j < m; j++) |
| | { |
| | m_indexPtr(j) = CurNz; |
| | |
| | visited(j) = j; |
| | |
| | for (typename MatrixType::InnerIterator it(A,j); it; ++it) |
| | { |
| | StorageIndex idx = it.index(); |
| | if (visited(idx) != j ) |
| | { |
| | visited(idx) = j; |
| | m_innerIndices(CurNz) = idx; |
| | CurNz++; |
| | } |
| | } |
| | |
| | for (typename MatrixType::InnerIterator it(At, j); it; ++it) |
| | { |
| | StorageIndex idx = it.index(); |
| | if(visited(idx) != j) |
| | { |
| | visited(idx) = j; |
| | m_innerIndices(CurNz) = idx; |
| | ++CurNz; |
| | } |
| | } |
| | } |
| | m_indexPtr(m) = CurNz; |
| | } |
| | |
| | template <typename MatrixType> |
| | void operator() (const MatrixType& A, PermutationType& matperm) |
| | { |
| | StorageIndex m = internal::convert_index<StorageIndex>(A.cols()); |
| | IndexVector perm(m),iperm(m); |
| | |
| | get_symmetrized_graph(A); |
| | int output_error; |
| | |
| | |
| | output_error = METIS_NodeND(&m, m_indexPtr.data(), m_innerIndices.data(), NULL, NULL, perm.data(), iperm.data()); |
| | |
| | if(output_error != METIS_OK) |
| | { |
| | |
| | std::cerr << "ERROR WHILE CALLING THE METIS PACKAGE \n"; |
| | return; |
| | } |
| | |
| | |
| | |
| | |
| | |
| | matperm.resize(m); |
| | for (int j = 0; j < m; j++) |
| | matperm.indices()(iperm(j)) = j; |
| | |
| | } |
| | |
| | protected: |
| | IndexVector m_indexPtr; |
| | IndexVector m_innerIndices; |
| | }; |
| |
|
| | } |
| | #endif |
| |
|