33 #ifndef EIGEN_PARTIALLU_LAPACK_H 34 #define EIGEN_PARTIALLU_LAPACK_H 42 #define EIGEN_LAPACKE_LU_PARTPIV(EIGTYPE, LAPACKE_TYPE, LAPACKE_PREFIX) \ 43 template<int StorageOrder> \ 44 struct partial_lu_impl<EIGTYPE, StorageOrder, lapack_int> \ 47 static lapack_int blocked_lu(Index rows, Index cols, EIGTYPE* lu_data, Index luStride, lapack_int* row_transpositions, lapack_int& nb_transpositions, lapack_int maxBlockSize=256) \ 49 EIGEN_UNUSED_VARIABLE(maxBlockSize);\ 50 lapack_int matrix_order, first_zero_pivot; \ 51 lapack_int m, n, lda, *ipiv, info; \ 54 matrix_order = StorageOrder==RowMajor ? LAPACK_ROW_MAJOR : LAPACK_COL_MAJOR; \ 55 lda = convert_index<lapack_int>(luStride); \ 57 ipiv = row_transpositions; \ 58 m = convert_index<lapack_int>(rows); \ 59 n = convert_index<lapack_int>(cols); \ 60 nb_transpositions = 0; \ 62 info = LAPACKE_##LAPACKE_PREFIX##getrf( matrix_order, m, n, (LAPACKE_TYPE*)a, lda, ipiv ); \ 64 for(int i=0;i<m;i++) { ipiv[i]--; if (ipiv[i]!=i) nb_transpositions++; } \ 66 eigen_assert(info >= 0); \ 69 first_zero_pivot = info; \ 70 return first_zero_pivot; \ 83 #endif // EIGEN_PARTIALLU_LAPACK_H #define lapack_complex_float
#define EIGEN_LAPACKE_LU_PARTPIV(EIGTYPE, LAPACKE_TYPE, LAPACKE_PREFIX)
std::complex< float > scomplex
std::complex< double > dcomplex
#define lapack_complex_double