}
irn = A->ia;
jcn = A->ja;
- return SparseMatrix_from_coordinate_arrays_not_compacted(A->nz, A->m, A->n, irn, jcn, a, A->type, A->size, SUM_REPEATED_NONE);
+ return SparseMatrix_from_coordinate_arrays_not_compacted(A->nz, A->m, A->n, irn, jcn, a, A->type, A->size);
}
static SparseMatrix SparseMatrix_from_coordinate_arrays_internal(int nz, int m, int n, int *irn, int *jcn, void *val0, int type, size_t sz, int sum_repeated){
}
-SparseMatrix SparseMatrix_from_coordinate_arrays_not_compacted(int nz, int m, int n, int *irn, int *jcn, void *val0, int type, size_t sz, int what_to_sum){
- return SparseMatrix_from_coordinate_arrays_internal(nz, m, n, irn, jcn, val0, type, sz, what_to_sum);
+SparseMatrix SparseMatrix_from_coordinate_arrays_not_compacted(int nz, int m, int n, int *irn, int *jcn, void *val0, int type, size_t sz){
+ return SparseMatrix_from_coordinate_arrays_internal(nz, m, n, irn, jcn, val0, type, sz, SUM_REPEATED_NONE);
}
SparseMatrix SparseMatrix_add(SparseMatrix A, SparseMatrix B){
SparseMatrix SparseMatrix_from_coordinate_format_not_compacted(SparseMatrix A);
SparseMatrix SparseMatrix_from_coordinate_arrays(int nz, int m, int n, int *irn, int *jcn, void *val, int type, size_t sz);
-/* what_to_sum is SUM_REPEATED_NONE, SUM_REPEATED_ALL, SUM_REPEATED_REAL_PART, SUM_REPEATED_IMAGINARY_PART, SUM_IMGINARY_KEEP_LAST_REAL*/
-SparseMatrix SparseMatrix_from_coordinate_arrays_not_compacted(int nz, int m, int n, int *irn, int *jcn, void *val, int type, size_t sz, int what_to_sum);
+SparseMatrix SparseMatrix_from_coordinate_arrays_not_compacted(int nz, int m, int n, int *irn, int *jcn, void *val, int type, size_t sz);
void SparseMatrix_print(char *, SparseMatrix A);/*print to stdout in Mathematica format*/