/* igraph library. Copyright (C) 2009-2012 Gabor Csardi 334 Harvard st, Cambridge MA, 02139 USA This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program; if not, write to the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #define NCOMPLEX /* to make it compile with MSVC on Windows */ #include #include "test_utilities.h" igraph_error_t my_gaxpy(const igraph_matrix_t *m, const igraph_vector_t *v, igraph_vector_t *res) { return igraph_blas_dgemv(false, 1.0, m, v, 0.0, res); } igraph_bool_t check_same(const igraph_sparsemat_t *A, const igraph_matrix_t *M) { igraph_matrix_t A_dense; igraph_bool_t result; igraph_matrix_init(&A_dense, 1, 1); igraph_sparsemat_as_matrix(&A_dense, A); result = igraph_matrix_all_e(&A_dense, M); igraph_matrix_destroy(&A_dense); return result; } int main(void) { igraph_sparsemat_t A, B, C, D; igraph_vector_t v, w, x, y; igraph_matrix_t M, N, O; igraph_int_t i; /* Matrix-vector product */ #define NROW 10 #define NCOL 5 #define EDGES NROW*NCOL/3 igraph_matrix_init(&M, NROW, NCOL); igraph_sparsemat_init(&A, NROW, NCOL, EDGES); for (i = 0; i < EDGES; i++) { igraph_int_t r = RNG_INTEGER(0, NROW - 1); igraph_int_t c = RNG_INTEGER(0, NCOL - 1); igraph_real_t value = RNG_INTEGER(1, 5); MATRIX(M, r, c) = MATRIX(M, r, c) + value; igraph_sparsemat_entry(&A, r, c, value); } igraph_sparsemat_compress(&A, &B); igraph_sparsemat_destroy(&A); igraph_vector_init(&v, NCOL); igraph_vector_init(&w, NCOL); for (i = 0; i < NCOL; i++) { VECTOR(v)[i] = VECTOR(w)[i] = RNG_INTEGER(1, 5); } igraph_vector_init(&x, NROW); igraph_vector_init(&y, NROW); my_gaxpy(&M, &v, &x); igraph_vector_null(&y); igraph_sparsemat_gaxpy(&B, &w, &y); if (!igraph_vector_all_e(&x, &y)) { return 1; } igraph_vector_destroy(&x); igraph_vector_destroy(&y); igraph_vector_destroy(&v); igraph_vector_destroy(&w); igraph_sparsemat_destroy(&B); igraph_matrix_destroy(&M); #undef NROW #undef NCOL #undef EDGES /* Matrix-matrix product */ #define NROW_A 10 #define NCOL_A 7 #define EDGES_A NROW_A*NCOL_A/3 #define NROW_B 7 #define NCOL_B 9 #define EDGES_B NROW_B*NCOL_B/3 igraph_matrix_init(&M, NROW_A, NCOL_A); igraph_sparsemat_init(&A, NROW_A, NCOL_A, EDGES_A); for (i = 0; i < EDGES_A; i++) { igraph_int_t r = RNG_INTEGER(0, NROW_A - 1); igraph_int_t c = RNG_INTEGER(0, NCOL_A - 1); igraph_real_t value = RNG_INTEGER(1, 5); MATRIX(M, r, c) = MATRIX(M, r, c) + value; igraph_sparsemat_entry(&A, r, c, value); } igraph_sparsemat_compress(&A, &C); igraph_sparsemat_destroy(&A); igraph_matrix_init(&N, NROW_B, NCOL_B); igraph_sparsemat_init(&B, NROW_B, NCOL_B, EDGES_B); for (i = 0; i < EDGES_B; i++) { igraph_int_t r = RNG_INTEGER(0, NROW_B - 1); igraph_int_t c = RNG_INTEGER(0, NCOL_B - 1); igraph_real_t value = RNG_INTEGER(1, 5); MATRIX(N, r, c) = MATRIX(N, r, c) + value; igraph_sparsemat_entry(&B, r, c, value); } igraph_sparsemat_compress(&B, &D); igraph_sparsemat_destroy(&B); igraph_matrix_init(&O, 0, 0); igraph_blas_dgemm(false, false, 1.0, &M, &N, 0.0, &O); igraph_sparsemat_multiply(&C, &D, &A); if (! check_same(&A, &O)) { return 2; } igraph_sparsemat_destroy(&C); igraph_sparsemat_destroy(&D); igraph_sparsemat_destroy(&A); igraph_matrix_destroy(&M); igraph_matrix_destroy(&N); igraph_matrix_destroy(&O); VERIFY_FINALLY_STACK(); return 0; }