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Abdelrahman Said a11edf0c53 Add graph references
2026-06-28 13:49:01 +01:00

258 lines
9.8 KiB
C

/*
igraph library.
Copyright (C) 2022 The igraph development team <igraph@igraph.org>
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, see <https://www.gnu.org/licenses/>.
*/
#include <igraph.h>
#include "test_utilities.h"
void print_destroy(igraph_matrix_t *adjmatrix, igraph_adjacency_t mode, igraph_loops_t loops) {
igraph_t g;
igraph_t g_sparse;
igraph_sparsemat_t sparse_adjmatrix, sparse_adjmatrix_comp;
igraph_bool_t same;
igraph_adjacency(&g, adjmatrix, mode, loops);
igraph_matrix_as_sparsemat(&sparse_adjmatrix, adjmatrix, 0.0001);
igraph_sparsemat_compress(&sparse_adjmatrix, &sparse_adjmatrix_comp);
igraph_sparse_adjacency(&g_sparse, &sparse_adjmatrix_comp, mode, loops);
print_graph_canon(&g);
igraph_is_same_graph(&g, &g_sparse, &same);
if (!same) {
printf("Sparse graph differs from non-sparse:\n");
print_graph_canon(&g_sparse);
exit(1);
}
igraph_matrix_destroy(adjmatrix);
igraph_sparsemat_destroy(&sparse_adjmatrix);
igraph_sparsemat_destroy(&sparse_adjmatrix_comp);
igraph_destroy(&g);
igraph_destroy(&g_sparse);
}
void check_error(igraph_matrix_t *adjmatrix, igraph_adjacency_t mode, igraph_loops_t loops, igraph_error_t error) {
igraph_t g;
igraph_sparsemat_t sparse_adjmatrix, sparse_adjmatrix_comp;
igraph_matrix_as_sparsemat(&sparse_adjmatrix, adjmatrix, 0.0001);
igraph_sparsemat_compress(&sparse_adjmatrix, &sparse_adjmatrix_comp);
CHECK_ERROR(igraph_adjacency(&g, adjmatrix, mode, loops), error);
CHECK_ERROR(igraph_sparse_adjacency(&g, &sparse_adjmatrix_comp, mode, loops), error);
igraph_sparsemat_destroy(&sparse_adjmatrix);
igraph_sparsemat_destroy(&sparse_adjmatrix_comp);
}
int main(void) {
igraph_matrix_t adjmatrix;
printf("\n0x0 matrix:\n");
matrix_init_int_row_major(&adjmatrix, 0, 0, NULL);
print_destroy(&adjmatrix, IGRAPH_ADJ_DIRECTED, IGRAPH_LOOPS_ONCE);
printf("\n1x1 matrix, no loops:\n");
{
int e[] = {1};
matrix_init_int_row_major(&adjmatrix, 1, 1, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_DIRECTED, IGRAPH_NO_LOOPS);
}
printf("\n1x1 matrix, loops once:\n");
{
int e[] = {1};
matrix_init_int_row_major(&adjmatrix, 1, 1, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_DIRECTED, IGRAPH_LOOPS_ONCE);
}
printf("\n1x1 matrix, loops twice (treated as loops once):\n");
{
int e[] = {1};
matrix_init_int_row_major(&adjmatrix, 1, 1, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_DIRECTED, IGRAPH_LOOPS_TWICE);
}
printf("\n3x3 matrix, IGRAPH_ADJ_DIRECTED, no loops:\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_DIRECTED, IGRAPH_NO_LOOPS);
}
printf("\n3x3 matrix, IGRAPH_ADJ_DIRECTED, loops once:\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_DIRECTED, IGRAPH_LOOPS_ONCE);
}
printf("\n3x3 matrix, IGRAPH_ADJ_DIRECTED, loops twice (treated as loops once):\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_DIRECTED, IGRAPH_LOOPS_TWICE);
}
printf("\n3x3 matrix, IGRAPH_ADJ_UNDIRECTED, no loops:\n");
{
int e[] = {4, 2, 0, 2, 0, 4, 0, 4, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_UNDIRECTED, IGRAPH_NO_LOOPS);
}
printf("\n3x3 matrix, IGRAPH_ADJ_UNDIRECTED, loops once:\n");
{
int e[] = {4, 2, 0, 2, 0, 4, 0, 4, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_UNDIRECTED, IGRAPH_LOOPS_ONCE);
}
printf("\n3x3 matrix, IGRAPH_ADJ_UNDIRECTED, loops twice:\n");
{
int e[] = {4, 2, 0, 2, 0, 4, 0, 4, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_UNDIRECTED, IGRAPH_LOOPS_TWICE);
}
printf("\n3x3 matrix, IGRAPH_ADJ_MAX, no loops:\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_MAX, IGRAPH_NO_LOOPS);
}
printf("\n3x3 matrix, IGRAPH_ADJ_MAX, loops once:\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_MAX, IGRAPH_LOOPS_ONCE);
}
printf("\n3x3 matrix, IGRAPH_ADJ_MAX, loops twice:\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_MAX, IGRAPH_LOOPS_TWICE);
}
printf("\n3x3 matrix, IGRAPH_ADJ_MIN, no loops:\n");
{
int e[] = {4, 2, 0, 3, 0, 5, 0, 4, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_MIN, IGRAPH_NO_LOOPS);
}
printf("\n3x3 matrix, IGRAPH_ADJ_MIN, loops once:\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_MIN, IGRAPH_LOOPS_ONCE);
}
printf("\n3x3 matrix, IGRAPH_ADJ_MIN, loops twice:\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_MIN, IGRAPH_LOOPS_TWICE);
}
printf("\n3x3 matrix, IGRAPH_ADJ_PLUS, no loops:\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_PLUS, IGRAPH_NO_LOOPS);
}
printf("\n3x3 matrix, IGRAPH_ADJ_PLUS, loops once:\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_PLUS, IGRAPH_LOOPS_ONCE);
}
printf("\n3x3 matrix, IGRAPH_ADJ_PLUS, loops twice:\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_PLUS, IGRAPH_LOOPS_TWICE);
}
printf("\n3x3 matrix, IGRAPH_ADJ_UPPER, no loops:\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_UPPER, IGRAPH_NO_LOOPS);
}
printf("\n3x3 matrix, IGRAPH_ADJ_UPPER, loops once:\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_UPPER, IGRAPH_LOOPS_ONCE);
}
printf("\n3x3 matrix, IGRAPH_ADJ_UPPER, loops twice (treated as loops once):\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_UPPER, IGRAPH_LOOPS_TWICE);
}
printf("\n3x3 matrix, IGRAPH_ADJ_LOWER, no loops:\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_LOWER, IGRAPH_NO_LOOPS);
}
printf("\n3x3 matrix, IGRAPH_ADJ_LOWER, loops once:\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_LOWER, IGRAPH_LOOPS_ONCE);
}
printf("\n3x3 matrix, IGRAPH_ADJ_LOWER, loops twice (treated as loops once):\n");
{
int e[] = {4, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
print_destroy(&adjmatrix, IGRAPH_ADJ_LOWER, IGRAPH_LOOPS_TWICE);
}
VERIFY_FINALLY_STACK();
printf("\nCheck handling of non-square matrix error.\n");
{
int e[] = {1, 2, 0};
matrix_init_int_row_major(&adjmatrix, 3, 1, e);
check_error(&adjmatrix, IGRAPH_ADJ_DIRECTED, IGRAPH_NO_LOOPS, IGRAPH_EINVAL);
igraph_matrix_destroy(&adjmatrix);
}
printf("\nCheck handling of negative number of edges error.\n");
{
int e[] = {1, 2, 0, -3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
check_error(&adjmatrix, IGRAPH_ADJ_DIRECTED, IGRAPH_NO_LOOPS, IGRAPH_EINVAL);
igraph_matrix_destroy(&adjmatrix);
}
printf("\nCheck handling of odd number in diagonal.\n");
{
int e[] = {1, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
check_error(&adjmatrix, IGRAPH_ADJ_UNDIRECTED, IGRAPH_LOOPS_TWICE, IGRAPH_EINVAL);
igraph_matrix_destroy(&adjmatrix);
}
printf("\nCheck handling of invalid adjacency mode.\n");
{
int e[] = {0, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
check_error(&adjmatrix, (igraph_adjacency_t) 42, IGRAPH_LOOPS_TWICE, IGRAPH_EINVAL);
igraph_matrix_destroy(&adjmatrix);
}
printf("\nCheck handling of non-symmetric matrix for IGRAPH_ADJ_UNDIRECTED.\n");
{
int e[] = {0, 2, 0, 3, 0, 4, 0, 5, 6};
matrix_init_int_row_major(&adjmatrix, 3, 3, e);
check_error(&adjmatrix, IGRAPH_ADJ_UNDIRECTED, IGRAPH_LOOPS_ONCE, IGRAPH_EINVAL);
igraph_matrix_destroy(&adjmatrix);
}
VERIFY_FINALLY_STACK();
return 0;
}