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agent_compositor_test/references/igraph-1.0.1/tests/unit/cycle_bases.c
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Abdelrahman Said a11edf0c53 Add graph references
2026-06-28 13:49:01 +01:00

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6.7 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_check_destroy(igraph_t *graph, igraph_vector_int_list_t *result) {
igraph_int_t i, rank = igraph_vector_int_list_size(result);
igraph_int_t ecount = igraph_ecount(graph), vcount = igraph_vcount(graph);
igraph_int_t ccount;
for (i=0; i < rank; ++i) {
igraph_vector_int_t *cycle = igraph_vector_int_list_get_ptr(result, i);
IGRAPH_ASSERT(igraph_vector_int_size(cycle) > 0);
igraph_int_t first_edge = VECTOR(*cycle)[0];
igraph_int_t last_edge = VECTOR(*cycle)[igraph_vector_int_size(cycle) - 1];
/* Verify that first and last edges of the cycle share a vertex */
IGRAPH_ASSERT(
(IGRAPH_FROM(graph, first_edge) == IGRAPH_FROM(graph, last_edge) ||
IGRAPH_FROM(graph, first_edge) == IGRAPH_TO(graph, last_edge)) ||
(IGRAPH_TO(graph, first_edge) == IGRAPH_FROM(graph, last_edge) ||
IGRAPH_TO(graph, first_edge) == IGRAPH_TO(graph, last_edge))
);
print_vector_int(cycle);
}
igraph_connected_components(graph, NULL, NULL, &ccount, IGRAPH_WEAK);
IGRAPH_ASSERT(rank == ecount - vcount + ccount);
igraph_destroy(graph);
}
int main(void) {
igraph_t graph;
igraph_vector_int_list_t result;
igraph_int_t rank;
igraph_vector_int_list_init(&result, 0);
printf("FUNDAMENTAL CYCLE BASIS\n");
printf("\nNull graph\n");
igraph_empty(&graph, 0, IGRAPH_UNDIRECTED);
igraph_fundamental_cycles(&graph, NULL, &result, -1, -1);
print_check_destroy(&graph, &result);
printf("\nSingleton graph\n");
igraph_empty(&graph, 1, IGRAPH_UNDIRECTED);
igraph_fundamental_cycles(&graph, NULL, &result, -1, -1);
print_check_destroy(&graph, &result);
printf("\nSingle vertex with loop\n");
igraph_small(&graph, 1, IGRAPH_UNDIRECTED,
0,0,
-1);
igraph_fundamental_cycles(&graph, NULL, &result, -1, -1);
print_check_destroy(&graph, &result);
printf("\nTree\n");
igraph_kary_tree(&graph, 3, 2, IGRAPH_TREE_UNDIRECTED);
igraph_fundamental_cycles(&graph, NULL, &result, -1, -1);
print_check_destroy(&graph, &result);
printf("\n2-cycle\n");
igraph_small(&graph, 0, IGRAPH_UNDIRECTED,
0,1, 0,1,
-1);
igraph_fundamental_cycles(&graph, NULL, &result, -1, -1);
print_check_destroy(&graph, &result);
printf("\nDisconnected\n");
igraph_small(&graph, 0, IGRAPH_UNDIRECTED,
1,2, 2,3, 3,1,
4,5, 5,4, 4,5,
6,7, 7,8, 8,9, 9,6, 6,8,
10,10, 10,11,
12,12,
-1);
igraph_fundamental_cycles(&graph, NULL, &result, -1, -1);
print_check_destroy(&graph, &result);
printf("\nMINIMUM WEIGHT CYCLE BASIS\n");
printf("\nNull graph\n");
igraph_empty(&graph, 0, IGRAPH_UNDIRECTED);
igraph_minimum_cycle_basis(&graph, NULL, &result, /* cutoff */ -1, /* complete */ true, /* ordered */ true);
print_check_destroy(&graph, &result);
printf("\nSingleton graph\n");
igraph_empty(&graph, 1, IGRAPH_UNDIRECTED);
igraph_minimum_cycle_basis(&graph, NULL, &result, /* cutoff */ -1, /* complete */ true, /* ordered */ true);
print_check_destroy(&graph, &result);
printf("\nSingle vertex with loop\n");
igraph_small(&graph, 1, IGRAPH_UNDIRECTED,
0,0,
-1);
igraph_minimum_cycle_basis(&graph, NULL, &result, /* cutoff */ -1, /* complete */ true, /* ordered */ true);
print_check_destroy(&graph, &result);
printf("\nTree\n");
igraph_kary_tree(&graph, 3, 2, IGRAPH_TREE_UNDIRECTED);
igraph_minimum_cycle_basis(&graph, NULL, &result, /* cutoff */ -1, /* complete */ true, /* ordered */ true);
print_check_destroy(&graph, &result);
printf("\n2-cycle\n");
igraph_small(&graph, 0, IGRAPH_UNDIRECTED,
0,1, 0,1,
-1);
igraph_minimum_cycle_basis(&graph, NULL, &result, /* cutoff */ -1, /* complete */ true, /* ordered */ true);
print_check_destroy(&graph, &result);
printf("\nDisconnected\n");
igraph_small(&graph, 0, IGRAPH_UNDIRECTED,
1,2, 2,3, 3,1,
4,5, 5,4, 4,5,
6,7, 7,8, 8,9, 9,6, 6,8,
10,10, 10,11,
12,12,
-1);
igraph_minimum_cycle_basis(&graph, NULL, &result, /* cutoff */ -1, /* complete */ true, /* ordered */ true);
print_check_destroy(&graph, &result);
printf("\nPeriodic (5,6)-grid\n");
{
igraph_vector_int_t dimvec;
igraph_vector_bool_t periodic;
igraph_vector_int_init_int_end(&dimvec, -1,
1, 5, 6, -1);
igraph_vector_bool_init(&periodic, igraph_vector_int_size(&dimvec));
igraph_vector_bool_fill(&periodic, 1);
igraph_square_lattice(&graph, &dimvec, 1, IGRAPH_ADJ_UNDIRECTED, /* mutual */ false, &periodic);
igraph_vector_bool_destroy(&periodic);
igraph_vector_int_destroy(&dimvec);
}
igraph_minimum_cycle_basis(&graph, NULL, &result, /* cutoff */ -1, /* complete */ true, /* ordered */ true);
rank = igraph_vector_int_list_size(&result);
/* In a periodic grid graph, all elements in the minimum basis have size 4,
* except two, which have size equal to the grid dimensions. */
IGRAPH_ASSERT(igraph_vector_int_size(&VECTOR(result)[0]) == 4);
IGRAPH_ASSERT(igraph_vector_int_size(&VECTOR(result)[rank-1]) == 6);
IGRAPH_ASSERT(igraph_vector_int_size(&VECTOR(result)[rank-2]) == 5);
IGRAPH_ASSERT(igraph_vector_int_size(&VECTOR(result)[rank-3]) == 4);
print_check_destroy(&graph, &result);
#if 0
/* This is for benchmarking */
igraph_rng_seed(igraph_rng_default(), 42);
igraph_watts_strogatz_game(&graph, 3, 10, 2, 0.1, 0, 0);
igraph_minimum_cycle_basis(&graph, /* cutoff */ -1, /* complete */ true, * ordered */ true, &result);
print_check_destroy(&graph, &result);
#endif
igraph_vector_int_list_destroy(&result);
VERIFY_FINALLY_STACK();
return 0;
}