Add graph references
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/*
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igraph library.
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Copyright (C) 2025 The igraph development team <igraph@igraph.org>
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <https://www.gnu.org/licenses/>.
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*/
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#include <stdio.h>
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#include <igraph.h>
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#include "test_utilities.h"
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void null_graph(void) {
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igraph_t graph;
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igraph_vector_t result;
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igraph_vector_int_t vertex_order;
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igraph_vector_init(&result, 0);
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igraph_vector_int_init(&vertex_order, 0);
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igraph_empty(&graph, 0, IGRAPH_UNDIRECTED); // null graph
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/* output */
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printf("Test 1: null graph\n");
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igraph_rich_club_sequence(&graph, NULL, &result, &vertex_order, true, false, false);
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print_vector(&result);
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igraph_vector_int_destroy(&vertex_order);
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igraph_vector_destroy(&result);
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igraph_destroy(&graph);
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}
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void singleton_graph(void) {
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igraph_t graph;
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igraph_vector_t result;
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igraph_vector_int_t vertex_order;
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igraph_vector_init(&result, 1);
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igraph_vector_int_init(&vertex_order, 1); // vertex_order: [0]
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VECTOR(vertex_order)[0] = 0;
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igraph_empty(&graph, 1, IGRAPH_UNDIRECTED); // singleton
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/* output */
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printf("Test 2: singleton graph\n");
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igraph_rich_club_sequence(&graph, NULL, &result, &vertex_order, true, false, false);
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print_vector(&result);
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igraph_vector_int_destroy(&vertex_order);
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igraph_vector_destroy(&result);
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igraph_destroy(&graph);
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}
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void undirected_no_loop_graph(void) {
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igraph_t graph;
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igraph_vector_t result;
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igraph_vector_int_t vertex_order;
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const igraph_int_t vcount = 7;
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igraph_vector_init(&result, vcount);
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igraph_vector_int_init(&vertex_order, vcount);
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for (igraph_int_t i = 0; i < vcount; i++){
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VECTOR(vertex_order)[i] = i;
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}
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igraph_small(&graph, vcount, IGRAPH_UNDIRECTED,
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0,3, 1,3, 2,3, 4,3, 5,3, 5,6, 1,2, 2,5, -1);
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/* output */
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printf("Test 3a: undirected, no-loop graph (in-order vertex removal)\n");
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igraph_rich_club_sequence(&graph, NULL, &result, &vertex_order, true, false, false);
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print_vector(&result);
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printf("\n");
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igraph_vector_int_reverse(&vertex_order);
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printf("Test 3b: undirected, no-loop graph (reverse vertex removal)\n");
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igraph_rich_club_sequence(&graph, NULL, &result, &vertex_order, true, false, false);
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print_vector(&result);
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igraph_vector_int_destroy(&vertex_order);
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igraph_vector_destroy(&result);
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igraph_destroy(&graph);
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}
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void directed_no_loop_graph(void) {
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igraph_t graph;
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igraph_vector_t result;
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igraph_vector_int_t vertex_order;
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const igraph_int_t vcount = 7;
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igraph_vector_init(&result, vcount);
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igraph_vector_int_init(&vertex_order, vcount);
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for (igraph_int_t i = 0; i < vcount; i++){
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VECTOR(vertex_order)[i] = i;
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}
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igraph_small(&graph, vcount, IGRAPH_DIRECTED,
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0,2, 1,2, 2,3, 1,3, 3,5, 3,4, 5,6, 6,5, -1);
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/* output */
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printf("Test 4a: directed, no-loop graph (in-order vertex removal)\n");
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igraph_rich_club_sequence(&graph, NULL, &result, &vertex_order, true, false, true);
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print_vector(&result);
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printf("\n");
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igraph_vector_int_reverse(&vertex_order);
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printf("Test 4b: directed, no-loop graph (reverse vertex removal)\n");
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igraph_rich_club_sequence(&graph, NULL, &result, &vertex_order, true, false, true);
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print_vector(&result);
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igraph_vector_int_destroy(&vertex_order);
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igraph_vector_destroy(&result);
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igraph_destroy(&graph);
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}
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void undirected_loop_graph(void) {
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igraph_t graph;
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igraph_vector_t result;
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igraph_vector_int_t vertex_order;
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const igraph_int_t vcount = 7;
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igraph_vector_init(&result, vcount);
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igraph_vector_int_init(&vertex_order, vcount);
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for (igraph_int_t i = 0; i < vcount; i++){
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VECTOR(vertex_order)[i] = i;
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}
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igraph_small(&graph, vcount, IGRAPH_UNDIRECTED,
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0,3, 1,3, 2,3, 4,4, 5,3, 5,6, 1,2, 2,5, 6,4, -1);
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/* output */
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printf("Test 5a: undirected, loop graph (in-order vertex removal)\n");
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igraph_rich_club_sequence(&graph, NULL, &result, &vertex_order, true, true, false);
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print_vector(&result);
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printf("\n");
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igraph_vector_int_reverse(&vertex_order);
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printf("Test 5b: undirected, loop graph (reverse vertex removal)\n");
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igraph_rich_club_sequence(&graph, NULL, &result, &vertex_order, true, true, false);
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print_vector(&result);
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igraph_vector_int_destroy(&vertex_order);
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igraph_vector_destroy(&result);
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igraph_destroy(&graph);
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}
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void directed_loop_graph(void) {
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igraph_t graph;
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igraph_vector_t result;
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igraph_vector_int_t vertex_order;
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const igraph_int_t vcount = 7;
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igraph_vector_init(&result, vcount);
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igraph_vector_int_init(&vertex_order, vcount);
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for (igraph_int_t i = 0; i < vcount; i++){
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VECTOR(vertex_order)[i] = i;
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}
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igraph_small(&graph, vcount, IGRAPH_DIRECTED,
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0,2, 1,2, 2,3, 1,3, 3,5, 3,4, 5,6, 6,5, 4,4, -1);
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/* output */
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printf("Test 6a: directed, loop graph (in-order vertex removal)\n");
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igraph_rich_club_sequence(&graph, NULL, &result, &vertex_order, true, true, true);
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print_vector(&result);
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printf("\n");
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igraph_vector_int_reverse(&vertex_order);
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printf("Test 6b: directed, loop graph (reverse vertex removal)\n");
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igraph_rich_club_sequence(&graph, NULL, &result, &vertex_order, true, true, true);
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print_vector(&result);
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igraph_vector_int_destroy(&vertex_order);
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igraph_vector_destroy(&result);
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igraph_destroy(&graph);
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}
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void weighted_graph(void) {
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// same undirected, no-loop graph as Test 3
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igraph_t graph;
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igraph_vector_t result, weights;
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igraph_vector_int_t vertex_order;
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const igraph_int_t vcount = 7;
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igraph_small(&graph, vcount, IGRAPH_UNDIRECTED,
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0,3, 1,3, 2,3, 4,3, 5,3, 5,6, 1,2, 2,5, -1);
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igraph_vector_init(&result, vcount);
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igraph_vector_int_init(&vertex_order, vcount);
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for (igraph_int_t i = 0; i < vcount; i++){
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VECTOR(vertex_order)[i] = i;
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}
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igraph_vector_init(&weights, igraph_ecount(&graph));
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for (igraph_int_t i = 0; i < igraph_ecount(&graph); i++) {
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// all "edges" have weight 2, output should be double of Test 3a
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VECTOR(weights)[i] = 2;
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}
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/* output */
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printf("Test 7a: weighted graph\n");
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igraph_rich_club_sequence(&graph, &weights, &result,
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&vertex_order, true, false, false);
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print_vector(&result);
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printf("\n");
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// change weights to include some non-integer weights
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// for this specific graph, weights should now be the same as that of Test 3a
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VECTOR(weights)[0] = 1; // (0,3)
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VECTOR(weights)[1] = 0.5; // (1,3)
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VECTOR(weights)[2] = 0.5; // (2,3)
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VECTOR(weights)[3] = 1; // (4,3)
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VECTOR(weights)[4] = 1; // (5,3)
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VECTOR(weights)[5] = 1; // (5,6)
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VECTOR(weights)[6] = 1.5; // (1,2)
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VECTOR(weights)[7] = 1.5; // (2,5)
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printf("Test 7b: weighted graph (non-integer weights)\n");
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igraph_rich_club_sequence(&graph, &weights, &result,
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&vertex_order, true, false, false);
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print_vector(&result);
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igraph_vector_int_destroy(&vertex_order);
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igraph_vector_destroy(&result);
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igraph_vector_destroy(&weights);
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igraph_destroy(&graph);
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}
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void error_checks(void) {
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igraph_t graph;
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igraph_vector_t result, weights;
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igraph_vector_int_t vertex_order;
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const igraph_int_t vcount = 7;
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igraph_small(&graph, vcount, IGRAPH_UNDIRECTED,
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0,3, 1,3, 2,3, 4,3, 5,3, 5,6, 1,2, 2,5, -1); // 8 edges
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igraph_vector_init(&result, vcount);
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// wrong vertex order size (!= number of vertices)
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igraph_vector_int_init(&vertex_order, 1);
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CHECK_ERROR(igraph_rich_club_sequence(&graph, NULL, &result,
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&vertex_order, true, false, false),
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IGRAPH_EINVAL);
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igraph_vector_int_resize(&vertex_order, vcount);
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// wrong weights vector size (!= number of edges)
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igraph_vector_init(&weights, 1);
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CHECK_ERROR(igraph_rich_club_sequence(&graph, &weights, &result,
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&vertex_order, true, false, false),
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IGRAPH_EINVAL);
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igraph_vector_destroy(&weights);
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igraph_vector_int_destroy(&vertex_order);
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igraph_vector_destroy(&result);
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igraph_destroy(&graph);
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}
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int main(void) {
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null_graph();
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printf("\n");
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singleton_graph();
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printf("\n");
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undirected_no_loop_graph();
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printf("\n");
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directed_no_loop_graph();
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printf("\n");
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undirected_loop_graph();
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printf("\n");
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directed_loop_graph();
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printf("\n");
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weighted_graph();
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error_checks();
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VERIFY_FINALLY_STACK();
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return 0;
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}
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