/* This file is part of the Gudhi Library - https://gudhi.inria.fr/ - which is released under MIT. * See file LICENSE or go to https://gudhi.inria.fr/licensing/ for full license details. * Author(s): Mathieu Carrière * * Copyright (C) 2017 Inria * * Modification(s): * - YYYY/MM Author: Description of the modification */ #include #include #include void usage(int nbArgs, char *const progName) { std::cerr << "Error: Number of arguments (" << nbArgs << ") is not correct\n"; std::cerr << "Usage: " << progName << " filename.off function [-v] \n"; std::cerr << " i.e.: " << progName << " ../../data/points/COIL_database/lucky_cat.off " "../../data/points/COIL_database/lucky_cat_PCA1 -v \n"; exit(-1); // ----- >> } int main(int argc, char **argv) { if ((argc != 3) && (argc != 4)) usage(argc, argv[0]); using Point = std::vector; std::string off_file_name(argv[1]); std::string func_file_name = argv[2]; bool verb = 0; if (argc == 4) verb = 1; // ----------------------------------------- // Init of a functional GIC from an OFF file // ----------------------------------------- Gudhi::cover_complex::Cover_complex GIC; GIC.set_verbose(verb); bool check = GIC.read_point_cloud(off_file_name); if (!check) { std::cout << "Incorrect OFF file." << std::endl; } else { GIC.set_type("GIC"); GIC.set_color_from_file(func_file_name); GIC.set_function_from_file(func_file_name); GIC.set_graph_from_automatic_rips(Gudhi::Euclidean_distance()); GIC.set_automatic_resolution(); GIC.set_gain(); GIC.set_cover_from_function(); GIC.find_simplices(); GIC.plot_DOT(); Gudhi::Simplex_tree<> stree; GIC.create_complex(stree); // -------------------------------------------- // Display information about the functional GIC // -------------------------------------------- if (verb) { std::cout << "Functional GIC is of dimension " << stree.dimension() << " - " << stree.num_simplices() << " simplices - " << stree.num_vertices() << " vertices." << std::endl; std::cout << "Iterator on functional GIC simplices" << std::endl; for (auto f_simplex : stree.filtration_simplex_range()) { for (auto vertex : stree.simplex_vertex_range(f_simplex)) { std::cout << vertex << " "; } std::cout << std::endl; } } } return 0; }