// ============================================================================== // Copyright (C) 2019 - Philip Paquette, Steven Bocco // // This program is free software: you can redistribute it and/or modify it under // the terms of the GNU Affero General Public License as published by the Free // Software Foundation, either version 3 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 Affero General Public License for more // details. // // You should have received a copy of the GNU Affero General Public License along // with this program. If not, see . // ============================================================================== import React from "react"; import {Colors, Coordinates, offset} from "./common"; import PropTypes from "prop-types"; export class Convoy extends React.Component { render() { const loc = this.props.loc; const src_loc = this.props.srcLoc; const dest_loc = this.props.dstLoc; const loc_x = offset(Coordinates[loc].unit[0], 10); const loc_y = offset(Coordinates[loc].unit[1], 10); const src_loc_x = offset(Coordinates[src_loc].unit[0], 10); const src_loc_y = offset(Coordinates[src_loc].unit[1], 10); let dest_loc_x = offset(Coordinates[dest_loc].unit[0], 10); let dest_loc_y = offset(Coordinates[dest_loc].unit[1], 10); const src_delta_x = parseFloat(src_loc_x) - parseFloat(loc_x); const src_delta_y = parseFloat(src_loc_y) - parseFloat(loc_y); const src_vector_length = Math.sqrt(src_delta_x * src_delta_x + src_delta_y * src_delta_y); const src_loc_x_1 = '' + Math.round((parseFloat(loc_x) + (src_vector_length - 30.) / src_vector_length * src_delta_x) * 100.) / 100.; const src_loc_y_1 = '' + Math.round((parseFloat(loc_y) + (src_vector_length - 30.) / src_vector_length * src_delta_y) * 100.) / 100.; let dest_delta_x = parseFloat(src_loc_x) - parseFloat(dest_loc_x); let dest_delta_y = parseFloat(src_loc_y) - parseFloat(dest_loc_y); let dest_vector_length = Math.sqrt(dest_delta_x * dest_delta_x + dest_delta_y * dest_delta_y); const src_loc_x_2 = '' + Math.round((parseFloat(dest_loc_x) + (dest_vector_length - 30.) / dest_vector_length * dest_delta_x) * 100.) / 100.; const src_loc_y_2 = '' + Math.round((parseFloat(dest_loc_y) + (dest_vector_length - 30.) / dest_vector_length * dest_delta_y) * 100.) / 100.; dest_delta_x = parseFloat(dest_loc_x) - parseFloat(src_loc_x); dest_delta_y = parseFloat(dest_loc_y) - parseFloat(src_loc_y); dest_vector_length = Math.sqrt(dest_delta_x * dest_delta_x + dest_delta_y * dest_delta_y); dest_loc_x = '' + Math.round((parseFloat(src_loc_x) + (dest_vector_length - 30.) / dest_vector_length * dest_delta_x) * 100.) / 100.; dest_loc_y = '' + Math.round((parseFloat(src_loc_y) + (dest_vector_length - 30.) / dest_vector_length * dest_delta_y) * 100.) / 100.; const triangle_coord = []; const triangle_loc_x = offset(Coordinates[src_loc].unit[0], 10); const triangle_loc_y = offset(Coordinates[src_loc].unit[1], 10); for (let ofs of [[0, -38.3], [33.2, 19.1], [-33.2, 19.1]]) { triangle_coord.push(offset(triangle_loc_x, ofs[0]) + ',' + offset(triangle_loc_y, ofs[1])); } return ( ); } } Convoy.propTypes = { loc: PropTypes.string.isRequired, srcLoc: PropTypes.string.isRequired, dstLoc: PropTypes.string.isRequired, powerName: PropTypes.string.isRequired };