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401 lines
12 KiB
401 lines
12 KiB
2 years ago
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<!-- Licensed under a BSD license. See license.html for license -->
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<!DOCTYPE html>
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<html>
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<head>
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<meta charset="utf-8">
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<meta name="viewport" content="width=device-width, initial-scale=1.0, user-scalable=yes">
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<title>Three.js - Primitives</title>
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<style>
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html, body {
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height: 100%;
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margin: 0;
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}
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#c {
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width: 100%;
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height: 100%;
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display: block;
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}
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</style>
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</head>
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<body>
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<canvas id="c"></canvas>
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</body>
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<!-- Import maps polyfill -->
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<!-- Remove this when import maps will be widely supported -->
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<script async src="https://unpkg.com/es-module-shims@1.3.6/dist/es-module-shims.js"></script>
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<script type="importmap">
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{
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"imports": {
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"three": "../../build/three.module.js",
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"three/addons/": "../../examples/jsm/"
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}
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}
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</script>
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<script type="module">
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import * as THREE from 'three';
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import {FontLoader} from 'three/addons/loaders/FontLoader.js';
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import {ParametricGeometry} from 'three/addons/geometries/ParametricGeometry.js';
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import {TextGeometry} from 'three/addons/geometries/TextGeometry.js';
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function main() {
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const canvas = document.querySelector('#c');
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const renderer = new THREE.WebGLRenderer({canvas});
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const fov = 40;
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const aspect = 2; // the canvas default
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const near = 0.1;
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const far = 1000;
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const camera = new THREE.PerspectiveCamera(fov, aspect, near, far);
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camera.position.z = 120;
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const scene = new THREE.Scene();
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scene.background = new THREE.Color(0xAAAAAA);
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{
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const color = 0xFFFFFF;
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const intensity = 1;
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const light = new THREE.DirectionalLight(color, intensity);
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light.position.set(-1, 2, 4);
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scene.add(light);
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}
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{
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const color = 0xFFFFFF;
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const intensity = 1;
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const light = new THREE.DirectionalLight(color, intensity);
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light.position.set(1, -2, -4);
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scene.add(light);
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}
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const objects = [];
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const spread = 15;
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function addObject(x, y, obj) {
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obj.position.x = x * spread;
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obj.position.y = y * spread;
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scene.add(obj);
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objects.push(obj);
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}
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function createMaterial() {
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const material = new THREE.MeshPhongMaterial({
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side: THREE.DoubleSide,
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});
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const hue = Math.random();
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const saturation = 1;
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const luminance = .5;
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material.color.setHSL(hue, saturation, luminance);
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return material;
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}
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function addSolidGeometry(x, y, geometry) {
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const mesh = new THREE.Mesh(geometry, createMaterial());
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addObject(x, y, mesh);
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}
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function addLineGeometry(x, y, geometry) {
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const material = new THREE.LineBasicMaterial({color: 0x000000});
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const mesh = new THREE.LineSegments(geometry, material);
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addObject(x, y, mesh);
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}
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{
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const width = 8;
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const height = 8;
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const depth = 8;
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addSolidGeometry(-2, 2, new THREE.BoxGeometry(width, height, depth));
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}
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{
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const radius = 7;
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const segments = 24;
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addSolidGeometry(-1, 2, new THREE.CircleGeometry(radius, segments));
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}
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{
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const radius = 6;
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const height = 8;
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const segments = 16;
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addSolidGeometry(0, 2, new THREE.ConeGeometry(radius, height, segments));
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}
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{
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const radiusTop = 4;
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const radiusBottom = 4;
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const height = 8;
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const radialSegments = 12;
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addSolidGeometry(1, 2, new THREE.CylinderGeometry(radiusTop, radiusBottom, height, radialSegments));
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}
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{
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const radius = 7;
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addSolidGeometry(2, 2, new THREE.DodecahedronGeometry(radius));
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}
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{
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const shape = new THREE.Shape();
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const x = -2.5;
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const y = -5;
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shape.moveTo(x + 2.5, y + 2.5);
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shape.bezierCurveTo(x + 2.5, y + 2.5, x + 2, y, x, y);
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shape.bezierCurveTo(x - 3, y, x - 3, y + 3.5, x - 3, y + 3.5);
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shape.bezierCurveTo(x - 3, y + 5.5, x - 1.5, y + 7.7, x + 2.5, y + 9.5);
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shape.bezierCurveTo(x + 6, y + 7.7, x + 8, y + 4.5, x + 8, y + 3.5);
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shape.bezierCurveTo(x + 8, y + 3.5, x + 8, y, x + 5, y);
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shape.bezierCurveTo(x + 3.5, y, x + 2.5, y + 2.5, x + 2.5, y + 2.5);
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const extrudeSettings = {
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steps: 2,
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depth: 2,
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bevelEnabled: true,
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bevelThickness: 1,
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bevelSize: 1,
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bevelSegments: 2,
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};
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addSolidGeometry(-2, 1, new THREE.ExtrudeGeometry(shape, extrudeSettings));
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}
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{
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const radius = 7;
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addSolidGeometry(-1, 1, new THREE.IcosahedronGeometry(radius));
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}
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{
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const points = [];
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for (let i = 0; i < 10; ++i) {
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points.push(new THREE.Vector2(Math.sin(i * 0.2) * 3 + 3, (i - 5) * .8));
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}
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addSolidGeometry(0, 1, new THREE.LatheGeometry(points));
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}
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{
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const radius = 7;
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addSolidGeometry(1, 1, new THREE.OctahedronGeometry(radius));
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}
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{
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/*
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from: https://github.com/mrdoob/three.js/blob/b8d8a8625465bd634aa68e5846354d69f34d2ff5/examples/js/ParametricGeometries.js
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The MIT License
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Copyright © 2010-2018 three.js authors
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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THE SOFTWARE.
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*/
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function klein(v, u, target) {
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u *= Math.PI;
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v *= 2 * Math.PI;
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u = u * 2;
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let x;
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let z;
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if (u < Math.PI) {
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x = 3 * Math.cos(u) * (1 + Math.sin(u)) + (2 * (1 - Math.cos(u) / 2)) * Math.cos(u) * Math.cos(v);
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z = -8 * Math.sin(u) - 2 * (1 - Math.cos(u) / 2) * Math.sin(u) * Math.cos(v);
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} else {
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x = 3 * Math.cos(u) * (1 + Math.sin(u)) + (2 * (1 - Math.cos(u) / 2)) * Math.cos(v + Math.PI);
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z = -8 * Math.sin(u);
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}
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const y = -2 * (1 - Math.cos(u) / 2) * Math.sin(v);
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target.set(x, y, z).multiplyScalar(0.75);
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}
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const slices = 25;
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const stacks = 25;
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addSolidGeometry(2, 1, new ParametricGeometry(klein, slices, stacks));
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}
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{
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const width = 9;
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const height = 9;
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const widthSegments = 2;
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const heightSegments = 2;
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addSolidGeometry(-2, 0, new THREE.PlaneGeometry(width, height, widthSegments, heightSegments));
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}
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{
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const verticesOfCube = [
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-1, -1, -1, 1, -1, -1, 1, 1, -1, -1, 1, -1,
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-1, -1, 1, 1, -1, 1, 1, 1, 1, -1, 1, 1,
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];
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const indicesOfFaces = [
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2, 1, 0, 0, 3, 2,
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0, 4, 7, 7, 3, 0,
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0, 1, 5, 5, 4, 0,
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1, 2, 6, 6, 5, 1,
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2, 3, 7, 7, 6, 2,
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4, 5, 6, 6, 7, 4,
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];
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const radius = 7;
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const detail = 2;
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addSolidGeometry(-1, 0, new THREE.PolyhedronGeometry(verticesOfCube, indicesOfFaces, radius, detail));
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}
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{
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const innerRadius = 2;
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const outerRadius = 7;
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const segments = 18;
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addSolidGeometry(0, 0, new THREE.RingGeometry(innerRadius, outerRadius, segments));
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}
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{
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const shape = new THREE.Shape();
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const x = -2.5;
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const y = -5;
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shape.moveTo(x + 2.5, y + 2.5);
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shape.bezierCurveTo(x + 2.5, y + 2.5, x + 2, y, x, y);
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shape.bezierCurveTo(x - 3, y, x - 3, y + 3.5, x - 3, y + 3.5);
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shape.bezierCurveTo(x - 3, y + 5.5, x - 1.5, y + 7.7, x + 2.5, y + 9.5);
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shape.bezierCurveTo(x + 6, y + 7.7, x + 8, y + 4.5, x + 8, y + 3.5);
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shape.bezierCurveTo(x + 8, y + 3.5, x + 8, y, x + 5, y);
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shape.bezierCurveTo(x + 3.5, y, x + 2.5, y + 2.5, x + 2.5, y + 2.5);
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addSolidGeometry(1, 0, new THREE.ShapeGeometry(shape));
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}
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{
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const radius = 7;
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const widthSegments = 12;
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const heightSegments = 8;
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addSolidGeometry(2, 0, new THREE.SphereGeometry(radius, widthSegments, heightSegments));
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}
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{
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const radius = 7;
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addSolidGeometry(-2, -1, new THREE.TetrahedronGeometry(radius));
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}
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{
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const loader = new FontLoader();
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// promisify font loading
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function loadFont(url) {
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return new Promise((resolve, reject) => {
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loader.load(url, resolve, undefined, reject);
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});
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}
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async function doit() {
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const font = await loadFont('/examples/fonts/helvetiker_regular.typeface.json'); /* threejs.org: url */
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const geometry = new TextGeometry('three.js', {
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font: font,
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size: 3.0,
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height: .2,
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curveSegments: 12,
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bevelEnabled: true,
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bevelThickness: 0.15,
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bevelSize: .3,
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bevelSegments: 5,
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});
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const mesh = new THREE.Mesh(geometry, createMaterial());
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geometry.computeBoundingBox();
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geometry.boundingBox.getCenter(mesh.position).multiplyScalar(-1);
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const parent = new THREE.Object3D();
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parent.add(mesh);
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addObject(-1, -1, parent);
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}
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doit();
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}
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{
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const radius = 5;
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const tubeRadius = 2;
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const radialSegments = 8;
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const tubularSegments = 24;
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addSolidGeometry(0, -1, new THREE.TorusGeometry(radius, tubeRadius, radialSegments, tubularSegments));
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}
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{
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const radius = 3.5;
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const tube = 1.5;
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const radialSegments = 8;
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const tubularSegments = 64;
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const p = 2;
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const q = 3;
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addSolidGeometry(1, -1, new THREE.TorusKnotGeometry(radius, tube, tubularSegments, radialSegments, p, q));
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}
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{
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class CustomSinCurve extends THREE.Curve {
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constructor(scale) {
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super();
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this.scale = scale;
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}
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getPoint(t) {
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const tx = t * 3 - 1.5;
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const ty = Math.sin(2 * Math.PI * t);
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const tz = 0;
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return new THREE.Vector3(tx, ty, tz).multiplyScalar(this.scale);
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}
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}
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const path = new CustomSinCurve(4);
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const tubularSegments = 20;
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const radius = 1;
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const radialSegments = 8;
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const closed = false;
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addSolidGeometry(2, -1, new THREE.TubeGeometry(path, tubularSegments, radius, radialSegments, closed));
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}
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{
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const width = 8;
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const height = 8;
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const depth = 8;
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const thresholdAngle = 15;
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addLineGeometry(-1, -2, new THREE.EdgesGeometry(
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new THREE.BoxGeometry(width, height, depth),
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thresholdAngle));
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}
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{
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const width = 8;
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const height = 8;
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const depth = 8;
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addLineGeometry(1, -2, new THREE.WireframeGeometry(new THREE.BoxGeometry(width, height, depth)));
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}
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function resizeRendererToDisplaySize(renderer) {
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const canvas = renderer.domElement;
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const width = canvas.clientWidth;
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const height = canvas.clientHeight;
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const needResize = canvas.width !== width || canvas.height !== height;
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if (needResize) {
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renderer.setSize(width, height, false);
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}
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return needResize;
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}
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function render(time) {
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time *= 0.001;
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if (resizeRendererToDisplaySize(renderer)) {
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const canvas = renderer.domElement;
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camera.aspect = canvas.clientWidth / canvas.clientHeight;
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camera.updateProjectionMatrix();
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}
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objects.forEach((obj, ndx) => {
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const speed = .1 + ndx * .05;
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const rot = time * speed;
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obj.rotation.x = rot;
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obj.rotation.y = rot;
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});
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renderer.render(scene, camera);
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requestAnimationFrame(render);
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}
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requestAnimationFrame(render);
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}
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main();
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</script>
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</html>
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