346 lines
13 KiB
JavaScript
346 lines
13 KiB
JavaScript
import * as THREE from 'https://esm.sh/three@0.165.0';
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import { OrbitControls } from 'https://esm.sh/three@0.165.0/examples/jsm/controls/OrbitControls.js';
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const canvas = document.getElementById('scene');
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const progressInput = document.getElementById('progress');
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const progressValue = document.getElementById('progress_value');
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const urlParams = new URLSearchParams(window.location.search);
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const renderer = new THREE.WebGLRenderer({ canvas, antialias: true });
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renderer.setPixelRatio(Math.min(window.devicePixelRatio || 1, 2));
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renderer.setClearColor(0x202124, 1);
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const scene = new THREE.Scene();
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const camera = new THREE.PerspectiveCamera(34, 1, 0.1, 30);
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if (urlParams.get('view') === 'profile') {
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camera.position.set(0, 0.82, 5.8);
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} else if (urlParams.get('view') === 'top') {
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camera.position.set(0, 5.8, 0.001);
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} else {
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camera.position.set(0, 3.25, 5.4);
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}
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const controls = new OrbitControls(camera, canvas);
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controls.target.set(0, urlParams.get('view') === 'profile' ? 0.13 : 0.18, 0);
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controls.enableDamping = true;
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controls.minDistance = 2.2;
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controls.maxDistance = 8.0;
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controls.update();
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const book = new THREE.Group();
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scene.add(book);
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const guide = new THREE.GridHelper(5.6, 16, 0x4c4c4c, 0x343434);
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guide.position.y = -0.12;
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scene.add(guide);
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const materials = {
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cover: new THREE.MeshBasicMaterial({ color: 0x2c1810, side: THREE.DoubleSide }),
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spine: new THREE.MeshBasicMaterial({ color: 0x9c1f1f, side: THREE.DoubleSide }),
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pagesLeft: new THREE.MeshBasicMaterial({ color: 0xd8c7a4, side: THREE.DoubleSide }),
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pagesRight: new THREE.MeshBasicMaterial({ color: 0xe7d6b4, side: THREE.DoubleSide }),
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topPage: new THREE.MeshBasicMaterial({ color: 0xf1dfba, side: THREE.DoubleSide }),
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edge: new THREE.MeshBasicMaterial({ color: 0xb99a68, side: THREE.DoubleSide }),
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hinge: new THREE.MeshBasicMaterial({ color: 0x2b0808 })
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};
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const BOOK_PROFILE = {
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tableY: 0,
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coverThickness: 0.03,
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raisedHingeY: 0.056,
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paperContactOffset: 0.0012
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};
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let readingProgress = readInitialProgress();
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progressInput.value = readingProgress.toFixed(3);
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progressValue.value = readingProgress.toFixed(2);
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rebuildBook();
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resize();
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animate();
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progressInput.addEventListener('input', () => {
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setReadingProgress(progressInput.value);
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});
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window.addEventListener('resize', resize);
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window.BookShapeLab = {
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get progress() {
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return readingProgress;
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},
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setReadingProgress(value) {
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setReadingProgress(value);
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return readingProgress;
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}
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};
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function readInitialProgress() {
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const parsed = Number.parseFloat(urlParams.get('progress') ?? '0.25');
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return Number.isFinite(parsed) ? THREE.MathUtils.clamp(parsed, 0, 1) : 0.25;
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}
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function setReadingProgress(value) {
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const next = THREE.MathUtils.clamp(Number.parseFloat(value), 0, 1);
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if (!Number.isFinite(next)) return;
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readingProgress = next;
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progressInput.value = readingProgress.toFixed(3);
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progressValue.value = readingProgress.toFixed(2);
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rebuildBook();
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}
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function rebuildBook() {
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clearGroup(book);
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const coverDepth = 2.34;
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const coverThickness = BOOK_PROFILE.coverThickness;
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const pageWidth = 1.62;
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const pageDepth = 2.24;
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const gutter = 0.12;
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const sheetTick = 0.0045;
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const fullBlock = 0.41;
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const leftThickness = THREE.MathUtils.lerp(sheetTick, fullBlock, readingProgress);
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const rightThickness = THREE.MathUtils.lerp(fullBlock, sheetTick, readingProgress);
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const foldX = clothFoldX(gutter);
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const spineWidth = fullBlock;
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addCoverAssembly(pageWidth, coverDepth, coverThickness, spineWidth);
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addSplinePageBlock(-1, pageWidth, pageDepth, leftThickness, foldX);
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addSplinePageBlock(1, pageWidth, pageDepth, rightThickness, foldX);
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addPageLayerLines(-1, pageWidth, pageDepth, leftThickness, foldX);
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addPageLayerLines(1, pageWidth, pageDepth, rightThickness, foldX);
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addClothSpine(pageDepth, spineWidth);
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}
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function clearGroup(group) {
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while (group.children.length) {
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const child = group.children.pop();
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child.geometry?.dispose();
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if (Array.isArray(child.material)) {
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child.material.forEach((material) => material.dispose?.());
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}
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}
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}
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function addCoverAssembly(pageWidth, depth, thickness, spineWidth) {
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const cover = new THREE.Mesh(createCoverAssemblyGeometry(pageWidth, depth, thickness, spineWidth), materials.cover);
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book.add(cover);
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}
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function createCoverAssemblyGeometry(pageWidth, depth, thickness, spineWidth) {
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const overhang = 0.055;
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const spineHalf = spineWidth * 0.5;
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const hingeInset = 0.07;
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const outerX = pageWidth + overhang;
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const hingeX = spineHalf + hingeInset;
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const outerTopY = BOOK_PROFILE.tableY + thickness;
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const connectionTopY = BOOK_PROFILE.raisedHingeY;
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const spineTopY = BOOK_PROFILE.tableY + thickness;
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const section = [
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{ x: -outerX, y: outerTopY },
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{ x: -hingeX, y: connectionTopY },
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{ x: -spineHalf, y: spineTopY },
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{ x: spineHalf, y: spineTopY },
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{ x: hingeX, y: connectionTopY },
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{ x: outerX, y: outerTopY }
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];
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const positions = [];
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const uvs = [];
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const indices = [];
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const frontTop = [];
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const backTop = [];
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const frontBottom = [];
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const backBottom = [];
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const push = (x, y, z, u, v) => {
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const index = positions.length / 3;
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positions.push(x, y, z);
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uvs.push(u, v);
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return index;
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};
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section.forEach((point, index) => {
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const u = index / (section.length - 1);
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frontTop[index] = push(point.x, point.y, depth * 0.5, u, 1);
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backTop[index] = push(point.x, point.y, -depth * 0.5, u, 0);
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frontBottom[index] = push(point.x, point.y - thickness, depth * 0.5, u, 1);
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backBottom[index] = push(point.x, point.y - thickness, -depth * 0.5, u, 0);
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});
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for (let i = 0; i < section.length - 1; i += 1) {
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indices.push(frontTop[i], backTop[i], frontTop[i + 1], frontTop[i + 1], backTop[i], backTop[i + 1]);
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indices.push(frontBottom[i], frontBottom[i + 1], backBottom[i], frontBottom[i + 1], backBottom[i + 1], backBottom[i]);
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indices.push(frontTop[i], frontTop[i + 1], frontBottom[i], frontTop[i + 1], frontBottom[i + 1], frontBottom[i]);
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indices.push(backTop[i], backBottom[i], backTop[i + 1], backTop[i + 1], backBottom[i], backBottom[i + 1]);
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}
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const last = section.length - 1;
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indices.push(frontTop[0], frontBottom[0], backTop[0], backTop[0], frontBottom[0], backBottom[0]);
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indices.push(frontTop[last], backTop[last], frontBottom[last], backTop[last], backBottom[last], frontBottom[last]);
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const geometry = new THREE.BufferGeometry();
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geometry.setIndex(indices);
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geometry.setAttribute('position', new THREE.Float32BufferAttribute(positions, 3));
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geometry.setAttribute('uv', new THREE.Float32BufferAttribute(uvs, 2));
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geometry.computeVertexNormals();
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return geometry;
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}
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function addSplinePageBlock(side, width, depth, thickness, foldX) {
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const block = new THREE.Mesh(createSplinePageBlockGeometry(side, width, depth, thickness, foldX), side < 0 ? materials.pagesLeft : materials.pagesRight);
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book.add(block);
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}
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function addPageLayerLines(side, width, depth, thickness, foldX) {
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const material = new THREE.LineBasicMaterial({ color: 0x8f7750, transparent: true, opacity: 0.55 });
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const z = depth * 0.5 + 0.006;
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const lineCount = Math.max(1, Math.round(thickness / 0.018));
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for (let layer = 1; layer < lineCount; layer += 1) {
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const t = layer / lineCount;
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const points = [];
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for (let i = 0; i <= 40; i += 1) {
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const u = 0.04 + 0.96 * (i / 40);
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const top = pageBlockTopY(thickness, u, 0.5);
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const bottom = pageBlockBottomY(thickness, u, 0.5);
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points.push(new THREE.Vector3(pageX(side, foldX, width, u, 0.5), bottom + (top - bottom) * t, z));
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}
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book.add(new THREE.Line(new THREE.BufferGeometry().setFromPoints(points), material));
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}
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}
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function clothFoldX(gutter) {
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const spineTravel = gutter * 0.52;
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return THREE.MathUtils.lerp(-spineTravel, spineTravel, readingProgress);
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}
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function addClothSpine(depth, spineWidth) {
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const material = new THREE.LineBasicMaterial({ color: 0xb51f1f });
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const radiusX = spineWidth * 0.42;
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const radiusY = 0.018;
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const baseY = BOOK_PROFILE.tableY + BOOK_PROFILE.coverThickness + 0.002;
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const profile = [];
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for (let i = 0; i <= 32; i += 1) {
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const u = i / 32;
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const theta = Math.PI * (1 - u);
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const x = Math.cos(theta) * radiusX;
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const y = baseY + Math.sin(theta) * radiusY;
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profile.push({ x, y });
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}
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[depth * 0.5 + 0.008, -depth * 0.5 - 0.008].forEach((z) => {
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const points = profile.map((point) => new THREE.Vector3(point.x, point.y, z));
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book.add(new THREE.Line(new THREE.BufferGeometry().setFromPoints(points), material));
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});
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}
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function pageBlockTopY(thickness, u, v) {
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const hingeWidth = 0.105;
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const hinge = THREE.MathUtils.clamp(u / hingeWidth, 0, 1);
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const t = easeOutCubic(hinge);
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const sewnY = 0.066;
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const stackY = pageBlockBottomY(thickness, u, v) + thickness;
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const flatCrown = 0.006 * Math.sin(Math.PI * v);
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const foreCurl = 0.006 * smoothstep(THREE.MathUtils.clamp((u - 0.88) / 0.12, 0, 1));
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return sewnY * (1 - t) + (stackY + flatCrown + foreCurl) * t;
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}
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function pageBlockBottomY(thickness, u, v) {
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const supportY = coverSupportTopY(u);
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return supportY + BOOK_PROFILE.paperContactOffset;
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}
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function coverSupportTopY(u) {
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const hingeSpan = 0.14;
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const t = THREE.MathUtils.clamp((u - hingeSpan) / (1 - hingeSpan), 0, 1);
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return THREE.MathUtils.lerp(BOOK_PROFILE.raisedHingeY, BOOK_PROFILE.coverThickness, t);
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}
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function smoothstep(value) {
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return value * value * (3 - 2 * value);
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}
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function easeOutCubic(value) {
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return 1 - Math.pow(1 - value, 3);
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}
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function pageWidthAtDepth(width, v) {
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return width;
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}
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function pageX(side, foldX, width, u, v = 0.5) {
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const foreX = side * pageWidthAtDepth(width, v);
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return foldX * (1 - u) + foreX * u;
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}
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function createSplinePageBlockGeometry(side, width, depth, thickness, foldX) {
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const columns = 36;
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const rows = 36;
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const positions = [];
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const uvs = [];
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const indices = [];
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const top = [];
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const bottom = [];
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const push = (x, y, z, u, v) => {
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const index = positions.length / 3;
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positions.push(x, y, z);
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uvs.push(u, v);
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return index;
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};
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for (let row = 0; row <= rows; row += 1) {
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const v = row / rows;
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top[row] = [];
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bottom[row] = [];
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for (let column = 0; column <= columns; column += 1) {
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const u = column / columns;
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const z = (v - 0.5) * depth;
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top[row][column] = push(pageX(side, foldX, width, u, v), pageBlockTopY(thickness, u, v), z, u, v);
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bottom[row][column] = push(pageX(side, foldX, width, u, v), pageBlockBottomY(thickness, u, v), z, u, v);
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}
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}
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for (let row = 0; row < rows; row += 1) {
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for (let column = 0; column < columns; column += 1) {
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indices.push(top[row][column], top[row + 1][column], top[row][column + 1]);
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indices.push(top[row][column + 1], top[row + 1][column], top[row + 1][column + 1]);
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indices.push(bottom[row][column], bottom[row][column + 1], bottom[row + 1][column]);
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indices.push(bottom[row][column + 1], bottom[row + 1][column + 1], bottom[row + 1][column]);
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}
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}
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for (let row = 0; row < rows; row += 1) {
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indices.push(top[row][0], bottom[row][0], top[row + 1][0], top[row + 1][0], bottom[row][0], bottom[row + 1][0]);
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indices.push(top[row][columns], top[row + 1][columns], bottom[row][columns], top[row + 1][columns], bottom[row + 1][columns], bottom[row][columns]);
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}
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for (let column = 0; column < columns; column += 1) {
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indices.push(top[0][column], top[0][column + 1], bottom[0][column], top[0][column + 1], bottom[0][column + 1], bottom[0][column]);
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indices.push(top[rows][column], bottom[rows][column], top[rows][column + 1], top[rows][column + 1], bottom[rows][column], bottom[rows][column + 1]);
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}
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const geometry = new THREE.BufferGeometry();
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geometry.setIndex(indices);
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geometry.setAttribute('position', new THREE.Float32BufferAttribute(positions, 3));
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geometry.setAttribute('uv', new THREE.Float32BufferAttribute(uvs, 2));
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geometry.computeVertexNormals();
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return geometry;
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}
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function resize() {
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const width = window.innerWidth;
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const height = window.innerHeight;
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renderer.setSize(width, height, false);
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camera.aspect = width / height;
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camera.updateProjectionMatrix();
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}
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function animate() {
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requestAnimationFrame(animate);
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if (urlParams.get('animate') === '1') {
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const t = performance.now() * 0.00035;
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setReadingProgress(0.5 + Math.sin(t) * 0.48);
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}
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controls.update();
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renderer.render(scene, camera);
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}
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