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343 lines
7.3 KiB
JavaScript
343 lines
7.3 KiB
JavaScript
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function pointInInterval(a, b, x) {
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return a <= x && x <= b;
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}
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function intervalIntersectsInterval(a, b, c, d) {
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if (c <= a) {
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return a <= d;
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}
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return pointInInterval(a, b, c);
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}
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function rectIntersectRect(x1, y1, x2, y2, x3, y3, x4, y4) {
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return intervalIntersectsInterval(x1, x2, x3, x4) && intervalIntersectsInterval(y1, y2, y3, y4);
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}
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function intersects(x1, y1, x2, y2, x3, y3, x4, y4) {
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const a_minx = Math.min(x1, x2);
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const a_maxx = Math.max(x1, x2);
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const a_miny = Math.min(y1, y2);
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const a_maxy = Math.max(y1, y2);
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const b_minx = Math.min(x3, x4);
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const b_maxx = Math.max(x3, x4);
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const b_miny = Math.min(y3, y4);
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const b_maxy = Math.max(y3, y4);
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if (!rectIntersectRect(a_minx, a_miny, a_maxx, a_maxy, b_minx, b_miny, b_maxx, b_maxy))
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return false;
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const a_dx = x2 - x1;
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const a_dy = y2 - y1;
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const b_dx = x4 - x3;
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const b_dy = y4 - y3;
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const det = -b_dx * a_dy + a_dx * b_dy;
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if (Math.abs(det) === 0 && -a_dy * (x3 - x1) + a_dx * (y3 - y1) === 0) {
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return y1 <= y3 <= y2 || y1 <= y4 <= y2;
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}
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const s = (-a_dy * (x1 - x3) + a_dx * (y1 - y3)) / det;
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const t = (+b_dx * (y1 - y3) - b_dy * (x1 - x3)) / det;
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return s >= 0 && s <= 1 && t >= 0 && t <= 1;
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}
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const $canvas = document.querySelector('#circuit-pattern');
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let g = $canvas.getContext('2d');
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let WIDTH = $canvas.offsetWidth;
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let HEIGHT = $canvas.offsetHeight;
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const TS = 20;
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let ROWS = HEIGHT / TS;
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let COLS = WIDTH / TS;
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function updateCanvasDimensions() {
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g = $canvas.getContext('2d');
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WIDTH = $canvas.offsetWidth;
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HEIGHT = $canvas.offsetHeight;
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ROWS = HEIGHT / TS;
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COLS = WIDTH / TS;
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$canvas.width = WIDTH * devicePixelRatio;
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$canvas.height = HEIGHT * devicePixelRatio;
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g.scale(devicePixelRatio, devicePixelRatio);
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}
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window.addEventListener('resize', () => updateCanvasDimensions());
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updateCanvasDimensions();
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const state = {
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wires: [], // :: [(Int, Int)]
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nextWire: null,
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nextWireIndex: 0,
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nextSegmentLen: 0,
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t: 0,
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};
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function randomFloat(min, max) {
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return Math.random() * (max - min) + min;
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}
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function randomInt(min, max) {
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return Math.floor(Math.random() * (max - min + 1) + min);
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}
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function randomChoice(list) {
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return list[randomInt(0, list.length - 1)];
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}
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const DIRS = {
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left: [-1, 1],
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center: [0, 1],
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right: [+1, 1],
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};
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const NEXT_DIRS = {
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left: ['center'],
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center: ['left', 'right'],
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right: ['center'],
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};
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function canPlaceSegment([[p1x, p1y], [p2x, p2y]]) {
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return state.wires.every(wire => {
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return everyWireSegment(wire, ([[sx, sy], [lx, ly]]) => {
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return !intersects(sx, sy, lx, ly, p1x, p1y, p2x, p2y);
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});
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})
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}
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function everyWireSegment(wire, segmentFn) {
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let [start, ...rest] = wire;
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return rest.every((pt) => {
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const r = segmentFn([start, pt]);
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start = pt;
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return r;
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});
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}
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function generateWire() {
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const pieceCount = Math.pow(randomFloat(1, 2.5), 2) | 0;
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const startPoint = [
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randomInt(0, COLS),
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Math.pow(randomFloat(0, ROWS / 12), 2) | 0,
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];
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const sizes = Array(pieceCount).fill(0).map(() => randomInt(2, 4) | 0);
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const dirs = [randomChoice(Object.keys(DIRS))];
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for (let i = 0; i < pieceCount - 1; i++) {
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const last = dirs[dirs.length - 1];
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dirs.push(randomChoice(NEXT_DIRS[last]));
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}
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const wire = [startPoint];
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for (let i = 0; i < pieceCount; i++) {
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const [lpx, lpy] = wire[wire.length - 1];
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const [dx, dy] = DIRS[dirs[i]];
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const s = sizes[i];
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const s_bonus = (dirs[i] === 'center' ? s * 2 : s) | 0;
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wire.push([lpx + dx * s_bonus, lpy + dy * s_bonus]);
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}
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const ok = everyWireSegment(wire, segment => {
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return canPlaceSegment(segment);
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});
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if (!ok)
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return null;
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return wire;
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}
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// // LinearintERPolation
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function lerp(a, b, t) {
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return t * (b - a) + a;
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}
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function lerpPoint([x1, y1], [x2, y2], t) {
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return [lerp(x1, x2, t), lerp(y1, y2, t)];
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}
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const CELLS_PER_SECOND = 15;
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let lastTime = new Date().getTime();
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function update() {
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const now = new Date().getTime();
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const delta = (now - lastTime) / 1000;
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lastTime = now;
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if (state.nextWire) {
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state.t += CELLS_PER_SECOND * delta;
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if (state.t >= 1.0) {
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const [[x1, y1], [x2, y2]] = state.nextWire.slice(state.nextWireIndex - 2, state.nextWireIndex);
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const dx = Math.abs(x2 - x1);
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const dy = Math.abs(y2 - y1);
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state.t = 0;
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state.nextSegmentLen = Math.sqrt(dx * dx + dy * dy);
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state.nextWireIndex++;
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}
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if (state.nextWireIndex > state.nextWire.length) {
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state.wires.push(state.nextWire);
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state.nextWire = null;
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}
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} else {
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const wire = generateWire();
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if (wire) {
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state.nextWire = wire;
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state.nextWireIndex = 2;
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const [[x1, y1], [x2, y2]] = state.nextWire.slice(state.nextWireIndex - 2, state.nextWireIndex);
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const dx = Math.abs(x2 - x1);
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const dy = Math.abs(y2 - y1);
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state.t = 0;
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state.nextSegmentLen = Math.sqrt(dx * dx + dy * dy);
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}
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}
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}
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function getColors() {
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if (document.body.classList.contains('dark-mode')) {
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return {
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BACKGROUND: '#282828',
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// CIRCUIT: '#202020',
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CIRCUIT: '#38302e',
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}
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} else {
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return {
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BACKGROUND: '#eaeaea',
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CIRCUIT: '#d4d4d4',
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};
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}
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}
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function render() {
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const { BACKGROUND, CIRCUIT } = getColors();
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g.clearRect(0, 0, WIDTH, HEIGHT);
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g.strokeStyle = CIRCUIT;
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g.lineWidth = 3;
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state.wires.forEach(wire => {
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const [[sx, sy], ...rest] = wire;
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function renderDot(x, y) {
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if (y === 0) {
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return;
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}
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g.beginPath();
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g.ellipse(x * TS, y * TS, TS / 5, TS / 5, 0, 0, Math.PI * 2);
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g.stroke();
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}
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renderDot(sx, sy);
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g.beginPath();
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g.moveTo(sx * TS, sy * TS);
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rest.forEach(([x, y]) => {
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g.lineTo(x * TS, y * TS);
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});
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g.stroke();
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const [lx, ly] = wire[wire.length - 1];
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renderDot(lx, ly);
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[wire[0], wire[wire.length - 1]].forEach(([x, y]) => {
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if (y === 0) {
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return;
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}
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g.fillStyle = BACKGROUND;
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g.beginPath();
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g.ellipse(x * TS, y * TS, TS / 5 - 1, TS / 5 - 1, 0, 0, Math.PI * 2);
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g.fill();
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});
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});
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if (state.nextWire) {
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const wirePart = state.nextWire.slice(0, state.nextWireIndex);
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const wire = [
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...wirePart.slice(0, wirePart.length - 1),
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lerpPoint(
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wirePart[wirePart.length - 2],
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wirePart[wirePart.length - 1],
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state.t
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)
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];
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const [[sx, sy], ...rest] = wire;
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function renderDot(x, y) {
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if (y === 0) {
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return;
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}
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g.beginPath();
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g.ellipse(x * TS, y * TS, TS / 5, TS / 5, 0, 0, Math.PI * 2);
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g.stroke();
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}
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renderDot(sx, sy);
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g.beginPath();
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g.moveTo(sx * TS, sy * TS);
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rest.forEach(([x, y]) => {
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g.lineTo(x * TS, y * TS);
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});
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g.stroke();
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const [lx, ly] = wire[wire.length - 1];
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renderDot(lx, ly);
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[wire[0], wire[wire.length - 1]].forEach(([x, y]) => {
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if (y === 0) {
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return;
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}
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g.fillStyle = BACKGROUND;
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g.beginPath();
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g.ellipse(x * TS, y * TS, TS / 5 - 1, TS / 5 - 1, 0, 0, Math.PI * 2);
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g.fill();
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});
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}
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requestAnimationFrame(render);
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}
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// g.translate(0.5, 0.5);
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window.addEventListener('DOMContentLoaded', () => {
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// $canvas.classList.remove('hide');
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render();
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let i = 20;
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while (i > 0) {
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const wire = generateWire();
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if (wire) {
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state.wires.push(wire);
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i--;
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}
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}
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setInterval(() => {
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update();
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}, 1000 / 30);
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}) |