Browser graphics via Canvas 2D API, WebGL, and creative coding libraries.
Scanned 9/8/2026
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# Canvas / WebGL Skill
Browser graphics via Canvas 2D API, WebGL, and creative coding libraries.
## Canvas 2D — React Setup
```tsx
import { useEffect, useRef } from "react";
function Canvas2D({ draw }: { draw: (ctx: CanvasRenderingContext2D, t: number) => void }) {
const canvasRef = useRef<HTMLCanvasElement>(null);
useEffect(() => {
const canvas = canvasRef.current!;
const ctx = canvas.getContext("2d")!;
let raf: number;
let start: number | null = null;
// Retina scaling
const dpr = window.devicePixelRatio || 1;
canvas.width = canvas.offsetWidth * dpr;
canvas.height = canvas.offsetHeight * dpr;
ctx.scale(dpr, dpr);
const loop = (ts: number) => {
if (!start) start = ts;
const elapsed = (ts - start) / 1000; // seconds
ctx.clearRect(0, 0, canvas.offsetWidth, canvas.offsetHeight);
draw(ctx, elapsed);
raf = requestAnimationFrame(loop);
};
raf = requestAnimationFrame(loop);
return () => cancelAnimationFrame(raf);
}, [draw]);
return <canvas ref={canvasRef} style={{ width: "100%", height: "100%" }} />;
}
```
## Canvas 2D API Reference
### Drawing
```ts
// Paths
ctx.beginPath();
ctx.moveTo(x, y);
ctx.lineTo(x, y);
ctx.arc(x, y, radius, startAngle, endAngle, counterclockwise?);
ctx.arcTo(x1, y1, x2, y2, radius);
ctx.bezierCurveTo(cp1x, cp1y, cp2x, cp2y, x, y);
ctx.quadraticCurveTo(cpx, cpy, x, y);
ctx.rect(x, y, w, h);
ctx.roundRect(x, y, w, h, radii); // Chrome 99+
ctx.closePath();
ctx.fill();
ctx.stroke();
ctx.clip();
// Shapes
ctx.fillRect(x, y, w, h);
ctx.strokeRect(x, y, w, h);
ctx.clearRect(x, y, w, h);
// Text
ctx.font = "bold 16px system-ui";
ctx.textAlign = "center"; // left | right | center | start | end
ctx.textBaseline = "middle"; // top | middle | alphabetic | bottom
ctx.fillText("text", x, y);
ctx.strokeText("text", x, y);
const metrics = ctx.measureText("text"); // .width, .actualBoundingBoxHeight
```
### Styles
```ts
ctx.fillStyle = "#6366f1";
ctx.fillStyle = "rgba(99, 102, 241, 0.5)";
ctx.strokeStyle = "#fff";
ctx.lineWidth = 2;
ctx.lineCap = "round"; // butt | round | square
ctx.lineJoin = "round"; // miter | round | bevel
ctx.globalAlpha = 0.8;
ctx.globalCompositeOperation = "screen"; // multiply | screen | overlay | lighten | darken | etc.
// Gradient
const grad = ctx.createLinearGradient(0, 0, 200, 0);
grad.addColorStop(0, "#6366f1");
grad.addColorStop(1, "#a855f7");
ctx.fillStyle = grad;
// Radial gradient
const rGrad = ctx.createRadialGradient(cx, cy, rInner, cx, cy, rOuter);
// Pattern
const img = new Image(); img.src = "/pattern.png";
ctx.fillStyle = ctx.createPattern(img, "repeat")!;
```
### Transforms
```ts
ctx.save(); // push state
ctx.translate(x, y);
ctx.rotate(angle); // radians
ctx.scale(sx, sy);
ctx.transform(a, b, c, d, e, f); // raw matrix
ctx.setTransform(a, b, c, d, e, f); // reset + set
ctx.restore(); // pop state
```
## Particle System Pattern
```ts
class Particle {
x: number; y: number; vx: number; vy: number;
life: number; maxLife: number; size: number; color: string;
constructor(w: number, h: number) {
this.x = Math.random() * w;
this.y = Math.random() * h;
this.vx = (Math.random() - 0.5) * 2;
this.vy = (Math.random() - 0.5) * 2;
this.maxLife = 60 + Math.random() * 120;
this.life = this.maxLife;
this.size = 2 + Math.random() * 4;
this.color = `hsl(${220 + Math.random() * 60}, 80%, 65%)`;
}
update() {
this.x += this.vx; this.y += this.vy; this.life--;
}
draw(ctx: CanvasRenderingContext2D) {
const alpha = this.life / this.maxLife;
ctx.save();
ctx.globalAlpha = alpha;
ctx.fillStyle = this.color;
ctx.beginPath();
ctx.arc(this.x, this.y, this.size * alpha, 0, Math.PI * 2);
ctx.fill();
ctx.restore();
}
isDead() { return this.life <= 0; }
}
// In animation loop:
particles = particles.filter(p => !p.isDead());
while (particles.length < 100) particles.push(new Particle(w, h));
particles.forEach(p => { p.update(); p.draw(ctx); });
```
## Pixel Manipulation
```ts
// Read/write every pixel
const imageData = ctx.getImageData(0, 0, canvas.width, canvas.height);
const data = imageData.data; // Uint8ClampedArray: [r,g,b,a, r,g,b,a, ...]
for (let i = 0; i < data.length; i += 4) {
const r = data[i], g = data[i+1], b = data[i+2]; // a = data[i+3]
const gray = 0.299 * r + 0.587 * g + 0.114 * b;
data[i] = data[i+1] = data[i+2] = gray; // grayscale
}
ctx.putImageData(imageData, 0, 0);
```
## OffscreenCanvas (Web Worker)
```ts
// main.ts
const worker = new Worker(new URL("./canvas.worker.ts", import.meta.url));
const offscreen = canvas.transferControlToOffscreen();
worker.postMessage({ canvas: offscreen }, [offscreen]);
// canvas.worker.ts
self.onmessage = (e) => {
const canvas: OffscreenCanvas = e.data.canvas;
const ctx = canvas.getContext("2d")!;
// Heavy drawing here — doesn't block main thread
};
```
## WebGL — Raw (when needed)
```ts
const gl = canvas.getContext("webgl2")!;
// Minimal setup
const vert = `#version 300 es
in vec2 a_position;
void main() {
gl_Position = vec4(a_position, 0.0, 1.0);
}`;
const frag = `#version 300 es
precision highp float;
uniform float u_time;
out vec4 outColor;
void main() {
outColor = vec4(sin(u_time) * 0.5 + 0.5, 0.3, 0.7, 1.0);
}`;
function compileShader(gl: WebGL2RenderingContext, type: number, src: string) {
const shader = gl.createShader(type)!;
gl.shaderSource(shader, src);
gl.compileShader(shader);
if (!gl.getShaderParameter(shader, gl.COMPILE_STATUS)) {
throw new Error(gl.getShaderInfoLog(shader)!);
}
return shader;
}
```
**For most WebGL work in React, use Three.js / R3F instead of raw WebGL.**
## p5.js — Creative Coding
```tsx
import { useEffect, useRef } from "react";
export function P5Sketch() {
const containerRef = useRef<HTMLDivElement>(null);
useEffect(() => {
let p5Instance: any;
import("p5").then(({ default: P5 }) => {
p5Instance = new P5((p: any) => {
p.setup = () => {
p.createCanvas(containerRef.current!.offsetWidth, 400).parent(containerRef.current!);
p.colorMode(p.HSB, 360, 100, 100);
};
p.draw = () => {
p.background(0, 0, 10, 10); // slight trail
const x = p.width / 2 + Math.cos(p.frameCount * 0.02) * 150;
const y = p.height / 2 + Math.sin(p.frameCount * 0.03) * 80;
p.noStroke();
p.fill((p.frameCount * 2) % 360, 80, 90);
p.ellipse(x, y, 20, 20);
};
});
});
return () => p5Instance?.remove();
}, []);
return <div ref={containerRef} />;
}
```
## Noise Functions
```ts
// Simple 2D noise without library (value noise)
function hash(n: number) {
return Math.sin(n) * 43758.5453 % 1;
}
function noise2d(x: number, y: number) {
const ix = Math.floor(x), iy = Math.floor(y);
const fx = x - ix, fy = y - iy;
const ux = fx * fx * (3 - 2 * fx); // smoothstep
const uy = fy * fy * (3 - 2 * fy);
return (
hash(ix + iy * 57) * (1-ux) * (1-uy) +
hash(ix+1 + iy*57) * ux * (1-uy) +
hash(ix + (iy+1)*57) * (1-ux) * uy +
hash(ix+1 + (iy+1)*57) * ux * uy
);
}
// Better: use "simplex-noise" or "noisejs" packages
```
## Performance Patterns
| Technique | When |
|-----------|------|
| `ctx.save()/restore()` batching | Minimize state changes |
| Object pooling | Particle systems — avoid GC pauses |
| `ImageBitmap` + `createImageBitmap()` | Off-thread image decode |
| `OffscreenCanvas` + Worker | Heavy per-frame computation |
| `path2D` caching | Reuse expensive path objects |
| Layer canvas technique | Static + dynamic layers as separate canvases |
```ts
// Path2D caching (reuse complex path):
const cachedPath = new Path2D("M 0 0 L 100 0 L 50 80 Z");
ctx.fill(cachedPath);
```
## Pitfalls
- Always cancel `requestAnimationFrame` on unmount — memory leak if loop continues
- Canvas must be explicitly sized — CSS size ≠ canvas resolution (causes blurriness)
- Retina: multiply by `devicePixelRatio`, then scale ctx, then set CSS size
- `ctx.clearRect` must cover full canvas including dpr-scaled dimensions
- `getImageData` is slow — avoid every frame; batch pixel operations
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