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9.0 KiB

GSAP Effects for HyperFrames

Drop-in animation patterns. Each effect is self-contained (HTML + CSS + JS) and follows the HyperFrames seek-driven contract — deterministic, no randomness, timeline registered on window.__timelines.

Index

  • Typewriter — character-by-character text reveal with optional cursor / backspace / word rotation
  • Audio Visualizer — pre-extract audio data, drive Canvas/DOM rendering from the timeline

Typewriter

Reveal text character by character using GSAP's TextPlugin.

Required Plugin

<script src="https://cdn.jsdelivr.net/npm/gsap@3.14.2/dist/gsap.min.js"></script>
<script src="https://cdn.jsdelivr.net/npm/gsap@3.14.2/dist/TextPlugin.min.js"></script>
<script>
  gsap.registerPlugin(TextPlugin);
</script>

Basic Typewriter

const text = "Hello, world!";
const cps = 10; // chars per second: 3-5 dramatic, 8-12 conversational, 15-20 energetic
tl.to(
  "#typed-text",
  { text: { value: text }, duration: text.length / cps, ease: "none" },
  startTime,
);

With Blinking Cursor

Three rules:

  1. One cursor visible at a time — hide previous before showing next.
  2. Cursor must blink when idle — after typing, during pauses.
  3. No gap between text and cursor — elements must be flush in HTML.
<span id="typed-text"></span><span id="cursor" class="cursor-blink">|</span>
@keyframes blink {
  0%,
  100% {
    opacity: 1;
  }
  50% {
    opacity: 0;
  }
}
.cursor-blink {
  animation: blink 0.8s step-end infinite;
}
.cursor-solid {
  animation: none;
  opacity: 1;
}
.cursor-hide {
  animation: none;
  opacity: 0;
}

Pattern: blink → solid (typing starts) → type → solid → blink (typing done).

tl.call(() => cursor.classList.replace("cursor-blink", "cursor-solid"), [], startTime);
tl.to("#typed-text", { text: { value: text }, duration: dur, ease: "none" }, startTime);
tl.call(() => cursor.classList.replace("cursor-solid", "cursor-blink"), [], startTime + dur);

Backspacing

TextPlugin removes from front — wrong for backspace. Use manual substring removal:

function backspace(tl, selector, word, startTime, cps) {
  const el = document.querySelector(selector);
  const interval = 1 / cps;
  for (let i = word.length - 1; i >= 0; i--) {
    tl.call(
      () => {
        el.textContent = word.slice(0, i);
      },
      [],
      startTime + (word.length - i) * interval,
    );
  }
  return word.length * interval;
}

Spacing With Static Text

When a typewriter word sits next to static text, use margin-left on a wrapper span. Don't use flex gap (it spaces the cursor from the text) and don't put a trailing space in the static text (it collapses when the dynamic span is empty).

<div style="display:flex; align-items:baseline;">
  <span style="font-size:40px; color:#555;">Ship something</span>
  <span style="margin-left:14px;"><span id="word"></span><span id="cursor">|</span></span>
</div>

Word Rotation

Type → hold → backspace → next word. Cursor blinks during every idle moment (holds, after backspace).

let offset = 0;
words.forEach((word, i) => {
  const typeDur = word.length / 10;
  tl.call(() => cursor.classList.replace("cursor-blink", "cursor-solid"), [], offset);
  tl.to("#typed-text", { text: { value: word }, duration: typeDur, ease: "none" }, offset);
  tl.call(() => cursor.classList.replace("cursor-solid", "cursor-blink"), [], offset + typeDur);
  offset += typeDur + 1.5; // hold

  if (i < words.length - 1) {
    tl.call(() => cursor.classList.replace("cursor-blink", "cursor-solid"), [], offset);
    const clearDur = backspace(tl, "#typed-text", word, offset, 20);
    tl.call(() => cursor.classList.replace("cursor-solid", "cursor-blink"), [], offset + clearDur);
    offset += clearDur + 0.3;
  }
});

Appending Words

Build a sentence word-by-word into the same element:

let accumulated = "";
let offset = 0;
words.forEach((word) => {
  const target = accumulated + (accumulated ? " " : "") + word;
  const newChars = target.length - accumulated.length;
  tl.to("#typed-text", { text: { value: target }, duration: newChars / 10, ease: "none" }, offset);
  accumulated = target;
  offset += newChars / 10 + 0.3;
});

Multi-Line Cursor Handoff

Handing off between typewriter lines: hide previous → blink new → pause → solid when typing. Never go hidden → solid (skips the idle blink).

tl.call(
  () => {
    prevCursor.classList.replace("cursor-blink", "cursor-hide");
    nextCursor.classList.replace("cursor-hide", "cursor-blink");
  },
  [],
  handoffTime,
);

const typeStart = handoffTime + 0.5; // brief blink pause
tl.call(() => nextCursor.classList.replace("cursor-blink", "cursor-solid"), [], typeStart);
tl.to("#next-text", { text: { value: text }, duration: dur, ease: "none" }, typeStart);
tl.call(() => nextCursor.classList.replace("cursor-solid", "cursor-blink"), [], typeStart + dur);

Timing Guide

CPS Feel Good for
3-5 Slow, deliberate Dramatic reveals, suspense
8-12 Natural typing Dialogue, narration
15-20 Fast, energetic Tech demos, code
30+ Near-instant Filling long blocks

Audio Visualizer

Pre-extract audio data, drive Canvas / DOM rendering from a single tl.call(...) per frame. Do not use the Web Audio API at render time — there's no playback during seek.

Extract Audio Data

Use the bundled extractor (requires ffmpeg and Python numpy):

python skills/hyperframes-creative/scripts/extract-audio-data.py audio.mp3 -o audio-data.json
python skills/hyperframes-creative/scripts/extract-audio-data.py video.mp4 --fps 30 --bands 16 -o audio-data.json

Data Format

{
  "fps": 30,
  "totalFrames": 5415,
  "frames": [{ "time": 0.0, "rms": 0.42, "bands": [0.8, 0.6, 0.3] }]
}
  • rms (0-1) — overall loudness, normalized across the track.
  • bands[] (0-1) — frequency magnitudes. Index 0 = bass, higher index = treble. Each band normalized independently.

Loading the Data (Synchronously)

// Option A — inline (small files, under ~500 KB)
var AUDIO_DATA = {
  /* paste audio-data.json contents */
};

// Option B — sync XHR (large files; must be synchronous for deterministic timeline construction)
var xhr = new XMLHttpRequest();
xhr.open("GET", "audio-data.json", false);
xhr.send();
var AUDIO_DATA = JSON.parse(xhr.responseText);

Do NOT use async fetch(). HyperFrames reads window.__timelines synchronously after page load — building the timeline inside .then() means the timeline isn't ready when capture starts.

Driving the Timeline

Canvas 2D — most common (bars, waveforms, circles, gradients):

const canvas = document.getElementById("viz");
const ctx = canvas.getContext("2d");

for (let f = 0; f < AUDIO_DATA.totalFrames; f++) {
  tl.call(
    () => {
      const frame = AUDIO_DATA.frames[f];
      ctx.clearRect(0, 0, canvas.width, canvas.height);
      // draw using frame.rms and frame.bands
    },
    [],
    f / AUDIO_DATA.fps,
  );
}

WebGL / Three.js — HyperFrames patches THREE.Clock for deterministic time. Update uniforms from audio data each frame.

DOM elements — fine for fewer than ~20 elements, slower than Canvas for many.

Smoothing

let prev = null;
const smoothing = 0.25; // 0.1-0.2 snappy, 0.3-0.5 flowing
function smooth(f) {
  const raw = AUDIO_DATA.frames[f];
  if (!prev) {
    prev = { rms: raw.rms, bands: [...raw.bands] };
    return prev;
  }
  prev = {
    rms: prev.rms * smoothing + raw.rms * (1 - smoothing),
    bands: raw.bands.map((b, i) => prev.bands[i] * smoothing + b * (1 - smoothing)),
  };
  return prev;
}

Spatial Mapping

  • Horizontal: bass left, treble right (iterate bands left-to-right)
  • Vertical: bass bottom, treble top
  • Circular: bass at 12 o'clock, wrap clockwise; mirror for a full circle

Motion Principles

  • Bass drives big moves — scale, glow, position shifts.
  • Treble drives detail — shimmer, flicker, edge effects.
  • RMS drives globals — background brightness, overall energy.
  • Pick 2-3 properties to animate. More looks noisy.
  • Keep minimums above zero — quiet sections still need life.

Band Count

Bands Detail Good for
4 Low Background glow, pulsing
8 Medium Bar charts, basic spectrum
16 High Detailed EQ (default)
32 Very high Dense radial layouts

Layering

Layer multiple canvases with CSS z-index for depth — a background layer driven by bass/rms and a foreground layer driven by individual bands creates depth without per-element complexity.

<canvas id="bg-layer" style="position:absolute;top:0;left:0;z-index:1;"></canvas>
<canvas id="main-layer" style="position:absolute;top:0;left:0;z-index:2;"></canvas>