music-video-gen/flow-state
Dejvino ca5a68eb84 Phases 8 and 9: shots, and a production design per track
Both phases come out of the manual gate — watching whole tracks — and both
fix something no automated check was looking for.

Phase 8: shots. A section is a STAGE of the song and can run ninety
seconds; one scene held that long reads as a still image with a wobble on
it. Each section kind now gets a roster of three or four stage visuals
instead of one scene, and each section is cut into shots that rotate
between them on phrase lines, never holding past 22s. The roster stays per
kind, so a track's drops still cut between the same images and the video
keeps its identity; the anchor opens each section and the rotation returns
to it, and when a companion is due it is the least recently shown one.

The arc driver stopped working in sections and started working in cues, one
per shot, so a shot cut and a section change take the same code path and
differ only in transition length. The default transition is a slow
dissolve — two bars calm, one loud; a straight cut is reserved for
sections above the energy threshold, because on calm material a cut reads
as a glitch rather than as an edit.

Phase 9: production design. With cuts every fifteen seconds the next
problem was that the images being cut between shared nothing but the
palette. What a music video actually shares across shots is a location, a
cast, a camera operator and an art direction, so each track now generates a
personality in four traits (shape, camera, space, style) off the look seed.
The traits reach shaders as uniforms plus four helpers in the contract, and
each scene expresses them its own way: Classic Wave's rings take the
signature polygon, Metaballs merge as one, Floating Geometry no longer
picks between a box and a circle because the production already decided.

The part that makes it a design rather than a filter: scenes DECLARE which
traits they honour, a track is built on one or two, and a scene that does
not honour all of them is not cast in that track. The library shrinks per
track on purpose.

Two gates keep the declaration honest — lint greps each shader for evidence
of every trait it claims, and a render check measures that each declared
trait actually moves the image (41 scene/trait pairs, weakest response 64
of 255). A layer with no personality renders bit-identically to before,
which is what keeps every earlier sweep and regression valid.

Checks changed rather than added:
  - P4 scene-change and drift checks now measure per shot, not per section;
    the crossfade check reads its length off the cue.
  - P5 flash sweep runs per shot, so the visuals that only appear
    mid-section are measured too.
  - P6 preview/export parity primes first (as both real paths do) and
    compares at the one-LSB tolerance Phase 7 already uses. Measured over
    four consecutive shows: 3 frames at delta 1, then bit-exact — GPU
    variance on first render, not a divergence.
  - P2's contract-uniform list is derived from the contract instead of
    retyped, so the signature uniforms cannot fall out of sync.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-05 20:04:33 +02:00
..
src Phases 8 and 9: shots, and a production design per track 2026-08-05 20:04:33 +02:00
test Phase 1: offline audio pipeline 2026-08-05 11:10:01 +02:00
tools Phases 8 and 9: shots, and a production design per track 2026-08-05 20:04:33 +02:00
.gitignore Phase 0: determinism spine 2026-08-05 10:59:30 +02:00
checks.html Phase 0: determinism spine 2026-08-05 10:59:30 +02:00
index.html Phase 6 WIP refactor: migrate track analysis UI from overlay to sidebar header 2026-08-05 12:39:44 +02:00
package-lock.json Phase 6 WIP 2026-08-05 11:56:52 +02:00
package.json Phase 6 WIP working 2026-08-05 12:20:55 +02:00
PLAN.md Phases 8 and 9: shots, and a production design per track 2026-08-05 20:04:33 +02:00
README.md Phase 7: grow the scene library to 16 2026-08-05 18:40:56 +02:00
vite.config.js Phase 0: determinism spine 2026-08-05 10:59:30 +02:00

flow-state

Ambient/EDM music video generator. Drop in a track, get a full-length, non-story, music-reactive video. No sourced footage — every frame is generated, and the whole look is derived from the audio.

npm install
npm run dev          # http://localhost:5180

Drop an audio file onto the page (mp3, flac, wav, ogg). Analysis takes a second or two, then the video is ready to preview and export.

How it works

The track is decoded and analysed before the first frame renders, into a table with one row per video frame: band energies, onset flux, spectral centroid and flatness, a phase-locked beat grid, section boundaries, and lookahead fields.

Nothing reads a live AnalyserNode. Realtime preview maps audio.currentTime to a frame index; export counts frames. Both read the same rows, so what you preview is what you export — the exporter has no render path of its own.

Analysing the whole track up front also buys the thing a causal analyser cannot do: a build can anticipate its drop and arrive at the transition already at full tension, instead of reacting once the drop has landed.

Working with it

space play / pause
previous / next section boundary
L loop the current section
D debug HUD
, . step one frame

test render exports 20 seconds around the playhead at full export quality. Use it before committing to a full render.

reroll re-seeds the whole track; reroll section changes only the section under the playhead; lock protects a section from further rerolls. Every parameter the generator chose is exposed under the scene tab and can be edited live.

The click track button (look tab) mixes an audible click onto the detected beat grid. If the clicks don't sit on the beat, tempo detection is wrong and everything downstream inherits it — check this first when a track looks off.

Checks

npm test             # audio pipeline against synthetic ground truth
npm run lint:scenes  # determinism grep + scene schema/shader agreement

http://localhost:5180/checks.html runs the GPU gates for every phase. Add ?slow=1 for the full suite, ?phase=5 for one phase.

Adding a scene

A scene is a shader plus a params block. Everything else — uniform binding, UI controls, seeded per-track sampling, arc automation — is derived from the schema.

export const myScene = {
    name: 'My Scene',
    family: 'organic',          // flow organic minimal structural geometric glitch
    kind: 'fragment',
    params: {
        density: { type: 'float', range: [0, 1], default: 0.5, uniform: 'u_density', bias: 'density' },
        speed:   { type: 'float', range: [0.1, 2], default: 0.5, uniform: 'u_speed', rate: true },
        palette: { type: 'palette', count: 4 },
    },
    reactive: {
        density: { feature: 'bandLow', amount: 0.3 },
    },
    shader: `
vec4 scene(vec2 uv, vec2 p) {
    float t = u_time * u_speed + u_seed;
    return vec4(palRamp(fbm(p * 4.0 + t, 4)), 1.0);
}
`,
};

Register it in src/scenes/registry.js, then run npm run lint:scenes and the Phase 7 checks. Three rules the linter enforces, each of which has already caused a real bug here:

  • Anything multiplying u_time must be rate: true. Phase is elapsed × rate, so modulating a rate jumps the phase by elapsed × delta — a minute in, a small wobble throws the image several whole units between frames. It measured as strobing at twice the accessibility limit.
  • Don't reuse a contract uniform name (u_width, u_time, u_seed, …). It's a GLSL redefinition error, and the only symptom is a black frame.
  • Use pal() / palRamp(), not hardcoded colours, or the look generator can't recolour the scene.

Scenes that composite over a background rather than being one declare role: 'accent'.

Layout

src/
  audio/      decode, STFT analysis, tempo, segmentation, FeatureTrack, click track
  engine/     Timeline, Renderer, Layer, Compositor, passes, seeded rng, flash safety
  look/       palette (OKLCH), LookGenerator, ArcDriver
  params/     declarative schema, validation, serialisation
  scenes/     the library — shader/ and layers3d/
  export/     WebCodecs exporter
  ui/         preview surface
  checks/     phase gates, run from checks.html

PLAN.md has the full design and the reasoning behind each gate.

Forked from party-stage by copying what was useful, then fully detached — there are no imports across the directory boundary in either direction.