2806ef1386
5 Commits
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2806ef1386 |
Phase 10: variety, twelve scenes, and tooling to write the next one
Watching several finished tracks side by side turned up the problem neither Phase 8 (too few cuts) nor Phase 9 (no through-line) addressed: the same scene cast in two different videos looked like the same footage twice. Section bias is nearly identical between two tracks' drops, so both sampled their parameters around the same centre, and the library's own averageness did the rest. Three answers, none of them a new scene: Temperament — a per-track hand on every parameter dial: intensity, pace, detail, and an extremity that decides how far toward the ends of a range the track is willing to sample. Bias comes from the section and is shared between tracks; temperament comes from the track and is not. Overlays — sometimes a second full scene composited over the shot, from a different family, in a blend that preserves what is underneath and never above 0.6 opacity. Not always: a stack that always doubled up would read as permanently cluttered rather than as occasionally layered. A wider palette — hue now derives from SPECTRAL TILT, the log ratio of treble to body. The centroid is a number most masters sit in the middle of, and the plain body/(body+treble) fraction is worse: low frequencies carry most of the energy in all music, so it read 0.98-1.00 for everything and four different battery tracks came out within 0.02 of each other. The ratio is multiplicative, so its logarithm is what spreads — the same four measure -9.3, -5.0, -4.1, -3.8. Also both ways round the wheel (violet, magenta and pink were unreachable by construction), four new schemes, and seeded chroma profile and lightness curve. Closest battery pair went from 0.005 to 0.113. Twelve scenes take the library to 36, six per family: Aurora Veil, Vortex Drift, Tide Rings, Ink Bleed, Dust Chamber, Salt Flat, Cargo Belt, Gate Corridor, Circuit Bloom, Truchet Fold, Signal Decay, Storm Rift. Weighted toward the 'space' and 'shape' traits, which were thinnest and so the signatures most likely to run a track out of cast — the Phase 9 casting rule means the pool a track draws from is smaller than the library. Also fixes a real one in shots.js: heavy LRU weighting was not enough to make a section reach its whole roster, and a five-shot section still came out 0,2,0,2,0 about a fifth of the time. An unseen companion now wins outright; which one is still free, so only the coverage is guaranteed. Block Mosh declared the camera trait, assigned sigCamera(p) to a p it then never read, and passed the lint's evidence grep. The Phase 9 render gate measured its response to the camera at exactly zero. --- tooling --- Adding a scene was mostly boilerplate and round-trips, which is expensive in both senses. The irreducible cost is the shader body; everything around it is now mechanical: npm run new:scene -- "Name" --family=... --traits=... writes the module, registers it, and leaves a skeleton that already passes every gate, with name-derived constants so two skeletons are not twins. The lint grew the rules that previously needed a GPU to catch: the dead camera above, prev() with no base image, and large loops with no early break (with a `// lint: fixed-cost` opt-out for a genuinely fixed-cost sampling loop). checks.html?scene=Name runs the per-scene acceptance battery for one scene — ten lines and a verdict instead of rendering the whole library to find out whether one shader is alive. The same procedure is a repo skill under .claude/skills/build-visualizer/. --- checks changed, with the measurements --- P5 determinism compared two WebGL CONTEXTS, which is not what it is for. Measured: one context is bit-exact over 40 frames with feedback at 0.6; two contexts disagree by up to 2/255 whether feedback is on or off. It now asserts generation is byte-identical (hard) and rendering within 2/255, since feedback compounds single-level variance. P10's cross-track comparison measures distance RELATIVE to how much image there is. Most scenes are mostly dark, so two genuinely different renders — 25 bars against 53 — scored under 0.02 absolute purely because the black background agrees with itself. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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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>
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9d15c3cf49 |
Phase 7: grow the scene library to 16
Ten new scenes, with 'minimal' first: the family was empty, so intros and breakdowns fell through to flow/organic and every track opened at full density. Quiet sections now land on a restful family 48/48 times across 24 seeds, 28 of them minimal. New: Horizon Lines, Spectrum Sculpture, Slow Orb (minimal); Curl Flow (flow); Plasma Bloom, Metaballs (organic); Kaleido Tunnel, Moiré Grid (geometric); Ridge Terrain (structural); Scan Tear (glitch). Four real bugs, three of which the existing gates could not have caught: 1. SHADER PROGRAMS LINK ASYNCHRONOUSLY. three.js uses KHR_parallel_shader_compile, so draws against an unlinked program render wrong. The heaviest scene had its first TEN frames differ from every later render of the same frames. Preview hides this entirely; export renders each frame once, so those frames would ship broken. Added Engine.prime() — WebGLRenderer.compile() plus a discarded warm frame — and the exporter now primes before encoding. Rendering a throwaway frame and reading it back is NOT sufficient; measured, it left 3-5 frames wrong. 2. Moiré Grid declared a param on u_width, which the shader contract already uses for stereo width. GLSL redefinition, and the only symptom was a black frame. Lint now rejects any param uniform colliding with the contract. 3. Spectrum Sculpture strobed at 4 flashes/s. Two causes: rotation measured in turns meant bar-crossing frequency was bars x rate (82 bars put a slow-looking 0.12 turns/s at 10 Hz), and hard band-tier boundaries made every bar switch band simultaneously. Rotation is now in segment units so the rate IS the crossing frequency, bands interpolate, and the range is capped where the flash meter measures zero. 4. Particle Field was being chosen as a primary background despite being mostly empty by design. Scenes now declare role: 'accent'; those are never primary and are judged on variance rather than luminance. Three checks were themselves wrong and were rebuilt: mean-distance metrics unfairly fail sparse scenes for being tasteful rather than static, so "animates" and "no duplicates" now use max channel delta. PLAN.md §1 gains two refinements: programs must be primed before the first frame, and even same-machine the heaviest shaders vary by one LSB under differing GPU load — so the per-scene criterion is max delta <= 1 rather than an identical hash. A real bug scores in the tens there. Full suite 67/67 across all seven phases. Worst 4K frame 3.8ms, worst flash rate 0/s, worst determinism delta 1/255. Adds README.md. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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5f25437b89 |
Phase 4: arc driver ("C" brain)
Three timescales now stack: per-frame reactivity, per-section seeded LFO drift, and whole-song scene changes with lookahead. Layer instances are cached per section and reused across crossfades — rebuilding them per frame would recompile shaders every transition. Crossfades run forward from a boundary: the outgoing scene holds while the incoming one fades in over it. Three real bugs, each found by a check that had to be rewritten first: 1. A pop exactly at every transition. buildSlope is discontinuous by construction (~1 before a boundary, 0 after), and the outgoing layer is still on screen when it flips — collapsing its lookahead ramp in one frame. It now holds the slope it had entering the boundary. 2. FeatureTrack.at() returns a REUSED row object, and _boundarySlope() called at() again mid-render, rewriting the features the layer was about to read. Symptom: a frame correct on every repeat and wrong the first time — invisible to fresh-vs-fresh comparison, and wrong in every export, since export renders each frame exactly once. Now indexes the typed array directly, with the aliasing hazard documented on at(), and a new check covers the whole bug class. 3. Warm-up converged to 1%, leaving a visible 0.015 difference at heavy feedback settings. Now targets 0.1%. Two checks were themselves wrong and were rebuilt: a raw delta threshold and an outlier-vs-local-median test both flag beat flashes as pops, and a control window taken from a different scene reads an ordinary busy scene as a 9x spike. The working formulation A/Bs each boundary against the interior of the two scenes adjacent to it. PLAN.md §6 corrected: boundary seeks are NOT exact for free. Layer state is re-seeded there but the feedback buffer is global and carries across. Clearing it at boundaries would buy exactness for a visible flash at every transition; warm-up is the better trade and applies everywhere. Gate 9/9. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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e8fb647f11 |
Plan: flow-state ambient/EDM video generator
Design document for a new generator that produces full-length, non-story music videos from a track alone, with no sourced footage. Core decisions: - Deterministic engine: audio is analyzed up front into a frame-indexed feature table, so realtime preview and offline export render from the same code path and produce the same frames. - Whole-song analysis enables lookahead, so builds can anticipate drops. - Scenes declare their parameters in a schema, which drives uniform binding, generated UI, seeded per-track variation and arc automation. - Hybrid compositor: fragment-shader and three.js layers in one stack. - Preview is a first-class surface with section jumping, live param editing and segment test-renders. - Forked from party-stage by copy, then fully detached. Includes per-phase gates and the validation tooling they depend on. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |