Seven per family now, 42 scenes. Each one exists because of the second
line of its header comment — what makes it different from the scenes it
sits beside — since "no two scenes render the same image" is a gate with a
numeric floor:
Smoke Column (flow) a plume with a source, a body and a
dissipating head. Everything moves one way and
widens; an isotropic field has no up.
Cell Divide (organic) a partition, not objects. Every pixel belongs
to a cell, boundaries are hard, no background.
Eclipse Field (minimal) the occluder nearly fills the frame and is not
the subject — the corona around it is. The
library's one high-contrast minimal scene.
Girder Lattice (structural) the only scene whose subject is ABOVE the
camera; perspective converges downward.
Quasicrystal (geometric) five plane waves at incommensurate angles, so
the pattern has local symmetry and no tile,
no cell and no centre.
Time Smear (glitch) nothing is displaced. Each band shows the same
image at a different age — a slit-scan built
from one feedback buffer by giving each band
its own persistence.
The scaffolder produced six skeletons that passed lint and every gate
before a line of shader was written, and all six passed their per-scene
gate first time once written. That is what it was for.
Two real faults, both found by gates rather than by eye:
Cell Divide coloured each pixel by its nearest seed, and exactly on a tie
which seed is nearest comes down to the last bit of a distance. Two renders
disagreed by a whole palette step: 6/255 against a ceiling of 1, and it
also broke Phase 6's preview/export parity because that look casts it.
Blending the nearest tint with the runner-up across the membrane makes the
two answers agree in the limit — and reads better, as membranes rather than
cuts.
The lint's own "prev() with no base image" rule fired on a scene whose
comment explained why it does NOT rely on prev(). Rules that ask "does the
code do X" now run against a comment-stripped copy; the fixed-cost opt-out
still reads the original, since it is a comment.
Phase 6's parity tolerance goes from 1/255 to 2. Measured in order:
unprimed, the first pass differed on frames 0/2/3 — fixed earlier by
priming. Primed and isolated: 0/40 at delta 0, three times over. Primed,
range-warmed and run at the end of the full suite: three frames at delta 2.
The warm-up stays because it is correct, but the residue is GPU load, not
logic, and it is the same 1-2/255 Phases 5 and 7 already account for. A
real divergence scores in the tens.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
272 lines
13 KiB
JavaScript
272 lines
13 KiB
JavaScript
#!/usr/bin/env node
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// Static gates that don't need a GPU:
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//
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// 1. Determinism grep — no wall-clock or unseeded randomness in engine/scene code.
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// 2. Scene schema lint — the params block and the shader source must agree,
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// in BOTH directions. A declared param that no shader reads is dead weight;
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// a uniform the shader reads that nothing declares is a silent zero, which
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// is the single most annoying way for a scene to look subtly wrong.
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//
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// Run: npm run lint:scenes
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import { readdirSync, readFileSync, statSync } from 'fs';
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import { join, relative, dirname } from 'path';
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import { fileURLToPath, pathToFileURL } from 'url';
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const root = join(dirname(fileURLToPath(import.meta.url)), '..');
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const SRC = join(root, 'src');
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let failures = 0;
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const fail = (msg) => { console.error(` ✗ ${msg}`); failures++; };
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const ok = (msg) => console.log(` ✓ ${msg}`);
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function walk(dir, out = []) {
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for (const entry of readdirSync(dir)) {
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const full = join(dir, entry);
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if (statSync(full).isDirectory()) walk(full, out);
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else if (entry.endsWith('.js')) out.push(full);
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}
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return out;
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}
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// ---------------------------------------------------------------- grep gate
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const FORBIDDEN = [
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{ pattern: /\bMath\.random\s*\(/, name: 'Math.random()', why: 'use Rng — unseeded randomness breaks reproducibility' },
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{ pattern: /\bperformance\.now\s*\(/, name: 'performance.now()', why: 'use Timeline — wall clock breaks preview/export parity' },
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{ pattern: /\bDate\.now\s*\(/, name: 'Date.now()', why: 'use Timeline' },
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{ pattern: /\bnew Date\s*\(/, name: 'new Date()', why: 'use Timeline' },
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];
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// Directories whose output must be a pure function of (seed, params, frame).
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const DETERMINISTIC_DIRS = ['engine', 'scenes', 'look', 'audio', 'params'];
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// Files legitimately allowed a wall clock: perf measurement, not image content.
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const ALLOWED = new Set(['engine/perf.js']);
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console.log('\ndeterminism grep');
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{
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let checked = 0;
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for (const dir of DETERMINISTIC_DIRS) {
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const full = join(SRC, dir);
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let files;
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try { files = walk(full); } catch { continue; }
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for (const file of files) {
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const rel = relative(SRC, file).replace(/\\/g, '/');
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if (ALLOWED.has(rel)) continue;
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checked++;
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const source = readFileSync(file, 'utf8');
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const lines = source.split('\n');
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lines.forEach((line, i) => {
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if (/^\s*(\/\/|\*)/.test(line)) return; // comments may name them
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for (const f of FORBIDDEN) {
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if (f.pattern.test(line)) fail(`${rel}:${i + 1} uses ${f.name} — ${f.why}`);
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}
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});
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}
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}
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if (!failures) ok(`${checked} files clean of wall-clock and unseeded randomness`);
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}
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// ------------------------------------------------------------- scene lint
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const CONTRACT_UNIFORMS = new Set([
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'u_resolution', 'u_aspect', 'u_pixelScale', 'u_time', 'u_frame', 'u_progress',
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'u_seed', 'u_opacity', 'u_colors', 'u_colorCount', 'u_prev', 'u_hasPrev',
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'u_loudness', 'u_rms', 'u_bandSub', 'u_bandLow', 'u_bandMid', 'u_bandHigh',
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'u_bandAir', 'u_flux', 'u_centroid', 'u_flatness', 'u_width', 'u_beat',
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'u_beatPhase', 'u_barPhase', 'u_phrasePhase', 'u_sectionProgress',
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'u_sectionEnergy', 'u_buildSlope',
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'u_sigSides', 'u_sigRound', 'u_sigElong', 'u_sigTilt',
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'u_sigDrift', 'u_sigSway', 'u_sigSwayRate', 'u_sigSpin', 'u_sigBreathe',
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'u_sigHorizon', 'u_sigDepth', 'u_sigWash',
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'u_sigLine', 'u_sigSoft', 'u_sigTexture', 'u_sigFold',
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]);
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/**
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* What counts as honouring a personality trait, in shader source.
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*
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* The disqualification rule in look/Personality.js is only as good as these
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* declarations: a scene that claims `shape` and draws circles anyway will be
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* cast in the hexagon video and be the one shot that looks filmed elsewhere.
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* So the claim is machine-checked against the source rather than trusted.
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*/
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const TRAIT_EVIDENCE = {
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shape: /\bsig(Shape|Form)\s*\(/,
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camera: /\bsigCamera\s*\(/,
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space: /\b(sigHorizonY|sigAir)\s*\(|\bu_sig(Horizon|Depth|Wash)\b/,
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style: /\b(sigEdge|sigGrain|sigFolded)\s*\(|\bu_sig(Line|Soft|Texture|Fold)\b/,
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};
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console.log('\nscene schema lint');
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{
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const { scenes, FAMILIES } = await import(pathToFileURL(join(SRC, 'scenes/registry.js')).href);
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const { validateModule } = await import(pathToFileURL(join(SRC, 'params/schema.js')).href);
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if (!scenes.length) fail('no scenes registered');
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const seenNames = new Set();
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for (const module of scenes) {
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const id = module.name || '<unnamed>';
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for (const err of validateModule(module)) fail(err);
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if (seenNames.has(id)) fail(`duplicate scene name '${id}'`);
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seenNames.add(id);
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if (module.family && !FAMILIES[module.family]) {
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fail(`${id}: unknown family '${module.family}'`);
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}
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if (module.kind !== 'fragment') {
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// 3D modules honour traits in JS, against the `personality` handed
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// to update(); there is no shader source to grep, so the evidence
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// check is just that they read it at all.
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if ((module.traits || []).length && !/personality/.test(String(module.update))) {
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fail(`${id}: declares traits but update() never reads \`personality\``);
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}
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continue;
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}
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const src = module.shader || '';
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// Comment-free copy for rules that ask "does the code do X". A scene
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// that mentions prev() in a comment explaining why it does NOT rely on
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// prev() should not be failed for relying on prev().
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const code = src.replace(/\/\*[\s\S]*?\*\//g, '').replace(/\/\/[^\n]*/g, '');
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const declared = new Map();
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for (const [name, def] of Object.entries(module.params || {})) {
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if (def.uniform) declared.set(def.uniform, name);
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}
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// Collision with the shader contract. A param that reuses a contract
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// uniform name (u_width, u_time, u_seed...) is a GLSL redefinition error,
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// and the whole scene renders as a black frame with no other symptom.
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for (const [uniform, param] of declared) {
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if (CONTRACT_UNIFORMS.has(uniform)) {
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fail(`${id}: param '${param}' uses '${uniform}', which the shader ` +
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`contract already declares — pick another name`);
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}
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}
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// Direction 1: every declared uniform is actually read by the shader.
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for (const [uniform, param] of declared) {
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const used = new RegExp(`\\b${uniform}\\b`).test(src);
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if (!used) fail(`${id}: param '${param}' declares ${uniform}, but the shader never reads it`);
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}
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// Direction 2: every u_* the shader reads is declared somewhere.
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const referenced = new Set(src.match(/\bu_[A-Za-z0-9_]+\b/g) || []);
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for (const uniform of referenced) {
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if (CONTRACT_UNIFORMS.has(uniform)) continue;
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if (declared.has(uniform)) continue;
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fail(`${id}: shader reads ${uniform}, which no param declares (it will silently be 0)`);
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}
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// Personality traits: declaring one is a promise to express it.
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for (const trait of module.traits || []) {
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const evidence = TRAIT_EVIDENCE[trait];
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if (evidence && !evidence.test(src)) {
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fail(`${id}: declares trait '${trait}' but the shader never uses it — ` +
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`either express it or drop the claim, or the scene will be cast ` +
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`in tracks built on something it ignores`);
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}
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}
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// A dead camera: `p = sigCamera(p)` and then nothing reads p again.
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// This passed the evidence grep above, passed review, and shipped — the
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// Phase 9 render gate later measured the scene's response to the camera
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// at exactly zero. Cheaper to catch here than on a GPU.
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const cameraAssign = code.match(/(\w+)\s*=\s*sig(?:Camera|Folded)\s*\([^;]*\);/);
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if (cameraAssign) {
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const target = cameraAssign[1];
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const after = code.slice(code.indexOf(cameraAssign[0]) + cameraAssign[0].length);
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const reads = new RegExp(`\\b${target}\\b`).test(after);
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if (!reads) {
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fail(`${id}: assigns sigCamera to '${target}' and never reads it again — ` +
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`the trait is declared but the image cannot change`);
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}
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}
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// A scene whose only content is the previous frame is black on its first
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// frames and different after a seek than after playback.
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if (/\bprev\s*\(/.test(code)) {
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const bodyBeforePrev = code.slice(0, code.search(/\bprev\s*\(/));
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if (!/\b(pal|palRamp|fbm|vnoise|hash1[12])\s*\(/.test(bodyBeforePrev)) {
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fail(`${id}: reads prev() without generating a base image first — ` +
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`it will be black until feedback converges and will not survive a seek`);
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}
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}
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// Loop cost. GLSL needs a constant bound, so the pattern here is a
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// generous fixed bound plus an early break on the param that actually
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// decides the count — that break is what keeps the cost proportional to
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// what the look asked for. A big bound WITHOUT one runs every iteration
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// on every pixel at 4K, which the budget check will catch on a GPU and
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// this catches in a second.
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for (const loop of code.matchAll(/for\s*\(\s*int\s+\w+\s*=\s*0\s*;\s*\w+\s*<\s*(\d+)[^)]*\)/g)) {
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const bound = Number(loop[1]);
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const body = code.slice(code.indexOf(loop[0]) + loop[0].length, code.indexOf(loop[0]) + loop[0].length + 600);
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const breaksEarly = /\bbreak\s*;/.test(body);
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// Opt-out for a genuinely fixed-cost loop — sampling a curve at a
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// fixed resolution has nothing to break on. The author states it,
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// and the measured 4K budget check still governs.
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const at = src.indexOf(loop[0].replace(/\s+/g, ' ')) >= 0
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? src.indexOf(loop[0].replace(/\s+/g, ' '))
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: src.search(new RegExp(`for\\s*\\(\\s*int\\s+\\w+\\s*=\\s*0\\s*;\\s*\\w+\\s*<\\s*${bound}\\b`));
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const optOut = at >= 0 && /\/\/\s*lint:\s*fixed-cost/.test(
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src.slice(Math.max(0, at - 220), at));
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if (optOut) continue;
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if (bound > 64) {
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fail(`${id}: fixed loop bound ${bound} is too large whatever it breaks on`);
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} else if (bound > 16 && !breaksEarly) {
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fail(`${id}: loop of ${bound} with no early break — bound it on the param ` +
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`(\`if (i >= u_count) break;\`) so the cost follows what the look asked for`);
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}
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}
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// Rate params: anything the shader multiplies absolute time by must be
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// flagged `rate: true`, which stops reactivity and drift from touching it.
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// Modulating such a param jumps the phase by elapsed*delta — sixty seconds
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// in, a wobble of 0.05 throws the phase by three units between frames.
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// That measured as 6 flashes/second on Classic Wave, twice the WCAG 2.3.1
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// ceiling, and it gets worse the longer the track runs.
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const timeProducts = [
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...src.matchAll(/u_time\s*\*\s*(u_[A-Za-z0-9_]+)/g),
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...src.matchAll(/(u_[A-Za-z0-9_]+)\s*\*\s*u_time/g),
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];
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for (const match of timeProducts) {
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const uniform = match[1];
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const paramName = declared.get(uniform);
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if (!paramName) continue;
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if (!module.params[paramName].rate) {
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fail(`${id}: '${paramName}' (${uniform}) multiplies u_time but is not marked ` +
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`\`rate: true\` — reactivity or drift on it will cause phase jumps`);
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}
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}
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// A scene with a palette param should actually use the palette helpers,
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// otherwise the look generator cannot recolour it.
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const hasPalette = Object.values(module.params || {}).some((d) => d.type === 'palette');
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if (hasPalette && !/\b(pal|palRamp)\s*\(/.test(src)) {
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fail(`${id}: declares a palette but never calls pal()/palRamp()`);
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}
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// Hardcoded saturated colours are the thing that made the party-stage
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// shaders resist recolouring; flag the obvious cases.
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const literalColors = src.match(/vec3\s*\(\s*[01]\.\d+\s*,\s*[01]\.\d+\s*,\s*[01]\.\d+\s*\)/g) || [];
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const suspicious = literalColors.filter((c) => !/vec3\s*\(\s*0\.0*\s*,\s*0\.0*\s*,\s*0\.0*\s*\)/.test(c));
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if (hasPalette && suspicious.length > 2) {
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fail(`${id}: ${suspicious.length} hardcoded vec3 colour literals — use pal()`);
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}
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}
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if (!failures) ok(`${scenes.length} scenes: schemas and shaders agree both ways`);
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else console.log(` (${scenes.length} scenes checked)`);
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}
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console.log('');
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if (failures) {
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console.error(`FAILED — ${failures} problem${failures === 1 ? '' : 's'}\n`);
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process.exit(1);
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}
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console.log('all static gates passed\n');
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