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Carve cut 14 of the h3d-carve epic. Moves the full V-section (note renderer):
drawNote, drawArpBrackets, drawNotedetectLabels, chordHarmonyLabels
and 14 private helpers (~1,433 lines)
from screen.js into plugins/highway_3d/src/note-renderer.js
as a factory-DI ES module: createNoteRenderer({137 DI params}).
Beyond-subst (3 sites):
_ndVerdictSawAlpha = true → setNdVerdictSawAlpha(true)
_ndVerdictMaxAlpha = v → setNdVerdictMaxAlpha(v)
_streakHits = 0/++ → setStreakHits(0/getStreakHits()+1)
Tests:
- New: tests/js/highway_3d_note_renderer.test.js (22 assertions)
wiring guard (137 params), export contract, chordHarmonyLabels
behavioral kills, beyond-subst sentinel, tombstone checks
- Updated 8 existing test files to search note-renderer.js
alongside screen.js for moved patterns (h3d-carve-14 retarget)
Bumps plugin.json 3.49.0 → 3.50.0
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_014uZ169yfoFYArXz962g7KW
94 lines
4.4 KiB
JavaScript
94 lines
4.4 KiB
JavaScript
// Behavioural tests for the per-note bend-curve (bnv, §6.2.1) render helpers:
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// `bnvNormalizedPoints` (static/highway.js, 2D glyph) and `bnvSampleAt`
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// (plugins/highway_3d/screen.js, 3D Y gesture). Both are pure, so we extract
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// the function source by brace-matching and eval it in isolation.
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const { test } = require('node:test');
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const assert = require('node:assert/strict');
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const fs = require('node:fs');
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const path = require('node:path');
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function extractFn(src, name) {
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const start = src.indexOf('function ' + name);
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assert.ok(start >= 0, `function ${name} must exist`);
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const open = src.indexOf('{', start);
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let depth = 0;
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for (let i = open; i < src.length; i++) {
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if (src[i] === '{') depth++;
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else if (src[i] === '}' && --depth === 0) return src.slice(start, i + 1);
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}
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throw new Error(`unbalanced braces extracting ${name}`);
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}
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function loadFn(file, name) {
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const src = fs.readFileSync(path.join(__dirname, '..', '..', file), 'utf8');
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return new Function('"use strict";' + extractFn(src, name) + `\nreturn ${name};`)();
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}
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// R3c: the PURE geometry/label primitives were carved out of highway.js into
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// static/js/highway-geometry.js. Same bodies, byte-for-byte — only the file moved.
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const bnvNormalizedPoints = loadFn('static/js/highway-geometry.js', 'bnvNormalizedPoints');
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// h3d-carve-14: bnvSampleAt moved to note-renderer.js (private helper inside createNoteRenderer)
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const bnvSampleAt = loadFn('plugins/highway_3d/src/note-renderer.js', 'bnvSampleAt');
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// ── bnvNormalizedPoints (2D) ─────────────────────────────────────────────────
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test('bnvNormalizedPoints normalizes t to 0..1 across the curve span (no sus)', () => {
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const pts = bnvNormalizedPoints([
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{ t: 0.5, v: 0 }, { t: 1.0, v: 2 }, { t: 1.5, v: 0 }]);
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assert.deepEqual(pts, [
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{ x: 0, v: 0 }, { x: 0.5, v: 2 }, { x: 1, v: 0 }]);
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});
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test('bnvNormalizedPoints maps t over the note sus span when given', () => {
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// A bend that completes at t=0.4 of a 0.5s note draws to x=0.8, not x=1 —
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// i.e. it stops short of the glyph's right edge (correct timing shape).
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assert.deepEqual(
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bnvNormalizedPoints([{ t: 0, v: 0 }, { t: 0.25, v: 1 }, { t: 0.4, v: 0 }], 0.5),
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[{ x: 0, v: 0 }, { x: 0.5, v: 1 }, { x: 0.8, v: 0 }]);
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// Points beyond sus clamp to 1; sus<=0 falls back to curve-span mapping.
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assert.deepEqual(bnvNormalizedPoints([{ t: 0, v: 0 }, { t: 1, v: 2 }], 0.5),
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[{ x: 0, v: 0 }, { x: 1, v: 2 }]);
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assert.deepEqual(bnvNormalizedPoints([{ t: 0, v: 0 }, { t: 1, v: 2 }], 0),
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[{ x: 0, v: 0 }, { x: 1, v: 2 }]);
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});
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test('bnvNormalizedPoints handles degenerate/empty input', () => {
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assert.deepEqual(bnvNormalizedPoints([]), []);
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assert.deepEqual(bnvNormalizedPoints(null), []);
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// All-same-t span collapses x to 0 (no divide-by-zero).
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assert.deepEqual(bnvNormalizedPoints([{ t: 1, v: 1 }, { t: 1, v: 2 }]),
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[{ x: 0, v: 1 }, { x: 0, v: 2 }]);
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});
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// ── bnvSampleAt (3D) ─────────────────────────────────────────────────────────
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test('bnvSampleAt linearly interpolates between points', () => {
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const bnv = [{ t: 0, v: 0 }, { t: 1, v: 2 }];
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assert.equal(bnvSampleAt(bnv, 0.5), 1); // midpoint
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assert.equal(bnvSampleAt(bnv, 0.25), 0.5);
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});
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test('bnvSampleAt clamps to the endpoints', () => {
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const bnv = [{ t: 0.2, v: 1 }, { t: 0.8, v: 3 }];
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assert.equal(bnvSampleAt(bnv, 0), 1); // before first
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assert.equal(bnvSampleAt(bnv, 5), 3); // after last
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});
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test('bnvSampleAt traces a round-trip curve up then back down', () => {
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const bnv = [{ t: 0, v: 0 }, { t: 0.5, v: 2 }, { t: 1, v: 0 }];
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assert.equal(bnvSampleAt(bnv, 0.25), 1); // rising
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assert.equal(bnvSampleAt(bnv, 0.5), 2); // peak
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assert.equal(bnvSampleAt(bnv, 0.75), 1); // falling
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});
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test('bnvSampleAt returns 0 for an empty/invalid curve', () => {
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assert.equal(bnvSampleAt([], 0.5), 0);
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assert.equal(bnvSampleAt(null, 0.5), 0);
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});
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test('bnvSampleAt tolerates a zero-width segment (duplicate t)', () => {
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const bnv = [{ t: 0, v: 0 }, { t: 0.5, v: 1 }, { t: 0.5, v: 2 }, { t: 1, v: 2 }];
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assert.equal(bnvSampleAt(bnv, 0.5), 1); // first matching segment wins
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});
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