Files
feedBack/tests/js/highway_3d_camera_framing.test.js
3120ae3e71 fix(highway_3d): dolly back so the fret-number row can't clip off the bottom (#633)
The heat-coloured fret-number row is drawn as a band BELOW the board
(sY(lowest) - S_GAP*1.4), but camUpdate's self-correcting framing only
anchors the board CENTRE to the lower third of the screen and reserves no
headroom for that row. So a tight zoom on a centred active span (worst
mid-neck; fine at either end of the neck) pushes the numbers past the
bottom edge -- which is why testers saw it "only when centered" and "not
every song." Tilt can't fix it (it would only trade a bottom clip for a
top clip); the vertical-extent problem at tight zoom needs camera distance.

Add a fret-row fit guard: project the row band with the final camera and,
when it falls below FRET_ROW_FIT_NDC_MIN, raise a capped, hysteretic
_fretRowFitBoost applied to the curDist lerp target (the span-driven
tgtDist still owns zooming IN). The boost rises promptly (proportional to
the deficit), relaxes lazily past a deadband, and is capped at
FRET_ROW_FIT_BOOST_MAX (+60%) so the zoom can't pop or hunt. It cooperates
with the tilt loop (pull-back shrinks the scene, tilt keeps the centre
anchored) and yields entirely to the Camera Director free-cam. Surgical:
passages where the row is already visible never trigger it, so framing is
unchanged everywhere it already worked.

plugin.json 3.30.0 -> 3.30.2 (screen.js cache-buster; 3.30.1 is taken by the
FPS-counter PR). Tests: tests/js/highway_3d_camera_framing.test.js
(guard constants, the boosted curDist lerp, the projected-row hysteresis,
free-cam yield).

Fixes #632


Claude-Session: https://claude.ai/code/session_01QbexxfTt8q2tAn436MqGWF

Co-authored-by: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-29 15:31:24 +02:00

192 lines
8.4 KiB
JavaScript

// Pins the camera framing + lookahead behaviour in
// plugins/highway_3d/screen.js.
//
// Two independent pieces are covered:
// 1. Zoom-dependent framing — the cam.position height/depth multipliers are
// interpolated by zoom distance between a NEAR (tight, nut-position) and a
// FAR (wide, whole-neck) view via the CAM_FRAME_* constants, instead of
// being fixed literals.
// 2. Measure-based lookahead — the camera lookahead window spans
// CAM_LOOKAHEAD_MEASURES measures ahead (derived from the chart beats,
// ignoring intra-measure measure === -1 beats) instead of a fixed number
// of seconds.
//
// A refactor that re-hardcodes the framing multipliers, drops the measure
// cache, or reverts the lookahead window to seconds would silently regress the
// camera. Also guards that the temporary debug hook stayed removed.
//
// Source-level only — same strategy as the other tests/js/ files.
const { test } = require('node:test');
const assert = require('node:assert/strict');
const fs = require('node:fs');
const path = require('node:path');
const SCREEN_JS = path.join(__dirname, '..', '..', 'plugins', 'highway_3d', 'screen.js');
const src = fs.readFileSync(SCREEN_JS, 'utf8');
// ── Zoom-dependent framing ──────────────────────────────────────────────────
test('framing NEAR/FAR multiplier constants are defined', () => {
for (const name of [
'CAM_FRAME_DIST_NEAR', 'CAM_FRAME_DIST_FAR',
'CAM_FRAME_H_NEAR', 'CAM_FRAME_H_FAR',
'CAM_FRAME_D_NEAR', 'CAM_FRAME_D_FAR',
]) {
assert.match(src, new RegExp('const\\s+' + name + '\\s*='),
`${name} must be declared as a framing constant`);
}
});
test('cam.position uses interpolated framing multipliers, not literals', () => {
// The height/depth multipliers are computed (_hMul / _dMul), not inlined.
// The base position is assigned into _camX/_camY/_camZ so the opt-in
// free-camera bridge (#771) can layer orbit/zoom/height on top before the
// single cam.position.set; the multipliers must still feed _camY/_camZ.
assert.match(
src,
/_camX\s*=\s*curX\s*\+\s*shoulderOffset\s*,\s*_camY\s*=\s*h\s*\*\s*_hMul\s*,\s*_camZ\s*=\s*dist\s*\*\s*_dMul/,
'the base camera position must use the interpolated _hMul / _dMul multipliers',
);
assert.match(
src,
/cam\.position\.set\(\s*_camX\s*,\s*_camY\s*,\s*_camZ\s*\)/,
'cam.position.set must apply the computed _camX / _camY / _camZ',
);
});
test('framing multipliers are a clamped zoom-distance interpolation', () => {
// _zt is clamped to [0,1] and lerps each multiplier between NEAR and FAR.
assert.match(
src,
/Math\.max\(0,\s*Math\.min\(1,[\s\S]*?CAM_FRAME_DIST_NEAR[\s\S]*?CAM_FRAME_DIST_FAR/,
'_zt must clamp (dist - NEAR)/(FAR - NEAR) into [0,1]',
);
assert.match(
src,
/CAM_FRAME_H_NEAR\s*\+\s*\(\s*CAM_FRAME_H_FAR\s*-\s*CAM_FRAME_H_NEAR\s*\)\s*\*\s*_zt/,
'height multiplier must lerp NEAR->FAR by _zt',
);
assert.match(
src,
/CAM_FRAME_D_NEAR\s*\+\s*\(\s*CAM_FRAME_D_FAR\s*-\s*CAM_FRAME_D_NEAR\s*\)\s*\*\s*_zt/,
'depth multiplier must lerp NEAR->FAR by _zt',
);
});
// ── Measure-based lookahead window ──────────────────────────────────────────
test('lookahead window is expressed in measures with a seconds fallback', () => {
assert.match(src, /const\s+CAM_LOOKAHEAD_MEASURES\s*=\s*9\b/,
'CAM_LOOKAHEAD_MEASURES must default to 9');
assert.match(src, /const\s+CAM_LOOKAHEAD_SEC\s*=\s*3\.0\b/,
'CAM_LOOKAHEAD_SEC must stay as the no-beats fallback');
});
test('measure-start cache only keeps beats with measure >= 0', () => {
// Intra-measure beats carry measure === -1 and must be skipped.
assert.match(
src,
/Number\.isFinite\(\s*_b\.measure\s*\)\s*&&\s*_b\.measure\s*>=\s*0[\s\S]*?_measureStarts\s*=\s*_ms/,
'only measure-start beats (measure >= 0) feed _measureStarts',
);
});
test('lookaheadEndTime targets the measure CAM_LOOKAHEAD_MEASURES ahead', () => {
assert.match(
src,
/function\s+lookaheadEndTime\s*\(\s*now\s*\)/,
'lookaheadEndTime(now) helper must exist',
);
assert.match(
src,
/const\s+targetIdx\s*=\s*curIdx\s*\+\s*CAM_LOOKAHEAD_MEASURES/,
'target measure index = current measure + CAM_LOOKAHEAD_MEASURES',
);
// No beats → seconds fallback.
assert.match(
src,
/if\s*\(\s*!ms\s*\|\|\s*ms\.length\s*===\s*0\s*\)\s*return\s+now\s*\+\s*CAM_LOOKAHEAD_SEC/,
'lookaheadEndTime must fall back to seconds when there are no measures',
);
});
test('fret-bounds scan drives its window off lookaheadEndTime, not fixed seconds', () => {
assert.match(
src,
/function\s+lookaheadComputeFretBounds[\s\S]*?const\s+tEnd\s*=\s*lookaheadEndTime\(\s*now\s*\)/,
'lookaheadComputeFretBounds must derive tEnd from lookaheadEndTime(now)',
);
});
test('measure-start cache is invalidated on song change', () => {
// The song-change reset (reconnect path) resets _camSnapped; it must also
// drop the measure-start cache, otherwise lookaheadEndTime sizes the window
// off the previous song's measure grid and over-zooms the first-data snap.
assert.match(
src,
/_camSnapped\s*=\s*false\s*;[\s\S]*?_measureStarts\s*=\s*\[\]\s*;\s*_measureStartsRef\s*=\s*null\s*;/,
'song-change reset must clear _measureStarts / _measureStartsRef alongside _camSnapped',
);
});
// ── Fret-row fit guard ──────────────────────────────────────────────────────
// Keeps the heat-coloured fret-number row from clipping off the bottom edge
// when a tight, centred zoom (worst mid-neck) drops it below the lower-third
// framing. camUpdate dollies the camera back via a capped, hysteretic boost.
test('fret-row fit guard constants are defined', () => {
for (const name of [
'FRET_ROW_FIT_NDC_MIN', 'FRET_ROW_FIT_DEADBAND', 'FRET_ROW_FIT_BOOST_MAX',
]) {
assert.match(src, new RegExp('const\\s+' + name + '\\s*='),
`${name} must be declared as a fit-guard constant`);
}
});
test('the curDist lerp target applies the fit-guard dolly boost', () => {
// The span-driven tgtDist still owns zooming in; the boost only pulls back.
assert.match(
src,
/curDist\s*\+=\s*\(\s*tgtDist\s*\*\s*_fretRowFitBoost\s*-\s*curDist\s*\)\s*\*\s*lerp/,
'curDist must lerp toward tgtDist * _fretRowFitBoost',
);
});
test('the guard projects the fret-row band and adjusts the boost with hysteresis', () => {
// Row band Y mirrors the render position (sY(lowest) - S_GAP * 1.4).
assert.match(
src,
/Math\.min\(\s*sY\(0\)\s*,\s*sY\(nStr\s*-\s*1\)\s*\)\s*-\s*S_GAP\s*\*\s*1\.4/,
'the guard must probe the same row band the fret-number row is drawn at',
);
// Prompt pull-back when below the min, capped at BOOST_MAX.
assert.match(
src,
/_rowNdcY\s*<\s*FRET_ROW_FIT_NDC_MIN[\s\S]*?Math\.min\(\s*FRET_ROW_FIT_BOOST_MAX/,
'below the min NDC the boost rises, capped at FRET_ROW_FIT_BOOST_MAX',
);
// Lazy relax only once past the deadband, floored at 1.
assert.match(
src,
/_rowNdcY\s*>\s*FRET_ROW_FIT_NDC_MIN\s*\+\s*FRET_ROW_FIT_DEADBAND[\s\S]*?Math\.max\(\s*1\s*,\s*_fretRowFitBoost/,
'past the deadband the boost relaxes back toward 1',
);
});
test('the fit guard yields to the free-cam (Camera Director)', () => {
// When the free-cam owns the view the auto dolly must reset to 1, not fight it.
assert.match(
src,
/if\s*\(\s*_freeCam\s*&&\s*_freeCam\.enabled\s*\)\s*\{\s*if\s*\(\s*_fretRowFitBoost\s*!==\s*1\s*\)\s*_fretRowFitBoost\s*=\s*1/,
'with the free-cam enabled the guard must drop any auto dolly back to 1',
);
});
// ── Debug hook stayed removed ───────────────────────────────────────────────
test('temporary camera debug hook is not present', () => {
assert.doesNotMatch(src, /h3dCamDebug/,
'the window.h3dCamDebug tuning hook must not ship in the renderer');
});