'use strict'; /** * Real-instrument WAV fixture tests for the YIN pitch detector. * * Drop a 16-bit PCM WAV recording (mono or stereo) named * _Hz.wav into tests/plugins/tuner/fixtures/audio/real/ * and it is automatically picked up and tested. * * Examples: * E2_82.41Hz.wav → expected 82.41 Hz (open low-E on guitar) * A#3_233.08Hz.wav → expected 233.08 Hz (A#3) * * Tolerance: ±20 cents (computed as 1200 * |log2(detected / expected)|). * This is tighter than the synthetic-fixture suite (≈34 cents at 2%) to * surface real-world detection regressions. * * See tests/plugins/tuner/fixtures/audio/real/README.md for recording guidelines. */ const { test } = require('node:test'); const assert = require('node:assert/strict'); const fs = require('fs'); const path = require('path'); const { _yinDetect } = require('../../../../plugins/tuner/workers/yin.js'); const { parseWav } = require('./helpers/wav-parser.js'); const FIXTURES_DIR = path.join(__dirname, '../fixtures/audio/real'); const WAV_NAME_RE = /^([A-G]#?[0-9])_([\d.]+)Hz[^.]*\.wav$/i; const MIN_FRAME = 4096; const TOLERANCE_CENTS = 20; const wavFiles = fs.readdirSync(FIXTURES_DIR).filter(f => WAV_NAME_RE.test(f)); if (wavFiles.length === 0) { test('Real-instrument WAV fixtures', { skip: 'No real-instrument WAV fixtures found in tests/plugins/tuner/fixtures/audio/real/ — record a note and name it e.g. E2_82.41Hz.wav' }, () => {}); } else { for (const filename of wavFiles) { const [, note, freqStr] = filename.match(WAV_NAME_RE); const expectedHz = parseFloat(freqStr); test(`Real WAV ${filename}: detects ${freqStr} Hz (${note})`, () => { const fileBuffer = fs.readFileSync(path.join(FIXTURES_DIR, filename)); const { samples, sampleRate } = parseWav(fileBuffer); assert.ok( samples.length >= MIN_FRAME, `WAV too short: need ≥${MIN_FRAME} samples, got ${samples.length}` ); // Extract MIN_FRAME samples from the middle to skip attack/release transients. const mid = Math.floor(samples.length / 2); const start = Math.max(0, mid - MIN_FRAME / 2); const frame = samples.slice(start, start + MIN_FRAME); const result = _yinDetect(frame, sampleRate); assert.ok(result.freq > 0, `No pitch detected for ${filename} (rms=${result.rms.toFixed(4)})`); const centsError = 1200 * Math.abs(Math.log2(result.freq / expectedHz)); assert.ok( centsError <= TOLERANCE_CENTS, `${filename}: expected ${expectedHz} Hz, got ${result.freq.toFixed(2)} Hz (${centsError.toFixed(1)} cents off — limit ${TOLERANCE_CENTS} cents)` ); }); } }