test(02-01): add failing tests for synth config, oscillator, and layer

- TestAllClassesHaveConfig, TestFrequenciesInRange, TestFrequenciesUnique
- TestHarmonicsNonEmpty, TestPanPositionsInRange
- TestOscillatorAdvance, TestOscillatorPhaseWrap, TestOscillatorDistinctFreqs
- TestEMAAmplitudeRise, TestEMAAmplitudeDecay, TestWhisperFloor, TestWhisperFloorNotSeenIsZero
This commit is contained in:
2026-03-26 11:57:43 +01:00
parent dc7aed2498
commit bb13527281
3 changed files with 197 additions and 0 deletions
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package synth_test
import (
"testing"
"github.com/netsynth/netsynth/classify"
"github.com/netsynth/netsynth/synth"
)
func TestAllClassesHaveConfig(t *testing.T) {
for _, class := range classify.AllClasses() {
if _, ok := synth.ClassFreqConfigs[class]; !ok {
t.Errorf("class %q has no entry in ClassFreqConfigs", class)
}
}
}
func TestFrequenciesInRange(t *testing.T) {
for class, cfg := range synth.ClassFreqConfigs {
if cfg.BaseHz < 60 || cfg.BaseHz > 800 {
t.Errorf("class %q BaseHz=%.1f is out of range [60, 800]", class, cfg.BaseHz)
}
}
}
func TestFrequenciesUnique(t *testing.T) {
seen := make(map[float64]classify.TrafficClass)
for class, cfg := range synth.ClassFreqConfigs {
if prev, exists := seen[cfg.BaseHz]; exists {
t.Errorf("classes %q and %q share the same BaseHz=%.1f", prev, class, cfg.BaseHz)
}
seen[cfg.BaseHz] = class
}
}
func TestHarmonicsNonEmpty(t *testing.T) {
for class, cfg := range synth.ClassFreqConfigs {
if len(cfg.Harmonics) < 2 {
t.Errorf("class %q has fewer than 2 harmonics (got %d)", class, len(cfg.Harmonics))
}
}
}
func TestPanPositionsInRange(t *testing.T) {
for class, cfg := range synth.ClassFreqConfigs {
if cfg.Pan < -1.0 || cfg.Pan > 1.0 {
t.Errorf("class %q Pan=%.2f is out of range [-1.0, 1.0]", class, cfg.Pan)
}
}
}
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package synth_test
import (
"testing"
"github.com/netsynth/netsynth/synth"
)
func TestEMAAmplitudeRise(t *testing.T) {
cfg2 := synth.FreqConfig{
BaseHz: 440.0,
Harmonics: []synth.HarmonicDef{{Ratio: 1, Amplitude: 1.0}},
Pan: 0.0,
}
layer := synth.NewLayer(cfg2, synth.SampleRate, 1.0)
// Force the layer to have been seen and set target to 1.0
layer.UpdateTarget(100, 100)
// After 1 second (SampleRate samples) with tau=1.0, currentAmp should be > 0.5
// EMA: after tau seconds, amplitude reaches ~63% of target
for i := 0; i < synth.SampleRate; i++ {
layer.AdvanceSample()
}
if layer.CurrentAmp() <= 0.5 {
t.Errorf("expected currentAmp > 0.5 after 1 second rise, got %.4f", layer.CurrentAmp())
}
}
func TestEMAAmplitudeDecay(t *testing.T) {
cfg := synth.FreqConfig{
BaseHz: 440.0,
Harmonics: []synth.HarmonicDef{{Ratio: 1, Amplitude: 1.0}},
Pan: 0.0,
}
layer := synth.NewLayer(cfg, synth.SampleRate, 1.0)
// Set up: layer has been seen (currentAmp starts at 1.0) and target is whisper floor
// We'll manually prime by updating target with 100/100 first then re-route to whisper
layer.UpdateTarget(100, 100) // mark as seen, target=1.0
// Force currentAmp to 1.0 by running a few cycles at target 1.0
for i := 0; i < synth.SampleRate*3; i++ {
layer.AdvanceSample()
}
// Now decay: set count=0 (whisper floor kicks in)
layer.UpdateTarget(0, 100)
// After 1 second, currentAmp should be < 0.5
for i := 0; i < synth.SampleRate; i++ {
layer.AdvanceSample()
}
if layer.CurrentAmp() >= 0.5 {
t.Errorf("expected currentAmp < 0.5 after 1 second decay, got %.4f", layer.CurrentAmp())
}
}
func TestWhisperFloor(t *testing.T) {
cfg := synth.FreqConfig{
BaseHz: 440.0,
Harmonics: []synth.HarmonicDef{{Ratio: 1, Amplitude: 1.0}},
Pan: 0.0,
}
layer := synth.NewLayer(cfg, synth.SampleRate, 1.0)
// Mark layer as seen by passing count=1, then set count=0
layer.UpdateTarget(1, 100)
layer.UpdateTarget(0, 100)
// Target should be whisper floor (not zero) because seen=true
if layer.TargetAmp() < synth.WhisperFloor {
t.Errorf("expected targetAmp >= WhisperFloor (%.2f) for seen layer at zero count, got %.4f",
synth.WhisperFloor, layer.TargetAmp())
}
}
func TestWhisperFloorNotSeenIsZero(t *testing.T) {
cfg := synth.FreqConfig{
BaseHz: 440.0,
Harmonics: []synth.HarmonicDef{{Ratio: 1, Amplitude: 1.0}},
Pan: 0.0,
}
layer := synth.NewLayer(cfg, synth.SampleRate, 1.0)
// Never seen — UpdateTarget with zero count
layer.UpdateTarget(0, 100)
if layer.TargetAmp() != 0.0 {
t.Errorf("expected targetAmp == 0.0 for unseen layer, got %.4f", layer.TargetAmp())
}
}
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package synth_test
import (
"testing"
"github.com/netsynth/netsynth/synth"
)
func TestOscillatorAdvance(t *testing.T) {
harmonics := []synth.HarmonicDef{{Ratio: 1, Amplitude: 1.0}, {Ratio: 2, Amplitude: 0.5}}
osc := synth.NewOscillator(440.0, synth.SampleRate)
hasPos := false
hasNeg := false
for i := 0; i < 100; i++ {
s := osc.Advance(harmonics)
if s > 0 {
hasPos = true
}
if s < 0 {
hasNeg = true
}
}
if !hasPos || !hasNeg {
t.Errorf("expected both positive and negative samples; hasPos=%v hasNeg=%v", hasPos, hasNeg)
}
}
func TestOscillatorPhaseWrap(t *testing.T) {
harmonics := []synth.HarmonicDef{{Ratio: 1, Amplitude: 1.0}}
osc := synth.NewOscillator(440.0, synth.SampleRate)
for i := 0; i < synth.SampleRate; i++ {
osc.Advance(harmonics)
}
p := osc.Phase()
if p < 0 || p >= 1.0 {
t.Errorf("expected phase in [0, 1), got %.6f", p)
}
}
func TestOscillatorDistinctFreqs(t *testing.T) {
harmonics := []synth.HarmonicDef{{Ratio: 1, Amplitude: 1.0}}
osc65 := synth.NewOscillator(65.0, synth.SampleRate)
osc440 := synth.NewOscillator(440.0, synth.SampleRate)
same := true
for i := 0; i < 100; i++ {
s65 := osc65.Advance(harmonics)
s440 := osc440.Advance(harmonics)
if s65 != s440 {
same = false
break
}
}
if same {
t.Error("expected oscillators at 65 Hz and 440 Hz to produce different sample sequences")
}
}