Go-based FM stereo transmitter with RDS, Windows-first and cross-platform
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  1. package offline
  2. import (
  3. "math"
  4. "os"
  5. "path/filepath"
  6. "strings"
  7. "testing"
  8. "time"
  9. cfgpkg "github.com/jan/fm-rds-tx/internal/config"
  10. )
  11. func TestGenerateFrame(t *testing.T) {
  12. g := NewGenerator(cfgpkg.Default())
  13. frame := g.GenerateFrame(50 * time.Millisecond)
  14. if frame == nil || len(frame.Samples) == 0 { t.Fatal("expected samples") }
  15. }
  16. func TestGenerateFrameFMIQ(t *testing.T) {
  17. cfg := cfgpkg.Default(); cfg.FM.FMModulationEnabled = true
  18. frame := NewGenerator(cfg).GenerateFrame(10 * time.Millisecond)
  19. for i := 100; i < len(frame.Samples) && i < 200; i++ {
  20. s := frame.Samples[i]
  21. mag := math.Sqrt(float64(s.I)*float64(s.I) + float64(s.Q)*float64(s.Q))
  22. if math.Abs(mag-1.0) > 0.01 { t.Fatalf("sample %d: mag=%.4f", i, mag) }
  23. }
  24. }
  25. func TestGenerateFrameCompositeOnly(t *testing.T) {
  26. cfg := cfgpkg.Default(); cfg.FM.FMModulationEnabled = false
  27. frame := NewGenerator(cfg).GenerateFrame(10 * time.Millisecond)
  28. for i := 0; i < len(frame.Samples) && i < 100; i++ {
  29. if frame.Samples[i].Q != 0 { t.Fatalf("sample %d: Q=%.6f", i, frame.Samples[i].Q) }
  30. }
  31. }
  32. func TestStereoDisabled(t *testing.T) {
  33. cfgS := cfgpkg.Default(); cfgS.FM.FMModulationEnabled = false; cfgS.FM.StereoEnabled = true
  34. cfgM := cfgS; cfgM.FM.StereoEnabled = false
  35. sf := NewGenerator(cfgS).GenerateFrame(20 * time.Millisecond)
  36. mf := NewGenerator(cfgM).GenerateFrame(20 * time.Millisecond)
  37. var diffEnergy float64
  38. for i := range sf.Samples {
  39. d := float64(sf.Samples[i].I - mf.Samples[i].I); diffEnergy += d * d
  40. }
  41. if diffEnergy == 0 { t.Fatal("expected difference") }
  42. }
  43. func TestWriteFile(t *testing.T) {
  44. cfg := cfgpkg.Default()
  45. out := filepath.Join(t.TempDir(), "test.iqf32")
  46. if err := NewGenerator(cfg).WriteFile(out, 20*time.Millisecond); err != nil { t.Fatal(err) }
  47. info, _ := os.Stat(out)
  48. if info.Size() == 0 { t.Fatal("empty file") }
  49. }
  50. func TestSummaryTones(t *testing.T) {
  51. cfg := cfgpkg.Default(); cfg.Audio.InputPath = ""
  52. s := NewGenerator(cfg).Summary(10 * time.Millisecond)
  53. if !strings.Contains(s, "source=tones") { t.Fatalf("unexpected: %s", s) }
  54. }
  55. func TestSummaryToneFallback(t *testing.T) {
  56. cfg := cfgpkg.Default(); cfg.Audio.InputPath = "missing.wav"
  57. s := NewGenerator(cfg).Summary(10 * time.Millisecond)
  58. if !strings.Contains(s, "source=tone-fallback") { t.Fatalf("unexpected: %s", s) }
  59. }
  60. func TestSummaryPreemph(t *testing.T) {
  61. cfg := cfgpkg.Default(); cfg.FM.PreEmphasisTauUS = 50
  62. if !strings.Contains(NewGenerator(cfg).Summary(10*time.Millisecond), "preemph=50µs") { t.Fatal("missing preemph") }
  63. }
  64. func TestSummaryFMIQ(t *testing.T) {
  65. cfg := cfgpkg.Default(); cfg.FM.FMModulationEnabled = true
  66. if !strings.Contains(NewGenerator(cfg).Summary(10*time.Millisecond), "FM-IQ") { t.Fatal("missing FM-IQ") }
  67. }
  68. func TestLimiterPreventsClipping(t *testing.T) {
  69. cfg := cfgpkg.Default()
  70. cfg.FM.LimiterEnabled = true; cfg.FM.LimiterCeiling = 1.0
  71. cfg.FM.FMModulationEnabled = false
  72. cfg.Audio.ToneAmplitude = 0.9; cfg.Audio.Gain = 2.0; cfg.FM.OutputDrive = 1.0
  73. frame := NewGenerator(cfg).GenerateFrame(50 * time.Millisecond)
  74. // Audio clipped to ceiling, pilot+RDS added on top (standard broadcast).
  75. // Total = ceiling + pilotLevel*drive + rdsInjection*drive
  76. maxAllowed := cfg.FM.LimiterCeiling +
  77. cfg.FM.PilotLevel*cfg.FM.OutputDrive +
  78. cfg.FM.RDSInjection*cfg.FM.OutputDrive + 0.02
  79. for i, s := range frame.Samples {
  80. if math.Abs(float64(s.I)) > maxAllowed { t.Fatalf("sample %d: %.4f exceeds max %.4f", i, s.I, maxAllowed) }
  81. }
  82. }
  83. // --- Operator truth tests ---
  84. func TestRDSDisabledSuppressesRDSEnergy(t *testing.T) {
  85. cfgOn := cfgpkg.Default(); cfgOn.FM.FMModulationEnabled = false; cfgOn.RDS.Enabled = true
  86. cfgOff := cfgOn; cfgOff.RDS.Enabled = false
  87. fOn := NewGenerator(cfgOn).GenerateFrame(20 * time.Millisecond)
  88. fOff := NewGenerator(cfgOff).GenerateFrame(20 * time.Millisecond)
  89. var diff float64
  90. for i := range fOn.Samples {
  91. d := float64(fOn.Samples[i].I - fOff.Samples[i].I); diff += d * d
  92. }
  93. if diff == 0 { t.Fatal("rds.enabled=false should produce different output") }
  94. }
  95. func TestFMModDisabledMeansComposite(t *testing.T) {
  96. cfg := cfgpkg.Default(); cfg.FM.FMModulationEnabled = false
  97. frame := NewGenerator(cfg).GenerateFrame(10 * time.Millisecond)
  98. for i := 0; i < 100; i++ {
  99. if frame.Samples[i].Q != 0 { t.Fatal("Q should be 0 when FM mod is off") }
  100. }
  101. }
  102. func TestClipFilterClipAlwaysActive(t *testing.T) {
  103. // With clip-filter-clip architecture, peak control is always active
  104. // regardless of LimiterEnabled (legacy flag). Both configs should
  105. // produce the same peak level.
  106. base := cfgpkg.Default()
  107. base.FM.FMModulationEnabled = false
  108. base.Audio.ToneAmplitude = 0.9; base.Audio.Gain = 2.0; base.FM.OutputDrive = 1.0
  109. cfgA := base; cfgA.FM.LimiterEnabled = true; cfgA.FM.LimiterCeiling = 1.0
  110. cfgB := base; cfgB.FM.LimiterEnabled = false; cfgB.FM.LimiterCeiling = 1.0
  111. fA := NewGenerator(cfgA).GenerateFrame(50 * time.Millisecond)
  112. fB := NewGenerator(cfgB).GenerateFrame(50 * time.Millisecond)
  113. var maxA, maxB float64
  114. for _, s := range fA.Samples { if math.Abs(float64(s.I)) > maxA { maxA = math.Abs(float64(s.I)) } }
  115. for _, s := range fB.Samples { if math.Abs(float64(s.I)) > maxB { maxB = math.Abs(float64(s.I)) } }
  116. // Both should be within ceiling + pilot + RDS
  117. maxAllowed := cfgA.FM.LimiterCeiling +
  118. cfgA.FM.PilotLevel*cfgA.FM.OutputDrive +
  119. cfgA.FM.RDSInjection*cfgA.FM.OutputDrive + 0.02
  120. if maxA > maxAllowed { t.Fatalf("cfgA peak %.4f exceeds %.4f", maxA, maxAllowed) }
  121. if maxB > maxAllowed { t.Fatalf("cfgB peak %.4f exceeds %.4f", maxB, maxAllowed) }
  122. }