Music.h 5.0 KB

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  1. /*
  2. * Copyright (c) 2021, kleines Filmröllchen <filmroellchen@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #pragma once
  7. #include <AK/HashMap.h>
  8. #include <AK/Types.h>
  9. #include <AK/Variant.h>
  10. #include <AK/Vector.h>
  11. #include <LibAudio/Buffer.h>
  12. #include <LibDSP/Envelope.h>
  13. namespace LibDSP {
  14. // FIXME: Audio::Frame is 64-bit float, which is quite large for long clips.
  15. using Sample = Audio::Sample;
  16. Sample const SAMPLE_OFF = { 0.0, 0.0 };
  17. struct RollNote {
  18. constexpr u32 length() const { return (off_sample - on_sample) + 1; }
  19. u32 on_sample;
  20. u32 off_sample;
  21. u8 pitch;
  22. i8 velocity;
  23. Envelope to_envelope(u32 time, u32 attack_samples, u32 decay_samples, u32 release_samples)
  24. {
  25. i64 time_since_end = static_cast<i64>(time) - static_cast<i64>(off_sample);
  26. // We're before the end of this note.
  27. if (time_since_end < 0) {
  28. i64 time_since_start = static_cast<i64>(time) - static_cast<i64>(on_sample);
  29. if (time_since_start < 0)
  30. return {};
  31. if (time_since_start < attack_samples) {
  32. if (attack_samples == 0)
  33. return Envelope::from_attack(0);
  34. return Envelope::from_attack(static_cast<double>(time_since_start) / static_cast<double>(attack_samples));
  35. }
  36. if (time_since_start < attack_samples + decay_samples) {
  37. if (decay_samples == 0)
  38. return Envelope::from_decay(0);
  39. return Envelope::from_decay(static_cast<double>(time_since_start - attack_samples) / static_cast<double>(decay_samples));
  40. }
  41. // This is a note-dependent value!
  42. u32 sustain_samples = length() - attack_samples - decay_samples;
  43. return Envelope::from_sustain(static_cast<double>(time_since_start - attack_samples - decay_samples) / static_cast<double>(sustain_samples));
  44. }
  45. // Overshot the release time
  46. if (time_since_end > release_samples)
  47. return {};
  48. return Envelope::from_release(static_cast<double>(time_since_end) / static_cast<double>(release_samples));
  49. }
  50. constexpr bool is_playing(u32 time) { return on_sample <= time && time <= off_sample; }
  51. };
  52. enum class SignalType : u8 {
  53. Invalid,
  54. Sample,
  55. Note
  56. };
  57. using RollNotes = OrderedHashMap<u8, RollNote>;
  58. struct Signal : public Variant<Sample, RollNotes> {
  59. using Variant::Variant;
  60. ALWAYS_INLINE SignalType type() const
  61. {
  62. if (has<Sample>())
  63. return SignalType::Sample;
  64. if (has<RollNotes>())
  65. return SignalType::Note;
  66. return SignalType::Invalid;
  67. }
  68. };
  69. // Equal temperament, A = 440Hz
  70. // We calculate note frequencies relative to A4:
  71. // 440.0 * pow(pow(2.0, 1.0 / 12.0), N)
  72. // Where N is the note distance from A.
  73. constexpr double note_frequencies[] = {
  74. // Octave 1
  75. 32.703195662574764,
  76. 34.647828872108946,
  77. 36.708095989675876,
  78. 38.890872965260044,
  79. 41.203444614108669,
  80. 43.653528929125407,
  81. 46.249302838954222,
  82. 48.99942949771858,
  83. 51.913087197493056,
  84. 54.999999999999915,
  85. 58.270470189761156,
  86. 61.735412657015416,
  87. // Octave 2
  88. 65.406391325149571,
  89. 69.295657744217934,
  90. 73.416191979351794,
  91. 77.781745930520117,
  92. 82.406889228217381,
  93. 87.307057858250872,
  94. 92.4986056779085,
  95. 97.998858995437217,
  96. 103.82617439498618,
  97. 109.99999999999989,
  98. 116.54094037952237,
  99. 123.4708253140309,
  100. // Octave 3
  101. 130.8127826502992,
  102. 138.59131548843592,
  103. 146.83238395870364,
  104. 155.56349186104035,
  105. 164.81377845643485,
  106. 174.61411571650183,
  107. 184.99721135581709,
  108. 195.99771799087452,
  109. 207.65234878997245,
  110. 219.99999999999989,
  111. 233.08188075904488,
  112. 246.94165062806198,
  113. // Octave 4
  114. 261.62556530059851,
  115. 277.18263097687202,
  116. 293.66476791740746,
  117. 311.12698372208081,
  118. 329.62755691286986,
  119. 349.22823143300383,
  120. 369.99442271163434,
  121. 391.99543598174927,
  122. 415.30469757994513,
  123. 440,
  124. 466.16376151808993,
  125. 493.88330125612413,
  126. // Octave 5
  127. 523.25113060119736,
  128. 554.36526195374427,
  129. 587.32953583481526,
  130. 622.25396744416196,
  131. 659.25511382574007,
  132. 698.456462866008,
  133. 739.98884542326903,
  134. 783.99087196349899,
  135. 830.60939515989071,
  136. 880.00000000000034,
  137. 932.32752303618031,
  138. 987.76660251224882,
  139. // Octave 6
  140. 1046.5022612023952,
  141. 1108.7305239074892,
  142. 1174.659071669631,
  143. 1244.5079348883246,
  144. 1318.5102276514808,
  145. 1396.9129257320169,
  146. 1479.977690846539,
  147. 1567.9817439269987,
  148. 1661.2187903197821,
  149. 1760.000000000002,
  150. 1864.6550460723618,
  151. 1975.5332050244986,
  152. // Octave 7
  153. 2093.0045224047913,
  154. 2217.4610478149793,
  155. 2349.3181433392633,
  156. 2489.0158697766506,
  157. 2637.020455302963,
  158. 2793.8258514640347,
  159. 2959.9553816930793,
  160. 3135.9634878539991,
  161. 3322.437580639566,
  162. 3520.0000000000055,
  163. 3729.3100921447249,
  164. 3951.0664100489994,
  165. };
  166. constexpr size_t note_count = array_size(note_frequencies);
  167. constexpr double middle_c = note_frequencies[36];
  168. }