zero_tracker.c 13 KB

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  1. #include <furi.h>
  2. #include "speaker_hal.h"
  3. #include "zero_tracker.h"
  4. /**
  5. * @brief Note record
  6. *
  7. * AH AL
  8. * FEDCBA98 76543210
  9. * nnnnnnee eedddddd
  10. * -------- --------
  11. * nnnnnn = [0] do nothing, [1..60] note number, [61] note off, [62..63] not used
  12. * ee ee = [0..F] effect
  13. * 111222 = [0..63] or [0..7, 0..7] effect data
  14. */
  15. typedef uint16_t NoteRecord;
  16. #define NOTE_NONE 0
  17. #define NOTE_C2 1
  18. #define NOTE_Cs2 2
  19. #define NOTE_D2 3
  20. #define NOTE_Ds2 4
  21. #define NOTE_E2 5
  22. #define NOTE_F2 6
  23. #define NOTE_Fs2 7
  24. #define NOTE_G2 8
  25. #define NOTE_Gs2 9
  26. #define NOTE_A2 10
  27. #define NOTE_As2 11
  28. #define NOTE_B2 12
  29. #define NOTE_C3 13
  30. #define NOTE_Cs3 14
  31. #define NOTE_D3 15
  32. #define NOTE_Ds3 16
  33. #define NOTE_E3 17
  34. #define NOTE_F3 18
  35. #define NOTE_Fs3 19
  36. #define NOTE_G3 20
  37. #define NOTE_Gs3 21
  38. #define NOTE_A3 22
  39. #define NOTE_As3 23
  40. #define NOTE_B3 24
  41. #define NOTE_C4 25
  42. #define NOTE_Cs4 26
  43. #define NOTE_D4 27
  44. #define NOTE_Ds4 28
  45. #define NOTE_E4 29
  46. #define NOTE_F4 30
  47. #define NOTE_Fs4 31
  48. #define NOTE_G4 32
  49. #define NOTE_Gs4 33
  50. #define NOTE_A4 34
  51. #define NOTE_As4 35
  52. #define NOTE_B4 36
  53. #define NOTE_C5 37
  54. #define NOTE_Cs5 38
  55. #define NOTE_D5 39
  56. #define NOTE_Ds5 40
  57. #define NOTE_E5 41
  58. #define NOTE_F5 42
  59. #define NOTE_Fs5 43
  60. #define NOTE_G5 44
  61. #define NOTE_Gs5 45
  62. #define NOTE_A5 46
  63. #define NOTE_As5 47
  64. #define NOTE_B5 48
  65. #define NOTE_C6 49
  66. #define NOTE_Cs6 50
  67. #define NOTE_D6 51
  68. #define NOTE_Ds6 52
  69. #define NOTE_E6 53
  70. #define NOTE_F6 54
  71. #define NOTE_Fs6 55
  72. #define NOTE_G6 56
  73. #define NOTE_Gs6 57
  74. #define NOTE_A6 58
  75. #define NOTE_As6 59
  76. #define NOTE_B6 60
  77. #define NOTE_OFF 63
  78. typedef enum {
  79. EffectArpeggio = 0x00,
  80. EffectSlideUp = 0x01,
  81. EffectSlideDown = 0x02,
  82. EffectSlideToNote = 0x03,
  83. } Effect;
  84. #define EFFECT_DATA_NONE 0
  85. #define EFFECT_DATA_2(x, y) ((x) | ((y) << 3))
  86. #define FREQUENCY_UNSET -1.0f
  87. uint8_t record_get_note(NoteRecord note) {
  88. return note & 0x3F;
  89. }
  90. uint8_t record_get_effect(NoteRecord note) {
  91. return (note >> 6) & 0xF;
  92. }
  93. uint8_t record_get_effect_data(NoteRecord note) {
  94. return (note >> 10) & 0x3F;
  95. }
  96. #define RECORD_MAKE(note, effect, data) \
  97. ((NoteRecord)(((note)&0x3F) | (((effect)&0xF) << 6) | (((data)&0x3F) << 10)))
  98. #define NOTES_PER_OCT 12
  99. const float notes_oct[NOTES_PER_OCT] = {
  100. 130.813f,
  101. 138.591f,
  102. 146.832f,
  103. 155.563f,
  104. 164.814f,
  105. 174.614f,
  106. 184.997f,
  107. 195.998f,
  108. 207.652f,
  109. 220.00f,
  110. 233.082f,
  111. 246.942f,
  112. };
  113. float note_to_freq(uint8_t note) {
  114. if(note == NOTE_NONE) return 0.0f;
  115. note = note - NOTE_C2;
  116. uint8_t octave = note / NOTES_PER_OCT;
  117. uint8_t note_in_oct = note % NOTES_PER_OCT;
  118. return notes_oct[note_in_oct] * (1 << octave);
  119. }
  120. float frequency_offset(float frequency, uint8_t semitones) {
  121. return frequency * (1.0f + ((1.0f / 12.0f) * semitones));
  122. }
  123. #define PATTERN_SIZE 64
  124. typedef struct {
  125. NoteRecord notes[PATTERN_SIZE];
  126. } NoteRow;
  127. typedef struct {
  128. uint8_t row_count;
  129. NoteRow* rows;
  130. } NotePattern;
  131. NoteRow row = {
  132. .notes =
  133. {
  134. //
  135. RECORD_MAKE(NOTE_A4, 0, 0),
  136. RECORD_MAKE(NOTE_C3, 0, 0),
  137. RECORD_MAKE(NOTE_F2, 0, 0),
  138. RECORD_MAKE(NOTE_C3, 0, 0),
  139. //
  140. RECORD_MAKE(NOTE_E4, 0, 0),
  141. RECORD_MAKE(NOTE_C3, 0, 0),
  142. RECORD_MAKE(NOTE_E4, 0, 0),
  143. RECORD_MAKE(NOTE_OFF, 0, 0),
  144. //
  145. RECORD_MAKE(NOTE_A4, 0, 0),
  146. RECORD_MAKE(NOTE_A4, 0, 0),
  147. RECORD_MAKE(NOTE_A4, 0, 0),
  148. RECORD_MAKE(NOTE_OFF, 0, 0),
  149. //
  150. RECORD_MAKE(NOTE_E5, 0, 0),
  151. RECORD_MAKE(NOTE_E5, 0, 0),
  152. RECORD_MAKE(NOTE_E5, 0, 0),
  153. RECORD_MAKE(NOTE_OFF, 0, 0),
  154. //
  155. RECORD_MAKE(NOTE_D5, 0, 0),
  156. RECORD_MAKE(NOTE_C3, 0, 0),
  157. RECORD_MAKE(NOTE_F2, 0, 0),
  158. RECORD_MAKE(NOTE_C3, 0, 0),
  159. //
  160. RECORD_MAKE(NOTE_C5, 0, 0),
  161. RECORD_MAKE(NOTE_C3, 0, 0),
  162. RECORD_MAKE(NOTE_C5, 0, 0),
  163. RECORD_MAKE(NOTE_OFF, 0, 0),
  164. //
  165. RECORD_MAKE(NOTE_A4, 0, 0),
  166. RECORD_MAKE(0, 0, 0),
  167. RECORD_MAKE(0, 0, 0),
  168. RECORD_MAKE(0, 0, 0),
  169. //
  170. RECORD_MAKE(NOTE_A4, 0, 0),
  171. RECORD_MAKE(NOTE_A4, 0, 0),
  172. RECORD_MAKE(NOTE_A4, 0, 0),
  173. RECORD_MAKE(NOTE_OFF, 0, 0),
  174. //
  175. RECORD_MAKE(NOTE_B4, 0, 0),
  176. RECORD_MAKE(NOTE_D3, 0, 0),
  177. RECORD_MAKE(NOTE_G2, 0, 0),
  178. RECORD_MAKE(NOTE_D3, 0, 0),
  179. //
  180. RECORD_MAKE(NOTE_E4, 0, 0),
  181. RECORD_MAKE(NOTE_D3, 0, 0),
  182. RECORD_MAKE(NOTE_E4, 0, 0),
  183. RECORD_MAKE(NOTE_OFF, 0, 0),
  184. //
  185. RECORD_MAKE(NOTE_A4, 0, 0),
  186. RECORD_MAKE(NOTE_A4, 0, 0),
  187. RECORD_MAKE(NOTE_A4, 0, 0),
  188. RECORD_MAKE(NOTE_OFF, 0, 0),
  189. //
  190. RECORD_MAKE(NOTE_E5, 0, 0),
  191. RECORD_MAKE(NOTE_E5, 0, 0),
  192. RECORD_MAKE(NOTE_E5, 0, 0),
  193. RECORD_MAKE(NOTE_OFF, 0, 0),
  194. //
  195. RECORD_MAKE(NOTE_D5, 0, 0),
  196. RECORD_MAKE(NOTE_D3, 0, 0),
  197. RECORD_MAKE(NOTE_G2, 0, 0),
  198. RECORD_MAKE(NOTE_D3, 0, 0),
  199. //
  200. RECORD_MAKE(NOTE_C5, 0, 0),
  201. RECORD_MAKE(NOTE_D3, 0, 0),
  202. RECORD_MAKE(NOTE_C5, 0, 0),
  203. RECORD_MAKE(NOTE_OFF, 0, 0),
  204. //
  205. RECORD_MAKE(NOTE_A4, 0, 0),
  206. RECORD_MAKE(0, 0, 0),
  207. RECORD_MAKE(0, 0, 0),
  208. RECORD_MAKE(0, 0, 0),
  209. //
  210. RECORD_MAKE(NOTE_A4, 0, 0),
  211. RECORD_MAKE(NOTE_A4, 0, 0),
  212. RECORD_MAKE(NOTE_A4, 0, 0),
  213. RECORD_MAKE(NOTE_OFF, 0, 0),
  214. },
  215. };
  216. const uint8_t test = 0x3F;
  217. NoteRow _row = {
  218. .notes =
  219. {
  220. //
  221. RECORD_MAKE(NOTE_C3, 0, 0),
  222. RECORD_MAKE(0, EffectSlideToNote, test),
  223. RECORD_MAKE(0, EffectSlideToNote, test),
  224. RECORD_MAKE(0, EffectSlideToNote, test),
  225. //
  226. RECORD_MAKE(0, EffectSlideToNote, test),
  227. RECORD_MAKE(0, EffectSlideToNote, test),
  228. RECORD_MAKE(0, EffectSlideToNote, test),
  229. RECORD_MAKE(0, EffectSlideToNote, test),
  230. //
  231. RECORD_MAKE(NOTE_C4, EffectSlideToNote, test),
  232. RECORD_MAKE(0, EffectSlideToNote, test),
  233. RECORD_MAKE(0, EffectSlideToNote, test),
  234. RECORD_MAKE(0, EffectSlideToNote, test),
  235. //
  236. RECORD_MAKE(0, EffectSlideToNote, test),
  237. RECORD_MAKE(0, EffectSlideToNote, test),
  238. RECORD_MAKE(0, EffectSlideToNote, test),
  239. RECORD_MAKE(0, EffectSlideToNote, test),
  240. //
  241. RECORD_MAKE(0, EffectSlideToNote, test),
  242. RECORD_MAKE(0, EffectSlideToNote, test),
  243. RECORD_MAKE(0, EffectSlideToNote, test),
  244. RECORD_MAKE(0, EffectSlideToNote, test),
  245. //
  246. RECORD_MAKE(0, EffectSlideToNote, test),
  247. RECORD_MAKE(0, EffectSlideToNote, test),
  248. RECORD_MAKE(0, EffectSlideToNote, test),
  249. RECORD_MAKE(0, EffectSlideToNote, test),
  250. //
  251. RECORD_MAKE(0, 0, 0),
  252. RECORD_MAKE(0, 0, 0),
  253. RECORD_MAKE(0, 0, 0),
  254. RECORD_MAKE(0, 0, 0),
  255. //
  256. RECORD_MAKE(0, EffectSlideToNote, test),
  257. RECORD_MAKE(0, EffectSlideToNote, test),
  258. RECORD_MAKE(0, EffectSlideToNote, test),
  259. RECORD_MAKE(0, EffectSlideToNote, test),
  260. //
  261. RECORD_MAKE(0, EffectSlideToNote, test),
  262. RECORD_MAKE(0, EffectSlideToNote, test),
  263. RECORD_MAKE(0, EffectSlideToNote, test),
  264. RECORD_MAKE(0, EffectSlideToNote, test),
  265. //
  266. RECORD_MAKE(NOTE_C3, EffectSlideToNote, test),
  267. RECORD_MAKE(0, EffectSlideToNote, test),
  268. RECORD_MAKE(0, EffectSlideToNote, test),
  269. RECORD_MAKE(0, EffectSlideToNote, test),
  270. //
  271. RECORD_MAKE(0, EffectSlideToNote, test),
  272. RECORD_MAKE(0, EffectSlideToNote, test),
  273. RECORD_MAKE(0, EffectSlideToNote, test),
  274. RECORD_MAKE(0, EffectSlideToNote, test),
  275. //
  276. RECORD_MAKE(0, EffectSlideToNote, test),
  277. RECORD_MAKE(0, EffectSlideToNote, test),
  278. RECORD_MAKE(0, EffectSlideToNote, test),
  279. RECORD_MAKE(0, EffectSlideToNote, test),
  280. //
  281. RECORD_MAKE(0, EffectSlideToNote, test),
  282. RECORD_MAKE(0, EffectSlideToNote, test),
  283. RECORD_MAKE(0, EffectSlideToNote, test),
  284. RECORD_MAKE(0, EffectSlideToNote, test),
  285. //
  286. RECORD_MAKE(0, EffectSlideToNote, test),
  287. RECORD_MAKE(0, EffectSlideToNote, test),
  288. RECORD_MAKE(0, EffectSlideToNote, test),
  289. RECORD_MAKE(0, EffectSlideToNote, test),
  290. //
  291. RECORD_MAKE(NOTE_C3, EffectArpeggio, EFFECT_DATA_2(3, 5)),
  292. RECORD_MAKE(0, EffectArpeggio, EFFECT_DATA_2(3, 5)),
  293. RECORD_MAKE(0, EffectArpeggio, EFFECT_DATA_2(3, 5)),
  294. RECORD_MAKE(0, EffectArpeggio, EFFECT_DATA_2(3, 5)),
  295. //
  296. RECORD_MAKE(0, EffectSlideUp, 0x15),
  297. RECORD_MAKE(0, EffectArpeggio, EFFECT_DATA_2(3, 5)),
  298. RECORD_MAKE(0, EffectArpeggio, EFFECT_DATA_2(3, 5)),
  299. RECORD_MAKE(0, EffectArpeggio, EFFECT_DATA_2(3, 5)),
  300. },
  301. };
  302. uint8_t tick_counter = 0;
  303. uint8_t tick_limit = 2;
  304. uint8_t row_counter = 0;
  305. typedef struct {
  306. float frequency;
  307. float frequency_target;
  308. bool play;
  309. } ChannelState;
  310. ChannelState ch_state = {
  311. .frequency = 0,
  312. .frequency_target = FREQUENCY_UNSET,
  313. .play = false,
  314. };
  315. void tracker_interrupt_body() {
  316. uint8_t note = record_get_note(row.notes[row_counter]);
  317. uint8_t effect = record_get_effect(row.notes[row_counter]);
  318. uint8_t data = record_get_effect_data(row.notes[row_counter]);
  319. // load frequency from note at tick 0
  320. if(tick_counter == 0) {
  321. if(note == NOTE_OFF) {
  322. ch_state.play = false;
  323. } else if((note > NOTE_NONE) && (note < NOTE_OFF)) {
  324. ch_state.play = true;
  325. if(effect == EffectSlideToNote) {
  326. ch_state.frequency_target = note_to_freq(note);
  327. } else {
  328. ch_state.frequency = note_to_freq(note);
  329. ch_state.frequency_target = FREQUENCY_UNSET;
  330. }
  331. }
  332. }
  333. if(ch_state.play) {
  334. if((effect == EffectSlideUp || effect == EffectSlideDown) && data != EFFECT_DATA_NONE) {
  335. // apply slide effect
  336. ch_state.frequency += (effect == EffectSlideUp ? 1 : -1) * data;
  337. } else if(effect == EffectSlideToNote) {
  338. // apply slide to note effect, if target frequency is set
  339. if(ch_state.frequency_target > 0) {
  340. if(ch_state.frequency_target > ch_state.frequency) {
  341. ch_state.frequency += data;
  342. if(ch_state.frequency > ch_state.frequency_target) {
  343. ch_state.frequency = ch_state.frequency_target;
  344. ch_state.frequency_target = FREQUENCY_UNSET;
  345. }
  346. } else if(ch_state.frequency_target < ch_state.frequency) {
  347. ch_state.frequency -= data;
  348. if(ch_state.frequency < ch_state.frequency_target) {
  349. ch_state.frequency = ch_state.frequency_target;
  350. ch_state.frequency_target = FREQUENCY_UNSET;
  351. }
  352. }
  353. }
  354. }
  355. float frequency = ch_state.frequency;
  356. // apply arpeggio effect
  357. if(effect == EffectArpeggio && data != EFFECT_DATA_NONE) {
  358. if((tick_counter % 3) == 1) {
  359. uint8_t note_offset = data & 0b000111;
  360. frequency = frequency_offset(frequency, note_offset);
  361. } else if((tick_counter % 3) == 2) {
  362. uint8_t note_offset = (data >> 3) & 0b000111;
  363. frequency = frequency_offset(frequency, note_offset);
  364. }
  365. }
  366. tracker_speaker_play(frequency, 0.5f);
  367. } else {
  368. tracker_speaker_stop();
  369. }
  370. tick_counter++;
  371. if(tick_counter >= tick_limit) {
  372. tick_counter = 0;
  373. // next note
  374. row_counter = (row_counter + 1) % PATTERN_SIZE;
  375. }
  376. }
  377. void tracker_interrupt_cb() {
  378. tracker_debug_set(true);
  379. tracker_interrupt_body();
  380. tracker_debug_set(false);
  381. }
  382. void log_record(NoteRecord record) {
  383. uint8_t note = record_get_note(record);
  384. uint8_t effect = record_get_effect(record);
  385. uint8_t data = record_get_effect_data(record);
  386. printf("Note: %u, Effect: %u, Data: %u", note, effect, data);
  387. if(effect == EffectArpeggio) {
  388. uint8_t note_offset = data & 0b000111;
  389. uint8_t note_offset2 = (data >> 3) & 0b000111;
  390. printf(" (Arpeggio: %u, %u)", note_offset, note_offset2);
  391. float frequency = note_to_freq(note);
  392. float new_frequency = frequency_offset(frequency, note_offset);
  393. float new_frequency2 = frequency_offset(frequency, note_offset2);
  394. printf(
  395. " (Freq: %f, %f, %f)",
  396. (double)frequency,
  397. (double)new_frequency,
  398. (double)new_frequency2);
  399. }
  400. printf("\r\n");
  401. }
  402. int32_t zero_tracker_app(void* p) {
  403. UNUSED(p);
  404. tracker_debug_init();
  405. tracker_speaker_init();
  406. tracker_interrupt_init(60.0f, tracker_interrupt_cb, NULL);
  407. // log_record(row.notes[0]);
  408. while(1) {
  409. furi_delay_ms(1000);
  410. }
  411. return 0;
  412. }