metronome.c 8.1 KB

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  1. #include <furi.h>
  2. #include <furi_hal.h>
  3. #include <gui/gui.h>
  4. #include <gui/elements.h>
  5. #include <input/input.h>
  6. #include <m-string.h>
  7. #include <stdlib.h>
  8. #define BPM_STEP_SIZE_FINE 0.5d
  9. #define BPM_STEP_SIZE_COARSE 10.0d
  10. #define BPM_BOUNDARY_LOW 10.0d
  11. #define BPM_BOUNDARY_HIGH 300.0d
  12. #define BEEP_DELAY_MS 50
  13. typedef enum {
  14. EventTypeTick,
  15. EventTypeKey,
  16. } EventType;
  17. typedef struct {
  18. EventType type;
  19. InputEvent input;
  20. } PluginEvent;
  21. typedef struct {
  22. double bpm;
  23. bool playing;
  24. int beats_per_bar;
  25. int note_length;
  26. FuriTimer* timer;
  27. } MetronomeState;
  28. static void render_callback(Canvas* const canvas, void* ctx) {
  29. const MetronomeState* metronome_state = acquire_mutex((ValueMutex*)ctx, 25);
  30. if(metronome_state == NULL) {
  31. return;
  32. }
  33. string_t tempStr;
  34. string_init(tempStr);
  35. // border around the edge of the screen
  36. canvas_draw_frame(canvas, 0, 0, 128, 64);
  37. canvas_set_font(canvas, FontPrimary);
  38. // draw bars/beat
  39. string_printf(tempStr, "%d/%d", metronome_state->beats_per_bar, metronome_state->note_length);
  40. canvas_draw_str_aligned(canvas, 64, 16, AlignCenter, AlignCenter, string_get_cstr(tempStr));
  41. string_reset(tempStr);
  42. // draw BPM value
  43. string_printf(tempStr, "%.2f", metronome_state->bpm);
  44. canvas_set_font(canvas, FontBigNumbers);
  45. canvas_draw_str_aligned(canvas, 64, 32, AlignCenter, AlignCenter, string_get_cstr(tempStr));
  46. string_reset(tempStr);
  47. // draw button prompts
  48. canvas_set_font(canvas, FontSecondary);
  49. elements_button_left(canvas, "Slow");
  50. elements_button_right(canvas, "Fast");
  51. if (metronome_state->playing) {
  52. elements_button_center(canvas, "Stop ");
  53. } else {
  54. elements_button_center(canvas, "Start");
  55. }
  56. string_clear(tempStr);
  57. release_mutex((ValueMutex*)ctx, metronome_state);
  58. }
  59. static void input_callback(InputEvent* input_event, FuriMessageQueue* event_queue) {
  60. furi_assert(event_queue);
  61. PluginEvent event = {.type = EventTypeKey, .input = *input_event};
  62. furi_message_queue_put(event_queue, &event, FuriWaitForever);
  63. }
  64. static void timer_callback() {
  65. //UNUSED(metronome_state);
  66. furi_hal_speaker_start(440.0f, 1.0f);
  67. furi_delay_ms(BEEP_DELAY_MS);
  68. furi_hal_speaker_stop();
  69. }
  70. static void metronome_state_init(MetronomeState* const metronome_state) {
  71. metronome_state->bpm = 120.0;
  72. metronome_state->playing = false;
  73. metronome_state->beats_per_bar = 4;
  74. metronome_state->note_length = 4;
  75. metronome_state->timer = furi_timer_alloc(timer_callback, FuriTimerTypePeriodic, metronome_state);
  76. }
  77. static uint32_t bpm_to_sleep_ticks(double bpm) {
  78. // calculate time between beeps
  79. uint32_t tps = furi_kernel_get_tick_frequency();
  80. double bps = (double)bpm / 60;
  81. return (uint32_t)round(tps / bps) - ((BEEP_DELAY_MS/1000)*tps);
  82. }
  83. static void update_timer(MetronomeState* metronome_state) {
  84. if (furi_timer_is_running(metronome_state->timer)) {
  85. furi_timer_stop(metronome_state->timer);
  86. furi_timer_start(
  87. metronome_state->timer,
  88. bpm_to_sleep_ticks(metronome_state->bpm)
  89. );
  90. }
  91. }
  92. static void increase_bpm(MetronomeState* metronome_state, double amount) {
  93. metronome_state->bpm += amount;
  94. if(metronome_state->bpm > (double)BPM_BOUNDARY_HIGH) {
  95. metronome_state->bpm = BPM_BOUNDARY_HIGH;
  96. }
  97. update_timer(metronome_state);
  98. }
  99. static void decrease_bpm(MetronomeState* metronome_state, double amount) {
  100. metronome_state->bpm -= amount;
  101. if(metronome_state->bpm < (double)BPM_BOUNDARY_LOW) {
  102. metronome_state->bpm = BPM_BOUNDARY_LOW;
  103. }
  104. update_timer(metronome_state);
  105. }
  106. static void cycle_beats_per_bar(MetronomeState* metronome_state) {
  107. metronome_state->beats_per_bar++;
  108. if (metronome_state->beats_per_bar > metronome_state->note_length) {
  109. metronome_state->beats_per_bar = 1;
  110. }
  111. }
  112. int32_t metronome_app() {
  113. FuriMessageQueue* event_queue = furi_message_queue_alloc(8, sizeof(PluginEvent));
  114. MetronomeState* metronome_state = malloc(sizeof(MetronomeState));
  115. metronome_state_init(metronome_state);
  116. ValueMutex state_mutex;
  117. if(!init_mutex(&state_mutex, metronome_state, sizeof(MetronomeState))) {
  118. FURI_LOG_E("Metronome", "cannot create mutex\r\n");
  119. free(metronome_state);
  120. return 255;
  121. }
  122. // Set system callbacks
  123. ViewPort* view_port = view_port_alloc();
  124. view_port_draw_callback_set(view_port, render_callback, &state_mutex);
  125. view_port_input_callback_set(view_port, input_callback, event_queue);
  126. // Open GUI and register view_port
  127. Gui* gui = furi_record_open("gui");
  128. gui_add_view_port(gui, view_port, GuiLayerFullscreen);
  129. PluginEvent event;
  130. for(bool processing = true; processing;) {
  131. FuriStatus event_status = furi_message_queue_get(event_queue, &event, 100);
  132. MetronomeState* metronome_state = (MetronomeState*)acquire_mutex_block(&state_mutex);
  133. if(event_status == FuriStatusOk) {
  134. // press events
  135. if(event.type == EventTypeKey) {
  136. if(event.input.type == InputTypeShort) {
  137. switch(event.input.key) {
  138. case InputKeyUp:
  139. cycle_beats_per_bar(metronome_state);
  140. break;
  141. case InputKeyDown:
  142. break;
  143. case InputKeyRight:
  144. increase_bpm(metronome_state, BPM_STEP_SIZE_FINE);
  145. break;
  146. case InputKeyLeft:
  147. decrease_bpm(metronome_state, BPM_STEP_SIZE_FINE);
  148. break;
  149. case InputKeyOk:
  150. metronome_state->playing = !metronome_state->playing;
  151. if (metronome_state->playing) {
  152. furi_timer_start(metronome_state->timer, bpm_to_sleep_ticks(metronome_state->bpm));
  153. } else {
  154. furi_timer_stop(metronome_state->timer);
  155. }
  156. break;
  157. case InputKeyBack:
  158. processing = false;
  159. break;
  160. }
  161. } else if (event.input.type == InputTypeLong) {
  162. switch(event.input.key) {
  163. case InputKeyUp:
  164. break;
  165. case InputKeyDown:
  166. break;
  167. case InputKeyRight:
  168. increase_bpm(metronome_state, BPM_STEP_SIZE_COARSE);
  169. break;
  170. case InputKeyLeft:
  171. decrease_bpm(metronome_state, BPM_STEP_SIZE_COARSE);
  172. break;
  173. case InputKeyOk:
  174. break;
  175. case InputKeyBack:
  176. processing = false;
  177. break;
  178. }
  179. } else if (event.input.type == InputTypeRepeat) {
  180. switch(event.input.key) {
  181. case InputKeyUp:
  182. break;
  183. case InputKeyDown:
  184. break;
  185. case InputKeyRight:
  186. increase_bpm(metronome_state, BPM_STEP_SIZE_COARSE);
  187. break;
  188. case InputKeyLeft:
  189. decrease_bpm(metronome_state, BPM_STEP_SIZE_COARSE);
  190. break;
  191. case InputKeyOk:
  192. break;
  193. case InputKeyBack:
  194. processing = false;
  195. break;
  196. }
  197. }
  198. }
  199. } else {
  200. FURI_LOG_D("Hello_world", "FuriMessageQueue: event timeout");
  201. // event timeout
  202. }
  203. view_port_update(view_port);
  204. release_mutex(&state_mutex, metronome_state);
  205. }
  206. view_port_enabled_set(view_port, false);
  207. gui_remove_view_port(gui, view_port);
  208. furi_record_close("gui");
  209. view_port_free(view_port);
  210. furi_message_queue_free(event_queue);
  211. delete_mutex(&state_mutex);
  212. furi_timer_free(metronome_state->timer);
  213. free(metronome_state);
  214. return 0;
  215. }